ТЯЕМ
E
A S E RI E S
R ot a r y T a bl e S y st e m
A 01
MI L LI N G M A C HI N E A C C E S S O RI E S H o ri z o nt al/ V e rti c al R ot a r y T a bl e
A 01
H V- 6, 8, 1 0, 1 2, 1 4, 1 6
H V- 4
A 05
A 05
NE
Tilti n g R ot a r y T a bl e
W
NE
V U T- 6
H o ri z o nt al/ V e rti c al R ot a r y T a bl e
Di vi di n g H e a d S y st e m
S e mi- U ni v e r s al Di vi di n g H e a d
B S- 0, 1
A 08
Tilti n g R ot a r y T a bl e
W
A 07
A 09
A 05 NE
A 03
O pti o n al F o r R ot a r y T a bl e
W
S e mi- U ni v e r s al Di vi di n g H e a d
A 07
NE
S e mi- U ni v e r s al Di vi di n g H e a d
B S- 2 A- J- 8 S u p e r I n d e xi n g S p a c er
A 09
A 06
M ulti pl e Tilti n g R ot a r y T a bl e
O pti o n al F o r R ot a r y T a bl e
W
V U T- 2 5 0, 3 0 0
D P- 3, T S- 3
A 08
A 08
U ni v e r s al Di vi di n g H e a d
B S- 2 S u p e r I n d e xi n g S p a c er
A 06
A 10
U ni v e r s al Di vi di n g H e a d
B S- 2- J- 8 Si m pl e I n d e xi n g S p a c er
A 10
Si m pl e I n d e xi n g S p a c er
W
NE
B S- 2 A
I n d e x T a bl e
A 11
C S- 6, 8 Pr e ci si o n I n d e x T a bl e
VI T- 4 5 0, 6 0 0, 7 0 0, 8 0 0
R ot a r y C h u c k
A 12
E c o n o mi c al T y p e R a pi d I n d e x
A 11
C S- 6, 8 Pr e ci si o n I n d e x T a bl e
VI T- 1 0 0 0
A 12
A 11
V SI- 4, 5
A n gl e C h u c k
A 13
E c o n o mi c al T y p e R a pi d I n d e x
W
V U A- 1 0 0 J
V SI- 3 Pr e ci si o n U ni v e r s al A n gl e C h u c k
A 13 NE
C C- 1 2 P r e ci si o n I n d e x T a bl e
VI T- 1 2 0 0
A 12 NE
NE
Tilti n g R ot a r y T a bl e
V U T- 1 2
B S- 0- J- 5 U ni v e r s al Di vi di n g H e a d
H o ri z o nt al/ V e rti c al R ot a r y T a bl e
T S- 1, 2, 3, 4
V U T- 1 0
A 07
A 02
Pr e ci si o n U ni v e r s al A n gl e C h u c k
W
V U A- E R 4 0
V E R T E X, E S T A B LI S H E D I N 1 9 7 8.
A 11
P r e ci si o n I n d e x T a bl e
VI T- 3 0 0 Si m pl e R ot a r y C h u c k
A 12
Si m pl e R ot a r y C h u c k
W
V S R- 6, 8, 8 3
V S R- 6 3
A 13
A 14
NE
C C- 8
Fr e e A n gl e R ot a r y Chuck
U ni v e r s al Tilti n g R ot a r y T a bl e
W
V A V- 4 J, 5 J
A 14 NE
V U- 1 0 0, 1 5 0, 2 0 0
W
H V D- 4 0 0
Bi g T h r o u g h H ol e/f a st i n d e xi n g R ot a r y T a bl e
MI L LI N G M A C HI N E A C C E S S O RI E S
A S E RI E S
Vi s e S y st e m
A 15
H y d r a uli c M a c hi n e Vi s e
V H- 4, 5, 6, 8, 8 L
A n gl e Milli n g Vi s e S y st e m
A 17 NE
U ni v e r s al Tilti n g H y d r a uli c M a c hi n e Vi s e
A 15
H y d r a uli c M a c hi n e Vi s e
V H- 4, 5, 6, 8, 8 L
A 18
H y d r a uli c M a c hi n e Vi s e
A 15
H y d r a uli c M a c hi n e Vi s e
A 16
Tilti n g H y d r a uli c M a c hi n e Vi s e
V H T- 4
V H- 1 2
A 19
A n g- Fi x e d Milli n g Vi s e
A 19
A 16
V H T- 6 A n g- Fi x e d Milli n g Vi s e
W
A 19 NE
V H T- 4 U, 6 U
V H O- 5, 6, 8
A 20
A 20
K- T y p e Milli n g Vi s e
V A- 4, 5 K- T y p e Milli n g Vi s e
A 20
V A- 6, 8 S u p e r O p e n Vi s e
A 20
W
S u p e r O p e n Vi s e
AA 201
Tilti n g Vi s e
V K- 4, 5, 6, 8
V J- 4 0 0, 5 0 0, 6 0 0
V J- 4 0 0, 5 0 0, 6 0 0
VA W T- 4 B
A 21
A 21
A 22
A 25
A 25
NE
W
NE
V W T- 6 B
C e nt e ri n g Vi s e
A 22 NE
W
NE
V W T- 5, 6 A Q ui c k I n d e x H ol d e r
W
A 23 NE
V W- 3, 4, 5 S elf C e nt e ri n g Vi s e
W
M o d ul a r Vi s e
V F V- 4 0 H, 4 1 S
V C V- 1 0 1 3 0
A 26
A 26
M o u d ul a r Pr e ci si o n M a c hi n e Vi s e
3- W a y A n gl e Milli n g Vi s e
A 24 NE
S elf C e nt e ri n g Vi s e
W
M o u d ul a r Pr e ci si o n M a c hi n e Vi s e
A 27 NE
W
V U T- 4 N C, 5 N C, 6 N C
A 24
A 24
S elf C e nt e ri n g Vi s e
W
NE
V C V- 1 0 9 0 M o u d ul a r Pr e ci si o n H y d r a uli c M a c hi n e Vi s e
W
P o w e r Tilti n g Vi s e
V U T- 3 Q S, 4 Q S, 5 Q S
NE
V C V- 1 3 1 8 0
Tilti n g Q ui c k Vi s e
2A s We a y A n gl e Milli n g Vi
W
V K- 4, 5, 6, 8
2- W a y A n gl e Milli n g Vi s e
A n g- Fi x e d Milli n g Vi s e
V D- 6 7 5, 6 9 0, 8 1 0
NE
2- W a y A n gl e Milli n g Vi s e
Tilti n g H y d r a uli c M a c hi n e Vi s e
A 28 NE
S elf C e nt e ri n g Vi s e
W
V C V- 0 6 1 1 S ~ 1 5 1 8 9 D S M o u d ul a r M a c hi n e Fr e e Vi s e - L T y p e Vi s e
W
A 28 NE
M o u d ul a r M a c hi n e Fr e e Vi s e - D T y p e Vi s e
W
Vi s e S y st e m
V M P- 4 ~ V M P- 1 2 E
V M P- 4 ~ V M P- 1 2 E
V M P- 6 B H ~ V M P- 1 2 E H
V M P- 4 L, 5 L, 6 L, 7 L
V M P- 4 4 D, 5 5 D, 6 6 D, 7 7 D
A 29
A 29
A 30
A 30
A 53
NE
Fr e e A n gl e Vi s e
W
V A V- 3, 4
L o c k- Fi x e d ll Pr e ci si o n M a c hi n e Vi s e
NE
V M C- 4, 6
W
V C V- 4 D
D o u bl e Cl a m p Vi s e
NE
W
V C V- 4 4
C o m p o u n d P r e ci si o n Vi s e
NE
C o n v e ni e n c e T y p e M a c hi n e Vi s e
W
V C M- 4 7
S A L E S T H E S E RI E S O F A C C E S S O RI E S T O M O R E T H A N 6 0 C O U N T RI E S
MI L LI N G M A C HI N E A C C E S S O RI E S
A S E RI E S
M C P o w e r Vi s e
A 34 NE
M C P o w e r Vi s e
W
A 36 NE
M C P o w e r Vi s e H y d r a uli c T y p e
W
A 37 NE
M C P o w e r Vi s e
W
A 38 NE
M C P o w e r Vi s e H y d r a uli c T y p e
W
A 39 NE
U ni v e r s al M C P o w e r Vi s e
W
V Q C- 1 0 0 ~ 2 0 0 L
V Q C- 1 0 0 H ~ 2 0 0 L H
V Q C- 1 0 0 L C ~ 2 0 0 2 L C
V Q C- 1 0 0 H C ~ 2 0 0 L H C
V Q C V- 1 2 5 H- L, R, 1 6 0 H- L, R
A 43
A 43
A 43
A 44
A 44
Pr e ci si o n M C P o w e r Vi s e
Pr e ci si o n M C P o w e r Vi s e
P r e ci si o n M C P o w e r Vi s e
P r e ci si o n C o m p a ct M C Vi s e
P r e ci si o n C o m p a ct M C Vi s e
V N C Vi s e
V M C- 1 0 0 H V ~ 2 0 0 H V
V M C- 1 0 0 H V ~ 2 0 0 H V
V M C- 1 0 0 H V ~ 2 0 0 H V
V M C- 1 0 0 M ~ 2 0 0 M
V M C- 1 0 0 M ~ 2 0 0 M
A 45
A 45
A 47
A 48
A 48
NE
N C H y d r o M a c hi n e Vi s e s
W
NE
N C H y d r o M a c hi n e Vi s e s
W
NE
C o m bi n ati o n M C P o w e r Fr e e Vi s e
W
NE
V N C A xi al D ri v e & Pl ai n J a w
W
NE
V N C A xi al D ri v e & Pl ai n J a w
W
C o n v e ni e nt / Q ui c k / Milli n g Vi s e
V N C- 1 0 0 H, 1 2 5 H, 1 6 0 H, 1 6 0 L H
V N C- 1 0 0 H, 1 2 5 H, 1 6 0 H, 1 6 0 L H
V N C- 1 0 0 F V, 1 2 5 F V, 1 6 0 F V
V N C- 4 A D, 5 A D, 6 A D
V N C- 4 A D, 5 A D, 6 A D
A 49
A 50
A 50
A 51
A 52
NE
S u p e r- Hi g h J a w M C Vi s e
W
NE
V Q H J- 5, 6
A 52
Pr e ci si o n P n e u m ati c A n g- Fi x e d P o w e r Vi s e
A 54 NE
W
NE
W
NE
M C H y p er S u p er O p e n Vi s e
W
V M C H- 4, 5, 6
V M C- 5 P, 6 P, 6 P L, 7 P, 8 P, 8 P L
A 53
A 53
A 53
A 53
C o n v e ni e n c e T y p e M a c hi n e Vi s e
W
NE
A 54
C o n v e ni e n c e T y p e M a c hi n e Vi s e
W
NE
V C M- 4 7 Q ui c k S etti n g Vi s e
A 55
S u p er O p e n e d A n gFi x e d M a c hi n e Vi s e
W
NE
V M C- 4 L M a c hi n e Vi s e F o r S h a pi n g & Milli n g U s e
A 55
B- T y p e Milli n g Vi s e
V Q S- 3, 4, 5
A 56
A 56
Fr e e Vi s e
V S M- 1 2, 1 6, 2 0
V B V- 4, 5, 6
A 57
A 57
NE
F V- 3 5 0, 4 5 0, 5 5 0
S V- 6 2, 8 5, 1 2 5
D rill Vi s e
W
D V- 8 5, 1 0 0, 1 2 0
NE
W
A 56 NE
V Q W- 8 0, 1 0 0, 1 3 0
S u p er O p e n e d A n gFi x e d M a c hi n e Vi s e
V M C- 4 L
W
Fr e e Vi s e
P r e ci si o n P n e u m ati c A n g- Fi x e d P o w e r Vi s e
V Q H J- S 1 3 0, S 1 6 0
V C M- 4 7 H o ri z o nt al M o vi n g Q ui c k Vi s e
S u p e r- Hi g h J a w M C Vi s e
V Q H J- V 1 3 0, V 1 6 0
NE
V M C- 6 P D
S u p e r- Hi g h J a w M C Vi s e
S u p e r O p e n D rill Vi s e
W
V R V- 4, 5, 6 St e el B e n c h Vi s e Wit h Base
W
B V V- 3, 4, 5, 6, 8, 1 0
A 57 NE
W
V Q S- 4 0
T H E BI G G E S T M A N U F A C T U R E R & E X P O R T E R O F M A C HI NI N G T O O L A C C E S S O RI E S
Q ui c k B e n c h Vi s e
MI L LI N G M A C HI N E A C C E S S O RI E S
A S E RI E S
W or k Cl a m pi n g
A 58
U ni v e r s al W o r k St o p p e r
A 58
T Sl ot Cl a m p s
W
NE
A 59
U ni v e r s al J a w s Wit h D o w n P r e s s Cl a m p
A 59
U ni v e r s al Vi s e J a w s Wit h W o r k St o p p e r
A 60
W
NE
Cl a m pi n g Kit
V W S- 1 2 3, 1 2 5
C K- 3 7 1 2, 3 7 1 4, 3 7 1 6, 3 7 1 8, 3 7 2 0
V W S J- R 1 0 0, R 1 3 0, R 1 6 0, R 2 0 0
V W S J- 4, 5, 6, 8
V W S-
A 60
A 61
A 61
A 62
A 62
S c r e w G ui d e Bl o c k
5 2- P C S St e el Cl a m pi n g Kit
T- Sl ot- N ut
1 2 T O 1 2, 1 6 T O 1 4, 1 4 T O 1 6
C K- 1 0 3 A ~ 2 0 6, 0 8 ~ 1 8
3 1 4 2 M ~, 3 4 1 3 I~
2 6 1 2 M/ I~
A 63
A 64
A 64
A 65
Cl a m pi n g St u d s
St e p Cl a m p
St e p Bl o c k
C o u pli n g N ut
S cr e w J a c k
A 65
6113 ~ S cr e w J a c k
A 66
5114 ~ S c r e w J a c k Wit h M a g n et
A 66
Fl a n g e N ut
C F N0814 ~1827 S c r e w J a c k S et
A 66
Fl a n g e N ut
4 5 1 2/ I~
A 65 NE
1323 M ~
P ri s m a J a w s
S c r e w J a c k S et
C- Cl a m p C a st St e el
W
V C L- 2 C ~ 8 C
A 66
S c r e w J a c k S et
M A G NET
G r o u n d P a r all el s S y st e m
V S J- 4 0, 7 0, 1 5 0, 2 5 0, 5 0 0
V S J M- 5 0, 7 0, 8 5, 1 1 0, 1 6 5
V S J- A, B
A 67
A 67
A 67
G r o u n d P a r all el s
V P- 1 0 0
A 68
V P- 1 1 8 A V P- 1 6 3 Pr e ci si o n P a r all el s
V P- 1 6 3
A 70 NE
W
V P- 1 4 6
G r o u n d P a r all el s
A 69
V P- 1 2 8 A V P- 0 6 4 Pr e ci si o n P a r all el s
V P- 0 6 4 V P- 1 4 6 G r o u n d P a r all el s
A 70 NE
W
V P- 1 6 8
G r o u n d P a r all el s
A 69
A 70 NE
V S J- 4 A, 5 A, 6 A
A 68
A 68
P r e ci si o n P a r all el s
V P- 1 3 6 V P- 0 5 0 P r e ci si o n P a r all el s
V P- 0 5 0 V P- 1 6 8 G r o u n d P a r all el s
V S J- 1 A, 2 A, 3 A
A 69
V P- 0 1 8 T hi n T y p e P a r all el s S et
V P- 0 1 8 V P- 0 3 3 P r e ci si o n P a r all el s
V P- 0 3 3 V P- 2 0 0 G r o u n d P a r all el s
W
V P- 2 0 0
P R O D U C T S U N D E R 1 0 0 % S T RI C T Q. C. Q U A LI T Y G U A R A N T E E D
MI L LI N G M A C HI N E A C C E S S O RI E S
A S E RI E S
Pl at e S y st e m
A 71 NE
H e a v y D ut y Tilti n g Pl at e
W
NE
V U T- 1 5 1 5, 2 7 2 6, 3 2 3 0
A 74
Pr e ci si o n C r o s s T a bl e
V C T- 4 0 7
A n gl e Pl at e
A 75
A 72
Ri g ht A n gl e Pl at e
Li g ht D ut y Tilti n g Pl at e
W
NE
V U- 1 5 1 7
A 74
A 72
Li g ht D ut y Tilti n g Pl at e
A 74
V P- 1 8 0, 2 5 0, 3 8 0, 6 0 0 P r e ci si o n C r o s s T a bl e
A 74
V C T- 5 1 4, 8 2 0, 1 0 2 4
V C T- 5 1 4, 8 2 0, 1 0 2 4
V C T- 8 3 0
A 76
A 76
A 76
Pr e ci si o n Ri g ht A n gl e Pl at e
Sl ott e d A n gl e Pl at e
V R- 6, 8, 1 0, 1 2
V R H- 4, 5, 6, 8
V R- 4 5, 6 0, 8 0, 1 2 0
V R- 1 0 0
A 77
A 77
A 77
A 78
U- Cl a m p
Pi v ot Cl a m p
V C A- 4 0 4, 4 0 5, 4 0 6, 4 0 8
V C B- 4 0 4, 4 0 5, 4 0 6, 4 0 8
V H D- 1
A 78
A 78
A 79
Milli n g T a bl e Sl ot C o v er
V e e Bl o c k s
NE
H a n d D rift
Cl o c k S p ri n g F o r Milli n g M a c hi n e
A 79
V S P- R- 8, V S P- N T- 3 0, N T- 4 0
V A C P- 1
A 79
A 79
A 80
A 80
B TYPE
V G C- 3 7 7 5 F ~ 6 0 8 5 F
V M S- 5
A 81
A 81
A 82
H o ri z o nt al Milli n g Att a c h m e nt
NE
V R A- R 8, N T 3 0, N T 4 0
A n gl e Pl at e Wit h S wi v el B a s e
V P- 2 5 0 S, 3 8 0 S
A 75
C r o s s T a bl e
V C T- 5 1 2 Sl ott e d A n gl e Pl at e
A 76
Pl ai n A n gl e Pl at e
V R- 2 2 ~ 1 2 1 2 E y e S hi el d
A 78
E y e S hi el d Wit h M a g n eti c B a s e
V H- 5 7 A ut o C e nt e r P u n c h
A 79
A Dr a w B ar
5 C. C 3 2. O Z 2 5 C oll et R a c k
V D R- R 8, N T 3 0, N T 4 0 T a bl e Sl ot Pl at e
A 80
P a rt s St o r a g e
F TYPE
V G C- 3 7 7 5 B ~ 6 0 8 5 B Ri g ht A n gl e H e a d
A 73
W
V- 2 V, 3 V, 4 V, 5 V, 6 V, 7 V, 8 V E x p a n d a bl e M a c hi n e G u ar d C o v er
P r e ci si o n C r o s s T a bl e
V H- 5 6
V S T- 1 0 ~ 3 6 E x p a n d a bl e M a c hi n e G u ar d C o v er
A dj u st a bl e A n gl e Pl at e
W
V U- 2 1 2 2 Pr e ci si o n C r o s s T a bl e
A 73
V H A- R- 8, N T- 3 0, N T- 4 0
T P- 9 0- 1 8 ~ T P- 1 5 0- 2 4
P o w e r T a bl e F e e d
A 83
Ai r P o w e r D r a w b a r
V H P- 1 2 1 8 ~ 3 0 4 5
A 84
W
V P F- 5 0 0 X, 5 0 0 Y, 5 0 0 X, 9 9 X
S A L E S P R O G A M I S O V E R 1 0 0 0 I T E M S O F A C C E S S O RI E S
P D- 1 5 0, 2 0 0
V S H- 1 2 5
P r e ci si o n Sl otti n g Head
A S E RI E S
C h a mf e ri n g & D e b u r ri n g
A 85
MI L LI N G M A C HI N E A C C E S S O RI E S U ni v e r s al C utt e r G ri n d e r
A 86 NE
U2
A 87
T o ol C a bi n et St a n d
C h a mf e ri n g & D e b u r ri n g U nit
A 87
C h a mf e ri n g & D e b u r ri n g U nit
A 87
A 88
V C F- 5 0 0 C h a mf e ri n g & D e b u r ri n g U nit
A 88
V C F- 5 0 0 W C h a mf e ri n g & D e b u r ri n g U nit
A 88
V C F- 5 0 0 W C h a mf e ri n g & D e b u r ri n g U nit
A 1 0 7 CF orh a Rmf Deriu aln g A &n glD ee b Uurrinit n g NE
V C F- 5 0 0 F
A 88
V C F- 5 0 0 S C h a mf e ri n g & D e b u r ri n g U nit
C h a mf e ri n g & D e b u r ri n g U nit
W
V T C- 2 0 C h a mf e ri n g & D e b u r ri n g U nit
A 87
A 89
V C F- 5 0 0 S C h a mf e ri n g & D e b u r ri n g U nit
A 89
V C F- 6 0 0 Ej e ct o r Pi n C utti n goff U nit
A 90
W
V C F- 5 0 0 R- R M C, 2 R, 3 R R o d s Pr e ci si o n C utti n g- Off A n d E n d S urf a c e G ri n di n g U nit
A 90
R o d s Pr e ci si o n C utti n g- Off A n d E n d S urf a c e G ri n di n g U nit
P u m p S y st e m
V C F- 7 0 0
V C F- 3 0 0 A
V E C- 1 0 0
V E C- 3 0 0 G, 5 0 0 G, 6 0 0 G
V E C- 3 0 0 G, 5 0 0 G, 6 0 0 G
A 1 0 3 1/C o8 olHa P.nt UPnud em rp W at e r
A 1 0 3 1/C o4 olHa P.nt U Pn ud em rp W at e r
P ri mi n g C o ol a nt A 1 0 3 SP elf u m p 1/ 8 H P. 1/ 4 H P
A 1 0 4 C o ol a nt P u m p Kit
A 1 0 4 C o ol a nt P u m p Kit
V M P- 0 8 1 0, 0 8 1 3, 0 8 1 5, 0 8 1 8
V M P- 0 4 1 5, 0 4 1 8, 0 4 2 0, 0 4 2 4, 0 4 2 7
V M P- 0 8 9, 0 4 9
V W P- 8 1- 1 5 0 K, V W P- 4 1- 1 8 0 K
V W P- 8 1- 1 5 0 K, V W P- 4 1- 1 8 0 K
A 104
A 104
A 1 0 5 HP au nmdp L u b ri c ati o n
A 1 0 5 HP au nmdp L u b ri c ati o n
A 1 0 5 HP au nmdp L u b ri c ati o n
E A- 8 R, 8 L
U n d e r W at e r T y p e M ulti- st a g e Hi g h P r e s s u r e C o ol a nt P u m p
U n d e r W at e r T y p e M ulti- st a g e Hi g h P r e s s u r e C o ol a nt P u m p
V W P-
V W P-
L T- 4
L T- 6, 1 8, 1 8 A
A 1 0 6 HP au nmdp L u b ri c ati o n
A 1 0 6 HP au nmdp L u b ri c ati o n
A 1 0 6 HP au nmdp L u b ri c ati o n
A 1 0 6 Elp ue ctm pri Sc alM Aa utm oo dm elati c
L A- 8 R, 8 L
L A- 1 4 0 3, 1 4 0 8
L A- 2 4 0 3, 2 4 0 8
S M A- 3, 6, 8. 5
V E R T E X, E S T A B LI S H E D I N 1 9 7 8.
MI L LI N G M A C HI N E A C C E S S O RI E S
A S E RI E S
La mp Bean
A 91
D u st p r o of H al o g e n La mp Bea m
V H L- 3 0 0 L
A 92 NE
D u st p r o of H al o g e n La mp Bea m
V H L- 3 0 0 M D u st p r o of H al o g e n La mp Bea m
A 92
A 91
D u st p r o of H al o g e n La mp Bea m
V H L- 3 0 0 S D u st p r o of H al o g e n La mp Bea m
A 93
A 94
A 92
Q u a rt z H al o g e n La mp Bea m
A 93 NE
W at e r p r o of R efl e ct o r L E D La mp
W
V H L- 2 0 F T, 2 0 F
V L E D- S L
A 94
A 95
A 95
NE
V L E D- 1 0 8 0, 2 1 6 0
V H L- 3 0 T E B
A 96
A 96
A 96
V H L- 3 0 0 M R W at e r- P r o of B ri g ht L E D Si g n al Li g ht
A 94
C o ol Li g ht B e a m
V H LM a g nif yi n g Fl u o r e s c e nt W o r k Li g ht B e a m
A 95
M a g nif yi n g Fl u o r e s c e nt W o r k Li g ht B e a m
M a g nif yi n g Fl u o r e s c e nt W o r k Li g ht B e a m
V H L- 3 0 M E B
V H L- 3 0 L E B
A 97
A 97
V H L- 3 0 T L E D
V H L- 3 0 M L E D
V H L- 3 0 L L E D
V H L- 4 0 0 S
A 97
A 98
A 98
A 98
W at e r- Pr o of H al o g e n La mp Bea m
D u st p r o of H al o g e n La mp Bea m
M a g nif yi n g Fl u o r e s c e nt W o r k Li g ht B e a m
W
V L E D- W 1 3, W 1 8, W 3 6 M a g nif yi n g Fl u o r e s c e nt W o r k Li g ht B e a m
M a g nif yi n g Fl u o r e s c e nt W o r k Li g ht B e a m
A 92
W
V H L- 3 0 0 1/ 2 M R W or k s h o p L E D L m a p
D u st p r o of H al o g e n La mp Bea m
V H L- 3 0 0 L R
W
V H L- 3 0 0 S R
NE
A 91
W at e r- Pr o of H al o g e n La mp Bea m
W at e r- P r o of H al o g e n La mp Bea m
W at e r- P r o of H al o g e n La mp Bea m
W at e r- P r o of H al o g e n La mp Bea m
V H L- 4 0 0 M W at e r- P r o of H al o g e n La mp Bea m
A 99
D u st p r o of H al o g e n La mp Bea m
L E D La mp
V H L- 4 0 0 L
V H L- 5 0 0 S
V H L- 5 0 0 M
V H L- 5 0 0 L
V H L- 6 0 0 F T, V H L- 7 0 0 F T
A 1 0 0 WL atm ae rp Pr o of L E D
A 1 0 0 WL atm ae rp Pr o of L E D
A 1 0 0 WL atm ae rp P r o of L E D
A 1 0 0 WL atm ae rp P r o of L E D
A 1 0 0 WL atm ae rp P r o of L E D
NE
W
NE
W
NE
W
NE
W
V L E D- 4 0 0 L
V L E D- 4 0 0 M
V L E D- 5 0 0 L
V L E D- 5 0 0 M
V L E D- 5 0 0 S
A 1 0 1 CL om na cpe nt r at e L E D
A 1 0 1 WiB e da e m R a n g e H al o g e n
A 1 0 2 WiL md ae p R a n g e L E D
A 1 0 2 CL om na cpe nt r at e L E D
A 1 0 2 CL om na cpe nt r at e L E D
NE
W
V L E D- 3 0 L, 3 0 M
NE
V H L- 5 0 F T
W
V H L- 3 7 F T
NE
W
V L E D- 2 0 L
S A L E S T H E S E RI E S O F A C C E S S O RI E S T O M O R E T H A N 6 0 C O U N T RI E S
NE
W
V L E D- 5 0 F T
G RI N DI N G M A C HI N E A C C E S S O RI E S
B S E RI E S
P u n c h F o r m e r S y st e m
B 01
P u n c h F or m er
V- P B
B 01
B 02
P u n c h F or m er
V- P B
B 02
S p e ci al P a rt A c c e s s o r y F o r A n g ul a r D r e s si n g
V- P F
V- P S
B 03
E R C oll et Di vi di n g P u n c h Gri n d er Wit h Si n e Pl at e
B 04
V- P S- E R 3 2 S
V- P S- E R 3 2 S
B 04
B 05
3- J a w s P u n c h F o r m e r Wit h Si n e Pl at e
NE
V- P S- 8 0 J S
B 05
Si n e Pl at e F o r All T y p e P u n c h F or m er
P u n c h F or m er Si n e Pl at e
B 04
V- P S- E R 4 0 S Wi t h
W
B 05 NE
B 03
E R C oll et Di vi di n g P u n c h F or m er
V- P S- E R 3 2 E R C oll et Di vi di n g P u n c h Gri n d er Wit h Si n e Pl at e
P u n c h F or m er Si n e Pl at e
B 04
W
B 05 NE
E R C oll et Di vi di n g P u n c h Gri n d er Wit h Si n e Pl at e
P u n c h F or m er Si n e Pl at e
B 04
B 06
Wi t h
W
B 05 NE
NE
P u n c h F or m er Si n e Pl at e
V- P B- B S, V- P S- S S
V- P B- B S, V- P S- S S
V- P B- B S, V- P S- S S
B 05
B 06
B 06
B 06
Si n e Pl at e F o r All T y p e P u n c h F or m er
C o n c e nt ri c T e st St a n d
C o n c e nt ri c T e st St a n d
B 07
P u n c h G ri n d e r
V CI- 1 5 0 P, 2 5 0 P, 3 5 0 P
V- P S- 8 0 M
B 07
B 08
B 08
P u n c h G ri n d e r
Fi x e d S p e e d P u n c h F or m er
W
V CI- 1 5 0 P, 2 5 0 P, 3 5 0 P P u n c h G ri n d e r
Wi t h
W
V- P B- B S, V- P S- S S
V- P S- S P Fi x e d S p e e d P u n c h F or m er
3- J a w s P u n c h F o r m e r Wit h Si n e Pl at e
V- P S- 8 0 J S
NE
V- P S- S P
E R C oll et Di vi di n g P u n c h F or m er
V- P S- E R 4 0
V- P S- E R 4 0 S Wi t h
S p e ci al P a rt A c c e s s o r y F o r A n g ul a r D r e s si n g
V- P F
B 03
3- J a w s P u n c h F or m er
V- P S- 8 0 J E R C oll et Di vi di n g P u n c h Gri n d er Wit h Si n e Pl at e
B 02
P u n c h F or m er
V- P S
B 03
3- J a w s P u n c h F or m er
V- P S- 8 0 J
B 04
B 02
P u n c h F or m er
P u n c h G ri n d e r
W
V- P S- 8 0 M
B 08
V- P G P u n c h G ri n d e r
B 08
V- P G P u n c h G ri n d e r
B 08 NE
V- P G A
V- P G A
V- P G M
V- P G M
R u n o ut T e st e r
W
V R T- 2 5
T H E BI G G E S T M A N U F A C T U R E R & E X P O R T E R O F M A C HI NI N G T O O L A C C E S S O RI E S
G RI N DI N G M A C HI N E A C C E S S O RI E S
B S E RI E S
T o ol M a k e r Vi s e S y st e m
B 09
Mi n e T o ol M a k e r Vi s e
V M V- 1 0
B 11
NE
Si n e Vi s e
Pr e ci si o n U ni v e r s al A n gl e C h u c k
W
T w o W a y Vi s e
St ai nl e s s Vi s e S y st e m
E D M T o ol M a r k e r Vi s e ( S T AI N L E S S)
El e ct r o d e Vi s e ( St ai nl e s s)
V E H- 2 0 M S
B 22
V S T V- 2 5
Pr e ci si o n U ni v e r s al A n gl e C oll et C h u c k
W
B 18
B 19
B 12
B 16 NE
Si n e B a r Wit h M a g n eti c
T o ol M a k e r s Vi s e
Fr e e A n gl e T a bl e
W
E D M T o ol M a r k e r Vi s e ( S T AI N L E S S)
B 18
B 13
T o ol M a k e r s Vi s e
B 16
Si n e B a r
Pr e ci si o n U ni v e r s al A n gl e Vi s e
Fr e e A n gl e T a bl e
V A V- 4 J, 5 J
B 16
E D M T o ol M a r k e r Vi s e ( S T AI N L E S S)
B 20
B 22
T o ol M a k e r Vi s e ( S T AI N L E S S)
V S T V- 1 0 V
V E H- 2 0
B 17
P r e ci si o n Si n e Vi s e
E D M T o ol M a k e r Vi s e ( S T AI N L E S S)
B 22
V E H- 2 0
V U A- 4 0 8, V U A- 5 1 0
V- S 2 5, S 5 0
B 21
B 23
Pr e ci si o n U ni v e r s al A n gl e Pl at e
Si n e B a r-I n c h
V S T V- 3 2 0 W
El e ct r o d e Vi s e
B 14
S V C- 1 0 0
V S T V- 1 5 0 W
B 23
Si n e Vi s e
W
V S T V- 1 0 0 W El e ct r o d e Vi s e ( St ai nl e s s)
B 11
S V B- 2 0 ~ 3 0
V U A- 3, V U A- 4
NE
V S- 1 0 0
B 20
B1 0
V D V- 2 0 ~ 4 0
V A V- 1 0 2 0, 1 3 2 5
V E H- 2 0 D S T o ol M a k e r Vi s e ( S T AI N L E S S)
T o ol M a k e r s Vi s e
V- V E 2 0 ~ V E 3 0
V- S 5 0 M, S 1 0 0 M
V S T V- 5 0 W
B 21
T o ol M a k e r s Vi s e
V C- 2 0 ~ 4 0
B 15
B1 0
V D V- 2 0 ~ 4 0
V U A- E R 4 0
S V S- 1 0 0
B 19
B 12
NE
V U A- 1 0 0 J
B 17
T o ol M a k e r Vi s e
V M V- 1 5 ~ 6 0
S V D- 2 0 0 ~ 3 0 0
B 15
B 09
T o ol M a k e r Vi s e ( S T AI N L E S S)
V B S T- 3 0 El e ct r o d e H ol d e r
B 23
T o ol M a k e r Vi s e ( S T AI N L E S S)
V S T V- 2 0 El e ct r o d e H ol d e r
V R A- 2 0 ~ 1 0 0
P R O D U C T S U N D E R 1 0 0 % S T RI C T Q. C. Q U A LI T Y G U A R A N T E E D
B 22
B 23
El e ct r o d e H ol d e r
V R A- 2 0 ~ 1 0 0
B S E RI E S
E D M P art s
B 24
G RI N DI N G M A C HI N E A C C E S S O RI E S E D M Wi r e ( B R A S S & C O P P E R)
B 25
Wi r e Di e s G ui d e
B 25
Wi r e Di e s G ui d e
B 25
V E W- 1 0 H ~ 3 0 S
M118 ~ F12 1
F101 ~ F124
Z- 1 4 1
B 25
B 25
B 25
B 26
Wi r e Di e s G ui d e
H- 1 0 2
A nl e Pl at e / Bl o c k
B 27
F- 1 2 0 A n gl e Pl at e
V A P- 1
B 28
B 27
B 28
V- 5 V A, 3 V A- S, 4 V A- S, 5 V A- S
A B- 1 3 0
B 29
B 30
Pr e ci si o n A n gl e Bl o c k s
A B- 1 1 3
V- Bl o c K
V- Bl o c k Wit h Cl a m p s
V B C- 1 9 5
B 32
V B C- 2 4 3
V- Bl o c k Wit h Cl a m p s
Wi r e Di e s G ui d e
F- 1 2 4 A n gl e Pl at e
V A P- 2 Pr e ci si o n V Bl o c k
B 31
Wi r e Di e s G ui d e
B 27
A n gl e Pl at e
V A P- 3 Pr e ci si o n A n gl e Bl o c k s
B 28
U ni v e r s al A n gl e Bl o c k S et
B 30
El e ct r o d e ( C o p p e r & B r a s s Pi p e El e ct r o d e)
B 28
Mi c r o- A dj u st a bl e A n gl e Pl at e
B 29
B 30
Mi cr o m et ri c T a n g e nt B ar & A n gl e G a u g e Bl o c k S et
P r e ci si o n St e el A n gl e Pl at e s
B 32
B 32
B 32
B 32
V B C- 0 0 9
V- Bl o c k Wit h Cl a m p s
B 29
S oli d A n gl e Pl at e s
A B- 1 6 7
B 31
V B C- 0 0 3
P r e ci si o n V Bl o c k
V- 5 V A, 3 V A- S, 4 V A- S, 5 V A- S
V R S- 3 3, 4 4, 4 6, 8 5, 1 2 0 6
V B C- 1 9 6, V B C- 1 9 7
E D M Filt e r F o r E D M ( Oil)
B 27
F S- 2 0 4, 2 0 6, 2 0 8 V- Bl o c k Wit h Cl a m p s
B 26
N H- 0 1, 0 9, 0 9 S, 6 0 0 L
S S- 3 0 4, 3 0 6, 3 0 8, 3 1 0, 3 1 2 V- Bl o c k Wit h Cl a m p s
Wi r e Di e s G ui d e
V E B/ V E P/ V E S ~
A B- 1 6 6 S q u ar e
B 25
S- 1 0 3, S- 1 1 1
V A P M- 1 ~ 3
A B- 1 6 3, 1 6 4 H a r d e n e d St e el S q u ar e s
Wi r e Di e s G ui d e
B 30
P r e ci si o n St e el A n gl e Pl at e s
V R S- 3 3, 4 4, 4 6, 8 5, 1 2 0 6
V- Bl o c k Wit h Cl a m p s
V B C- 0 0 6 V- Bl o c k Wit h Cl a m p s
V B C- 0 0 9
S A L E S P R O G A M I S O V E R 1 0 0 0 I T E M S O F A C C E S S O RI E S
G RI N DI N G M A C HI N E A C C E S S O RI E S
B S E RI E S
T a n gi m ati c D r e s s e r / A n gl e D r e s s e r
B 33
T a n gi m ati c D r e s s e r
B 33
T a n gi m ati c D r e s s e r
B 33
S m all
Mi d.
Bi g
V- T D A
V- T D A
V- T D A
B 33
R a di u s A n d A n gl e Dr e s s er
V- T D B
B 36
U ni v e r s al W h e el Dr e s s e
V- T D C O pti c al R a di u s A n gl e Dr e s s e
V- T D T
B al a n ci n g St a n d
B 37
B 34
B 36
M at c o Si n e D r e s s e r
B 37
B 36
P r e ci si o n d u pl e x Dr e s sr
B 38
T a n gi m ati c D r e s s e r H a n d y Ty p e
B 35
R a di u s A n d A n gl e Dr e s s er
V- T D G M at c o Si n e D r e s s e r r
V- 5 0 D W h e el H a n g e r
B 33
V- T D H
V- T D F
V P- 5 0 W h e el H a n g e r
B 35
T a n gi m ati c D r e s s e r
B 37
B 38
R a di u s A n d A n gl e Dr e s s er
V- T D E Di a m o n d W h e el Dr e s s e
V- T D D G ri n di n g W h e el Fl a n g
B 35
B 37
M ot o r t y p e C B N Fl at W h e el D r e s s e r
V- T D M- 1, 2 G ri n di n g W h e el Fl a n g
B 38
G ri n di n g W h e el Fl a n g
V W H- 2 4, 3 2
V W H- 2 4, 3 2
F K T- 2 5 0, F T A- 3 5 0
F K T- 2 5 0, F T A- 3 5 0
F K T- 2 5 0, F T A- 3 5 0
B 38
B 38
B 38
B 38
B 38
G ri n di n g W h e el Fl a n g
F K T- 2 5 0, F T A- 3 5 0
W B S- 3 0 0
B 38
B 38
D ri vi n g C a r ri e r
V D C- 1 3 ~ 1 0 0
W h e el B al a n ci n g St a n d
L B S- 1 0 0 D ri vi n g C a r ri e r
V D C- 1 3 ~ 1 0 0
V E R T E X, E S T A B LI S H E D I N 1 9 7 8.
L e v el B all a n ci n g St a n d
L B S- 3 5 0
L e v el B all a n ci n g St a n d
D ri vi n g C a r ri e r
V D C- 1 3 ~ 1 0 0
B S E RI E S
M a g. Si n e / M a g. Pl at e S y st e m
B 39
G RI N DI N G M A C HI N E A C C E S S O RI E S Si n e Pl at e
V- 4 7 ~ 6 1 2 0
B 41
A dj u st a bl e Si n e Pl at e Wit h Fi n e P ol e M a g n eti c C h u c k
V- 6 6 S A
M a g n eti c / Pl at e/ C h u c k / Bl o c k S y st e m
B 42
B 39
C o m p o u n d Si n e Pl at e
M a g n eti c Si n e Pl at e
B 40
M a g n eti c Si n e Pl at e Wit h Fi n e P ol e
B 40
M a g n eti c Si n e Pl at e Wit h Fi n e P ol e
V- 4 7 S ~ 6 1 2 S
V- 4 7 M ~ 6 1 2 M
V- 4 7 M F ~ 6 1 2 M F
V- 4 7 M F ~ 6 1 2 M F
B 41
B 41
B 41
B 41
A dj u st a bl e Si n e Pl at e Wit h Fi n e P ol e M a g n eti c C h u c k
V- 6 6 S A R ot a r y P e r m a n e nt M a g n eti c Pl at e
B 40
B 42
R ot ar y Fi n e P ol e P er m a n e nt M a g n eti c Pl at e
D o u bl e W a y Si n e Pl at e Wit h P er m a n e nt M a g n eti c C h u c
D o u bl e W a y Si n e Pl at e Wit h Fi n e P ol e M a g n eti c C h u c k
D o u bl e W a y Si n e Pl at e Wit h Fi n e P ol e M a g n eti c C h u c k
V- 4 7 M S ~ 6 1 2 M S
V- 4 7 M S F ~ 6 1 2 M S F
V- 4 7 M S F ~ 6 1 2 M S F
B 42
B 43
B 43
Hi- P o w er Mi ni T y p e P er m a n e nt M a g n eti c Pl at e
A n g ul a r P e r m a n e nt M a g n eti c Pl at e
Mi d dl e Pit c h P e r m a n e nt M a g n eti c C h u c k
V L U- 5 1 0 B, 6 1 2 B, 6 1 8 B
V L U- 4 0 7 B F ~ 6 1 8 B F
V G- 4 0 4 H, 4 0 7 H, 4 1 0 H
V G- 4 0 7 ~ 1 2 2 4
V G F- 1 0 1 8 B ~ 1 5 3 0 B S
B 44
B 44
B 44
B 45
B 45
Fi n e P ol e M a g n eti c Pl at e
R o u n d T y p e M a g n eti c Pl at e
Fi n e P ol e R o u n d T y p e M a g n eti c Pl at e
St a n d a r d P ol e El e ct r o M a g n eti c C h u c k
S u p e r- P o w e rf ul El e ct ri c M a g n eti c C h u c k s
V R T W- 1 0 1 8 A ~ 1 3 2 5 S
V G D- 0 6, 0 8, 1 0, 1 2
V G D W- 6, 8, 1 0, 1 2
V E M- 1 5 3 0 A ~ 5 0 1 0 0 A
V E M- 2 0 4 0 Z ~ 6 0 1 0 0 Z
B 46
B 46
B 46
B 46
B 46
C h u c k C o nt r oll e r ( F o r R e ctif y & D e m a g n eti z e)
V C C- 7 0 5
B 47
M a g n eti c Tr a n si sti n g Bl o c k
V C P- D, 1
B 48
V C P- 1 0
C h u c k C o nt r oll e r ( F o r R e ctif y & D e m a g n eti z e)
V C C- 8 0 5 A, 8 1 5
V C C- 8 2 0
B 47
B 47
M a g n eti c Tr a n si sti n g Bl o c k
V C P- 2 M a g n eti c St e el S h e et S e p a r at o r
B 48
V C P- 1 1
C h u c k C o nt r oll e r ( F o r R e ctif y & D e m a g n eti z e)
V R M- 1 0 M a g n eti c Tr a n si sti n g Bl o c k
V C P- 3 M a g n eti c St e el S h e et S e p a r at o r
B 48
V C P- 1 5
V a ri a bl e S p e e d R ot a r y M a g n eti c C h u c k
B 47
V R M- 8 M a g n eti c Tr a n si sti n g Bl o c k S e
V C P- 6 M a g n eti c C hi p C oll e ct e r
B 48
V M S- 7 B
V a ri a bl e S p e e d R ot a r y M a g n eti c C h u c k
B 47
M a g n eti c A dj u st a bl e Li n k o r
V C P- 5 M a g n eti c S e p a r ati n g B a r U nit
B 48
M a g n eti c S e p a r ati n g B a r U nit
V M S- 9 B
S A L E S T H E S E RI E S O F A C C E S S O RI E S T O M O R E T H A N 6 0 C O U N T RI E S
G RI N DI N G M A C HI N E A C C E S S O RI E S
B S E RI E S
M a g n eti c T o ol s S y st e m
B 49
P e r m a n e nt- El e ct r o M a g n eti c C h u c k
B 50
P e r m a n e nt- El e ct r o M a g n eti c C h u c k
B 51
V P E- 2 5 4 0 ~
V P E- 4 0 1 0 0 ~
V M L- 1 0 0
B 51
B 51
B 53
P e r m a n e nt M a g n eti c Lift e r ( O N/ O F F T y p e)
V M L- 1 0 0 0
B 53
V M L- 2 0 0 0 M a g n eti c H ol d e r
V M L- 8 0
B 55
D e m a g n eti z e r
C hi p c oll e ct o r Mi ni H a n d y Ty p e
B 55
D e m a g n eti z e r
B 56
M a g n eti c V Bl o c k
M a g n eti c V Bl o c k
B 57
M a g n eti c V Bl o c k
B 58
B 53
V C P- 3 1, 3 2
M a g n eti c Lift e r
B 53
B 54
B 54
B 54
D e m a g n eti z e r
B 55
B 56
B 0
B 58
V C P- 3 1, 3 2
D e m a g n eti z e r
V D M- 5 0 D e m a g n eti z e r
B 55
B 56
Mi ni T y p e D e m a g n eti z e r
B 57
C hi p C oll e ct o r Wit h Fl e xi bl e A r m
B 58 W
V C P- 4 0
B 55
T u n n el t y p e D e m a g n eti z er A n d M a g n eti z er
B 56
C hi p C oll e ct o r Wit h LE D
V C C- 2 1 M a g n eti c V Bl o c k
V C P- 2 7 M a g n eti c S q u a r e Bl o c k
D e m a g n eti z e r
V D M- 1 5 0, 2 5 0, 4 5 0
V C C- 2 0 M a g n eti c V Bl o c k
B M a g n eti c H ol d e r
V D M- 6 8
V D M- 9 C hi p C oll e ct o r Wit h W h e el s
P e r m a n e nt M a g n eti c Lift e r ( O N/ O F F T y p e)
V M L- 6 0 0
V M L- 1 5 0
NE
V C P- 2 8, 2 9, 3 0
B 51
V G P- 1 0 0, 2 0 0
V C P- 2 6 M a g n eti c S q u a r e Bl o c k
P e r m a n e nt M a g n eti c Lift e r ( O N/ O F F T y p e)
V G P- 1 0 0, 2 0 0
V C C- 1 9
V C P- 2 6 M a g n eti c V Bl o c k
M a g n eti c Lift e r
V D M- 1 4 C hi p C oll e ct o r Wit h A dj u st a bl e A r m T y p e
B 51
V M L- 3 0 0
V D M- 4 0
V C C- 1 7 A
V C P- 2 5
B 57
M a g n eti c H ol d e r
V D M- 1 1
V C C- 1 6
B 57
B 53
V M L- 1 4 0
V D M- 8
B 56
P e r m a n e nt M a g n eti c Lift e r ( O N/ O F F T y p e)
P e r m a n e nt M a g n eti c Lift e r ( O N/ O F F T y p e)
B 57
M a g n eti c V Bl o c k
V C P- 2 8, 2 9, 3 0 M a g n eti c S q u a r e H ol d e r
B 58 NE
W
V C P- 4 0
T H E BI G G E S T M A N U F A C T U R E R & E X P O R T E R O F M A C HI NI N G T O O L A C C E S S O RI E S
M a g n eti c S q u a r e H ol d e r
B S E RI E S
G RI N DI N G M A C HI N E A C C E S S O RI E S
M a g n eti c T o ol s S y st e m
B 59
B 59
B 59
B 59
B 60
M a g n eti c T o ol s
M a g n eti c T o ol s
M a g n eti c T o ol s
M a g n eti c T o ol s
M a g n eti c T o ol s
V M B- B, V M B- 0 1
V M B- 0 2, V M B- 0 3
V M B- 1 8 1
V M B- 1 8 5
V M B- 7 0
B 60
B 60
B 60
B 61
B 61
M a g n eti c T o ol s
M a g n eti c T o ol s
M a g n eti c T o ol s
M a g n eti c T o ol s
M a g n eti c T o ol s
NE
V M B- 1 0 6
V M B- 1 0 6 H, V M B- 1 6 0
V M B- 1 8 0, V M B- 1 8 2 H
W
NE
V M B- 5 1, V M B- 5 5
W
V M B- 5 6, V M B- 5 8
Di al G a n u g e St a n d
B 62
B 62
B 62
B 63
B 63
M a g n eti c T o ol s
M a g n eti c T o ol s
M a g n eti c T o ol s
M a g n eti c T o ol s
M a g n eti c T o ol s
V M B- 0 6, V M L- A
V M L- B, C
NE
V M F- 1 1 2
V H- 7 0
W
V M F- 1 0 2 A, V M F- 1 1 4
B 64
B 64
B 64
B 65
B 65
M a g n eti c T o ol s
M a g n eti c T o ol s
S q u a r e M a g n eti c H ol d e r B a s e
M a g n eti c T o ol s
M a g n eti c T o ol s
V M H- 5 4
V M H- 6 2
NE
V M L- M
V M B - 0 0, 0 9, 1 0, 1 1, 1 2
W
V M B- 6 1 ~ 6 4
B 65
B 65
B 65
B 65
B 66
M a g n eti c T o ol s
M a g n eti c T o ol s
M a g n eti c T o ol s
M a g n eti c T o ol s
T hi n R o u n d M a g n et
W
NE
V M H- 6 3
B 66 NE
V M H- 6 4 T hi n R o u n d M a g n et
W
NE
V M H- T 6 6
B 67
V C C- 3 0, 3 1
B 66
V M H- 6 5 R o u n d M a g n et H ol d e r
W
NE
V M D- R 3 0, R 5 0 M a g n eti c Cl a m p
B 67
V C C- 3 3, 3 4
B 66
R o u n d M a g n et H ol d e r
W
B 68
V C S- 5 0 0
V M H- D 1 3, 3 0
B 66
B 67
NE
V M D- S 1 4
M a g n eti c Q ui c k Cl a m p
V M S- 1/ 4, 3/ 8 R o u n d M a g n et H ol d e r
W
NE
V M D- S 2 0 M ulti- F u n cti o n Mi st C o ol a nt S y st e m
B 68
V M H- 7 1
M a g n eti c T a p p e r
W
V T M- 1 3 Mi st C o ol a nt Wit h M a g n eti c B a s e
B 68
Di a m o n d D r e s si n g T o ol s
V D R- 1 0 1 0 ~ 5 0 1 2
P R O D U C T S U N D E R 1 0 0 % S T RI C T Q. C. Q U A LI T Y G U A R A N T E E D
G RI N DI N G M A C HI N E A C C E S S O RI E S
B S E RI E S
N o z zl e Kit
B 69
A dj u st a bl e M a g n eti c N o z zl e Kit
C L- 0 3
B 69
A dj u s t a bl e C o ol a n t Hose
C o ol a nt H o s e
1/ 4 ” S y st e m
B 71
1/ 2 ” S y st e m
B 74
P a p e r Filt e r
P a p e r Filt e r
B 75
C o ol a nt T a n k
M C- 2 0 ~ 6 0
B 77
B 77
C o ol a nt T a n k
V C- 6 0 1
Oil S ki m m e r
V O S- 8 0 0
1/ 4 ” S y st e m
B 78
V O S- 8 1 0
B 69
B 72
3/ 8 ” S y st e m
B 74
A dj u st a bl e C o ol a nt H o s e s & V al v e s
1/ 4 ” S y st e m
C o ol a nt T a n k
B 75
3/ 8 ” S y st e m
B 70
M a g n eti c S e p a r at o r
A dj u st a bl e C o ol a nt H o s e s & V al v e s
B 70
A dj u st a bl e C o ol a nt H o s e s & V al v e s
V H K- 1/ 4 A, 3/ 8 A, 1/ 2 A
B 73
B 73
1/ 2 ” S y st e m
B 74
B 76
1/ 2 ” S y st e m
V- 8 4 0 4 0 ~ 3/ 4 ” S y st e m
B 74
3/ 4 ” S y st e m
V- 8 6 0 6 0 ~ M a g n eti c S e p a r at o r & P a p e r Filt e r
M C + P F- 2 0 ~ 6 0
B 77
B 77
B 78
A dj u s t a bl e C o ol a n t Hose
V H K- 1/ 4, 3/ 8, 1/ 2, 3/ 4
M C- 8 0 ~ 1 6 0 D u st- S u cti o n A n d C o ol a nt T a nt
B 69
C L- 0 1
V- 8 6 0 6 0 ~
V C- 6 0 3 Oil S ki m m e r Wit h B elt Ty p e
A dj u st a bl e M a g n eti c N o z zl e Kit
V- 8 4 0 4 0 ~
V- 8 6 0 6 0 ~ M a g n eti c S e p a r at o r
B 69
C L- 0 2, 0 2 A
V- 8 2 0 2 0 ~
V C- 6 0 2 Oil S ki m m e r Wit h B elt Ty p e
A dj u st a bl e M a g n eti c N o z zl e Kit
S- 1
V- 8 3 0 3 0 ~
P F- 2 0 ~ 1 6 0
B 78
A dj u st a bl e C o ol a nt H o s e s & V al v e s
V- 8 2 0 2 0 ~
V- 8 4 0 4 0 ~
B 75
B 69
B 69
C L- 0 2
L- 2
V- 8 2 0 2 0 ~
B 73
A dj u st a bl e M a g n eti c N o z zl e Kit
C L- 0 3 A
C L- 0 1 A
B 71
B 69
B 76
M a g n eti c S e p a r at o r & P a p e r Filt e r
M C + P F- 8 0 ~ 1 6 0
D u st- S u cti o n A n d C o ol a nt T a nt
V C- 6 0 6 Oil S ki m m e r Wit h B elt Ty p e
V O S- 8 2 0
S A L E S P R O G A M I S O V E R 1 0 0 0 I T E M S O F A C C E S S O RI E S
B 78
V O S- 8 3 0
Oil S ki m m e r Wit h B elt Ty p e
B 78
V O S- 8 5 0
Oil S ki m m e r Wit h R ot a r y Pl at e T y p e
G RI N DI N G M A C HI N E A C C E S S O RI E S
B S E RI E S
G a u g e Bl o c k
B 79
Pr e ci si o n G a u g e Bl o c k s
B 79
C e r a mi c G a u g e Bl o c k s
B 80
C e r a mi c G a u g e Bl o c k s
B 80
C e r a mi c G a u g e Bl o c k s
B 80
C e r a mi c G a u g e Bl o c k s
S u r f a c e Pl at e
V G B- 1 1 2- 0 ~
V G B- 1 1 2 T- 0 ~
V G B- 1 1 2 C- 0 ~
V G B- 8 7 C- 0 ~
V G B- 8 7 C- 0 ~
B 81
B 81
B 82
B 82
B 82
C a st I r o n S u rf a c e Pl at e s
V S- 0 1 ~ 1 3
G r a nit e R ul e r / Bl o c k / St a n d / Pi n G a u g e
B 83
G r a nit e S q u a r e R ul e r s
C a st I r o n S u rf a c e Pl at e s St a n d
V S G D- 0 9 N ~ 2 1 N
V S G D- 0 9 N ~ 2 1 N
B 83
B 83
B 83
B 83
G r a nit e S q u a r e R ul e r s
V S R- 6 3 0
B 83
B 84
B 84
V G T- 3 0 0 ~ 6 0 0
V G V- 6 3
B 84
B 84
G r a nit e V- Bl o c k
G r a nit e St r ai g ht R ul e r s
V S R- 1 0 0 0 G r a nit e V- Bl o c k
V G V- 1 0 0 Pr e ci si o n S q u a r e L e v ei
B 85
G r a nit e St r ai g ht R ul e r s
G r a nit e S u rf a c e St a n d
B 84
B 85
T e st e r A r m B a s e
V S L- 2 0 0 A, 3 0 0 A
B 85
T e st e r A r m B a s e
V H- 4 1 ~ 4 3
B 85
H o ri z o nt al L e v eli n g I n st r u m e nt
B 84
V LI- 2 0 0 A, 3 0 0 A
B 85
B 85
B 85 NE
V T B- 1 2 0
B 86
V CI- 4 0 0
V T B- 1 2 0 C o n c e nt ri c T e st St a n d
B 86
V CI- 2 0 0
V T B- 1 2 0 C o n c e nt ri c T e st St a n d
B 86
G r a nit e S u rf a c e St a n d
V P G- 0 B ~ 1 0 B
G r a nit e S u rf a c e St a n d
W
V H- 4 8 ~ 5 0 T e st e r A r m B a s e
B 86
Cl e a ni n g P a p e r
W
V T B- 1 2 1 Pi n G a u g e
H o ri z o nt al L e v eli n g I n st r u m e nt
V LI- 2 0 0 A, 3 0 0 A
V H- 4 5 ~ 4 7 T e st e r A r m B a s e
G r a nit e Tri a n gl e R ul e r
V G T- 3 0 0 ~ 6 0 0
NE
V S L- 2 0 0 A, 3 0 0 A
Bl a c k G r a nit e S u rf a c e Pl at e s St a n d
V S G- 0 4 ~ 2 1
V Q R- 4 0 0, 5 0 0
Pr e ci si o n S q u a r e L e v ei
Bl a c k G r a nit e S u rf a c e Pl at e s St a n d
V S D- 0 9 N ~ 1 3 N
V Q R- 4 0 0, 5 0 0 G r a nit e Tri a n gl e R ul e r
Bl a c k G r a nit e S u rf a c e Pl at e s
B 86
P- 1 0 0 0 Pi n G a u g e
V P G- 0 B ~ 1 0 B
V E R T E X, E S T A B LI S H E D I N 1 9 7 8.
G RI N DI N G M A C HI N E A C C E S S O RI E S
B S E RI E S
M e a s u ri n g I n st r u m e nt S y st e m
B 87
Pr e ci si o n V e r ni e r C ali p e r
B 87
Pr e ci si o n V e r ni e r C ali p e r
B 87
Di git al El e ct r o ni c C ali p e r
B 87
Di git al El e ct r o ni c C ali p e r
B 87
V V C- 6” ~ 1 2”
V V C- 6” ~ 1 2”
V E C- 6” ~ 1 2”
V E C- 6” ~ 1 2”
V D C- 6 ~ 1 2
B 87
B 87
B 87
B 87
B 87
Di al C ali p e r
V D C- 6 ~ 1 2
B 87
Mi c r o m et e r St a n d
V H- 1 9
B 88
VI M- 0 5 3 0 ~ 1 0 0 1 2 5
B 87
B 88
B 88
B 88
B 88
A n gl e L e v el
B 89
B 89
V A L- 6 0
Gauge
V H T- 2 6 0
B 91
Mi c r o m et e r St a n d
S c r e w Pl u g G a u g e
V P G- 3 M ~ 3 6 M
B 90
Di al I n di c at o r
V DI- 1 H ei g ht Di al C ali p e r
B 88
A n gl e L e v el
B 89
H ei g ht Di al C ali p e r
B 91
V S R- 1 5 0, 2 0 0, 3 0 0
V S D- M 3 ~
B 91
B 91
S c r e w Pl u g G a u g e
V P G- 3 M ~ 3 6 M
V R G- 3 ~ 3 6
B 88
H ei g ht V e r ni e r C ali p e r
V H G- 1 2, 1 8, 2 0, 2 4 Mi c r o m et e r St a n d
V M H- 2 5 A n gl e L e v el
V A L- 1 0
St ai nl e s s St e el R ul e r
Di al T e st I n di c at o r
V DI- 0. 8 A
V H D- 1 2, 2 4
V A L- 5 0
H a r d n e s s T e st e r
I n si d e Mi c r o m et e r
VI M- 0 5 3 0 ~ 1 0 0 1 2 5
V H D- 1 2, 2 4
A n gl e L e v el
I n si d e Mi c r o m et e r
V O M- 0 0 2 5 ~ 1 0 0 1 2 5
V H- 1 9 H ei g ht V e r ni e r C ali p e r
O ut si d e Mi c r o m et e r
V O M- 0 0 2 5 ~ 1 0 0 1 2 5
V H G- 1 2, 1 8, 2 0, 2 4
B 90
O ut si d e Mi c r o m et e r
Di al C ali p e r
B 89
A n gl e L e v el
V A L- 3 0 T h r e a d Si z e & D e pt h Gauge
B 91
B 91
A n gl e L e v el
V A L- 2 0 T h r e a d Si z e & D e pt h Gauge
V S D- M 3 ~ S c r e w Ri n g G a u u g e
B 89
B 91
V S D- M 1 0 S c r e w Ri n g G a u u g e
V R G- 3 ~ 3 6
S A L E S T H E S E RI E S O F A C C E S S O RI E S T O M O R E T H A N 6 0 C O U N T RI E S
T h r e a d Si z e & D e pt h Gauge
C S E RI E S
E R C oll et C h u c k S y st e m
C 01
T O O LI N G S Y S T E M E R S p ri n g C oll et C h u c k S y st e m
C 03
E R S p ri n g C oll et C h u c k S y st e m
C 07
E R S p ri n g C oll et C h u c k S y st e m
C 08
E R- T y p e C o ol a nt C oll et
C 09 NE
E R- 8/ 1 1/ 1 6/ 2 0
C 11
E R S p ri n g C oll et C h u c k S y st e m
V- 1 0 1 ~ 2 2 6
C 15
C 12
E R- 2 5/ 3 2/ 4 0/ 5 0
E R S p ri n g C oll et C h u c k S y st e m
V- 2 3 1 ~ 2 5 0 E R S p ri n g C oll et C h u c k S y st e m
C 15
C 13
E R- L S y st e m
E R S p ri n g C oll et C h u c k S y st e m
V- 3 0 1 ~ 3 1 8 E R S p ri n g C oll et C h u c k S y st e m
C 15
C 14
C 16
E R S p ri n g C oll et C h u c k S y st e m
C 14
C 17 NE
V- 5 7 1 E R S p ri n g C oll et C h u c k S y st e m
W
C 19
Cl a m pi n g W r e n c h F o r C oll et s
V- 8 2 0 ~ 8 2 8
C 23
C 17 NE
V- 5 4 1- 5 6 0 A
S T/ E R St r ai g ht S h a n k Wit h D o u bl e H e a d S pi n dl e
V- 5 7 8 E R S p ri n g C oll et C h u c k S y st e m
E R S p ri n g C oll et C h u c k S y st e m
C 17
C 25
V- 7 4 1 ~ 7 4 4
Cl a m pi n g N ut s F o r C oll et s
C 18
W
V- 5 4 1- 5 6 0 A C Cl a m pi n g N ut s F o r C oll et s
C 19
V- 6 9 1 A- 6 9 8 D
V- 8 0 0 ~ 8 1 1 B
V- 8 0 0 ~ 8 1 1 B
V- 8 2 0 ~ 8 2 8
C 20
C 20
C 21
C 22
E R S p ri n g C oll et C h u c k S y st e m
E R S p ri n g C oll et C h u c k S y st e m
V- 7 0 0 ~ 7 2 7
V- 7 0 0 ~ 7 2 7
V- 7 7 0- 7 4 2 A
C 23
C 23
C 23
S T/ E R St r ai g ht S h a n k Wit h D o u bl e H e a d S pi n dl e
U M T YPE V- 8 3 0 ~ 8 3 7
E R- S K T a p e r S h a n k
V- 6 0 1- 6 6 3
E R S p ri n g C oll et C h u c k S y st e m
Cl a m pi n g W r e n c h F o r C oll et s
W
M T YPE V- 8 3 0 ~ 8 3 7
C 18
E R C oll et
V- 4 0 1 ~ 4 5 2
NE
V- 5 3 0- 5 2 4
W
E R- G B
V- 4 0 1 ~ 4 5 2 E R S p ri n g C oll et C h u c k S y st e m
E R- G B T a p C oll et s
C 25
S T/ E R St r ai g ht S h a n k Wit h Si n gl e H e a d S pi n dl e
M T YPE V- 8 4 1 ~ 8 4 8
E R- S K T a p e r S h a n k
V- 7 4 5 ~ 7 4 9 A
C 25
V- 7 5 1 ~ 7 6 3
E R S p ri n g C oll et C h u c k S y st e m
V- 7 3 7- 7 9 9 S T/ E R St r ai g ht S h a n k Wit h Si n gl e H e a d S pi n dl e
C 24
E R C oll et C h u c k S y st e m
U M T YPE V- 8 4 1 ~ 8 4 8
E R- S K T a p e r S h a n k
E R S p ri n g C oll et C h u c k S y st e m
C 26
V- 8 7 0 ~ 8 7 6
B T 3 0, 4 0- E R 1 1 / 1 6 / 2 0 / 2 5 / 3 2 E R S p ri n g C oll et C h u c k S y st e m
C 26
E R S p ri n g C oll et C h u c k S y st e m
V- 8 7 8 ~ 8 9 0
T H E BI G G E S T M A N U F A C T U R E R & E X P O R T E R O F M A C HI NI N G T O O L A C C E S S O RI E S
T O O LI N G S Y S T E M
C S E RI E S
O Z C oll et C h u c k S y st e m
C 27
Milli n g C h u c k
C 28
Milli n g C oll et C h u c k Kit
V B- M T/ R 8 / N T
V B- 1 0 1 ~ 1 1 6
C 31
C 32
Milli n g C oll et C h u c k
Milli n g C oll et C h u c k
C 29
DI N 6 3 8 8 C oll et F o r Milli n g C h u c k
C 30
DI N 6 3 8 8 N ut s & Wr e n c h
O Z- 2 5 N, 3 2 N, 2 5 W, 3 2 W
V B- 2 3 1 ~ 2 5 2
C 33
C 34
C 34
Milli n g C oll et C h u c k
Milli n g C oll et C h u c k
C Ty p e C h u c k
V B- 2 2 6- 2 5 9
V B- 1 3 0- 1 6 7 B
V B- 2 7 1- 2 9 1
C 35
C 35
C 36
C 37
M ulti- L o c k Milli n g Chuck
Milli n g C oll et C h u c k
O Z- 3 2 0 6 ~ 3 2 4 7, O Z- 2 5 0 3 ~ 2 5 4 0
V B- B T 4 0 / 5 0 M ulti- L o c k Milli n g Chuck
C 31
M ulti- L o c k Milli n g Chuck
Milli n g C oll et C h u c k
V B- 2 6 1- 2 6 6 C- 2 0, 2 5, 3 2, 4 2 C oll et
C 37
C- 2 0, 2 5, 3 2, 4 2 Wr e n c h s
5 C R - 8 , M T- C o l l e t
V B- 4 3 1 ~ 4 5 2
V B- 4 3 1 ~ 4 5 2
V B- 3 4 4 A ~ 5 7 8
C- 2 0, 2 5, 3 2, 4 2
C- 2 0 W, 2 5 W, 3 2 W, 4 2 W
C 38
C 38
C 39
C 40
C 40
Q ui c k- C h a n g e T o oli n g S y st e m
Q ui c k- C h a n g e T o oli n g S y st e m
T G 1 0 0 C oll et S y st e m
V D- 1 0 3 , 1 0 5
V D- 1 1 3 , 1 1 5
T G 1 0- 0 1 ~ 5 7
V E- 5 C S
C 40
C 40
C 41
C 41
5 C C oll et S y st e m
R 8 C oll et S y st e m
U 2 C oll et S y st e m
C 41
M T 3 C oll et S y st e m
V E- 5 C N U 2 C oll et S y st e m
R 8- 3 ~ 2 0 / 1/ 8 ~ 3/ 4
V E- U 2- 3 ~ 1 6 / 1/ 8 ~ 5/ 8
V E- U 2- 1 8 ~ 2 5
C 42
C 42
C 42
D rill C h u c k s A r b o r
D rill C h u c k s A r b o r
D rill C h u c k s A r b o r
C 2 0, 2 5, 3 2
Sl e e v e
R8
M T 3, 4, 5
M T 3- 4 ~ 2 0 / 1/ 8 ~ 3/ 4
V J- 1 2 0 ~ 1 2 4
V J- 1 2 6 ~ 1 3 8- 2
V J- 1 3 9 ~ 1 4 3
C 43
C 43
C 43
C 43
M o r s e T a p e r Sl e e v e
V Q- 1 0 1 ~ 1 0 0- 3
M o r s e T a p e r Sl e e v e
V Q- 1 0 1 ~ 1 0 0- 3
M or s e T a p er E xt e n si o n S o c k et s
V Q- 1 1 1- 1 ~ 1 2 0
5 C C oll et S y st e m
N O. 2
N O. 1 V E- 5 C B
5 C C oll et S y st e m
M or s e T a p er E xt e n si o n S o c k et s
V Q- 1 1 1- 1 ~ 1 2 0
P R O D U C T S U N D E R 1 0 0 % S T RI C T Q. C. Q U A LI T Y G U A R A N T E E D
C 43
R 8 M or s e T a p er Sl e e v e
V Q- 1 2 1, 1 2 2, 1 2 3
T O O LI N G S Y S T E M
C S E RI E S
F a c e Mill
C 44
F a c e Mill A r b o r
C 44
F a c e Mill A r b o r
C 45
M o r s e T a p e r A d a pt e r
C 45
M o r s e T a p e r A d a pt e r
C 45 NE
W
A r b o r S y st e m
V F- 1 0 1 ~ 1 3 7
V F- 1 0 1 ~ 1 3 7
VI- 1 0 2 ~ 1 1 1
VI- 1 3 1 ~ 1 3 8- 4
V R A- N T 4 0
C 45
C 46
C 46
C 46
C 47
NE
Si d e C utt e r A r b o r
W
NE
V R A- R 8
C 48 NE
J a c o b s T a p e r D rill C h u c k Ar b or
N C U ni v e r s al A n g ul a r Head
T a n g F or M or s e T a p er Shank
W
V J- 1 0 3, 1 0 6, 1 0 9, 1 1 1, 1 1 2
V L- 1 1 0
C 49
C 49
Oil- F e e d H ol d e r / Sl o
H o ri z o nt al Milli n g Ar b or
NE
Si d el o c k E N D Mill H ol d e r
Si d e C utt e r A r b o r
N C Ri g ht A n gl e H e a d
W
V M T S- 2, 3, 4, 5
B T 4 0- R A E R 3 2- 1 8 5 ~
C 50
C 51
F a c e Mill A r b o r
D rill C h u c k H ol d e r/ AP U
W
B T 4 0- U A E R 2 5- 1 8 2 ~
B T 4 0 S L O 3 2 / 4 0, O C- 3 2 / 4 0
V N- 1 0 2 ~ 1 2 4
B T- 1 0 1 ~ 1 2 1, 1 5 0 ~ 1 6 6
B T- 1 8 0 ~ 1 8 8
C 51
C 52
C 52
C 52
C 53
M o r s e T a p e r A d a pt o r
J a c o b s T a p er Ar b or
L e v e r C h e c ki n g H ol d e r s
T e st A r b o r
Si d el o c k E n d Mill H ol d e r
P ull S t u d s
B T- 2 0 4 ~ 2 3 1, 2 3 6 ~ 2 4 4
B T- 3 1 5 ~ 3 3 3- 1
B T 4 0- M 8, B T 5 0- M 8
A 3 0, A 4 0, A 5 0
B T- 4 3 6 ~ 4 7 9
C 54
C 54
C 55
C 56
C 57
P ull St u d s B T
P ull St u d s
P ull St u d s DI N 6 9 8 7 2
P ull St u d s
P ull St u d s C A T
Mill H ol d e r
B T- 5 0 1 ~ 5 1 2
B T- 5 1 6 ~ 5 2 1
B T- 5 2 2 ~ 5 3 2
B T- 5 3 3 ~ 5 3 9
B T- 5 4 0 ~ 5 4 8, 5 5 6
C 58
C 61
C 61
C 62
C 62
C o m pl et e N C T o oli n g S et
F a c e Mill H ol d e r DI N 6 9 8 7 1 A
M o r s e T a p e r H ol d e rDI N 6 3 8 3
Si d el o c k E n d Mill H ol d e r DI N 6 9 8 7 1
Si d el o c k E n d Mill H ol d e r DI N 6 9 8 7 1
S K. C A T
DI N 6 9 8 7 1 A
DI N 6 9 8 7 1 A
DI N 6 9 8 7 1 A
DI N 6 9 8 7 1 A
V B T- 3 0- 0 7 2 0 ~
S K- 1 1 2 ~ 1 2 0
S K- 2 1 4 ~ 2 2 0
S K- 4 1 7 ~ 4 3 1
S K- 4 1 7 ~ 4 3 1
C 62
C 63
C 63
C 63
C 63
D rill C h u c k H ol d e r / A P U DI N 6 9 8 7 1 A
F a c e Mill H ol d e r
DI N 6 9 8 7 1 A S K- 5 1 1 ~ 5 1 6
Si d e L o c k H ol d e r s
US A C A T- 4 0 / 5 0- F M A ~
C A T- 4 0 / 5 0- S L ~
M o s e T a p e r H ol d e r s
US A C A T- 3 0 / 4 0 / 5 0- M T A ~
M o s e T a p e r H ol d e r s
US A C A T- 3 0 / 4 0 / 5 0- M T A ~
S A L E S P R O G A M I S O V E R 1 0 0 0 I T E M S O F A C C E S S O RI E S
T O O LI N G S Y S T E M
C S E RI E S
D C S y st e m
C 64
D C Hi g h S p e e d Sli m C h u c k S y st e m
C 64
D C Hi g h S p e e d Sli m C h u c k S y st e m
C 64
H S K S y st e m
B T 3 0 / 4 0- D C 6- 6 0, 9 0
B T 3 0 / 4 0- D C 6- 6 0, 9 0
D C 6- 2 ~
C 65
C 65
C 65
H S K- A 6 3, A 1 0 0( DI N 6 9 8 9 3 A) E R C oll et C h u c k s
H S K- A 6 3, A 1 0 0( DI N 6 9 8 9 3 A) E R C oll et C h u c k s
S m all C oll et Of Sli m C oll et C h u c k
C 64
S m all C oll et Of Sli m C oll et C h u c k
D C 6- 2 ~ H S K- A 6 3, A 1 0 0( DI N 6 9 8 9 3 A) O Z C oll et C h u c k s
C 65
C 64
S m all C oll et Of Sli m C oll et C h u c k
D C 6- 2 ~ H S K- A 6 3, A 1 0 0( DI N 6 9 8 9 3 A) O Z C oll et C h u c k s
C 65
H S K- A 6 3, A 1 0 0 M o r s e T a p e r H ol d e r s
DI N 6 9 8 9 2 A H S K- A 6 3 / A 1 0 0- E R ~
H S K- A 6 3 / A 1 0 0- E R ~
H S K- A 6 3 / A 1 0 0- O Z ~
H S K- A 6 3 / A 1 0 0- O Z ~
H S K- A 6 3 / A 1 0 0- M T A ~
C 65
C 66
C 66
C 66
C 66
H S K- A 6 3, A 1 0 0 F a c e Mill H ol d e r s
H S K- A 6 3, A 1 0 0 F a c e Mill H ol d e r s
H S K- A 6 3, A 1 0 0 F a c e Mill H ol d e r s
H S K- A 6 3, A 1 0 0 F a c e Mill H ol d e r s
H S K- A 6 3, A 1 0 0 Si d el o c k E n d Mill H ol d er
S K S y st e m
DI N 6 9 8 9 3 A
DI N 6 9 8 9 3 A
DI N 6 9 8 9 3 A
DI N 6 9 8 9 3 A
DI N 6 9 8 9 3 A
H S K- A 6 3 / A 1 0 0- F M A ~
H S K- A 6 3 / A 1 0 0- F M A ~
H S K- A 6 3 / A 1 0 0- F M B ~
H S K- A 6 3 / A 1 0 0- F M B ~
H S K- A 6 3 / A 1 0 0- F M B ~
C 72
C 72
C 72
C 67
S K S p ri n g C oll et S y st e m
C 71
B T- S K C oll et C h u c k S y st e m
K e yl e s D r ill C h u c k
S K- 6 / 1 0 / 1 6 / 2 0 / 2 5
S K B- 2 0 1 ~ 3 1 5
C 73
C 73
3 D- T a st e r
K N T T y p e K e yl e s s D rill C h u c k s
S T- S K St r ai g ht C h u c k
S K S- 2 1 0 ~ 2 1 4
C 74
I nt e g r at e d T y p e K e yl e s s D rill C h u c k s
S et Of S K C oll et A n d St r ai g ht C h u c k
S K S- 2 3 1 ~ 2 3 4
C 74
I nt e g r at e d T y p e K e yl e s s D rill C h u c k s
S K N ut A n d W r e n c h
S K N / S K W- 1 0 1 ~
C 74
I nt e g r at e d T y p e K e yl e s s D rill C h u c k s
V- 3 D- 0 5, 0 6
K N T- 8, 1 3, 1 6
I N T- 8 / 1 3 / 1 6- C A T 3 0, 4 0, 5 0
I N T- 8 / 1 3 / 1 6- C A T 3 0, 4 0, 5 0
B T/ S K / N T 4 0- V R L 1 3, 1 6
C 75
C 75
C 77
C 77
C 77
I nt e g r at e d T y p e K e yl e s s D rill C h u c k s
I nt e g r at e d T y p e K e yl e s s D rill C h u c k s
K e yl e s s D rill C h u c k s
K e yl e s s D rill C h u c k s
K e yl e s s D rill C h u c k s
S y st e m I N T- 8, 1 0, 1 3, 1 6 ~
C 78
K e yl e s s D rill C h u c k s
1 2 2 0 1- 1 ~ 1 2 2 0 5- 4
I N T- 8, 1 0, 1 3, 1 6 ~
C 78
K e y s St e el
14001 ~ 14009
V E R T E X, E S T A B LI S H E D I N 1 9 7 8.
110 15 ~ 110 3 4
110 61 ~ 110 7 5
110 61 ~ 110 7 5
C 79
C 79
C 80
K e y T y p e D rill C h u c k s
10 0 0 6 ~ 10 074
K e y T y p e D rill C h u c k s
10 0 0 6 ~ 10 074
K e y T y p e D rill C h u c k s
10001 ~ 10079
C S E RI E S
K e yl e s Drill C h u c k S y st e m
C 80
T O O LI N G S Y S T E M K e y T y p e D rill C h u c k s
C 80
K e y T y p e D rill C h u c k s
C 81 NE
K e y T y p e D rill C h u c k s St ai nl e s s
W
C 81 NE
K e yl e s s D rill C h u c k s St ai nl e s s
W
C 81 NE
K e y s F o r St ai nl e s s K e y T y p e D rill C h u c k
W
B o ri n g H e a d S y st e m
10001 ~ 10079
10001 ~ 10079
1 0 0 9 0 ~ 1 0 0 9 2- 3
1 6 0 0 1- 3 0, 3 1, 6 1
15001 ~ 15003
C 82
C 82
C 82
C 83
C 84
C 85
T a p e r S h a n k F o r B o ri n g H e a d s S e ri e s B S T, V B K
I n s e rt T y p e B o ri n g B a r
T a p e r S h a n k F o r B o ri n g H e a d s S e ri e s B S T, V B K
T a p e r S h a n k F o r B o ri n g H e a d s S e ri e s B S T, V B K
L a r g e Di a m et e r T wi nbit R o u g h B o ri n g
L a r g e Di a m et e r Fi ni s h B o ri n g H e a d
V T- B S 7 0- 4 0 0
V T- B 1 0 7 0 ~ 6 2 3 0
V R B200~900
VF B200~900
C 85
C 85
C 86
C 87
I n s e rt T y p e B o ri n g B a r
I n s e rt T y p e B o ri n g B a r
I n d e x a bl e T wi n- bit R o u g h B ori n g H e a d R B H
E xt e n si o n ( R e d u c e d)
B R B 1 6 0 8- 3 2 ~
B R B 1 8 1 0- 4 0 ~
B R B 2 0 0 8- 3 2 ~
V R B 2 5- 3 3 C ~
V B Q 2/ 3/ 4/ 5/ 6 ~
C 87
C 88
C 88
C 89
C 89
E xt e n si o n ( R e d u c e d)
I n d e x a bl e T wi n- bit R o u g h B ori n g H e a d R B H- L A
F B H Fi ni s h B o ri n g Head
F B H Fi ni s h B o ri n g Head
V B Q 1/ 2/ 3/ 4/ 5/ 6 ~
V R B25 ~ 900 ~
F B B- 2 0 ~ 1 5 0
F B B 4 4, 5 5, 6 6
C 91
C 92
C 92
C 94
NE
Pr e ci si o n Fi ni s h B o ri n g H e a d S et s
W
NE
Pr e ci si o n Fi ni s h B o ri n g H e a d S et s
W
NE
Mi c r o B o ri n g H e a d S et
W
NE
W
V B H E- B T / S K / N T / H S K
V B H 5 5- B T 4 0, 5 0
V B H 6 8- B T 4 0, 5 0
C 95
C 95
C 96
C 96
NE
W
NE
Hi g h Pr e ci si o n B o ri n g H e a d S et
Hi g h Pr e ci si o n B o ri n g H e a d S et
B R B1008 ~
Mi c r o B o ri n g H e a d S et
V B H D- B T / S K / N T / H S K Hi g h Pr e ci si o n B o ri n g H e a d S et
S m all Di a m et e r B o ri n g H e a d C BI 4
Hi g h Pr e ci si o n B o ri n g H e a d S et
C 97
U ni v e r s al B o ri n g A n d F a ci n g M a st e r H e a d
W
V B H 6 2 0- N T / B T / S K
V B H 6 2 0- N T / B T / S K
V B H 2 0 8 4- R 8 / N T / B T / S K / M T
V B H 2 0 8 4- R 8 / N T / B T / S K / M T
V B H U- 2 0 2 ~ 2 1 4
C 97
C 99
C 99
C 1 0 0 BC-oTriy np ge H e a d S et
C 1 0 0 BC-oTriy np ge H e a d S et
V B H C- R 8 / M T / N T / B T / C 2 0
V B H C- R 8 / M T / N T / B T / C 2 0
U ni v e r s al B o ri n g A n d F a ci n g M a st e r H e a d
V B H U- 2 0 2 ~ 2 1 4
B o ri n g H e a d S et s
V B H- 1 0 2 ~ 1 1 4
B o ri n g H e a d S et s
V B H- M T / R 8 / N T / S K / B T / C 2 5
S A L E S T H E S E RI E S O F A C C E S S O RI E S T O M O R E T H A N 6 0 C O U N T RI E S
T O O LI N G S Y S T E M
C S E RI E S
B ori n g H e a d S y st e m
C 1 0 0 BC-oTriy np ge H e a d S et
C 1 0 1 BC-oTriy np ge H e a d S h a n k
C 1 0 2 C- T y p e B o ri n g H e a d
C 1 0 2 C- T y p e B o ri n g H e a d
C 1 0 2 C- T y p e B o ri n g H e a d
Inch m m
Inch m m
Inch m m
T o u c h P oi n t S e n s o r S y s t e m
V B H C- R 8 / M T / N T / B T / C 2 0
V B C- R 8 / N T / M T / B T / C 2 0
V B C- 2
V B C- 3
V B C- 4
C 1 0 3 T o u c h P oi nt S e n s o r
C 1 0 3 T o u c h P oi nt S e n s o r
C 1 0 3 T o u c h P oi nt S e n s o r
C 1 0 4 T o u c h P oi nt S e n s o r
C 1 0 4 T o u c h P oi nt S e n s o r
V P S- 2 0 B, 3 2 B, 3/ 4 B
V P S- 2 0
V P S- 3 2
V P S- 2 0 1
V P S- 2 0 1 C
C 1 0 4 T o u c h P oi nt S e n s o r
C 1 0 4 T o u c h P oi nt S e n s o r
C 1 0 5 T o u c h P oi nt S e n s o r
C 1 0 5 T o u c h P oi nt S e n s o r
C 1 0 5 T o u c h P oi nt S e n s o r
V P S- 4 0 1
V P S- 4 0 1 C
V P S- 3 0 1
V P S- 3 0 1 S
V P S- 3 0 2
C 1 0 5 T o u c h P oi nt S e n s o r
C 1 0 5 T o u c h P oi nt S e n s o r
C 1 0 5 T o u c h P oi nt S e n s o r
C 1 0 5 T o u c h P oi nt S e n s o r
NE
W
NE
W
P r e s ett e r S y st e m Drill T a p p er S y st e m
V P S- 3 0 2 S
V P S- 3 0 1 C
V P S- 3 0 2 C
V P S- 3 0 3
C 1 0 6 H ei g ht Pr e s ett e r
C 1 0 6 H ei g ht Pr e s ett e r
C 1 0 6 H ei g ht P r e s ett e r
c T o ol C 1 0 7 ElL eenctgtr ho niS ett er
c T o ol C 1 0 7 ElL eenctgtr ho niS ett er
H P- 5 0 Z, 5 0 Z M, 1 0 0 Z, 1 0 0 Z M
H P- 1 0 0 Z, 1 0 0 Z M
H P- 1 0 0 Z, 1 0 0 Z M
H P- 1 0 0 E M
H P- 5 0 E M
C 1 0 8 Z- Z e r o- S ett e r
C 1 0 8 Z- Z e r o- S ett e r
C 1 0 8 Z- Z e r o- S ett e r
C 1 0 9 HM eia c ghihtni Pnr ge sCette nte re r)( F o r
C 1 0 9 C e nt e ri n g I n di c at o r
H P- 5 0 B / B M
H P- 5 0 A / A M
H P- 1 0 0 A / A M
H P- 1 0 0
V CI- 1 7 0
a c h m e nt f o r D rilli n g C 1 1 0 Att & Milli n g M a c hi n e
C 1 1 0 T a p C h u c k S e ri e s
C 1 1 0 D rill T a p p e r
C 1 1 1 RAtte va ecr hsi mble ent Tsa p pi n g
C 1 1 1 RF ou rb bV eTr A FlT ea xp pCeollr et
K1/ 2/ 3/ 4 ~
V T A 1 3/ 1 6 / 1 8 ~
V D T- 3 3
V T A 7, 1 2, 2 0 ~
F C- 1 0, 1 1, 2 0, 2 1, 3 0, 3 1
R e v e r si bl e T a p pi n g
T H E BI G G E S T M A N U F A C T U R E R & E X P O R T E R O F M A C HI NI N G T O O L A C C E S S O RI E S
T O O LI N G S Y S T E M
C S E RI E S
Drill T a p p er S y st e m T a p pi n g S y st e m
C 1 1 2 Ta p C h u c k
C 1 1 2 EH xolpda enr si bl e T a p pi n g
C 1 1 3 EH xolpda enr si bl e T a p pi n g
C 1 1 3 EH xolpda enr si bl e T a p pi n g
M T 3- M 2 0, M T 4- M 2 0
V T A- 1 3- 1 1, 1 2
V E T- 2 7 1 ~ 2 7 4, 2 6 0, 2 6 1
V E T- 1 0 2, 2 0 2, 2 5 2, 3 0 3
V E T- 1 0 5, 1 0 6 , 2 5 3, 2 5 4
C 1 1 5 QT auip cpik n Cg h aC nh gu ec k
C 1 1 5 QT auip cpik n Cg h aC nh gu ec k
C 1 1 6 QT auip cpik n Cg h aC nh gu ec k
C 1 1 6 QT auip cpik n Cg h aC nh gu ec k
C 1 1 7 QT auip cpik n Cg h aC nh gu ec k
W F- B T 3 0/ B T 4 0/ S K 3 0/ S K 4 0
W F- B T 5 0/ S K 5 0
W F- S T
W F- M T
W F E- B T 4 0
C 1 1 7 QT auip cpik n Cg h aC nh gu ec k
C 1 1 8 QT auip cpik n Cg h aC nh gu ec k
C 1 1 8 QT auip cpik n Cg h aC nh gu ec k
C 1 1 9 QT auip cpik n Cg h aC nh gu ec k
C 1 1 9 QT auip cpik n Cg h aC nh gu ec k
W F E- B T 5 0
B T 4 0- S F
B T 5 0- S F
S T- S F / M T- S F
J T A- S F
C 1 2 0 QT auip cpik n Cg h aC nh gu ec k M ST et
C 1 2 0 QT auip cpik n Cg h aC nh gu ec k M ST et
C 1 2 1 TR ae pd piu cnegr CA olld a etpt e r
C 1 2 1 A dj u st a bl e W r e n c h e s
C 1 2 1 QT auip cpik n Cg h aC nh gu ec k
C 1 1 1 CV oT nA n2 e0-ctiM n2 0g A r b o r f o r
M T 3- M 2 0
NE
M T 4- M 2 0
W
NE
W
NE
W
NE
W
E X P.
V Q T- 3 1 2 ~ 5 2 0
V Q T- 7 1 2, 8 1 2, 7 2 0, 8 2 0
T C 3 1 2 / 8 2 0 / 1 4 3 3- A D
V W R- 4 0, 6 0
T C 3 1 2 DI N 3 7 1- A 8 P C S / S E T
C 1 2 1 QT auip cpik n Cg h aC nh gu ec k
C 1 2 2 QT auip cpik n Cg h aC nh gu ec k
C 1 2 2 QT auip cpik n Cg h aC nh gu ec k
C 1 2 2 QT auip cpik n Cg h aC nh gu ec k
C 1 2 3 QT auip cpik n Cg h aC nollg eet
NE
W
NE
W
NE
W
NE
W
JI S T C 3 1 2 DI N 3 7 6- B 8 P C S / S E T
T C 8 2 0 DI N 3 7 6- C 8 P C S / S E T
T C- 8 2 0 DI N 3 7 1 4 P C S/ S E T
T C- 8 2 0 I S O 2 2 8 3 8 P C S / S E T
T C 312/ 820/ 1433
C 1 2 5 QT auip cpik n Cg h aC nollg eet
C 1 2 6 QT auip cpik n Cg h aC nollg eet
C 1 2 7 QT auip cpik n Cg h aC nollg eet
C 1 2 8 QT auip cpik n Cg h aC nollg eet
C 1 3 0 MiAi rni T aT yp ppie n Agr Um nitT y p e
DI N 3 7 1 / 3 7 6
I S O 529/ 2283
A N SI
T C 312/ 820/ 1433
T C 312/ 820/ 1433
T C 312/ 820
T C 312 B/ 820 B/ 1433 B
V A T- 7 0 8 ~ 7 2 4
C 1 3 0 ST a mpallpi n Agr Um nitT y p e Ai r
C 1 3 1 AU rnitm T y p e Ai r T a p pi n g
C 1 3 2 Ai r T a p pi n g U nit
C 1 3 2 Ai r T a p pi n g S pi n dl e
C 1 3 2 PT aa rp allpi nelg AUr nitm F o r Ai r
V A T- 1 4 0 8 ~ 1 4 2 4
V A T- 1 6 0 8 ~ 1 6 2 4
V A T- 1 9 0 8 ~ 1 9 2 4
V A T- S P ~ 2 4
V A T- A R M ~
JI S
P R O D U C T S U N D E R 1 0 0 % S T RI C T Q. C. Q U A LI T Y G U A R A N T E E D
C S E RI E S
T O O LI N G S Y S T E M
T a p pi n g S y st e m
C 1 3 3 AF odjr u Aistra Tbla ep piA nn glg eU nitH e a d
C 1 3 3 MT aa pg pin etin gc UBnita s e F o r Ai r
C 1 3 3 MiF ostr AiC ro olT aa pntpi Sn yg stU enitm
C 1 3 3 CT aollp piet n Rg a cU knitF o r Ai r
C 1 3 4 P o rt a bl e Ai r T a p p e r NE
W
T o oli n g S etti n g St a n d S p u n dl e T a p er Wi p er
A T 0 8 / 1 2 / 1 6 / 2 0 / 2 2 / 2 4- 9 0
V L M- 3 0 0 A, 6 0 0 A
V A C- 0 8
V C R- 0 8
V A T- 3 0 8 P, 6 1 2 P
el u x e T y p e T o ol C 1 3 5 DS etti n g St a n d
C 1 3 5 SiS ettim pln eg TSty pa en dT o ol
C 1 3 6 TD oe viol c He ol d e r L o c ki n g
C 1 3 6 TD oe viol c He ol d e r L o c ki n g
C 1 3 7 TFioxtol u rH eols d e r L o c ki n g
V T D- 1 ~ 1 0
V T S- B T / S K- 3 0, 4 0, 5 0
V T G- B T 3 0, 4 0, 5 0
V T L- B T / S K / N T- 3 0, 4 0, 5 0
V T L- H S K 4 0, 5 0, 6 3
C 1 3 7 RD eo viu nc de T o ol L o c ki n g
C 1 3 7 FSta astn dT o ol S etti n g
C 1 3 8 S pi n dl e T a p e r Wi p e r
C 1 3 8 S pi n dl e T a p e r Wi p e r
C 1 3 8 S pi n dl e T a p e r Wi p e r
NE
W
W
NE
NE
W
S h e at h R a c k
V T O- 3 0, 4 0, 5 0
V T S- H S K 6 3
V T W- 3 0, 4 0, 5 0
V T W- 3 0 R, 4 0 R, 5 0 R
C 1 3 9 T o oli n g R a c k St a n d
C 1 3 9 T o oli n g R a c k St a n d
C 1 3 9 T o oli n g R a c k St a n d
C 1 3 9 T o oli n g R a c k St a n d
NE
W
W
NE
NE
W
NE
W
V T T- 3 0/ 3 0- 5 0
V T T- 3 1/ 3 0- 5 0
V T T- 3 0/ 3 1- H S K 6 3
V T T- 3 0/ 3 0- 5 0
C 1 3 9 T o oli n g C a rt
C 1 3 9 T o oli n g C a rt
C 1 4 0 T o oli n g C a rt
C 1 4 0 T o oli n g C a rt
NE
W
NE
W
NE
W
NE
V T W- 4 0 H, 5 0 H, 6 3 H, 1 0 0 H
W
C 1 4 0 T o oli n g C a rt NE
W
V T T- 2 1
V T T- 2 1
V T T- 1 1
V T T- 1 2
V T T- 1 2
C 1 4 1 T o oli n g Tr oll e y s
C 1 4 1 T o oli n g Tr oll e y s
C 1 4 1 T o oli n g Tr oll e y s
C 1 4 1 T o oli n g Tr oll e y s
C 1 4 1 T o oli n g Tr oll e y s
V T T- 2- 3 0 / 4 0 / 5 0 / H S K 6 3
V T T- 2- 3 0 / 4 0 / 5 0 / H S K 6 3
V T T- 5- 3 0 / 4 0 / 5 0 / H S K 6 3
V T T- 5- 3 0 / 4 0 / 5 0 / H S K 6 3
V T T- 6- 3 0 / 4 0 / 5 0 / H S K 6 3
C 1 4 2 T o oli n g R a c k
C 1 4 2 T o oli n g R a c k
C 1 4 2 T o oli n g S h e at h
C 1 4 2 T o oli n g S h e at h
V T T S- B T- 3 0 / 4 0 / 5 0
V T T S- B T- 3 0 / 4 0 / 5 0
NE
W
V T T R- B T- 3 0 / 4 0 / 5 0 / H S K 6 3
NE
W
V T T R- B T- 3 0 / 4 0 / 5 0 / H S K 6 3
S A L E S P R O G A M I S O V E R 1 0 0 0 I T E M S O F A C C E S S O RI E S
C S E RI E S
T O O LI N G S Y S T E M
S h e at h R a c k
C 1 4 2 E n d Mill S h e at h R a c k
C 1 4 2 CR auttic k n g T o ol S h e at h NE
W
C 1 4 2 T o oli n g R a c k St a n d NE
W
C 1 4 2 T o oli n g R a c k St a n d NE
W
C 1 4 2 T o oli n g R a c k St a n d NE
W
T o ol C a bi n et
V M S- 2
V M S- 3
V T C- 2 0
V T C- 2 0
V T C- 2 0
C 1 4 3 T o ol C a bi n et
C 1 4 3 T o ol C a bi n et
C 1 4 3 T o oli n g Tr oll e y s
C 1 4 4 W or k b e n c h
C 1 4 4 H y d r o Lift T a bl e
NE
W
NE
W
NE
W
V T C- 2 3
V T C- 2 5
V T C- 1 0 0
V W B- 1 5 8 0
V L T- 3 0 0
C 1 4 4 H y d r o P all et Tr oll e y s
C 1 4 5 P a rt s C a bi n et
C 1 4 5 P a rt s C a bi n et
C 1 4 5 T o ol B o x
C 1 4 5 P a rt s St o r a g e
H P T- 2 0 N S, 2 0 N M, 2 0 W L
V A 1-, V A 6-, V A 7-
V A 1-, V A 6-, V A 7-
V T B- 1 0 2, 9 0 1
V H B- 1 2 1 8 ~ 3 0 4 5
C 1 4 6 E c o n o mi c al P all et
C 1 4 6 E c o n o mi c al P all et
C 1 4 6 H e a v y D ut y P all et
C 1 4 6 H e a v y D ut y P all et
NE
P all et
NE
W
W
V E P T- 0 1, 0 2
NE
W
V E P T- 0 1, 0 2
NE
W
V H P T- H 0 1
NE
W
V H P T- H 0 1
C 1 3 9 T o oli n g C a rt
V E R T E X, E S T A B LI S H E D I N 1 9 7 8.
M A C HI NI N G C E N T E R A C C E S S O RI E S
D S E RI E S
N C - R o t a r y T a bl e
D 01
N C- R ot a r y T a bl e
D 03
N C- R ot a r y T a bl e
D 03
N C- R ot a r y T a bl e
D 03
N C- R ot a r y T a bl e
V N C M- 1 5 0 ~ 4 0 0 L / R
V N C M- 1 5 0 R
V N C M- 2 2 0 R
V N C M- 2 5 0 R
D 03
D 04
D 05
D 05
N C- R ot a r y T a bl e
M C P o w e r Vi s e
V N C M- 4 0 0 R
V N C X- 1 0
D 06
D 06
NE
M C P o w e r Vi s e
N C- R ot a r y T a bl e
M C P o w e r Vi s e
T ail st o c k F o r N C R ot a r y T a bl e
N C- R ot a r y T a bl e
V N C M- 3 2 0 R
T ail st o c k F o r N C R ot a r y T a bl e
T S- 1 3 5 ~ 2 1 0 / 1 3 5 ~ 2 1 0- M T 3
T S- 1 3 5 ~ 2 1 0 / 1 3 5 ~ 2 1 0- M T 3
D 06
D 06
M C P o w e r Vi s e
D 03
M C P o w e r vi s e
D 06
M C P o w e r Vi s e
W
E X P. V Q C- 1 0 0
D 06
V Q C- 1 6 0 N C H y dr o M a c hi n e Vi c e s
V N C
B a s e Pl a t e
D 09
D 06
C o n v e ni e nt T y p e M a c hi n e Vi s e
V C M- 4 7 B a s e Pl at e S e ri e s
D 09
E X P.
V Q C- 1 2 5 F J L
V Q C- 1 2 5 M J L
V Q C V- 1 2 5 / 1 6 0 H- L/ R
D 06
D 06
D 06
Pr e ci si o n P n e u m ati c A n g- Fi x e d P o w e r Vi s e
V M CB a s e Pl at e S e ri e s
D 09
P r e ci si o n M C P o w e r Vi s e
V M CB a s e Pl at e S e ri e s
D 09
V M CB a s e Pl at e S e ri e s
D 09 NE
T B P- 6 0 4 0 ~ 1 0 0 5 0 D
A n gl e Pl at e
D 10
M/ C A n gl e Pl at e 9 0 º
B P 2 0- 3 0, 4 0, 5 0, 6 0, 8 0
Vi c e
D 13
Fl e xi bl e Li n e U p Vi c e
T B P- 6 0 4 0 ~ 1 0 0 5 0 D
D 10
M/ C A n gl e Pl at e 9 0 º
B P 2 2- 3 0 ~ 8 6 0
D 14
Fl e xi bl e Li n e U p Vi c e
S B P- 4 0 4 0 ~ 8 0 8 0 A
D 11
M/ C Cl a m pi n g C u b e
B P 0 7- 1 0, 2 0, 3 0, 4 0
D 15
Fl e xi bl e Li n e U p Vi c e
S B P- 4 0 4 0 ~ 8 0 8 0 A
D 12
A n g ul a r H oll o w Bl o c k 4 5º
B C 4 5- 1 5, 3 0, 1 5 1, 3 0 1
D 16
Fl e xi bl e Li n e U p Vi c e
V F S- 5 0 3 0 ~ 7 2 7 0
V F L- 5 0 3 0 ~ 7 2 7 0
V F L- 5 0 3 0 ~ 7 2 7 0
S A L E S T H E S E RI E S O F A C C E S S O RI E S T O M O R E T H A N 6 0 C O U N T RI E S
B a s e Pl at e S e ri e s
W
H B P- 4 0 6 0 ~ 5 0 1 0 0 T
D 12
A n g ul a r H oll o w Bl o c k 3 0º
B C 3 0- 1 5, 3 0, 1 5 1, 3 0 1
D 17 NE
V F S- 5 0 3 0 ~ 7 2 7 0
P r e ci si o n C o m p a ct M C Vi s e
Fl e xi bl e Li n e U p Vi c e
W
V F N- 6 0 3 0 ~ 8 5 8 0
L A T H E M A C HI N E A C C E S S O RI E S
E S E RI E S
Li v e C e nt e r S y st e m
E 01
Li g ht D ut y Li v e C e nt e r
E 01
Li v e L at h e C e nt e r - A Ty p e
E 01
Li v e L at h e C e nt e r - A Ty p e
E 01
V P C- M T 1, M T 2, M T 3, M T 4, M T 5
V L C- 2 1 2, 2 1 3, 2 1 4, 2 1 5
V L C- 2 1 2, 2 1 3, 2 1 4, 2 1 5
V L C- 2 1 3 B
E 02
E 02
E 02
E 02
Hi g h- S p e e d N C Li v e C e nt e r- A T y p e
Hi g h- S p e e d N C Li v e C e nt e r- B T y p e
Hi g h- L o a d N C Li v e C e nt e r- A T y p e
Li v e L at h e C e nt e r - B Ty p e
E 01
Li v e L at h e C e nt e r - B Ty p e
V L C- 2 1 4 B Hi g h- L o a d N C Li v e C e nt e r- B T y p e
E 02
Hi g h- L o a d N C Li v e C e nt e r- B T y p e
V L C- M T 3 A, M T 4 A, M T 5 A, M T 6 A
V L C- M T 3 B, M T 4 B, M T 5 B
V C F- M T 3 A, M T 4 A, M T 5 A
V C F- M T 3 B, M T 4 B, M T 5 B
V C F- M T 3 B, M T 4 B, M T 5 B
E 03
E 03
E 03
E 04
E 04
I nt e r- c h a n g e a bl e P oi nt s Li v e C e nt e r
I nt e r- c h a n g e a bl e P oi nt s Li v e C e nt e r
Hi g h S p e e d N C I nt er c h a n g e a bl e P oi nt s Li v e C e nt er
Hi g h L o a d I nt er c h a n g e a bl e P oi nt s Li v e C e nt er
Hi g h L o a d I nt er c h a n g e a bl e P oi nt s Li v e C e nt er
V L C- 3 1 2, 3 1 3, 3 1 4
V L C- 3 1 2, 3 1 3, 3 1 4
V C S- M T 3, M T 4, M T 4 P, M T 5 P
V C P- M T 4, M T 5
V C P- M T 4, M T 5
E 04
E 04
E 04
E 04
E 04
NE
Hi g h S p e e d Li v e C e nt e r- A T y p e
W
NE
Hi g h S p e e d Li v e C e nt e r- A T y p e
W
NE
L at h e C e nt e r S y st e m
V L C- 5 1 2, 5 1 3, 5 1 4, 5 1 5
V L C- 5 1 2, 5 1 3, 5 1 4, 5 1 5
E 05
E 05
B ull N o s e Pi p e C e nt e r
B ull N o s e Pi p e C e nt e r
Hi g h S p e e d Li v e C e nt e r- B T y p e
V L C-
E 06 NE
L at h e C e nt e r s
V L C- 5 1 3 B, 5 1 4 B, 5 1 5 B
E 05
B ull N o s e Pi p e C e nt e r
V L C- 5 1 3 B, 5 1 4 B, 5 1 5 B
V L C- 5 1 3 B, 5 1 4 B, 5 1 5 B
E 06
E 06
W
NE
V L C - 1 1 2, 1 1 3, 1 1 4, 1 1 5, 1 1 6
E 07
W o r k- D ri vi n g C e nt e rC h a n g a bl e Ti p s
W
NE
E 07
W o r k- D ri vi n g C e nt e r
E 07
W o r k- D ri vi n g C e nt e r
L at h e C e nt e r s
W
V L C- 1 1 7 ~ 1 1 9
E 07
W o r k- D ri vi n g C e nt e r
W
V L C - 1 1 2, 1 1 3, 1 1 4, 1 1 5, 1 1 6
V D K- 3 2- M T 4
V D K- 2 3- M T 4
V D K- 1 5- M T 4
E 08
E 08
E 08
E 08
NE
V D C- 3 0- M T 4
D e a d c e nt e r
L at h e C e nt e r s
V L C- 1 1 7 ~ 1 1 9
V L C-
E 06
Hi g h S p e e d Li v e C e nt e r- B T y p e
W
NE
V L C-
Hi g h S p e e d Li v e C e nt e r- B T y p e
I nt e r- C h a n g e a bl e P oi nt R olli n g C e nt e r
W
V L C- 6 1 2, 6 1 3, 6 1 4, 6 1 5
NE
I nt e r- C h a n g e a bl e P oi nt R olli n g C e nt e r
W
V L C- 6 1 2, 6 1 3, 6 1 4, 6 1 5
NE
Li v e L at h e C e nt e r
W
V L C- 1 7 2, 1 7 3, 1 7 4, 1 7 5
NE
Li v e L at h e C e nt e r
W
V L C- 1 7 2, 1 7 3, 1 7 4, 1 7 5
T H E BI G G E S T M A N U F A C T U R E R & E X P O R T E R O F M A C HI NI N G T O O L A C C E S S O RI E S
L A T H E M A C HI N E A C C E S S O RI E S
E S E RI E S
C e nt e ri n g C h u c k S y st e m
E 09
3 J a w S elf C e nt e ri n g Chuck
V S C- 3 A ~ 2 5 A
E 11
3 J a w P o w erf ul C a ml o c k T y p e S elf- C e nt eri n g C h u c k
V S K C- 6 A, 8 A, 1 0 A, 1 2 A
T hi n C h u c k
E 16
M a c hi ni n g J a w C h u c k
E 09
3 J a w P o w e rf ul S elf C e nt e ri n g C h u c k
V S K- 6 A, 8 A, 1 0 A, 1 2 A, 1 3 A, 1 6 A
E 12
DI N- T y p e 3- J a w S elfC e nt e ri n g C h u c k s
V S C- 3 D ~ 1 0 D
E 16
S u p e r T hi n C h u c k s
E 10
V P S- 6 A, 7 A, 8 A, 1 0 A, 1 2 A
E 12
P o w er C h u c k
E 18
S oft J a w F o r S K- T y p e Chuck
V N B K- 6, 8, 1 0, 1 2
E 18
S oft J a w F o r S K- T y p e Chuck
4- J a w I n d e p e n d e nt C h u c k Pl ai n B a c k
V K C- 4 ~ 5 0
E 17 NE
V M J- 6, 8, 1 0, 1 2
4 J a w S elf C e nt e ri n g Chucks
V e rti c al M a c hi ni n g Chuck
W
4 J a w S elf C e nt e ri n g C h u c k s ( 2- Pi c e s J a w)
V P S- 6 A K, 8 A K, 1 0 A K, 1 2 A K
E 13
3- J a w S c r oll C h u c k
3 J a w Str o n g S cr oll C h u c k s D 1 C a ml o c k Dir e ct M o u nti n g
L D 5- 8, 6- 8
E 14
3- J a w P o w e rf ul S c r oll Chuck
A c c ur a c y T y p e
V S C- 3 ~ 1 6
V S K- 4 ~ 1 6
E 17
V e rti c al M a c hi ni n g Chuck
W
E 19
E 17 NE
V M J- 1 5 0, 2 0 0, 2 5 0, 3 0 0
S oft J a w H y d r a uli c P o w er C h u c k s
E 11
A c c ur a c y T y p e
NE
V M J- 1 5 0, 2 0 0, 2 5 0, 3 0 0
E 19
E 10
V e rti c al M a c hi ni n g Chuck
W
V M J- 1 5 0, 2 0 0, 2 5 0, 3 0 0
S oft J a w H y d r a uli c P o w er C h u c k s
E 19
S oft J a w H y d r a uli c P o w er C h u c k s
Al u mi ni u m
St a n d a r d V S J- 4 ~ 1 6
J a w F o r mi n g
E 15
V S J- 4 ~ 1 6 6- J a w A wl T y p e Chucks
E 15
V H C- 8 A, 1 0 A L o w Pr ofil e C h u c k
E 21
S oft J a w F o r mi n g Ri n g
St a n d a r d V H C- 5 ~ 2 4
E 21 NE
V A S- 4, 6
P o w e r C h u c k S y st e m
E 22 NE
T N ut F o r H y d r a uli c Chuck
V H C- 8 A, 1 0 A S oft J a w F o r mi n g Di s c
E 31
T o ol P o st G ri n d e r O N L at h e
W
V L B K- 2, 3, 4, 5, 6
V F R- 0 5, 0 6, 0 8, 1 0, 1 2, 1 5
V F R D- 6, 8, 9, 1 0, 1 2
V G R- 1 0 0 ~ V G R- 1 8 5
E 22
E 23
E 24
E 25
H ar d J a w s F or H y dr a uli c P o w er C h u c k s
3- J a w W e d g e T y p e T h r o u g h- h ol e P o w e r C h u c k ( Wit h o ut A d a pt o r)
2- J a w W e d g e T y p e T h r o u g h- h ol e P o w e r C h u c k ( Wit h o ut A d a pt o r)
3- J a w W e d g e T y p e N o n T h r o u g h- h ol e P o w e r C h u c k ( Wit h o ut A d a pt o r)
W
B- 2 0 5 T, 2 0 6 T, 2 0 8 T, 2 1 0 T, 2 1 2 T, 2 1 5 T
H J- 0 5, 0 6, 0 8, 1 0, 1 2, 1 2- 1, 1 5, 1 5- 1
N- 2 0 5 A 4 ~ 2 1 5 A 1 1
N T205 ~ N T215
V- 2 0 6 A 5 ~ 2 1 5 A 1 1
E 26
E 26
E 27
E 28
E 29
4- J a w W e d g e T y p e T h r o u g h H ol e P o w e r C h u c k ( Wit h o ut A d a pt o r)
V NI T- 2 0 8, 2 1 0, 2 1 2, 2 1 5
N o n T h r o u g h H ol e R ot a r y H y d r a uli c C yli n d e r ( Wit h V al v e s)
M S 1 0 5, 1 2 5, 1 5 0, 2 0 0
S u p e r Hi g h S p e e d T h r o u g h H ol e R ot a r y H y d r a uli c C yli n d e r
M10 3 6 ~ M 2 511
L at h e C oll et C h u c k s
C R 4 2 A 5, 4 2 A 6, 6 0 A 6
P R O D U C T S U N D E R 1 0 0 % S T RI C T Q. C. Q U A LI T Y G U A R A N T E E D
L at h e C oll et
C26/ 42/ 60/ 80
E S E RI E S
L A T H E M A C HI N E A C C E S S O RI E S
V DI S y st e m
E 35
A xi al D rilli n g A n d Milli n g H e a d s
E 36
R a di al Drilli n g A n d Milli n g H e a d s- B a c k W ar d T y p e
E 37
A xi al D rilli n g A n d Milli n g H e a d s
E 38
A xi al D rilli n g A n d Milli n g H e a d s
E 39
R a di al Drilli n g A n d Milli n g H e a d s- B a c k w ar d T y p e
E 40
A xi al D rilli n g A n d Milli n g H e a d s- Off s et
E 41
R a di al D o u bl e D rilli n g A n d Milli n g H e a d s
E 42
A xi al D rilli n g A n d Milli n g H e a d s
E 43
R a di al D rilli n g A n d Milli n g H e a d s
E 44
A xi al D rilli n g A n d Milli n g H e a d s
E 45
A xi al Drilli n g A n d Milli n g H e a d s- F or “ B ar uff al di ” T y p e
E 46
R a di al Drilli n g A n d Milli n g H e a d s- B a c k w ar d s
E 47
A xi al D rilli n g A n d Milli n g H e a d s
E 48
A n g ul a r H e a d s
E 49
A xi al Drilli n g A n d Milli n g H e a d s- F or “ D u pl o m ati c ” T y p e
E 50
R a di al D rilli n g A n d Milli n g H e a d s
E 51
R a di al D rilli n g A n d Milli n g H e a d s
E 52
R a di al St ati c H ol d e r s
E 53
R a di al St ati c H ol d e r s
E 54
A xi al St ati c H ol d e r s
E 55
C o m bi n e d St ati c H ol d e r s
E 56
C o m bi n e d St ati c H ol d e r s
E 57
St ati c H ol d e r s
E 58
St ati c H ol d e r s
E 59
St ati c H ol d e r s
R e d u ci n g Sl e e v e s
E 61
R e d u ci n g Sl e e v e s
E 62
H T y p e Milli n g & D rilli n g H e a d
E 63
H T y p e Milli n g & D rilli n g H e a d
E 64
V T y p e Milli n g & D rilli n g H e a d
NE
W
E 60
NE
E 70
U D rill H ol d e r
E 71
R a di al D rilli n g A n d Milli n g H e a d s
W
E 72
NE
A n g ul a r H e a d s
W
E 73
NE
R a di al Milli n g A n d D rilli n g H e a d
W
E 73
A xi al Milli n g A n d D rilli n g H e a d
S A L E S P R O G A M I S O V E R 1 0 0 0 I T E M S O F A C C E S S O RI E S
E S E RI E S
L A T H E M A C HI N E A C C E S S O RI E S
V DI S y st e m T o ol P o st S y st e m
E 74
R a di al Milli n g A n d D rilli n g H e a d
E 74
A n g ul a r H e a d s
E 75
R a di al Milli n g A n d D rilli n g H e a d
E 75
A xi al Milli n g A n d D rilli n g H e a d
E 75
A n g ul a r H e a d s
E 76
B o ri n g B a r H ol d e r
E 76
B o ri n g B a r H ol d e r
E 77
T u r ni n g H ol d e r
E 77
F a ci n g H ol d e r
E 78
B o ri n g B a r H ol d e r
E 78
B o ri n g B a r H ol d e r
E 79
Q ui c k C h a n g e T o ol P o st & H ol d e r s-It ali a n St yl e
E 80
I n di vi d u all y Pi e c e It ali a n St yl e
E 80
I n di vi d u all y Pi e c e It ali a n St yl e
E 80
I n di vi d u all y Pi e c e It ali a n St yl e
NE
W
NE
V T PQ ui c k C h a n g e T o ol P o st & H ol d e r s- 4 0 P o siti o ni n g E u r o p e a n St yl e
W
E 82 W
V T P- F 4 0-
E 81 NE
V T P- F 4 0-
NE
NE
V T P- F 0 1-
E 81 NE
W
Q ui c k C h a n g e T o ol P o st & H ol d e r s- 4 0 P o siti o ni n g E u r o p e a n St yl e
W
E 82 NE
NE
V T P- F 0 2-
E 82 NE
V T P- F 4 0Q ui c k C h a n g e T o ol P o st & H ol d e r s- 4 0 P o siti o ni n g E u r o p e a n St yl e
W
W
V T P- F 4 0Q ui c k C h a n g e T o ol P o st & H ol d e r s- 4 0 P o siti o ni n g E u r o p e a n St yl e
W
V T P- F 4 0-
V E R T E X, E S T A B LI S H E D I N 1 9 7 8.
W
NE
V T P- F 0 3Q ui c k C h a n g e T o ol P o st & H ol d e r s- 4 0 P o siti o ni n g E u r o p e a n St yl e
E 82 NE
W
V T P- F 4 0-
E 80
I n di vi d u all y Pi e c e It ali a n St yl e
W
V T P- F 0 4Q ui c k C h a n g e T o ol P o st & H ol d e r s- 4 0 P o siti o ni n g E u r o p e a n St yl e
E 82 NE
W
V T P- F 4 0-
Q ui c k C h a n g e T o ol P o st & H ol d e r s- 4 0 P o siti o ni n g E u r o p e a n St yl e
C U T TI N G T O O L
F S E RI E S
Milli n g C utt e r S y st e m
F 01
F a c e Milli n g C utt er 4 5º
S E 5 4 5 / 4 4 5- 3, 4 , 5 , 6 , 8 , 1 0 , 1 2
F 03
R o u n d I n s ert Milli n g C utt er
R M- 5 R / 8 R- 5 0, 6 3
F 05
R o u n d I n s ert E n d Mill s
C 2 0 / 2 5 / 3 2- 4 R, 5 R ~
F 07
Hi g h- S p e e d R o u g h E n d Mill s
V A P X- 1 6 1 6 ~ 2 6 2 5
F09
4 5º C h a mf eri n g E n d Mill s
F 01
F a c e Milli n g C utt er 6 5º
S P 5 3 5 / 4 3 5- 3, 4 , 5 , 6 , 8 , 1 0 , 1 2
F 03
S h o ul d er E n d Mill s
S A E- 2 0 ~ 6 3
F 05
Drilli n g & Milli n g C utt e
C 1 6 / 2 0 / 2 5 / 3 2- D M ~
F 07
Hi g h- S p e e d R o u g h E n d Mill s
V H R E- 2 1 0 1 0 ~ 3 2 5 2 0
F09
4 5º C h a mf eri n g E n d Mill s
F 02
F a c e Milli n g C utt er 7 5º
F P- 3, 4 , 5 , 6 , 8 , 1 0 , 1 2
F04
Hi g h- S p e e d F a c e
H C B- 5 0 ~ 2 0 0
F06
Hi g h S p e e d S h o ul d er Mill s
C 1 6 / 2 0 / 2 5 / 3 2- S S ~
F08
C R T R o u n d I n s ert E n d Mill s
C R T- 6 R 3 2 X / 3 5 X 1 5 0, 2 0 0
F09
T- Sl ot E n d Mill s
F 02
T P- 6 3 ~ 3 0 0
F04
F 11
V C E- 4 5 2 1 ~ 4 5 6 3 Si d e Milli n g C utt er
V S M- 1 0 1 6 ~ 2 0 1 6
F 13
C utti n g H ol d er s
F 11
T- Si d e Milli n g C utt er
V T S C- 4 1 6 ~ 8 2 5
F 13
C utti n g Bl o c k s
V T E- 2 4 1 1 ~ 4 9 2 2
F 11
F06
F 14
S U B 2 0- 2 6, 3 2 / S B U 2 5- 3 2
W
B B A R- D 1 6
Hi g h S p e e d S h o ul d er Mill s
C 1 6 / 2 0 / 2 5 / 3 2- S S ~
F08
F a c e E n d Mill s
C- 3 2- S E 4 4 5- 5 0, 6 3
F 10
C h a mf er T o ol
I n s e r t T y p e B o ri n g B ar
F 02
F04
F06
F08
S h o ul d er F a c e Milli n g C utt er
T P S- 5 0, 6 3
F 10
C T H- A
C h a mf er T o ol 6 p c s Kit
W
F 12
P o w er S u p er Dill 3 D
V S D-
F 14 NE
Hi g h S p e e d S h o ul d er Mill s
C 1 6 / 2 0 / 2 5 / 3 2- S S ~
C T H- 5 1 ~ 3 1 4 P o w er S u p er Dill 2 D
Hi g h- S p e e d F a c e Milli n g C utt er
F M C- 5 0 ~ 1 6 0
NE
F 12
F a c e Milli n g C utt er 9 0º
T P- 6 3 ~ 3 0 0
W
V S D-
V S R C- 3, 8 0
NE
C GI H 2 6 / 3 2- 3
S h ell- T y p e R o u g h Milli n g C utt er
Hi g h- S p e e d F a c e
H C N- 6 3 ~ 2 0 0
NE
T C 1 2, T C 4 0
F a c e Milli n g C utt er 9 0º
W
B B A R- D 1 8
I n s e r t T y p e B o ri n g B ar
F 14 NE
I n s e r t T y p e B o ri n g B ar
W
B B A R- D 2 0
S A L E S T H E S E RI E S O F A C C E S S O RI E S T O M O R E T H A N 6 0 C O U N T RI E S
C U T TI N G T O O L
F S E RI E S
L at h e T o ol H ol d e r
F 15
T o ol H ol d er s
M C L N / M C R N / M TJ N / M T E N
E n d Mill s S y st e m
F 23
U ni v er s al E n d Mill s
V E A 7 2, 8 2, 8 5 ~
F 27
S oli d C ar bi d e E n d Mill s F or < 6 8 H R C
V E 1 6 6, 1 6 7 ~
F 29
S oli d C a r bi d e B all N o s e E n d Mill s F o r < 4 8 H R C
V B 2 4 2- 3 ~ 2 0 E N D Mill s f or St ai nl e s s
M S D / M V V N / M D J N / M VJ N
F 24
F 30
F 28
S oli d C ar bi d e E n d Mill s F or < 4 8 H R C
F 26
F 28
R o u g hi n g E n d Mill s
F34
F 31
B all N o s e E n d Mill s
F 35
U ni v er s al E n d Mill s
P
Drill P oi nt R o ut er s
T wi st Drill s
V D D 1 3-- 1. 0 ~ 1 3. 0
F 40
F 36
S oli d C ar bi d e N C/ C N C S p ot Drill s
V D 9 0 3, 9 0 4, 9 1 3, 9 1 4 ~ Hi g h P erf o m a n c e Drill s
V D D 3 0- 2. 0 ~ 1 3. 0
F 26
Fi ni s hi n g E n d Mill s < 5 6 H R C
V E 1 6 4, 1 6 5 ~
F 29
S oli d C a r bi d e B all N o s e E n d Mill s F o r < 4 8 H R C
V B 2 2 2, 2 3 2 ~
F 31
E N D Mill s f or St ai nl e s s
V F F 5 1 S X- 3. 0 ~ 2 0. 0
F 35
B urr E n d C ut R o ut er s
Lc
V E 1 3 3, 1 3 5, 1 3 6
V E199
V E198
F 39
F 35
M WL N/ M CL N/ M D U N
Dc
E n d Mill s E n d C ut R o ut er s
B ori n g B ar s
Dc
F 35
B urr E n d C ut R o ut er s
F 19
Lc
L
V E A 9 2, 9 3
E n d Mill s F or C h a mf eri n g
V E 1 0 7 X- 1. 0 ~ 2 0. 0
L
V F F 5 2 S X- 3. 0* R ~ 2 0. 0* R
B all N o s e E n d Mill s
V B B 1 2, 8 0, 8 2 ~
V B B 6 1- 1. 0 ~ 1 2. 0
E n d Mill s F or Al u mi ni u m
S oli d C ar bi d e E n d Mill s F or < 4 8 H R C
V E 1 2 4, 1 2 6 ~
V F F 0 8- 6 ~ 2 0, V F F 0 9- 6 ~ 2 0
F 30
T o ol H ol d er s
S C L C / S D J C / S VJ C / S V V C
V E 1 2 2, 1 2 5, 1 2 7 ~
B all N o s e E n d Mill s < 5 6 H R C
V B 2 6 2, 2 6 3 ~
F 33
F 25
Fi ni s hi n g E n d Mill s
V E C 4 0- 1. 0 ~ 2 0. 0, V E D 4 0- 3 ~ 2 0
F 18
T o ol H ol d er s
W TJ N / W T E N / W T X N / W W L N
Fi ni s hi n g E n d Mill s
V E A 7 4, 8 4, 8 6 ~
F 27
F 17
T o ol H ol d er s
P
F 32
F 16
F 41
Hi g h P erf o m a n c e Drill s
V D D 3 3- 2. 0 ~ 1 3. 0
V E191
F 37
V E197 C o m bi n e d Drill A n d C o u nt er si n k
V D T 0 8- 0. 5 0 ~ 5. 0 0, 1/ 3 2” ~ 5/ 1 6”
F 42
F 38
T wi st Drill s
V D D 1 2- 1. 0 ~ 1 3. 0
Hi g h P erf o m a n c e Drill s
V D D 3 1- 3. 0 ~ 2 0. 0
T H E BI G G E S T M A N U F A C T U R E R & E X P O R T E R O F M A C HI NI N G T O O L A C C E S S O RI E S
C U T TI N G T O O L
F S E RI E S
E n d Mill s S y st e m
F 43
Hi g h P erf o m a n c e Drill s
V D D 3 2- 3. 0 ~ 2 0. 0
F 47
M a c hi n e R e a m er s I n St e p s Of 0. 5 m m
Oil- F e e d Hi g h P erf or m a n c e Drll s
F44
F 45
V D D 3 5- 3. 0 ~ 2 0. 0
F 46
V D D 3 6- 3. 0 ~ 2 0. 0
M a c hi n e R e a m er s L o n g L e n gt h
F 48
Oil- F e e d Hi g h P erf or m a n c e Drll s
F 48
Oil- F e e d Hi g h P erf or m a n c e Drll s
V D D 3 7- 3. 0 ~ 2 0. 0
M a c hi n e R e a m er s C ar bi d e Ti p p e d
F 49
M a c hi n e R e a m er s I n St e p s of 0. 1 m m
F 47
M a c hi n e R e a m er s
V R 3 0 0- 3. 0 ~ 2 0. 0
F50
S oi d C ar bi d e E n d Mill s F or < 4 8 H R C
P
Dc
L
V R 3 0 1- 3. 0 ~ 2 0. 0
F50
S oi d C ar bi d e E n d Mill s F or < 4 8 H R C
V E 11 4 F
F 52
V R C 0 2- 3. 0 ~ 2 0. 0
V R 3 0 3- 1 0. 0 ~ 4 0. 0
S oi d C ar bi d e E n d Mill s F or < 4 8 H R C
F 51
V B221 2 Fl ut e C ar bi d e B all N o s e E n d Mill S et V B 2 2 2 9 P C S/ S E T I n W o o d e n B o x
Lc
F 51
H. S. S E N D MI L L S
V E S 2- 3. 0 ~ 2 0. 0
F53
F53
H a n d R e a m er s- H S S
C o m bi n e d D rill A n d C o u nt er si n k
V R 3 0 8- 1. 0 ~ 1 2. 0
F 52
4 Fl ut e C ar bi d e E n d Mill S et V E 1 2 4- B 1 2 P C S/ S E T I n W o o d e n B o x
V E 1 2 4- B
F54
V E 11 2 F
F 52
4 Fl ut e C ar bi d e E n d Mill S et V E 1 2 4 1 8 P C S/ S E T I n W o o d e n B o x
V E 1 2 4- A A dj u st a bl e R e a m er s
F54
O ut si d e R a di u s S h a p e E n d Mill s
I D L
V B 2 2 2- A
F55
C o u nt er b or e E n d Mill s
V C B- 0 3 ~ 1 8
H a n d T a p & T a p W r e n c h e s Wi t h R a t c h e t
F 57
H a n d Ta p s
V H T- H 3 ~ H 2 0
F58
V D S- 1. 6 ~ 4. 0
V H M- 0 3 ~ 1 2
S pi r al Fl ut e d M a c hi n e Ta p s
F55
M et al Slitti n g S a w s
S pi r al Fl ut e d M a c hi n e Ta p s
V M T- S 3 ~ S 2 0
F59
H. S. S. Drill
F 57
S pir al P oi nt e d M a c hi n e Ta p s
V M T- M 3 ~ M 2 0
T a p Wr e n c h e s Wit h R at c h et
F59
F56
T a p Wr e n c h e s Wit h R at c h et
F58
V P W- 3 1 0, 5 1 2
H. S. S. Drill
V P W- 1 1 8, 1 1 0 , 1 1 2, 4 1 2, 5 2 0, 9 2 7, 1 3 3 2
H a n d Ta p s
V H T- H 3-I S O ~ H 2 0-I S O
F59 NE
V M T- S 3-I S O ~ S 2 0-I S O
V C R- 0 1 0 ~ 1 0 0
H S D- 1 0, 1 3
H S D- 1 0, 1 3
V S S7505 ~ 7520
F 57
F56
V A R- 6 3 5 ~ 7 0 0 0
M a g n eti c T a p p er
F58
S pi r al Fl ut e d M a c hi n e Ta p s
V M T- M 3-I S O ~ M 2 0-I S O
F59
M a g n eti c T a p p er
W
V T M- 1 3
V T M- 1 3
P R O D U C T S U N D E R 1 0 0 % S T RI C T Q. C. Q U A LI T Y G U A R A N T E E D
S M A L L T Y P E M A C HI N E A N D T O O L
G S E RI E S
S h o c k A b s or b er
G 01
S h o c k A b s or b er
G 01
S h o c k A b s or b er
G 01
Sli d e T a bl e
T K- 9 0 , 1 2 0 , 1 6 0, 2 0 0
S B- 4, 6, 8, 1 0
S C- 1, 2 , 3
G 02
G 02
G 03
A r b o r Pr e s s
V A R- 0, 1, 2, 3, 5
V A R R- 3, 5
G 04
G 04
Pr e ci si o n B o ri n g/ Mi ni n g S pi n dl e H e a d
A r b o r Pr e s s
Pr e ci si o n B o ri n g/ Mi ni n g S pi n dl e H e a d
S h o c k A b s or b er
G 01
S h o c k A b s or b er
S Y- 8, 1 2 , 1 6
One Way Ac me T h r e a d Sli d e T a bl e
G 03
One Way Ac me T h r e a d Sli d e T a bl e
G 03
V e rti c al D o v et ail Sli d e T a bl e
S T- 7 5, 1 0 0, 1 2 5
S T A- 1 6 0, 1 6 5, 2 0 0, 2 0 5, 3 0 0
S E- 1 0 0, 1 5 0, 2 0 0, 2 5 0
G 04
G 04
G 04
P r e ci si o n B o ri n g/ Mi ni n g S pi n dl e H e a d
P r e ci si o n B o ri n g/ Mi ni n g S pi n dl e H e a d
P r e ci si o n B o ri n g/ Mi ni n g S pi n dl e H e a d
H a n dl e S y st e m
S H 0 3, 0 4, 3 0, 4 0, 5 0
S H 0 3, 0 4, 3 0, 4 0, 5 0
S H 0 3, 0 4, 3 0, 4 0, 5 0
S H 3 0 A, 3 0 B, 4 0 A, 4 0 B
S H 3 0 A, 3 0 B, 4 0 A, 4 0 B
G 05
G 05
G 05
G 06
G 06
NE
Fl at E n d M o v a bl e H a n dl e
W
NE
Elli p s e M o v a bl e H a n dl e
B all K n o b s
Hand Knobs
A dj u st a bl e H a n d L e v er s
W
V F E- 1 0, 8 3, 8, 1 6 5
V E M- 1 0, 8 3, 8, 6
V K B- 6 A A ~ 1 2 B A
V K B- 8 K, 8 K L
V A H- 6, 8, 1 0, 1 2
G 06
G 07
G 07
3 6 0 º S wi v elli n g L o c k H a n dl e
G 07
G 08
A Ty p e
B Ty p e
A dj u st a bl e H a n d L e v er s
R e v ol vi n g H a n dl e s
V A H- 6 2 0 ~ 1 0 2 0
V R L- 8 H, 8 H A, 1 0 H, 1 0 H A, 1 0 H B
V S A- 1 ~ 4, V S B- 1 ~ 4
G 08
G 08
G 09
W a s h er
C r a n k H a n dl e
V L E- W 2 2 6 ~ W 3 5 1 5
V A H- 2 1 ~ 2 3, 3 1 ~ 3 2
G10
G10
P U- H a m m e r S e ri e s
NE
V H M- 3 8, 4 6, 5 0, 5 8, 6 0
H a m m er
W
V H M- 2 5 P E ~ 6 0 P E
B all Pl u g e r S c r e ws o c k et & Sl ott e d
V B P- 0 3I ~ 1 6I, V B P- 0 3 H ~ 1 6 H
Lifti n g E y e B olt s
V L E- 6 A ~ 2 4 A
S h o ul d e r B olt
V L S- 1 3 2 0 ~ 1 8 4 0
G S E RI E S
S a wi n g M a c hi n e
G 11
S M A L L T Y P E M A C HI N E A N D T O O L U ni v e r s al D rill & C utt e r G ri n d e r
V D G- 3 2 N
Ai r Di e T o ol S y st e m
G 12 NE
Ai r Di e T o ol
Ai r Di e T o ol
V A G- 9 3 2
NE
W
V A G- 0 3 0
Ai r Di e T o ol
G 13
Ai r Di e T o ol
G 15
G 17 NE
G 13
G 12
S a w Bl a d e
H B S- 1 0 6 ~ Ai r Di e T o ol
G 13
G 12
S a w Bl a d e
H B S- 1 0 6 ~ Ai r Di e T o ol
G 13
W
V A G- 0 5 0
V A G- 5 0 0, 6 0 1 A
V A G- 5 0 0, 6 0 1 A
V A G- 7 0 1
G 14
G 14
G 14
Ai r Di e T o ol
V A G- 6 0 4 Ai r Di e T o ol
V A G- 3 1 8 Ai r Di e T o ol
H o ri z o nt al B a n d S a w s
Ai r Di e T o ol
W
V A G- 8 2 4 1
Ai r Di e T o ol
G 11
H B S- 7 C E
V A G- 4 0 7
V A G- 6 0 9
G 17
G 12 NE
V A G- 4 0 6
G 14
H o ri z o nt al B a n d S a w s
H B S- 7
W
G 13
G 11
G 15
V A G- 6 0 5 Ai r Di e T o ol
V A G- F 3 0 Ai r Di e T o ol
G 17 NE
W
V A G- 0 7 0
Ai r Di e T o ol
G 15
V A G- 8 2 4 2 Ai r Di e T o ol
V A G- 3 1 0 Ai r Di e T o ol
G 17 NE
W
V A G- 0 7 0 H
Ai r Di e T o ol
G 15
V A G- 3 2 0 Ai r Di e T o ol
Ai r Di e T o ol
S M A L L T Y P E M A C HI N E A N D T O O L
G S E RI E S
Ai r Di e T o ol
G 16
A b r a si v e M o u nt e d P oi nt & W h e el F o r Ai r T o ol
G 16
A b r a si v e M o u nt e d P oi nt & W h e el F o r Ai r T o ol
G 16
A b r a si v e M o u nt e d P oi nt & W h e el F o r Ai r T o ol
G 16
A b r a si v e M o u nt e d P oi nt & W h e el F o r Ai r T o ol
G 16
A b r a si v e M o u nt e d P oi nt & W h e el F o r Ai r T o ol
W A- 3 0 3 A ~ 3 1 0 A
W A- 3 0 3 A ~ 3 1 0 A
W F- 3 0 4 ~ 3 1 2
W F- 3 0 4 ~ 3 1 2
W R- 3 0 4 ~ 3 1 0
G 16
G 16
G 16
G 16
G 16
A b r a si v e M o u nt e d P oi nt & W h e el F o r Ai r T o ol
A b r a si v e M o u nt e d P oi nt & W h e el F o r Ai r T o ol
A b r a si v e M o u nt e d P oi nt & W h e el F o r Ai r T o ol
W R- 3 0 4 ~ 3 1 0
W E- 3 0 3 ~ 3 1 0
W E- 3 0 3 ~ 3 1 0
W F- 3 0 P
G 16
G 16
G 16
G 18
A b r a si v e M o u nt e d P oi nt & W h e el F o r Ai r T o ol
W F- 3 0 C
C a r bi d e B u r r s
G 19 NE
H a n d y S p o n g e S a n er
V S S- 4 3 6 C a r bi d e R ot a r y B u r r s
W
G 19 NE
H a n d y S p o n g e S a n er
V S S- 5 6 0 C a r bi d e R ot a r y B u r r s
W
G 19 NE
A b r a si v e M o u nt e d P oi nt & W h e el F o r Ai r T o ol
W F- 3 0 S Di a m o n d T o ol s F o r Ai r T o ol
W G- 3 0 D C a r bi d e R ot a r y B u r r s
W
G 19 NE
A b r a si v e M o u nt e d P oi nt & W h e el F o r Ai r T o ol
G 18
Di a m o n d T o ol s F o r Ai r T o ol
W G- 3 0 D C a r bi d e R ot a r y B u r r s
W
G 19 NE
C a r bi d e R ot a r y B u r r s
W
V R B- C 6, C 8, C 1 0, C 1 2
V R B- C 6, C 8, C 1 0, C 1 2
V R B- S 6, S 8, S 1 0, S 1 2
V R B- S 6, S 8, S 1 0, S 1 2
V R B- A 6, A 8, A 1 0, A 1 2
G 19
G 20
G 20
G 20
G 20
NE
C a r bi d e R ot a r y B u r r s
W
NE
C a r bi d e R ot a r y B u r r s
W
NE
V R B- A 6, A 8, A 1 0, A 1 2
V R B- P 6, P 8, P 1 0, P 1 2
G 20
G 20
C a r bi d e R ot a r y B u r r s
V R B- P C 6, P C 8, P C 1 0, P C 1 2
C a r bi d e R ot a r y B u r r s
W
V R B- P 6, P 8, P 1 0, P 1 2
C a r bi d e R ot a r y B u r r s
V R B- P C 6, P C 8, P C 1 0, P C 1 2
S A L E S P R O G A M I S O V E R 1 0 0 0 I T E M S O F A C C E S S O RI E S
NE
C a r bi d e R ot a r y B u r r s
W
V R B- C R 6, C R 8, C R 1 0, C R 1 2
NE
C a r bi d e R ot a r y B u r r s
W
V R B- C R 6, C R 8, C R 1 0, C R 1 2
H S E RI E S
S c r e w D ri v e r & Pli e r s S e ri e s
H0 1 NE
H A R D W A R D A C C E S S O RI E S S c r e w d ri v e r Bl a d e s & Ti p s
W
H 02 NE
I N F O.
S c r e w d ri v e r
Pli e r s
I n s ul at e d S c r e w d ri v e r
H 03
L T y p e K e y S et
H 03
H 03
I n s ul at e d Pli e r s
TI S- S / P / P Z ~
T H B- 1, T H B- 2
T H B- 1 1, 1 2, 1 3, 1 4
H 04
H 04
H 04
T- B a r S et
T- B a r N ut d r w e r S et
NE
J a w Cl a m p
T P L- D 1, C 1, L 1, B 1, W S, W P
T PI-I D, I C, I L, I B, I W S, I W P
H 05
H 05
NE
J a w Cl a m p
W
NE
T H B- 5 3
W
T H B- 1. 5 ~ 1 0
W
K e y S et
H J C- H 2 5 ~ H 1 5 0
H 06
H 06
V N P- 3 0, 4 0, 5 0, 6 0, 8 0, 1 0 0
T H B- 5 1, 5 2
H e x- T K e y
J a w Cl a m p
H J C- V S 3 0 ~ V S 1 5 0 C a r b o n St e el Punches
L T y p e K e y S et
W
T S D- S / P ~ , T S P- P / T ~
H 03
H 02
C a r b o n St e el Punches
V L P- 3 0, 4 0, 5 0, 6 0, 8 0, 1 0 0
V E R T E X, E S T A B LI S H E D I N 1 9 7 8.
I S E RI E S
G o g gl e s S e r i e s
I0 1
S A F T Y A C C E S S O RI E S W el di n g Li g ht G o g gl e s
S W L G- 0 4 0
I0 3
E a r H e a ri n g
E H P- 1
W el di n g Li g ht G o g gl e s
S W L G- 0 4 1 W el di n g Li g ht H el m et s
W L H- 0 1
I0 4
I0 1
I0 3
I0 4
E H P- 5
S af et y G o g gl e s
S D G- 0 1 F a c e & F or e h e a d S hi el d
F H S- 0 1 E a r H e a ri n g Pr ot e cti o n
I0 2
I0 3
I0 4
E H P- 1 1
S af et y G o g gl e s
S D G- 0 5
S af et y H el m et s
S H C- 0 1 E a r H e a ri n g Pr ot e cti o n
I0 2
I0 3
I0 2
S af et y G o g gl e s
S D G- 1 0
S af et y H el m et s
S H C- 0 2 E a r H e a ri n g P r ot e cti o n
I0 4
E a r H e a ri n g P r ot e cti o n
S E H P- 1 5
S A L E S T H E S E RI E S O F A C C E S S O RI E S T O M O R E T H A N 6 0 C O U N T RI E S
I0 4
S E H P- 1 9
E a r H e a ri n g P r ot e cti o n
J S E RI E S
D rill G ri n d e r
J1
S M A L L T Y P E M A C HI N E Pr e ci si o n D rill G ri n d e r
J1
Pr e ci si o n D rill G ri n d e r
J1
P r e ci si o n D rill G ri n d e r
J1
P r e ci si o n D rill G ri n d e r
J1 NE
V D G- 1 3 A
Mill G r i n d e r
J5
V D G- 1 3 A Pr e ci si o n E n d Mill G ri n d e r
J5
V D G- 2 5 Pr e ci si o n E n d Mill G ri n d e r
J5
V D G- 3 0 P r e ci si o n E n d Mill G ri n d e r
J5 NE
V E G- 1 3 A
R o d s C ut ti n g
J9 NE
V E G- 1 3 A R o d s C utti n g- Off U nit
J9
V E G- 2 5 A R o d s C utti n g- Off U nit
J9
W
V T C- 2 0 T o oli n g R a c k St a n d
J5
T o oli n g R a c k St a n d
W
V T C- 2 0 R o d s C utti n g- Off U nit
T o oli n g R a c k St a n d
J10
V T C- 2 0 R o d s C utti n g- Off U nit
J 11
P r e ci si o n E n d Mill G ri n d e r
W
V E C- 2 0
V E C- 2 0
V E C- 2 0
A c c e s s ori e s f or V E C- 2 0
V E G- 1 3
T H E BI G G E S T M A N U F A C T U R E R & E X P O R T E R O F M A C HI NI N G T O O L A C C E S S O RI E S
N e w M o d el
H V- 6, 8, 1 0, 1 2, 1 4, 1 6
H V- 4
D e gr e e p er o n e h a n dl e r ot ati o n S c al e of mi cr o c oll ar v er ni er r e a di n g G e ar r ati o
O R DE R N O.
A1
D
H
H1
H V- 4
58
11 0
72
8 0 1 3 8 11 8 11
H V- 6
78
150
80
1 0 2 2 0 5 1 6 3 11
H V- 8
100
205
102
H V- 1 0
106
254
H V- 1 2
123
H V- 1 4 H V- 1 6
A1
A
B
e
N. W.
H V- 4, 6
H V- 8, 1 0, 1 2, 1 4, 1 6
4º
4º
2’
1’
2 0’ ’ 1: 9 0
1 0’’ 1: 9 0
N O.
G. W.
35 K G S
18 K G S
M T- 2
7K GS
7. 5 K G S ( C)
0. 3
1 0 0 1- 0 0 0
17
40 K G S
20 K G S
M T- 2
1 2. 1 K G S
1 2. 7 K G S ( C)
0. 4
1 0 0 1- 0 0 1
135 265 219 14
17
80 K G S
40 K G S
M T- 3
2 4. 7 K G S
2 6. 2 K G S ( C)
0. 8
1 0 0 1- 0 0 2
109
163 321 276 14
17
90 K G S
50 K G S
M T- 3
3 5. 5 K G S
3 7. 3 K G S ( C)
2
1 0 0 1- 0 0 3
305
125
194 388 330 16
18
120 K G S
60 K G S
M T- 4
5 8. 7 K G S 6 9. 8 K G S ( W)
2. 6
1 0 0 1- 0 0 4
123
353
125
225 445 389 16
18
130 K G S
70 K G S
M T- 4 7 6. 6 1 K G S 9 0. 3 K G S ( W)
3. 2
1 0 0 1- 0 0 5
128
406
130
255 500 435 16
18
140 K G S
70 K G S
M T- 4 1 0 6. 4 K G S
4. 2
1 0 0 1- 0 0 6
MI L LI N G M A C HI N E A C C E S S O RI E S
1 2 3. 1 K G S ( W)
O R D E R N O. V S C- 5 A
S UI T F O R B S- 0 O R H V- 6, V U T- 6, V U- 1 5 0 V S C- 6 A S UI T F O R B S- 1 O R H V- 8, 1 0, V U T- 6, V U- 2 0 0 V S C- 7 A, 8 A S UI T F O R B S- 2 O R H V- 1 0, 1 2, 1 4, V U T- 1 0, 1 2 V S C- 1 0 A S UI T F O R H V- 1 4, 1 6
O R D E R N O. V S K- 6 A V S K- 8 A V S K- 1 2 A
O ur T a bl e s ar e m a d e of hi g h d e n sit y M e e h a nit e i n s p e ct a n gl e t o a s s ur e t h e e x c ell e nt q u alit y a n d d ur a bl e n e s s. U s e e x c ell e nt m a c hi ni n g c e nt er t o pr o c e s s. S pi n dl e e n d b e a p pli e d a c c ur a c y b e ari n g. C a n b e a s s ur e d t o k e e p v er y st e a d y u n d er l o a d c utti n g. W or m i s h ar d e n e d a n d gr o u n d. T h e r ati o i s 9 0: 1. T h e w or k t a bl e i s gr a d u at e d a f ull 3 6 0º s o t h at o n e t ur n of t h e h a n dl e m o v e s t h e t a bl e t hr o u g h 4º. Mi cr o c oll ar i s gr a d u at e d i n st e p s of 1’ mi n. A n d v er ni er s c al e m a k e s s etti n g s d o w n t o 1 0 s e c o n d s p o s si bl e. T h e s e R ot ar y T a bl e s ar e p o p ul ar f or t h eir e x c ell e nt p erf orm a n c e, pr a cti c al d e si g n a n d r e a s o n a bl e c o st. T h e y ar e wi d el y u s e d f or cir c ul ar c utti n g w or k, a n gl e s etti n g, b ori n g, s p ot-f a ci n g a n d si mil ar w or k. I n d e xi n g a c c ur a c y of dir e ct I n d e xi n g m e c h a ni s m M a xi m u m c u m ul ati v e s p a ci n g err or 1 mi n ut e. Pl e a s e c h o o s e Fr o nt- L o c k 3 J a w c h u c k o nl y.
S UI T F O R C S- 6, C C- 6 S UI T F O R C S- 8, C C- 8 S UI T F O R C C- 1 2
N O.
1
F L A T N E S S O F C L A M PI N G S U R F A C E( C O N C A V E)
± 0. 0 1 5
2
P A R A L L E LI S M O F C L A M PI N G S U R F A C E T O BASE
± 0. 0 2
S Q UA RE NESS OF C L A M PI N G S U R F A C E T O A N GL E FA C E
± 0. 0 2
4
T R U E R U N NI N G O F C L A M PI N G S U R F A C E
± 0. 0 1 5
5
T R U E R U N NI N G O F C E NT E R H OL E M E A S U R E D AT H OL E E D G E
± 0. 0 2
MI L LI N G M A C HI N E A C C E S S O RI E S
A2
D P- 2, 3, 4, 5
* D P- 2 s et i n cl u d e i n d e x pl at e. cr a n k h a n dl e, 3 p c s s cr e w, s e ct or, & U W a s h er. 1 c art o n wit h 1 s et. Gr o s s w ei g ht: 3. 5 k g s. M e a s.: 0. 1 3 C F T. N u m b er of t h e h ol e s of Di vi di n g Pl at e s O R D E R N O.
* D P- 2
4. 5
1 0 0 1- 0 3 1
4. 6
1 0 0 1- 0 3 2
D P- 4
4. 6
1 0 0 1- 0 3 3
D P- 5
4. 6
1 0 0 1- 0 3 4
1. 4
1 0 0 1- 0 3 0
2 6, 3 0, 3 4, 3 8, 4 1, 4 4, 4 7, 5 1, 5 7 2 8, 3 2, 3 7, 3 9, 4 3, 4 6, 4 9, 5 3, 5 9 6 1, 6 7, 7 1, 7 7, 8 1, 8 7, 9 1, 9 7 6 3, 6 9, 7 3 , 7 9, 8 3, 8 9, 9 3, 9 9
D P- 1
1 5, 1 6, 1 7, 1 8, 1 9, 2 0 2 1, 2 3, 2 7, 2 9, 3 1, 3 3 3 7, 3 9, 4 1, 4 3, 4 7, 4 9
O R D E R N O.
* D P- 1
T S- 1
T S- 1
T S- 3
T S- 2 ~ T S- 4
U nit: m m
O R DE R N O.
B
G. W.
H
T S- 1
108
80
1 5 5- 1 8 0 6 4 1 0 7 1 1 1 3 4 9 4
T S- 2
150
11 5
1 7 0- 1 9 5 6 4 1 5 0 1 1 1 5 5 1 1 0 1 6
205
130
2 1 0- 2 3 5 6 4 2 0 5 1 3 1 8 5 1 3 8 1 6
H V- 4, H V- 6, V SI- 4, V SI- 5, B S- 0, V U T- 6, V U- 1 0 0, V U- 1 5 0 B S- 1, C C- 6 C S- 6, H V- 8 C S- 8, H V- 1 0, H V- 1 2, C C- 8, V U T- 1 0, V U T- 1 2, V U- 2 0 0
260
182
2 1 0- 2 3 5 7 5 2 6 0 1 7 2 0 5 1 4 4 1 6
H V- 1 4, C C- 1 2, H V- 1 6
T S- 4
A3
A
MI L LI N G M A C HI N E A C C E S S O RI E S
16
N O.
3. 9
0. 4
1 0 0 1- 0 2 2
5. 5
0. 4
1 0 0 1- 0 2 3
8. 1
0. 4
1 0 0 1- 0 2 4
1 1. 9
0. 7
1 0 0 1- 0 2 5
- 0. 0 3 5 - 0. 0 1 5
d F O R 3 JA W C H U CK
Ø25
O R DE R N O.
U nit: m m
D
d
H
90 60 20 F L T- 1 0 3 F or V S C- 3 F F L T- 1 0 4 F or V S C- 4 F F L T- 0 F or V S C- 5 F F L T- 1 F or V S C- 6 F F L T- 2 F or V S C- 7 F F L T- 3 F or V S C- 8 F
O R DE R N O.
11 3 8 0 2 0
F L a n g e f or V S C- A T Y P E F L T- 1 0 3 A F or V S C- 3 A F L T- 1 0 4 A F or V S C- 4 A F L T- 0 A F or V S C- 5 A F L T- 1 A F or V S C- 6 A F L T- 2 A F or V S C- 7 A F L T- 3 A F or V S C- 8 A
D
d
H
90
55
20
11 3
72
20
138
100
20
170
130
21
195
155
24
210
165
24
H V- 4 V U- 1 0 0 H V- 6 V U- 1 5 0, V U T- 6 H V- 6, 8 V U- 1 5 0, 2 0 0, V U T- 6 H V- 8, 1 0 V U- 2 0 0, V U T- 1 0 H V- 1 0, 1 2, 1 4 V U T- 1 0, 1 2 H V- 1 0, 1 2, 1 4, 1 6 V U T- 1 2
138 100 20 170 130 21 195 155 24 210 160 24
H V- 4 V U- 1 0 0 H V- 6 V U- 1 5 0, V U T- 6 H V- 6, 8 V U- 1 5 0, 2 0 0, V U T- 6 H V- 8, 1 0 V U- 2 0 0, V U T- 1 0 H V- 1 0, 1 2, 1 4 V U T- 1 0, 1 2 H V- 1 0, 1 2, 1 4, 1 6 V U T- 1 2
N O. 0. 7 1
1 0 0 1- 0 3 6
1. 0
1 0 0 1- 0 3 7
1. 9
1 0 0 1- 0 4 0
3. 3
1 0 0 1- 0 4 1
5. 2
1 0 0 1- 0 4 2
4. 9
1 0 0 1- 0 4 3 U nit: m m
N O.
M8x10 3412 M M8x10 3412 M M8x10 3412 M M10x14 S P E CI A L SI Z E M10x14 S P E CI A L SI Z E M10x16 S P E CI A L SI Z E
M8x20L
0. 7 1
1 0 0 1- 0 4 4
M8x20L
1. 0
1 0 0 1- 0 4 5
M8x20L
1. 9
1 0 0 1- 0 4 6
M10x25L
3. 3
1 0 0 1- 0 4 7
M10x25L
5. 2
1 0 0 1- 0 4 8
M10x30L
4. 9
1 0 0 1- 0 4 9
O R D E R N O. V S C- 3 A V S C- 5 A
S UI T F O R H V- 4, V U- 1 0 0( F L T- 1 0 3 A) S UI T F O R B S- 0 O R H V- 6, V U T- 6, V U- 1 5 0( F L T- 0 A) V S C- 6 A S UI T F O R B S- 1 O R H V- 8, 1 0, V U T- 6, V U- 2 0 0( F L T- 1 A) V S C- 7 A, 8 A S UI T F O R B S- 2 O R H V- 1 0, 1 2, 1 4, V U T- 1 0, 1 2( F L T- 2 A, F L T- 3 A) V S C- 1 0 A S UI T F O R H V- 1 4, 1 6 O R DE R N O.
d1
11 5 1 0 0
3- M 8
1 6 0 m m( 6”)
142 130
3- M 8
1 9 0 m m( 7 1/ 2”) 1 7 2 1 5 5
3- M 1 0
V S K- 6 A V S K- 8 A V S K- 1 2 A O R DE R N O.
d2 T H R E A D
1 3 0 m m( 5”)
O R D E R N O.
B S- 0, H V- 6, V U T- 6, V U- 1 5 0 H V- 8, H V- 1 0, V U T- 6, V U- 2 0 0
2 0 0 m m( 8”)
180 165
3- M 1 0
B S- 2, H V- 1 0, 1 2, 1 4, V U T- 1 0, 1 2
2 5 0 m m( 1 0”)
225 206
3- M 1 2
H V- 1 4, 1 6
S UI T F O R C S- 6, C C- 6 S UI T F O R C S- 8, C C- 8 S UI T F O R C C- 1 2
d1
d2 T H R E A D
1 6 0 m m( 6”)
142 130
3- M 8
C S- 6, C C- 6
2 0 0 m m( 8”)
180 165
3- M 1 2
C S- 8, C C- 8
3 1 5 m m( 1 0”)
285 260
3- M 1 6
C C- 1 2
MI L LI N G M A C HI N E A C C E S S O RI E S
A4
V U T- 6
Cl a m pi n g b olt
V U T- 1 2
T a bl e Tilti n g H a n dl e
V U T- 6 T a bl e Tilti n g H a n dl e V U T- 1 0
Tilti n g b y ri gi d & str o n g d e si g n, 2 s u p p ort er & ri gi d cl a m pi n g s y st e m c o n str u cti o n. Mi ni m u m s et- u p ti m e. Tilti n g a n gl e c a n a dj u st e d b y w or m & w or m g e ar s y st e m. A c c ur at e a n d b uilt f or u s e i n milli n g, b ori n g a n d ot h er m a c hi n e s. I n d e xi n g, f a ci n g a n d ot h er o p er ati o n s c a n b e d o n e r a pi dl y wit h e xtr e m e pr e ci si o n. W or m s h aft s ar e h ar d e n e d a n d gr o u n d. I n d e xi n g c a n b e d o n e wit h o pti o n al di vi di n g pl at e s.
Cl a m pi n g b olt
O R DE R N O.
T A B L E DI A M E T E R M O U N TI N G & T A B L E H EI G H T S U R F A C E D H h A B
OVE R ALL SI Z E b c
T- S L O T C E N T E R H EI G H T CE NTE R WI D T H H A N DLE H OLE e H1
CE NTE R H EI G H T
W EI G H T
C O DE N O.
V U T- 6
150
11 5
165
180
268
380 143 125
11
60
M T- 2
90
2 3. 5
1 0 0 1- 0 1 4
V U T- 1 0
250
155
275
255
397
495 210 187
14
78
M T- 3
150
7 5. 5
1 0 0 1- 0 1 5
V U T- 1 2
300
178
319
300
447
551 235 212
16
8 4. 5
M T- 4
169
108
1 0 0 1- 0 1 6
O P TI O N A L : D et ail s e e A 3 F L A N G E & D P- 1, D P- 3
DI VI DI N G P L A T E S O R DE R N O.
S UI T F O R M O DEL
W EI G H T
C O DE N O.
D P- 1
f or V U T- 6
1. 4
1 0 0 1- 0 3 0
D P- 3
f or V U T- 1 0, V U T- 1 2
4. 6
1 0 0 1- 0 3 2
T AI L S T O C K T S- 3
A5
N e w M o d el
V U T- 6
V U T- 1 0 V U T- 1 2
D e gr e e p er o n e h a n dl e r ot ati o n
6º
1º
TI L TI N G v er ni er r e a di n g
1’
2’
S c al e of mi cr o c oll ar
5’
1’
D e gr e e p er o n e h a n dl e r ot ati o n
4º
4º
S c al e of mi cr o c oll ar
2’
1’
v er ni er r e a di n g
2 0”
1 0”
G e ar r ati o
1: 9 0
1: 9 0
M AI N S P E CI FI C A TI O N S
U nit: m m
O R DE R N O.
S UI T F O R G. W. M E A S M O DEL CFT
C O DE N O.
T S- 1
108
80
V U T- 6
3. 9
0. 4
1 0 0 1- 0 2 2
T S- 3
205
130
V U T- 1 0, V U T- 1 2
8. 1
0. 4
1 0 0 1- 0 2 4
MI L LI N G M A C HI N E A C C E S S O RI E S
TA BLE
R OTA RY TA BLE
BI G T H R O U G H C E NT E R H OL E
2 4- N O T C H R A PI D I N D E X/ E A C H
T h e F e at ur e i s s a m e a s V U T- 6, 1 0, 1 2 t y p e. F or t h e l o n g b ar & ot h er w or k pi e c e n e e d BI G G E R B O R E si z e. M ulti pl e p ur p o s e.
N e w M o d el
U p gr a d e y o ur milli g m a c hi n e t o s p e e d u p pr o d u cti o n.
O R DE R N O.
T A B L E DI A M E T E R & T A B L E H EI G H T D H h
M O U N TI N G S U RFA CE A B
O V E R A L L SI Z E
T- S L O T WI D T H C E N T E R C E N T E R H EI G H T W EI G H T C O D E N O. H OLE e
b
c
250
155
275
255
397
495
210
187
14
Ø45
150
7 5. 5
1 0 0 1- 0 1 5 A
300
178
319
300
447
551
235
212
16
Ø65
169
108
1 0 0 1- 0 1 6 A
O P TI O N A L :
D et ail s e e A 3
F L A N G E & D P- 3 T S- 3
DI VI DI N G P L A T E S
T AI L S T O C K
O R DE R N O.
S UI T F O R M O D E L
W EI G H T
C O DE N O.
O R DE R N O.
D P- 3
f or V U T- 2 5 0, V U T- 3 0 0
4. 6
1 0 0 1- 0 3 2
T S- 3
205
U nit: m m
130
S UI T F O R M O D E L G. W. M CE FAT S
C O DE N O.
V U T- 2 5 0, V U T- 3 0 0
1 0 0 1- 0 2 4
8. 1
0. 4
MI L LI N G M A C HI N E A C C E S S O RI E S
A6
Pl at e A
15
16
17
18
19
20
Pl at e B
21
23
27
29
31
33
Pl at e C
37
39
41
43
47
49
B S- 0
B S- 1
TAPE R OF
O R DE R N O.
A
B S- 0
177 188 173 13 160 91
16 100
M T- 2
B S- 1
2 4 5 2 3 0 2 2 0 1 9 2 0 5 11 4 1 6 1 2 8
M T- 3
B
H
U nit: m m
U nit: m m
N O.
O R DE R N O.
18
1 0 0 1- 0 5 0
B S- 0
1 5 5- 1 8 0 6 4 1 0 7 1 1 1 3 4 9 4 8 0- 1 0 8 1 6
4
20
1 0 0 1- 0 5 1
B S- 1
1 7 0- 1 9 5 6 4 1 5 0 1 1 1 5 5 1 1 0 1 1 5- 1 5 0 1 6
5. 3
A1
N. W.
B1 H1
Di vi di n g H e a d c a n di vi d e i n a n y a n gl e b y t h e dir e ct, i n dir e ct, or diff er e nt m et h o d s. T h e r ati o b et w e e n t h e w ar m a n d t h e w ar m g e ar i s 4 0: 1.I n dir e ct i n d e xi n g of all n u m b er s fr o m 2 t o 5 0 a n d m a n y n u m b er s u p t o 3 8 0 p o s si bl e H ar d e n e d a n d gr o u n d s pi n dl e i s ri gi dl y h el d i n a t a p er r oll er b e ari n g. W or m i s h ar d e n e d a n d gr o u n d al s o. T h e s wi v el h e a d c a n b e l o c k e d of a n y a n gl e fr o m 1 0º a s s ur e s s m o ot h r ot ati o n. All m o d el s h a v e t hr e a d e d s pi n dl e n o s e a n d 2 4 h ol e di vi di n g pl at e wit h e a s y c o n v er si o n t o f a st dir e ct i n d e xi n g o n n u m b er s 2, 3, 4, 6, 8, 1 2, a n d 2 4.
B S- 0- J- 5 i s
B S- 2 A- J- 8
3- J a w T h e C h u c k Fi xi n g H ol e I s Fr o m Fr o nt.
Chuck
str o n g str u ct ur e s o c a n a s s ur e s m o ot h r ot ati o n.
T h e C h u c k Fi xi n g H ol e I s Fr o m Fr o nt. F. T Y P E B S- 0 T 1 1 /2 - 8 T PI T Y P E
B S- 0 T 1 1 /8 - 1 2 T PI T Y P E B S- 1 T
1 1 /2 - 8 T PI T Y P E
C all V E R T E X t o c h e c k ol d m o d el’ s st o c k.
A7
MI L LI N G M A C HI N E A C C E S S O RI E S
O R DE R N O.
N. W.
G. W.
B S- 0
19
( C) 2 0
0. 8
5” ( Ø 1 3 0 m m)
1 0 0 1- 0 5 0
B S- 1
32
( C) 3 3
1. 3
6” ( Ø 1 6 0 m m)
1 0 0 1- 0 5 1
24
( C) 2 5
0. 8
WI T H 5 C H U C K 1 0 0 1- 0 5 3
42
( C) 4 5
1. 3
WI T H 6
N O.
C H U C K 1 0 0 1- 0 5 4
B S- 2
B S- 2
B S- 2- J- 8 T H E C H U C K FI XI N G H O L E I S F R O M F R O N T.
B S- 2 T T Y P E T hr e a d S pi n dl e: 2 1/ 4” - 8t pi C all T o C h e c k Ol d M o d el’ s St o c k.
U nit: m m
O R DE R N O.
B S- 2
A
B
359
H
340
N O.
235 20 212
135 16 134
M T- 4
25
O R D E R N O.
B S- 2
6 8
65 7 8. 5 80 4 7. 5 57 63
1 0 0 1- 0 5 2 1 0 0 1- 0 5 5 1 0 0 1- 0 5 6 1 0 0 1- 0 5 7 1 0 0 1- 0 5 8 1 0 0 1- 0 5 9
6 8
1 0 0 1- 0 5 2
B S- 2 A B S- 2 A
285
202
237 20 213
134 16 134
M T- 4
25
1 0 0 1- 0 5 7 U nit: m m
O R DE R N O.
A1
B1
H1
B S- 2
1 7 0- 1 9 5
64
150
11
155
11 0
1 1 5- 1 5 0
B S- 2 A
1 7 0- 1 9 5
64
150
11
155
11 0
1 1 5- 1 5 0
N. W.
O R DE R N O.
16
5. 3
B S- 2
( C) 6 5
3. 4
6 O R 8 F TYPE
16
5. 3
B S- 2 A
( C) 4 7. 5
1. 2 4
6 O R 8 F TYPE
B S- 2 A S e mi- U NI V E R S A L DI VI DI N G H E A D W/ O C H A N G E G E A R T Y P E St a n d ar d A c c e s s ori e s
B S- 2 A
B S- 2 A C O M E S WI T H A T AI L S T O C K, A S E T O F DI VI DI N G P L A T E, A S E T O F C A R RI E R C L A M P, A 3 J A W P L A T E, A C E N T E R B S- 2 A B O D Y S T R U C T U R E I S S A M E A S B S- 2 WI T H O U T C H A N GI N G G E A R A R B O R O R B R A C K E T. O T H E R A C C E S S O RI E S A R E S A M E A S B S- 2.
B S- 2 A
MI L LI N G M A C HI N E A C C E S S O RI E S
A8
T h e s a m e a s R ot ar y t a bl e Pl e a s e s e e p a g e A 3
T hi s pr o d u ct c o m bi n e s t h e a d v a nt a g e s of t h e S u p er I n d e x wit h t h o s e of a w or m- g e ar e d i n d e x. W h e n m o u nt e d o n a milli n g, b ori n g or ot h er m a c hi n e t o ol it c a n c arr y o ut si n gl e- p ur p o s e i n d e xi n g a n d i n dir e ct i n d e xi n g u si n g t h e w or m- dri v e m e c h a ni s m. Di s e n g a gi n g t h e w or m dri v e t h e 2 4- n ot c h m a st er pl at e p er mit s 2, 3, 4, 6, 8, 1 2 a n d 2 4 di vi di n g i n t h e s a m e m a n n er a s t h e Si m pl e I n d e x. W h e n t h e c h u c k i s r e m o v e d, t h e u nit c a n b e u s e d a s a h ori z o nt al a n d v erti c al t y p e r ot ar y t a bl e. T h e o p er ati n g h a n dl e t o r ot ar y t a bl e w or m g e ar r e d u cti o n r ati o n i s 1: 9 0. T h e o p er ati n g h a n dl e c oll ar i s gr a d u at e d i n o n e mi n ut e, a n d r e a di n g s d o w n t o t e n s e c o n d s c a n b e s et o n t h e v er ni er. S u p er s p a c er i n d e x i n cl u d e 3 j a w c h u c k, 1 0 / 2 5 0 m m f a c e pl at e, m a s ki n g pl at e s 2, 3, 4, 6, 8, 1 2.
T S- 2 f or C S- 6 T S- 3 f or C S- 8
D P- 4 T h e st at e of C S- 8 & Di vi di n g Pl at e
N e w M o d el C S- 6 C C- 6
C S- 8 C C- 8
4º 2’ 2 0’’ 1: 9 0
4º 1’ 1 0’’ 1: 9 0
D e gr e e p er o n e h a n dl e r ot ati o n S c al e of mi cr o c oll ar v er ni er r e a di n g G e ar r ati o
U nit: m m
O R DE R N O. 160 V S K- 6 A 210 V S K- 8 A
2, 3, 4, 6 8, 1 2, 2 4
A
B
4~42
10~156
44
44
203
50
250
235
221
220
4~62
10~180
58
63
254
58
310
285
243
225 U nit: m m
O R DE R N O.
A9
c
d
e
150
184
82
11 2
66
16
123
186
80
18
( C) 4 3. 6
1. 2
1 0 0 1- 0 6 0
160
201
82
125
75
16
155
232
96
18
( W) 7 8. 3
3. 1
1 0 0 1- 0 6 1
MI L LI N G M A C HI N E A C C E S S O RI E S
i
N O.
( W) W o o d e n C a s e ( C) C art o n C a s e
C C- 8 C C- 1 2, Ø 1 0 5 BI G T H R O U G H H O L E D E SI G N W h e n or d er o pti o n al hi g h er a c c ur a c y c h u c k , pri c e will b e hi g h er. E x a m pl e wit h V S K- 6, 8, 1 2
T h e c e nt er t hr o u g h h ol e i s bi g t o b e s uit a bl e f or t h e l ar g e a n d l o n g w or k pi e c e. H ar d e n e d a n d gr o u n d 2 4 p o siti o n m a st er pl at e, c a n i n d e x t h e s p e ci al a n gl e of 1 5 wit h e x c ell e nt a c c ur a c y. C S- T y p e c a n b e u s e d wit h 2 p c s t y p e 3- J a w C h u c k. E s p e ci all y, it d o e s si mil ar w or k. a s r ot ar y t a bl e w h e n it m at c h wit h f a c e pl at e. R a pi d i n d e xi n g a n d e a s y o p er ati o n. It’ s a s h ar p e q ui p m e nt f or m a s s- pr o d u cti o n. Si m pl e i n d e x i n cl u d e 3-j a w c h u c k, M a s ki n g Pl at e s 2, 3, 4, 6, 8, 1 2 U s e d t h e k e y g ui d e bl o c k, t h e c e nt er c a n b e c orr e ct e d q ui c kl y a n d a c c ur at el y.
C C- 1 2 A wit h V S K- 1 2 A c h u c k e c o n o mi c al c h u c k. C C- 6, 8 N O. 1
P ar all eli s m of t a bl e s urf a c e t o b a s e
0. 0 2
2
Tr u e r u n ni n g of a xi al m o v e m e nt of t a bl e s urf a c e
0. 0 3
Tr u e r u n ni n g of c e nt er b o s s
0. 0 2
S q u ar e n e s s of b a s e t o a n gl e f a c e
0. 0 2
4
C C- 1 2
T S- 2 F O R C C- 6 T S- 3 F O R C C- 8 T S- 4 F O R C C- 1 2 pl e a s e s e e p a g e A 3 O R DE R N O.
A
I II II
B
U nit: m m
D
2, 3, 4, 6 2 5 3 2 2 5 1 7 9 1 6 0 1 8 7 1 1 5 1 3 0 8, 1 2, 2 4 3 1 8 2 7 4 2 0 9 2 0 0 2 3 0 1 5 5 1 5 7
N O. Ø55~ Ø145 16
Ø3~ Ø160
44
44
( C) 2 9. 5
0. 9
1 0 0 1- 0 6 2
Ø65~ Ø200 16
Ø4~ Ø200
63
58
( C) 5 1. 5
1. 3
1 0 0 1- 0 6 3
2, 3, 4, 6 8, 1 2, 1 6 4 3 2 3 8 8 2 9 3 3 1 5 3 5 0 2 0 0 2 2 8 Ø 1 0 0 ~ Ø 3 1 5 1 6 Ø 1 0 ~ Ø 3 1 5 2 4, 4 8
106
105
( W) 1 6 3
3. 6
1 0 0 1- 0 6 6 1 0 0 1- 0 6 6 A
MI L LI N G M A C HI N E A C C E S S O RI E S
A10
1. U nl o c k t h e t a bl e 2. M a n u all y r ot at e 3. S ettl e i n p o siti o n
1. O p er at e t h e e x c h a n g e a bl e v al u e 2. U s e t h e att a c h e d h a n dl e b y h a n d 3. S et p o siti o n d e p e n di n g o n t h e i n di c ati o n, at t h e e d g e t h e t a bl e. 4. M a k e s ur e t h e p o siti o n i s c orr e ct, t h e n o p er at e t h e v al u e a n d l o c k t h e t a bl e.
4. L o c k u p t h e t a bl e
2 P C S HI R T H C o u pli n g
O R D E R N O. 300x300
450x450
600x600
700x700
800x800
1000x1000
1200x1200
160
170
200
220
280
300
340
-
ø30
ø40
ø40
ø60
ø60
ø80
14
18
20
20
22
22
22
8
8
Cl o c k wi s e a n d c o u nt er cl o c k wi s e 5
5
5
5
M a n u al
5
Air Pr e s s ur e 5 ~ 8 k g s/ c m 2 M a n u al
1 5º
1º or 5º ±3
1200
2400
3400
3400
4500
6000
7000
500
1000
2000
2000
3000
5000
6000
-
2200
3200
3200
5400
5400
8100
94
205
400
600
900
1200
2000
1 0 0 1- 0 7 0( 1 5)
1 0 0 1- 0 7 1
1 0 0 1- 0 7 2
1 0 0 1- 0 7 3
1 0 0 1- 0 8 1
1 0 0 1- 0 8 2
1 0 0 1- 0 8 3
1 0 0 1- 0 8 4
1 0 0 1- 0 8 5
1 0 0 1- 0 8 6
T h e b o d y i s F C- 3 5 c a st ir o n, d ur a bl e a n d will l a st l o n g er wit h o ut d ef or m ati o n. Cl a m pi n g/ U n cl a m pi n g b y p n e u m ati c, e a s y o p er ati o n. P o w erf ul cl a m pi n g d e si g n, all o w h e a v y c utti n g a n d b ori n g.
B uil d-i n 2 pi e c e s hirt h c o u pli n g f or p o siti o ni n g, i n d e xi n g a c c ur a c y ± 3 s e c, e n s ur e a l o n g-t er m o p er ati o n. S uit a bl e f or t h e hi g h a c c ur a c y m a c hi ni n g s u c h a s B ori n g- Milli n g, Gri n di n g- M a c hi n e.
VI T- 3 0 0 ( PI C T U R E)
VI T- 3 0 0
VI T- 4 5 0 ~ 1 2 0 0
A 11
MI L LI N G M A C HI N E A C C E S S O RI E S
A
450
600
700
800
1000
1200
B
170
200
220
280
300
340
100
100
125
100
150
200
D
30
40
40
60
60
80
E
18
20
20
22
22
22
F
16
20
20
23
23
23
G
12
14
14
15
15
15
H
28
35
35
38
38
38
V SI- 3 MI NI T Y P E
3 J A W C H U C K V S C- 3 A f or V SI- 3 / V S C- 4 A f or V SI- 4 / V S C- 5 A f or V SI- 5, t h e bi g r a n g e cl a m pi n g c a p a cit y Si m pl e & r a pi d o p er ati o n. Di vi d u al n u m b er 2 4- n ot c h ( 1 5º e a c h) T a bl e s c al e 1º, f or a n g ul ar i n d e xi n g. T a bl e b or e 3 0 m m. H ori z o nt al / v erti c al & 2 dir e cti o n S uit f or milli n g & drilli n g m a c hi n e u si n g. O pti o n al: t ail st o c k T S- 1, Pl e a s e s e e p a g e A 2 O R DE R N O.
A
B
120 187 202
94 146 161
C OLL ETI N D E X E R N O N E C O N O MI C A L
11 7 146 161
D
E
47 80 87
11 6 135 142
Ø25 Ø30 Ø30
7. 5 1 0. 5 1 4. 5
V S R- 6 3 V S R- 8 3
V S R- 6 V S R- 8
V S R- 6 + V P S- 6 A 4 J A W C H U C K V S R- 8 + V P S- 8 A 4 J A W C H U C K V S R- 1 0 + V P S- 1 0 A 4 J A W C H U C K
O R DE R N O.
F O R S H APE
N O. 1 0 0 1- 0 6 4 A 1 0 0 1- 0 6 4 1 0 0 1- 0 6 5
V S R- 6 3 + V S C- 6 A 3 J A W C H U C K V S R- 8 3 + V S C- 8 A 3 J A W C H U C K
V S R- 6 3
4-j a w c h u c k (i n cl u d e r e v er s a bl e a n d r e m o v a bl e j a w) i s d e si g n e d wit h s wi v el b a s e f or m ultif u n cti o n al p ur p o s e. V E R T E X si m pl e r ot ar y c h u c k c a n b e pl a c e d a n d fi x e d o n y o ur d e sir e d p o siti o n. 3 6 0º v er ni er s c al e: s m o ot h s wi v al m oti o n a n d e a s y l o c ki n g b y s cr e w s. B ot h h ori z o nt al a n d v erti c al p o siti o n c o ul d b e u s e d o n milli n g a n d m a c hi ni n g c e nt er.
A
A1
B
B1
D
E
F
H
V S R- 6
242
233
139
11 0
160
45
15
70
3- M 8
69
29
13
1 7. 8
1 0 0 1- 0 6 8
V S R- 8
278
270
159
125
200
65
20
86
3- M 1 0
75
34
16
27
1 0 0 1- 0 6 7
V S R- 1 0
373
355
165
16
4 3. 5
1 0 0 1- 0 6 9
242
233
139
11 0
160
45
15
70
3- M 8
69
29
13
18
1 0 0 1- 0 6 8 A
278
270
159
125
200
65
20
86
3- M 1 0
75
34
16
3 0. 5
1 0 0 1- 0 6 7 A
22
M
3- M 1 2
N O.
MI L LI N G M A C HI N E A C C E S S O RI E S
A12
Wit h V S C- 4 3- J a w c h u c k. O. D. cl a m pi n g Ø 3- 9 0 m m, I. D. cl a m pi n g Ø 3 2- 8 4 m m. T ol er a n c e ± 0. 0 1 m m/ 1 0 0 m m. O R DE R N O.
A
B
180
77
181
L o a d C a p a cit y : 1 5 K g s 2 a xi s wit h a n gl e s c al e F or a n gl e s etti n g C h u c k i n d e xi n g / R ot ati n g s etti n g b y s c al e. Tilti n g F e at ur e s s a m e a s V U A s eri e s, P a g e B 1 3.
D
E
F
G. W
11 2
11 0
16
14
N O. 2 0 0 3- 0 6 0
T ol er a n c e ± 0. 0 1 m m/ 1 0 0 m m. S uit f or m ulti - a n gl e c utti n g. Si m pl e w a y f or m a s s pr o d u cti o n. L o a d C a p a cit y : 1 5 K g s Wit h 1 5 p c s E R- 4 0 C oll et ( 4, 5, 6, 8, 1 0, 1 2, 1 3, 1 5, 1 6, 1 8, 2 0, 2 1, 2 2, 2 5, 2 6) O R DE R N O.
A
B
180
77
136
D
E
F
G. W
63
11 0
16
12
N O. 2 0 0 3- 0 6 5
Wit h V S C- 4, V S C- 5, 3- J A W C h u c k. O. D. Cl a m pi n g ø 3- 9 0 m m ( V S C- 4) O. D. Cl a m pi n g ø 3- 1 1 0 m m ( V S C- 5) I. D. Cl a m pi n g ø 3 2- 8 4 m m ( V S C- 4) I. D. Cl a m pi n g ø 3 5- 1 0 0 m m ( V S C- 5) Q ui c k s etti n g O p er ati n g i s v er y q ui c k a n d e a s y, c a n i n cr e a s e F or n o n- n or m al a n gl e s etti n g. It s s wi v elli n g a n d tilti n g f e at ur e s wit h c h u c k cl a m pi n g m a k e t hi s u nit f or r o u n d & s q u ar e, a n g ul ar drilli n g m a c hi ni n g o n v ari o u s m a c hi n e t o ol s or f or b e n c h w or k t a bl e. L o a d c a p a cit y : 1 5 k g s O R D E R N O.
A13
A
B
140
120
140
120
D
E
F
G
H
20
190
72
158
17
203
16
1 0 0 2- 2 1 7
20
190
72
158
17
203
17
1 0 0 2- 2 1 8
MI L LI N G M A C HI N E A C C E S S O RI E S
Tiliti n g r a n g e 0º- 9 0º d e gr e e s fr o m h ori z o nt al t o v erti c al p o sti o n, It i s hi g h ri gi dit y. Mi ni m u m S et- u p ti m e: It h a s t w o s cr e w s t o l o c k s etti n g.
O R D E R N O.
O R D E R N O.
T S- 1
O R DE R N O.
W or m i s h ar d e n e d a n d gr o u n d. T h e r ati o i s 9 0: 1. T h e w or k t a bl e i s gr a d u at e d a f ull 3 6 0º s o t h at of t h e h a n dl e m o v e s t h e t a bl e t hr o u g h 4º. Mi cr o c oll ar i s gr a d u at e d i n st e p s of 2’ mi n. T h e t ail st o c k & Di vi di n g pl at e s ar e o pti o n al. T h e si z e s i s s a m e a s t h e r ot ar y t a bl e, pl e a s e s e e p a g e A 2. F or ar c or i n d e x c utti n g at milli n g m a c hi n e, Gri n di n g m a c hi n e or drill M a c hi n e.....
1 0 0 1- 0 2 2
1 0 0 1- 0 3 0
1 0 0 1- 0 2 4
1 0 0 1- 0 3 1
A
B
228
68
266 429
D
E
F
G
11 7
210
80
177
11 0
T S- 1
D P- 1
1 3. 5 / 1. 5
1 0 0 1- 0 1 1
75
140
250
90
216
150
T S- 1
D P- 1
2 1. 5 / 2. 0
1 0 0 1- 0 1 2
111
177
432
141
283
205
T S- 3
D P- 2
4 6 / 2. 5
1 0 0 1- 0 1 3
C e nt er B or e = ø 6 5 m m F or t h e l o n g b ar & ot h er w or k pi e c e n e e d BI G G E R B O R E si z e. M ulti pl e p ur p o s e. F a st di vi di n g f u n cti o n : 1 5º di vi si o n b y h a n dl e x 2 4/ 3 6 0º U p gr a d e y o ur milli g m a c hi n e t o s p e e d u p pr o d u cti o n. H V D- 4 0 0
O R DE R N O.
H V D- 4 0 0
ø65
1 5º
A1
D
H
128
406
130
H1
D e gr e e p er o n e h a n dl e r ot ati o n
4º
S c al e of mi cr o c oll ar
1’
v er ni er r e a di n g
1 0’’
G e ar r ati o
1: 9 0
A
B
e
255 500 435
16
N e w M o d el
TYPE 18
140kgs
70kgs
N. W. G. W
N O.
122
1 0 0 1- 1 1 0
MI L LI N G M A C HI N E A C C E S S O RI E S
A14
N e w d e si g n: A dj u st a bl e pr e s s ur e d e vi c e. J a m pr o of s y st e m.
H y dr o li mit pr o of. S cr e w s h aft br o k e n pr o of
P AT E N T
V H- 6
N e w M o d el F or N e xt
Ol d M o d el H y dr o Li n e H y dr o Li mit pr o of
V H- 1 2
H y dr a uli c c o ntr oll er: pr o vi d e st a bl e pr e s s ur e, H y dr o i n d e x er. Pr ot e ct t h e h y dr o s y st e m. H y dr o li mit pr o of r ef er e n c e s c al e. S cr e w s h aft br o k e n pr o of.
N e w d e si g n: j a m pr o of s y st e m: pr e v e nt wr o n g cl a m pi n g f or c e st u c k s t h e vi s e. C o n str u ct e d f or milli n g, drilli n g, s h a pi n g, gri n di n g a n d m a n y ot h er m a c hi n e s h o p a p pli c ati o n s. C o n c e al e d s pi n dl e f or pr ot e cti o n a g ai n st c hi p s a n d dirt. H y dr a uli c- b o o st er s y st e m f or m a xi m u m cl a m pi n g pr e s s ur e wit h mi ni m u m f or c e. Q ui c k of cl a m pi n g & l o c ki n g a n d e a s y of o p er ati o n. A c c ur a c y wit hi n 0. 0 2 m m. F ur ni s h e d wit h or wit h o ut s wi v el b a s e. H y dr a uli c- b o o st er s y st e m i s g u ar a nt e e d f or u si n g 1 y e ar s li mit e d. T h e h y dr a uli c oil n u m b er i s # 6 8. H y dr o li n e - o n e s c al e i n di c at e a b o ut 1/ 3 of t h e m a x. cl a m p f or c e. I n or d er t o e n s ur e t h e a c c ur e n c e w h e n u si n g it’ b ett er t h at d o n’t p ut s wi v el b a s e t o g et h er
G. W.
O R DE R N O.
A
V H- 4
1 0 8 3 6 1 7 0 0- 5 8 5 8- 1 1 5 1 1 5- 1 7 0
9 8 4 4 3 5 8 3 1 4 2 3 5 9 5 1 3 5 2 7 0 2 4 0 1 4 11 0 1 6 1 5 6 2 2 2 5 0 0
2 8 4 5 x 2 5 x 1 6 1 0 0 2- 0 0 1
V H- 5
1 3 2 4 8 2 1 5 0- 7 0 7 0- 1 4 5 1 4 5- 2 1 5
11 3 5 5 0 7 0 3 1 7 2 5 3 11 8 1 6 1 2 9 0 2 6 3 1 9 1 2 4 1 6 1 6 5 2 2 4 5 0 0
4 7 5 6 x 2 8 x 1 8 1 0 0 2- 0 0 2
V H- 6
1 5 1 5 4 3 0 0 0- 1 0 0 1 0 0- 2 0 0 2 0 0- 3 0 0
124 620 810 19 298 136 176 332 300 19 126 16 200 30 4500
6 3 6 5 x 3 4 x 2 2 1 0 0 2- 0 0 3
1 5 1 5 4 3 5 5 0- 1 0 0 1 0 0- 2 0 0 2 0 0- 3 0 0 3 0 0- 3 5 5 1 2 4 6 2 0 8 5 0 1 9 2 9 8 1 3 6 1 7 6 3 3 2 3 0 0 1 9 1 2 6 1 6 2 0 0 3 0 4 5 0 0
6 3 6 5 x 3 4 x 2 2 1 0 0 2- 0 0 7
V H- 8
B
2 0 4 6 2 3 0 0 0- 1 0 0 1 0 0- 2 0 0 2 0 0- 3 0 0
D
E
E1 F
G
H
M
N
O
P
N O.
1 4 4 6 8 0 8 5 7 1 7 3 4 2 1 6 2 2 0 6 3 7 5 3 5 0 1 9 1 5 5 1 6 2 0 0 3 0 7 5 0 0 1 1 0 7 1 x 3 8 x 2 5 1 0 0 2- 0 0 4
2 0 4 6 2 4 0 0 0- 1 0 0 1 0 0- 2 0 0 2 0 0- 3 0 0 3 0 0- 4 0 0 1 4 4 7 9 5 9 5 0 1 7 3 4 2 1 6 2 2 0 6 3 7 5 3 5 0 1 9 1 5 5 1 6 2 0 0 3 0 7 5 0 0 1 0 8 8 4 x 4 2 x 3 0 1 0 0 2- 0 0 5
V H- 1 2 3 0 5 7 2 3 7 5 0- 7 5 7 5- 1 7 5 1 7 5- 2 7 5 2 7 5- 3 7 5 1 4 4 7 9 5 9 5 0 1 7 3 4 2 1 6 2 2 0 6 3 7 5 3 5 0 1 9 1 7 0 1 6 2 0 0 3 0 7 5 0 0 1 3 8 8 4 x 3 5 x 2 7 1 0 0 2- 0 0 6
A15
MI L LI N G M A C HI N E A C C E S S O RI E S
P AT E N T J a m pr o of s y st e m Gr e at s m o ot h o p er ati o n H y dr o li mit pr o of. S cr e w s h aft br o k e n pr o of
V H T- 4
V H T- 6
TI L TI N G A D J U S T A B L E BY GEA R SYSTE M
5 0º
H y dr o Li n e H y dr o Li mit Pr o of
H y dr a uli c c o ntr oll er: pr o vi d e st a bl e pr e s s ur e, H y dr o i n d e x er. Pr ot e ct t h e h y dr o s y st e m. H y dr o li mit pr o of r ef er e n c e s c al e. S cr e w s h aft br o k e n pr o of.
T h e s a m e a s c h ar a ct er s of V H t y p e. S wi v el b a s e s a m e a s V H t y p e. Tilti n g s e at s et b y t w o l o c ki n g s cr e w s, w or k s i n hi g h st a bilit y. A n gl e s etti n g r a n g e s fr o m 0º ~ 5 0º. Tilti n g d e gr e e s gr a d u at e d f or e a s y r e a di n g. T H E ( 3 S T E P S C L A M PI N G P O SI TI O N) S A M E A S V H T Y P E. A c c ur a c y wit hi n 0. 0 2 m m H y dr a uli c- b o o st er s y st e m i s g u ar a nt e e d f or u si n g 1 y e ar s li mit e d. A
B
OPEN
V H T- 4
11 0 3 6
170
0- 5 8
V H T- 6
154 54
300
0- 1 0 0
D
F
G
5 6- 1 1 5
1 1 3- 1 7 0 5 0º 1 5
15
26 240 270 500 404 335 230
2500
( W) 3 3. 3
1. 2
1 0 0 2- 0 2 0
9 8- 2 0 0
1 9 8- 3 0 0 5 0º 2 0
19
28 300 330 800 585 415 290
4500
( W) 8 8
4. 4
1 0 0 2- 0 2 1
c
S wi v el b a s e
S E T TI N G H O L E F O R C L A M PI N G SI Z E C A P A CI T Y
N O.
U nit: m m
b
C L A M PI N G C A P A CI T Y ( 3 S T E P S C L A M PI N G P O SI TI O N FI G)
H
G. W.
E
a
ORDER N O.
O R DE R N O.
c
Q
G. W.
H S- 4
280 210 30
16 15
4
1 0 0 2- 0 1 0
H S- 5
297 267 43
16 20
7
1 0 0 2- 0 1 1
H S- 6
335 310 40
16 20
10
1 0 0 2- 0 1 2
H S- 8
373 355 45
16 22
16
1 0 0 2- 0 1 3
N O.
MI L LI N G M A C HI N E A C C E S S O RI E S
A16
P AT E N T
H y dr o Li n e H y dr o Li mit pr o of
LEFT
RI G H T
H y dr a uli c c o ntr oll er: pr o vi d e st a bl e pr e s s ur e, H y dr o i n d e x er. Pr ot e ct t h e h y dr o s y st e m. H y dr o li mit pr o of r ef er e n c e s c al e. S cr e w s h aft br o k e n pr o of.
C L A M PI N G H A N D L E
N e w d e si g n: a dj u st a bl e pr e s s ur e d e vi c e. S uit f or pr o c e s si n g of br a s s, A L, pl a sti c, st e el. N e w d e si g n: s u p er o p e n j a w si z e, s m all e st o p e n j a w si z e. L o c k pr o of s y st e m: pr e v e nt wr o n g cl a m pi n g f or c e st u c k s t h e vi s e. 4 5 D e gr e e tilti n g f u n cti o n b y h a n d, all o w 9 0 d e gr e e pr o c e s si n g! Tilti n g f u n cti o n h a s m or e w or k fr e e all o w a n c e will n ot bl o c k or hit m a c hi n e! L o w er o v er all h ei g ht pr o vi d e s m or e s p a c e f or h e a v y c utti n g st a bilit y a n d bi g g er w or k pi e c e! Tilti n g str u ct ur e h a s str o n g ti g ht e ni n g d e si g n. All f u n cti o n s a m e a s V H s eri e s. E x c e pt t h e tilti n g Str u ct ur e. O R DE R N O.
A17
A
B
OPEN
690
36
170
0- 5 8
940
54
300
0- 1 0 0
D
C L A M PI N G H A N D L E F O R TI L TI N G
G. W.
E
F
G
H
M
5 6- 1 1 5
1 1 3- 1 7 0 ø 1 6 5 1 7 5
102
130
290
36
440
2500
9 0º
3 8. 5
9 8- 2 0 0
1 9 8- 3 0 0 ø 2 2 5 2 3 5
137
150
375
48
615
4500
9 0º
9 3. 9 6 1 0 0 2- 0 2 6
MI L LI N G M A C HI N E A C C E S S O RI E S
N O. 1 0 0 2- 0 2 5
H Y D R O F O R C E I N DI C A T O R A H
C OLL A R O P E R AT E
M E C H NI C A L U S EI N G S UI T F O R P R O C E S SI N G O F B R A S S, A L, P L A S TI C, S T E E L, C A S TI N G
H y dr o : m o v e t h e s pi n dl e ri n g u ntil s e e t h e h y dr o li n e t o w or k vi s e. M e c h ni c al : m o v e t h e s pi n dl e ri n g t o w ar d t h e e n d u ntil t h e b u s hi n g cl o s e t h e h y dr o li n e. H e a v y d ut y c utti n g. Hi g h d ur a bilit y & hi g h pr e ci si o n. T ol er a n c e : 0. 0 1/ 1 0 0 m m Lift pr o of : pr e s s d o w n d e si g n. F C D 6 0 wit h 6 0 k g s/ m m 2 or 8 0, 0 0 0 p si hi g n q u alit y d u ctil e c a st ir o n - b o d y m at eri al - r e d u c e t h e c utti n g vi br ati o n.
O R DE R N O.
A
B
OPE N
D
E
F
G
H
V H O- 5
695 920 750 1060 830 11 4 0
545 775 600 915 700 1015
0- 2 2 0
190
505
180
160
74
105
130
55
130
3500
3 6. 5
1 0 0 2- 2 2 0
0- 3 0 0
240
625
208
196
80
125
160
58
160
4000
5 9. 1
1 0 0 2- 2 2 1
0- 3 1 0
280
700
265
240
100
165
200
63
200
5000
9 4. 3
1 0 0 2- 2 2 8
N
N. W.
V H O- 6 V H O- 8
M
N. W.
w
N O.
O R DE R N O.
A
B
H S O- 5
285
263
35
16
1 2. 5
1 0 0 2- 2 2 2
H S O- 6
330
320
40
18
1 6. 5
1 0 0 2- 2 2 3
H S O- 8
415
413
50
21
35
1 0 0 2- 2 2 9
N O.
MI L LI N G M A C HI N E A C C E S S O RI E S
A18
V D- 6 9 0 V D- 8 1 0
T h e e n cl o s e d l e a d s cr e w a n d sli di n g s urf a c e ar e h ar d e n a n d gr o u n d. Hi g h e st cl a m pi n g p o w er. It’ s v er y a c c ur at e a n d d ur a bl e. T hi s Vi s e i s s o d e si g n e d t h at t h e h ori z o nt al F or c e g e n er at e d b y ti g ht e ni n g t h e h a n dl e p u s h e s t h e s e mi s p h er e wit hi n t h e m o v a bl e j a w a n d t h u s t hr u st s t h e m o v a bl e j a w d o w n w ar d - a n gl e l o c k f e at ur e. T h er e f or e, t h e w or k pi e c e d o e s n ot lift, e v e n if it i s h el d at t h e t o p of t h e j a w pl at e s. F o ur s etti n g p o siti o n s of t h e j a w pl at e s ar e a v ail a bl e, wi d e ni n g t h e j a w pl at e s o p e ni n g. A C C U R A C Y WI T HI N 0. 0 2 m m Mi ni or d er q u a ntit y : 3 s et s f or s a m e h ei g ht b y r e q u e st. I n or d er t o e n s ur e t h e a c c ur e n c e w h e n u si n g it’ b ett er t h at d o n’t p ut s wi v el b a s e t o g et h er M A X.
O R DE R N O.
A
B
V A- 4
106
V A- 5
M
N
P
G. W.
OPE N
D
E
E1
F
G
H
36
103
90
324
351
13
2 11
96
1 2 6 2 4 2 2 2 8 1 4. 5 7 5 1 6 1 5
1500
20
35x24x15
1 0 0 2- 0 3 0
135
36
11 0
97
359
394
17
246
1 0 1 1 3 3 2 7 7 2 5 5 1 4. 5 8 5 1 6 1 5
2000
30
41x31x17
1 0 0 2- 0 3 1
V A- 6
155
46
150
11 0
422
452
20
288
11 8 1 5 8 3 2 6 3 0 2
19
95 16 17
2500
42
49x35x20
1 0 0 2- 0 3 2
V A- 8
210
62
197
129
553
583
19
355
145 190 395 366
19 105 16 19
3000
80
63x41x24
1 0 0 2- 0 3 3
160
49
190
11 0
445
478
19
296
121 160 333 305
19
80 16 17
2500
42
52x35x21
1 0 0 2- 0 3 4
155
46
230
11 0
450
480
20
288
11 8 1 5 8 3 2 6 3 0 2
19
67 16 17
2300
43
4 9 x 3 5 x 2 0 1 0 0 2- 0 3 4 B
205
62
275
129
555
615
19
378
147 191 420 377
19
79 16 17
3000
76
6 3 x 4 1 x 2 4 1 0 0 2- 0 3 5 B
V D- 8 1 0
A19
MI L LI N G M A C HI N E A C C E S S O RI E S
N O.
It’ s a pr a cti c al pi e c e of e q ui p m e nt wit h e x c ell e nt B o d y, m o v a bl e j a w a n d s wi v el b a s e m a d e of cl o s e s- gr ai n e d hi g h t e n sil e ir o n c a sti n g s. B uilt f or m a c hi ni n g a n d r et ai n e d a c c ur a c y. J a w pl at e s w er e m a d e of h ar d e n e d a n d gr o u n d e d t o ol st e el. It’ s t h e m o st s uit a bl e f or t h e Milli n g, Gri n di n g a n d Drilli n g. A C C U R A C Y WI T HI N 0. 0 2 m m I n or d er t o e n s ur e t h e a c c ur e n c e w h e n u si n g it’ b ett er t h at d o n’t p ut s wi v el b a s e t o g et h er. O R DE R N O.
A
B
G. W.
OPEN
D
E
E1
F
G
H
M
104 36
62
76
293
310
13
145
83
11 3
176
122
15
65
900
10
33x13x13
1 0 0 2- 0 4 0
132 37
80
92
362
384
13
172
97
129
209
147
15
84
900
16
40x16x15
1 0 0 2. 0 4 1
154 43
11 2
105
442
473
15
209 108
148
260
181
1 6. 5
90
1000
27
51x22x19
1 0 0 2- 0 4 2
204 63
146
127
579
609
18
312 148
190
350
234
21
122
1400
59
65x27x25
1 0 0 2- 0 4 3
N O.
V J- 4 0 0 J A W O P E N E D 1 8 5 m m V J- 5 0 0 J A W O P E N E D 2 4 5 m m V J- 6 0 0 J A W O P E N E D 3 0 5 m m I n or d er t o e n s ur e t h e a c c ur e n c e w h e n u si n g it’ b ett er t h at d o n’t p ut s wi v el b a s e t o g et h er V J- 6 0 0 E X C E P T T H E H Y D R A U LI C S Y S T E M, T H E F E A T U R E I S S A M E A S V H- T Y P E A C C U R A C Y WI T HI N 0. 0 2 m m O R DE R N O.
A
B
D
E
E1
F
G
H
M
N
G. W.
O
N O.
11 0 3 8 1 8 5
0- 6 5
5 2- 1 2 9 1 1 6- 1 8 5 9 7 3 8 6 5 1 6 1 5 2 4 0 9 6 1 3 5 2 7 0 2 3 8 1 4. 5 9 0 1 6 1 5 6
1500
25
4 6 x 2 6 x 1 6 1 0 0 2- 0 5 0
132 48 245
0- 7 8
7 0- 1 5 8 1 5 0- 2 4 5 1 1 0 4 5 5 5 8 0 1 7 2 5 5 1 1 3 1 5 8 2 9 0 2 6 5 1 9
85 16 166
1500
34
4 8 x 2 8 x 1 8 1 0 0 2- 0 5 1
154 54 305
0- 1 1 1 9 7- 2 1 1 1 9 7- 3 0 5 1 1 8 5 4 6 7 2 2 1 7 2 5 5 1 3 1 1 7 5 2 9 0 2 6 5 1 9 1 1 1 1 6 2 0 0
1500
46
5 7 x 3 0 x 2 2 1 0 0 2- 0 5 2
MI L LI N G M A C HI N E A C C E S S O RI E S
A20
T W P A T. S U P E R O P E N C A P A CI T Y: V W T- 4 B J A W O P E N E D 2 2 0 m m V W T- 6 B J A W O P E N E D 3 5 0 m m
Tilti n g s e at s et b y t w o l o c ki n g s cr e w s, w or k s i n hi g h st a bilit y. A n gl e s etti n g r a n g e s fr o m 0 º ~ 5 0º. Tilti n g d e gr e e s gr a d u at e d f or e a s y r e a di n g. S wi v el b a s e gr a d u at e d t o 3 6 0º a n d fi x a bl e i n a n y p o siti o n.
V W T- 4 B V W T- 6 B
O R DE R N O. V W T- 4 B V W T- 6 B
A
B
OPE N 11 0 3 6 220 152 54 350
G. W.
c
D
E
F
G
H
5 0º
15
15
26 240 185 270 500 404 335 230
1200
( C) 3 3. 3
1. 2
1 0 0 2- 0 6 0 B
5 0º
20
19
28 300 246 330 800 585 415 290
1600
( W) 7 9. 7
4. 4
1 0 0 2- 0 6 1 B
3 1. 7 47
N O. 1 0 0 2- 0 9 0 1 0 0 2- 0 9 1
N O.
H e a v y c a st ir o n str u ct ur e S c al e s i n b ot h a xi s 3 6 0º s wi v el ar o u n d Z- a xi s 9 0º v erti c al a n d h ori z o nt al s wi v el O R DE R N O. V W T- 5 V W T- 6 A
A21
A 130 160
B
E E1 OPE N D 46 1 0 0 11 8 2 8 0 4 1 5 51 120 140 360 510
F
G
15 17
286 130 164 313 238 293 150 191 328 252
MI L LI N G M A C HI N E A C C E S S O RI E S
H 17 17
M
N
65 83
16 16
0º ~ 9 0º 0º ~ 9 0º
900 1600
A n gl e s c a n b e s et i n 3 di m e n si o n s. S wi v el s 3 6 0º ar o u n d b a s e. T h e vi s e c a n b e el e v at e d t hr o u g h 9 0º fr o m t h e h ori z o nt al t o v erti c al. A n d al s o c a n b e tilt e d o n it s l o w er a n gl e b a s e u p t o 4 5º i n b ot h ri g ht a n d l eft. Tilti n g of a n y a n gl e all k e e p t h e w or k pi e c e st e a d y, s m o ot h. P arti c ur all y t h e cl a m pi n g p art of s cr e w i s str e n gt h e n e d b y a b u s h m a d e of g u n m et al. T ur n t o l o c k. M A X.
O R DE R N O.
A
B
OPE N
80
31
85
126 335 370 15 210 127 157 240 185 10
V W- 4
11 0 3 8
V W- 5
135 40
N
95
16 405
800
1 6. 7
4 0 x 2 1 x 1 9 1 0 0 2- 0 8 0
11 6
1 5 2 4 4 8 4 9 7 1 7 2 7 6 1 5 7 1 9 0 3 11 2 4 5 1 3 1 3 5 1 6 5 0 0
1000
3 2. 7
5 6 x 2 7 x 2 3 1 0 0 2- 0 8 1
145
170 530 580 17 310 173 210 358 271 13 140 16 600
1600
4 9. 4
6 6 x 3 1 x 2 5 1 0 0 2- 0 8 2
E
E1
F
G
H
P
G. W.
M
D
V F V- 4 0 H
1
N O.
V F V- 4 1 S
S H A N K H E X. T Y P E F O R C U T TI N G 6 DI VI SI O N T Y P E
S HA NK S Q UA RE TYPE F O R C U T TI N G 4 DI VI SI O N
F O R C U T TI N G H E X. & S Q U A R E S HAPE O N R O U N D BA R & R O D T H R O U G H H OL E
O N T H E VI S E O N T H E VI S E
H O RI Z O N T A L
V E R TI C A L
O R DE R N O.
A
B
V F V- 4 0 H
127
40
V F V- 4 1 S
127
40
m m
D
E
F
G
H
30
56
70
40
40
14
33
32
58
30
56
70
40
40
14
33
32
58
E R- 4 0 7 P C S/ S E T E R- 4 0 7 P C S/ S E T
N O. 4. 8
1 0 0 1- 1 0 1
5. 2
1 0 0 1- 1 0 2
MI L LI N G M A C HI N E A C C E S S O RI E S
A22
5 A XI S VI S E
P A T.
V C V- 1 0 1 3 0
I N T E R- C H A N G E A B L E J A W
R e v er si bl e J a w : R e m o v e 4 Fi x e d S cr e w t o R e-i n st all J a w s. S uit f or 4/ 5 a xi s C N C m a c hi n e R e p e at cl a m pi n g t ol er a n c e ± 0. 0 1 m m M at eri al: hi g h t e n si o n c a st ir o n Sli d e w a y h ar d n e s s: H R C 4 5º I nt er c h a n g e a bl e j a w: h e at tr e at m e nt H R C 5 0º L o c k d o w n- dr a wi n g f or c e: k e e p w or k pi e c e fr o m lifti n g
V C V- 0 6 1 1
V C V- 0 6 1 1, V C V- 1 0 1 3 0 A23
MI L LI N G M A C HI N E A C C E S S O RI E S
S elf C e nt eri n g Vi s e
P A T.
5 A XI S VI S E
S A M E H EI G H T G U A R A N T E E S E L F C E N T E RI N G VI S E
C L A M PI N G C A P A CI T Y
V C V- 1 0 9 0 V C V- 1 0 9 0
V C V- 1 3 1 8 0 R e v er si bl e J a w : R e m o v e 4 Fi x e d S cr e w t o R e-i n st all J a w s. S uit f or 4/ 5 a xi s C N C m a c hi n e R e p e at cl a m pi n g t ol er a n c e ± 0. 0 1 m m Cl a m pi n g C a p a cit y
O R DE R N O.
A
B
C OPEN
C1
V C V- 0 6 1 1
170
80
106
V C V- 1 0 1 3 0
240 120
132
M at eri al: hi g h t e n si o n c a st ir o n Sli d e w a y h ar d n e s s: H R C 4 5º I nt er c h a n g e a bl e j a w: h e at tr e at m e nt H R C 5 0º L o c k d o w n- dr a wi n g f or c e: k e e p w or k pi e c e fr o m lifti n g
D
F
1 1 2 4 5- 1 4 0
61
20 55 25 15 14
1 4 0 6 2- 1 9 2
101 30 80 40 20 21
C2
C3
H
J
K
N
P
R
W ei g ht
( k gf)
( k g s)
C ODE N O.
14 185
500
1. 8 m/ k g s
5
1 0 0 2- 1 0 7
16 260
1000
2. 6 m/ k g s
1 8. 5
1 0 0 2- 1 0 9
2. 6 m/ k g s
L
V C V- 1 0 9 0
240 120
90
90
260
800
17
1 0 0 2- 1 0 8
V C V- 1 3 1 8 0
290 120
180
1 8 8 6 2- 2 4 2
131 30 80 40 22 21
16 312
1000
21
1 0 0 2- 1 1 5
V C V- 1 5 1 8 0
290 120
180
1 8 8 6 2- 2 4 2
151 30 80 40 22 21
16 312
1000
2 4. 5
1 0 0 2- 1 1 6
V C V- 1 3 1 8 0 D 2 9 0 1 2 0
180
1 8 8 6 2- 2 4 2
131 30 80 40 22 21
76
28
16 312
1000
22
1 0 0 2- 1 1 7
V C V- 1 5 1 8 0 D 2 9 0 1 2 0
180
1 8 8 6 2- 2 4 2
151 30 80 40 22 21
76
28
16 312
1000
2 5. 7
1 0 0 2- 1 1 8
Wit h S wi v el B a s e T y p e
7 0- 1 6 0 1 3 4- 2 2 2 1 0 1 3 5 8 0 4 0 2 0 2 2
M A X. Cl a m p
Cl a m p
X
I N T E R- C H A N G E A B L E J A W J A W C L A M PI N G S C R E W S ( E A C H J A W 4 P C S)
V C V- 0 6 1 1 S F O R C N C R OTA R Y TA BL E
O R D E R N O.
B A S E SI Z E
kgs
C O D E N O.
V C V- 0 6 1 1 S
Ø200 x 22 T hi c k n e s s
1 1. 1
1 0 0 2- 1 0 7 S
V C V- 1 0 1 3 0 S
26
1 0 0 2- 1 0 9 S
V C V- 1 0 9 0 S
Ø248 x 22 T hi c k n e s s Ø248 x 22 T hi c k n e s s
2 7. 5
1 0 0 2- 1 0 8 S
V C V- 1 3 1 8 0 S
Ø296 x 22 T hi c k n e s s
35
1 0 0 2- 1 1 5 S
V C V- 1 5 1 8 0 S
40
1 0 0 2- 1 1 6 S
V C V- 1 3 1 8 0 D S
Ø316 x 22 T hi c k n e s s Ø296 x 22 T hi c k n e s s
36
1 0 0 2- 1 1 7 S
V C V- 1 5 1 8 0 D S
Ø316 x 22 T hi c k n e s s
4 1. 5
1 0 0 2- 1 1 8 S
MI L LI N G M A C HI N E A C C E S S O RI E S
A24
0º- 9 0º
F O R C L A M PI N G
A DJ U S T M E N T A N GL E
H y dr o- b o o st er s y st e m f or m a xi m u m cl a m pi n g pr e s s ur e wit h mi ni m u m f or c e.
Tilti n g b y ri gi d & str o n g d e si g n, 2 s u p p ort er & ri gi d cl a m pi n g s y st e m c o n str u cti o n. Mi ni m u m s et- u p ti m e. Tilti n g a n gl e c a n a dj u st e d b y w or m & w or m g e ar s y st e m. A c c ur at e a n d b uilt f or u s e i n milli n g, b ori n g a n d ot h er m a c hi n e s. W or m s h aft s ar e h ar d e n e d a n d gr o u n d.
C o m p a ct d e si g n. Gr e at cl a m pi n g c a p a cit y. Li g ht & s m o ot h o p er ati o n. b e n di n g r e si st a nt. C o n str u ct e d f or m a c hi ni n g c e nt er, milli n g, drilli n g, gri n di n g a n d m a n y ot h er m a c hi n e s h o p a p pli c ati o n s.
Str o n g str u ct ur e. O R DE R N O.
A
B
180
285
255 300
D
E
E1
F
G
H
M
P
Q
205
156
150
390
16
20
11 5
16
292
502
80
264
100
143
125
1 0 0 2- 2 5 1
399
225
270
258
442
16
22
155
20
386
619
100
397
124
210
187
1 0 0 2- 2 5 2
449
310
320
298
560
16
26
169
25
453
757
120
469
159
235
212
1 0 0 2- 2 5 3
N O.
0º- 9 0º
T H E F E A T U R E I S S A M E A S V U T- 4 N C S p e ci al d e si g n f or q ui c k cl a m pi n g. ( Fr o m t h e a c m e t hr e a d s h aft st ati o nl y) Q ui c k s etti n g b y sli di n g m o v e m e nt. Bi g cl a m pi n g c a p a bilit y. O p er ati n g v er y q ui c k a n d e a s y, c a n i n cr e a s e s o m u c h w or ki n g
S uit f or milli n g m a c hi n e, gri n di n g m a c hi n e, pr e ci si o n drilli n g m a c hi n e. A c c ur at e gr o u n d e d a n d a s s e m bl e d. Pr e ci si o n c ut a c m e t hr e a d. H ori z o nt al & v erti c al
O R DE R N O.
A25
A
B
180
34
255 300
G o o d f or s h ort t er m a n d m a s si v e pr o d u cti o n or pr ot o t y p e w or k.
D
E
E1
F
G
H
85
11 3
150
240
16
20
11 5
16
255
36
104
150
258
266
16
22
155
20
36
125
169
298
307
16
26
169
25
MI L LI N G M A C HI N E A C C E S S O RI E S
M
P
Q
412
28
185
81
143
125
1 0 0 2- 2 5 8
332
485
55
227
105
210
187
1 0 0 2- 2 5 9
379
563
60
243
131
235
212
1 0 0 2- 2 6 0
N O.
Ali g n e d P erf or m a n c e
Hi g h A c c ur a c y 0. 0 1/ 1 0 0 m m U nli mit e d Cl a m pi n g R a n g e Hi g h Q u alit y All o y St e el wit h H R C 5 9 Hi g h Cl a m pi n g Pr e s s ur e E A C H O N E I S S A M E A S H EI G H T. C A N B E U S E D I N M U L TI P L E S T Y L E. N o L e n gt h of H ei g ht Li mit ati o n N o J a w Lift All Vi s e s ar e M at c h e d p ar all eli s m ± 0. 0 1/ 1 0 0 m m O pti o n al : S wi v el b a s e RI GI D & S T R O N G O R DE R N O.
V MP -4
V MP -5
V MP -6
V MP -6 B
V MP
V MP
V MP
V MP
V MP -8 A
V MP -8 B
V MP
V MP -8 D
A
100
125
150
150
150
175
175
175
200
200
200
200
B
30
40
50
50
50
60
60
60
65
65
65
65
OPE N
100
150
200
300
400
200
300
400
200
300
400
500
D
270
345
420
520
620
455
555
655
573
595
695
795
E
325
360
530
600
700
620
620
620
718
718
718
880
F
35
40
50
50
50
58
58
58
70
70
70
70
G
75
96
125
125
125
145
145
145
170
170
170
170
H
78
78
90
8 9. 4
8 9. 4
97
97
97
11 4
11 4
11 4
1 1 3. 4
16
16
16
16
16
16
16
16
16
16
16
16
900
1300
2000
2000
2000
2000
2000
2000
2000
2000
2000
2000
9. 2
16
2 8. 5
3 4. 8
3 8. 1
4 3. 7
4 8. 3
5 3. 5
6 6. 3
7 3. 2
8 1. 3
8 7. 2
1002 -190
1002 -191
1002 -192
1002 -201
1002 -202
1002 -193
1002 -194
1002 -195
1002 -196
1002 -197
1002 -198
1002 -203
N O.
MI L LI N G M A C HI N E A C C E S S O RI E S
A26
P A T.
H y dr a uli c T y p e H y dr a uli c C o ntr ol U nit N e w d e si g n: A dj u st a bl e pr e s s ur e d e vi c e. S uit f or pr o c e s si n g of br a s s, A L, pl a sti c, st e el. N e w d e si g n: s u p er o p e n j a w si z e, s m all e st o p e n j a w si z e. l o c k pr o of s y st e m: pr e v e nt wr o n g cl a m pi n g f or c e st u c k s t h e vi s e. H y dr a uli c cl a m pi n g f or c e 4 5 0 0 k g f or h e a v y d ut y c utti n g. T h e s cr e w m e c h a ni s m t y p e cl a m pi n g f or c e i s 2 2 0 0 k g s S m o ot h & li g ht o p er ati o n f or t h e h a n dl e. Hi g h a c c ur a c y 0. 0 1/ 1 0 0 m m U nli mit e d cl a m pi n g r a n g e Hi g h q u alit y all o y st e el wit h H R C 5 9 Hi g h cl a m pi n g pr e s s ur e E a c h o n e i s s a m e a s h ei g ht. C a n b e u s e d i n m ulti pl e st yl e. N o l e n gt h of h ei g ht li mit ati o n N o j a w lift All vi s e s ar e m at c h e d p ar all eli s m ± 0. 0 1/ 1 0 0 m m Ali g n e d P erf or m a n c e
O R DE R N O.
V MP -6 B H
V MP
V MP
V MP
V MP
V MP -8 A H
V MP -8 B H
V MP
V MP -8 D H
A
150
150
175
175
175
200
200
200
200
B
50
50
60
60
60
65
65
65
65
OPE N
300
400
200
300
400
200
300
400
500
D
520
620
455
555
655
573
595
695
795
E
700
800
635
735
835
738
760
860
960
F
50
50
58
58
58
70
70
70
70
G
125
125
145
145
145
170
170
170
170
H
8 9. 4
8 9. 4
97
97
97
11 4
11 4
11 4
1 1 3. 4
16
16
16
16
16
16
16
16
16
4500
4500
4500
4500
4500
4500
4500
4500
4500
29
33
38
43
48
65
69
74
90
1 0 0 2- 2 0 1 H
1 0 0 2- 2 0 2 H
1 0 0 2- 1 9 3 H
1 0 0 2- 1 9 4 H
1 0 0 2- 1 9 5 H
1 0 0 2- 1 9 6 H
1 0 0 2- 1 9 7 H
1 0 0 2- 1 9 8 H
1 0 0 2- 2 0 3 H
N O.
A27
MI L LI N G M A C HI N E A C C E S S O RI E S
M O D U L A R VI S E S ar e m a n uf a ct ur e d u n d er ri gi d q u alit y c o ntr ol. O nl y t h e m o st s uit a bl e m at eri al s ar e u s e d, a n d t h e a c c ur a c y of e v e n t h e s m all e st c o m p o n e nt s i s a s s ur e d. A s a r e s ult of t h e hi g h st a n d ar d c o n str u cti o n M O D U L A R VI S E S c a n b e d e p e n d e d u p o n t o m ai nt ai n t h eir a c c ur a c y u n d er t h e m o st s e v er e o p er ati n g c o n diti o n s. V M P- 4 L, 5 L, 6 L, 7 L
V M P- 4 L, 5 L, 6 L, 7 L
D TYPE O R D E R N O. A B D E F G
V M P- 4 4 D 100 30 78 140 35 16 65 8. 5 1 0 0 2- 2 0 6 D
V M P- 5 5 D 125 40 78 160 40 16 80 1 4. 5 1 0 0 2- 2 0 7 D
V M P- 6 6 D 150 50 90 230 50 16 100 3 0. 1 1 0 0 2- 2 0 8 D
175 60 97 240 58 16 11 8 4 2. 4 1 0 0 2- 2 0 9 D
O R D E R N O. A B D E F G
100 30 78 140 35 16 65 8. 5 1 0 0 2- 2 0 6
125 40 78 160 40 16 80 1 4. 5 1 0 0 2- 2 0 7
150 50 90 230 50 16 100 3 0. 1 1 0 0 2- 2 0 8
175 60 97 240 58 16 11 8 4 2. 4 1 0 0 2- 2 0 9
MI L LI N G M A C HI N E A C C E S S O RI E S
A28
P erf or m e d si d e d v erti c all y.
III 2, 3, 4, 5. U s e t h e s e mi- s p h er e s e g m e nt pri n ci pl e. W h e n o p er at e s e v er al vi s e s (i n a r o w) p ut o n o n e m a c hi n e b e d, t h e o p er ati n g sit u ati o n i s a s s h o w n.
Ali g n e d P erf or m a n c e
O R DE R N O.
A
B
OPE N
D
E
F
G
108
100
103
36
63
283
16
374
202
1500
0. 4
1 4. 2
1 0 0 2- 1 8 5
156
120
150
46
74
370
16
472
221
2500
1. 1
2 9. 8
1 0 0 2- 1 8 6
H
N O.
S p e ci al d e si g n f or q ui c k cl a m pi n g. ( Fr o m t h e a c m e t hr e a d s h aft st ati o nl y) Q ui c k s etti n g b y sli di n g m o v e m e nt. Bi g cl a m pi n g c a p a bilit y. t h a n y o u c a n i m a g e. M o st fr e e a n gl e vi s e F or n o n- n or m al a n gl e s etti n g. It s s wi v elli n g a n d tilti n g f e at ur e s wit h cl a m pi n g m a k e t hi s u nit f or str ai g ht or i n cli n e d s urf a c e, a n g ul ar drilli n g m a c hi ni n g o n v ari o u s m a c hi n e t o ol s or f or b e n c h w or k t a bl e.
C L A M PI N G B OLT
O R DE R N O.
V A V- 4
A29
M A X. A
B
OPE N
D
E
F
G
H
H1
M
N
P
Q
R
82
34
85
11 0
230
17
158
70
194 190 140 374
38
20
12
72
268
700
1 7. 6
1 0 0 2- 2 1 4
106
36
104
120 256
17
158
72
206 190 140 422
38
20
16
72
280
800
2 1. 4
1 0 0 2- 2 1 5
MI L LI N G M A C HI N E A C C E S S O RI E S
N O.
Fi x e d J a w
WI D T H 1 0 0 m m O p e n e d 5 0 m m e a c h si d e. A c c e pt 3 m m w or k pi e c e diff er e nt l e n gt h. T h e sli d e w a y s ar e h ar d e n e d. Pr e ci si o n m a d e. O n e h a n dl e c a n o p er at e t w o m o v a bl e j a w s a n d cl a m p s 2 pi e c e s of w or k pi e c e of si mili ar si z e, f or 3 m m s p a c e. Lift Pr o of : Pr e s s d o w n d e si g n.
U nit: m m
O R DE R N O.
A
A1
B
410
469
108
OPE N 0~50
0~50
D
E
G
H
92
36
62
40
107
16
450
1 8. 2
1 0 0 2- 2 3 6
S elf c e nt eri n g. S uit f or r o u g h or irr e g ul ar w or k pi e c e. C o m p a ct d e si g n, 1 8 5 m m s u p er o p e n e d. Hi g h A c c ur a c y S u p er o p e n c a p a cit y = 1 9 0 m m R a pi d a n d c o n v e ni e nt c e ntr ali zi n g. Lift Pr o of : Pr e s s d o w n d e si g n. O R DE R N O.
A
A1
B
OPE N
D
E
F
G
420
469
108
185
98
36
102
62
450
1 7. 7
1 0 0 2- 2 4 0
MI L LI N G M A C HI N E A C C E S S O RI E S
A30
GE R M A N TYPE
Bi g j a w o p e ni n g. E a s y o p er ati o n, c o m p a ct d e si g n. E v e n if t h e j a w i s o p e n e d, it d o e s n ot i nt erf er e wit h t h e c o v er of t h e m o u nti n g m a c hi n e. Q ui c k s et u p, ti m e s a vi n g. W h e n j a w i s o p e n e d, it i s n ot aff e ct m o u nti n g m a c hi n e’ s c o v er.
Hi g h pr e ci si o n s y st e m k e e p t h e di m e n si o n t ol er a n c e wit hi n 0. 0 1/ 1 0 0 m m. Vi s e cl a m p s l o n g si z e w or k pi e c e s s e c ur el y & st e a d y. Hi g h A c c ur at e S y st e m: t ol er a n c e wit hi n 0. 0 1/ 1 0 0 m m.
A31
MI L LI N G M A C HI N E A C C E S S O RI E S
A d a pt a bli n di n g b e a m s y st e m wit h w or k pi e c e lift Pr e v e nti o n m e c h a ni s m. P ull-i n eff e ct. A d a pt a lift pr e v e nti n g s y st e m, b e st d e si g n.
T h e cl a m pi n g f or c e c a n b e e a sil y a dj u st e d d u e t o t h e pr e s et m e c h a ni s m. M e c h a ni c al t y p e t o g gl e e n h a n c e m e nt m e c h a ni s m. Cl a m pi n g f or c e c a n a dj u st t o s uit f or diff er e nt m at eri al, s u c h a s st e el, br a s s a n d al u mi n u m. Cl a m pi n g f or c e c a n b e a dj u st e d f or c u st o m er’ s r e q uir e m e nt. A dj u st a bl e cl a m pi n g f or c e d e vi c e.
G R E AT S M O O T H
H o w t o a dj u st t h e cl a m pi n g f or c e Aft er t h e m o v e bl e j a w t o u c h,t ur ni n g t h e h a n dl e, o nl y t h e dri v e s h aft i s tr a n s mitt e d t o t h e e n h a n c e m e nt pr o c e s s of t o g gl e j oi nt d e vi c e m e c h a ni s m u nit a n d t h e m o v a bl e j a w cl a m p s t h e w or k t hr o u g h t h e cl a m p s pi n dl e at t h e pr e s et f or c e. Cl a m p w or k pi e c e, k e e p t ur ni n g t h e h a n dl e, u ntil t h e m oti o n st o p w hi c h m e a n s V Q C m e c h a ni s m h a s l o c k w or k pi e c e i n t h e pr e- s et f or c e.
A D J U S TI N G M E T H O D 1. FI X E D C O L L A R 2. T U R N B Y W R E N C H T O G E T N O. 0, 1, 2, 3, 4. T O H A V E C L A M PI N G F O R CE
MI L LI N G M A C HI N E A C C E S S O RI E S
A32
GE R M A N TYPE
Ali g n e d P erf or m a n c e
C o m p a ct d e si g n. Gr e at cl a m pi n g c a p a cit y & ri gi d. “ T o g gl e j oi nt m e c h a ni s m”. Pr o vi d e s a st e a d y cl a m pi n g f or c e a g ai n st s h o c k s a n d vi br ati o n s d uri n g t h e o p er ati o o n s, si n c e it cl a m p s t h e w or k pi e c e r e sili e ntl y wit h a n ai d of t h e “ di s c- s pri n g s” m o u nt e d i n si d e. Str o n g cl a m pi n g f or c e. L ar g e j a w str o k e r a n g e. E x cl u si v e P o w er Vi s e pr o vi d e s a m e h ei g ht s a m e p o siti o n f or h ori z o nt al a n d v erti c al M C, N C, M a c hi n e. C o n c e al e d s pi n dl e f or pr ot e cti o n a g ai n st c hi p s a n d dirt. Q ui c k of cl a m pi n g & l o c ki n g a n d e a s y of o p er ati o n.
1
2
4
A33
MI L LI N G M A C HI N E A C C E S S O RI E S
N O. I n s p e cti o n It e m
P er ( 1 0 0 m m) G u ar a nt e e d
1
P ar all eli s m: t a bl e f a c e t o b ott o m of b e d.
0. 0 1/ 1 0 0 m m
2
S q u ar e n e s s : b et w e e n t a bl e f a c e a n d j a w pl at e.
0. 0 2/ 1 0 0 m m
3
S q u ar e n e s s: k e w a y s o n b ott o m of t a bl e f a c e t o j a w pl at e.
0. 0 2/ 1 0 0 m m
4
P ar all eli s m: t a bl e f a c e of t h e bl o c k t o b ott o m of b e d.
0. 0 2/ 1 0 0 m m
A D J U S TI N G M E T H O D 1. FI X E D C O L L A R 2. T U R N B Y W R E N C H T O G E T N O. 0, 1, 2, 3, 4. T O H A V E C L A M PI N G F O R C E 3. N O. 2 I S M O S T S UI T F O R W O R KI N G
4
O R DE R N O.
60 K N 60 K N 60 K N 60 K N
O R D E R N O.
O R D E R N O.
A
B
273 364 456 486 536 616
120 140 165 165 165 180
M 50 65 78 78 78 75
1
0
21 K N 28 K N 32 K N 32 K N 32 K N 32 K N
12 K N 16 K N 18 K N 18 K N 18 K N 18 K N
6K N 8K N 10 K N 10 K N 10 K N 10 K N
B 35 40 45 45 45 70
O R D E R N O.
30 K N 40 K N 46 K N 46 K N 46 K N 46 K N
2
128 205 275 305 355 405
120 140 165 165 165 190
D
P
R
G
H
105 126 161 161 162 202
99 1 2 4. 5 1 5 9. 5 1 5 9. 5 160 200
73 78 86 86 86 102
64 74 86 86 86 98
39 59 58 58 58 74
85 100 120 120 120 120
N
Q
W
X
Y
15 21 21 21 21 21
74 74 94 94 94 96
11 0 135 170 170 174 217
14 18 18 18 18 18
6. 5 7 7 7 7 7
OPE N 128 205 275 305 355 405
20 20 20 20 20 20
30 40 60 60 60 60
35 40 45 45 45 70
105 215 286 286 286 386
8 2. 5 86 98 98 98 95
11 2 139 145 145 169 177
N. W.
G. W.
2 3. 2 3 6. 5 6 7. 0 6 7. 0 7 2. 5 9 9. 5
2 6. 2 4 0. 4 7 2. 3 7 2. 3 7 8. 6 108
3 5 6. 5 452 554 584 634 7 11
4 0 0 5- 0 0 4 4 0 0 5- 0 0 5 4 0 0 5- 0 0 6 4 0 0 5- 0 0 6 A 4 0 0 5- 0 0 7 4 0 0 5- 0 0 8
MI L LI N G M A C HI N E A C C E S S O RI E S
A34
GE R M A N TYPE
Ali g n e d P erf or m a n c e
C o m p a ct d e si g n. Gr e at cl a m pi n g c a p a cit y & ri gi d. Li g ht & s m o ot h o p er ati o n. C o n str u ct e d f or milli n g, drilli n g, m a c hi ni n g c e nt er, gri n di n g a n d m a n y ot h er m a c hi n e s h o p a p pli c ati o n s. C o n c e al e d s pi n dl e f or pr ot e cti o n a g ai n st c hi p s a n d dirt. H y dr o- b o o st er s y st e m f or m a xi m u m cl a m pi n g pr e s s ur e wit h mi ni m u m f or c e. Q ui c k of cl a m pi n g & l o c ki n g a n d e a s y of o p er ati o n. A c c ur a c y wit hi n 0. 0 1/ 1 0 0 m m. H y dr o- b o o st er s y st e m i s g u ar a nt e e d f or u si n g 2 y e ar s li mit e d. T h e h y dr a uli c oil n u m b er i s 6 8 # H y dr o li n e - o n e s c al e i n di c at e a b o ut 1/ 3 of t h e m a x. cl a m p f or c e.
1
2
4
A35
MI L LI N G M A C HI N E A C C E S S O RI E S
N O. I n s p e cti o n It e m
P er ( 1 0 0 m m) G u ar a nt e e d
1
P ar all eli s m: t a bl e f a c e t o b ott o m of b e d.
0. 0 1/ 1 0 0 m m
2
S q u ar e n e s s : b et w e e n t a bl e f a c e a n d j a w pl at e.
0. 0 2/ 1 0 0 m m
3
S q u ar e n e s s: k e w a y s o n b ott o m of t a bl e f a c e t o j a w pl at e.
0. 0 2/ 1 0 0 m m
4
P ar all eli s m: t a bl e f a c e of t h e t a bl e f a c e bl o c k t o b ott o m of b e d. 0. 0 2/ 1 0 0 m m
P AT E N T
S M ALL L E N GT H B O D Y B UT S U P E R O P E N C A P A CI T Y
C L A M PI N G F O R C E S C A L E
O R D E R N O.
O R D E R N O.
O R D E R N O.
A
B
273
120
364
G. W.
B 35
128
120
30
2 6. 2
40
205
140
40
4 2. 5
45
275
165
60
66
45
305
165
60
66
45
355
165
60
7 8. 7 9
70
405
190
60
108
D
P
R
G
H
105
99
73
64
39
85
35
11 0
383
140
126
1 2 4. 5
78
74
59
100
40
1 1 3. 5
4 7 8. 5
455
165
161
1 5 9. 5
86
86
58
120
45
1 2 5. 5
5 8 0. 5
486
165
161
1 5 9. 5
86
86
58
120
45
1 2 5. 5
6 1 0. 5
535
165
162
160
86
86
58
120
45
1 2 5. 5
6 6 0. 5
615
180
202
200
102
98
74
120
70
122
737
M
N
Q
W
X
Y
OPE N
50
15
74
11 0
14
6. 5
128
20
105
11 2
4 0 0 5- 0 0 4 H
65
21
73
135
18
7
205
20
215
139
4 0 0 5- 0 0 5 H
78
21
93
170
18
7
275
20
285
145
4 0 0 5- 0 0 6 H
78
21
93
170
18
7
305
20
285
145
4 0 0 5- 0 0 6 A H
78
21
93
174
18
7
355
20
285
169
4 0 0 5- 0 0 7 H
75
21
95
217
18
7
405
20
385
177
4 0 0 5- 0 0 7 A H
MI L LI N G M A C HI N E A C C E S S O RI E S
A36
GE R M A N TYPE
A D J U S TI N G M E T H O D 1. FI X E D C O L L A R 2. T U R N B Y W R E N C H T O G E T N O. 0, 1, 2, 3, 4. T O H A V E C L A M PI N G F O R C E
4
O R DE R N O.
2
T O G G L E J OI N T M E C H A NI S M D E SI G N F O R H E A V Y D U T Y W O R KI N G 1
0
30 K N 21 K N 12 K N 6 K N 40 K N 28 K N 16 K N 8 K N 60 K N 46 K N 32 K N 18 K N 10 K N 60 K N 46 K N 32 K N 18 K N 10 K N 60 K N 46 K N 32 K N 18 K N 10 K N
VI S E J A W S C A N T U R N 1 8 0º F O R Y O U R R E Q UI R E M E N T.
C o m p a ct d e si g n. Gr e at cl a m pi n g c a p a cit y & ri gi d. “ T o g gl e j oi nt m e c h a ni s m”. Pr o vi d e s a st e a d y cl a m pi n g f or c e a g ai n st s h o c k s a n d vi br ati o n s d uri n g t h e o p er ati o n s, si n c e it cl a m p s t h e w or k pi e c e r e sili e ntl y wit h a n ai d of t h e “ di s cs pri n g s” m o u nt e d i n si d e. Str o n g cl a m pi n g f or c e. L ar g e j a w str o k e r a n g e. E x cl u si v e P o w er Vi s e pr o vi d e s a m e h ei g ht s a m e p o siti o n f or h ori z o nt al a n d v erti c al M C, N C, M a c hi n e. B o d y i s m a d e of F C D 6 0 hi g h q u alit y d u ctil e c a st ir o n, r e si st s
Ali g n e d P erf or m a n c e
C o n c e al e d s pi n dl e f or pr ot e cti o n a g ai n st c hi p s a n d dirt. Q ui c k of cl a m pi n g & l o c ki n g a n d e a s y of o p er ati o n.
O R D E R N O. 35 40 50 50 70
O R D E R N O.
A37
G. W.
B 128 205 275 355 405
196 283 361 455 505
120 140 165 165 190
30 40 60 60 60
2 6. 3 4 4 0. 4 7 2. 3 7 8. 5 8 108
A
B
D
P
R
G
H
273 364 455 535 615
120 140 165 165 180
105 99 73 1 2 6 1 2 4. 5 7 8 1 6 1 1 5 9. 5 8 6 162 160 86 202 200 102
64 74 86 86 98
3 8. 5 59 58 58 74
85 100 120 120 120
MI L LI N G M A C HI N E A C C E S S O RI E S
35 40 50 50 70
8 2. 5 3 5 6. 5 8 6. 5 4 5 1. 5 9 8. 5 5 5 3. 5 9 8. 5 6 3 3. 5 95 710
M
N
Q
W
X
50 65 78 78 75
15 21 21 21 21
74 73 93 93 95
11 0 135 170 174 217
14 18 18 18 18
Y
OPEN OPEN 6. 5 1 2 8 1 9 6 7 205 283 7 275 361 7 355 455 7 405 505
20 20 20 20 20
1 0 5 1 1 2 4 0 0 5- 0 0 4 L C 2 1 5 1 3 9 4 0 0 5- 0 0 5 L C 2 8 5 1 4 5 4 0 0 5- 0 0 6 L C 2 8 5 1 6 9 4 0 0 5- 0 0 7 L C 3 8 5 1 7 7 4 0 0 5- 0 0 8 L C
GE R M A N TYPE
H
S M ALL L E N GT H B O D Y B UT S U P E R O P E N C A P A CI T Y
G R E A T S M O O T H O P E R A TI O N
VI S E J A W S C A N T U R N 1 8 0º F O R Y O U R R E Q UI R E M E N T.
C o m p a ct d e si g n. Gr e at cl a m pi n g c a p a cit y & ri gi d. Li g ht & s m o ot h o p er ati o n. C o n str u ct e d f or milli n g, drilli n g, m a c hi ni n g c e nt er, gri n di n g a n d m a n y ot h er m a c hi n e s h o p a p pli c ati o n s. B o d y i s m a d e of F C D 6 0 d u ctil e c a st ir o n, HI G H d efl e cti o n/ b e n di n g r e si st a nt. Sli di n g b e d w a y s fl a m e h ar d e n e d a n d gr o u n d. C o n c e al e d s pi n dl e f or pr ot e cti o n a g ai n st c hi p s a n d dirt. H y dr o- b o o st er s y st e m f or m a xi m u m cl a m pi n g pr e s s ur e wit h mi ni m u m f or c e. Q ui c k of cl a m pi n g & l o c ki n g a n d e a s y of o p er ati o n. A c c ur a c y wit hi n 0. 0 1/ 1 0 0 m m. H y dr o- b o o st er s y st e m i s g u ar a nt e e d f or u si n g 2 y e ar s li mit e d. T h e h y dr a uli c oil n u m b er i s 6 8 # H y dr o li n e - o n e s c al e i n di c at e a b o ut 1/ 3 of t h e m a x. cl a m p f or c e.
O R D E R N O.
O R D E R N O.
G. W.
B 35 40 50 50 70
128 205 275 355 405
196 283 361 455 505
120 140 165 165 190
A
B
273
120
105
364
140
1 2 6 1 2 4. 5 7 8
455
165
1 6 1 1 5 9. 5 8 6
535 615
165 180
162 202
30 40 60 60 60
D
P
R
99
73
6 4 3 8. 5 8 5
160 200
Ali g n e d P erf or m a n c e
G
2 6. 3 4 4 2. 5 66 7 8. 7 9 108
H
M
N
Q
W
X
Y
383
50
15
74
11 0
14
6. 5
OPEN OPEN 128 196
20
105
11 2
74
5 9 1 0 0 4 0 1 1 3. 5 4 7 8. 5
65
21
73
135
18
7
205
283
20
215
1 3 9 4 0 0 5- 0 0 5 H C
86
5 8 1 2 0 5 0 1 2 5. 5 5 8 0. 5
78
21
93
170
18
7
275
361
20
285
1 4 5 4 0 0 5- 0 0 6 H C
86 86 102 98
5 8 1 2 0 5 0 1 2 5. 5 6 6 0. 5 74 120 70 122 737
78 75
21 21
93 95
174 217
18 18
7 7
355 405
455 505
20 20
285 385
1 6 9 4 0 0 5- 0 0 7 H C 1 7 7 4 0 0 5- 0 0 8 H C
35
11 0
4 0 0 5- 0 0 4 H C
MI L LI N G M A C HI N E A C C E S S O RI E S
A38
P AT E N T
A G O O D P O W E R F U L C L A M PI N G W A Y F O R SI D E L O C K & S T A N DI N G P O SI TI O N & H E A V Y C U T TI N G.
M ulti pl e p ur p o s e. F a st & H ori z o nt al & Si d e s etti n g. H e a v y D ut y. Fir m & Ri gi d & A c c ur at e. U ni q u e d e si g n all o w s pr o c e s si n g b ei n g e a si er. F a st : 2 l o c ati o n s etti n g sl ot s f or l o c ati n g k e y. D u st- pr o of : c o n c e al e d s pi n dl e. All P art s ar e i nt er - c h a n g e a bl e wit h V Q C- s eri e s. H y dr o li n e - o n e s c al e i n di c at e a b o ut 1/ 3 of t h e m a x. cl a m p f or c e.
Str o n g & St a bl e F a st S etti n g
V E R TI C A L S E T TI N G
SI D E L O C K P O SI TI O N S E T TI N G
W AY A39
MI L LI N G M A C HI N E A C C E S S O RI E S
F O R F O U R DI R E C TI O N F A C E C U T TI N G
P AT E N T
Str o n g V erti c al Cl a m pi n g
O R D E R N O.
O R D E R N O.
4 0 0 5- 0 9 1 4 0 0 5- 0 9 2 4 0 0 5- 0 9 3 4 0 0 5- 0 9 4
G. W.
B
R
72
165
180
40
53
R
72
235
200
60
85
O R D E R N O.
A
B
R
364
180
R
455
O R D E R N O.
D
P
R
G
H
177
125
94
90
43
120
60
1 1 3. 5
200
212
160
102
102
42
140
60
1 2 5. 5
M
N
Q
W
X
Y
R
4 7 7. 5
85
21
73
135
18
7
162
215
139
R
5 8 0. 5
98
21
93
170
18
7
235
285
145
MI L LI N G M A C HI N E A C C E S S O RI E S
A40
S oft j a w f or diff er e nt s h a p e w or k pi e c e F J & M J c a n f or c utti n g FJ
Fi x e d si d e
O R D E R N O.
A
B
D
E
F
G
H
9 9. 5
73
1 2 4. 5
M
N
50
76
35
19
6
18
2 7. 5
17
26
11
55
2. 9 7
4 0 0 5- 0 1 3 C
91
60
88
45
2 9. 5
8
24
40
19
3 3. 5
13
63
4. 9 6
4 0 0 5- 0 1 4
1 5 9. 5
102
60
124
50
34
9
28
45
22
30
15
84
7. 2
4 0 0 5- 0 1 5
1 5 9. 5
102
60
124
50
34
9
28
45
22
30
15
84
7. 2
4 0 0 5- 0 1 6
200
122
75
140
62
40
9
28
57
25
37
17
100
3. 6 1
4 0 0 5- 0 1 6 A
M
N
MJ
M o v a bl e si d e
O R D E R N O.
A
B
D
E
F
G
H
9 9. 5
64
50
37
35
1 4. 5
6
18
23
17
26
11
5 1. 5
2. 6 5
4 0 0 5- 0 1 7 A
1 2 4. 5
87
60
35
42
29
8
24
38
19
3 3. 5
13
5 9. 5
4. 7 3
4 0 0 5- 0 1 7
1 5 9. 5
102
60
56
50
34
9
28
45
22
30
15
8 0. 5
7. 2 5
4 0 0 5- 0 1 8
1 5 9. 5
102
60
56
50
34
9
28
45
22
30
15
8 0. 5
7. 2 5
4 0 0 5- 0 1 9
200
11 7
75
62
59
39
9
28
5 4. 5
25
37
17
95
1 3. 0 8
4 0 0 5- 0 1 9 A
S uit f or V Q C & V Q C- H t y p e
O R D E R N O.
A41
A
B
D
E
F
100
70
125
A
B
37
49
15
15
0. 8 1
4 0 0 5- 0 4 0
100
40
80
37
54
15
15
1. 0 6
4 0 0 5- 0 4 1
125
160
100
42
59
15
15
1. 5 5
4 0 0 5- 0 4 2
201
150
42
84
15
15
2. 5 6
4 0 0 5- 0 4 3
MI L LI N G M A C HI N E A C C E S S O RI E S
O R D E R N O.
D
E
F
37
49
15
15
0. 8 1
4 0 0 5- 0 4 6
50
37
54
15
15
1. 0 6
4 0 0 5- 0 4 7
160
80
42
59
15
15
1. 5 5
4 0 0 5- 0 4 8
201
100
42
84
15
15
2. 5 6
4 0 0 5- 0 4 9
H ar d j a w f or t hi n t y p e w or k pi e c e
VI S E J A W S C A N T U R N 1 8 0º F O R Y O U R R E Q UI R E M E N T.
FJL
O R D E R N O.
A
B
D
E
G
H
9 9. 5
73
35
76
35
6
18
3 6. 5
20
1. 2 7
4 0 0 5- 0 1 0 B
1 2 4. 5
78
40
88
45
8
24
39
20
2. 0 9
4 0 0 5- 0 0 8 A
1 5 9. 5
86
50
124
50
9
28
43
25
3. 7 8
4 0 0 5- 0 0 9
1 5 9. 5
86
50
124
50
9
28
43
25
3. 7 8
4 0 0 5- 0 1 0
200
102
70
140
62
9
28
51
35
7. 9 2
4 0 0 5- 0 1 0 A
A
B
D
E
G
H
9 9. 5
64
35
37
35
6
18
32
20
1. 1 5
4 0 0 5- 0 1 3 B
1 2 4. 5
74
40
35
42
8
24
37
20
2. 0 2
4 0 0 5- 0 1 1
1 5 9. 5
86
50
56
50
9
28
43
25
3. 8 6
4 0 0 5- 0 1 2
1 5 9. 5
86
50
56
50
9
28
43
25
3. 8 6
4 0 0 5- 0 1 3
200
98
70
62
59
9
28
49
35
7. 6 9
4 0 0 5- 0 1 3 A
MJL
O R D E R N O.
MI L LI N G M A C HI N E A C C E S S O RI E S
A42
P AT E N T H Y D R O & M E C H A NI C A L T Y P E G R E A T S M O O T H O P T E R A TI O N S A M E H EI G H T G U A R A N T E E H
HY D R O B O OSTE R S P E CI A L J A W D E SI G N E D F O R T HI N W O R K PI E C E
F C D 6 0 wit h 6 0 k g s/ m m 2 or 8 0, 0 0 0 p si hi g h q u alit y d u ctil e c a st ir o n - b o d y m at eri al - r e d u c e t h e c utti n g vi br ati o n. pr o c e s si n g m a c hi n e. E v erl a sti n g cl a m pi n g p o w er : c h oi c e s of 2 - H y dr o & M C. H y dr o : m o v e t h e h a n dl e ri n g t o w or d vi s e. M e c h ni c al : m o v e t h e h a n dl e ri n g t o w ar d t h e h e x. h ol e. H e a v y c utti n g. Hi g h d ur e bilit y & hi g h pr e ci si o n. T ol er a n c e : 0. 0 1/ 1 0 0 m m Lift pr o of : pr e s s d o w n d e si g n. B e n di n g r e si st a n c e : ri gi d & str o n g. D u st pr o of : c o n c e al e d s pi n dl e. Ali g n e d P erf or m a n c e F a st & e a s y o p er ati o n. H y dr o li n e - o n e s c al e i n di c at e a b o ut 1/ 3 of t h e m a x. cl a m p f or c e.
N O. I n s p e cti o n It e m
O R DE R N O.
A43
A
B
OPE N
D
E
F
G
H
55 62 65 70 65
130 147 168 170 168
125 180 240 280 350
100 130 160 200 160
340 405 495 570 610
80 85 100 11 8 100
125 150 165 190 165
85 95 105 11 0 105
MI L LI N G M A C HI N E A C C E S S O RI E S
P er ( 1 0 0 m m) G u ar a nt e e d
1
P ar all eli s m: r u n ni n g f a c e t o b ott o m of b e d.
2
S q u ar e n e s s : b et w e e n r u n ni n g f a c e a n d j a w pl at e. 0. 0 2/ 1 0 0 m m
3
S q u ar e n e s s: k e w a y o n b ott o m of b e d t o j a w pl at e. 0. 0 2/ 1 0 0 m m
4
P ar all eli s m: r u n ni n g f a c e of t h e t e st bl o c k t o 0. 0 2/ 1 0 0 m m b ott o m of b e d.
11 0 11 0 11 0 11 0 11 0
15 21 21 21 21
470 535 625 700 740
M
N
101 131 161 201 161
16 18 18 18 18
0. 0 1/ 1 0 0 m m
N O. 3000 4000 5000 6000 5000
27 kgs 40 kgs 58 kgs 87 kgs 75 kgs
4 0 0 5- 0 6 0 4 0 0 5- 0 6 1 4 0 0 5- 0 6 2 4 0 0 5- 0 6 3 4 0 0 5- 0 5 9
M e c h a ni c al T y p e Gr e at S m o ot h O p er ati o n S P E CI A L J A W D E SI G N E D F O R T HI N W O R K PI E C E
F C D 6 0 hi g h q u alit y d u ctil e c a st ir o n - b o d y m at eri al - r e d u c e t h e c utti n g vi br ati o n.
E X P.
E X P.
c utti n g & pr o c e s si n g m a c hi n e. E v erl a sti n g cl a m pi n g p o w er. H e a v y c utti n g. Hi g h d ur e bilit y & hi g h pr e ci si o n. T ol er a n c e : 0. 0 1/ 1 0 0 m m Lift pr o of : pr e s s d o w n d e si g n. B e n di n g r e si st a n c e : ri gi d & str o n g. D u st pr o of : c o n c e al e d s pi n dl e. F a st & e a s y o p er ati o n.
Ali g n e d P erf or m a n c e
O R DE R N O.
A
B
OPE N
D
E
F
G
H
55 62 65 70 65
130 147 168 170 168
125 180 240 280 350
100 130 160 200 160
340 405 495 570 610
80 85 100 11 8 100
125 150 165 190 165
85 95 105 11 0 105
55 55 55 55 55
15 21 21 21 21
425 490 580 655 695
M
N
P
101 131 161 201 161
16 18 18 18 18
19 19 19 19 19
N O. 3000 3000 3000 3000 3000
26 kgs 39 kgs 60 kgs 86 kgs 67 kgs
4 0 0 5- 0 6 4 4 0 0 5- 0 6 5 4 0 0 5- 0 6 6 4 0 0 5- 0 6 7 4 0 0 5- 0 5 8
MI L LI N G M A C HI N E A C C E S S O RI E S
A44
P AT E N T
S UPE
R OPE N
H y dr o- b o o st er s y st e m f or m a xi m u m cl a m pi n g pr e s s ur e wit h mi ni m u m f or c e. C o m p a ct d e si g n. Gr e at cl a m pi n g c a p a cit y. Li g ht & s m o ot h o p er ati o n. B o d y i s m a d e of F C D 6 0 d u ctil e c a st ir o n, Hi g h C o n str u ct e d f or m a c hi ni n g c e nt er, milli n g, drilli n g, gri n di n g a n d m a n y ot h er m a c hi n e s h o p a p pli c ati o n s. H y dr o li n e - o n e s c al e i n di c at e a b o ut 1/ 3 of t h e m a x. cl a m p f or c e. A45
MI L LI N G M A C HI N E A C C E S S O RI E S
P AT E N T
H y dr a uli c c o ntr oll er: pr o vi d e st a bl e pr e s s ur e, H y dr o i n d e x er. Pr ot e ct t h e h y dr o s y st e m. H y dr o li mit pr o of r ef er e n c e s c al e. S cr e w s h aft br o k e n pr o of.
L e a d S cr e w N ut
1A
2A
2 H O L E S P O SI TI O N M O R E C A P A CI T Y
Ali g n e d P erf or m a n c e
M A X. O R D E R N O.
O R D E R N O.
M A X.
M A X. m m
205
25
464
225
40
556
310
50
684
510
50
884
1A 2A 1A 2A 1A 2A 1A 2A
A
B
D
E
F
380 432 550 750
107 126 148 148
100 124 159 159
67 85 102 102
13 15 18 18
2- 3 0 0- 3 1 0- 4 6 0- 1 2 1 3- 7 0 0- 3 0 1 3- 7 0 0- 3 0
H 38 45 54 54
70 82 95 95
5 7- 9 0 2 8- 6 0 7 0- 1 0 6 3 8- 7 2 9 3- 1 5 0 5 3- 1 1 0 9 3- 1 5 0 5 3- 1 1 0
1 1 5- 1 4 6 8 6- 1 1 6 1 3 0- 1 6 6 9 8- 1 3 2 1 7 3- 2 3 0 1 3 3- 1 9 0 1 7 3- 2 3 0 1 3 3- 1 9 0
N 37 44 53 53
24 27 27 27
133 147 189 189
100 125 160 160
1 7 3- 2 0 5 1 4 5- 1 7 5 1 9 0- 2 2 5 1 5 8- 1 9 2 2 5 3- 3 1 0 2 1 3- 2 7 0 2 5 3- 3 1 0 2 1 3- 2 7 0
3 3 3- 3 9 0 2 9 3- 3 5 0
X
P
Q
14 18 18 18
152 174 219 219
228 258 331 531
4 1 0- 4 7 0 3 7 0- 4 3 0
23 37 63 77
4 5 0- 5 1 0 4 1 0- 4 7 0
4 0 0 5- 1 0 0 4 0 0 5- 1 0 1 4 0 0 5- 1 0 2 4 0 0 5- 1 0 3
MI L LI N G M A C HI N E A C C E S S O RI E S
A46
Fr e e cl a m p pi n g l e n gt h c a p a cit y : m or e t h a n 1 5 0 0 m m F or l o n g er t y p e w or k pi e c e. S a m e h ei g ht g u ar nt e e c a n f or 2 s et s, 4 s et s, 6 s et s p ut t o g et h er.
H y dr o- b o o st er s y st e m f or m a xi m u m cl a m pi n g pr e s s ur e wit h mi ni m u m f or c e. C o m p a ct d e si g n. Gr e at cl a m pi n g c a p a cit y. Li g ht & s m o ot h o p er ati o n. C o n str u ct e d f or m a c hi ni n g c e nt er, milli n g, drilli n g, gri n di n g a n d m a n y ot h er m a c hi n e s h o p a p pli c ati o n s. Fr e e s etti n g st yl e. H a n dl e : h ori z o nt al & v erti c al. All o w t o cl a m p l o n g er w or k pi e c e.
O R D E R N O.
A
B
D
E
F
G
H
M
N
150
228
103
14
99
67
13
133
70
33
24
76
34
100
19
180
250
126
18
124
85
15
147
82
44
27
78
45
125
37
200
280
148
18
159
102
18
189
95
53
27
90
54
160
63
O R D E R N O.
A47
100
38
70
14
90
20
4 0 0 5- 1 0 6
125
45
82
18
106
30
4 0 0 5- 1 0 7
160
54
95
18
150
40
4 0 0 5- 1 0 8
MI L LI N G M A C HI N E A C C E S S O RI E S
S u p er- Hi g h J a w M C Vi s e
S A M E H EI G H T G U A R A N T E E
J A W H EI G H T 1 2 0 m m
V Q H J- 5 STA N D A R D TYPE
V Q H J- 6 STA N D A R D TYPE F e at ur e s
Hi g h j a w all o w s bi g g er cl a m pi n g c a p a cit y. Str o n g cl a m pi n g j a w pl at e s. C o m p a ct d e si g n. Gr e at cl a m pi n g c a p a cit y & ri gi d. L ar g e j a w str o k e r a n g e. E x cl u si v e P o w er Vi s e pr o vi d e s a m e h ei g ht s a m e
C o n c e al e d s pi n dl e f or pr ot e cti o n a g ai n st c hi p s a n d dirt. Q ui c k of cl a m pi n g & l o c ki n g a n d e a s y of o p er ati o n. Cl a m pi n g p o w er will r e d u c e 2 0 % w hil e cl a m pi n g at hi g h er p o siti o n. H y dr o li n e- o n e s c al e i n di c at e 1/ 3 of t h e m a x. cl a m p f or c e.
B o d y i s m a d e of F C D 6 0 hi g h q u ailit y d u ctil e c a st ir o n,
M A X. C L A M PI N G F O R C E O R D E R N O.
Ali g n e d P erf or m a n c e
V Q H J- 5 V Q H J- 6
F O R C E ( K N)
V Q H J- 5
24
V Q H J- 6
36
V Q H J- V 1 3 0
24
V Q H J- V 1 6 0
36
V Q H J- S 1 3 0
24
V Q H J- S 1 6 0
36
V Q H J- S 1 3 0, V Q H J- S 1 6 0 A R E P L AI N J A W P L A T E T Y P E O R DE R N O.
X
S
Y f
P
W EI G H T ( k g s)
C O DE N O.
V Q H J- 5
3 6 5 2 2 3 1 6 0 1 2 4 1 2 4 9 9 1 5 1 0 0 1 2 3 1 1 3. 5 4 7 8. 5 6 5 2 1 7 3 1 3 5 1 8
45
7 20 215 145 86
5 1. 8
4 0 0 5- 2 0 1
V Q H J- 6
4 5 5 2 4 9 2 2 5 1 6 0 1 6 0 1 0 8 1 8 1 2 0 1 2 9 1 2 5. 5 5 8 0. 5 7 8 2 1 9 3 1 7 0 1 8
54
7 20 285 145 86
8 5. 8
4 0 0 5- 2 0 2
V Q H J- V 1 3 0 3 6 5 2 2 0 1 8 0 1 2 4 1 2 4 9 0 8 0 1 0 0 1 2 0 1 1 3. 5 4 7 8. 5 6 5 2 1 7 3 1 3 5 1 8 ø 1 2 ~ ø 9 0 7 2 0 2 1 5 1 4 5 8 6
5 1. 8
4 0 0 5- 2 0 3
V Q H J- V 1 6 0 4 5 5 2 4 5 2 5 0 1 6 0 1 6 0 9 8 8 5 1 2 0 1 2 5 1 2 5. 5 5 8 0. 5 7 8 2 1 9 3 1 7 0 1 8 ø 1 6 ~ ø 1 2 0 7 2 0 2 8 5 1 4 5 8 6
8 5. 8
4 0 0 5- 2 0 4
V Q H J- S 1 3 0 3 6 5 2 2 0 1 8 0 1 2 4 1 2 4 9 0
1 0 0 1 2 0 1 1 3. 5 4 7 8. 5 6 5 2 1 7 3 1 3 5 1 8
7 20 215 145 86
5 1. 8
4 0 0 5- 2 0 5
V Q H J- S 1 6 0 4 5 5 2 4 5 2 5 0 1 6 0 1 6 0 9 8
1 2 0 1 2 5 1 2 5. 5 5 8 0. 5 7 8 2 1 9 3 1 7 0 1 8
7 20 285 145 86
8 5. 8
4 0 0 5- 2 0 6
A49
A
B
C open
a
D
E
F
H
MI L LI N G M A C HI N E A C C E S S O RI E S
J
K
L
M
N
Q
W
P L AI N JA W
j
n
S u p er- Hi g h J a w M C Vi s e S OFT JA W
V Q H J- V 1 3 0 / V 1 6 0
V S h a p e Hi g h J a w F or R o u n d W or k pi e c e. Cl a m pi n g P o w er Will R e d u c e W h e n Cl a m pi n g R o u n d W or k pi e c e. Al w a y s R e m o v e H a n dl e Aft er W or k pi e c e I s Ti g ht e n e d.
F e at ur e s
Hi g h j a w all o w s bi g g er cl a m pi n g c a p a cit y. Str o n g cl a m pi n g j a w pl at e s. C o m p a ct d e si g n. Gr e at cl a m pi n g c a p a cit y & ri gi d. L ar g e j a w str o k e r a n g e. E x cl u si v e P o w er Vi s e pr o vi d e s a m e v erti c al M C, N C, m a c hi n e. B o d y i s m a d e of F C D 6 0 hi g h q u ailit y
V Q H J- V 1 3 0, V 1 6 0 V J A W TYPE
b e n di n g. gr o u n d. C o n c e al e d s pi n dl e f or pr ot e cti o n a g ai n st c hi p s a n d dirt. Q ui c k of cl a m pi n g & l o c ki n g a n d e a s y of o p er ati o n. Cl a m pi n g p o w er will r e d u c e 2 0 % w hil e cl a m pi n g at hi g h er p o siti o n. H y dr o li n e- o n e s c al e i n di c at e 1/ 3 of t h e m a x. cl a m p f or c e.
V Q H J- S 1 6 0
6 0 V 1 2 0° F O R ø 1 6 ~ ø 1 2 0 R O U N D W O R K PI E C E V Q H J- S 1 3 0 4 6 V 1 2 0° F O R ø 1 2 ~ ø 9 0 R O U N D W O R K PI E C E
V Q H J- S 1 3 0, V Q H J- S 1 6 0 A R E P L A TI N J A W P L A T E T Y P E
V Q H J- S 1 3 0, S 1 6 0 Ali g n e d P erf or m a n c e
V Q H J- V 1 3 0 V Q H J- V 1 6 0
MI L LI N G M A C HI N E A C C E S S O RI E S
A50
S U P E R- HI G H J A W M C VI S E
S A M E H EI G H T G U A R A N T E E
M C H y p er S u p er O p e n Vi s e
S A M E HI G H G U A R A N T E E
H Y D R A U LI C T Y P E
S U PE R
V M C H- 4 V M C H- 5 V M C H- 6
J A W O P E N E D 200 m m J A W O P E N E D 265 m m J A W O P E N E D 350 m m
H y dr a uli c c o ntr oll er. wit h p o w er f or c e s c al e
O PE N
H y dr o Li n e
H y dr o Li mit r o of
C O M P A R E WI T H S A M E WI D T H VI S E J A W, T H E BI G G E S T O P E NI N G C A P A CI T Y.
F e at ur e s
H y dr o- b o o st er s y st e m f or m a xi m u m cl a m pi n g pr e s s ur e wit h mi ni m u m f or c e. C o m p a ct d e si g n. Gr e at cl a m pi n g c a p a cit y. Li g ht & s m o ot h o p er ati o n. b e n di n g r e si st a nt. C o n str u ct e d f or m a c hi ni n g c e nt er, milli n g, drilli n g, gri n di n g a n d m a n y ot h er m a c hi n e s h o p a p pli c ati o n s. H y dr o li n e - o n e s c al e i n di c at e a b o ut 5 0 0 k gf of t h e cl a m p f or c e.
O R DE R N O.
O p e ni n g Si z e F or C a p a cit y
C M AX
C1
C2
V M C H- 4 1 1 0 2 0 0
0- 5 8
5 8- 1 1 5
V M C H- 5 1 3 4 2 6 5
0- 7 0
A
Ali g n e d P erf or m a n c e
H
X
Y
Z
N
1 1 5- 1 7 0 1 5 0- 2 0 0 4 3 5 1 3 2 8 5 1 5
88
1 6 11 8 3 6 11 2
2500
26
1 0 0 2- 2 2 5
7 0- 1 4 5 1 4 5- 2 1 5 2 0 0- 2 6 5 5 5 0 1 6 0 9 5 2 1
98
18 140 48 136 4500
4 5. 5
1 0 0 2- 2 2 6
6 3. 5
1 0 0 2- 2 2 7
V M C H- 6 1 5 4 3 5 0 0- 1 0 0 1 0 0- 2 0 0 2 0 0- 3 0 0 3 0 0- 3 5 0 6 1 8 1 6 5 1 0 5 2 1 1 0 3 1 8 1 5 6 5 4 1 5 5
A51
C O DE N O.
M
C4
G
M A X. Cl a m p N. W. C F T F or c e ( k g s) ( c m) ( k gf)
K
C3
E
MI L LI N G M A C HI N E A C C E S S O RI E S
4500
Pr e ci si o n P n e u m ati c A n g- Fi x e d P o w er Vi s e
S A M E H EI G H T G U A R N T E E
T h e gr e at e st s af et y di st a n c e of cl a m pi n g: T h e s wit c h s p e e d i s o nl y 1. 5 s e c o n d s, a n d t h e s af et y di st a n c e of cl a m pi n g c a n b e u p t o 8 m m. W e d e si g n t h e h a n d w h e el s af et y li n e i n a d diti o n f or a n y o n e t o di sti n g ui s h t h e cl a m pi n g s af et y di st a n c e of t o ol s fr o m e x c e e di n g t h e li mit e a sil y b y e y e s.
A N G- FI X E D P O W E R VI S E
S uit a bl e f or M a s s pr o d u cti o n a n d t o b e u s e d o n m a c hi n e c e nt er s, milli n g m a c hi n e s, drilli n g m a c hi n e s a n d s p e ci al p ur p o s e m a c hi n e s.
D o w n tr u st “ s e mi- s p h eri c al s e g m e nt” m e c h a ni s m eli mi n at e s j a w
T h e m at eri al of t h e vi s e it s elf a d o pt s t h e o n e- st e p d e si g n of hi g h d u ctilit y tr e at m e nt ( H R C- 4 5º) t h at c a n a s s ur e g o o d p erf or m a n c e o n A c c ur a c y, w e ar-r e si sti n g, a n d t e n si o n-r e si sti n g. 2
R e g ul at or: If t h e air pr e s s ur e i s l o w, 8 k gf/ c m , it c a n still 2 a c hi e v e t h e s u p er str o n g cl a m pi n g c a p a cit y of 9 0 0 0 k g/ c m . 2 T h e cl a m pi n g c a p a cit y fr o m 0 ~ 9 0 0 0 k g/ c m c a n b e s et fr e el y a n d a dj u st vi a pr e s s ur e r e g ul at or. A ut o m ati c all y s e e ki n g t h e hi g h e st s o ur c e of air pr e s s ur e: W h e n t h e r e q uir e d pr e s s ur e w a s s et, it will n ot l o o s e u n d er l o w air pr e s s ur e.
O R DE R N O.
A
B
C OPE N
D
E
E1
F
G
H
M
N
N1
M a x. Cl a m p F or c e ( k gf)
N. W. ( k g s)
C O D E N O.
V M C- 4 P
100
48
100
100
320
450
25
8
148
100
16
145
3200
27
4 0 0 5- 0 7 6
V M C- 5 P
130
55
150
105
380
520
25
9
160
100
18
145
6000
38
4 0 0 5- 0 7 0
V M C- 6 P
160
58
160
105
400
540
25
9
163
100
18
145
6000
48
4 0 0 5- 0 7 1
V M C- 6 P L
160
58
250
105
490
630
25
9
163
100
18
145
6000
51
4 0 0 5- 0 7 2
V M C- 7 P
180
63
200
11 0
460
600
25
12
173
108
18
180
9000
65
4 0 0 5- 0 7 3
V M C- 8 P
200
63
200
11 0
470
610
25
12
173
108
18
180
9000
74
4 0 0 5- 0 7 4
V M C- 8 P L
200
63
300
11 0
570
710
25
12
173
108
18
180
9000
79
4 0 0 5- 0 7 5
F e at ur e:
D o u bl e cl a m p f u n cti o n f or m a s si v e pr o d u cti o n.
D o u bl e Cl a m p T Y P E O R DE R N O.
A
V M C- 6 P D
160
U nit: m m
B
C OPE N
D
E
E1
F
G
H
I
J
58
0- 1 0 0
90
530
682
148
15
168
30
152
N
M a x. Cl a m p F or c e ( k gf)
N. W. ( K G)
G. W. ( K G)
C O D E N O.
18
4000
63
66
4 0 0 5- 0 8 5
MI L LI N G M A C HI N E A C C E S S O RI E S
A52
C o n v e ni e nt T y p e M a c hi n e Vi s e M o v e a bl e j a w l o c at e d at o ut er e n d a n d ali g n s urf a c e f or w or k pi e c e i s i n fr o nt of o p er at or. It i s c o n v e ni e nt f or l o a di n g or u nl o a di n g w or k pi e c e o n s u c h d e si g n of vi s e. T h e o v er all l e n gt h of t hi s vi s e i s s h ort er t h a n ot h er si mil ar vi s e s, b ut k e e p t h e m or e j a w o p e ni n g. S a v e s p a c e o n w or k t a bl e. E xtr a o p e n e d S e mi- s p h eri c al s e g m e nt eli mi n at e s j a w lifti n g a n d w or k pi e c e tilti n g. Ti m e & e n er g y s a vi n g Wi dt h 1 0 0 m m o p e n e d 1 8 0 m m.
M OVE A BLE J A W FI X E D J A W
O R D E R N O.
A
B
C OPE N
D
E
F
L
M a x. Cl a m p F or c e ( k gf)
Weas ( k g s)
C O DE N O.
V C M- 4 7
108
98
180
36
62
420
470
450
1 7. 7
4 0 0 5- 0 8 0
S u p er O p e n A n g- Fi x e d M a c hi n e Vi s e T h e o v er all l e n gt h of t hi s vi s e i s s h ort er t h a n ot h er si mil ar vi s e s, b ut k e e p t h e m or e j a w o p e ni n g. S a v e s p a c e o n w or k t a bl e. S e mi- s p h eri c al s e g m e nt eli mi n at e s j a w lifti n g a n d w or k pi e c e tilti n g. c a p a bl e t o o bt ai n l o w w e ari n e s s a n d l a st t h e hi g h a c c ur a c y f or l o n g. C hi p c o v er s i s a p pli e d o n t hi s vi s e t o pr e v e nt fr o m c hi p s f alli n g t o l e a d s cr e w a n d i n si d e of vi s e. Wi dt h 1 0 0 m m o p e n e d 2 1 0 m m s u p er o p e n.
A53
O R D E R N O.
A
B
C OPE N
D
E
F
L
M a x. Cl a m p F or c e ( k gf)
Weas ( k g s)
C O DE N O.
V M C- 4 L
108
98
203
36
62
420
470
450
1 7. 3
4 0 0 5- 0 9 5
MI L LI N G M A C HI N E A C C E S S O RI E S
H ori z o nt al M o vi n g Q ui c k Vi s e
2 W A Y M O VI N G
F or r o u n d t a bl e drilli n g m a c hi n e. If it d o n’t h a v e cr o s s t a bl e.
S WI V E L
M O O R DE R N O. V Q W- 8 0 V Q W- 1 0 0 V Q W- 1 3 0
A
B
81 105 131
34 36 36
FAS VE
C m a x. 85 104 125
ME
T
NT D
E
E1
F
G
H
H1
J
K
M
N
P
36 36 38
230 256 297
374 422 490
14 16 16
214 264 264
70 72 74
100 106 108
242 303 303
230 272 272
28 37 38
30 34 34
12 16 29
M A X. Cl a m p G. W. C O DE F or c e k gf N O. 700 1 3. 5 1 0 0 2- 2 4 5 800 1 5. 8 1 0 0 2- 2 4 6 800 2 2. 7 1 0 0 2- 2 4 7
Q ui c k S etti n g Vi s e P A T E N T. Q UI C K A C TI O N C L A M PI N G
F e at ur e s
Lift
Fi x s cr e w
S p e ci al d e si g n f or q ui c k cl a m pi n g. ( Fr o m t h e a c m e t hr e a d s h aft st ati o nl y) Q ui c k s etti n g b y sli di n g m o v e m e nt. Bi g cl a m pi n g c a p a bilit y. O p er ati n g v er y q ui c k a n d e a s y, c a n i n cr e a s e s o m u c h G o o d f or s h ort t er m a n d m a s si v e pr o d u cti o n or pr ot o t y p e w or k. S uit f or milli n g m a c hi n e, gri n d er m a c hi n e, pr e ci si o n drilli n g m a c hi n e u s e di n g. A c c ur at e gr o u n d e d a n d a s s e m bl e d. Pr e ci si o n c ut a c m e t hr e a d, it c a n g et 8 0 0 k g s hi g h cl a m pi n g f or c e. A c c ur a c y 0. 0 2 / 1 0 0 m m
S O WEAK
O R DE R N O. V Q S- 3 V Q S- 4 V Q S- 5
A
B
81 105 131
34 36 36
C m a x. 85 104 125
D
E
E1
F
G
H
I
I1
J
K
M
36 36 38
230 256 297
374 422 490
12 12 13
5 5 5
70 72 74
51 54 59
128 148 178
82 106 132
230 256 297
50 54 67
M A X. Cl a m p F or c e k gf 700 800 800
G. W. 7 9. 5 1 4. 5
C O DE N O. 1 0 0 2- 2 6 2 1 0 0 2- 2 6 3 1 0 0 2- 2 6 4
MI L LI N G M A C HI N E A C C E S S O RI E S
A54
Q UI C K VI S E
S p e ci al d e si g n, f or milli n g M/ C, drilli n g M/ C.
H O RI Z O N T A L M O VI N G 5 0 m m
M a c hi n e Vi s e F or S h a pi n g & Milli n g U s e
T h e vi s e i s m a d e of t h e hi g h t e n si o n c a st ir o n, ri gi dit y, l ar g e r a n g e of cl a m pi n g s p a n s a n d m or e bi g g er cl a m pi n g f or c e at pr e s s d o w n j a w s, e s p e ci all y s uit b a bl e f or t h e h e a v y d ut y c utti n g a n d t h e h e a v y d ut y pl a n n er milli n g m a c hi n e t o cl a m p l ar g e w or k pi e c e. U nit: m m
O R DE R N O.
A
B
C OPE N
D
M a x. Cl a m p F or c e ( k gf)
G. W. ( k g s)
C UFT ( c m)
C O DE N O.
V S M- 1 2
304
72
290
126 604 560 18 240 161 198 272 260 25 123 135 165
800
84
67x35x23
1 0 0 2- 2 7 0
V S M- 1 6
405
96
415
145 763 738 20 292 200 241 336 336 25 135 143 248
1000
142
84x45x27
1 0 0 2- 2 7 1
V S M- 2 0
508
95
505
1 5 0 9 0 2 8 7 1 2 1 2 8 8 2 0 4 2 4 5 3 3 6 3 3 6 2 5 1 6 9 2 11 2 4 6
1200
200
97x56x28
1 0 0 2- 2 7 2
E
E1
F
G
H
I
J
K
L
M
M1 M2
B- T y p e Milli n g Vi s e
A wi d er b ott o m t o i n cr e a s e cl a m pi n g f or c e. Gr o o v e d e vi c e t o c oll e ct c utti n g oil. F ull 3 6 0º s wi v el b a s e wit h li n e, a c c ur at e gr a d u ati o n. I n or d er t o e n s ur e t h e a c c ur e n c e w h e n u si n g it’ b ett er t h at d o n’t p ut s wi v el b a s e t o g et h er O R DE R N O.
A
B
E
H
C OPE N
S
a
h1
h2
g1
g2
M a x. Cl a m p F or c e ( k gf)
G. W. kgs
C O DE N O.
V B V- 4
270
140
100
79
65
305
212
33
28
12
12
900
13
1 0 0 2- 2 8 0
V B V- 5
350
180
125
96
100
410
280
37
35
15
15
900
2 1. 5
1 0 0 2- 2 8 1
V B V- 6
452
218
160
103
132
483
317
48
40
16
16
1000
41
1 0 0 2- 2 8 2
A55
MI L LI N G M A C HI N E A C C E S S O RI E S
S u p er O p e n Drill Vi s e D RI L L VI S E
E U R O TYPE
D E SI G N F O R T HI N & R O U N D W O R K PI E C E
Bi g o p e n e d. Bi g cl a m pi n g c a p a cit y. Wit h pri s m a j a w f or r o u n d w or k pi e c e. F or drilli n g & milli n g u si n g. U nit: m m
O R DE R N O.
B
C OPE N
A
D
F
G
H
I
J
K
V R V- 4
11 0
32
128
316 471 177
16
73
40
16
1 4 4 5- 3 2
450
V R V- 5
135
40
165
366 552 207
16
81
40
16
1 6 8 6- 4 0
V R V- 6
160
50
218
447 693 227
16
96
45
16
2 0 8 7- 4 8
E
M A X. Cl a m p G. W. F or c e k gf ( k g s)
V
CFT ( c m)
C O DE N O.
9. 8
3 2. 3 x 1 3. 3 x 1 2. 9
1 0 0 2- 3 2 0
650
1 4. 0
3 2. 3 x 1 3. 3 x 1 2. 9
1 0 0 2- 3 2 1
900
2 5. 7
3 2. 3 x 1 3. 3 x 1 2. 9
1 0 0 2- 3 2 2
Fr e e Vi s e
F V t y p e i s li g ht d ut y. Fr e e st yl e cl a m pi n g F or bi g w or k pi e c e. A dj u st a bl e di st a n c e 1 5 m m F or cl a m pi n g. O R DE R N O.
DI M E N SI O N ( W x H x L)
U nit: m m
C L A M PI N G C A P A CI T Y ( H x L)
A C C E S S O RI E S B O L T SI Z E
M A X. Cl a m p F or c e k gf
W EI G H T ( k g s/ 2 P C S)
C O DE N O.
F V- 3 5 0
75x67x150 m m
140x350 m m
M 1 2 x 7 5 L x 2 P C S. M 1 2 x 1 2 5 L x 2 P C S
900
7. 5
1 0 0 2- 2 9 0
F V- 4 5 0
100x90x200 m m
180x450 m m
M 1 2 x 7 5 L x 2 P C S. M 1 2 x 1 2 5 L x 2 P C S
900
14
1 0 0 2- 2 9 1
F V- 5 5 0
125x120x250 m m
250x550 m m
M 1 6 x 7 5 L x 2 P C S. M 1 6 x 1 2 5 L x 2 P C S
900
23
1 0 0 2- 2 9 2
Fr e e st yl e cl a m pi n g F or bi g w or k pi e c e. H e a vi er d ut y. A dj u st a bl e di st a n c e 1 0 m m F or cl a m pi n g. O R DE R N O.
A
S V- 6 2 S V- 8 5 S V- 1 2 5
B
C
D
E
F
139
64
5 9. 5
192
8 6. 5
86
218
127
84
124
G
85
54
3 3. 5
11 5
77
53
94
5 1. 5
33
U nit: m m
L
M
18
22
5 2. 5
12
M A X. Cl a m p F or c e k gf 1800
18
2 5. 5 5 9. 5
12
1800
M16 x 75L x 4 P C S
11
1 0 0 2- 2 9 4
2 3. 5
12
1800
M16 x 75L x 4 P C S
21
1 0 0 2- 2 9 5
H
J
K
21
9
3 0. 5
24
10
36
18
4 5. 5
20
73
N
A C C E S S O RI E S B O L T SI Z E M12 x 75L x 4 P C S
N. W. ( k g s) 5. 8
C O DE N O. 1 0 0 2- 2 9 3
MI L LI N G M A C HI N E A C C E S S O RI E S
A56
Drill Vi s e
D e si g n e d wit h s oli d str u ct ur e, m ai n b o d y i s m a d e of F C 1 5, a s s e m bl e a p air of h e at tr e at e d st e el j a w s wit h h ar d n e s s H R C 4 5º ~ 5 0º S uit a bl e f or cl a m pi n g w or k pi e c e o n drill pr e s s m a c hi n e & milli n g m a c hi n e Fr o nt fi x e d pri s m ati c j a w wit h cr o s s V- gr o o v e s i s d e si g n e d f or cl a m pi n g w or k pi e c e O R D E R N O. D V- 8 5 D V- 1 0 0 D V- 1 2 0
A 84 104 132
B 25 31 38
C OPE N 85 100 120
D 27 2 8. 5 32
E 182 220 250
E1 287 343 395
F 12 13 14
G 64 78 91
H 56 63 71
I 80 102 127
J 167 200 226
L 8 8 9. 5
M 32 36 45
W EI G H T 3. 5 5. 7 8. 2
Cl a m p F or c e ( k gf) 1300 1800 2300 2800 3000 3000
W EI G H T ( k g s) 6 7 1 0. 5 14 18 24
C O D E N O. 1 0 1 5- 0 4 1 1 0 1 5- 0 4 2 1 0 1 5- 0 4 3
St e el B e n c h Vi s e Wit h B a s e
m m
O R D E R N O.
A
B
B V V- 3 B V V- 4 B V V- 5 B V V- 6 B V V- 8 B V V- 1 0
79 104 127 154 205 253
51 61 68 78 87 100
C OPE N 75 100 125 150 200 250
D
E
G
I
J
87 87 93 108 11 5 11 4
280 310 370 420 500 570
18 18 22 22 22 22
138 148 165 183 202 220
178 178 198 228 238 263
C O D E N O. 1 0 0 2- 3 3 0 1 0 0 2- 3 3 1 1 0 0 2- 3 3 2 1 0 0 2- 3 3 3 1 0 0 2- 3 3 4 1 0 0 2- 3 3 5
Q ui c k B e n c h Vi s e
O R D E R N O. V Q S- 4 0
C O D E N O. 1 0 0 2- 0 9 6
Q UI C K A C TI O N H A N DL E
A57
MI L LI N G M A C HI N E A C C E S S O RI E S
H ar d e n e d & Gr o u n d J a w J a w Wi dt h 1 0 0 m m J a w H ei g ht 2 9 m m O p e n e d C a p a cit y 1 0 0 m m 8 m m Di st a n c e of Q ui c k Cl a m pi n g S y st e m C a n B e M o v e B y H a n dl e & B y Q ui c k A cti o n Ar m W ei g ht: 1 3. 3 k g s
W O R K ST OPPE R
U ni v er s al W or k St o p p er
TEET H TYPE
N O N TEET H TYPE O R D E R N O. V W S- 1 2 3 C O D E N O. 1 0 0 2- 1 0 5 W EI G H T: 0. 9 k g T- S L O T: 1 6 m m O R D E R N O.
V W S- 1 2 3 V W S- 1 2 5
T h e l o c ki n g l e v er- c a n b e p ut i nt o diff er e nt p o siti o n s ar o u n d it s o w n a xi s- 3 6 0º
TEET H TYPE O R D E R N O. V W S- 1 2 5 C O D E N O. 1 0 0 2- 1 0 6 W EI G H T: 1. 1 k g T- S L O T: 1 6 m m
T h e 1 6 0 m m l o n g st o p pi n m a d e of sil v er st e el a n d e q ui p p e d wit h a h at pl at e
Sli p a dj u st m e nt of t h e st o p pi n b ef or e it i s l o c e d i nt o pl a c e.
al u mi n u m.
C O D E N O.
1 0 0 2- 1 0 5 1 0 0 2- 1 0 6
M 8 i n s et s cr e w St e el s wi n g s hift s
( 3 0 0 k g b u m p i s p e m a n e nt)
Fit s t a bl e- sl ot s 1 6 m m
T Sl ot Cl a m p s
P AT E N T
F or T hi n W or k Pi e c e
1 S et c o n si st of 4 vi c e s. F or t hi n or s m all w or k pi e c e. G o o d cl a m pi n g f or c e. Q ui c k s etti n g S uit f or li g ht d ut y c utti n g o n t h e milli n g drilli n g / E D M m a c hi n e. O R D E R N O.
A
B
C
D
E
J
K
N. W.
C O D E N O.
C K- 3 7 1 2
1 1. 5
18
7
16
42
16
20
0. 6
1 0 0 2- 3 1 1
C K- 3 7 1 4
1 3. 5
22
8
18
42
18
22
0. 7
1 0 0 2- 3 1 2
C K- 3 7 1 6
1 5. 5
25
10
20
45
20
24
0. 9
1 0 0 2- 3 1 3
C K- 3 7 1 8
1 7. 5
28
11
24
45
24
26
1. 1
1 0 0 2- 3 1 4
C K- 3 7 2 0
1 9. 5
32
12
26
53
26
28
1. 5
1 0 0 2- 3 1 5
MI L LI N G M A C HI N E A C C E S S O RI E S
A58
U ni v er s al J a w s Wit h S oft St o p p er
S OFT J A W
S oft St o p p er
S OFT ST OPPE R
Vi s e J a w Wi dt h
T h e s oft st o p p er c a n f or c utti n g s h ort, c utti n g s h a p e, c utti n g t a p er...... et c. S e mi- s p h er e b all e n a bl e s d o w n pr e s s f or c e. F or irr e g ul ar w or k pi e c e. E a s y s etti n g, p ut o n t h e m o vi n g j a w. B i s vi s e j a w wi dt h. O R D ER
O .
AN
V W S J- R 1 0 0 V W S J- R 1 3 0 V W S J- R 1 6 0 V W S J- R 2 0 0
145 175 190 245
B
C
D
R
1 0 0- 1 1 0 m m 1 2 5- 1 4 0 m m 1 5 0- 1 6 0 m m 2 0 0- 2 1 0 m m
49 49 54 76
38 39 40 42
40 40 40 40
W EI G H T kgs
C O D E N O. 1 0 0 2- 1 7 4 1 0 0 2- 1 7 5 1 0 0 2- 1 7 6 1 0 0 2- 1 7 7
U ni v er s al Vi s e J a w s Wit h W or k St o p p er F or S etti n g W or k pi e c e L e n gt h
F or Fi x e d O n T h e Vi s e J a w
4 F O R T HE JA W 5 F O R T HE JA W 6 F O R T HE JA W 8 F O R T HE JA W
O R D E R N O.
E xt e n si o n cl a m pi n g c a p a cit y: vi s e j a w wi dt h 3 0- 4 5 m m vi s e j a w h ei g ht 7- 1 5 m m
V W S J-
WI D T H 1 0 0- 1 1 0 m m WI D T H 1 2 5- 1 4 0 m m WI D T H 1 5 0- 1 6 0 m m WI D T H 2 0 0- 2 1 0 m m
VI S E J A W SI Z E
V C L A M PI N G C A P A CI T Y H O RI Z O N T A L V V E R TI C A L V
O R D E R N O. V W S J- 4, 5, 6, 8
Ø50 Ø50 Ø60 Ø80
t w o s cr e w s o n t h e si d e. O n e j a w i n m uiti pl e- f u n cti o n f e at ur e s.
Ø60 Ø60 Ø60 Ø80
C a n b e p erf or m e d a s w or k st o p p er. Q ui c k, s a v e y o ur ti m e.
A59
O R D E R N O.
A
B
C
D
V
V W S J- 4 V W S J- 5 V W S J- 6 V W S J- 8
145 175 190 245
11 0 140 160 210
49 49 53 76
38 39 40 42
32 32 32 32
MI L LI N G M A C HI N E A C C E S S O RI E S
W EI G H T kgs 1. 6 1. 7 2 4. 2
C O D E N O. 1 0 0 2- 1 7 0 1 0 0 2- 1 7 1 1 0 0 2- 1 7 2 1 0 0 2- 1 7 3
O R D E R N O. V W S- V K- 4. 5. 6. 8 V W S- V A- 4. 5. 6. 8 V W S- V H- 4. 5. 6. 8 V W S- V J- 4 0 0. 5 0 0. 6 0 0
V W S- V H O- 5, 6, 8 V W S- V W- 3. 4. 5 V W S- V M C- 4. 6 V W S- V Q S- 3. 4. 5
V C L A M PI N G C A P A CI T Y H O RI Z O N T A L V V E R TI C A L V Ø25 Ø25 Ø30 Ø40
Ø25 Ø25 Ø30 Ø40
O R D E R N O. V W S- V K- 4 V W S- V K- 5 V W S- V K- 6 V W S- V K- 8
kgs 0. 2 6 k g 0. 3 6 k g 0. 4 6 k g 1. 1 6 k g
C O D E N O. 1 0 0 2- 1 1 0 1 0 0 2- 1 1 1 1 0 0 2- 1 1 2 1 0 0 2- 1 1 3
O R D E R N O. V W S- V W- 3 V W S- V W- 4 V W S- V W- 5
kgs 0. 2 1 k g 0. 3 6 k g 0. 4 4 k g
C O D E N O. 1 0 0 2- 1 2 0 1 0 0 2- 1 2 1 1 0 0 2- 1 2 2
O R D E R N O. V W S- V A- 4 V W S- V A- 5 V W S- V A- 6 V W S- V A- 8
kgs 0. 4 k g 0. 5 1 k g 0. 9 6 k g 1. 7 6 k g
C O D E N O. 1 0 0 2- 1 3 0 1 0 0 2- 1 3 1 1 0 0 2- 1 3 2 1 0 0 2- 1 3 3
O R D E R N O. V W S- V M C- 4 V W S- V M C- 6
kgs 0. 3 5 k g 0. 4 k g
C O D E N O. 1 0 0 2- 1 4 0 1 0 0 2- 1 4 1
T hr e a d R o d G ui d e Bl o c k
16T O16
T hr e a d R o d
D
A
12T O12 14T O14 16T O16 18T O18 20T O20
kgs 0. 7 k g 1kg 1. 6 5 k g
C O D E N O. 1 0 0 2- 1 4 5 1 0 0 2- 1 4 6 1 0 0 2- 1 4 7
O R D E R N O. V W S- V J- 4 0 0 V W S- V J- 5 0 0 V W S- V J- 6 0 0
kgs 0. 3 6 k g 0. 5 8 k g 0. 9 k g
C O D E N O. 1 0 0 2- 1 6 3 1 0 0 2- 1 6 4 1 0 0 2- 1 6 5
O R D E R N O. V W S- V H- 4 V W S- V H- 5 V W S- V H- 6 V W S- V H- 8
kgs 0. 4 4 k g 0. 7 0 k g 0. 8 8 k g 1. 7 8 k g
C O D E N O. 1 0 0 2- 1 5 0 1 0 0 2- 1 5 1 1 0 0 2- 1 5 2 1 0 0 2- 1 5 3
O R D E R N O. V W S- V Q S- 3 V W S- V Q S- 4 V W S- V Q S- 5
kgs 0. 3 k g 0. 4 2 k g 0. 5 1 k g
C O D E N O. 1 0 0 2- 1 6 0 1 0 0 2- 1 6 1 1 0 0 2- 1 6 2
F or vi s e F or q ui c k vi s e s et u p M ulti - P ur p o s e 4 P C S/ S ET S M at c h vi s e wit h M a c hi n e t a bl e sl ot M at eri al: S 4 5 C
C
12T O12
O R D E R N O.
O R D E R N O. V W S- V H O- 5 V W S- V H O- 6 V W S- V H O- 8
- 0. 0 1 - 0. 0 8 12 14 16 18 20
B 10 10 10 12 12
C F or M4 M5 M6 M6 M6
D 20 20 22 22 24
W EI G H T kgs 0. 0 7 0. 0 7 0. 0 9 0. 1 3 0. 2 0
G ui d e Bl o c k
C O D E N O. 1 0 0 2- 3 7 0 1 0 0 2- 3 7 1 1 0 0 2- 3 7 2 1 0 0 2- 3 7 3 1 0 0 2- 3 7 4
F or vi s e F or q ui c k vi s e s et u p M ulti - P ur p o s e 4 P C S/ S ET S M at eri al: S 4 5 C
O R D E R N O.
A
16T O14 18T O14 18T O16
T hr e a d R o d
- 0. 0 1 - 0. 0 1 B C - 0. 0 8 - 0. 0 8 16 14 14 18 14 16 18 16 16
D 20 20 20
W EI G H T kgs M6 0. 1 0 M6 0. 1 2 M6 0. 1 3 E
G ui d e Bl o c k
C O D E N O. 1 0 0 2- 3 5 0 1 0 0 2- 3 5 1 1 0 0 2- 3 5 2
F or vi s e F or q ui c k vi s e s et u p M ulti - P ur p o s e 4 P C S/ S ET S M at eri al: S 4 5 C
O R D E R N O.
14T O16 14T O18 16T O18
A
- 0. 0 1 - 0. 0 1 B C - 0. 0 8 - 0. 0 8 14 16 14 14 18 16 16 18 16
D 20 20 20
W EI G H T kgs M5 0. 1 2 M5 0. 1 3 M6 0. 1 5 E
C O D E N O. 1 0 0 2- 3 6 1 1 0 0 2- 3 6 2 1 0 0 2- 3 6 3
MI L LI N G M A C HI N E A C C E S S O RI E S
A60
S C R E W G UI D E B L O C K
Pri s m a J a w
5 2- P C S St e el Cl a m pi n g Kit 5 8 P C S/ S E T T a bl e Sl ot
St u d Si z e
C K- 1 0 3 A 7/ 1 6 C K- 1 0 3 B
C K- 1 0 4 A 9/ 1 6
C K- 1 8, C K- 2 0, C K- 2 0 6, P a c k i n N o Pl a sti c Tr a y.
C K- 2 0
all c a n b e p ur c h a s e d i n di vi d u all y.
6. 5
1 0 0 3- 0 0 9
6. 5
( C) 0. 8
9. 7 1/ 2 - 1 2 w 1/ 2 - 1 3 U N C 1 0. 4
( C) 1. 0
5/ 8
1 2. 5 1 1. 8
( C) 1. 5
1 0 0 3- 0 1 4
2 6. 5
2. 0
1 0 0 3- 0 1 5
C K- 1 0 5 A 1 1/ 1 6
( 2 5 m m). S et i n pl a sti c r a c k c o n si st s of: 2 4 P C S St u d s ( 4 e a, 3/ 4/ 5/ 6/ 7/ 8 i n c h e s or 7 5/ 1 0 0/ 1 2 5/ 1 5 0/ 1 7 5/ 2 0 0 m m.) 6 P C S T- N ut s 4 P C S C o u pli n g N ut s 6 P C S Fl a n g e N ut s 6 P C S St e p Cl a m p s 6 P C S St e p Bl o c k s
C O DE N O.
3/ 8 - 1 6 w
1/ 2
C K- 1 0 4 B
G. W. M e a s. kg CFT
5/ 8 - 1 1 w
1 0 0 3- 0 1 0 1 0 0 3- 0 1 1 1 0 0 3- 0 1 2 1 0 0 3- 0 1 3
C K- 1 0 5 B
3/ 4
C K- 2 0 6
7/ 8
3/ 4 - 1 0 w
O R DE R N O.
T a bl e Sl ot
St u d Si z e
G. W. M e a s. kg CFT
C O DE N O.
C K- 0 8
10
M 8- 1. 2 5 P
7. 4
1 0 0 3- 0 0 1
C K- 1 0
12
M 1 0- 1. 5 P
7. 6
C K- 1 2 A
14
C K- 1 2 B
1 5. 7
C K- 1 4
16
M 1 4- 2. 0 P
1 1. 1
C K- 1 6
18
M 1 6- 2. 0 P
1 2. 6
C K- 1 8
20
M 1 8- 2. 5 P
2 5. 3 ( C) 1. 6 1 0 0 3- 0 0 7
C K- 2 0
22
M 2 0- 2. 5 P
27
9. 4
M 1 2- 1. 7 5 P
9. 5
( C) 0. 8 ( C) 1. 0 ( C) 1. 5
1 0 0 3- 0 0 2 1 0 0 3- 0 0 3 1 0 0 3- 0 0 4 1 0 0 3- 0 0 5 1 0 0 3- 0 0 6
( C) 2. 0 1 0 0 3- 0 0 8
I n di vi d u all y P art s T- Sl ot N ut H R C 3 4º
O R D E R T a bl e T hr e a d N O. Sl ot Si z e
C
1 1/ 3 2
5/ 8
1/ 2
7/ 8
0. 0 2 3
1 0 0 3- 1 7 9
1 1/ 1 6 7/ 3 2
1/ 2
7/ 8
0. 0 2 3
1 0 0 3- 1 8 0
7/ 8
9/ 3 2
1/ 2
7/ 8
0. 0 3 2
1 0 0 3- 1 8 1
7/ 8
1 1/ 3 2
5/ 8
1- 1/ 8
0. 0 4 8
1 0 0 3- 1 8 2
7/ 8
1 1/ 3 2
5/ 8
1- 1/ 8
0. 0 4 8
1 0 0 3- 1 8 3
1
1 1/ 3 2
5/ 8
1- 1/ 8
0. 0 6
1 0 0 3- 1 8 4
1- 1/ 8 7/ 1 6
3/ 4
1- 1/ 4
0. 0 8 7
1 0 0 3- 1 8 5
1- 1/ 8 7/ 1 6
3/ 4
1- 1/ 4
0. 0 8 7
1 0 0 3- 1 8 6
1- 1/ 4 1 5/ 3 2
3/ 4
1- 1/ 4
0. 1 0 2
1 0 0 3- 1 8 7
3/ 8
3413I
7/ 1 6
3423I
1/ 2
3433I
9/ 1 6
3414I
9/ 1 6
3424I
5/ 8
3434I
1 1/ 1 6
3415I
1 1/ 1 6
3425I
3/ 4
3435I
1 3/ 1 6
1- 1/ 4 9/ 1 6
1
1- 1/ 2
0. 1 4 2
1 0 0 3- 1 8 8
3416I
1 3/ 1 6
1- 1/ 4 9/ 1 6
1
1- 1/ 2
0. 1 4 2
1 0 0 3- 1 8 9
3426I
7/ 8
1- 1/ 2 9/ 1 6
1
1- 1/ 2
0. 1 7 5
1 0 0 3- 1 9 0
3436I
1
1- 5/ 8
1
1- 3/ 4
0. 2
1 0 0 3- 1 9 1
2
0. 2 3
1 0 0 3- 1 9 2
1- 1/ 2
0. 2 1
1 0 0 3- 1 9 3
2
0. 2 5
1 0 0 3- 1 9 4
A
B
C
D
E
3412 M
10
M8
9. 7
16
6
12
2 2 1 0 0 3- 0 2 0
3423 M
12
M10
1 1. 7
18
7
14
2 2 1 0 0 3- 0 2 1
3414 M
14
M12
1 3. 7
22
8
16
2 8 1 0 0 3- 0 2 2
A3424 M
16
M12
1 5. 7
25
8
16
2 8 1 0 0 3- 0 2 3
B3424 M
16
M14
1 5. 7
25
8
16
2 8 1 0 0 3- 0 2 4
3415 M
18
M16
1 7. 7
28
11
20
3 2 1 0 0 3- 0 2 5
3416 M
20
M18
1 9. 7
32
12
24
3 8 1 0 0 3- 0 2 6
3 4 4 6 I 1- 1/ 1 6
3417 M
22
M20
2 1. 7
35
14
28
3 8 1 0 0 3- 0 2 7
3417I
3418 M
28
M24
2 7. 7
44
18
36
3 8 1 0 0 3- 0 2 8
3 4 1 8 I 1- 1/ 1 6
MI L LI N G M A C HI N E A C C E S S O RI E S
C O DE N O.
B
3412I
O R D E R T a bl e T hr e a d N O. Sl ot Si z e
A61
C O DE N O.
L e n gt h W EI( kG g)H T
A
1
5/ 1 6 3/ 8- 1 6
1/ 2- 1 2 1/ 2- 1 3
5/ 8- 1 1
3/ 4- 1 0
5/ 8
1- 5/ 8 1 1/ 1 6 1- 1/ 2 7/ 8- 9
1- 5/ 8
5/ 8
1
1- 8
1- 5/ 8 1 1/ 1 6 1- 1/ 2
C L A M PI N G KI T
O R DE R N O.
C o u pli n g N ut M etri c Si z e O R D E R N O.
A T hr e a d
B P ar all el
L L e n gt h
W ei g ht ( k g)
C O D E N O.
2612 M 2613 M 2614 M 2 6 1 4 M- 1 2615 M 2616 M 2617 M 2618 M
M 8 x 1. 2 5 M 1 0 x 1. 5 M 1 2 x 1. 7 5 M 1 4 x 2. 0 M 1 6 x 2. 0 M 1 8 x 2. 5 M 2 0 x 2. 5 M 2 4 x 3. 0
13 17 21 21 26 32 32 41
22 25 32 32 40 48 48 64
0. 0 3 3 0. 0 3 5 0. 0 6 5 0. 0 6 0. 1 2 8 0. 2 2 8 0. 2 0 8 0. 5 1
1 0 0 3- 0 6 0 1 0 0 3- 0 6 1 1 0 0 3- 0 6 2 1 0 0 3- 0 6 3 1 0 0 3- 0 6 4 1 0 0 3- 0 6 5 1 0 0 3- 0 6 6 1 0 0 3- 0 6 7
O R D E R N O.
A T hr e a d
B P ar all el
L L e n gt h
W ei g ht( k g)
C O D E N O.
2613I 2614I 2615I 2616I 2617I 2618I
3/ 8- 1 6 1/ 2- 1 2 1/ 2- 1 3 5/ 8- 1 1 3/ 4- 1 0 7/ 8- 9 1- 8
1 1/ 1 6 7/ 8 1- 1/ 1 6 1- 1/ 4 1- 1/ 4 1- 5/ 8
1 1- 1/ 4 1- 5/ 8 1- 7/ 8 1- 7/ 8 2- 1/ 2
0. 0 3 5 0. 0 7 0. 1 2 8 0. 2 2
1 0 0 3- 0 6 1 I 1 0 0 3- 0 6 2 I 1 0 0 3- 0 6 4 I 1 0 0 3- 0 6 5 I 1 0 0 3- 0 6 6 I 1 0 0 3- 0 6 7 I
I n c h Si z e
0. 4 6
Fl a n g e N ut
H R C 3 4º
M etri c Si z e O R D E R N O.
T hr e a d
A
B ( M m)
C
D
4512 4513 4514 4514 M 4515 4516 4517 4518
M 8 x 1. 2 5 M 1 0 x 1. 5 M 1 2 x 1. 7 5 M 1 4 x 2. 0 M 1 6 x 2. 0 M 1 8 x 2. 5 M 2 0 x 2. 5 M 2 4 x 3. 0
19 22 28 28 35 40 40 50
13 17 19 22 26 32 32 41
8 12 17 17 20 25 25 32
2 4 5 5 6 6 6 6
W ei g ht ( k g) 0. 0 1 3 0. 0 2 3 0. 0 4 3 0. 0 4 7 0. 0 8 7 0. 1 0 0. 0 9 2 0. 3
C O D E N O. 1 0 0 3- 0 5 0 1 0 0 3- 0 5 1 1 0 0 3- 0 5 2 1 0 0 3- 0 5 3 1 0 0 3- 0 5 4 1 0 0 3- 0 5 5 1 0 0 3- 0 5 6 1 0 0 3- 0 5 7
I n c h Si z e O R DE R N O.
T hr e a d
A
B ( M m)
C
D
W ei g ht ( k g)
C O DE N O.
4512I 4513I
5/ 1 6- 1 8 3/ 8- 1 6
19 22
14 17
9 12
2 4
0. 0 1 3 0. 0 2 3
1 0 0 3- 0 5 0 I 1 0 0 3- 0 5 1 I
4514I
1/ 2- 1 2 N C 1/ 2- 1 3 N C
28
19
17
5
0. 0 4 3
1 0 0 3- 0 5 2 I
4515I 4516I 4517I 4518I
5/ 8- 1 1 3/ 4- 1 0 7/ 8- 9 1- 8
35 40 40 50
26 32 32 40
20 25 25 32
6 6 6 6
0. 0 8 7 0. 0 9 2 0. 1 2 0. 1 2
1 0 0 3- 0 5 4 I 1 0 0 3- 0 5 5 I 1 0 0 3- 0 5 6 I 1 0 0 3- 0 5 7 I
MI L LI N G M A C HI N E A C C E S S O RI E S
A62
C O U P LI N G N U T
H R C 3 4º
Cl a m pi n g St u d s
H R C 2 7º
St u d s
H e at Tr e at e d St e el
D
1323 M 1324 M 1325 M M 8 x 1. 2 5 P 1326 M 1327 M 1328 M 1333 M 1334 M 1335 M M 1 0 x 1. 5 P 1336 M 1337 M 1338 M 1343 M 1344 M 1345 M M 1 2 x 1. 7 5 P 1346 M 1347 M 1348 M 1343 M A 1344 M A 1345 M A M 1 4 x 2. 0 P 1346 M A 1347 M A 1348 M A 1353 M 1354 M 1355 M 1356 M M 1 6 x 2. 0 P 1357 M 1358 M 13510 M 13512 M 1363 M 1364 M 1365 M 1366 M M 1 8 x 2. 5 P 1367 M 1368 M 13610 M 13612 M 1373 M 1374 M 1375 M 1376 M M 2 0 x 2. 5 P 1377 M 1378 M 13710 M 13712 M 1384 M 1385 M 1386 M M 2 4 x 3. 0 P 1387 M 1388 M
A63
L
L 1
75 100 125 150 175 200 75 100 125 150 175 200 75 100 125 150 175 200 75 100 125 150 175 200 75 100 125 150 175 200 250 300 75 100 125 150 175 200 250 300 75 100 125 150 175 200 250 300 100 125 150 175 200
30 40 40 40 40 40 30 40 40 40 40 40 30 40 40 40 40 40 30 40 40 40 40 40 30 45 45 45 45 45 45 45 30 40 45 45 45 45 50 50 30 40 45 45 45 45 50 50 40 45 45 45 45
W EI G H T ( k g s) 0. 0 2 3 0. 0 3 0. 0 4 0. 0 5 0. 0 6 0. 0 7 0. 0 4 0. 0 5 0. 0 6 0. 0 7 0. 0 9 0. 1 0 0. 0 6 0. 0 7 0. 0 9 0. 1 1 0. 1 3 0. 1 5 0. 0 7 0. 1 0 0. 1 3 0. 1 5 0. 1 8 0. 2 0 0. 0 9 0. 1 3 0. 1 6 0. 1 9 0. 2 3 0. 2 5 0. 3 1 0. 3 8 0. 1 2 0. 1 6 0. 2 0 0. 2 5 0. 3 0 0. 3 2 0. 4 0 0. 5 0 0. 1 5 0. 2 0 0. 2 5 0. 3 0 0. 3 5 0. 4 0 0. 5 0 0. 6 5 0. 2 5 0. 3 5 0. 4 5 0. 5 3 0. 6 0
MI L LI N G M A C HI N E A C C E S S O RI E S
C O DE N O. 1 0 0 3- 0 7 1 1 0 0 3- 0 7 2 1 0 0 3- 0 7 3 1 0 0 3- 0 7 4 1 0 0 3- 0 7 5 1 0 0 3- 0 7 6 1 0 0 3- 0 8 1 1 0 0 3- 0 8 2 1 0 0 3- 0 8 3 1 0 0 3- 0 8 4 1 0 0 3- 0 8 5 1 0 0 3- 0 8 6 1 0 0 3- 0 9 1 1 0 0 3- 0 9 2 1 0 0 3- 0 9 3 1 0 0 3- 0 9 4 1 0 0 3- 0 9 5 1 0 0 3- 0 9 6 1 0 0 3- 1 0 1 1 0 0 3- 1 0 2 1 0 0 3- 1 0 3 1 0 0 3- 1 0 4 1 0 0 3- 1 0 5 1 0 0 3- 1 0 6 1 0 0 3- 1 1 1 1 0 0 3- 1 1 2 1 0 0 3- 1 1 3 1 0 0 3- 1 1 4 1 0 0 3- 1 1 5 1 0 0 3- 1 1 6 1 0 0 3- 1 1 7 1 0 0 3- 1 1 8 1 0 0 3- 1 2 0 1 0 0 3- 1 2 1 1 0 0 3- 1 2 2 1 0 0 3- 1 2 3 1 0 0 3- 1 2 4 1 0 0 3- 1 2 5 1 0 0 3- 1 2 6 1 0 0 3- 1 2 7 1 0 0 3- 1 4 0 1 0 0 3- 1 4 1 1 0 0 3- 1 4 2 1 0 0 3- 1 4 3 1 0 0 3- 1 4 4 1 0 0 3- 1 4 5 1 0 0 3- 1 4 6 1 0 0 3- 1 4 7 1 0 0 3- 1 5 0 1 0 0 3- 1 5 1 1 0 0 3- 1 5 2 1 0 0 3- 1 5 3 1 0 0 3- 1 5 4
C L A M PI N G KI T
O R DE R N O.
Bl a c k O xi d e Fi ni s h e d
O P E R A TI N G T O R Q U E F O R T U N T. F L A N G E N U T. S C R E W
S C R E W SI Z E
T O R Q U E( N M)
M3 M4 M5 M6 M8 M10 M12 M16 M20 M24
O R DE R N O. 1 3 3 3I 1 3 3 4I 1 3 3 5I 1 3 3 6I 1 3 3 7I 1 3 3 8I 1 3 4 3I 1 3 4 4I 1 3 4 5I 1 3 4 6I 1 3 4 7I 1 3 4 8I 1 3 5 3I 1 3 5 4I 1 3 5 5I 1 3 5 6I 1 3 5 7I 1 3 5 8I 1 3 5 1 0I 1 3 5 1 2I 1 3 6 3I 1 3 6 4I 1 3 6 5I 1 3 6 6I 1 3 6 7I 1 3 6 8I 1 3 6 1 0I 1 3 6 1 2I 1 3 6 1 4I 1 3 6 1 6I 1 3 6 1 8I 1 3 6 2 0I 1 3 7 3I 1 3 7 4I 1 3 7 5I 1 3 7 6I 1 3 7 7I 1 3 7 8I 1 3 8 4I 1 3 8 5I 1 3 8 6I 1 3 8 7I 1 3 8 8I
D
3/ 1 8- 1 6
1/ 2- 1 2 1/ 2- 1 3
5/ 8- 1 1
3/ 4- 1 0
7/ 8- 9
1 -8
1. 1 2. 4 4. 8 8. 4 21 42 72 180 352 564
L
L 1
3 4 5 6 7 8 3 4 5 6 7 8 3 4 5 6 7 8 10 12 3 4 5 6 7 8 10 12 14 16 18 20 3 4 5 6 7 8 4 5 6 7 8
30 40 40 40 40 40 30 40 40 40 40 40 30 40 40 40 40 40 45 45 30 40 45 45 45 45 50 50 50 50 50 50 30 45 45 45 45 45 45 45 45 45 45
W EI G H T ( k g s) 0. 0 4 0. 0 5 0. 0 6 0. 0 7 0. 0 9 0. 1 0 0. 0 6 0. 0 7 0. 0 9 0. 1 1 0. 1 3 0. 1 5 0. 0 9 0. 1 3 0. 1 6 0. 1 9 0. 2 3 0. 2 5 0. 3 1 0. 3 8 0. 1 2 0. 1 6 0. 2 0 0. 2 5 0. 3 0 0. 3 2 0. 4 0 0. 5 0 0. 6 2 0. 7 5 0. 8 7 1. 0 0 0. 1 8 3 0. 2 5 0. 3 0 0. 4 0 0. 4 5 0. 5 0 0. 2 5 0. 3 5 0. 4 5 0. 5 3 0. 6 0
C O DE N O. 1 0 0 3- 0 8 1I 1 0 0 3- 0 8 2I 1 0 0 3- 0 8 3I 1 0 0 3- 0 8 4I 1 0 0 3- 0 8 5I 1 0 0 3- 0 8 6I 1 0 0 3- 0 9 1I 1 0 0 3- 0 9 2I 1 0 0 3- 0 9 3I 1 0 0 3- 0 9 4I 1 0 0 3- 0 9 5I 1 0 0 3- 0 9 6I 1 0 0 3- 1 1 1I 1 0 0 3- 1 1 2I 1 0 0 3- 1 1 3I 1 0 0 3- 1 1 4I 1 0 0 3- 1 1 5I 1 0 0 3- 1 1 6I 1 0 0 3- 1 1 7I 1 0 0 3- 1 1 8I 1 0 0 3- 1 2 0I 1 0 0 3- 1 2 1I 1 0 0 3- 1 2 2I 1 0 0 3- 1 2 3I 1 0 0 3- 1 2 4I 1 0 0 3- 1 2 5I 1 0 0 3- 1 2 6I 1 0 0 3- 1 2 7I 1 0 0 3- 1 2 8I 1 0 0 3- 1 2 9I 1 0 0 3- 1 3 0I 1 0 0 3- 1 3 1I 1 0 0 3- 1 4 0I 1 0 0 3- 1 4 1I 1 0 0 3- 1 4 2I 1 0 0 3- 1 4 3I 1 0 0 3- 1 4 4I 1 0 0 3- 1 4 5I 1 0 0 3- 1 5 0I 1 0 0 3- 1 5 1I 1 0 0 3- 1 5 2I 1 0 0 3- 1 5 3I 1 0 0 3- 1 5 4I
St e p Cl a m p STEP CL A MP
H R C 3 7º
O R DE R N O.
B olt Si z e
6113
M 8 or M 1 0
A sl ot
B L e n gt h
C Wi dt h
D T hi c k n e s s
W ei g ht ( k g)
C O DE N O.
64
25
12
0. 1 1
1 0 0 3- 0 3 0
6123
M 8 or M 1 0
100
25
16
0. 2 6
1 0 0 3- 0 3 1
6133
M 8 or M 1 0
150
28
19
0. 4 8
1 0 0 3- 0 3 2
6214
M12
64
28
12
0. 1 2 5
1 0 0 3- 0 3 3
6224
M12
100
32
19
0. 3 1
1 0 0 3- 0 3 4
6234
M12
150
32
22
0. 5 9
1 0 0 3- 0 3 5
6215
M16
6225
M16
11
14
18
64
32
16
0. 1 6
1 0 0 3- 0 3 6
100
38
19
0. 3 9
1 0 0 3- 0 3 7
6235
M16
150
38
22
0. 7 1
1 0 0 3- 0 3 8
6316
M 2 0 or M 1 8
100
38
19
0. 3 6
1 0 0 3- 0 3 9
6326
M 2 0 or M 1 8
150
38
25
0. 7 3
1 0 0 3- 0 4 0
6336
M 2 0 or M 1 8
200
44
28
1. 4 4
1 0 0 3- 0 4 1
6417
M24
6427
M24
6437
M24
20
26
150
50
32
1. 1 5
1 0 0 3- 0 4 2
200
50
35
2
1 0 0 3- 0 4 3
250
50
38
2. 6 7
1 0 0 3- 0 4 4
St e p Bl o c k
H R C 3 7º
O R DE R N O.
A
B
C
E
a
b
C O DE N O.
5114
19
30
25
45
3. 1
1. 8
1 0 0 3- 1 7 0
5124
30
47
25
70
3. 1
1. 8
1 0 0 3- 1 7 1
5134
59
97
25
147
3. 1
1. 8
1 0 0 3- 1 7 2
5114 B
19
30
32
45
3. 1
1. 8
1 0 0 3- 1 7 0 B
5124 B
30
47
32
70
3. 1
1. 8
1 0 0 3- 1 7 1 B
5134 B
59
97
32
147
3. 1
1. 8
1 0 0 3- 1 7 2 B
5215
39
59
38
87
3. 1
1. 8
1 0 0 3- 1 7 3
5225
61
97
38
147
3. 1
1. 8
1 0 0 3- 1 7 4
5235
86
140
38
210
3. 1
1. 8
1 0 0 3- 1 7 5
MI L LI N G M A C HI N E A C C E S S O RI E S
A64
Fl a n g e N ut
DI N 6 3 3 1 S T A N D A R D
B y m a c hi n e pr o c e s s. Wit h t ur n e d & mill e d H R C 3 4º
M etri c Si z e O R DE R N O.
T hr e a d
A
B
C
Ø D1
W ei g ht ( k g)
C O D E N O.
CF N0814
M 8 X 1. 2 5
1 5. 5 5
14
13
CF N1017
M 1 0 X 1. 5
1 8. 9 0
17
15
3
19
0. 0 1 5
1 0 0 3- 1 5 9
4
22
0. 0 2
1 0 0 3- 1 6 0
CF N1219
M 1 2 X 1. 7 5 2 1. 1 0
19
CF N1422
M 1 4 X 2. 0
2 4. 5 0
22
18
4
25
0. 0 3
1 0 0 3- 1 6 1
21
4. 5
28
0. 0 4
1 0 0 3- 1 6 2
CF N1624
M 1 6 X 2. 0
2 6. 8 0
CF N1827
M 1 8 X 2. 5
3 0. 1 0
24
24
5
31
0. 0 6
1 0 0 3- 1 6 3
27
27
5
34
0. 0 9
1 0 0 3- 1 6 4
D
C- Cl a m p C a st St e el m m
O R D E R N O.
M A X. O P E N
T H R O AT DEPT H
Lx W
W EI G H T ( k g s)
C O D E N O.
V C L- 2 C
1- 7/ 8”
1- 7/ 8”
120x84 m m
0. 2 2
1 0 0 3- 2 1 0
V C L- 3 C
2- 3/ 4”
2”
163x91 m m
0. 3 8
1 0 0 3- 2 1 1
V C L- 4 C
3- 7/ 8”
2- 1/ 2”
195x102 m m
0. 5 9
1 0 0 3- 2 1 2
V C L- 6 C
6”
3- 1/ 2”
270x127 m m
1. 1 8
1 0 0 3- 2 1 3
V C L- 8 C
7- 3/ 8”
4- 1/ 2”
345x161 m m
1. 7 5
1 0 0 3- 2 1 4
S cr e w J a c k W or k cl a m pi n g M at eri al: S 4 5 C S u p p ort h e a v y w ei g ht
V S J- 5 0 0 A
B
C
Ø D
V S J- 4 0
A DJ U ST A BL E C A P A CI T Y 4 0- 5 0 m m
40
52
30
V S J- 7 0
6 5- 9 0 m m
65
95
28
V S J- 1 5 0
9 0- 1 4 0 m m
88
140
40
50
30
1. 1
1 0 1 4- 0 0 2
V S J- 2 5 0
1 4 0- 2 3 0 m m
135
230
45
55
30
2. 3
1 0 1 4- 0 0 3
V S J- 5 0 0
2 6 5- 3 6 0 m m
265
360
45
72
30
4. 6
1 0 1 4- 0 0 4
O R D E R N O.
A65
V S J- 4 0, 7 0, 1 5 0, 2 5 0
MI L LI N G M A C HI N E A C C E S S O RI E S
K. G.
C O D E N O.
40
ALL O WE D L O A D K N 30
0. 3
1 0 1 4- 0 0 0
38
30
0. 4
1 0 1 4- 0 0 1
T hr e a d R o d J a c k Wit h M a g n et S C RE W J A C K
B uilt-i n m a g n et s d e si g n e d, e a s y t o cl e a n c hi p s. H ei g ht a dj u st er
MA G NET AN
B
C
D
K
ALL O WE D L O A D K N
K. G.
C O D E N O.
V S J M- 5 0
42
47
35
40
1 1. 5
30
0. 4
1 0 1 4- 0 1 0
V S J M- 7 0
51
65
35
40
1 1. 5
30
0. 5
1 0 1 4- 0 1 1
V S J M- 8 5
67
87
40
45
1 1. 5
30
0. 7
1 0 1 4- 0 1 2
V S J M- 1 1 0
86
11 6
40
45
1 1. 5
30
0. 8
1 0 1 4- 0 1 3
V S J M- 1 6 5
11 0
170
45
50
1 1. 5
30
1. 4
1 0 1 4- 0 1 4
O R D ER
O .
T hr e a d R o d J a c k S et
S UI T A B L E F O R I R R E G U L A R W O R K PI E C E. R A PI D S E T TI N G & FI X E D. W O R K C L A M PI N G & S U P P O R T. H EI G H T A D J U S T E R
P A D S:
6 P A D S F or diff er e nt w or k pi e c e s h a p e O R D E R N O.
V S J- 1 A
V S J- 2 A
V S J- 3 A
1 0 1 4- 0 3 0
V S J- 2 A
1 0 1 4- 0 3 1
V S J- 4 A
V S J- 5 A
C O D E N O.
V S J- 1 A V S J- 3 A
V S J- 4 A
SI Z E
Ø 2 5x Ø 11x 1 0 m m
1 0 1 4- 0 3 2 1 0 1 4- 0 3 3
V S J- 5 A
1 0 1 4- 0 3 4
V S J- 6 A
1 0 1 4- 0 3 5
V S J- 6 A S E T I N C L U DI N G J A C KS
PA RTS E A C H O NE
W EI G H T K. G.
C O D E N O.
V S J- A
V S J- 7 0 A x 2 V S J- 1 5 0 A x 2
V S J- 1 A, V S J- 2 A, V S J- 3 A V S J- 4 A, V S J- 5 A, V S J- 6 A
4. 0
1 0 1 4- 0 2 0
V S J- B
V S J- 1 5 0 A x 2 V S J- 2 5 0 A x 2
V S J- 1 A, V S J- 2 A, V S J- 3 A V S J- 4 A, V S J- 5 A, V S J- 6 A
7. 5
1 0 1 4- 0 2 1
O R D E R N O.
MI L LI N G M A C HI N E A C C E S S O RI E S
A66
Gr o u n d P ar all el s
O R D E R N O. V P- 1 0 0 C O D E N O. 1 0 0 4- 0 0 1 T o pr o vi d e m or e c o n v e ni e nt pr o c e s si n g f or milli n g vi s e.
H ar d n e s s: H R C 4 8º- 5 3º A c c ur a c y: 0. 0 1 m m Pr o c e s s: F o ur- si d e gr o u n d 1 s et i n cl u d e s 1 8 p c s P a c k e d b y pl a sti c c a s e, G. W.: 1 1. 7 k g s, M e a s: 0. 3 C F T. Di m e n si o n: 3 9 0 x 2 9 2 x 8 4 m m
B O D Y SI Z E
C L A M P SI Z E
Wx HxLx Pcs
Ax Bx CxLx Pcs
5x16x100x2 6x18x100x2 8x24x100x2
1 5 x 3 1 x 2. 5 x 2 0 0 x 2
10x30x100x2 12x36x150x2 14x48x150x2 18x60x150x2 22x62x150x2
Gr o u n d P ar all el s
O R D E R N O. V P- 1 1 8 A
C O D E N O. 1 0 0 4- 0 1 0
8. 5 m m WI D T H, 5. 8 k g s H ar d n e s s: H R C 4 8º- 5 3º M A D E O F HI G H G R A D E ALL O Y ST E EL HA R DE NE D A N D G R O U N D. Di m e n si o n: 2 9 0 x 2 2 8 x 8 0 m m
U nit: m m
Wx HxLx Pcs 8. 5 x 1 4 x 1 5 0 x 2
8. 5 x 3 2 x 1 5 0 x 2
8. 5 x 1 6 x 1 5 0 x 2
8. 5 x 3 6 x 1 5 0 x 2
8. 5 x 2 0 x 1 5 0 x 2
8. 5 x 4 0 x 1 5 0 x 2
8. 5 x 2 4 x 1 5 0 x 2
8. 5 x 4 4 x 1 5 0 x 2
8. 5 x 3 0 x 1 5 0 x 2
Gr o u n d P ar all el s
O R D E R N O. V P- 1 2 8 A C O D E N O. 1 0 0 4- 0 2 0 2 8 P C S/ S E T 1 0. 7 k g s
V P- 1 2 8 A 1 0 m m WI D T H
U nit: m m
Wx HxLx Pcs
H ar d n e s s: H R C 4 8º- 5 3º M A D E O F HI G H G R A D E ALL O Y ST E EL HA R DE NE D A N D G R O U N D. Di m e n si o n: 3 9 0 x 2 9 2 x 8 2 m m
A67
MI L LI N G M A C HI N E A C C E S S O RI E S
10x14x150x2
10x28x150x2
10x16x150x2
10x30x150x2
10x18x150x2
10x32x150x2
10x20x150x2
10x35x150x2
10x22x150x2
10x40x150x2
10x24x150x2
10x45x150x2
10x26x150x2
10x50x150x2
G R O U N D PA R ALLELS
U nit: m m
O R D E R N O. V P- 1 3 6 C O D E N O. 1 0 0 4- 0 3 0 T o pr o vi d e m or e c o n v e ni e nt pr o c e s si n g f or milli n g vi s e H ar d n e s s: H R C 4 8º- 5 3º
A C C U R A C Y: 0. 0 1 m m WI D T H 8. 0 m m 3 6 P C S/ S E T 1 2. 3 k g s
P R E CI SI O N P A R A L L E L S
Pr e ci si o n P ar all el s
U nit: m m
Wx HxLx Pcs 8x16x150x2
8x34x150x2
8x18x150x2
8x36x150x2
8x20x150x2
8x38x150x2
8x22x150x2
8x40x150x2
8x24x150x2
8x42x150x2
8x26x150x2
8x44x150x2
8x28x150x2
8x46x150x2
8x30x150x2
8x48x150x2
8x32x150x2
8x50x150x2
Di m e n si o n: 3 9 0 x 2 9 2 x 8 2 m m
V P- 0 1 8 T hi n T y p e P ar all el s S et
O R D E R N O. V P- 0 1 8
C O D E N O. 1 0 0 4- 0 4 0
3 W x 1 5 0 L x 2 0 P C S/ S E T
H ar d n e s s: H R C 4 8º- 5 3º
G. W. 2. 5 k g s. A C C U R A C Y: 0. 0 1 m m T HI C K N E S S 1/ 8 3 m m Wx HxLx Pcs
Wx HxLx Pcs
3x13x150x2
3x28x150x2
3x16x150x2
3x31x150x2
3x19x150x2
3x35x150x2
3x22x150x2
3x38x150x2
3x25x150x2
3x41x150x2
Di m e n si o n: 2 9 0 x 2 3 0 x 7 3 m m
V P- 1 6 3 Pr e ci si o n P ar all el s
O R D E R N O. V P- 1 6 3
C O D E N O. 1 0 0 4- 0 5 0
5 W x 1 5 0 L x 8 P C S/ S E T
H ar d n e s s: H R C 4 8º- 5 3º G. W. 1. 7 k g s. A C C U R A C Y: 0. 0 1 m m T HI C K N E S S 3/ 1 6 5 m m Wx HxLx Pcs 5x25x150x2 5x31x150x2 5x38x150x2 5x44x150x2
Di m e n si o n: 1 7 5 x 8 5 x 5 5 m m
MI L LI N G M A C HI N E A C C E S S O RI E S
A68
V P- 0 6 4 Pr e ci si o n P ar all el s
O R D E R N O. V P- 0 6 4
H ar d n e s s: H R C 4 8º- 5 3º
C O D E N O. 1 0 0 4- 0 6 0
6 W x 1 5 0 L x 1 8 P C S/ S E T
Wx HxLx Pcs
Wx HxLx Pcs
6x19x150x2
6x35x150x2
6x22x150x2
6x38x150x2
6x25x150x2
6x41x150x2
6x28x150x2
6x44x150x2
6x31x150x2
Di m e n si o n: 2 8 8 x 2 2 8 x 7 5 m m
V P- 0 5 0 Pr e ci si o n P ar all el s
O R D E R N O. V P- 0 5 0
C O D E N O. 1 0 0 4- 0 7 0
1 3 W x 1 5 0 L x 8 P C S/ S E T
H ar d n e s s: H R C 4 8º- 5 3º
G. W. 4. 5 k g s. A C C U R A C Y: 0. 0 1 m m T HI C K N E S S 1/ 2 13 m m Wx HxLx Pcs 13x25x150x2 13x31x150x2 13x38x150x2 13x44x150x2
Di m e n si o n: 1 7 5 x 1 5 0 x 5 5 m m
V P- 0 3 3 Pr e ci si o n P ar all el s
O R D E R N O. V P- 0 3 3
C O D E N O: 1 0 0 4- 0 8 0
H ar d n e s s: H R C 4 8º- 5 3º
2 0 0 L x 8 P C S/ S E T A c c ur a c y: 0. 0 1 m m
Wx HxLx P C S 8x24x200x2 12x36x200x2
G. W. 6. 4 k g s. L O N G E R T Y P E, S UI T F O R BI G G E R VI S E.
22x40x200x2 3 1 x 1 5 x 2 0 0 x 2 x 2. 5 F or Cl a m pi n g
1 5 x 3 1 x 2. 5 x 2 0 0 x 2
Di m e n si o n: 3 4 0 x 2 2 3 x 8 5 m m A69
MI L LI N G M A C HI N E A C C E S S O RI E S
G R O U N D PA R ALLELS
G. W. 4. 5 k g s. A C C U R A C Y: 0. 0 1 m m T HI C K N E S S 1/ 4 6 m m
V P- 1 4 6 Gr o u n d P ar all el s C O D E N O: 1 0 0 4- 0 8 2
4. 6 W x 1 5 0 L x 1 2 P C S/ S E T A c c ur a c y: 0. 0 1 m m G R O U N D PA R ALLELS
O R D E R N O. V P- 1 4 6
G. W. 3 k g s. M at eri al: S 4 5 C H ar d n e s s: H R C 4 8º- 5 3º Wx HxLx P C S 4. 6 x 3 2 x 1 5 0 x 2 4. 6 x 3 4 x 1 5 0 x 2 4. 6 x 3 6 x 1 5 0 x 2 4. 6 x 3 8 x 1 5 0 x 2 4. 6 x 4 0 x 1 5 0 x 2 4. 6 x 4 4 x 1 5 0 x 2
Di m e n si o n: 1 9 5 x 1 8 0 x 9 0 m m
V P- 1 6 8 Gr o u n d P ar all el s
O R D E R N O. V P- 1 6 8
C O D E N O: 1 0 0 4- 0 8 3
6. 8 W x 1 5 0 L x 1 4 P C S/ S E T A c c ur a c y: 0. 0 1 m m G. W. 3. 5 k g s. M at eri al: S 4 5 C H ar d n e s s: H R C 4 8º- 5 3º Wx HxLx P C S 6. 8 x 1 5 x 1 5 0 x 2 6. 8 x 1 8 x 1 5 0 x 2 6. 8 x 2 1 x 1 5 0 x 2 6. 8 x 2 5 x 1 5 0 x 2 6. 8 x 2 7 x 1 5 0 x 2 6. 8 x 3 1 x 1 5 0 x 2 6. 8 x 3 5 x 1 5 0 x 2
V P- 2 0 0 Gr o u n d P ar all el s
O R D E R N O. V P- 2 0 0
Di m e n si o n: 2 2 5 x 2 0 0 x 9 0 m m
C O D E N O. 1 0 0 4- 0 8 5
Di m e n si o n: 3 5 5 x 3 1 8 x 8 5 m m M A D E O F HI G H G R A D E ALL O Y ST E EL HA R DE NE D A N D G R O U N D. A C C U R A C Y: 0. 0 1/ 1 0 0 M M G. W. : 1 5. 6 K G S H ar d n e s s: H R C 4 8º- 5 3º
B O D Y SI Z E
C L A M P SI Z E
Ax BxLx Pcs
Ax Bx CxLx Pcs
5x16x150x2 6x18x150x2
3 1 x 1 5 x 2 0 0 x 2 x 2. 5
8x24x150x2 10x30x150x2 12x36x200x2 14x48x200x2
F O R O V E R 1 5 0 m m, 2 0 0 m m J A W P L A T E VI S E U SI N G
18x60x200x2 22x62x200x2
MI L LI N G M A C HI N E A C C E S S O RI E S
A70
H e a v y D ut y Tilti n g Pl at e
TI L TI N G P L A T E & C L A M PI N G H A N D L E C L A M PI N G
C L A M PI N G TI L TI N G H A N D L E
O R DE R N O. V U T- 1 5 1 5
H ori z o nt al
V erti c al
C O D E N O.
30 kgs
12 kgs
1 0 0 4- 1 1 0
V U T- 2 7 2 6
45 kgs
20 kgs
1 0 0 4- 1 1 1
V U T- 3 2 3 0
70 kgs
35 kgs
1 0 0 4- 1 1 2 C L A M PI N G H A N D L E
F O R TI L TI N G H A N D L E
U SI N G E X A M P L E:
Tilti n g b y ri gi d & str o n g d e si g n, 2 s u p p ort er & ri gi d cl a m pi n g s y st e m c o n str u cti o n. Mi ni m u m s et- u p ti m e. Tilti n g a n gl e c a n a dj u st e d b y w or m & w or m g e ar s y st e m. A c c ur at e a n d b uilt f or u s e i n milli n g, b ori n g a n d ot h er m a c hi n e s. W or m s h aft s ar e h ar d e n e d a n d gr o u n d. Tilti n g pl at e wit h sl ot s e n a bl e M ulti- p o siti o n Str o n g str u ct ur e. F C 25 U nit: m m
O R DE R N O. V U T- 1 5 1 5
E
F
G
H
I
J
J1
K
M
N
P
Q
b
1 8 0 2 8 5 11 3 1 5 6 1 5 0
16
20
11 5
44
16
50
44
28
50
50
30
V U T- 2 7 2 6
255 399 150 270 258
16
22
155
72
20
70
72
55
80
80
V U T- 3 2 3 0
300 449 169 320 298
16
26
169
92
25
75
92
60
98
100
A71
A
B
C
D
MI L LI N G M A C HI N E A C C E S S O RI E S
c
e
h
K G S C O D E N O.
145 140
10
2 5 1 1 7. 6
1 0 0 4- 1 1 0
45
207 192
12
2 9 1 5 9. 4
1 0 0 4- 1 1 1
48
232 217
16
305
1 0 0 4- 1 1 2
83
LI G H T D U T Y TI L TI N G P L A T E
Li g ht D ut y Tilti n g Pl at e
Li g ht c utti n g. C a n i n st all wit h vi s e a n d m a g. c h u c k. O R DE R N O. V U- 1 5 1 7
5 U nit: m m
A
B
C
D
E
F
G
H
I
J
J1
K
M
P
Q
e
h
Kgs
180
228
92
154
176
16
20
105
44
22
50
50
27
50
34
12
198
14
C O DE N O. 1 0 0 4- 1 2 0
Li g ht D ut y Tilti n g Pl at e
Li g ht c utti n g. C a n i n st all wit h vi s e a n d m a g. c h u c k. O R DE R N O. V U- 2 1 2 2
5 U nit: m m
A
B
C
D
E
G
H
I
J
J1
K
M
P
Q
e
h
Kgs
225
312
144
210
224
20
154
69
26
60
75
30
75
37
12
258
28
C O DE N O. 1 0 0 4- 1 2 1
MI L LI N G M A C HI N E A C C E S S O RI E S
A72
A dj u st a bl e A n gl e Pl at e 1. F or a n gl e s etti n g o n v ari o u s m a c hi n e t o ol s. 2. A dj u st a dl e 4 5º 3. M at eri al: F C 2 5 4. L o w er pl at e a n d bi g g er w or ki n g s p a c e.
V P- 1 8 0 V P- 2 5 0 V P- 3 8 0
V P- 6 0 0
U nit: m m
O R DE R N O.
A
B
C
D
E
F
G
a
b
c
d
V P- 1 8 0
185
132
95
35
8
14
75
13
23
10
18
M A X. L O A D C a p a cit y ( k g s) 6
V P- 2 5 0
255
180
136
50
10
16
95
16
26
1 3. 5
25
10
2 8. 7
1 0 0 4- 0 9 0
V P- 3 8 0
380
255
181
69
13
18
150
16
26
14
25
18
56
1 0 0 4- 0 9 1
O R DE R N O.
A
B
C
D
E
F
F1
G
G1
H
I
a
b
c
d
V P- 6 0 0
600
300
202
80
13
16
17
265
109
121
16
16
26
13
23
M A X. L O A D C a p a cit y ( k g s) 25
kg
C O DE N O.
7. 3 8
1 0 0 4- 0 8 9
U nit: m m
kg
C O DE N O.
85
1 0 0 4- 0 9 2
A n gl e Pl at e Wit h S wi v el B a s e
3 6 0º S WI V E L B A S E. U nit: m m
O R DE R N O.
V P- 2 5 0 S V P- 3 8 0 S
A73
A 290 390
T a bl e L x W B 180 360
H 206 255
MI L LI N G M A C HI N E A C C E S S O RI E S
e 16 16
T- S L O T C 50 68
D 105 127
R
W EI G H T ( k g)
C O DE N O.
52 60
36 86
1 0 0 4- 1 0 0 1 0 0 4- 1 0 1
C R OSS TA BLE
Pr e ci si o n Cr o s s T a bl e
V C T- 5 1 4
V C T- 4 0 7 M at eri al: o v er F C- 3 0 Pr e ci si o n: 0. 0 2/ 1 0 0 m m D R A WI N G O F V C T- 5 1 4 O R DE R N O.
F
Tr a v el Str o k e
T Sl ot
T ot al h ei g ht
Di al gr a d u ati o n
A
D
E
V C T- 4 0 7
100 180 130 100
11 5
50
50x80
3/ 8”
100
V C T- 5 1 4
1 5 0 3 5 0 2 5 0 3 0 0 2 0 6 2 0 8 1 5 6 x 1 7 0 3/ 8”
V C T- 8 2 0 V C T- 1 0 2 4
U nit: m m
W EI G H T kgs
M A X. L O A D kgs
C O DE N O.
2. 5 m m/ 0. 0 2 2 9 0 x 2 4 0 x 1 4 0
12
35
1 0 0 7- 0 0 1
134
4 m m/ 0. 0 2
510x450x240
3 3. 5
105
1 0 0 7- 0 0 2
2 0 0 5 0 0 3 0 0 4 0 0 2 5 0 2 9 0 2 0 0 x 2 5 0 3/ 8”
155
4 m m/ 0. 0 2
640x520x200
72
140
1 0 0 7- 0 0 3
2 5 0 6 0 0 4 0 0 5 0 0 3 4 0 4 3 0 2 5 0 x 3 0 0 1/ 2”
210
4 m m/ 0. 0 2
790x680x310
141
175
1 0 0 7- 0 0 4
B
C
P A C KI N G Lx Wx H m m
Pr e ci si o n Cr o s s T a bl e
O R D E R N O. V C T- 8 3 0
C O D E N O. 1 0 0 7- 0 1 0
A h e a v y, r u g g e d sli d e i n all ki n d s of p o siti o ni n g, milli n g, drilli n g mi cr o- s c o p e vi e wi n g a n d st a gi n g, a dj u st a bl e b a s e s f or h e a v y l o a d s, s m all ji g b ori n g, pr e ci si o n c ut- off.
V C T- 8 3 0 U nit: m m
O R DE R N O.
A
B
C
D
V C T- 8 3 0
210
730
345
405
E
F
Tr a v el Str o k e
T Sl ot
T ot al h ei g ht
Di al gr a d u ati o n
P A C KI N G Lx Wx H m m
305
230 190x350
16
185
2. 5 m m/ 0. 0 5 9 9 1 x 5 8 4 x 2 9 2
W EI G H T kgs
M A X. L O A D kgs
C O DE N O.
100
35
1 0 0 7- 0 1 0
MI L LI N G M A C HI N E A C C E S S O RI E S
A74
Cr o s s T a bl e
O R D E R N O. V C T- 5 1 2
LI G H T D U T Y
C O D E N O. 1 0 0 7- 0 2 0
V C T- 5 1 2 T a bl e: 3 1 0 x 1 4 1 m m H ei g ht: 1 1 5 m m Tr a v el: 2 0 0 m m l o n git u di n al. 1 2 5 m m tr a n s v er s e. B a s e: 2 2 5 m m x 2 0 0 m m o v al wit h U sl ot s f or u p t o 1 6 b olt s o n 1 9 0 t o 2 1 0 b olt s cir cl e. Di al Gr a d u at e d: 0. 0 3 m m N et w ei g ht: 1 6. 5 k g s M a x. L o a d: 2 0 k g s P a c ki n g V ol u m e of e a c h u nit: 4 3 0 x 2 6 5 x 1 5 5 m m LI G H T D U T Y O N L Y
O R DE R N O.
A
B
C
D
E
F
Str o k e
T Sl ot
T ot al h ei g ht
P A C KI N G Lx Wx H m m
W EI G H T kgs
C O DE N O
V C T- 5 1 2
141
310
128
230
19
185
200x125
16
11 5 m m
430x265x155
1 6. 5
1 0 0 7- 0 2 0
Ri g ht A n gl e Pl at e
M a d e of hi g h t e n sil e c a st ir o n W e b b e d st yl e a c c ur at el y gr o u n d e d, s q u ar e a n d p ar all el o n o ut si d e f a c e s a n d e n d s wit hi n 0. 0 1 m m p er 1 0 0 m m O R D E R A p pr o x Di m e n si o n s N O. A B C
F
G
H
V R- 6
150
126
11 5
10
18
30
V R- 8
202
150
126
10
20
30
V R- 1 0
250
202
126
17
20
38
V R- 1 2
300
228
202
30
21
50
A75
MI L LI N G M A C HI N E A C C E S S O RI E S
U nit: m m
J
K
L
M
O
N
P
W EI G H T ( k g s)
C O DE N O.
33
35
33
24
70
13
18
3. 8
1 0 1 3- 0 1 0
85
30
45
40
34
90
16
18
7. 4
1 0 1 3- 0 1 1
95
43
55
53
45
128
17
25
1 2. 1
1 0 1 3- 0 1 2
123
50
65
60
54
135
20
30
2 3. 7
1 0 1 3- 0 1 3
I
A N G L E P L AT E
Pr e ci si o n Ri g ht A n gl e Pl at e
p ar all el r ef er e n c e s. Pr e ci si o n gr o u n d: S q u ar e wit hi n 0. 0 1 m m p er 1 0 0 m m P ar all el wit hi n 0. 0 1 m m p er 1 0 0 m m U nit: m m
O R DE R N O.
A p pr o x Di m e n si o n s A
B
C
W EI G H T ( k g s)
C O D E N O.
V R H- 4
102
126
150
6. 3
1 0 1 3- 0 0 1
V R H- 5
126
202
300
1 6. 9
1 0 1 3- 0 0 2
V R H- 6
150
150
202
1 4. 5
1 0 1 3- 0 0 3
V R H- 8
202
250
300
3 2. 5
1 0 1 3- 0 0 4
Sl ott e d A n gl e Pl at e V R- 4 5
M a d e of hi g h t e n sil e c a st ir o n pr o p erl y s e a s o n e d a g ai n st di st orti o n. O p e n e n d st yl e a c c ur at el y m a c hi n e d s q u ar e a n d p ar all el o n all f a c e s.
O R DE R N O.
V R- 1 0 0
V R- 4 5 V R- 6 0 V R- 8 0 V R- 1 0 0 V R- 1 2 0
A p pr o x Di m e n si o n s A
B
C
4- 1/ 2 6 8 10 12
3- 1/ 2 5 6 8 9
3 4- 1/ 2 5 6 8
APP R OX W EI G H T ( k g s) 1. 3 3. 2 7. 4 12 1 9. 4
C O D E N O. 1 0 1 3- 0 2 0 1 0 1 3- 0 2 1 1 0 1 3- 0 2 2 1 0 1 3- 0 2 3 1 0 1 3- 0 2 4
Pl ai n A n gl e Pl at e M a c hi n e d & pr e ci si o n gr o u n d str e s s r eli e v e d. Pr e ci si o n gr o u n d: Fl at a n d s q u ar e wit hi n 0. 0 1 p er 1 0 0 m m
O R D E R N O.
Si z e i n inches
V R- 2 2
2x2x2
APP R OX W EI G H T ( k g s) 0. 4
V R- 3 3
3x3x3
1. 2
1 0 1 3- 0 3 1
V R- 4 4
4x4x4
2. 5
1 0 1 3- 0 3 2
V R- 5 5
5x5x5
4. 3
1 0 1 3- 0 3 3
V R- 6 6
6x6x6
7
1 0 1 3- 0 3 4
C O D E N O. 1 0 1 3- 0 3 0
V R- 8 8
8x8x8
1 5. 2
1 0 1 3- 0 3 5
V R- 1 0 1 0
10x10x10
2 7. 7
1 0 1 3- 0 3 6
V R- 1 2 1 2
12x12x12
4 2. 9
1 0 1 3- 0 3 7
MI L LI N G M A C HI N E A C C E S S O RI E S
A76
U- Cl a m p E a s y a dj u st m e nt W or k cl a m pi n g & s u p p ort.
P AI R
Lx Wx H
K. G.
C O D E N O.
M 1 2 x 5”
Cl a m pi n g h ei g ht 0to 80
105x45x35 m m
1. 5
1 0 1 5- 0 0 1
V C A- 4 0 5
M 1 6 x 6”
0to 100
126x54x40 m m
2. 6
1 0 1 5- 0 0 2
V C A- 4 0 6
M 2 0 x 7”
0to 120
155x58x55 m m
4. 2
1 0 1 5- 0 0 3
V C A- 4 0 8
M 2 4 x 8”
0to 150
190x70x65 m m
8. 2
1 0 1 5- 0 0 4
O R D E R N O.
ST U D
V C A- 4 0 4
Pi v ot Cl a m p T h e cl a m pi n g h ei g ht i s a dj u st a bl e Wit h br a s s pl at e u n d er t h e cl a m p ar m f or p ot e cti n g t h e w or ki n g m at eri al fr o m d a m a g e B y u si n g s p h eri c al Fl a n g e n ut, it will b e a s s ur e d t o cl a m p t h e m at eri al ti g htl y T h e cl a m pi n g ar m i s f or g e d
WI T H B RASS PL AT E
P AI R
WI T H B R A S S P L A T E St u d X L Si z e M 1 2 x 5”
Cl a m pi n g h ei g ht
V C B- 4 0 4
T a bl e T- Sl ot Si z e 16
0to 80
11 5x 4 2x 3 9
V C B- 4 0 5
18
M 1 6 x 6”
0to 100
133x50x49
V C B- 4 0 6
22
M 2 0 x 7”
0to 120
157x60x54
V C B- 4 0 8
28
M 2 4 x 8”
0to 150
7 x 2 7 /8
O R D E R N O.
H a n d Drift
O R D E R N O. V H D- 1
Body
Cl a m pi n g F or c e
G. W.
C O D E N O.
1. 6
1 0 1 5- 0 0 5
1. 5
2. 7
1 0 1 5- 0 0 6
4. 6
1 0 1 5- 0 0 7
2. 5
8. 6
1 0 1 5- 0 0 8
C O D E N O. 1 0 1 6- 0 0 1 A n e s s e nti al t o ol f or m a c hi n er y pr o c e s si n g
S p e ci all y a p pli e d f or: V erti c al drill, r a di al drill, c o m p o u n di n g mill er, b ori n g mill er, a n d a n y drill drifti n g, et c. E a s y a n d f a st o p er ati o n. Pr ot e ct t o oli n g s t o b e s af e. E c o n o mi c al, pr a cti c al & d ur a bl e. M e di u m C ar b o n St e el. H ar d n e s s: H R C 4 4º- 4 8º S uit F or S pi n dl e N ot e s M. T. # 2 # 3 # 4 # 5
A77
L e n gt h
3 0 p c s/ B o x Si z e
375 m m
385x45x37 m m
MI L LI N G M A C HI N E A C C E S S O RI E S
3 0 p c s/ C art o n Si z e 390x270x240 m m
N. W.( k g) 1. 3
E y e S hi el d
C O D E N O. 1 0 1 7- 0 0 1
Ø6
180
T h e cl a m pi n g h ei g ht i s a dj u st a bl e Wit h br a s s pl at e u n d er t h e cl a m p ar m f or pr ot e cti n g t h e w or ki n g m at eri al fr o m d a m a g e G UI D E R SI Z E
K. G.
300x180x2
1
E Y E S HI E L D
O R D E R N O. V H- 5 6
E y e S hi el d Wit h M a g n eti c B a s e
O R D E R N O. V H- 5 7
C O D E N O. 1 0 1 7- 0 0 2
S e e t hr o u g h d e si g n M a g n eti c B a s e 8 0 k g s, 6 0 x 5 0 x 5 5 m m M ai n R o d O. D x L : Ø 1 2 x 1 7 3 W ei g ht : 1. 6 k g s milli n g
drilli n g
Milli n g T a bl e Sl ot C o v er S a v e ti m e cl e a ni n g c hi p s fr o m m a c hi n e Pr ot e ct s t a bl e sl ot s
O R D E R N O. V S T- 1 0 V S T- 1 2 V S T- 1 4 V S T- 1 6 V S T- 1 8 V S T- 2 0 V S T- 2 2 V S T- 2 4 V S T- 2 8 V S T- 3 6
T a bl e Sl ot 10 12 14 16 18 20 22 24 28 36
A 300 400 400 400 450 1000 1000 1000 1000 1000
V e e Bl o c k s
B 10 12 13 16 1 7. 8 20 22 24 2 7. 8 3 6. 6
C 8 8 9. 9 1 3. 3 1 3. 3 1 3. 7 1 3. 7 14 1 4. 1 13
D 1 0. 2 1 2. 2 1 4. 2 1 6. 5 1 8. 5 2 0. 5 2 2. 6 2 4. 8 2 8. 8 3 6. 7
E 7. 4 9. 9 1 1. 3 9. 5 1 6. 4 1 8. 4 2 0. 5 2 2. 5 28 35
F 5. 5 7. 2 7. 2 9 11 1 3. 2 1 5. 2 1 7. 2 2 1. 1 2 8. 2
G 2. 2 2. 2 2. 2 2. 2 2. 2 2. 2 2. 2 2. 2 2. 2 2. 2
H 6. 2 6. 2 8 10 10 10 1 0. 5 1 1. 7 1 1. 7 12
S et 6P CS 6P CS 6P CS 6P CS 6P CS 5P CS 5P CS 5P CS 5P CS 5P CS
K G 0. 1 0. 4 0. 5 0. 5 0. 6 1 1. 1 1. 2 1 1. 1
C O D E N O. 1 0 1 8- 0 1 1 1 0 1 8- 0 1 2 1 0 1 8- 0 1 3 1 0 1 8- 0 0 1 1 0 1 8- 0 0 2 1 0 1 8- 0 0 3 1 0 1 8- 0 0 4 1 0 1 8- 0 0 5 1 0 1 8- 0 0 6 1 0 1 8- 0 0 7
M A C HI N E D O N L Y
M at eri al: Hi g h q u alit y cl o s e- gr ai n e d c a st ir o n, str e s s-r eli e v e d. A c c ur a c y: M a c hi ni n g t o 0. 0 5 m m / 1 0 0 m m O R DE R N O. V- 2 V V- 3 V V- 4 V V- 5 V V- 6 V V- 7 V V- 8 V
L e n gt h
Wi dt h
H ei g ht
50 m m 27 m m 76 m m 35 m m 100 m m 45 m m 1 3 0 m m 5 1. 5 m m 156 m m 66 m m 181 m m 77 m m 206 m m 103 m m
32 m m 61 m m 67 m m 7 9. 5 m m 9 0. 5 m m 11 0 m m 143 m m
g ht C O DE V- Wi dt h V- D e pt h ( Wk eig s)/ S et N O. 2 5 m m 1 2. 5 m m 0. 5 1 0 1 9- 0 0 1 44 m m 22 m m 1. 5 1 0 1 9- 0 0 2 5 3 m m 2 6. 5 m m 2. 5 1 0 1 9- 0 0 3 64 m m 32 m m 4. 3 1 0 1 9- 0 0 4 8 1 m m 4 0. 5 m m 6. 4 1 0 1 9- 0 0 5 8 5. 4 m m 4 2. 7 m m 12 1 0 1 9- 0 0 6 11 6 m m 5 8 m m 1 6. 7 1 0 1 9- 0 0 7
MI L LI N G M A C HI N E A C C E S S O RI E S
A78
A ut o C e nt er P u n c h
O R D E R N O. V A C P- 1
C O D E N O. 1 0 1 9- 0 2 0
L: 1 2 0 M M
It’ s o p er at e d t o ai m at t h e c e ntr al li n e a n d b e pr e s s e d d o w n w ar d; t h e c e ntr al
Dr a w B ar
n e e d t o u s e h a m m er s. T h e f or c e fr o m s pri n g pr e s s ur e. Al s o c a n u s e t o br e a k c ar wi n d o w s N. W. : 0. 0 7 k g
F or milli n g m a c hi n e O R D E R N O.
V D R- R 8- S V D R- R 8- A V D R- N T 3 0 2- S V D R- N T 3 0 2- A V D R- N T 3 0 3- A V D R- N T 3 0 M- S V D R- N T 3 0 M- A V D R- N T 4 0 I- S V D R- N T 4 0 I- A V D R- N T 4 0 M- S V D R- N T 4 0 M- A
D R A W B A R T H RE A D
LE N GT H m m STEPS V A RI A B L E ( S) T Y P E ( A) S P E E D
7/ 1 6- 2 0 U N F
518
598
1/ 2- 1 2 U N F
555
635
1/ 2- 1 3 U N F
555
635
M 1 2 x 1. 7 5 P
555
635
5/ 8- 1 1 U N F
545
630
M 1 6 x 2. 0 P
545
630
W EI G H T ( k g)
C O D E N O.
0. 5 0. 8 0. 6 0. 9 0. 9 0. 6 0. 9 1 1. 3 1 1. 3
1 0 2 0- 0 0 1 1 0 2 0- 0 0 2 1 0 2 0- 0 0 3 1 0 2 0- 0 0 4 1 0 2 0- 0 0 6 1 0 2 0- 0 0 7 1 0 2 0- 0 0 8 1 0 2 0- 0 0 9 1 0 2 0- 0 1 0 1 0 2 0- 0 1 1 1 0 2 0- 0 1 2
Cl o c k S pri n g f or Milli n g M a c hi n e O R D E R N O.
L E N G T H ( m m)
W EI G H T ( k g)
C O D E N O.
V S P- R 8
Ø 4 3 x 0. 6 x 1 3 0 0 L x 2 5
0. 1 6
1 0 2 0- 1 0 1
V S P- N T 3 0
Ø 4 3 x 0. 6 x 1 3 0 0 L x 2 5
0. 1 6
1 0 2 0- 1 0 2
V S P- N T 4 0
Ø 4 5 x 0. 7 x 1 3 0 0 L x 3 0
0. 2 2 2
1 0 2 0- 1 0 3
W EI G H T ( k g) 0. 3 0. 6 0. 7 0. 7 1. 1 2
C O D E N O.
E x p a n d a bl e M a c hi n e G u ar d C o v er
B TYPE
F I S F O R F R O N T ( X) B I S F O R B A C K ( Y) ( MI L LI N G M A C HI N E) B S E RI E S R U B B E R I S P L AI N T Y P E. A79
MI L LI N G M A C HI N E A C C E S S O RI E S
F TYPE O R D E R N O.
WxL
V G C- 3 8 3 3 F V G C- 3 8 6 0 F V G C- 4 5 5 0 F V G C- 3 7 7 5 B V G C- 4 5 8 5 B V G C- 6 0 8 5 B
380x330 380x600 450x500 370x750 450x850 600x850
S UI T F U L MI L LI N G SI N E 1. 5 # 1. 6 # 1. 7# 1. 6 # 1. 5 # 1. 6 # 1. 7# 2. 0 #
1 0 2 1- 0 0 1 1 0 2 1- 0 0 2 1 0 2 1- 0 0 3 1 0 2 1- 0 0 4 1 0 2 1- 0 0 5 1 0 2 1- 0 0 6
5 C. C 3 2. O Z 2 5 C oll et R a c k C O D E N O. 1 0 2 1- 0 5 0
C OLLET R A C K
O R D E R N O. V M S- 5
SI Z E: 2 2 0 x 1 1 0 x 6 m m M A T E RI A L: P L A S TI C G. W.: 0. 2 k g s 5 C, C 3 2, O Z 2 5 E R 3 2, T C 3 1 2 C O L L E T R A C K
T a bl e Sl ot Pl at e E X A M PL E
S cr e w M 1 2 x 1. 7 5 P F or s etti n g
W T a bl e Sl ot W F or T a bl e Sl ot Cl a m p S u p p ort St o p p er F or Fl e xi bl e M a c hi n e T a bl e Fi xi n g
M at eri al: S S 4 1 C
O R D E R N O.
T P- 9 0- 1 8 T P- 9 0- 2 0 T P- 9 0- 2 2 T P- 9 0- 2 4 T P- 1 5 0- 1 8 T P- 1 5 0- 2 0 T P- 1 5 0- 2 2 T P- 1 5 0- 2 4
Wx HxL ( m m) 18x60x90 20x60x90 22x60x90 24x60x90 18x60x150 20x60x150 22x60x150 24x60x150
W EI G H T ( k g s) 0. 7 6 0. 8 5 0. 9 1 1. 3 1. 4 1. 6 1. 8
P art s St or a g e
C O D E N O. 1 0 2 1- 0 7 0 1 0 2 1- 0 7 1 1 0 2 1- 0 7 2 1 0 2 1- 0 7 3 1 0 2 1- 0 7 4 1 0 2 1- 0 7 5 1 0 2 1- 0 7 6 1 0 2 1- 0 7 7
C O L O R: R E D, B L U E, Y E L L O W
E a s y p art s st or a g e Or g a ni z e d
O R D E R N O.
SI Z E
PA C KE D
E A C H W EI G H T ( k g)
C O D E N O.
V H B- 1 2 1 8
120 Wx180 Dx80 H m m
6 0 P C S/ C A S E
8. 6
1 0 2 1- 1 0 0
V H B- 1 5 2 5
1 5 0 W x 2 5 0 D x 1 2 0 H m m 3 6 P C S/ C A S E
9. 6
1 0 2 1- 1 0 1
V H B- 2 0 3 5
2 0 0 W x 3 5 0 D x 1 5 0 H m m 1 8 P C S/ C A S E
0. 5 8 5
1 0 2 1- 1 0 2
V H B- 2 0 4 5
2 0 0 W x 4 5 0 D x 1 7 7 H m m 1 2 P C S/ C A S E
0. 8
1 0 2 1- 1 0 3
V H B- 3 0 4 5
300 Wx450 Dx177 H m m
1. 8 8 2 5
1 0 2 1- 1 0 4
8 P C S/ C A S E
MI L LI N G M A C HI N E A C C E S S O RI E S
A80
Ri g ht A n gl e H e a d V R A- R 8
V R A- N T 4 0
V R A- T Y P E
U s e d o n V erti c al Milli n g M a c hi n e t o m a k e h ori z o nt al w or k. Ri gi dit y c o n str u ct e d s uit a bl e f or h ori z o nt al c utti n g. T h e cl a m pi n g b u s hi n g t o s uit milli n g m a c hi n e. M a xi m u m s pi n dl e s p e e d all o w e d ri g ht a n gl e. 2 0 0 0 R. P. M.
Pl e a s e n otift y t h e q uill di a. w h e n or d eri n g M a c hi n e Q uill
O R D E R N O.
S UI T A B L E MI L LI N G H E A D Q UI L L DI A M E T E R( m m)
V R A- R 8
8 5. 7 2 5 ~ 8 6
V R A- N T 3 0 V R A- N T 4 0
Open Lockto open
L o o s e 2 s cr e w s t o m at c h wit h m a c hi n e. Ti g ht e n 2 s cr e w s
2 S cr e w s
Open
A s s e m bl e wit h milli n g q uill di a.
W EI G H T ( k g s)
C O DE N O.
175 138
1 2. 5
1 0 0 8- 0 0 1
8 5. 7 2 5 ~ 8 6
175 160
13
1 0 0 8- 0 0 2
8 5. 7 2 5, 1 0 0, 1 0 5, 1 1 0, 1 1 5
183 190
18
1 0 0 8- 0 0 3
C
D
A R B O R F O R C U T T E R I N C H O R M E R TI C SI Z E V R A- R 8
R 8- S C A 1
R 8- S C B 2 2
V R A- N T 3 0
N T 3 0- S C A 1
N T 3 0- S C B 2 7
V R A- N T 4 0
N T 4 0- S C A 1
N T 4 0- S C B 2 7
H ori z o nt al Milli n g Att a c h m e nt A S S E M B L E D WI T H MI L LI N G Q UI L L DI A.
S p e ci al d o v et ail d e gr e e, al s o c a n s u p pl y..... pl e a s e n otif y. V H A- T Y P E i n cl u di n g ri g ht a n gl e h e a d, l o n g h ori z o nt al ar b or a n d br e a k er. V H A- R- 8- 2 7 m m V H A- N T- 3 0/ N T- 4 0- 2 7 m m f or T h e m m si z e, f or i n c h si z e ar e s a m e 2 5. 4 m m ( 1 ) T h e q uill di a m et er i s s a m e a s V R A- T y p e M a xi m u m s pi n dl e s p e e d all o w e d ri g ht a n gl e. 2 0 0 0 R. P. M.
h ori z o nt al mill. D e si g n e d t o si m plif y ri g ht a n gl e w or k b y r e d u ci n g t h e n e e d f or s p e ci al
H ori z o nt al Milli n g Ar b or S u p p ort TYPE
A81
S P E C.
S UI T A B L E M/ C R A M D O V E T AI L WI D T H
U nit: m m
W EI G H T( k g s)
O R D E R N O.
C
D
E
F
C O D E N O.
A 5 0º
2 5. 7
V H A- R- 8
175
138
255
233
1 0 0 8- 0 1 0
A 5 5º
2 6. 5
V H A- N T- 3 0
175
160
270
233
1 0 0 8- 0 1 1
A 6 0º
3 0. 8
V H A- N T- 4 0
183
190
270
233
1 0 0 8- 0 1 2
MI L LI N G M A C HI N E A C C E S S O RI E S
S u p er P o w er T y p e
F or L o n git u di n al X A xi s
P O WE R TA BLE FEE D
P o w er T a bl e F e e d - 5 0 0 X, 5 0 0 Y, 5 0 0 Z S eri e s
F or Cr o s s Y A xi s
F or V erti c al Z A xi s
T h e v erti c al milli n g m a c hi n e s t h e s a m e a s bri d g e p ort t y p e, l u g u n t y p e, k o n di a t y p e wit h o ut g e ar b o x t a bl e f e e d d e vi c e. All t y p e milli n g/ drilli n g m a c hi n e s hi g h t or q u e. E a s y i n st all ati o n. A ut o m ati c s h ut off. S u p eri or t h er m al c h ar a ct eri sti c. S m o ot h o p er ati o n s. S af et y o pti o n. Tr o u bl e-fr e e p erf or m a n c e. s u p er p o w er. T h e m a x. t or q u e i s 6 5 0 i n/ 1 b N e w s u p er p o w er d e si g n a n d c o n str u cti o n m at eri al s. T o p q u alit y. L o n g lif e s p a n d e si g n e d. All t y p e ar e 1 1 0 V v olt a g e o nl y.
5 0 0 S T y p e s eri e s V P F- 5 0 0 X V P F- 5 0 0 Y V P F- 5 0 0 Z O R D E R N O.
V O LT A G E
V P F- 5 0 0 X V P F- 5 0 0 Y V P F- 5 0 0 Z V P F- 9 9 X
11 0 V O NLY 11 0 V
Speed Range 4- 1 6 0r p m 0- 1 6 5r p m
R a pi d S p e e d 2 0 0r p m 2 4 0r p m
M a x. T or q u e 6 5 0 i n/l b 4 5 0 i n/l b
V P F- 9 9 X
Lx Wx H 290x200x320 m m 290x200x315 m m
G. W.( k g s)
C O D E N O.
6. 3
1 0 0 9- 0 0 1 A
6. 7
1 0 0 9- 0 0 2 A
6. 9
1 0 0 9- 0 0 3 A
6. 2
1 0 0 9- 0 0 5
11 0 V
F e at ur e s
A p pli c ati o n: t h e V E R T E X p o w er t a bl e f e e d f or Drill/ Milli n g m a c hi n e.
V P F- 9 9 Hi g h e st q u alit y d e si g n a n d c o n str u cti o n. Cir c uit p a n el i s d e si g n e d f or e a s y r e pl a c e m e nt wit h i n s ert t y p e c o n n e ct or s. A s s y- g e ar cl u ct h h a s li mit f or t wi sti n g: W h e n p o w er f e e d i s w or ki n g a n d a c c e pti n g tr e m e n d o u s o b st a cl e, t h e a s s y- g e ar cl u ct h will a ut o m ati c all y b e c o m e n at ur al t ur ni n g i n or d er t o r e d u c e d a m a g e.
O P TI O N A L Tr a n sf or m er 1 1 0 V O R D E R N O. V P F- T F C O D E N O. 1 0 0 9- 0 0 6
220 V
T R 1: O ut p ut T R 2: 2 O ut p ut O ut p ut: 1 1 0 V 5 0/ 6 0 H z, p o w er s u p pl y: 5 0/ 6 0 H z, 1- p h a s e 2 2 0, 2 4 0, 3 8 0, 4 1 5, 4 4 0 V
T HI S T R A N S F O R M E R I S F O R V P F- T Y P E U S E O N L Y.
V P F- 5 0 0
V P F- 9 9
MI L LI N G M A C HI N E A C C E S S O RI E S
A82
Air P o w er Dr a w b ar
St a n d ar d e q ui p m e nt P o w er m ot or C o ntr ol b o x
Dr a w b ar M o u nti n g h ar d w ar e
a s c utt er r e pl a c e m e nt n e e d s o nl y 3 s e c a n d t h e s p e e d of r e pl a c e m e nt i s m or e t h a n 1 0 ti m e s t o c o m p ar e wit h tr a diti o n al c utt er r e pl a c e m e nt.
Air p o w er dr a w b ar P D- 1 5 0, P D- 2 0 0 V P F- 5 0 0 X
V P F- 5 0 0 Y
V P F- 5 0 0 Z
I N STALL E X A M PL E O R D E R N O.
SPEE D
T O R Q UE
AI R P R E S S U R E
V O LT A G E F O R M A G N E TI C V A L V E
9 0 p si 6. 3 k g/ c m 2
A C 11 0 V O R 220 V D C 24 V
9. 8
A C 11 0 V O R 220 V D C 24 V
11
R- 8 P D- 1 5 0 F O R
N T- 3 0
3 0 0 0 R. P. M.
1 5 0 ft-l b
N T- 4 0
P D- 2 0 0 F O R
A83
N T- 5 0
3 0 0 0 R. P. M.
2 0 0 ft-l b
MI L LI N G M A C HI N E A C C E S S O RI E S
It c a n b e i n st all e d i n a n y ki n d of m a c hi n e, of w hi c h t h e m ai n s pi n dl e ar e R- 8, N T # 3 0, # 4 0 or # 5 0. It i s c o n v e ni e nt f or t h e m a c hi ni st w h o w a nt s i n cr e a s e d pr o d u cti o n a n d p erf or m a n c e fr o m hi s m a c hi n e. It i s s uit a bl e f or N C a n d g e n er al milli n g m a c hi n e s. T hi s d e vi c e i s e a sil y i n st all e d n e e d s o nl y 5 s e c o n d s t o c h a n g e t h e c utti n g t o ol. M ai n p o w er i s air c o m pr e s si o n. T hi s d e vi c e i s d e si g n e d wit h s af et y d e vi c e c o ntr oll e d wit h s ol e n oi d v al v e. T h e p o w er dr a w b ar c a n n ot b e o p er at e d w hil e m a c hi n e i s r u n ni n g.
9 0 p si 6. 3 k g/ c m 2
G. W. kgs
P A C KI N G Lx Wx H
C O DE N O. 1 0 1 0- 0 0 1
650x300x200
1 0 1 0- 0 0 2 1 0 1 0- 0 0 3
650x300x200
1 0 1 0- 0 0 4
Pr e ci si o n Sl otti n g H e a d C O D E N O. 1 0 1 2- 0 1 0
S L O T TI N G H E A D
O R D E R N O. V S H- 1 2 5
F e at ur e s
S p e ci al d e si g n w or m a n d w or m g e ar wit h li n k a g e tr a n s mi s si o n m e c h a ni s m, w ell c o n str u cti o n a n d hi g hl y p o w er o ut p ut. T h e r a m- sli di n g s urf a c e ar e h ar d e n e d a n d pr e ci si o n gr o u n d B uilt i n l u bri c ati n g s y st e m f or s m o ot hl y r u n ni n g a n d pr ol o n g t h e lif e of h e a d A v ail a bl e m o u nti n g o n a n y t y p e milli n g m/ c b a c k si d e of t h e r a m.
Str o k e: 1 2 5 m m ( 5 ) N o. of str o k e s p e e d c h a n g e: 5 st e p s Str o k e s p e e d ( str o k e/ mi n): 3 0, 4 7, 6 9, 9 8, 1 4 0 s p m ( 5 0 H Z) Str o k e s p e e d ( str o k e/ mi n): 3 5, 5 4, 7 9, 1 1 2, 1 6 0 s p m ( 6 0 H Z) Dri vi n g M ot or: 3/ 4 H P- 6 P W EI G H T: 1 5 0 k g s Sl otti n g b ar & c utt er V S H- C: 6 m m, 7 m m, 8 m m, 1 0 m m
C U T T E R SI Z E
O pti o n al A c c e s s ori e s Fl a n g e A Fl a n g e B Sl otti n g b ar & c utt er 4, 5, 6, 7, 8, 1 0 m m
O R D E R N O.
C UTTE R & D E S C RI P TI O N
W EI G H T ( k g)
C O D E N O.
V S H- 6 C
Sl otti n g b ar 6 m m
0. 5 6
1 0 1 2- 0 1 3
V S H- 7 C
Sl otti n g b ar 7 m m
0. 6 2
1 0 1 2- 0 1 4
V S H- 8 C
Sl otti n g b ar 8 m m
0. 8 0
1 0 1 2- 0 1 5
V S H- 1 0 C
Sl otti n g b ar 1 0 m m
0. 8 1
1 0 1 2- 0 1 6
V S H- F G A
FL A N G E A
11
1 0 1 2- 0 1 7
V S H- F G B
FL A N G E B
23
1 0 1 2- 0 1 8
1. Dir e ct m o u nti n g
MI L LI N G M A C HI N E A C C E S S O RI E S
A84
U ni v er s al C utt er Gri n d er
O R D E R N O. U 2
C O D E N O. 1 0 2 2- 0 0 1
F or gri n di n g H S S a n d c ar bi d e e n gr a vi n g c utt er a s w ell a s si n gl e li p or m ulti pl e li p c utt er s of v ari o u s s h a p e s s u c h a s r a di u s e d c utt er s or n e g ati v e t a p er a n gl e of c utt er s. T h e u ni v er s al i n d e x h e a d i s pr o vi d e d at 2 4 p o siti o n s s o t h at a n y p arti c ul ar a n gl e or s h a p e c a n b e o bt ai n e d, fr e e 3 6 0 0 or 1 0 0 r ot ati o n i s all o w e d f or gri n di n g E n d Mill s. T wi st Drill. L at h e T o ol s, o nl y r e pl a c e t h e att a c h m e nt t o t h e i n d e x h e a d wit h o ut a n y c o m pl e x s et u p.
T e c h ni c al D at a
M a x. C oll et c a p a cit y Ø 1 8 m m M a x. Gri n di n g di a. Ø 2 5 m m T a p er a n gl e 0º- 1 8 0º R eli ef a n gl e 0º- 4 5º N e g ati v e a n gl e 0º- 2 6º Gri n di n g s pi n dl e 3 6 0 0 r. p. m. C u p gri n di n g w h e el 1 0 0 x 5 0 x 2 0 m m M ot or 1/ 3 H p 2 2 0 V 5 0/ 6 0 H z, pl e a s e n otif y v olt & p h a s e N et w ei g ht 4 5 k g s G. W.: 5 8 k g s M a c hi n e di m e n si o n s ( L x W x H) 4 5 x 4 0 x 3 5 c m P a c ki n g Di m e n si o n s ( L x W x H) 5 5 x 4 5 x 4 7 c m
St a n d ar d A c c e s s or y I n cl u d e d
W h e el dr e s s er wit h di a m o n d.................... 1 p c Gri n di n g w h e el ( st o n e).............................. 1 p c ( U 2- G) C oll et Ø 4, 6, 8, 1 0 1 2 m m......................... 5 p c Dri v e b elt ( U 2- B)....................................... 1 p c ( U 2- B) L o c k pi n..................................................... 1 p c T o ol s......................................................... 1 s et
E N G R A VI N G A N D MI L LI N G C U T T E R P R O FI L E S S A M P L E
A85
MI L LI N G M A C HI N E A C C E S S O RI E S
U ni v er s al C utt er Gri n d er O pti o n al O pti o n al A c c e s s or y
o n p a g e U 2 c oll et. O R D E R N O.
C O D E N O.
U 2- E
1 0 2 2- 0 1 0
U 2- T
1 0 2 2- 0 1 1
U 2- L
1 0 2 2- 0 1 2
U 2- D # 1 0 0
1 0 2 2- 0 1 3
U 2- B B E L T G R E E N
1 0 2 2- 0 1 4
U 2- B- R B E L T R E D
1 0 2 2- 0 1 8
U 2- G W H E E L
1 0 2 2- 0 1 6
U 2- R # 2 0 0
1 0 2 2- 0 1 7
U 2- R- 1 # 4 0 0
1 0 2 2- 0 1 7- 1
V T C- 2 0
3 4 0 5- 2 2 1
U 2- C O L L E T
V E- U 2-
E N D mill gri n di n g att a c h m e nt C O D E N O. 1 0 2 2- 0 1 0 U 2- E W EI G H T: 2 k g s
T wi st drill gri n di n g att a c h m e nt O R D E R N O. U 2- T C O D E N O. 1 0 2 2- 0 1 1 W EI G H T: 0. 9 k g
L at h e t o ol gri n di n g att a c h m e nt O R D E R N O. U 2- L C O D E N O. 1 0 2 2- 0 1 2 W EI G H T: 0. 9 k g
B ELT O R D E R N O. U 2- B B E L T C O D E N O. 1 0 2 2- 0 1 4 O R D E R N O. U 2- B- R B E L T C O D E N O. 1 0 2 2- 0 1 8
DI A M O N D G RI N DI N G W H E E L U 2- D di a m o n d gri n di n g w h e el
U 2- R R e si n oi d Di a m o n d & C B N W h e el s
O R D E R N O.
SI Z E
G R AI N
W EI G H T ( k g s)
C O D E N O.
U 2- D
100 Dx10 Wx5 Ux20 Hx22 T
#100
0. 7
1 0 2 2- 0 1 3
U 2- R
100 Dx8 Wx2 Xx20 H
#200
0. 5
1 0 2 2- 0 1 7
U 2- R- 1
100 Dx8 Wx2 Xx20 H
#400
T o ol c a bi n et st a n d V T C- 2 0 4 6 0 x 3 7 0 x 8 6 0 m m G. W.: 3 0. 2 5 k g s C O D E N O.
C U T T E R G RI N D E R
T wi st drill gri n di n g att a c h m e nt U 2- T E N D m ail gri n di n g att a c h m e nt U 2- E L at h e t o ol gri n di n g att a c h m e nt U 2- L Gri n di n g w h e el b al a n ci n g st a n d L B S- 1 0 0 C O D E N O. 2 0 1 4- 0 1 0 Di a m o n d gri n di n g w h e el U 2- D R e si n oi d Di a m o n d & C B N W h e el s U 2- R C oll e ct ( e xtr a 1, 2, 2. 5, 3, 5, 7, 9, 1 6, 1 8, 2 0, 2 5 m m a n d 1/ 8”, 3/ 1 6”, 1/ 4”, 5/ 1 6”, 3/ 8”, 1/ 2”, 5/ 8”).
U 2- B B E L T G REE N
U 2- B- R B E L T RE D
U2 C OLL ET Pl e a s e s e e p a g e C 4 1
N O. 2
Ø 1 8- Ø 2 5
N O. 1
Ø 3- Ø 1 6
1 0 2 2- 0 1 7- 1
O R D E R N O. S H O W N O N P A G E C 1 4 0
3 4 0 5- 2 2 1
O R D E R N O.
SI Z E Ø
V E- U 2- Ø
Ø 1, 2, 3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 4, 1 5, 1 6, 1 8, 2 0, 25 m m
U2 C OLL ET
V T C- 2 0
E X A M PL E
MI L LI N G M A C HI N E A C C E S S O RI E S
A86
C h a mf eri n g & D e b urri n g U nit O R D E R N O.
C O D E N O.
V C F- 5 0 0
1 0 2 3- 0 0 1
V C F- 5 0 0 W
1 0 2 3- 0 0 2
V C F- 5 0 0 F
1 0 2 3- 0 0 3
P R A C TI C A L
A. U NI V E R S A L A P P LI C A TI O N. B. SI M P LI FI E D O P E R A TI O N. C. F A S T- A C C U R A T E- R A TI O N A L. D. TI M E S A V E D.
V C F- 5 0 0
S P M N 1203
A c c e s s or y: Si d e Mill C utt er I n s ert S P U N 4 2 2
T o ol c a bi n et st a n d V T C- 2 0, 460 x 370 x 860 m m C O D E N O. 3 4 0 5- 2 2 1 PA G E A84
F E A T U R E S F O R V C F- 5 0 0, 5 0 0 W, 5 0 0 F 1.
s uit a bl e f or u n s kill e d p er s o n n el. 2. E a sil y t o b e b e v ell e d f or a n y l e n gt h m a d e of st e el, c a st ir o n, n o nf err o u s m et al s, pl a sti c s, a cr yli c et c. 3. 5 0 0 : Wit h e x c h a n g e a bl e c ar bi d e i n s e nt s, i n s ert c a n b e c h a n g e d e a sil y t o s a v e c o st a n d i n cr e a s e w or ki n g a bilit y. 4. 5 0 0 W: m at eri al, h e at tr e at m e nt w or k pi e c e, c a n b e b e v ell e d or c h a mf err e d. 5. 5 0 0 F : W or ki n g b a s e o n s urf a c e milli n g pri n ci pl e s, t h e d e b urri n g pr o c s si n g s urf a c e i s s a m e a s t h e milli n g m a c hi n e s urf a c e.
V C F- 5 0 0 W
A c c e s s or y: Gri n di n g W h e el 100 Øx50x17 Ø
G u ar a nt e e d f or 3 m o nt h s
T E C H NI C A L D A T A 500
500 W
500F
500x320 m m
500x440 m m
500x220 m m
W ei g ht( k g s)
2 8. 5
2 9. 1
29
V olt a g e
3 Ø 2 2 0 V or 1 Ø 1 1 0 V/ 2 2 0 V 5 0 H Z/ 6 0 H Z 3 Ø 3 8 0 V/ 4 1 5 V
Space r e q uir e m e nt
M ot or o ut p ut
0. 7 K W
Speed L e n g ht of g ui d e r ail s
3 5 0 0 r. p. m. 500x100 m m
500x100 m m
500x100 m m
500x40 m m
500x40 m m
500x40 m m
H ei g ht of b e v el
V C F- 5 0 0 F
A c c e s s or y: F a c e Milli n g C utt er I n s ert S E K N 1 2 0 3 A87
MI L LI N G M A C HI N E A C C E S S O RI E S
B e v el a n gl e
0- 3 m m ( C h a n g a bl e)
4 5º
4 5º
P L E A S E N O TI F Y V O L T A G E & P H A S E, W H E N Y O U O R D E RI N G. C. E M A R K R E Q U E S T E D
O R D E R N O.
C O D E N O.
V C F- 5 0 0 S
1 0 2 3- 0 0 4
V C F- 6 0 0
1 0 2 3- 0 0 5
V C F- 7 0 0
1 0 2 3- 0 0 6
C H A M F E RI N G & D E B U R RI N G
C h a mf eri n g & D e b urri n g U nit
P R A C TI C A L
A. U SI N G S A N D- C L O T H R O L L E R F O R C U T TI N G. B. G O O D F O R S T E E L. C A S T I R O N H A R D E N P A R T S. C. N O T F O R S O F T I R O N O R A L U MI N U M. D. I F U S E D B E N T W O R K PI E C E, T H E C H A M F E RI N G S U R F A C E W O U L D N O T S M O O T H L Y S T R AI G H T.
V C F- 5 0 0 S
A c c e s s or y: S a n di n g Di s c 165 Øx22 Ø
F E A T U R E S F O R V C FLi g ht d ut y
V C F- 6 0 0 I n s ert
S P M W 321 Z S P M W 090308
1. 5 0 0 S: U s e s s a n di n g di s c, c a n d e b ur s oft a n d ri gi d m at eri al s. 2. 6 0 0 : E a s y t o c arr y a n d ti m e- s a vi n g. s uit a bl e f or l ar g e si z e w or k pi e c e w hi c h c a n’t b e e a sil y m o v e d. T h e t o ol s c a n b e c h a mf er e d 0- 3 m m b e v el a n gl e, r a di u s, ar c a n gl e, irr e g ul ar s h a p e. str ai g ht li n e, o ut er c ur v e a n d et c. 3. 7 0 0 : T h e m a c hi n e i s u s e d t o c arr y o ut c h a mf eri n g o p er ati o n s o n a n y ki n d of f err o u s m at eri al i n p arti c ul ar st e el a n d c a st ir o n. E q ui p p e d wit h s q u ar e- s h a p e d t u n g st e n c ar bi d e i n s ert s- 1 2. 7 x 1 2. 7 x 3. 1 8 I S O f or u n s kill e d p er s o n n el. 3 Ø 2 2 0 V/ 3 Ø 3 8 0 V G u ar a nt e e d f or 3 m o nt h s
T E C H NI C A L D A T A Space r e q uir e m e nt W ei g ht( k g s)
V C F- 7 0 0
Si d e mill c utt er
H e a v y d ut y
V C F- 5 0 0 S
V C F- 6 0 0
V C F- 7 0 0
330x410
380x130
360x200x260
26
3. 7
14
V olt a g e
220 V 3 Ø 2 2 0 V or 31 ØØ 31 18 00 V/ V/ 4 1 5 V 5 0 H Z/ 6 0 H Z
M ot or o ut p ut
0. 7 K W
0. 6 2 K W
0. 3 7 K W
Speed
3 5 0 0 r. p. m.
1 2 0 0 0 r. p. m.
3 5 0 0 r. p. m.
L e n g ht of g ui d e r ail s
320x120 m m
100 m m
200 m m
320x28 m m
H ei g ht of b e v el
0- 3 m m
0- 3 m m
0- 7 m m
B e v el a n gl e
4 5º
4 5º
A dj u st a bl e
P L E A S E N O TI F Y V O L T A G E & P H A S E, W H E N Y O U O R D E RI N G.
MI L LI N G M A C HI N E A C C E S S O RI E S
A88
C h a mf eri n g & D e b urri n g U nit
O R D E R N O. V C F- 3 0 0 A
C O D E N O. 1 0 2 3- 0 0 7
S P E CI FI C A TI O N A c c e s s or y
C ar bi d e e n d mill s
M a c hi n e si z e
L330 m m x W330 m m x H300 m
V olt a g e
1 ø, 2 2 0 V; 5 0 H z/ 6 0 H z
Speed Di st a n c e of B e v el
Pr o c e s s b y c ar bi d e e n d mill. B e v el a n gl e T h e r a n g e of c h a mf er: i n n er di a. 6 m m,i n n er g a p wi dt h 6 m m a n d 3 R ar c. N. W. / G. W. T h e c h a mf er a bilit y b y: 2 C/ 2 R. T h e a dj u st a bl e s p e e d ( 0- 1 2 0 0 0 r. p. m.) c a n u s e f or all ki n d s of m at eri al s B o x si z e c utti n g. ( e x c e pt h ar d e n p art s) M e a s ur e m e nt T hi s m a c hi n e w a s d e si g n e d f or r e g ul ar a n d irr e g ul ar p art s s u c h a s c ur v e d s urf a c e, i n n er g a p, a n d c o m pl e x of i n n er a n d o utt er p art s. M ot or All b e v el a n gl e c o m e s t o 4 5º b y 4 5º c ar bi d e e n d mill. Tr a c k Si z e
4 5º 40kgs/ 42kgs 550 m m x 440 m m x 380 m m 3. 4 S q u ar e f e et 1 HP 300 m m x 250 m m x 10 m m
Ej e ct or Pi n C utti n g- off U nit
O R D E R N O. V E C- 1 0 0 C O D E N O. 1 0 2 4- 0 0 1 A P R E CI S E & S H A R P C U T TI N G T O O L F O R M O U L D M A KI N G LI N E F e at ur e s
M o v e a bl e s h aft b e ari n g e a s y o p er ati o n, s af et y. F or c utti n g ej e ct or pi n of m o ul d. or m a c hi n e k e y. r o u n d r o d. H e at- Tr e at m e nt m at eri al s. G o o d- L o o ki n g c utti n g s urf a c e of st ai nl e s s st e el. H a n dl e d e vi c e a c c or di n g l a w of l e v er, it’ s e a s y t o m o v e o n. C a u s e n o vi br ati o n, n o d u st a n d n oi s el e s s. E a s y t o e x c h a n g e t h e e m er y w h e el.
LE N G HT H C O U NTE R
A B L E T O C U T A L L T H E M A T E RI A L WI T H P L A N E S U R F A C E A L M O S T
VI S E H A N D L E
S P E CI FI C A TI O N C U T TI N G H A N D L E
U nit: m m
M a x. C utti n g c a p a cit y
Ø25x300L
C utti n g t ol er a n c e
2 0 ± 0. 1 0 M M 1 5 0 M M ( O. D.)
C ut- off s a n d er l a mi n a
STA N DA R D A C C E S S O RI E S
E m er y w h e el ( Ø 1 5 0 x 1 x 1 9. 0 5 m m) 5 P C S
L A R G E & S M ALL V SL OT ( F or cl a m pi n g r o u n d o bj e ct)
E M E R Y W H E EL A S S E M BLY B Y HA N D
opened
l o c k e d ti g htl y
1 M M ( T HI C K) 1 9. 0 5 M M ( H O L E)
R. P. M.
3600
M ot or
1/ 2 H P
M e a s ur e r ul e
300 M M
W ei g ht ( a p pr o x.)
9 4. 5 K G S
M a c hi n e si z e
620x420x450 M M
P a c ki n g si z e
720x520x600 M M
P L E A S E N O TI F Y T H E V O L T A G E & P H A S E, W H E N Y O U O R D E RI N G. A89
MI L LI N G M A C HI N E A C C E S S O RI E S
O R D E R N O.
C O D E N O.
N. W.
G. W.
V E C- 3 0 0 G
1 0 2 4- 0 1 0
89
109
V E C- 5 0 0 G
1 0 2 4- 0 1 1
92
11 5
V E C- 6 0 0 G
1 0 2 4- 0 1 2
95
11 8
R O D S C U T TI N G
R o d s Pr e ci si o n C utti n g- Off A n d E n d S urf a c e Gri n di n g U nit
F e at ur e s
F or Cl a m pi n g
F or C utti n g & Gri n di n g
1.
D uri n g o p er ati o n, t h e gri n di n g s a n d er m a y b e mi cr o a dj u st e d a n d r e p air e d wit h o ut c h a n gi n g it s di m e n si o n s. T h e ti gt n e s s of b elt m a y b e a ut o m ati c all y a dj u st e d a n d c o ntr oll e d (t h e l ar g er t h e r e si st a n c e, t h e ti g ht er t h e b elt.) T h e di m e n si o n s pr e ci si o n of c utti n g off t h e l e n gt h of w or ki n g pi e c e ar e n ot s u bj e ct t o t h e eff e ct of t h e diff er e n c e of t hi c k n e s s of c utti n g- off s a n d er pi e c e. T h e r a pi d c h u c k i s u s e d t o h ol d t h e w or ki n g pi e c e i n pl a c e, o p e ni n g or cl o si n g it i s v er y q ui c k, a n d Ø 1- 2 5 m m i s t h e s a m e. W h e n o p er ati o n, a s h aft wit h t w o t a p er e d e n d s i s u s e d f or tr a n s mi s si o n a n d c h ar a ct eri z e d b y hi g h st a bilit y l o w w e ari n g r at e a n d l o n g lif e. T h e r a pi d p o siti o ni n g r ul e i s i n t h e u nit of 2 0 m m a n d pr o vi d e d wit h a mi cr o r ul e ( 0 m m t o 2 5 m m) of w hi c h t h e z er oi n g p oi nt i s t h e di m e n si o n s at t h e r a pi d p o siti o ni n g p oi nt. T h e mi ni m u m of c utti n g l e n gt h i s 6 0 m m
S P E CI FI C A TI O N 2. 3.
4.
C ut- off pr e ci si o n
2 5 m m ø x 3 0 0 m m ± 0. 0 1
Ri g ht- a n gl e pr e ci si o n
2 5 m m ø x 9 0º ± 0. 0 1
C ut- off s a n d er l a mi n a
1 m m t x 1 8 0 m m ø ( H ol e) 3 1. 8 m m ø
Gri n di n g s a n d er s urf a c e
2 7 A/ P A 4 6I J x 1 0 0 x 5 0 x 2 0
R. P. M.
3600
M ot or
1 H P 1 1 0/ 2 2 0 V 1 or 3 p h a s e
C a p a cit y
V E C- 3 0 0 G 3 0 0 m m V E C- 5 0 0 G 5 0 0 m m V E C- 6 0 0 G 6 0 0 m m
M a c hi n e Si z e
V E C- 3 0 0 G/ 5 0 0 G 6 0 0 X 5 5 0 X 6 6 0 m m 600 X 550 X 720 m m V E C- 6 0 0 G
T h e l e gt h of m e a s ur e: 3 0 0 m m i s f or V E C- 3 0 0 G 5 0 0 m m i s f or V E C- 5 0 0 G 6 0 0 m m i s f or V E C- 6 0 0 G E x c e pt t h e m e a s ur e r ul e l e n gt h i s diff er e nt, all it e m s of b o d y ar e s a m e.
5.
6.
Pl e a s e n otif y t h e v olt a g e & p h a s e, w h e n y o u or d eri n g T h e m e a s ur e r ul e MI L LI N G M A C HI N E A C C E S S O RI E S
A90
D u st pr o of H al o g e n L a m p B e a m
W A T E R P R O O F U NI V E R S A L T Y P E
V H L- 3 0 0 S E RI E S
LI G H T I P 6 7 A R M I P20
S P E CI F Y: 11 0 V / 5 5 W 220 V/ 55 W 380 V/ 55 W 24 V/ 70 W P L E A S E C O N FI R M
V H L- 3 0 0 S
V H L- 3 0 0 S S H O RT A R M
V H L- 3 0 0 M
V H L- 3 0 0 L
V H L- 3 0 0 M M E DI U M A R M
V H L- 3 0 0 L L O N G A R M
O P TI O N A L M O U N TI N G A N G L E P L A T E J- L 0 2 M O U N TI N G C L A M P J- C 0 2
J- L 0 2
J- L 0 2
J- C 0 2
F e at ur e s
C oil tr a n sf or m er b uilt i n b a s e f or dir e ctl y c o n n e ct t o v olt a g e of A c p o w er. ( 1 1 0 V, 2 2 0 V, 3 8 0 V, 2 4 V...) S p e cif y v olt a g e a s d e sir e d w h e n or d eri n g. It a c c e pt s b ul b 5 5 W F ur ni s h e d wit h 1. 8 m et er c or d wit h pl u g. Fitt e d wit h c oil tr a n sf or m er r e si sti n g u n st a bl e v olt a g e. L o n g s er vi c e lif e. wit h w at er pr o of arti c ul at e d ar m. A91
MI L LI N G M A C HI N E A C C E S S O RI E S
T ot all y e n cl o s e d li g hti n g h e a d pr o vi d e s w ell pr e v e nti o n f or e x pl o si o n, d u st, c o ol a nt, a n d l u bri c a nt s. gr e at li g ht o ut p ut, s oft ill u mi n ati n g wit h o ut irrit ati n g t o t h e e y e s. U nit: m m
O R D E R N O.
A R M LE N GT H L x l
W EI G H T ( k g)
C O D E N O.
V H L- 3 0 0 L
430x400
2. 4
1 0 2 5- 0 0 1
V H L- 3 0 0 M
250x200
2. 1
1 0 2 5- 0 0 2
V H L- 3 0 0 S
1 J OI N T
2. 3
1 0 2 5- 0 0 3
J- L 0 2
0. 3
1 0 2 5- 0 0 4
J- C 0 2
0. 5
1 0 2 5- 0 0 5
D u st pr o of H al o g e n L a m p B e a m
W A T E R P R O O F U NI V E R S A L T Y P E
V H L- 3 0 0 L R
V H L- 3 0 0 L R L O N G A R M
V H L- 3 0 0 1/ 2 M R
V H L- 3 0 0 S R S H O RT A R M
V H L- 3 0 0 M R M E DI U M A R M
F e at ur e s
O P TI O N A L
J- L 0 1
V H L- 3 0 0 S R
V H L- 3 0 0 M R
L A MP BE A M
LI G H T I P 6 7 A R M I P65
J- C 0 1
M O U N TI N G A N G L E P L A T E J- L 0 1 M O U N TI N G C L A M P J- C 0 1
C oil tr a n sf or m er b uilt i n b a s e f or dir e ctl y c o n n e ct t o v olt a g e of A c p o w er. ( 1 1 0 V, 2 2 0 V, 3 8 0 V......) S p e cif y v olt a g e a s d e sir e d w h e n or d eri n g. It a c c e pt s b ul b 5 0 W, 5 5 W, 7 0 W. F ur ni s h e d wit h 1. 8 m et er c or d wit h pl u g. Fitt e d wit h c oil tr a n sf or m er r e si sti n g u n st a bl e v olt a g e. L o n g s er vi c e lif e. Wit h W at er pr o of arti c ul at e d ar m. R o u n d t u b e ar m pr o vi d e s gr e at li g hti n g a n gl e s. I P65 U nit: m m O R D E R N O.
A R M LE N GT H L x l
W EI G H T ( k g)
C O D E N O.
T ot all y e n cl o s e d li g hti n g h e a d pr o vi d e s w ell pr e v e nti o n f or e x pl o si o n, d u st, c o ol a nt, a n d l u bri c a nt s.
V H L- 3 0 0 L R
4 0 0 x 4 0 0 ( Wit h W at er pr o of)
4. 4
1 0 2 5- 0 1 0
V H L- 3 0 0 M R
2 0 0 x 2 0 0 ( Wit h W at er pr o of)
3. 6
1 0 2 5- 0 1 1
V H L- 3 0 0 S R
1 J OI N T ( Wit h W at er pr o of)
2. 9
1 0 2 5- 0 1 2
li g ht o ut p ut, s oft ill u mi n ati n g wit h o ut irrit a ati n g t o t h e e y e s.
V H L- 3 0 0 1/ 2 M R
2 0 0 ( Wit h W at er pr o of)
3. 4
1 0 2 5- 0 1 3
J- L 0 1
0. 6
1 0 2 5- 0 1 4
J- C 0 1
0. 4
1 0 2 5- 0 1 5
MI L LI N G M A C HI N E A C C E S S O RI E S
A92
Q u art z H al o g e n L a m p B e a m
U NI V E R S A L T Y P E
G o o s e n e c k ar m f or s m o ot h li g hti n g a n gl e a dj u st m e nt. Li g hti n g r e a c h e s a n y dir e cti o n.
V H L- 2 0 F T S E RI E S
E n gi n e eri n g pl a sti c s h a d e a n d b a s e pr o vi d e s c o m pl et e i n s ul ati o n f or m a xi m u m o p er at or s af et y. S u c h a s 1 1 0 V, 2 2 0 V, 2 4 0 V, 3 8 0 V, 4 1 5 V. Tr a n sf or m er b uilt i n b a s e. A c c e pt 2 0, 3 5 a n d 5 0 w att b ul b. I n cl u d e d wit h 2 0 w att b ul b, 3 5 F ur ni s h e d wit h 1. 8 m et er ( 7 0 ) c or d. A v ail a bl e wit h m a g n eti c b a s e. ( o pti o n al) E n gi n e eri n g m o u nti n g a n gl e pl at e. ( o pti o n al) D o u bl e s h a d e s d e si g n e d p er mit s f a st h e at di s si p ati o n.
V H L- 2 0 F S E RI E S ill u mi n ati n g wit h o ut irrit ati n g t o t h e e y e s. L o w v olt a g e 1 2 or 2 4 v olt o p er ati o n wit h o ut d a n g er of el e ctri c s h o c k. T h e arti c ul at e d ar m pr o vi d e s vi br ati o n r e si st a n c e p erf or m a n c e.
O P TI O N A L J- M 0 1
A c c e pt 2 0, 3 5, 5 0 w att b ul b. I n cl u d e d wit h 2 0 w att b ul b, 3 5 a n d C o m pl et e wit h 1. 8 m et er s ( 7 0 ) c or d.
J- L 0 2
J- C 0 2 M A G N E TI C S E A T M O U N TI N G C L A M P J- C 0 2 M O U N TI N G A N G L E P L A T E J- L 0 2
l d e all y s uit e d t o m a c hi n e t o ol s a n d m a c hi n er y wit h o ut bi g w or ki n g ar e a. E n gi n e eri n g pl a sti c s h a d e a n d b a s e pr o vi d e s c o m pl et e i n s ul ati o n. I P20 O R D E R N O. V H L- 2 0 F T V H L- 2 0 F J- M 0 1 J- L 0 2 J- C 0 2
W EI G H T( k g) 1. 6 1. 1 0. 6 0. 3 0. 5
C O D E N O. 1 0 2 5- 0 2 0 1 0 2 5- 0 2 1 1 0 2 5- 0 0 6 1 0 2 5- 0 0 4 1 0 2 5- 0 0 5
w h e n or d er.
W at er - Pr o of Bri g ht L E D Si g n al Li g ht L E D M p p er C o v er L E D C o v er
Si g n al li g ht wit h f e at ur e of m ulti-f u n cti o n, w at er pr o of.
L E D B e e p er B e e p er B a s e Base
B e e p er A dj u st R ot ati o n
G o o d f or a ut o m ati c Pr o c e s si n g li n e m ulti a n gl e
A93
MI L LI N G M A C HI N E A C C E S S O RI E S
O R D E R N O.
B ul b
E n cl o s ur e IP
w ei g ht ( k g s)
C O D E N O.
V L E D- S L
24 V
I P54
0. 7 7
1 0 2 5- 0 2 6
B RA CKET
15 40 7
T h e pr o d u ct s wi d e ill u mi n ati o n r a n g e a n d bri g ht n e s s
L A MP BE A M
74
5
1 8. E n cl o s ur e I P : I P 6 7 Wi d e ill u mi n ati n g r a n g e s uit f or v ari o u s m a c hi n e t o ol s.
ill u mi n ati o n. it i s s uit a bl e f or v ari o u s m a c hi n e t o ol s w h e n i n st all e d o n diff er e nt m o u nt s, p arti c ul arl y m a c hi n e t o ol s wit hi n cl o s e d o p er ati n g e n vir o n m e nt s.
T h e pr ot e cti v e c o v er i s w at er pr o of a n d d u st pr o of, t h e l a m p i s c o n d u ci v e f or s u b w a y s, mi n e s, a n d t u n n el e n vir o n m e nt s.
O R D E R N O.
V O LT A G E
L A MP LE N GT H
B UL B
V L E D- W 1 3 V L E D- W 1 8 V L E D- W 3 6
100 V ~ 240 V 100 V ~ 240 V 100 V ~ 240 V
448 m m 520 m m 734 m m
12 W 12 W 24 W
U MI N A TI O N DI S T A N C E 0. 5 m / 5 0 0 l u x 0. 8 5 m / 5 0 0 l u x 1. 1 0 m / 5 0 0 l u x
W EI G H T ( K G S)
C O D E N O.
2. 2 2. 5 3. 5
1 0 2 5- 0 5 8 1 0 2 5- 0 5 8 A 1 0 2 5- 0 5 9
C ol or T e m p er at ur e: 5 5 0 0 K- 6 0 0 0 K
W or k s h o p L E D L a m p W A T E R R E SI S T
M A G N E TI C F O R H O O K
A n gl e 1 2 0º Sa msung 5630L E D 5300 K
I P 6 7 w at er pr o of O R D E R N O. V L E D- 1 0 8 0 V L E D- 2 1 6 0
M A G N E TI C F O R H O O K
V O LT A G E L A M P L E N G T H 11 0 V ~ 2 4 0 V 300 m m 11 0 V ~ 2 4 0 V 520 m m
B UL B 7. 5 W 15 W
I m 1080I m 2160I m
O R D E R N O. V L E D- 1 0 8 0 V L E D- 2 1 6 0 U MI N A TI O N DI S T A N C E 0. 6 5 m / 5 0 0 l u x 1. 0 m / 5 0 0 l u x
C o ol Li g ht B e a m D S E RI E S
W A T E R R E SI S T
A 290 510
B 300 520
W EI G H T K G S) 0. 6 1 1. 0 7
C O D E N O. 1 0 2 5- 0 8 0 1 0 2 5- 0 8 1
O ut st a n di n g W at er-r e si st P erf or m a n c e
D B S E RI E S
S e p ar at e b all a st s eri e s O R D E R N O.
L A MP LE N GT H
B UL B LE N GT H
W AT T
DI A
W EI G H T ( k g)
C O D E N O.
V H L- W 3 6 D/ P L
621 m m
385 m m
36
70 m m
2. 9
1 0 2 5- 0 3 4
B uilt-i n b all a st s eri e s
L A MP LE N GT H
B UL B LE N GT H
W AT T
DI A
W EI G H T ( k g)
C O D E N O.
V H L- W 1 5 D B
O R D E R N O.
717 m m
436 m m
15
70 m m
3. 5
1 0 2 5- 0 4 1
V H L- W 1 8 D B/ P L
525 m m
195 m m
18
70 m m
2
1 0 2 5- 0 4 2
V H L- W 2 0 D B
861 m m
580 m m
20
70 m m
3. 6
1 0 2 5- 0 4 3
MI L LI N G M A C HI N E A C C E S S O RI E S
A94
M a g nif yi n g Fl u or e s c e nt W or k Li g ht B e a m
WI T H 5 X L E N S E
I P20
3 Di o pt er a u xili ar y l e n s e ( o pti o n al)
V H L- 3 0 T E B BE N C H TYPE
V H L- 3 0 L E B
V H L- 3 0 M E B
V H L- 3 0 T E B B E N C H T Y P E
V H L- 3 0 M E B M E DI U M A R M
V H L- 3 0 L E B L O N G A R M
V H L- 3 0 T E B
V H L- 3 0 M E B
El e ctr o ni c b all a st i s b uilt i n ar m.
1 1 0 V, or 2 2 0 V o p er ati o n. S u p pli e d si n gl e v olt a g e o nl y. s p e cif y d e sir e d v olt a g e w h e n or d eri n g. F ur ni s h e d wit h 1. 8 m et er c or d wit h pl u g. E xt e n d e d c or d l e n gt h i s a v ail a bl e w h e n r e q uir e d.
B e n c h t y p e m o d el. C o n str u ct e d wit h a wi d e b a s e f or pl a ci n g
1 1 0 V, or 2 2 0 V o p er ati o n. S u p pli e d si n gl e v olt a g e o nl y. S p e cif y d e sir e d v olt a g e w h e n or d eri n g. F ur ni s h e d wit h 1. 8 m et er c or d wit h pl u g. E xt e n d e d c or d l e n gt h i s a v ail a bl e w h e n r e q uir e d.
T h e fl u or e s c e nt li g hti n g pr o vi d e s d a y li g ht eff e ct wit h o ut
O P TI O N A L
M e di u m ar m m o d el. El e ctr o ni c b all a st i s b uilt i n ar m.
V H L- 3 0 L E B
L o n g ar m m o d el. El e ctr o ni c b all a st i s b uilt i n ar m. 1 1 0 V, or 2 2 0 V o p er ati o n. S u p pli e d si n gl e v olt a g e o nl y. S p e cif y d e sir e d v olt a g e w h e n or d eri n g. F ur ni s h e d wit h 1. 8 m et er c or d wit h pl u g. E xt e n d e d c or d l e n gt h i s a v ail a bl e w h e n r e q uir e d.
O R D E R N O. V H L- 3 X
O P TI O N
A95
S T A N D A R D A C C.
J- L 0 1
J- C 0 1
M O U N TI N G A N G L E PL AT E
M O U N TI N G C L A M P
MI L LI N G M A C HI N E A C C E S S O RI E S
O R D E R N O.
W EI G H T ( k g)
C O D E N O.
V H L- 3 0 T E B
3. 5
1 0 2 5- 0 6 0
V H L- 3 0 M E B
2. 9
1 0 2 5- 0 6 2
V H L- 3 0 L E B
2. 9
1 0 2 5- 0 6 3
J- L 0 1
0. 6
1 0 2 5- 0 1 4
V H L- 3 X
0. 3
1 0 2 5- 0 6 5
All V H L- X X X L E D w or k li g ht s ar e wit h 5 Di o pt er
M a g nif yi n g Fl u or e s c e nt W or k Li g ht B e a m
WI T H 5 X L E N S E
I P20 L A MP BE A M
N E W M O D EL L E D L A M P T Y P E
LE D 3 Di o pt er a u xili ar y l e n s e ( o pti o n al)
V H L- 3 0 T L E D BE N C H TYPE
V H L- 3 0 L L E D
V H L- 3 0 M L E D
V H L- 3 0 T L E D B E N C H T Y P E
V H L- 3 0 M L E D M E DI U M A R M
V H L- 3 0 L L E D L O N G A R M
V H L- 3 0 T L E D
V H L- 3 0 M L E D
El e ctr o ni c b all a st i s b uilt i n ar m.
1 1 0 V, or 2 2 0 V o p er ati o n. S u p pli e d si n gl e v olt a g e o nl y. s p e cif y d e sir e d v olt a g e w h e n or d eri n g. F ur ni s h e d wit h 1. 8 m et er c or d wit h pl u g. E xt e n d e d c or d l e n gt h i s a v ail a bl e w h e n r e q uir e d.
B e n c h t y p e m o d el. C o n str u ct e d wit h a wi d e b a s e f or pl a ci n g
1 1 0 V, or 2 2 0 V o p er ati o n. S u p pli e d si n gl e v olt a g e o nl y. S p e cif y d e sir e d v olt a g e w h e n or d eri n g. F ur ni s h e d wit h 1. 8 m et er c or d wit h pl u g. E xt e n d e d c or d l e n gt h i s a v ail a bl e w h e n r e q uir e d.
T h e fl u or e s c e nt li g hti n g pr o vi d e s d a y li g ht eff e ct wit h o ut
O P TI O N A L
M e di u m ar m m o d el. El e ctr o ni c b all a st i s b uilt i n ar m.
V H L- 3 0 L L E D
L o n g ar m m o d el. El e ctr o ni c b all a st i s b uilt i n ar m. 1 1 0 V, or 2 2 0 V o p er ati o n. S u p pli e d si n gl e v olt a g e o nl y. S p e cif y d e sir e d v olt a g e w h e n or d eri n g. F ur ni s h e d wit h 1. 8 m et er c or d wit h pl u g. E xt e n d e d c or d l e n gt h i s a v ail a bl e w h e n r e q uir e d.
O R D E R N O. V H L- 3 X
O P TI O N
S T A N D A R D A C C.
J- L 0 1
J- C 0 1
M O U N TI N G A N G L E PL AT E
M O U N TI N G C L A M P
O R D E R N O.
W EI G H T ( k g)
C O D E N O.
V H L- 3 0 T L E D
3. 5
1 0 2 5- 0 6 0 A
V H L- 3 0 M L E D
2. 9
1 0 2 5- 0 6 2 A
V H L- 3 0 L L E D
2. 9
1 0 2 5- 0 6 3 A
J- L 0 1
0. 6
1 0 2 5- 0 1 4
V H L- 3 X
0. 3
1 0 2 5- 0 6 5
All V H L- X X X L E D w or k li g ht s ar e wit h 5 Di o pt er MI L LI N G M A C HI N E A C C E S S O RI E S
A96
W at er- Pr o of H al o g e n Li g hti n g B e a m LI G H T I P 6 7 A R M I P20
V H L- 4 0 0 M
V H L- 4 0 0 S
V H L- 4 0 0 S
V H L- 4 0 0 L
V H L- 4 0 0 M
V H L- 4 0 0 L
W A T E R- P R O O F H A L O G E N LI G H TI N G L A M P ( V H L- 4 0 0 L S E RI E S) LI G H TI N G H E A D S O F T H E S E S E RI E S WI T H S P E CI FI C F E A T U R E S O F W A T E R- P R O O F, D U S T- F R E E, A N TI- L U B RI C A T, A NI T- C U T TI N G OI L, E T C. T H E LI G H TI N G U NI T S A D P O T E D WI T H A B U L B ( 1 2 V/ 5 0 W). C U S T O M E R S’ S P E CI FI C A TI O N S A L S O A C C E P T E D.
V H L- 4 0 0 L
1 2 V/ 2 4 V V olt a g e. Fl e xi bl e Ar m (r o u n d ar m), 4 0 0 x 4 0 0 m m Wit h u ni v er s al Li g hti n g B a s e.
O P TI O N A L 45
Diff er e nt c o n diti o n s d e m a n d diff er e nt li g hti n g b a s e s. S el e ct e d r e ct a n g ul ar L-t y p e ( # V- 2 0) b a s e or C-t y p e ( # V- 2 1) b a s e.
M6x4
V H L- 4 0 0 M V H L- 4 0 0 S
S p e ci all y d e si g n e d t o fit p arti c ul ar l o c ati o n s a n d s p a c e s, T h e fl e xi bl e ar m i s v er y s h ort.
V- 2 1
O P TI O N A L A C C E S S O RI E S
W EI G H T ( N. W.)
C O D E N O.
O R DE R N O.
W EI G H T ( k g)
C O DE N O.
V- 2 1 V- 2 6
0. 4 8 0. 1 9
1 0 2 5- 1 0 7 1 0 2 5- 1 0 8
O R D E R N O.
V O LT A G E
V H L- 4 0 0 L V H L- 4 0 0 M V H L- 4 0 0 S
11 0 V - 2 2 0 V 1 2 V 5 0 W
400x400
V- 2 6
3. 8
1 0 2 5- 1 0 0
11 0 V - 2 2 0 V 1 2 V 5 0 W
220x220
V- 2 6
3. 5
1 0 2 5- 1 0 1
V- 2 0 / V- 2 1
2. 8
1 0 2 5- 1 0 2
A97
B UL B
V- 2 6
A R M LE N GT H L x l
12 V 50 W
MI L LI N G M A C HI N E A C C E S S O RI E S
W at er- Pr o of H al o g e n Li g hti n g B e a m
V H L- 5 0 0 S
V H L- 5 0 0 M
V H L- 5 0 0 L
V H L- 5 0 0 L
V H L- 5 0 0 M
V H L- 5 0 0 S
L A MP BE A M
LI G H T I P 6 7 A R M I P65
V H L- 5 0 0 L
O P TI O N A L
P erf or m a n c e & f e at ur e s of t h e s e s eri e s: s a m e a s. T h e m ai n diff er e n c e i s t h at V H L- 5 0 0 L c a n b e i n st all e d wit h a s h ort er ar m, a n d c o n n e ct e d wit h A C c urr e nt b el o w 2 4 0 V. Pl e a s e i n di c at e t h e r e q uir e d v olt a g e w h e n pl a ci n g t h e or d er s t o u s. S p e citi c ati o n s of t h e b ul b: 1 2 V/ 5 0 W
45
V H L- 5 0 0 M
M6x4
V H L- 5 0 0 S V- 2 6
O R DE R N O.
V O LT A G E
B UL B
V H L- 5 0 0 L 1 1 0 V - 2 2 0 V 1 2 V 5 0 W - 2 4 V 5 0 W V H L- 5 0 0 M 1 1 0 V - 2 2 0 V 1 2 V 5 0 W - 2 4 V 5 0 W V H L- 5 0 0 S 1 1 0 V - 2 2 0 V 1 2 V 5 0 W - 2 4 V 5 0 W
A R M LE N GT H O P TI O N A L W EI G H T L x l A C C E S S O RI E S ( N. W.) 400x400 200x220
V- 2 6 V- 2 6 V- 2 6
4 3. 8 2. 7
V- 2 1
C O D E N O.
O R DE R N O.
W EI G H T ( k g)
C O DE N O.
1 0 2 5- 1 0 3 1 0 2 5- 1 0 4 1 0 2 5- 1 0 5
V- 2 1 V- 2 6
0. 4 8 0. 1 9
1 0 2 5- 1 0 7 1 0 2 5- 1 0 8
MI L LI N G M A C HI N E A C C E S S O RI E S
A98
D u st pr o of H al o g e n L a m p B e a m
WI T H T R A N S F O R M E R & M A G N E TI C B A S E I P20
V H L- 6 0 0 F T
V H L- 7 0 0 F T
F e at ur e s
V H L- 6 0 0 F T, V H L- 7 0 0 F T t y p e i d e al f or w or k- pl a c e li g hti n g if bri g ht c o n c e ntr at e d li g ht i s r e q uir e d i n p erf or m a n c e n ot t o o l ar g e ar e a ill u mi n ati o n. B uilt i n tr a n sf or m er. S uit a bl e f or u s e at s m all m a c hi n e s u c h a s C N C e n gr a vi n g m a c hi n e, s e wi n g m a c hi n e, l at h e m a c hi n e, w or ki n g b e n c h e s a n d w or ki n g t a bl e...... et c.
O R D E R N O.
V O LT A G E
B UL B
A R M LE N GT H L x l
O P TI O N A L A C C E S S O RI E S
W EI G H T N. W.( K G S)
C O D E N O.
V H L- 6 0 0 F T
11 0 V - 2 2 0 V
12 V 20 W
380
M- 2 3
1. 7
1 0 2 5- 1 0 9
V H L- 7 0 0 F T
11 0 V - 2 2 0 V
12 V 20 W
400
M- 2 3
1. 7
1 0 2 5- 1 1 0
V- B 1 5
12 V 50 W/ 24 V 50 W
0. 0 0 9
1 0 2 5- 1 1 1
V- B 1 6
12 V 55 W/ 24 V 70 W
0. 0 0 9
1 0 2 5- 1 1 2
V- T 1 7
415 V- 12/ 415 V- 24 380 V- 12/ 380 V- 24 230 V- 12/ 230 V- 24
1. 4 7
1 0 2 5- 1 1 3
V- T 1 8
415 V- 12/ 415 V- 24 380 V- 12/ 380 V- 24 230 V- 12/ 230 V- 24
1. 4
1 0 2 5- 1 1 4
V- T 1 7
E X T E RI O R D U S T- F R E E T R A N S F O R M E R V- T 1 8 V olt a g e b el o w 4 1 5 V. C a n b e i n st all e d a n y w h er e. D u st- Fr e e, l e a k a g e- pr o of a n d oil- pr o of. MI L LI N G M A C HI N E A C C E S S O RI E S
T R A DI TI O N A L T R A N S F O R M E R V- T 1 7 S UI T A B L E F O R V H L- 4 0 0 S E R T E S V H L- 5 0 0 S E R T E S A99
V- T 1 8
V- B 1 5
V- B 1 6
V- B 1 5 1 2 V/ 5 0 W, 2 4 V/ 5 0 W T h o s e b ul b f or V H L- 4 0 0, V H L- 5 0 0 s eri e s
V- B 1 6 2 4 V/ 7 0 W, 1 2 V/ 5 5 W T h o s e b ul b f or V H L- 4 0 0, V H L- 5 0 0 s eri e s
W at er Pr o of L E D L a m p
E N E R G Y S A VI N G
U NI V E R S A L T Y P E
L A MP BE A M
LE D TYPE
V L E D- 4 0 0 L
V L E D- 4 0 0 M
V L E D- 4 0 0 L, 4 0 0 M LI G H T I P 6 7 A R M I P20
V L E D- 4 0 0 L
V L E D- 5 0 0 S
V L E D- 5 0 0 M
V L E D- 5 0 0 L
V L E D- 5 0 0 L, 5 0 0 M, 5 0 0 S I P67
V L E D- 4 0 0 M
V L E D- 5 0 0 L
F e at ur e s
E n er g y s a vi n g
V L E D- 5 0 0 M
V L E D- 5 0 0 S
N o hi g h h e at pr o d u c e D u st/ w at er pr o of S p e cif y v olt a g e w h e n or d eri n g F or a n y w or ki n g pl a c e, st a bl e q u alit y S uit f or C N C, e n gr a vi n g, drill pr e s s m a c hi n e, l at h e, w o o d a n d m ol d i n d u str y
L E D li g ht l o n g s er vi c e lif e 1 y e ar g u ar a nt e e 1. 8 m et er c oil W hit e li g ht
A R M
v olt a g e & p h a s e w h e n or d er.
L x l
T U BE STYLE
W EI G H T N. W.( K G S)
C O D E N O.
9 W
400 X 400
S Q UA RE
2. 1 2
1 0 2 5- 1 3 0
11 0 V / 2 2 0 V
9 W
220 X 220
S Q UA RE
1. 9 6
1 0 2 5- 1 3 1
V L E D- 5 0 0 S
11 0 V / 2 2 0 V
9 W
J OI N T
R O U N D
1. 6
1 0 2 5- 1 3 2
V L E D- 5 0 0 L
11 0 V / 2 2 0 V
9 W
400 X 400
R O U N D
2. 4 2
1 0 2 5- 1 3 6
V L E D- 5 0 0 M
11 0 V / 2 2 0 V
9 W
220 X 220
R O U N D
2. 3
1 0 2 5- 1 3 7
O R D E R N O.
V O LT A G E
B UL B
V L E D- 4 0 0 L
11 0 V / 2 2 0 V
V L E D- 4 0 0 M
O P TI O N A L 45
45
O P TI O N A L A C C E S S O RI E S 50
V- 2 0
W EI G H T ( k g)
C O D E N O.
V- 2 0
0. 2 8
1 0 2 5- 1 0 6
V- 2 1
0. 4 8
1 0 2 5- 1 0 7
V- 2 2
0. 1 6
1 0 2 5- 1 1 9
L E D9 W
0. 1 9
1 0 2 5- 1 4 1 A
O R D E R N O.
M6x4
V- 2 1
T ot all y e n cl o s e d li g hti n g h e a d pr o vi d e s w ell pr e v e nti o n f or e x pl o si o n, d u st, c o ol a nt, a n d l u bri c a nt s.
V- 2 2
L E D9 W L e d li g ht b ul b
MI L LI N G M A C HI N E A C C E S S O RI E S
A100
C o n c e ntr at e L E D L a m p
U NI V E R S A L T Y P E
F e at ur e s
E n er g y s a vi n g L E D li g ht l o n g s er vi c e lif e 1 y e ar g u ar a nt e e N o hi g h h e at pr o d u c e D u st pr o of Fl e xi bl e & f ol di n g ar m B uilt-i n tr a n sf or m er S uit f or s m all C N C, e n gr a vi n g, s e wi n g m ac hi n e, drill pr e s s, l at h e, a n d w or ki n g t a bl e I P20
V L E D- 3 0 M
V L E D- 3 0 L O R D E R N O.
V O LT A G E
B UL B
A R M L x
V L E D- 3 0 L
I N P U T: 2 2 0 V O U T P U T: A C / D C 1 2 V I N P U T: 1 1 0 V O U T P U T: A C / D C 1 2 V I N P U T: 2 2 0 V O U T P U T: A C / D C 1 2 V I N P U T: 1 1 0 V O U T P U T: A C / D C 1 2 V
12 V 6 W 12 V 6 W 12 V 6 W 12 V 6 W
V L E D- 3 0 L V L E D- 3 0 M V L E D- 3 0 M
O P TI O N A L
l
W EI G H T N. W.( K G S)
C O D E N O.
400 X 310 m m
2
1 0 2 5- 1 2 5
400 X 310 m m
2
1 0 2 5- 1 2 6
220 X 310 m m
1. 8
1 0 2 5- 1 2 7
220 X 310 m m
1. 8
1 0 2 5- 1 2 8
O P TI O N A L A C C E S S O RI E S
45
45
50
V- 2 1
V- 2 0
W EI G H T ( k g)
C O D E N O.
V- 2 0
0. 2 8
1 0 2 5- 1 0 6
V- 2 1
0. 4 8
1 0 2 5- 1 0 7
V- 2 2
0. 1 6
1 0 2 5- 1 1 9
L E D6 W
0. 1 4
1 0 2 5- 1 4 0
O R D E R N O.
M6x4
V- 2 2
L E D6 W L e d li g ht b ul b
Wi d e R a n g e H al o g e n L a m p B e a m F e at ur e s
P o w er c o n s u m pti o n : 2 1. 5 W A n gl e: 3 6º C ol or t e m p er at ur e: 2 8 0 0 K L u m e n s v al u e: 2 1 0 l m V olt a g e: A C 2 2 0 V p o w er 1 2 V Wit h tr a n sf or m er b uilt-i n I P20
O P TI O N A L
M o u nti n g A n gl e pl at e V- 5 2
M a g n et b a s e V- 5 1
O R D E R N O.
V O LT A G E
B UL B
V H L- 5 0 F T
A C 220 V
12 V/ 20 W
A101
A R M L x
MI L LI N G M A C HI N E A C C E S S O RI E S
500 m m
l
W EI G H T N. W.( K G S)
C O D E N O.
1. 6 9
1 0 2 5- 1 5 1
O R DE R N O.
C O D E N O.
V- 5 1
W EI G H T ( k g) 0. 5 2
V- 5 2
0. 2 7
1 0 2 5- 1 6 2
1 0 2 5- 1 6 1
Wi d e R a n g e L E D L a m p
Wit h b uilt-i n Tr a n sf or m er
F e at ur e s
O P TI O N A L
V- 5 5
V- 5 4 M a g n et b a s e
O R D E R N O.
V O LT A G E
B UL B
A R M L x
V H L- 3 7 F T
A C 1 0 0 V- 2 4 0 V
3 W
370 m m
l
O R DE R N O.
L A MP BE A M
P o w er c o n s u m pti o n : 2. 3 W C o n s u m pti o n c urr e nt: 1 1 0 V/ 2 3 M A O R 2 2 0 V/ 3 9 M A L E D: 3 W A n gl e: 4 5º C ol or t e m p er at ur e: 5 7 0 0 K I P54 L u m e n s v al u e: 1 3 5 l m C O D E N O.
V- 5 4
W EI G H T ( k g) 0. 5
V- 5 5
0. 2
1 0 2 5- 1 6 4
1 0 2 5- 1 6 3
M o u nti n g A n gl e pl at e
W EI G H T N. W.( K G S)
C O D E N O.
0. 6 0
1 0 2 5- 1 5 2
C o n c e ntr at e L E D L a m p
WI T H T R A N S F O R M E R & M A G N E TI C B A S E
F e at ur e s
O P TI O N A L
E n er g y s a vi n g L E D li g ht l o n g s er vi c e lif e 1 y e ar g u ar a nt e e N o hi g h h e at pr o d u c e D u st pr o of Fl e xi bl e & f ol di n g ar m B uilt-i n tr a n sf or m er S uit f or s m all C N C, e n gr a vi n g, s a wi n g m a c hi n e, drill pr e s s, l at h e, a n d w or ki n g t a bl e I P20
L E D6 W L e d li g ht b ul b
V- 2 3
O R D E R N O.
V O LT A G E
B UL B
A R M L x
l W EI G H T N. W.( K G S)
C O D E N O.
O R DE R N O.
V L E D- 2 0 L
I N P U T: 2 2 0 V O U T P U T: A C / D C 1 2 V
12 V 6 W
400 m m
1. 2
1 0 2 5- 1 2 0
V L E D- 2 0 L
I N P U T: 1 1 0 V O U T P U T: A C / D C 1 2 V
12 V 6 W
400 m m
1. 2
1 0 2 5- 1 2 1
C o n c e ntr at e L E D L a m p
V- 2 7 C O D E N O.
V- 2 3
W EI G H T ( k g) 0. 2 7
V- 2 7
0. 2 1
1 0 2 5- 1 1 8
L E D6 W
0. 1 4
1 0 2 5- 1 4 0
1 0 2 5- 1 1 7
I P20
F e at ur e s
P o w er c o n s u m pti o n : 5. 3 W C o n s u m pti o n c urr e nt : 1 1 0 V/ 8 5 M A, 2 2 0 V/ 4 8 M A P hili p s L E D M R 1 6 L E D : 4. 2 W L u mi n o u s i nt e n sit y : 1 1 5 0 c d C ol or t e m p er at ur e : 6 5 0 0 K L u m e n s v al u e : 2 8 5 l m Lif e : 1 y e ar g u ar a nt e e Wit h m o u nti n g A n gl e pl at e I P20
O P TI O N A L
L E D6 W L e d li g ht b ul b
O R D E R N O.
V O LT A G E
B UL B
A R M L x l
W EI G H T N. W.( K G S)
C O D E N O.
O R D E R N O.
W EI G H T ( k g)
C O D E N O.
V L E D- 5 0 F T
11 0 V / 2 2 0 V
12 V6 W
500 m m
1. 7
1 0 2 5- 1 5 0
L E D6 W
0. 1 4
1 0 2 5- 1 4 0
MI L LI N G M A C HI N E A C C E S S O RI E S
A102
1/ 8 H P. U n d er W at er C o ol a nt P u m p
F e at ur e s
H( E)
T hi s i s t h e p u m p i n b e st q u alit y wit h a nti-r u st tr e at m e nt, u s e hi g h gr a d e m at eri al f or t h e c o m pl et e
U nitl: m m
O R DE R N O.
220 V 1 P H 380 V 3 P H P O WE R
A
B
1/ 8 H P
C
D
G
U nit: m m
Y DI A O MU ET-T E R
H
105 Ø90 Ø150 Ø8 160 19
P T 3/ 8
TYPE
P O W E R m Lm
V W P- 0 8 1 0
100
V W P- 0 8 1 3 U N D E R V W P- 0 8 1 5 W A T E R
130
1/ 8 H P
V W P- 0 8 1 8
150
P U M PI N G W A T E R W EI G H T ( k g) 1 m mi n 2 m mi n
C O DE N O. 1 0 2 6- 0 0 1
2 7 l- 2 8l
1 0 2 6- 0 0 2
2 5 l- 2 6l
180
1 0 2 6- 0 0 3 6
1 0 2 6- 0 0 4
H( E)
1/ 4 H P. U n d er W at er C o ol a nt P u m p
U nitl: m m
220 V 1 P H 380 V 3 P H
O R DE R N O.
TYPE
P O W E R m Lm
V W P- 0 4 1 5 U nit: m m
P O WE R
A
B
1/ 4 H P
C
D
G
H
Y DI A O MU ET-T E R
125 Ø122 Ø180 Ø8 180 26
P T 1/ 2
160
V W P- 0 4 1 8
V W P- 0 4 2 0 UW AN TD EE RR V W P- 0 4 2 4
P U M PI N G W A T E R W EI G H T ( k g) 1 m mi n 2 m mi n
1 0 2 6- 0 1 0
180 1/ 4 H P
200
1 0 2 6- 0 1 1 7 4 l- 7 6l
7 1 l- 7 2l
11
1 0 2 6- 0 1 2
13
1 0 2 6- 0 1 4
240
V W P- 0 4 2 7
C O DE N O.
1 0 2 6- 0 1 3
270
H( E)
S elf Pri mi n g C o ol a nt P u m p 1/ 8 H P. 1/ 4 H P
220 V 1 P H 380 V 3 P H
U nit: m m
P O WE R
A
B
D
G
H
Y
I NO U TDI A M E T E R DI A M E T E R
1/ 8 H P
105 165 Ø8 195
P T 3/ 8
P T 3/ 8
1/ 4 H P
125 225 Ø8 240
P T 1/ 2
P T 1/ 2
A103
MI L LI N G M A C HI N E A C C E S S O RI E S
U nitl: m m
O R DE R N O.
V W P- 0 8 9
TYPE
P U M PI N G W A T E R W EI G H T P O WE R ( k g) 1 m mi n 2 m mi n
1/ 8 H P S ELF P RI MI N G 1/ 4 H P V W P- 0 4 9
C O DE N O.
2 6 l- 2 7l
2 4 l- 2 5l
1 0 2 6- 0 2 0
7 3 l- 7 5l
7 0 l- 7 1l
1 0 2 6- 0 2 1
C o ol a nt P u m p Kit
220 V 1 P H 380 V 3 P H
O R D E R N O.
V W P- 8 1- 1 5 0 K
V W P- 4 1- 1 8 0 K
C o ol a nt p u m p ( H P x H)
1/ 8 H P x 1 5 0 m m
1/ 4 H P x 1 8 0 m m
T a n k si z e ( L x W x H)
350x250x185 m m
500x350x200 m m
16l
35l
2000 m m
2000 m m
C o ol a nt h o s e kit s w/ m a g n eti c b a s e ( Ø x L)
1/ 4” x 3 3 0 m m
3/ 8” x 3 6 0 m m
Fl e xi bl e c o n v e yi n g h o s e ( Ø x L)
3/ 8” x 1 5 0 0 m m
3/ 8” x 1 5 0 0 m m
Dr ai n h o s e ( Ø x L)
1” x 3 0 0 m m
1- 1/ 4” x 4 0 0 m m
ITE M
S E T I N C L U DI N G
C o ol a nt p u m p C o ol a nt t a n k C o n n e cti n g c a bl e ( w/ pl u g f or 1 p h) C o ol a nt h o s e kit w/ m a g n eti c b a s e Fl e xi bl e c o n v e yi n g h o s e Dr ai n h o s e T o ol kit s O N/ O F F s wit c h (f or 1 p h)
V ol u m e of c o ol a nt t a n k
W ei g ht( k g s)
1 0. 8
33
w h e n or d er.
C O D E N O.
1 0 2 6- 0 3 0
1 0 2 6- 0 3 1
C o n n e cti n g c a bl e
U n d er W at er T y p e M ulti- st a g e Hi g h Pr e s s ur e C o ol a nt P u m p 220 V 1 P H 380 V 3 P H
S p e ci al F e at ur e s
Di s c h ar g e a v ail a bl e i n eit h er N. P. T / P. T. H e a v y d ut y b e ari n g s gr e a s e d f or l o n g lif e a n d e a s y m ai nt e n a n c e. M ulti- st a g e s., u p t o 6 st a g e s f or pr e s s ur e o v er 9 k g/ c m 2 st a g g er e d di s c h ar g e p ort s e q u ali z e r a di al l o a d s f or i n cr e a si n g p u m p lif e. St ai nl e s s st e el m a d e e n cl o s e d i m p ell er., Ri gi d a n d str o n g o n e- pi e c e s h aft. w h e n or d er.
S P E CI FI C A TI O N O R DE R N O.
V W P- M S 2- 1 8 0 V W P- M S 2- 2 5 0 V W P- M S 3- 2 0 0 V W P- M S 3- 2 5 0 V W P- M S 4- 2 3 0 V W P- M S 4- 1 8 0 V W P- M S 5- 2 1 0
STA GE
2 3 4 5
HP
A
B
C
D
E
F
G
E H kP g/R cE Sm S2 (U PR SI)
3/ 4 180 or 1 2 8 ( o pti o n) 2 5 0 3/ 4 200 1 1 3 5 2 7 5 1 3 5 9 1 7 0 or 1 2 8 ( o pti o n) 2 5 0 3/ 4 230 1 1/ 4 1 3 5 2 7 5 1 3 5 9 1 7 0 or 1 2 8 ( o pti o n) 1 8 0 3/ 4 1 1/ 2 1 3 5 2 7 5 1 3 5 9 1 7 0 or 1 2 8 2 1 0 ( o pti o n) 3/ 4 1 3 5 2 5 5 1 3 5 9 1 7 0
3 ( 4 2) 4. 5 ( 6 4)
V O L U M E T RI C D E LI V E R Y ( l/ mi n) O LI N G E M U L SI O N C O OI L 140 140
11 6 11 6
D E LI V E R Y W EI G H T H E A D ( m) ( k g)
30 45
6 ( 8 5)
140
11 6
60
7. 5 ( 1 0 6)
140
11 6
75
C O DE N O.
15
1 0 2 6- 0 4 0
1 5. 5
1 0 2 6- 0 4 1
16
1 0 2 6- 0 4 2
17
1 0 2 6- 0 4 3
18
1 0 2 6- 0 4 4
19
1 0 2 6- 0 4 5
20
1 0 2 6- 0 4 6
MI L LI N G M A C HI N E A C C E S S O RI E S
A104
C O OL A NT P U MP
1/ 8 H P & 1/ 4 H P
H a n d L u bri c ati o n P u m p R attli n g h a n d p u m p L T m o d el
R attl e t h e l e v er of t h e p u m p r eit er ati v el y a n d t h e oil will b e pr e s s ur e d i nt o t h e m ai n pi p e. W h e n t h e l e v er i s r el e a s e d, it will r et ur n t o t h e ori gi n al p o siti o n a ut o m ati c all y. 164
O R D E R N O.
Di s c h ar g e d a m o u nt ( c. c/ st)
M a x. di s c h ar g e d pr e s s ur e ( k g/ c m 2 )
L T- 4
4
15
75
c a p a cit y c a p a cit y W EI G H T ( c. c) ( k g) ( c. c) 230
200
0. 7
C O D E N O. 1 0 2 6- 0 5 0
L T- 4
R attli n g h a n d p u m p L T m o d el T h e di s c h ar g e d a m o u nt a n d pr e s s ur e ar e hi g h er t h a n t h o s e of L T- 4 a n d t h e o p er ati o n m et h o d i s j u st t h e s a m e.
A
B 180 ( 2 0 8. 5)
70 ( 8 2)
L T- 6
O R D E R N O.
L T- 6
L T- 1 8
L T- 1 8 A
Si z e ( A x B)
85x85
1 0 0x 11 0
98x107
W ei g ht
1. 2 k g
1. 6 k g
1. 6 k g
O R D E R N O.
Di s c h ar g e d a m o u nt ( c. c/ st)
M a x. di s c h ar g e d pr e s s ur e ( k g/ c m 2 )
c a p a cit y ( c. c)
c a p a cit y ( c. c)
C O D E N O.
L T- 6
6
15
350
250
1 0 2 6- 0 6 1
L T- 1 8
8
15
600
400
1 0 2 6- 0 6 2
L T- 1 8 A
8
15
650
450
1 0 2 6- 0 6 3
P ulli n g t y p e h a n d p u m p E A m o d el
178
P ull t h e l e v er of t h e p u m p r eit er ati v el y a n d t h e oil will b e di s c h ar g e d at t h e u p or d o w n p ort.
11 0
O R D E R N O.
95
E A- 8 R E A- 8 L 136
M a x. di s c h ar g e d pr e s s ur e ( k g/ c m 2 )
8
3. 5
c a p a cit y c a p a cit y W EI G H T ( c. c) ( k g) ( c. c) 600
500
1
C O D E N O. 1 0 2 6- 0 7 0 1 0 2 6- 0 7 1
T h e i n st all ati o n m a c hi n e c o ul d b e s el e ct e d eit h er t h e ri g ht si d e m ar k e d “ R” or t h e l eft si d e m ar k e d “ L”
7 8. 5
E A- 8 R A105
Di s c h ar g e d a m o u nt ( c. c/ st)
MI L LI N G M A C HI N E A C C E S S O RI E S
H a n d L u bri c ati o n P u m p ( 1 0 0) 106
d e pr e s s e d. O nl y aft er t h e l e v er i s r el e a s e d, t h e pr e s s ur e d oil will b e di s c h ar g e d. ( 1 8 8) 221
( 1 2 5) 155
Di s c h ar g e d a m o u nt ( c. c/ st)
O R D E R N O.
M a x. di s c h ar g e d pr e s s ur e ( k g/ c m 2 )
L A- 8 R
5
L A- 8 L
1000
800
1. 4
C O D E N O. 1 0 2 6- 0 8 2 1 0 2 6- 0 8 3
T h e i n st all ati o n p o siti o n of a m a c hi n e c o ul d b e s el e ct e d eit h er t h e ri g ht si d e m ar k e d “ R” or t h e l eft si d e m ar k e d “ L”
122 ( 1 1 9)
L A- 8 R
c a p a cit y c a p a cit y W EI G H T ( k g) ( c. c) ( c. c)
O p er ati o n I n str u cti o n s:
C
W h e n m o v e t h e o p er ati n g r o d, t h e pl u n g er (ir o n c or e) will b e m o v e d si m ult a n e o u sl y s o a s t o m a k e c yli n d er b e c o m e u n d er n e g ati v e pr e s s ur e. T h e n, d u e t o cl o s e d air pr e s s ur e of t h e t a n k, t h e gr e a s e will g et i nt o t h e c yli n d er fr o m t h e s u cti o n p ort. N o w, o p er at e t h e r o d t o e xtr u d e o ut t h e gr e a s e t hr o u g h pi p e i n t h e c yli n d er b y pri n ci pl e of t h e pl u n g er p u s hi n g o p e n
C B A B
1 0 0 k g/ c m 2 , d o w n pr e s s ur e v al v e will st art t o r et ur n t h e gr e a s e t o t h e oil t a n k. T h e o p er ati n g r o d i s t o u s e of a s pri n g t o li n k o n t h e i nj e ct or, w hil e t h e oil oil l e a ki n g.
A
A d v a nt a g e s:
H a s s m o ot h sti c k n e s s t o t h e l u bri c ati n g s urf a c e wit h pr o p er oili n g c a p a cit y, s o n o s ur pl u s oil will b e l e a k e d o ut t o st ai n wit h t h e s urf a c e of b e n c h. N o n e e d t o w orr y a b o ut t h e dirt s & i m p uriti e s e nt er e d i nt o t h e oili n g p ort, s o it i s m or e cl e a n t h a n ot h er w a y s of l u bri c ati o n. M a n u al t y p e p u m p. U s e of si n gl e pi p e, s o n o n e e d of pi p e r et ur n d e vi c e. Wit h si m pl e pi pi n g f or b e st eff e ct.
L A- 1 4 0 3
L A- 2 4 0 3 O R DE R N O.
A
B
C
OI L
c. c./ st o k e
L A- 1 4 0 3
290
150
70
L A- 1 4 0 8
310
205
90
M A C HI N E OI L
2
L A- 2 4 0 3
290
150
70
L A- 2 4 0 8
310
205
90
G REASE
2
V OL U ME c. c. 300
P RESS U RE k g/ c m 2
VALVE
S P R AY M O UT H
60
S D
60
100
S D
60
800 300 800
C O D E N O. 1 0 2 6- 1 0 0 1 0 2 6- 1 0 1 1 0 2 6- 1 0 2 1 0 2 6- 1 0 3
El e ctri c al A ut o m ati c P u m p S M A M o d el 175
El e ctri c al a ut o m ati c p u m p S M A m o d el T h e o ut st a n di n g p erf or m a n c e s of S M A m o d el s b el o n g t o i nt er mitt e nt oil
201
O R DE R N O.
Fr e q u e n c y Di sa c mh oaru gnte d (ti m e / mi n) ( c. c/ st)
S M A- 3
Chooseto p u m p e v er y 5 or 1 0 or 1 5 or 3 0 or 6 0 mi n.
S M A- 6 108 158
S M A M O D EL ( A U T O M A TI C)
S M A- 8. 5
M a x. di s c h ar g e d C a p a cit y W EI G H T ( l) pr e s s ur e ( k g) ( k g/ c m 2 )
C O D E N O.
3
2
1. 8
1 0 2 6- 0 9 0
3
2
1. 8
1 0 2 6- 0 9 1
3
2
1. 9
1 0 2 6- 0 9 2
M ot or’ s v olt a g e i s A C 1 1 0 V or 2 2 0 V
Pl e a s e c h o o s e F R E Q U E N C Y w h e n or d er. MI L LI N G M A C HI N E A C C E S S O RI E S
A106
H A N D L U B RI C A TI O N P U M P
D e pr e s si n g t y p e h a n d- p u m p m o d el L A
C h a mf eri n g & D e b urri n g F or R D u al A n gl e U nit O R D E R N O. V C F- 5 0 0 R
C O D E N O. 1 0 2 3- 0 0 8
A DJ U ST A BL E S C R E W F O R C UTTE R
S. A. O R D E R N O. V C F- 5 0 0 R- R M C M a c hi n e U nit Wit h 2 R Bl a d e I n s ert
F E AT U R E S E a s y c h a mf eri n g a n y l e n gt h of st e el, ir o n, c a sti n g ir o n a n d n o n- m et al m at eri al s. A dj u st a bl e c utti n g p oi nt of C a n gl e t o m a k e t h e f ull u si n g of si d e k nif e.
T E C H NI C A L D A T A
S T A N D A R D A C C E S S O RI E S O R D E R N O.
D E S C RI P TI O N C UTT E R /I N S E RT
C O D E N O.
R O U N D I N S E R T SI D E MI L L C U T T E R
1 0 2 3- 0 3 9
V C F- 5 0 0 R- 2 R
2 R B L A D EI N S E R T/ 1 0 p c s
1 0 2 3- 0 4 0
V C F- 5 0 0 R- 3 R
3 R B L A D EI N S E R T/ 1 0 p c s
1 0 2 3- 0 4 1
V C F- 5 0 0 R- R M C
A107
MI L LI N G M A C HI N E A C C E S S O RI E S
M a c hi n e Si z e
L500x W400x H320 m m
V olt a g e
3 Ø, 2 2 0 V- 4 0 0 V, or 1 Ø, 1 1 0 V/ 2 2 0 V ; 5 0 H z/ 6 0 H z
M ot or
1 H P, 3 5 0 0 r. p. m. ( St a n d ar d)
H ei g ht of b e v el
2 R, 3 R
N. W. / G. W.
28kgs/ 31kgs
P a c ki n g
5 5 x 4 6 x 3 2 c m, 3 C uft
H O W T O C H O O S E VI S E F O R Y O U R M A C HI N E M A C HI N E H O R S E P O W E R 1 HP
2 HP
3 HP
5 HP
7 HP
10 H P
S UI T A B L E VI S E M O D E L N O. V K- 4, V K- 5, V Q S- 3, V Q S- 4, V A- 4, V W- 3 V W- 4, V M P- 4, V M C- 4 V K- 5, V K- 6, V Q S- 5, V M C- 4, V A- 4, V A- 5 V W- 4, V M P- 5, V N C- 1 0 0 H, V Q C- 1 0 0, V Q C- 1 0 0 H V K- 6, V M P- 5, V H T- 4, V A- 5, V A- 6, V J- 4 0 0, V J- 5 0 0, V H- 4, V H- 5, V W T- 4 B, V N C- 1 0 0 H, V N C- 1 2 5 H, V Q C- 1 0 0, V Q C- 1 2 5, V Q C- 1 0 0 H, V Q C- 1 2 5 H V K- 8, V A- 6, V A- 8, V J- 5 0 0, V J- 6 0 0, V M C- 5 P V M C- 6 P, V W- 5, V H- 5, V H- 6, V H O- 6, V H T- 6, V W T- 6 B, V D- 6 7 5, V Q C- 1 2 5, V Q C- 1 6 0, V N C- 1 2 5 H, V N C- 1 6 0 H, V M P- 7 A V H- 8, V H- 8 L, V H O- 8, V M C- 7 P, V M C- 8 P, V M C- 8 P L, V N C- 1 6 0 L H, V M P- 8 A, V M P- 1 2, V Q C- 1 6 0 L H, V Q C- 1 6 0, V Q C- 1 6 0 L, V Q C- 2 0 0 L, V Q C- 2 0 0 L H V Q C- 1 6 0, V Q C- 1 6 0 L, V Q C- 2 0 0 L, V Q C- 1 6 0 L H, V Q C- 2 0 0 L H, V M C- 8 P, V M C- 8 P L, V S M- 2 0, V H- 1 2, V Q C V- 1 6 0 H
P u n c h F or m er
O R D E R N O. V- P B C O D E N O. 2 0 0 1- 0 0 1
V- P B 2 W A Y V- P S 1 W A Y, T H R O U G H H O L E
O R D E R N O.
A
B
C
D
E
F
G
H
L
W EI G H T ( k g s)
S urf a c e Gri n d er
G RI N D E R B1
G RI N DI N G M A C HI N E A C C E S S O RI E S
C O D E N O.
P u n c h F or m er
1 W AY Ø30 T H R O U G H H OL E
P U N C H F O R ME R
O R D E R N O. V- P S C O D E N O. 2 0 0 1- 0 1 0
O R D E R N O.
A
B
C
D
E
F
H
L
W EI G H T ( k g s)
C O D E N O.
S p e ci al P art A c c e s s or y F or A n g ul ar Dr e s si n g
O R D E R N O. V- P F
C O D E N O. 2 0 0 1- 0 2 0
S urf a c e Gri n d er
T h e W h e el a n g ul ar dr e s si n g G RI N DI N G M A C HI N E A C C E S S O RI E S
3- J a w s P u n c h F or m er
O R D E R N O. V- P S- 8 0 J C O D E N O: 2 0 0 1- 0 3 0
E R C oll et Di vi di n g P u n c h F or m er
O R D E R N O. V- P S- E R 3 2 O R D E R N O. V- P S- E R 4 0
C O D E N O. 2 0 0 1- 0 4 0 C O D E N O. 2 0 0 1- 0 4 1
G RI N DI N G M A C HI N E A C C E S S O RI E S
E R C oll et Di vi di n g P u n c h Gri n d er Wit h Si n e Pl at e C O D E N O. 2 0 0 1- 0 6 0
SI N E P L A T E
O R D E R N O. V- P S- E R 3 2 S
Tilti n g F e at ur e
E R C oll et Di vi di n g P u n c h Gri n d er Wit h Si n e Pl at e O R D E R N O. V- P S- E R 4 0 S
C O D E N O. 2 0 0 1- 0 6 5
Tilti n g F e at ur e
3- J a w s P u n c h F or m er Wit h Si n e Pl at e
O R D E R N O. V- P S- 8 0 J S
C O D E N O. 2 0 0 1- 0 7 0
Tilti n g F e at ur e
G RI N DI N G M A C HI N E A C C E S S O RI E S
P o u n c h F or m er Wit h Si n e Pl at e
O R DE R N O.
A
B
C
D
E
F
G
H
L
T OTAL H EI G H T
SI N E B A R CE NTE R
N. W.
C O D E N O.
V- P B- B S V- P S- S S
Si n e Pl at e F or All T y p e P u n c h F or m er
O R D E R N O. V- P S- S P
C O D E N O. 2 0 0 1- 0 5 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
O P TI O N A L A C C E S S O RI E S
C o n c e ntri c T e st St a n d
C O N C E N T RI C T E S T S T A N D
F e at ur e
O R D E R N O.
A
B
C
L
Di vi si o n
Gr a d u ati o n
N. W. ( k g s)
C O D E N O.
V CI- 1 5 0 P V CI- 2 5 0 P V CI- 3 5 0 P
Fi x e d S p e e d P u n c h F or m er
O R D E R N O.
O. D.
I. D.
M a x. Di a. of W or k pi e c e
C e nt er H ei g nt
M ot or O ut p ut- W I n p ut- V
Gr a d u ati o n
A UT O TYPE
R. P. M.
N. W. ( k g s)
C O D E N O.
V- P S- 8 0 M
G RI N DI N G M A C HI N E A C C E S S O RI E S
P u n c h Gri n d er
O R D E R N O. V- P G C O D E N O. 2 0 0 2- 0 1 0
O R DE R N O.
A
W EI G H T ( k g s)
B
C O D E N O.
V- P G
P u n c h Gri n d er
O R D E R N O. V- P G M C O D E N O. 2 0 0 2- 0 2 0
F e at ur e s
F E AT U R E S
O R DE R N O.
V- P G M
G RI N DI N G M A C HI N E A C C E S S O RI E S
A
B
C
D
E
F
G
H
W EI G H T ( k g s)
C O D E N O.
P u n c h Gri n d er O R D E R N O: V- P G A
C O D E N O. 2 0 0 2- 0 3 0
O R DE R N O.
A
B
C
D
E
F
G
H
J
K
L
W EI G H T ( k g s)
P U N C H G RI N D E R
Ø 0. 5 ~ Ø 6
C O D E N O.
V- P G A
R u n o ut T e st er O R D E R N O: V R T- 2 5
O R D E R N O.
Range
C O D E N O. 2 0 0 2- 0 4 0
L e n gt h
A c c ur a c y
Si z e
C O D E N O.
V R T- 2 5
G RI N DI N G M A C HI N E A C C E S S O RI E S
Mi ni T o ol M a k er Vi s e
O R D E R N O. V M V- 1 0 C O D E N O. 2 0 0 3- 0 0 1
O R D E R N O.
W ei g ht ( k g s)
C O D E N O.
N. W ( K G S)
C O DE N O
V M V- 1 0
B
T o ol M a k er Vi s e
O R D E R N O. M A T E RI A L
A
B
C max
D
E
I
f
g
h
V M V- 1 5 V M V- 2 0 V M V- 2 5 V M V- 3 0 V M V- 3 5
11
V M V- 4 0
11
V M V- 5 0 V M V- 6 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
j
k
H
M
O
T O O L M A K E R VI S E
T o ol M a k er Vi s e
T OLE R A N CE O R D E R M A T E RI A L A N O. LE N GT H
B
JA W C O P E NI N G
D
E
F
G
H
I
J
K
L
M
O
H EI G H T H A R D E N W EI G H T C O D E N O. ( m m) ( K G S)
V D V- 2 0 V D V- 2 5 V D V- 3 0 V D V- 3 5 V D V- 4 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
Si n e Vi s e A c c ur a c y : M at eri al H ar d e n e d: P ar all eli s m: S q u ar e n e s s: A n gl e t ol er a n c e: *
S P E CI FI C A TI O N O R DE R N O. S V B- 2 0
M A T E RI A L L E N G T H
WI D T H
J A W O P E NI N G
J A W H EI G H T
H EI G H T ( m m)
A N GLE
H A R DE N
N. W ( K G S)
C O D E. N O.
H A R DE N
N. W ( K G S)
C O D E. N O.
S V B- 2 5 S V B- 3 0
Si n e Vi s e A c c ur a c y : M at eri al H ar d e n e d: P ar all eli s m: S q u ar e n e s s: *
S P E CI FI C A TI O N O R DE R N O. S V D- 2 0 0
M A T E RI A L L E N G T H
WI D T H
S V D- 2 5 0 S V D- 3 0 0
B 11
G RI N DI N G M A C HI N E A C C E S S O RI E S
J A W O P E NI N G
J A W H EI G H T
H EI G H T ( m m)
A N GLE
T o ol M a k er s Vi s e A c c ur a c y : M at eri al H ar d e n e d: S K S 2 H R C 6 0º S u b- z er o pr o c e s si n g. P ar all eli s m: Wit hi n 0. 0 0 3 / 1 0 0 m m S q u ar e n e s s: Wit hi n 0. 0 0 5 / 1 0 0 m m A n gl e t ol: Wit hi n 1 5 s e c Wit hi n 2 0 s e c M at eri al: S K S 2 *Si n e c o n v er si o n t a bl e att a c h e d p a g e B 1 6
Fi x e d D o w n J a w D e si g n e d
O R DE R N O. V C20
A
B
C
D
E
F
G
H
I
J
K 8
N. W ( k g s) 1. 6
C O DE N O. 2 0 0 3- 0 7 0
150
48
53
25
28
25
85
40
M6
8x5
V C25
176
63
59
30
29
30
98
48
M6
8x5
8
2. 8
2 0 0 3- 0 7 1
V C30
190
73
68
35
33
35
102
53
M6
8x6
10
V C40
245
98
90
45
45
45
135
65
M8
12
4
2 0 0 3- 0 7 2
9. 0 2
2 0 0 3- 0 7 3
T o ol M a k er s Vi s e A c c ur a c y : M at eri al H ar d e n e d: S u b- z er o pr o c e s si n g. P ar all eli s m: Wit hi n 0. 0 0 3 / 1 0 0 m m S q u ar e n e s s: Wit hi n 0. 0 0 5 / 1 0 0 m m A n gl e t ol: Wit hi n 1 5 s e c Wit hi n 2 0 s e c M at eri al: S K S 2 H ar d n e s s: *Si n e c o n v er si o n t a bl e att a c h e d p a g e B 1 6
O R DE R N O. V- V E 2 0
A
B
C
D
E
F
G
H
I
J 6x6
N. W ( k g s) 1. 6 2
C O DE N O. 2 0 0 3- 0 8 0
90
60
50
23
27
25
32
30
M5
V- V E 2 5
160
70
62
28
34
33
80
45
V- V E 3 0
175
73
65
30
35
35
93
45
M6
7. 5 x 7
4. 0 2
2 0 0 3- 0 8 1
M6
7. 5 x 7
4. 7
2 0 0 3- 0 8 2
G RI N DI N G M A C HI N E A C C E S S O RI E S
B12
T O O L M A K E R VI S E
G o o d D e si g n Wit h Hi g h Pr e ci si o n A n d Ri gi d
Pr e ci si o n U ni v er s al A n gl e Vi s e
P A T.
V U A- 4 5 0°
2 0°
V U A- 3 5 0°
2 0°
F e at ur e s
O R D E R N O.
A
B
C M AX
D
E
E1
V U A- 3 V U A- 4
G RI N DI N G M A C HI N E A C C E S S O RI E S
F
G
H
I
J
K
M
N
G. W( K G S)
C O D E. N O.
T O O L M A K E R VI S E
Pr e ci si o n U ni v er s al A n gl e Pl at e
F e at ur e s
5 0°
O R D E R N O.
A
2 0°
B
C
D
E
F
G
H
I
J
G. W ( k g s)
C O D E N O.
V U A- 4 0 8 V U A- 5 1 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
Pr e ci si o n U ni v er s al A n gl e C h u c k P A T.
O R DE R N O. V U A- 1 0 0 J
A
B
C
D
E
Wit h V S C- 4 C h u c k
F
G. W ( k g s)
C O DE N O.
Pr e ci si o n U ni v er s al A n gl e C oll et C h u c k
C a p a cit y Ø 3- Ø 3 0
St a n d ar d A c c e s s ori e s: O R DE R A N O. V U A- E R 4 0
B
G RI N DI N G M A C HI N E A C C E S S O RI E S
C
D
E
F
G. W ( k g s)
C O DE N O.
F REE A N GLE TA BLE
Fr e e A n gl e T a bl e
F e at ur e s:
O R D E R N O.
A
B
C
D
T a bl e si z e E I
F
G
H
J
K
G. W ( k g s)
C O D E N O.
W ei g ht ( k g s)
C O D E N O.
V A V- 1 0 2 0 V A V- 1 3 2 5
Fr e e A n gl e R ot ar y C h u c k
F e at ur e s:
O R D E R N O.
A
B
C
D
E
F
G
H
V A V- 4 J V A V- 5 J
G RI N DI N G M A C HI N E A C C E S S O RI E S
Pr e ci si o n Si n e Vi s e
T H E C L A M P H A N D L E I S P L A C E D U N D E R W O R K PI E C E.
P A R A L L E LI S M 0. 0 0 3 / 1 0 0 m m S Q U A R E N E S S 0. 0 0 5 / 1 0 0 m m A B C D E F G H I J
O R D E R N O.
C O D E N O.
S V C- 1 0 0
M a x. a n gl e W ei g ht( k g s)
Pr e ci si o n Si n e Vi s e A B C D E F G
SI N B A R C E N T E R 5 0 m m
H I
P A R A L L E LI S M 0. 0 0 3 / 1 0 0 m m S Q U A R E N E S S 0. 0 0 5 / 1 0 0 m m
O R D E R N O.
C O D E N O.
S V L- 5 0
M a x. a n gl e W ei g ht( k g s)
T w o W a y Vi s e
2 W AY S
B
F
P A R A L L E LI S M 0. 0 0 3 / 1 0 0 m m S Q U A R E N E S S 0. 0 0 5 / 1 0 0 m m G RI N DI N G M A C HI N E A C C E S S O RI E S
O R D E R N O.
S V S- 1 0 0
C O D E N O.
Si n e B ar Wit h M a g n eti c
SI N E B A R
H O W T O C H O O S E T H E B L O C K F O R SI N E B A R
O R DE R N O.
S Q U A R NESS
A C C U R A CY
P A R A L L E LI S M
H A R DE NESS
M A T E RI A L
N. W. ( k g s)
C O DE N O.
V- S 5 0 M V- S 1 0 0 M
Si n e B ar
O R DE R N O.
LE N GT H
WI D T H
H EI G H T
CE NTE R DI S T A N C E
PA R ALLEL
H A R DE N
BL O C KS DI A.
M A T E RI A L
N. W ( k g s)
C O D E N O.
N. W ( k g s)
C O D E N O.
V S- 1 0 0
Si n e B ar-I n c h s
O R DE R N O.
V- S 2 5
LE N GT H
WI D T H
1
H EI G H T
CE NTE R DI S T A N C E
PA R ALLEL
H A R DE N
BL O C KS DI A.
M A T E RI A L
1
V- S 5 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
E D M T o ol M ar k er Vi s e ( S T AI N E S S)
M A X. O P E NI N G
P A R A L L E LI S M
T HI C K N E S S
S Q U A RE NESS O R D E R N O.
J A W DEEP W EI G H T ( k g s)
C O D E N O.
V S T V- 5 0 W
N. W M A T E RI A L H A R D NESS
E D M T o ol M a k er Vi s e ( S T AI N L E S S)
M A X. O P E NI N G
P A R A L L E LI S M
T HI C K N E S S
S Q U A RE NESS O R D E R N O.
J A W DEEP W EI G H T ( k g s)
C O D E N O.
V S T V- 1 0 0 W
G RI N DI N G M A C HI N E A C C E S S O RI E S
N. W M A T E RI A L H A R D NESS
E D M T O O L M A R K E R VI S E
E D M T o ol M ar k er Vi s e ( S T AI N E S S)
M A X. O P E NI N G
P A R A L L E LI S M
T HI C K N E S S
S Q U A RE NESS O R D E R N O.
J A W DEEP W EI G H T ( k g s)
C O D E N O.
V S T V- 1 5 0 W
N. W M A T E RI A L H A R D NESS
E D M T o ol M a k er Vi s e ( S T AI N L E S S)
M A X. O P E NI N G
P A R A L L E LI S M
T HI C K N E S S
S Q U A RE NESS O R D E R N O.
V S T V- 3 2 0 W
J A W DEEP W EI G H T ( k g s)
C O D E N O.
N. W M A T E RI A L H A R D NESS
G RI N DI N G M A C HI N E A C C E S S O RI E S
El e ctr o d e Vi s e ( S T AI N L E S S) MI NI T Y P E J A W WI D T H 2 5 m m
( S T AI N L E S S) F O R E D M
J A W O P E NI N G 2 0 m m
M at eri al
O R D E R N O.
M A T E RI A L
LE N G HT
WI D T H
J A W O P E NI N G
J A W H EI G H T
S U S440
H A R DE N
W EI G H T ( k g s)
C O D E N O.
V E H- 2 0 M S
El e ctr o d e Vi s e ( S T AI N L E S S) J A W WI D T H 3 5 m m J A W O P E NI N G 5 0 m m
M at eri al
O R D E R N O.
M A T E RI A L
LE N G HT
WI D T H
V E H- 2 0 D S
G RI N DI N G M A C HI N E A C C E S S O RI E S
J A W O P E NI N G
J A W H EI G H T
S U S440
H A R DE N
W EI G H T ( k g s)
C O D E N O.
T o ol M a k er Vi s e ( S T AI N L E S S)
T o ol m a k er s vi s e of mi ni t y p e w hi c h c a n b e p ut i n a bi g g er vi s e t o pr o c e s s t h e s m all a n d pr e ci s e w or k pi e c e. Al s o it c a n b e u s e d i n a n E. D. M. m a c hi n e a n d gri n di n g m a c hi n e. S q u ar e n e s s a n d p ar all eli s m: wit hi n ± 0. 0 0 3 / 1 0 0 m m N ot 1 0 0 % m a g n eti c pr o of O R DE R N O.
M A T E RI A L L E N G H T WI D T H O P JE ANI WN G H EIJ AG WH T
V S T V- 1 0 V
S U S 440
65
25
19
H A R DE N
10
V B S T- 3 0
W EI G H T ( k g s) 4. 5
M at eri al: S U S 4 4 0 H ar d n e s s: H R C 5 8º ~ 6 0º S q u ar e n e s s: Wit hi n 0. 0 0 5 / 1 0 0 m m
C O D E N O.
C O D E N O.
0. 3
T o ol M a k er Vi s e ( S T AI N L E S S) O R D E R N O.
W EI G H T ( k g s)
MI NI T Y P E F O R E D M U nit: m m
T OLE R A N CE
N ot 1 0 0 % m a g n eti c pr o of
T o ol M a k er Vi s e ( S T AI N L E S S)
A
± 0. 0 0 4 m m
B
± 0. 0 0 5 m m
C
± 0. 0 0 5 m m
D
± 0. 0 0 5 m m
E
± 0. 0 0 5 m m
F
± 0. 0 0 5 m m
G
± 0. 0 0 5 m m
F O R E D M
M at eri al: S U S 4 4 0 H ar d n e s s: H R C 5 6º S q u ar e n e s s: Wit hi n 0. 0 0 5 / 1 0 0 m m It w a s m a d e b y t o ol st e el of st ai nl e s s st e el s y st e m a n d w a s pr e ci si o n gr o u n d aft er h ar d e n e d b y h e at tr e at m e nt. S o, it will n ot b e r u st e d e v e n p er m e ati o n. T h e vi s e c a n cl a m p w or k pi e c e b y m o v e a bl e J a w wit h o ut lifti n g.It i s e a si er a n d c o n v e ni e nt f or pr o c e s si n g s m all w or k pi e c e s. N ot 1 0 0 % m a g n eti c pr o of
V S T V- 2 0
V S T V- 2 5 O R D E R N O.
V S T V- 2 0 V S T V- 2 5
M A T E RI A L S U S440
LE N G HT
H EI G H T
100
35
J A W O P E NI G 50
160
62
80
J A W WI D T H 35
J A W H EI G H T 29
H A R DE N H R C 5 6º
W EI G H T ( k g s) 1. 2
C O D E N O.
4. 4
G RI N DI N G M A C HI N E A C C E S S O RI E S
B22
T O O L M A K E R VI S E
MI NI T Y P E F O R E D M
El e ctr o d e Vi s e MI NI T Y P E J A W WI D T H 2 5 m m
( A L L O Y S T E E L) F O R E D M ELE CT R O DE H OL DE RS F O R E L E C T R O DI S C H A R G E M A C HI N E
O R D E R N O.
M A T E RI A L
LE N G HT
J A W O P E NI N G
WI D T H
J A W H EI G H T
H A R DE N
W EI G H T ( k g s)
C O D E N O.
V E H- 2 0
El e ctr o d e H ol d er
O R D E R N O.
V R A- 2 0
W EI G H T( K G) C O D E N O.
G RI N DI N G M A C HI N E A C C E S S O RI E S
V R A- 3 0
F O R E D M
V R A- 4 0
V R A- 6 0
V R A- 1 0 0
E D M Wir e ( B R A S S) F E AT U R E S
C H E MI C A L C O M P O SI TI O N
E D M WI R E
N O A CI D- C O R R O SI O N A N D N O D A M A G E T O R E SI N S
HI G H S U R F A C E Q U A LI T Y
S T A N D A R D W EI G H T C O N T R O L
N O WEL D ME NT
HI G H- DI M E N SI O N A L P R E CI SI O N
O U T S T A N DI N G S T R AI G H T N E S S
S P E CI FI C A TI O N O R DE R N O.
WI R E TYPE
DI A M E T E R inch
DI A M E T E R B R E A KI N G T E N SI L E T OLE R A N CE L O A D ST RE N GT H ( m m) ( k g s) ( N/ m m) m m
E L O N G A TI O N ( %)
S UI T F U L W O R KI N G STYLE
C O DE N O.
V E W- 2 0 H V E W- 2 5 H V E W- 3 0 H V E W- 2 0 S V E W- 2 5 S V E W- 3 0 S
T H E P A C KII N G U S E D A S T A N D A R D C OI L. H E R E T H E P O P U L A R I S P- 5 R ( 5 k g s).
WI G H T DI A M ELE N GT H P A C KI N G N U M BE R C OI L O F WI R E T H E O F D d L h O F WI R E C OI L O F C OI L S S H A P E O N C OI L WI R E ( m m) ( m m) ( m m) ( m m) O N C OI L TYPE / B OX ( k g) ( m m) ( M)
P- 5 R
G RI N DI N G M A C HI N E A C C E S S O RI E S
Wir e Di e s G ui d e
U s e d t o g ui d e wir e i n wir e el e ctr o- di s c h ar g e m a c hi m e s.
O R D E R N O.
M A KE R
A P P LI C A TI O N
M118
線 切 割 眼 模
M119
線 切 割 眼 模
M103 Ø3
眼 模 螺 絲
M108
M111
偏 心 座
M117 Ø4
線 切 割 眼 模
M107
線 切 割 眼 模
M120
眼 模 螺 絲
Z141
放 電 打 孔 機 用 導 管
S103
線 切 割 眼 模
S111
線 切 割 眼 模
H102
線 切 割 眼 模
F120
線 切 割 眼 模 F121
線 切 割 眼 模
F101
線 切 割 眼 模
F102 F123
1
1
1
線 切 割 眼 模 1
F124
G RI N DI N G M A C HI N E A C C E S S O RI E S
線 切 割 眼 模
RE M A R KS
C O D E N O.
El e ctr o d e ( C o p p er & Br a s s Pi p e El e ctr o d e)
ELE CT R O DE
U s e d t o g ui d e wir e i n wir e el e ctr o- di s c h ar g e m a c hi m e s.
STA N D A R D STYLE H OLE M A T E RI A L
H OLE DI A.
O R DE R N O. C O DE N O. O R DE R N O. C OPPE R C O DE N O. B R ASS
M A T E RI A L
H OLE DI A.
O R DE R N O. B R ASS C O DE N O. O R DE R N O. C OPPE R C O DE N O.
0. 4
0. 5
0. 6
0. 7
0. 8
0. 9
1. 0
1. 1
1. 2
1. 3
V E B- 0 4
V E B- 0 5
V E B- 0 6
V E B- 0 7
V E B- 0 8
V E B- 0 9
V E B- 1 0
V E B- 1 1
V E B- 1 2
V E B- 1 3
V E P- 0 4
V E P- 0 5
V E P- 0 6
V E P- 0 7
V E P- 0 8
V E P- 0 9
V E P- 1 0
V E P- 1 1
V E P- 1 2
V E P- 1 3
1. 4
1. 5
1. 6
1. 7
1. 8
1. 9
2. 0
2. 1
2. 2
V E B- 1 4
V E B- 1 5
V E B- 1 6
V E B- 1 7
V E B- 1 8
V E B- 1 9
V E B- 2 0
V E B- 2 1
V E B- 2 2
V E P- 1 4
V E P- 1 5
V E P- 1 6
V E P- 1 7
V E P- 1 8
V E P- 1 9
V E P- 2 0
V E P- 2 1
V E P- 2 2
S U P E R 8 S T Y L E H O L E B R A S S PI P E E L E C T R O D E M A T E RI A L O R D E R N O.
H OLE DI A.
1. 0
1. 1
1. 2
1. 3
1. 4
1. 5
1. 6
1. 7
V E S- 1 0
V E S- 1 1
V E S- 1 2
V E S- 1 3
V E S- 1 4
V E S- 1 5
V E S- 1 6
V E S- 1 7
1. 8
1. 9
2. 0
2. 1
2. 2
2. 3
2. 4
2. 5
V E S- 1 8
V E S- 1 9
V E S- 2 0
V E S- 2 1
V E S- 2 2
V E S- 2 3
V E S- 2 4
V E S- 2 5
C O D E N O.
M A T E RI A L O R D E R N O.
H OLE DI A.
C O D E N O.
E D M Filt er F or E D M ( Oil) O R DE R N O.
N H- 0 1
O UTE R DI A.
I N NE R LE N GT H DI A.
S UI T A B L E M O D E L S
W EI G H T ( k g)
C O DE N O.
1
N H- 0 9 N H- 0 9 S N H- 6 0 0 L
G RI N DI N G M A C HI N E A C C E S S O RI E S
A n gl e Pl at e
O R DE R N O. V A P- 1
H
W
L
N. W. ( K G S)
h
C O DE N O.
V A P- 2 V A P- 3
Mi cr o- A dj u st a bl e A n gl e Pl at e
O R D E R N O.
V A P M- 1 V A P M- 2 V A P M- 3
G RI N DI N G M A C HI N E A C C E S S O RI E S
H
W
L
h
N. W. ( K G S) 1
C O D E N O.
Pr e ci si o n V Bl o c k
P AI R S G R O U N D E D
U nit: m m
O R D E R N O.
A
B
C
D
F
G
L X W X H
V- 3 V A- S V- 4 V A- S V- 5 V A- S
10 15 16
22 32 35
18 8 40 18 7 2. 8 X 2 5 X 3 6. 7 18 8 50 24 100 X36 X60 2 2 9. 5 6 5 3 1. 5 1 2 4. 6 X 4 9. 8 X 7 9. 8
W EI G H T C O D E N O. ( K G S) 0. 8 8 2. 9 6. 8
2 0 0 5- 0 1 8 2 0 0 5- 0 1 9 2 0 0 5- 0 2 0
Pr e ci si o n A n gl e Bl o c k s
O R D E R N O. A B- 1 3 0
C O D E N O. 2 0 0 6- 0 0 1 W EI G H T: 1 k g
F ur ni s h e d i n 1º i n cr e m e nt s t o 5 d e gr e e s a n d i n 5º i n cr e m e nt s t o 3 0 d e gr e e s. Wit h t h e a d diti o n of t h e o pti o n al1 /4 º a n d 1 /2 º bl o c k s virt u all y a n d c o n c ei v a bl e a n gl e t o t h e s e i n cr e m e nt s c a n b e e st a bli s h e d. Si m pl e, q ui c k a n gl e s et- u p s. Eli mi n at e s c al c ul ati o n s, a v oi d s err or s. Li g htl y m a g n eti z e d f or b ett er h ol di n g. M a n uf a ct ur e d of st e el, h ar d e n e d, st a bli z e d a n d gr o u n d. Si z e s: 3 l o n g x 1 /4 t hi c k. ( 7 5 m m x 6 m m) A c c ur a c y: . 0 0 0 1 p er i n c h. Oil- h ar d e n e d st e el, pr e ci si o n gr o u n d. 1 2 p c s a n gl e bl o c k s ( 1 /4 º, 1 /2 º, 1º, 2º, 3º, 4º, 5º, 1 0º, 1 5º, 2 0º, 2 5º, 3 0º) N ot f or L A B O R A T O R Y
U ni v er s al A n gl e Bl o c k S et N o si n e pl at e, si n e vi s e, a n gl e c h art or g a u g e bl o c k n e e d e d! A sl o p e at a n y a n gl e c a n b e pr o vi d e d b y i n st alli n g a bl o c k or bl o c k s o n a m a c hi n e vi s e u p t o 5 % 8 pi e c e s i n a d el u x e w o o d e n b o x i n cl u d e: 1 0º, 1 5º & 3 0º v e e bl o c k s a n d 5 a n gl e pl at e s- 1º t o 5º f or A B- 1 6 4 H e at tr e at e d 5 0º H R C & gr o u n d t o 1 0 s e c. 9 p c s a n gl e bl o c k s ( 1/ 2º, 1º, 2º, 3º, 4º, 5º, 1 0º, 1 5º, 3 0º,) f or A B- 1 6 3 N ot f or L A B O R A T O R Y O R D E R N O.
A B- 1 6 3 A B- 1 6 4
L X W X H V e e bl o c k s: 3 L x 1 3 /1 6 W x 1 3 /1 6 H A n gl e Pl at e s: 2 3 /4 L x 1 3 /1 6 W x 5 /6 4 H V e e bl o c k s: 4 L x 1 1 /2 W x 1 1 /2 H A n gl e Pl at e s: 4 L x 1 1 /2 W x 5 /3 2 H
m m
W EI G H T ( K G S)
C O DE N O.
2
2 0 0 6- 0 1 0
3. 8
2 0 0 6- 0 1 1
G RI N DI N G M A C HI N E A C C E S S O RI E S
B28
A N GLE BL O C K
M at eri al : St e el H ar d n e s s : H R C 5 2 A c c ur a c y : 0. 0 2 m m / 1 0 0 m m F or Pr o d u cti o n N ot f or L A B O R A T O R Y
Mi cr o m etri c T a n g e nt B ar & A n gl e G a u g e Bl o c k S et
O R D E R N O. A B- 1 6 6
C O D E N O. 2 0 0 6- 0 2 0
Mi cr o m etri c T a n g e nt B ar & A n gl e G a u g e Bl o c k S et
S oli d A n gl e Pl at e s
O R D E R N O. A B- 1 6 7
C O D E N O. 2 0 0 6- 0 3 0 S oli d A n gl e Pl at e s
Pr e ci si o n A n gl e Bl o c k s
O R D E R N O: A B- 1 1 3( 1 3 P C S/ S E T) C O D E N O: 2 0 0 6- 0 4 0
F E AT U R E S
P L AT E
G RI N DI N G M A C HI N E A C C E S S O RI E S
A N GLE DE G REE
O R D E R N O.
L x H x t hi c k
S Q U A RE
H ar d e n e d St e el S q u ar e
N E W W EI G H T ( K G S)
C O D E N O.
W EI G H T( k g)
C O D E. N O.
S S- 3 0 4 S S- 3 0 6 S S- 3 0 8 S S- 3 1 0 S S- 3 1 2
S q u ar e O R D E R N O.
L x H xt hi c k
A C C U R A CY
F S- 2 0 4 F S- 2 0 6 F S- 2 0 8
Pr e ci si o n St e el A n gl e Pl at e
O R D E R N O.
V R S- 3 3 V R S- 4 4 V R S- 4 6
A
HI G H P R E CI SI O N T Y P E
B
C
D 1
N. W ( K G S)
C O D E N O.
1 1
V R S- 8 5 V R S- 1 2 0 6 G RI N DI N G M A C HI N E A C C E S S O RI E S
V- Bl o c k Wit h Cl a m p
P AI R S
P AI R S
O R D E R N O.
A
B
V B C- 1 9 5 V B C- 1 9 6 V B C- 1 9 7
G RI N DI N G M A C HI N E A C C E S S O RI E S
C
D
E
F
N. W. ( k g s)
C O D E. N O.
V- Bl o c k Wit h Cl a m p
V- B L O C K WI T H C L A M P
P AI R S
P AI R S
P AI R S
P AI R S
SI N G L E
O R D E R N O.
W
H
L
W. O F S M A L L V E E
W. O F L A R G E R VEE
P A C KI N G
G. W. ( k g s)
C O D E N O.
V B C- 0 0 3 V B C- 2 4 3 V B C- 0 0 6 V B C- 0 0 9
G RI N DI N G M A C HI N E A C C E S S O RI E S
T a n gi m ati c Dr e s s er
O R D E R N O. V- T D A
C O D E N O. 2 0 1 2- 0 0 1
T a n gi m ati c Dr e s s er H a n d y T y p e
O R D E R N O. V- T D H
C O D E N O. 2 0 1 2- 0 0 2
R a di u s A n d A n gl e Dr e s s er
O R D E R N O. V- T D B
C O D E N O. 2 0 1 2- 0 1 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
U ni v er s al W h e el Dr e s s er C O D E N O. 2 0 1 2- 0 2 0
SI M P L E- E LI MI N A T E S H EI G H L Y S KI L L E D O P E R A T O R S
E LI MI N A T E S E L A B O R A T E S E T U P S
A C C U R A T E- R A PI D, R E P A T F O R M- D R E S SI N G
P R E CI S E S H A R P C O N T O U R S
C O N V E X R A N G EC O N C A V E R A N G EA C C U R A T E... F L UI D M O TI O N... P R E CI S E...
T H E M O S T D U R A B L E D R E S S E R A V AI L A B L E
C al c ul ati o n M et h o n d
G RI N DI N G M A C HI N E A C C E S S O RI E S
W HEEL D RESSE R
O R D E R N O. V- T D C
Pr e ci si o n D u pl e x Dr e s s er
O R D E R N O. V- T D F
C O D E N O. 2 0 1 2- 0 3 0
F E AT U R E S
S P E CI FI C A TI O N S:
M a x.t hi c k n e s s
Mi n.
M a x.
Mi n
R a di u s A n d A n gl e Dr e s s er
O R D E R N O. V- T D G
C O D E N O. 2 0 1 2- 0 4 0
F E AT U R E S
1 1
R a di u s A n d A n gl e Dr e s s er
O R D E R N O. V- T D E
C O D E N O. 2 0 1 2- 0 5 0
F e at ur e s
G RI N DI N G M A C HI N E A C C E S S O RI E S
O pti c al R a di u s A n gl e Dr e s s er F E AT U R E S
W HEEL D RESSE R
O R D E R N O. V- T D T C O D E N O. 2 0 1 2- 0 6 0
S P E CI FI C A TI O N
M at c o Si n e Dr e s s er
O R D E R N O. V P- 5 0 C O D E N O. 2 0 1 2- 0 7 0
S P E CI FI C A TI O N BL O C K C E N T E R DI S T A N C E
CE NTE R T OLE R A N CE
M AX C R OSS FEE D
M at c o Si n e Dr e s s er
O R D E R N O. V- 5 0 D C O D E N O. 2 0 1 2- 0 8 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
Di a m o n d W h e el Dr e s s er
O R D E R N O. V- T D D
C O D E N O. 2 0 1 2- 0 9 0
M ot or T y p e C B N Fl at W h e el Dr e s s er O R D E R N O.
V O LT A G E
RP M
W EI G H T ( k g s)
C O D E N O.
V- T D M- 1 V- T D M- 2
W h e el H a n g er
O R D E R N O. V W H- 2 4, V W H- 3 2
V W H- 2 4
V W H- 3 2
G RI N DI N G M A C HI N E A C C E S S O RI E S
C O D E N O. 2 0 1 3- 0 0 1, 2 0 1 3- 0 0 2
Gri n di n g W h e el Fl a n g e O R DE R N O.
Ø D
Ød
L1 L2 L3
Br a n d M ar k
W EI G H T ( k g)
C O DE N O.
F K T- 2 5 0 F T A- 3 5 0
G RI N DI N G W H E E L
1
W h e el B al a n ci n g St a n d
O R D E R N O. W B S- 3 0 0
C O D E N O. 2 0 1 4- 0 0 1
M A X. W H E E L DI A M E T E R A L L O W E D Ø 5 0 0 m m
L e v el B al a n ci n g St a n d
O R D E R N O. L B S- 1 0 0 C O D E N O. 2 0 1 4- 0 1 0
O R D E R N O. L B S- 3 5 0 C O D E N O. 2 0 1 4- 0 1 1
Dri vi n g C arri er
F E A T U R E S:
O R DE R N O V D C- 1 3 V D C- 2 2 V D C- 3 0 V D C- 4 0 V D C- 5 0 V D C- 6 0 V D C- 8 0 V D C- 1 0 0
C A P A CI T Y
A
B
W EI G H T ( k g)
G RI N DI N G M A C HI N E A C C E S S O RI E S
C O DE N O.
Si n e Pl at e s
O R D E R N O.
A
B
C
N. W ( k g s)
D
C O D E N O.
V- 4 7 V- 6 6 V- 6 1 2 0
C o m p o u n d Si n e Pl at e
O R D E R N O.
A
B
V- 4 7 S V- 6 6 S V- 6 1 2 S
G RI N DI N G M A C HI N E A C C E S S O RI E S
C
D
E
N. W ( k g s)
C O D E N O.
M a g n eti c Si n e Pl at e
M A G N E TI C P L A T E
650 G A U S S
O R D E R N O.
A
B
C
D
E
A N GLE
V- 4 7 M V- 6 6 M V- 6 1 2 M
N. W ( k g s)
M a g n eti c Si n e Pl at e Wit h Fi n e P ol e
O R D E R N O.
A
B
C
D
E
P
A N GLE
C O D E N O.
700 G A U S S
N. W ( k g s)
C O D E N O.
V- 4 7 M F V- 6 6 M F V- 6 1 2 M F
G RI N DI N G M A C HI N E A C C E S S O RI E S
A dj u st a bl e Si n e Pl at e Wit h Fi n e P ol e 700 G A U S S M a g n eti c C h u c k
O R D E R N O. V- 6 6 S A
C O D E N O. 2 0 1 5- 0 5 0
D o u bl e W a y Si n e Pl at e Wit h P er m a n e nt M a g n eti c C h u c k
690 G A U S S
F E A T U R E S:
O R DE R N O. V- 4 7 M S
A
B
C
D
E
P
A N GLE
N. W ( k g s) C O D E N O.
V- 6 6 M S V- 6 1 2 M S
D o u bl e W a y Si n e Pl at e Wit h Fi n e P ol e M a g n eti c C h u c k
700 G A U S S
F E A T U R E S:
O R DE R N O. V- 4 7 M S F
A
B
C
D
E
P
A N GLE
V- 6 6 M S F V- 6 1 2 M S F
G RI N DI N G M A C HI N E A C C E S S O RI E S
N. W ( k g s) C O D E N O.
R ot ar y P er m a n e nt M a g n eti c Pl at e
O R DE R N O.
V L U- 5 1 0 B V L U- 6 1 2 B V L U- 6 1 8 B
SI Z E
O P E R A TI O N P L A N E PIP TO LC EH B L L2 P
R O T A R Y S E AT P L A N E a
b
t
F
L1
H EI G H T
W EI G H T
H
K GS
d
C O D E N O.
R ot ar y Fi n e P ol e P er m a n e nt M a g n eti c Pl at e
550 G A U S S
A P P LI C A TI O N F E AT U R E S
O R DE R N O.
N o mi n al Di m e n si o n
V L U- 4 0 7 B F V L U- 5 1 0 B F V L U- 6 1 2 B F V L U- 6 1 4 B F V L U- 6 1 8 B F
Chuck P O L E PI T C H L e n gt h Di m e n si o n B L1 L2 H1 P L2
R ot ar y B a s e 1
B
2
G
h1
h2
H EI G H T W EI G H T ( k g s) H2
C O DE N O.
Hi- P o w er Mi ni T y p e P er m a n e nt M a g n eti c Pl at e A P P LI C A TI O N
O R D E R N O.
V G- 4 0 4 H V G- 4 0 7 H V G- 4 1 0 H
DI M E N SI O N
C H U C KI N G SI Z E B L Le
P O L E PI T C H P
H EI G H T H
F O R C A R BI D E M A T E RI A L O N L Y C A N N OT F O R ALL STEEL
T E S TI N G B L O C K
W EI G H T ( k g s)
C O D E N O.
G RI N DI N G M A C HI N E A C C E S S O RI E S
M A G N E TI C P L A T E
650 G A U S S
A n g ul ar P er m a n e nt M a g n eti c Pl at e
650 G A U S S
SI D E M A G N E TI C F O R C E 1 8 K G F P L AT E C E N T E R 26 K G F
( 2 + 6) M a g. f or c e : 6 5 0 G S G o o d f or w or k pi e c e bi g g er i n l e n g ht & wi dt h O R D E R N O.
P OLE PI T C H
C H U C KI N G SI Z E
SI Z E A
B
C
D
P
C H U C K M O U N TI N G FA CE G E F
S WI T C H T Y P E
H EI G H T H
W EI G H T K GS
C O D E N O.
V G- 4 0 7 V G- 5 1 0 V G- 6 1 2 V G- 6 1 4 V G- 6 1 8 V G- 8 1 6 V G- 8 1 8 V G- 8 2 0 V G- 8 2 4 V G- 1 0 2 0 V G- 6 0 6 V G- 1 2 2 4
Mi d dl e Pit c h P er m a n e nt M a g n eti c C h u c k
600 G A U S S
SI D E M A G N E TI C F O R C E 1 9 K G F P L AT E C E N T E R 28 K G F ( 2 + 6)
M a g. f or c e : 6 0 0 G S G o o d f or w or k pi e c e bi g g er i n l e n g ht & wi dt h A P P LI C A TI O N F E AT U R E S
O R D E R N O.
V G F- 1 0 1 8 B V G F- 1 5 1 5 B V G F- 1 5 3 0 B V G F- 1 5 3 5 B V G F- 1 5 4 0 B V G F- 1 5 4 5 B V G F- 2 0 4 0 B V G F- 2 0 4 5 B V G F- 1 0 1 8 B S V G F- 1 5 1 5 B S V G F- 1 5 3 0 B S
DI M E N SI O N
C H U C KI N G SI Z E
A
B
C
D
G RI N DI N G M A C HI N E A C C E S S O RI E S
P OLE PI T C H
P
C H U C K M O U N TI N G FA CE
A
E
F
H EI G H T
H
HEX A G O N AL H A N DLE H OLE
G
W EI G H T K GS N. W.
C O DE N O.
Fi n e P ol e M a g n eti c Pl at e
SI D E M A G N E TI C F O R C E 2 1 K G F P L AT E C E N T E R 30 K G F 550 G A U S S
( 1 + 1. 5) M A G N E TI C P L A T E
M a g. f or c e : 5 5 0 G S. G o o d f or w or k pi e c e s m all er i n l e n g ht & wi dt h
F E AT U R E S
O R D E R N O.
SI Z E
V R T W- 1 0 1 8 A V R T W- 1 5 1 5 A V R T W- 1 5 3 0 A V R T W- 1 5 3 5 A V R T W- 1 5 4 0 A V R T W- 1 5 4 5 A V R T W- 2 0 4 0 A V R T W- 2 0 4 5 A V R T W- 1 2 2 4 A V R T W- 1 0 1 8 S V R T W- 1 5 1 5 S V R T W- 1 5 3 0 S V R T W- 1 3 2 5 S
C H U C KI N G SI Z E A
B
C
D
P O L E PI T C H M O U NC TIH NU CG KF A C E P A E F
H EI G H T
W EI G H T K G S
H
N. W.
C O D E N O.
R o u n d T y p e M a g n eti c Pl at e
O R D E R N O. V G D T Y P E Hi g h er t h a n 4 5 0 g a u s s A P P LI C A TI O N
O R D E R N O.
V G D- 0 6 V G D- 0 8 V G D- 1 0 V G D- 1 2
B0
F A C E P L AT E t1
B O T T O M P L AT E t2 L0
L1
P O L E PI T C H P
H EI G H T H
W EI G H T K GS
C O D E N O.
Fi n e P ol e R o u n d T y p e M a g n eti c Pl at e
P L A T E SI D E 2 1 K G F P L AT E C E N T E R 30 K G F
A P P LI C A TI O N
550 G A U S S O R D E R N O.
V G D W- 6 V G D W- 8 V G D W- 1 0 V G D W- 1 2
DI A M E T E R
D1
T O P P L AT E
Le
P O L E PI T C H P
H EI G H T H
W EI G H T K GS
C O D E N O.
G RI N DI N G M A C HI N E A C C E S S O RI E S
St a n d ar d P ol e El e ctr o M a g n eti c C h u c k
450 G A U S S
A P P LI C A TI O N
O R D E R N O. DI M E N SI O N
P OLE PI T C H
C H U C KI N G SI Z E A
B
C
D
P
C H U C K M O U N TI N G F A C E G
E
F
H
V O L T A G E C U R R E N T W EI( kG g)H T
C O DE N O.
V E M- 1 5 3 0 A V E M- 1 5 3 5 A V E M- 1 5 4 5 A V E M- 2 0 4 0 A V E M- 2 0 4 5 A V E M- 2 5 5 0 A V E M- 3 0 6 0 A V E M- 4 0 8 0 A V E M- 4 0 1 0 0 A V E M- 5 0 1 0 0 A
S u p er- P o w erf ul El e ctri c M a g n eti c C h u c k
MI L LI N G M / C T Y P E 1200 G A U S S
A P P LI C A TI O N
O R D E R N O. DI M E N SI O N
P OLE PI T C H
C H U C KI N G SI Z E A
B
C
D
I
V E M- 2 0 4 0 Z V E M- 2 0 5 0 Z V E M- 2 0 6 0 Z V E M- 2 5 5 0 Z V E M- 3 0 6 0 Z V E M- 4 0 8 0 Z V E M- 4 0 1 0 0 Z V E M- 5 0 1 0 0 Z V E M- 6 0 1 0 0 Z
G RI N DI N G M A C HI N E A C C E S S O RI E S
P1
P2
C H U C K M O U N TI N G F A C E G
E
F
H
V O LT A G E C U R R E N T
W EI G H T N. W. ( k g)
C O DE N O.
M A G N E TI C C H U C K C U R R E N T A D J U S T E R ( F or R e ctif y & D e m a g n eti z e)
O R D E R N O. V C C- 8 0 5 A ( 1 0 A) F O R V GI- 2 0 6 0 / V E A- 8 1 6 ~ 1 6 4 0 / V E M- 2 0 4 0 Z ~ 4 0 1 0 0 Z V C C- 8 1 5 ( 1 5 A) F O R V E A- 2 0 4 0 ~ V E A 2 4 6 0 / V L Z- 2 0 6 0 / V E M- 5 0 1 0 0 A / V E M- 5 0 1 0 0 Z F E AT U R E S
O R D E R N O. V C C- 8 2 0
O R D E R N O.
( 2 0 A) F O R V E A- 2 4 6 0 ~ / V E M- 6 0 1 0 0 Z F E AT U R E S
I N P U T V O LT A G E ( SI N G L E P H A S E)
O UTP UT V O LT A G E C U R RE NT
A
DI M E N SI O N B
N E T W EI G H T ( K G S)
C
C O D E N O.
V C C- 7 0 5 V C C- 8 0 5 A V C C- 8 1 5 V C C- 8 2 0
V ari a bl e S p e e d R ot ar y M a g n eti c C h u c k F E AT U R E S
O R D E R N O.
L
L1
W
H
H1
H2
H3
Ø D
V O LT
G. W.
C O D E N O.
V R M- 8 V R M- 1 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
C H U C K C O NT R OLLE R
O R D E R N O. V C C- 7 0 5( 5 A) F or V GI- 6 1 8 ~ 2 0 4 8 / V L Z- 5 1 0 ~ 6 1 2 / VI W- 6 1 2 ~ 1 2 2 4 / V E M- 1 5 3 0 A ~ 5 0 1 0 0 A F E AT U R E S
M a g n eti c Tr a n si sti n g Bl o c k
1
O R D E R N O.
W EI G H T K G S
C O D E N O.
V C P- 0 V C P- 1 V C P- 2 V C P- 3 V C P- 4
M a g n eti c Tr a n si sti n g Bl o c k S et
O R D E R N O. V C P- 6
C O D E N O. 2 0 1 5- 4 1 0
B OXE D SET
N O. of Bl o c k s
STYLE
Lx Hx Wx P C S
USE D M O DEL
1 P air
1 P air
M a g n eti c A dj u st a bl e Li n k
O R D E R N O. V C P- 5
C O D E N O. 2 0 1 5- 4 2 0
1
G RI N DI N G M A C HI N E A C C E S S O RI E S
1
M a g n eti c St e el S h e et S e p ar at or A P P LI C A TI O N
H1
NET W EI G H T K GS
C O DE N O.
B A R T U BE
W EI G H T K GS
C O D E N O.
DI M E N SI O N
O R DE R N O.
B
C
Ø D
L
W
H
V C P- 1 0 V C P- 1 1
M a g n eti c C hi p C oll e ct er A P P LI C A TI O N
O R D E R N O.
Di m e n si o n
H ol di n g Mass
W ei g ht kgs
C O D E N O.
V C P- 1 5
M a g n eti c S e p ar ati n g B ar U nit
T E M P E R A T U R E LI MI T 6 0º C O R D E R N O.
D 1
D 2
H
V M S- 7 B V M S- 9 B
G RI N DI N G M A C HI N E A C C E S S O RI E S
M A G N E TI C T O O L S
F E AT U R E S
P er m a n e nt- El e ctr o M a g n eti c C h u c k
S uit a bl e f or Milli n g
M a g. P o w er 1 0 0 0 k g s / 1 0 0 c m 2
5 SI D E S M A C HI NI N G C O N T R O L L E R T Y P E:
O R DE R N O.
V S BV T J-
F E AT U R E S
G RI N DI N G M A C HI N E A C C E S S O RI E S
A C C E S S O RI E S
SI Z E
W EI G H T K GS
C O D E N O.
P er m a n e nt- El e ctr o M a g n eti c C h u c k
M A G N E TI C P L A T E
S uit a bl e f or Milli n g
S T R O N G C L A M PI N G F O R C E, F A S T S E T TI N G, HI G H S A F E T Y R e c o m m e n d v olt a g e : 3 8 0 V 1 P H
M A G N E TI C F O R C E 1 0 0 0 K G S / 1 0 0 C M 2 / 4 S Q U A R E B L O C K S
O R DE R N O.
DI M E NI SI O N W
L
S
S1
M
T
HI G H T
PI T C H G
P OLE P
N o. of V O L T A G E A M P C H U C K C O N T R O L L E R P OLE N. W TYPE N. W.
C O DE N O.
V P E- 2 5 4 0 V P E- 2 5 6 0 V P E- 2 5 8 0 V P E- 2 5 1 0 0
111
V P E- 3 0 3 0 V P E- 3 0 4 0 V P E- 3 0 6 0 V P E- 3 0 8 0 V P E- 3 0 9 0 V P E- 3 0 1 0 0 V P E- 4 0 4 0 V P E- 4 0 6 0 V P E- 4 0 8 0 V P E- 4 0 1 0 0 V P E- 5 0 6 0 V P E- 5 0 8 0 V P E- 5 0 1 0 0 V P E- 6 0 1 0 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
P e r m a n e nt M a g n eti c Lift e r ( O N/ O F F T y p e) 3. 5 ti m e s!
C o n v e ni e nt a n d Li g ht w ei g ht L e s s di m e n si o n L o w er pri c e
V M L- 1 0 0
V M L- 3 0 0
V M L- 1 0 0 0 V M L- 6 0 0
V M L- 2 0 0 0
F E A T U R E S O P E R A TI O N N oti c e:
E a c h si z e s uit f or pl at e t y p e & r o u n d t y p e st e el u si n g. All n e w m o d el s wit h “ li g ht w ei g ht” l e s s di m e n si o n” a n d “ l o w er pri c e”. M a d e b y p er m a n e nt m a g n et, r e q uir e n o p o w er s u p pl y, t h u s eli mi n ati n g h a z ar d s d u e t o f ail ur e wiri n g s y st e m a s el e ctri c t y p e.
O P E R A TI O N
O N
Wit h O N/ O F F s wit c h, it i s v er y e a s y a n d c o n v e ni e nt t o o p er at e. S e e a s t h e e x a m pl e pi ct ur e s a s b el o w
OFF
N oti c e:
N e v er m o v e s t h e h a n dl e t o “ O N” si d e, e x c e pt o n a n ir o n o bj e ct of h ol di n g. N e v er o p er at e o v er h u m a n’ s h e a d.
DI M E N SI O N S C a p a cit y
A
B
C
D
E
F
G
H
lbs
m m inch
m m inch
m m inch
m m inch
m m inch
m m inch
m m inch
m m inch
lbs
V M L- 1 0 0
100 220
107 4. 2
84 3. 3
120 4. 7
125 4. 9
60 2. 4
71 2. 8
41 1. 6
30 1. 2
2. 7 5. 5
2 0 1 8- 0 6 0
V M L- 3 0 0
300 660
180 7. 1
155 6. 1
156 6. 1
185 7. 3
90 3. 6
93 3. 7
51 2. 0
41 1. 6
9. 1 1 8. 9
2 0 1 8- 0 6 1
V M L- 6 0 0
600 1320
255 10
224 8. 8
212 8. 3
260 1 0. 2
11 5 4. 5
120 4. 7
77 3. 0
52 2. 0
2 1. 5 46
V M L- 1 0 0 0
1000 2200
280 11
245 9. 6
286 1 1. 3
371 1 4. 6
165 6. 5
169 6. 7
97 3. 8
87 3. 4
5 3. 4 101
2 0 1 8- 0 6 3
V M L- 2 0 0 0
2000 4400
422 1 6. 6
380 15
348 1 3. 7
512 2 0. 2
216 8. 5
215 8. 5
105 4. 1
121 4. 8
1 2 7. 8 259
2 0 1 8- 0 6 4
V M L- 3 T H
3000 6600
566 2 2. 3
530 2 0. 9
400 1 5. 7
770 3 0. 3
216 8. 5
222 8. 7
147 5. 8
80 3. 2
181 399
O R DE R N O.
B51
G RI N DI N G M A C HI N E A C C E S S O RI E S
W ei g ht
S AFETY C O E F FI CI E N T
x 3. 5 ti m e s
x 3. 0 ti m e s
C O D E N O.
2 0 1 8- 0 6 2
2 0 1 8- 0 6 5
P e r m a n e nt M a g n eti c Lift e r ( O N/ O F F T y p e) A P P LI C A TI O N S
M A G N E TI C LI F T E R
pl a sti c m ol d s a n d ir o n m at eri al ..... et c.
L O A D O F H O L DI N G P O W E R .
m m
T1 T2
up 60 55
inch
V M L- 3 0 0 0
u p 2. 3 6
100 %
2. 1 6
95 %
P er c e nt a g e of lifti n g c a p a cit y
V M L- 2 0 0 0
V M L- 1 0 0 0
V M L- 6 0 0
V M L- 3 0 0
T a bl e of diff er e n c e i n h ol di n g p o w er b y attr a cti v e f a c e r o u g h n e s s F or all m o d el s
V M L- 1 0 0
100 %
0
100 %
T3
50
1. 9 7
90 %
95 %
T4
45
1. 7 7
85 %
90 %
T5
40
1. 5 7
80 %
85 %
T6
35
1. 3 8
70 %
75 %
90 %
T7
30
1. 1 8
60 %
65 %
80 %
T8
25
0. 9 8
50 %
55 %
70 %
90 %
T9
20
0. 7 9
40 %
45 %
60 %
75 %
90 %
100 %
50 %
100 % 125 %
F1 100 % 100 %
F2
125 %
▽ ▽
100 %
F3 F4
T10
15
0. 5 9
30 %
35 %
50 %
60 %
70 %
T 11
10
0. 3 9
20 %
25 %
35 %
45 %
50 %
70 %
T12
5
0. 2 0
10 %
15 %
20 %
25 %
30 %
40 %
T a bl e of diff er e n c e i n h ol di n g p o w er b y m at eri al q u alit y F or all m o d el s
90 %
~
65 %
0
50 %
100 %
M1
L o w c ar b o n
100 %
M2
M o d er at e c ar b o n
85 %
M3
Hi g h c ar b o n
M4
C a st ir o n
75 % 70 %
C al c ul ati n g F or m ul a f or “ R a n g e of Lifti n g C a p a cit y” E x a m pl e:
S A F E T Y C O E F FI CI E N T x 3. 5 ti m e s T h e c a p a cit y of m a g n et i n di c at e d a s 1/ 3. 5 of h ol di n g p o w er, it m e a n s t h e r e al h ol di n g p o w er i s
M A XI M U M LI F TI N G R A N G E F O R M OF M A T E RI A L
S T E E L P L AT E
R O U N D STEEL
M a x.lifti n g c a p a cit y
r e q uir e d
M a x.lifti n g c a p a cit y
Mi n Di a
M a x. di a m et er
M a xi m u m l e n gt h
lbs
m m inch
lbs
m m
m m inch
m m inch
V M L- 1 0 0
100 220
15 0. 5 9
58 125
150 5. 9
1000 40
V M L- 3 0 0
300 660
25 0. 9 8
175 380
250 9. 8
1500 60
V M L- 6 0 0
600 1320
30 1. 1 8
345 760
350 1 3. 8
2000 80
V M L- 1 0 0 0
1000 2200
40 1. 5 7
570 1255
450 1 7. 8
2500 98
V M L- 2 0 0 0
2000 4400
55 2. 1 6
11 4 0 2510
550 2 1. 6
3000 11 8
V M L- 3 T H
3000 6600
60 2. 3 6
1710 3675
650 2 5. 6
3500 138
O R D E R N O.
G RI N DI N G M A C HI N E A C C E S S O RI E S
B52
M a g n eti c Lift er
C A M TYPE
F E AT U R E S
C a m m e c h a ni s m, e a s y o p er ati o n. s cr a p o c c a si o n all y, pl e a s e b e c ar ef ul.
L O A DI N G v erti c al p o siti o n.
U N L O A DI N G M o v e t h l e v el at t h e h ori z o nt al s e p ar at e d. O R D E R N O. C A P A CI T Y
N e v er o p er at e o v er h u m a n’ s h e a d.
W1 L1 L0
V G P- 1 0 0
204 298 366
V G P- 2 0 0
330 380 445
M a g n eti c H ol d er
H0 H1 65
125 130
d
l
50 135
N E T W EI G H T C O D E N O. ( K G S) 2 5. 8 2 0 1 8- 0 4 0 4 6. 8
2 0 1 8- 0 4 1
H A N DLE TYPE
F E AT U R E S
H O L DI N G P O W E R a n d cl e ar a n c e b et w e e n t h e m at eri al a n d m a g n et.
M A XI M U M H O L DI N G P O W E R V M L- 8 0
V M L- 1 4 0
V M L- 1 5 0
d u st. m a g n eti c attr a cti o n i s b e st a n d wit h l o w c ar b o n- s oft st e el s.
V M L- 8 0 O R DE R N O.
V M L- 1 5 0 B53
G RI N DI N G M A C HI N E A C C E S S O RI E S
V M L- 1 4 0
U nit: m m
L
W
H
N. W ( K G S)
C O D E N O.
V M L- 8 0
60
50
55
1. 2 3
2 0 1 8- 0 5 4
V M L- 1 4 0
120
50
55
2. 2
2 0 1 8- 0 5 5
V M L- 1 5 0
140
100
192
2. 5
2 0 1 8- 0 5 6
O N
C A P A CI T Y
OFF
D e m a g n eti z er
O R D E R N O.
I N P U T V O LT A G
C U R RE NT
P O WE R
D UTY CY CLE
H O L E C A P A CI T Y
W EI G H T K G S
C O D E N O.
V D M- 4 0
A C 1 1 0 V/ 2 2 0 V
0. 5 A
80 W
20 %
Ø40 M M
1. 3
2 0 1 9- 0 3 0
D E M A G N E TI Z E R
S uit f or drill, e n d mill, h ar d w ar e, c utti n g t o ol... et c. H a n d y t y p e, it c a n al s o u s e t h e c utti n g t o ol. G u ar a nt e e d f or 3 m o nt h s.
S uit f or m ol di n g.
H a n d y Ty p e F or Bi g g er Or H e a v y W or k pi e c e Li g ht D ut y O nl y G u ar a nt e e d f or 3 m o nt h s. B uilt-i n o v er- h e at s af et y St o p O R D E R N O.
I N P U T V O LT A G E ( SI N G L E P H A S E)
C U R RE NT
V D M- 5 0
1 1 0 V/ 2 2 0 V/ 1 P H
1. 2 A
U SI N G TI M E D e m a g n eti z e 1 mi n ut e w aiti n g 4 mi n ut e s
L
DI M E N SI O N M H
345
35
25
W EI G H T K GS
C O D E N O.
1. 2
2 0 1 9- 0 3 1
D e m a g n eti z er De mag
ne
ly way on e n o ti z e r
F E AT U R E S S uit a bl e f or g e n er al c o m p o n e nt s p ar e p art s, att a c h m e nt s, S uit a bl e f or l o n gti m e u s e; b e a bl e t o u s e c o nti n u o u sl y f or 2 4 h o ur s. R e st 1 0 Mi n P er 3 hr s. Wit h t h e d e si g n of d o u bl e c oil s i n si d e t o a v oi d h e at r el e a s e. G u ar a nt e e d f or 3 m o nt h s. If o p er at e will c a u s e it e m m a g n eti z e d
DEL UXE TYPE O R D E R N O.
I N P U T V O LT A G E
C A P A CI T Y
D UTY CY CLE
V D M- 6 8
1 1 0 V/ 2 2 0 V
A C- 3 3 0 V A
100 %
DI M E N SI O N L W H 140 195 11 0
N W K GS 7. 4
U nit: m m
C O DE N O. 2 0 1 9- 0 0 1
G RI N DI N G M A C HI N E A C C E S S O RI E S
B54
D e m a g n eti z er F E AT U R E S I n p ut v olt a g e 1 1 0- 2 2 0 V olt s A C. Wit h O n- Off s wit c h.
V D M- 8
V olt a g e 2 0 0- 2 4 0 s h o ul d b e or d er e d. G u ar a nt e e d f or 3 m o nt h s.
V D M- 1 1 O R DE R N O. V D M- 8
V D M- 1 4
V D M- 1 1 V D M- 1 4
I NP UT V O LT A G E A C - 12 12 00 VV A C - 12 12 00 VV A C - 23 28 00 VV
C A P A CI T Y WS OU RR FKIA NC GE 210 VA 1 6 0 X 11 0
U nit: m m
100
W EI G H T ( K G S) 4. 5
D UTY CY CLE 50 %
C O DE N O. 2 0 1 9- 0 1 1
100 %
2 0 1 9- 0 2 1
H EI G H T
550 VA
200 X280
130
16
8A
585x335
120
40
2 0 1 9- 0 1 3
Mi ni T y p e D e m a g n eti z er
F O R H A N D Y A N D C A N N OT B E M O V E D O BJ E CT G u ar a nt e e d f or 3 m o nt h s.
O R DE R N O.
I NP UT W O R KI N G V O L T A G E C A P A CI T Y S U R F A C E A C- 12 12 00 VV 11 0 V A 123 X83
V D M- 9
U nit: m m
H EI G H T
W EI G H T ( K G S)
D UTY CY CLE
C O DE N O.
83
1. 8
90 %
2 0 1 9- 0 2 0
T u n n el T y p e D e m a g n eti z er A n d M a g n eti z er F E AT U R E S M er el y u si n g t o ol s t o p a s s t hr o u g h or m o v e i nt o a t u n n el will c a u s e a g o o d d e m a g n eti zi n g eff e ct. S uit a bl e f or pl a n n e d a ut o m ati c pr o c e s s; b e a d a pt e d f or d eli v er y b elt s t o pr o c e e d i n or d er t o i n cr e a s e pr o d u cti vit y. S uit a bl e f or l ar g e pr o d u cti o n of c o m p o n e nt s p ar e p art s, att a c h m e nt s, t o ol s... et c. S uit a bl e f or l o n gti m e u s e; b e a bl e t o u s e c o nti n u o u sl y f or 2 4 h o ur s. Att a c h e d a f a n i n si d e f or di s si p ati n g h e at. G u ar a nt e e d f or 3 m o nt h s. O R DE R N O.
B55
P O WE R S O U R CE
C A P A CI T Y
DI M E N SI O N
T H R O U G H NET H OLE W EI G H T C DY UCTL YE K GS A B
C O DE N O.
100
150
33
2 0 1 9- 0 2 5
V D M- 1 5 0 A C 2 2 0/ 3 8 0 V
3520 VA
L 370
W 370
H 200
V D M- 2 5 0
4840 VA
470
370
200
150
250
52
1 0 0 % 2 0 1 9- 0 2 6
V D M- 4 5 0 A C 2 2 0/ 3 8 0 V
4400 VA
700
500
200
250
450
80
2 0 1 9- 0 2 7
G RI N DI N G M A C HI N E A C C E S S O RI E S
C hi p C oll e ct or Mi ni H a n d y T y p e P ull t h e tri g g er t o dr o p attr a ct e d it e m s e a sil y. P er m a n e nt m a g n et. a n d s m all ir o n or st e el p art s f or offi c e, h o u s e a n d f a ct or y. I m p a ct- pr o of pl a sti c m at eri al s. O R DE R N O.
P A C KI N G H OM LA DIS SN G
C UFT
V C C- 1 6
C ol or B O X
0. 0 9
0. 6 5
DI M E N SI O N L 11 0
W 11 0
H 190
W EI G H T K GS
C O D E N O.
0. 7
2 0 1 9- 0 4 0
C hi p C oll e ct or Wit h A dj u st a bl e Ar m T y p e et c. D el u x e h a n dl e f or c o mf ort. E a s y t o u s e, s af e, pr a cti c al a n d ti m e s a vi n g. P er m a n e nt m a g n et. O R DE R N O.
M A G N E TI C B A S E
H O L DI N G M ASS
C UFT
T OTAL LE N GT H
C O D E N O.
V C C- 1 7 A
120x70 m m
0. 7
0. 4
700 m m
2 0 1 9- 0 4 1 A
C hi p C oll e ct or Wit h W h e el s E a s y t o u s e, s af e a n d pr a cti c al ti m e s a vi n g d e vi c e. d e vi c e w hi c h e n a bl e t o attr a ct a n y m et al it e m s a n d P ull t h e tri g g er t o r el e a s e m a g n eti c f or c e. P er m a n e nt m a g n et. O R D E R P A C KI N G H O L DI N G N O. M ASS
k gf
C UFT
LE N GT H
W EI G H T K GS
V C C- 1 9
83
1. 1 5
720~1035 m m
1. 5
0. 8 5
C hi p C oll e ct or Wit h Fl e xi bl e Ar m
Fl e xi bl e M a g n eti c Pi c k- U p T o ol
T OTAL WI D T H
C O DE N O.
3 7 7 m m 2 0 1 9- 0 4 3
C hi p C oll e ct or Wit h L E D
Li g ht e d Fl e xi bl e M a g n eti c Pi c k- U p T o ol
O R D E R N O.
V C C- 2 0
O R D E R N O.
V C C- 2 1
P A C KI N G
Ti e d O n C ar d
P A C KI N G
Ti e d O n C ar d
H O L DI N G M ASS
0. 1 1
H O L DI N G M ASS
0. 0 8
C UFT
0. 0 4
C UFT
0. 0 4
LE N GT H
533 m m
LE N GT H
533 m m
C A P A CI T Y C O D E N O.
C A P A CI T Y 2 0 1 9- 0 4 4
C O D E N O.
2 0 1 9- 0 4 5
Wit h 2 p c 1. 5 V b att eri e s G RI N DI N G M A C HI N E A C C E S S O RI E S
B56
C HI P C O L L E C T O R
U nit: m m
M a g n eti c V Bl o c k
1 P CS
F or m e a s uri n g V A N GL E 90 N ot f or L A B O R A T O R Y.
BI G P O W E R T O P
S M ALL P O WE R
2 SI D E S N O P O WE R
B OTT O M BI G P O W E R
n eti c O R D E R N O. P Mo aw ger( p ull)
V C P- 2 5
V
v
ø7~ø60
ø7~ø25
H 9 5. 3 3. 7 5
W 70 2. 7 6
Di m e n si o n L L1 1 0 1. 6 45 4 1. 9 7
L2 18 0. 7 5
Wt. kgs
C O D E N O.
3. 9
2 0 1 5- 5 0 1
M a g n eti c V Bl o c k
1 P CS
P O WE R T OP & V
F or m e a s uri n g V A N GL E 90 N ot f or L A B O R A T O R Y.
BI G P O W E R T O P
BA CK S M ALL P O WE R
B OTT O M BI G P O W E R
2 SI D E S N O P O WE R
B OTT O M P O WE R
V C P- 2 6
O R D E R N O.
M a g n eti c P o w er( p ull)
V C P- 2 7
V
V C P- 2 6
ø8~ø50
V C P- 2 7
ø8~ø50
H 73 2. 8 7 73 2. 8 7
Di m e n si o n W L 60 70 2. 1 3 2. 7 6 60 125 2. 3 6 4. 2 9
M a g n eti c V Bl o c k
L1 37 1. 5 38 1. 5
Wt. kgs
C O D E N O.
1. 8
2 0 1 5- 5 1 0
3. 3
2 0 1 5- 5 1 1
M a g n eti c V- Bl o c k
P AI R
a n d a c c ur a c y ar e u s e d t o g et h er a s a s et. V A N G L E 9 0°
N ot f or L A B O R A T O R Y. T OP
2 SI D E S N O P O WE R
2 P C S/ S E T P AI R
N O P O WE R B OTT O M REA R
n eti c O R D E R N O. P Mo aw ger( p ull)
B57
V
V C P- 2 8
ø8~ø34
V C P- 2 9
ø8~ø80
V C P- 3 0
ø8~ø120
H 50 74 2. 9 1 100 3. 9 4
G RI N DI N G M A C HI N E A C C E S S O RI E S
Di m e n si o n W 40 48 1. 7 7 50 1. 9 7
L 70 11 0 4. 3 3 150 5. 9 1
Wi dt h of V
Wt. kgs
C O D E N O.
ø50
2. 0
2 0 1 5- 5 2 0
60 2. 3 6 90 3. 5 4
4. 9
2 0 1 5- 5 2 1
8. 9
2 0 1 5- 5 2 2
M a g n eti c S q u ar e Bl o c k
F O R M E A S U RI N G
M A G N E TI C B L O C K
T OP P O WE R
2 SI D E S P O WE R
B OTT O M S M ALL P O WE R
i nt e gr all y wit h al u mi n u m. F or m e a s uri n g V A N GL E 90 N ot f or L A B O R A T O R Y O R D E R N O.
M a g. P o w er of V gr o o v e
M a g. P o w er of b a s e
V
H
W
L
W1
V C P- 3 1
ø7~ø22
V C P- 3 2
ø7~ø29
100 3. 9 4 150 5. 9 1
100 3. 9 4 150 5. 9 1
100 3. 9 4 150 5. 9 1
23 1. 0 2 29 1. 2 6
Wt. kgs 6. 5
C O D E N O.
2 0. 3
2 0 1 5- 5 3 1
2 0 1 5- 5 3 0
M a g n eti c S q u ar e H ol d er P O WE R T OP & V
V G R O OVE
W1
H
Pr e ci si o n gr o u n d B a s e & V gr o o v e p ar all eli s m : 0. 0 2 / 1 0 0 m m M a g n eti c p o w er : V gr o o v e o nl y M AI N B O D Y : C A S T I R O N Li g ht d ut y, f or m e a s uri n g E a s y m o v e m e nt M ulti - t y p e V A N G L E 9 0° N ot f or L A B O R A T O R Y. O R D E R N O.
V C P- 4 0
M a g. P o w er of V gr o o v e
W
L
V
H
ø8~ø50
125
W
L
M AI N B O D Y
W1
Wt. kgs
C O D E N O.
37
8. 5 4
2 0 1 5- 5 4 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
B58
M a g n eti c T o ol s F O R DI A L G A U G E, I N DI C A T O R S
FI X E D A R M T Y P E V M B- B, 0 1, 0 2 T H E DI A L C L A M P H O L E Ø 6. 5 & Ø 8 M A G N E TI C B A S E C E N T E R H O L E T H R E A D M 8 x 1. 2 5 P
Ø16 HY D R O Ø 3 0 x 1 7 5. 5 l H E AV Y D UTY
Ø12x171 l Ø20x310 l
Ø20
O R D E R N O. V M B- B M A G N E TI C B A S E /80kgs
O R D E R N O. V M B- 0 1 M A G N E TI C B A S E ( A DJ U ST A BL E T Y P E) / 8 0 k g s
O R D E R N O. V M B- 0 2 M A G N E TI C B A S E ( A DJ U ST A BL E T Y P E) / 8 0 k g s
O R D E R N O. V M B- 1 8 1 M A G N E TI C B A S E /100kgs
O R D E R N O. V M B- 0 3 M A G N E TI C B A S E H EI G H T R O D T Y P E/ 1 3 0 k g s
O R D E R N O. V M B- 1 8 5 H Y D R A U LI C A R M M A G N E TI C B A S E /100 K G S
Bi g Di a. & H ei g ht R o d
& s h a p e & c ol or
dir e ctl y, b e c a u s e t h e t hr e a d i n t h e b a s e will b e di si nt e gr at e d, pl e a s e l o o s e Aft er y o u s et t h e p o siti o n, Fi x t h e K n o b.
Ø8
B59
Ø 6. 5
O R D E R N O.
B A S E SI Z E L x W x H( M M)
H O L DI N G P O WE R
M AI N R O D O. D X L
S U B R O D O. D X L
W EI G H T ( K G S)
C O D E N O.
V M B- B
60x50x55
80 K G S
Ø12 X173
Ø10 X162
1. 6
2 0 1 5- 6 0 1
V M B- 0 1
60x50x55
80 K G S
Ø12 X176
Ø10 X150
1. 6
2 0 1 5- 6 0 2
V M B- 0 2
60x50x55
80 K G S
Ø12 X171
Ø10 X153
1. 6
2 0 1 5- 6 0 3
V M B- 0 3
11 5x 5 0x 5 5
130 K G S
Ø20 X310
Ø14 X200
3. 9
2 0 1 5- 6 0 7
V M B- 1 8 1
73x50x55
100 K G S
Ø 3 0 X 1 7 5. 5
Ø21x137
1. 9
2 0 1 5- 6 0 9 A
V M B- 1 8 5
73x50x55
100 K G S
Ø 3 1 X 1 2 4. 5
Ø 2 8x 11 3
2. 0
2 0 1 5- 6 0 9 B
G RI N DI N G M A C HI N E A C C E S S O RI E S
M a g n eti c T o ol s F O R DI A L G A U G E, I N DI C A T O R S
WI T H O U T DI A L I N DI C A T O R
U NI V E R S A L A R M T Y P E T H E DI A L C L A M P H O L E Ø 6. 5 & Ø 8
M A G N E TI C T O O L S
M A G N E TI C B A S E C E N T E R H O L E T H R E A D M 8 x 1. 2 5 P
Ø16x192 l Ø10x155 l
Ø 11x 11 6 l
Ø10x143 l
Ø16x185 l
Ø 2 4x Ø 1 4x 11 4 l
HY D R O
HY D R O Ø30 Ø34
Ø25 Ø15x128 l
Ø12x160 l H E X. 2 1
O R D E R N O. V M B- 7 0 D E L U X E U NI V E R S A L M A G N E TI C B A S E/ 100kgs
Ø12x175 l
Ø16x230 l
Ø20x412 l Ø32x Ø16x122 l
Ø25
O R D E R N O. V M B- 1 0 6 M E C H A NI C A L A R M M A G N E TI C B A S E/ 100kgs
O R D E R N O. V M B- 1 0 6 H H Y D R A U LI C A R M M A G N E TI C B A S E/ 100kgs
O R D E R N O. V M B- 1 6 0 M A G N E TI C B A S E H EI G H T R O D T Y P E ( A dj.) 100kgs
O R D E R N O. V M B- 1 8 0 M A G N E TI C B A S E H EI G H T R O D T Y P E ( A dj.) 100kgs
O R D E R N O. V M B- 1 8 2 H H Y D R A U LI C A R M M A G N E TI C B A S E/ 100kgs
dir e ctl y, b e c a u s e t h e t hr e a d i n t h e b a s e will b e di si nt e gr at e d, pl e a s e l o o s e Aft er y o u s et t h e p o siti o n, Fi x t h e K n o b.
Ø8
H ol d t h e M a g. B a s e w hil e m o vi n g & lifti n g
Ø 6. 5
O R D E R N O.
B A S E SI Z E L x W x H( M M)
H O L DI N G P O WE R
M AI N R O D O. D X L
S U B R O D O. D X L
W EI G H T ( K G S)
C O D E N O.
V M B- 7 0
73x50x55
100 K G S
Ø15 X128
Ø 11 X 11 6
1. 7
2 0 1 5- 6 0 4
V M B- 1 0 6
73x50x55
100 K G S
Ø12 X160
Ø10 X143
1. 9
2 0 1 5- 6 0 5
V M B- 1 0 6 H
75x50x55
100 K G S
Ø12 X175
Ø10 X155
2. 2
2 0 1 5- 6 0 6
V M B- 1 6 0
73x50x55
100 K G S
Ø16x230
Ø16x185
2. 1
2 0 1 5- 6 0 8
V M B- 1 8 0
75x60x80
100 K G S
Ø20x412
Ø16x192
3. 8
2 0 1 5- 6 0 9
V M B- 1 8 2 H
73x50x55
100 K G S
Ø32x Ø16x122
Ø 2 4x Ø 1 4x 11 4
1. 7 5
2 0 1 5- 6 0 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
B60
M a g n eti c T o ol s
M A G N E TI C B A S E C E N T E R H O L E T H R E A D M 8 x 1. 2 5 P
62 62
60
Ø17x125 l Ø 1 4 x 9 6. 5 l Ø22x97 l
Ø25
20
Ø29
Ø 1 1 x 4 7. 5 l
Ø34 Ø 1 7. 5 x 1 0 5 l
Ø13x53 l
O R D E R N O. V M B- 5 5 MI NI M A G N E TI C B A S E/ 80 kgs
O R D E R N O. V M B- 5 1 MI NI M A G N E TI C B A S E/ 30 kgs
Ø31
Ø30
Ø21
Ø21
Ø 3 1 x 1 4 6. 5 l
Ø 2 0 x 1 4 1. 5 l
Ø19
O R D E R N O. V M B- 5 6 MI NI M A G N E TI C B A S E/ 100 kgs
O R D E R N O. V M B- 5 8 MI NI M A G N E TI C B A S E/ 100 kgs
A R M dir e ctl y, b e c a u s e t h e t hr e a d i n t h e b a s e will b e di si nt e gr at e d, pl e a s e l o o s e Aft er y o u s et t h e p o siti o n, Fi x t h e K n o b.
Ø8
H ol d t h e M a g. B a s e w hil e m o vi n g & lifti n g
B61
Ø 6. 5
O R D E R N O.
B A S E SI Z E L x W x H( M M)
H O L DI N G P O WE R
M AI N R O D O. D X L
S U B R O D O. D X L
W EI G H T ( K G S)
C O D E N O.
V M B- 5 1
35x30x35
30 K G S
Ø13x53
Ø 1 1 x 4 7. 5
0. 4
2 0 1 5- 6 5 1
V M B- 5 5
60x50x55
80 K G S
Ø 1 7. 5 x 1 0 5
Ø 1 4 x 9 6. 5
1. 4
2 0 1 5- 6 5 2
V M B- 5 6
73x50x55
100 K G S
Ø 2 0 x 1 4 1. 5
Ø17x125
1. 8
2 0 1 5- 6 5 3
V M B- 5 8
73x50x55
100 K G S
Ø 3 1 x 1 4 6. 5
Ø22x97
2
2 0 1 5- 6 5 5
G RI N DI N G M A C HI N E A C C E S S O RI E S
M a g n eti c T o ol s
M A G N E TI C T O O L S
M A G N E TI C B A S E C E N T E R H O L E T H R E A D M 5 x 0. 8 P k n o b m a y v ar y & s h a p e & c ol or
MI C R O A D J U S T M E N T
33
Ø 7 x 4 2. 5 l
Ø 7 x 4 2. 5 l
Ø16
O R D E R N O. V M F- 1 1 2 MI NI M A G N E TI C B A S E/ 30 kgs
O R D E R N O. V H- 7 0 MI NI M A G N E TI C B A S E / 15 kgs R O U N D B ASE O R S Q U A RE B ASE
O R D E R N O. V M F- 1 0 2 A MI NI D E L U X E U NI V E R S A L M A G N E TI C B A S E S UI T A B L E F O R E D M U SI N G. 30 kgs
O R D E R N O. V M F- 1 1 4 MI NI M A G N E TI C B A S E / 30 kgs D o v et ail / 6. 0
If y o u w o ul d li k e t o t ur n ar o u n d t h e A R M of V M B s eri e s, d o n’t r ot at e t h e A R M dir e ctl y, b e c a u s e t h e t hr e a d i n t h e b a s e will b e di si nt e gr at e d, pl e a s e l o o s e Aft er y o u s et t h e p o siti o n, Fi x t h e K n o b. B ef or e y o u s et t h e n e w p o siti o n, y o u m u st l o o s e t h e k n o b. H ol d at t h e c o n n e cti o n b et w e e n R o d & B a s e t o pr e v e nt t hr e a d br e a ki n g. H ol d t h e M a g. B a s e w hil e m o vi n g & lifti n g
Ø8
Ø 6. 5
O R D E R N O.
B A S E SI Z E L x W x H( M M)
H O L DI N G P O WE R
M AI N R O D O. D X L
S U B R O D O. D X L
W EI G H T ( K G S)
C O D E N O.
V M F- 1 1 2
3 4. 5 x 3 0 x 3 5
30 K G S
Ø20 X 70
Ø15 X 65
0. 6
2 0 1 5- 6 1 9
V M F- 1 1 4
35x30x35
30 K G S
Ø 7 x 4 2. 5
Ø 7 x 4 2. 5
0. 5
2 0 1 5- 6 3 5
V H- 7 0
31x31x32
15 K G S
Ø10 X 70
Ø6 X 90
0. 4
2 0 1 5- 6 2 0
V M F- 1 0 2 A
3 4. 5 x 3 0 x 3 5
30 K G S
Ø20 X 70
Ø20 X 65
0. 5 7
2 0 1 5- 6 2 1 A
G RI N DI N G M A C HI N E A C C E S S O RI E S
B62
M a g n eti c T o ol s
O R D E R N O. V M B- 0 6 F L E XI B L E A R M WI T H M A G N E T E C B A S E
O R D E R N O. V M L- A M A G N E TI C B A S E W O R KI N G B E A M F O R 2 0 W/ 4 0 W/ 6 0 W 1 1 0 V F O R 2 0 W/ 4 0 W/ 6 0 W 2 2 0 V
O R D E R N O. V M L- B M A G N E TI C B A S E W O R KI N G B E A M F O R 2 0 W/ 4 0 W/ 6 0 W 1 1 0 V F O R 2 0 W/ 4 0 W/ 6 0 W 2 2 0 V
O R D E R N O. V M L- C M A G N E TI C B A S E W O R KI N G B E A M F O R 2 0 W/ 4 0 W/ 6 0 W 1 1 0 V F O R 2 0 W/ 4 0 W/ 6 0 W 2 2 0 V
& s h a p e & c ol or
Aft er y o u s et t h e p o siti o n, Fi x t h e K n o b.
H ol d t h e M a g. B a s e w hil e m o vi n g & lifti n g
B63
O R D E R N O.
B A S E SI Z E L X W X H( M M)
H O L DI N G P O WE R
M AI N R O D O. D X L
W EI G H T ( K G S)
C O D E N O.
V M B- 0 6
60 X50 X55
80 K G S
Ø16 X208
1. 6
2 0 1 5- 6 1 0
V M L- A
60 X50 X55
80 K G S
Ø20 X200
1. 5
2 0 1 5- 6 1 1
V M L- B
60 X50 X55
80 K G S
Ø26 X200
1. 5
2 0 1 5- 6 1 2
V M L- C
60 X50 X55
80 K G S
Ø20 X460
2. 2
2 0 1 5- 6 1 6
G RI N DI N G M A C HI N E A C C E S S O RI E S
M a g n eti c T o ol s
E nl ar g e a b o ut : 2 X
O R D E R N O. V M B- 1 0 M A G N E TI C B A S E O N L Y M 8 X 1. 2 5 p, 1 0 0 k g s
O R D E R N O. V M B- 1 1 M A G N E TI C B A S E O N L Y M 8 X 1. 2 5 p, 1 4 0 k g s
O R D E R N O. V M B- 1 2 W HEEL D RESSE R CL A MP H O L E 1 2 M M WI T H O U T DI A M O N D D R E S S E R P E N
M A G N E TI C T O O L S
O R D E R N O. V M B- 0 9 M A G N E TI C B A S E O N L Y M 8 X 1. 2 5 p, 3 0 k g s
O R D E R N O. V M B- 0 0 M A G N E TI C B A S E O N L Y M 8 X 1. 2 5 p, 8 0 k g s
O R D E R N O. V M L- M M A G N E TI C B A S E WI T H M A G NI F YI N G G L A S S M 8 X 1. 2 5 p, 8 0 k g s
Aft er y o u s et t h e p o siti o n, Fi x t h e K n o b. & s h a p e & c ol or
H ol d t h e M a g. B a s e w hil e m o vi n g & lifti n g V M B- 0 0
B A S E SI Z E L X W X H( M M) 60 X50 X55
V M B- 0 9
3 4. 5 X 3 0 X 3 5
30 K G S
0. 2
2 0 1 5- 6 4 6
V M B- 1 0
73 X50 X55
100 K G S
1. 2 5
2 0 1 5- 6 4 5
V M B- 1 1
11 7 X 5 0 X 5 5
140 K G S
2. 1
2 0 1 5- 6 1 4
V M B- 1 2
60 X50 X55
80 K G S
1. 1
2 0 1 5- 6 1 5
V M L- M
60 X50 X55
80 K G S
1. 7
2 0 1 5- 6 1 7
O R D E R N O.
H O L DI N G P O WE R 80 K G S
M AI N R O D O. D X L
W EI G H T ( K G S) 1. 1
C O D E N O.
Ø15 X325
2 0 1 5- 6 1 3
S q u ar e M a g n eti c H ol d er B a s e
C O MPA CT TYPE P O W E R F U L L M A G N E TI C S U P E R T HI N O R D E R N O.
H O L DI N G P O WE R
L
DI M E N SI O N S W
H
T H RE A D A B
V M B- 6 1
6. 5 K G S
45
45
20
4- M 4
V M B- 6 2
20 K G S
65
65
20
V M B- 6 3
25 K G S
90
90
V M B- 6 4
80 K G S
125
125
P
C O D E N O.
M8
25
2 0 2 2- 0 9 0
8- M 4
M8
25
2 0 2 2- 0 9 1
20
8- M 4
M8
25
2 0 2 2- 0 9 2
30
8- M 6
M8
50
2 0 2 2- 0 9 3
G RI N DI N G M A C HI N E A C C E S S O RI E S
B64
M a g n eti c T o ol s k n o b m a y v ar y & s h a p e & c ol or
O R D E R N O. V M H- 5 4 ( 2 H O S E) M A G N E TI C B A S E WI T H H O S E N O Z Z L E
O R D E R N O. V M H- 6 3 ( 1 H O S E) M A G N E TI C B A S E WI T H S T E E L N O Z Z L E
O R D E R N O. V M H- 6 2 ( 3 H O S E) M A G N E TI C B A S E WI T H H O S E N O Z Z L E
O R D E R N O. V M H- 6 4 ( 2 H O S E) M A G N E TI C B A S E WI T H S T E E L N O Z Z L E
O R D E R N O. V M H- 6 5 ( 3 H O S E) M A G N E TI C B A S E WI T H S T E E L N O Z Z L E
O R D E R N O. V M S- 1/ 4 O R D E R N O. V M S- 3/ 8 S T E E L H O S E WI T H N OZZLE
H ol d t h e M a g. B a s e w hil e m o vi n g & lifti n g B A S E SI Z E L X W X H( M M)
H O L DI N G P O WE R
M AI N R O D O. D X L
S U B R O D O. D X L
W EI G H T ( K G S)
C O D E N O.
V M H- 5 4
60 X50 X55
80 K G S
Ø16 X 330
2 P C S. H O S E
1. 4
2 0 1 5- 6 2 2
V M H- 6 2
60 X50 X55
80 K G S
Ø16 X 330
3 P C S. H O S E
1. 5
2 0 1 5- 6 2 3
V M H- 6 3
60 X50 X55
80 K G S
Ø 11 X 3 3 0
1 P C S. H O S E
1. 6
2 0 1 5- 6 4 2
V M H- 6 4
60 X50 X55
80 K G S
Ø 11 X 3 3 0
2 P C S. H O S E
2
2 0 1 5- 6 4 3
V M H- 6 5
60 X50 X55
80 K G S
Ø 11 X 3 3 0
3 P C S. H O S E
2. 2
2 0 1 5- 6 4 4
V M S- 1/ 4
Ø 11 X 3 2 0
H O S E T H R E A D 1/ 4
0. 1 4
2 0 1 5- 6 4 0
V M S- 3/ 8
Ø15 X 370
H O S E T H R E A D 3/ 8
0. 3 1
2 0 1 5- 6 4 1
O R D E R N O.
B65
V M S- 3/ 8- 4 5 0 L
H O S E T H R E A D 3/ 8
2 0 1 5- 6 4 7
V M S- 3/ 8- 5 0 0 L
H O S E T H R E A D 3/ 8
2 0 1 5- 6 4 8
V M S- 3/ 8- 6 1 0 L
H O S E T H R E A D 3/ 8
2 0 1 5- 6 4 9
V M S- 3/ 8- 7 6 0 L
H O S E T H R E A D 3/ 8
2 0 1 5- 6 5 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
T hi n R o u n d M a g n et
V M H- D 1 3, D 3 0
V M H- T 6 6
U nit : m m
Ø D
T HI C K N E S S
W EI G H T ( k g)
V M H- D 1 3
66
1 0. 5
0. 1 6
2 0 1 5- 7 1 1
V M H- D 3 0
80
1 3. 0
0. 3 4
2 0 1 5- 7 1 2
V M H- T 6 6
66
1 0. 5
0. 1 6
2 0 1 5- 7 1 6
O R D E R N O.
H O L DI N G P O WE R
C O D E N O.
R o u n d M a g n et H ol d er
V M D- S 1 4 V M D- R 3 0
V M D- S 2 0 F or B a si c li g ht M a g. f or c e T o c o m bi n e wit h ot h er t o ol T o r e m o v e li g ht w ei g ht ir o n o bj e ct. S u p p ort f or p o siti o ni n g
V M D- R 5 0
DI M E M SI O N S
TAPPE R H OLE
W EI G H T ( K G S)
C O D E N O.
V M D- R 1 8
Ø 30 x 25
M6
0. 1 2
2 0 1 5- 7 2 1
V M D- R 3 0
Ø 40 x 30
M8
0. 2 6
2 0 1 5- 7 2 2
V M D- R 5 0
Ø 50 x 40
M8
0. 5 4
2 0 1 5- 7 2 3
V M D- S 1 4
26 x 26 x 25
-
0. 1 2
2 0 1 5- 7 2 4
V M D- S 2 0
26 x 60 x 25
M6
0. 2 8
2 0 1 5- 7 2 5
O R D E R N O.
H O L DI N G P O W E R
G RI N DI N G M A C HI N E A C C E S S O RI E S
B66
M A G N E TI C T A P P E R
F or B a si c li g ht M a g. f or c e T o c o m bi n e wit h ot h er t o ol T o r e m o v e li g ht w ei g ht ir o n o bj e ct. I. D. Ø M 6. 6 / M 8 C a n s er v e a s h a n g er.
M a g n eti c T a p p er T A P t hr e a d c a p a cit y M 3- M 1 2
C o st hi g h er
H ori z o nt al / V erti c al P ort a bl e Gr e at f or m a c hi n e c a s e & t hi n pl at e t a p pi n g j o b. T A P & Ir o n pi e c e n ot i n cl u d e d.
& s h a p e & c ol or E x a m pl e.
U nit : m m
O R D E R N O.
A
B
C
D
H
I
L
M
N
O
W EI G H T ( k g s)
C O D E N O.
V T M- 1 3
50
72
10
45
122
36
60
60
50
30
3. 1 0
2 0 1 5- 7 3 1
M a g n eti c Cl a m p W el d er’ s M a g n eti c Gr o u n d Cl a m p H e a v y- d ut y st e el h o u si n g h ol d s a p o w erf ul m a g n et f or f a st, y et s af e gr o u n d. E q ui p p e d wit h a s pri n g-l o a d e d br a s s el e ctr o d e, t h e m a g n eti c C UFT
L x W x H
W EI G H T ( k g)
C O D E N O.
V C C- 3 0
0. 0 7’
7 0 x 5 2 m/ m
0. 4 8
2 0 3 3- 2 2 0
V C C- 3 1
0. 0 5’
4 9 x 4 0 m/ m
0. 1 2
2 0 3 3- 2 2 1
O R D E R N O.
M ASS
M a g n eti c Q ui c k Cl a m p
L O R D E R N O.
SI Z E
P A C KI N G
V C C- 3 3
M
Sli di n g C ar d
V C C- 3 4
L
Sli di n g C ar d
B67
G RI N DI N G M A C HI N E A C C E S S O RI E S
M M ASS
L
DI M E N SI O N W
H
W EI G H T ( k g)
C O D E N O.
0. 0 3’
120
82
14
0. 3 2
2 0 3 3- 2 2 3
0. 0 3’
158
102
19
0. 6 8
2 0 3 3- 2 2 4
C UFT
A dj u st a bl e M a g n eti c N o z zl e Kit
B y diff er e nt of u s a g e, t h er e ar e m u c h m o d el s f or s el e cti o n. M a c hi n e t o ol m a d e b y c u st o m er’ s SPA CE R
C L- 0 1
SPA CE R
SPA CE R
C L- 0 2
C L- 0 3
Ø46 X255
S- 1 M A G N E TI C F O R C E 8 k g s O R DE R N O. C L- 0 1
SPA CE R
C L- 0 1 A
SPA CE R
SPA CE R
SPA CE R
C L- 0 2 A
L- 2
C L- 0 3 A
WI T H P L A S TI C N O Z Z L E & V A L V E O. D. 3 4 X H 2 3 0 m m
WI T H P L A S TI C N O Z Z L E O. D. 6 8 X 3 3 0 H
W ei g ht
C O D E N O. 2 0 1 5- 6 2 4
C L- 0 2
2 0 1 5- 6 2 5
C L- 0 3
2 0 1 5- 6 2 6
C L- 0 1 A
2 0 1 5- 6 2 7
C L- 0 2 A
2 0 1 5- 6 2 8
C L- 0 3 A
2 0 1 5- 6 2 9
S- 1
2 0 1 5- 6 3 0
L- 2
2 0 1 5- 6 3 1 A
A dj u st a bl e C o ol a nt H o s e A dj u st a bl e C o ol a nt H o s e i s hi g hl y pli a bl e; it h ol d s it s s h a p e w ell a n d will n ot str o n gl y r e si st a nt t o oil s a n d c h e mi c al s. A dj u st a bl e C o ol a nt H o s e will n ot d a m a g e c utti n g bl a d e if t h er e w er e a c ci d e nt c o nt a ct. A dj u st a bl e C o ol e nt H o s e d o e s n ot c o n d u ct el e ctri cit y a n d i s g o o d f or o p er ati n g B e n di n g h o s e will n ot r e d u c e i n n er di a m et er, h o s e will n ot pi n c h or f ati g u e.
Or di n ar y A dj u st a bl e C o ol a nt H o s e s ar e c ol or s. ITE M A L C O H O L S, E T H U L A CI D S A CET O NE B A S E S, S T R O N G C O M M E R CI A L DI S H D E T E R G E N T S G A S O LI N E G REASES H Y P O C H L O RI T E L O N S O L U TI O N S L A C Q U E R S OLV E NT S OI L S S O DI U M H Y D R O XI D E S O DI U M H Y P O C H L O RI T E I N S E C TI CI D E S B R A K E OI L S
B69
S UI T A B L E O
U N S UI T A B L E X
O X X
X O O O X
G RI N DI N G M A C HI N E A C C E S S O RI E S
3/ 8 ” ( 9 m m)
1/ 2 ” ( 1 2 m m)
3/ 4 ” ( 2 0 m m)
C a uti o n: o ur m at eri al s ar e g o o d wit h al c o h ol s, et h yl, a c et o n e, c o m m er ci al di s h d et er g e nt s, g a s oli n e, gr e a s e s, l a c q u er oil s. N ot g o o d f o r a ci d s, b a s e s, st r o n g, a m m o ni u m
O O O
O O
1/ 4 ” ( 6 m m)
H y p o c hl o rit e. U s e i n a p p r o p ri at e li q ui d s d a m a g e.
may cause
C O OL A NT N OZZLE
T h e a dj u st a bl e m a g n eti c n o z zl e i s s uit a bl e f or c o oli n g a n d l u bri c ati n g i n m a c hi ni n g pr o c e s s. C a n b e pr ol o n g e d t h e c utt er lif e a n d a d v a n c e t h e a c c ur a c y a n d b e a ut y of
A dj u st a bl e C o ol a nt H o s e s & V al v e s FI G U R E
1/ 4 V A L V E & H O S E KI T 62220 3 3 C M L e n gt h H o s e Kit A s s e m bl e d wit h: 1- A ci d R e si st a nt 1/ 4 M al e N P T V al v e 1- 2 0 El e m e nt S e g m e nt s or 1/ 8 or 1/ 4
62720 3 3 C M L e n gt h H o s e Kit A s s e m bl e d wit h: 1- 1/ 4 M al e N P T V al v e 1- 2 0 El e m e nt S e g m e nt s or 1/ 8 or 1/ 4
3/ 8
3 6 C M L e n gt h H o s e Kit A s s e m bl e d wit h: 1- A ci d R e si st a nt 3/ 8 M al e N P T V al v e 1- 1 6 El e m e nt S e g m e nt s or 3/ 8 or 1/ 2
63720 3 6 C M L e n gt h H o s e Kit A s s e m bl e d wit h: 1- 3/ 8 M al e N P T V al v e 1- 1 6 El e m e nt S e g m e nt s or 3/ 8 or 1/ 2
A CI D R E SI S T A N T
O R D E R N O. V H K- 1/ 4
C O D E N O. 2 0 1 6- 0 0 2
O R D E R N O. V H K- 3/ 8 A
C O D E N O. 2 0 1 6- 0 0 3
A CI D R E SI S T A N T
O R D E R N O. V H K- 3/ 8
C O D E N O. 2 0 1 6- 0 0 4
O R D E R N O. V H K- 1/ 2 A
C O D E N O. 2 0 1 6- 0 0 5
V A L V E & H O S E KI T
64420 3 3 C M L e n gt h H o s e Kit A s s e m bl e d wit h: 1- A ci d R e si st a nt 1/ 2 M al e N P T V al v e 1- 1 2 El e m e nt S e g m e nt s or 3/ 8 or 1/ 2
64720 3 3 C M L e n gt h H o s e Kit A s s e m bl e d wit h: 1- 1/ 2 M al e N P T V al v e 1- 1 2 El e m e nt S e g m e nt s or 3/ 8 or 1/ 2
3/ 4
C O D E N O. 2 0 1 6- 0 0 1
V A L V E & H O S E KI T
63320
1/ 2
O R D E R N O. V H K- 1/ 4 A
C O OL A NT H OSE
C O D E N O. & D E S C RI P TI O N
V A L V E & H O S E KI T
A CI D R E SI S T A N T
O R D E R N O. V H K- 1/ 2
C O D E N O. 2 0 1 6- 0 0 6
O R D E R N O. V H K- 3/ 4
C O D E N O. 2 0 1 6- 0 0 7
66720 4 4 C M L e n gt h H o s e Kit A s s e m bl e d wit h: 3/ 4 M al e P T or N P T V al v e G RI N DI N G M A C HI N E A C C E S S O RI E S
B70
1/ 4 ” S y st e m
1/ 4 ” I N SI D E DI A M E T E R
FI G. I T E M N O. D E S C RI P TI O N V- 8 2 0 2 0
1/ 4” H o s e Kit 3 3 C M L e n gt h wit h Fitti n g s: 2- 1 4 C M S e g m e nt s 1/ 1 6”, 1/ 8”, 1/ 4” N o z zl e s 1/ 4” & 1/ 8” M al e P T c o n n e ct or s
FI G. I T E M N O. D E S C RI P TI O N V- 8 2 2 2 3
1/ 1 6” 9 0 o N o z zl e s,
V- 8 2 2 4 3
1/ 1 6” 9 0 o N o z zl e s,
V- 8 2 2 2 4
1/ 8” 9 0 o N o z zl e s,
V- 8 2 2 4 4
1/ 8” 9 0 o N o z zl e s,
V- 8 2 2 2 5
1/ 4” 9 0 o N o z zl e s,
C O D E N O. 2 0 1 6- 1 1 7
C O D E N O. 2 0 1 6- 1 1 8
C O D E N O. 2 0 1 6- 1 0 1
V- 8 2 0 2 0 A 1/ 4” H o s e Kit 3 3 C M L e n gt h wit h Fitti n g s: 2- 1 4 C M S e g m e nt s 1/ 1 6”, 1/ 8”, 1/ 4” N o z zl e s 1/ 4” & 1/ 8” M al e N P T c o n n e ct or s
C O D E N O. 2 0 1 6- 1 1 9
C O D E N O. 2 0 1 6- 1 2 0
C O D E N O. 2 0 1 6- 1 0 2
V- 8 2 2 2 0
1/ 4” E xt e n d e n El e m e nt Kit wit h El e m e nt Cl a m p s I n cl u d e s 4 e a c h of: 1/ 4” E xt e n d e d El e m e nt s 1/ 4” El e m e nt Cl a m p s
V- 8 2 2 4 5
V- 8 2 0 2 1 V- 8 2 0 7 1
C O D E N O. 2 0 1 6- 1 0 4- 1
V- 8 2 2 2 6
C O D E N O. 2 0 1 6- 1 0 4- 2
V- 8 2 2 4 6
1/ 4” 1 5 2 4 C M c oil 1/ 4” 2 5 0 0 C m c oil
C O D E N O. 2 0 1 6- 1 0 4- 3
V- 6 2 4 2 3
1/ 4” Cir cl e Fl o w N o z zl e Kit A s s e m bl e d wit h 1 5 Si d e Fl o w N o z zl e s 1/ 4” & 1 E n d C a p 1/ 4”
V- 8 2 0 1 7 V- 8 2 0 3 7
C O D E N O. 2 0 1 6- 1 2 3
1/ 4” 9 0 o S pr a y B ar
3/ 8” Fl at N o z zl e s,
C O D E N O. 2 0 1 6- 1 2 5
3/ 8” Fl at N o z zl e s,
C O D E N O. 2 0 1 6- 1 2 6
V- 8 2 2 2 1
1/ 4” E xt e n d e d El e m e nt s,
V- 8 2 0 2 7
V- 8 2 2 4 1
1/ 4” E x d e n d e d El e m e nt s,
V- 8 2 0 4 7
C O D E N O. 2 0 1 6- 1 0 7
1/ 4” 9 0 o S pr a y B ar
C O D E N O. 2 0 1 6- 1 2 4
C O D E N O. 2 0 1 6- 1 0 5
C O D E N O. 2 0 1 6- 1 0 6
1/ 4” 9 0 o N o z zl e s,
C O D E N O. 2 0 1 6- 1 2 2
C O D E N O. 2 0 1 6- 1 0 3
V- 8 2 0 5 1
C O D E N O. 2 0 1 6- 1 2 1
1” Fl ar e N o z zl e s,
C O D E N O. 2 0 1 6- 1 2 7
1” Fl ar e N o z zl e s,
C O D E N O. 2 0 1 6- 1 2 8
V- 8 2 2 2 2
1/ 4” El e m e nt Cl a m p s,
V- 8 2 2 4 2
1/ 4” El e m e nt Cl a m p s,
V- 8 2 3 2 6
C O D E N O. 2 0 1 6- 1 0 8 C O D E N O. 2 0 1 6- 1 0 9
1/ 4” 9 0 o N o z zl e Kit 1 E a c h: 1/ 1 6”, 1/ 8”, 1/ 4” & S pr a y B ar N o z zl e s
V- 8 2 0 2 5 V- 8 2 0 3 5
1/ 8” P T C o n n e ct or s
C O D E N O. 2 0 1 6- 1 2 9
1/ 8”- P T C o n n e ct or s C O D E N O. 2 0 1 6- 1 3 0
C O D E N O. 2 0 1 6- 1 1 0
V- 8 2 0 2 5 A V- 8 2 0 3 5 A
B71
V- 8 2 0 2 2
1/ 1 6” R o u n d N o z zl e s
V- 8 2 0 4 2
1/ 1 6” R o u n d N o z zl e s
1/ 8” N P T C o n n e ct or s
C O D E N O. 2 0 1 6- 1 3 1
1/ 8” N P T C o n n e ct or s
C O D E N O. 2 0 1 6- 1 3 2
C O D E N O. 2 0 1 6- 1 1 1
C O D E N O. 2 0 1 6- 1 1 2
V- 8 2 0 2 3
1/ 8” R o u n d N o z zl e s
V- 8 2 0 4 3
1/ 8” R o u n d N o z zl e s
V- 8 2 0 2 6 V- 8 2 0 3 6
1/ 4” P T C o n n e ct or s
C O D E N O. 2 0 1 6- 1 3 3
1/ 4” P T C o n n e ct or s
C O D E N O. 2 0 1 6- 1 3 4
C O D E N O. 2 0 1 6- 1 1 3
C O D E N O. 2 0 1 6- 1 1 4
V- 8 2 0 2 4
1/ 4” R o u n d N o z zl e s
V- 8 2 0 4 4
1/ 4” R o u n d N o z zl e s
C O D E N O. 2 0 1 6- 1 1 5
G RI N DI N G M A C HI N E A C C E S S O RI E S
C O D E N O. 2 0 1 6- 1 1 6
V- 8 2 0 2 6 A
1/ 4” N P T C o n n e ct or s
V- 8 2 0 3 6 A
1/ 4” N P T C o n n e ct or s
C O D E N O. 2 0 1 6- 1 3 5 C O D E N O. 2 0 1 6- 1 3 6
1/ 4 ” S y st e m
1/ 4 ” I N SI D E DI A M E T E R
V- 8 2 0 2 8 V- 8 2 0 3 8
V- 8 2 0 1 1 V- 8 2 0 3 1
V- 8 2 0 1 2 V- 8 2 0 3 2
FI G. I T E M N O. D E S C RI P TI O N
C O D E N O. 2 0 1 6- 1 3 7 C O D E N O. 2 0 1 6- 1 3 8
C O D E N O. 2 0 1 6- 1 3 9 C O D E N O. 2 0 1 6- 1 4 0
C O D E N O. 2 0 1 6- 1 4 1 C O D E N O. 2 0 1 6- 1 4 2
V- 8 2 0 1 3
3/ 8” S A E Fl ar e N ut A d a pt er s,
V- 8 2 0 3 3
3/ 8” S A E Fl ar e N ut A d a pt er s,
C O D E N O. 2 0 1 6- 1 4 3
7. 8 g
V- 8 2 2 2 9
1/ 4” S wi v el N o z zl e 6 0,
V- 8 2 2 4 9
1/ 4” S wi v el N o z zl e 6 0,
V- 8 2 7 2 1
1/ 4” N P T M al e H o s e Ni p pl e
V- 8 2 7 3 1
1/ 4” N P T M al e H o s e Ni p pl e
1/ 4” S A E Fl ar e N ut A d a pt er s,
V- 8 2 0 3 4
1/ 4” S A E Fl ar e N ut A d a pt er s,
C O D E N O. 2 0 1 6- 1 4 5
C O D E N O. 2 0 1 6- 1 4 6
V- 6 2 4 2 0 V- 6 2 4 3 0
C O D E N O. 2 0 1 6- 1 4 7
1/ 4” El b o w Fitti n g s
C O D E N O. 2 0 1 6- 1 4 8
V- 6 2 4 2 6 V- 6 2 4 3 6
C O D E N O. 2 0 1 6- 1 4 9 C O D E N O. 2 0 1 6- 1 5 0
C O D E N O. 2 0 1 6- 1 5 7
C O D E N O. 2 0 1 6- 1 5 8
C O D E N O. 2 0 1 6- 1 5 9
V- 8 2 7 2 2
1/ 4” C o n n e cti o n V al v e s,
V- 8 2 7 3 2
1/ 4” C o n n e cti o n V a.l v e s,
V- 8 2 5 2 2
A ci d R e si st a nt 1/ 4” C o n n e cti o n V al v e s,
V- 8 2 5 3 2
1/ 4” C o n n e cti o n V al v e s,
V- 8 2 7 2 3
1/ 4” M al e P T V al v e s,
V- 8 2 7 3 3
1/ 4” M al e P T V al v e s,
V- 8 2 5 2 3
A ci d R e si st a nt 1/ 4” M al e N P T V al v e s,
V- 8 2 5 3 3
1/ 4” M al e N P T V al v e s,
V- 8 2 7 2 4
1/ 4” F e m al e P T V al v e s,
V- 8 2 7 4 4
1/ 4” F e m al e P T V al v e s,
V- 8 2 5 2 4
A ci d R e si st a nt 1/ 4” F e m al e N P T V al v e s,
V- 8 2 5 3 4
1/ 4” F e m al e N P T V al v e s,
C O D E N O. 2 0 1 6- 1 4 4
V- 8 2 0 1 4
C O D E N O. 2 0 1 6- 1 5 6
C O D E N O. 2 0 1 6- 1 6 2 C O D E N O. 2 0 1 6- 1 6 3
C O D E N O. 2 0 1 6- 1 6 4 C O D E N O. 2 0 1 6- 1 6 5
C O D E N O. 2 0 1 6- 1 6 6 C O D E N O. 2 0 1 6- 1 6 7
C O D E N O. 2 0 1 6- 1 6 8 C O D E N O. 2 0 1 6- 1 6 9
C O D E N O. 2 0 1 6- 1 7 0 C O D E N O. 2 0 1 6- 1 7 1
C O D E N O. 2 0 1 6- 1 7 2 C O D E N O. 2 0 1 6- 1 7 3
V- 8 2 7 2 5 V- 8 2 7 4 5
C O D E N O. 2 0 1 6- 1 7 4
C O D E N O. 2 0 1 6- 1 7 5
V- 6 2 4 2 2
1/ 4” Si d e Fl o w N o z zl e s,
V- 6 2 4 4 2
1/ 4” Si d e Fl o w N o z zl e s,
C O D E N O. 2 0 1 6- 1 5 1
V- 5 2 4 0 0
C O D E N O. 2 0 1 6- 1 5 2
M o d ul ar M a nif ol d S y st e m 1/ 4” 1/ 4” El b o w Fitti n g- 1 p c s 1/ 4” T Fitti n g s- 3 p c s 1/ 4” M o u nti n g s cr e w- 3 p c s C O D E N O. 2 0 1 6- 1 7 6
V- 6 2 4 2 4
1/ 4” E n d C a p s,
V- 6 2 4 4 4
1/ 4” E n d c a p s,
V- 8 2 2 2 8
1/ 4” S wi v el N o z zl e 4 0,
V- 8 2 2 4 8
1/ 4” S wi v el N o z zl e 4 0,
C O D E N O. 2 0 1 6- 1 5 3- 1
V- 5 2 4 1 0
C O D E N O. 2 0 1 6- 1 5 3- 2
V- 5 2 4 1 6
1/ 4” M ai n Fl o w C o ntr ol M a nif ol d S y st e m 1/ 4” M o d ul ar M a nif ol d- 1 p c s 1/ 4 ” C o n n e cti o n V al v e s- 5 C O D E N O. 2 0 1 6- 1 7 7 pcs C O D E N O. 2 0 1 6- 1 7 8
C O D E N O. 2 0 1 6- 1 5 4 C O D E N O. 2 0 1 6- 1 5 5
V- 2 6 1 7 1
1/ 4” H o s e A s s e m bl y pli er s
C O D E N O. 2 0 1 6- 1 7 9
G RI N DI N G M A C HI N E A C C E S S O RI E S
B72
C O OL A NT H OSE
FI G. I T E M N O. D E S C RI P TI O N
1/ 2 ” S y st e m FI G. I T E M N O. D E S C RI P TI O N V- 8 4 0 4 0
1/ 2 ” I N SI D E DI A M E T E R FI G. I T E M N O. D E S C RI P TI O N
1/ 2” H o s e Kit 3 3 C M L e n gt h wit h Fitti n g s: 2- 1 4 C M S e g m e nt s 1/ 4”, 3/ 8”, 1/ 2” N o z zl e s 3/ 8”, 1/ 2” M al e P T c o n n e ct or s C O D E N O. 2 0 1 6- 2 0 1
V- 8 4 0 4 0 A
1/ 2” H o s e Kit 3 3 C M L e n gt h wit h Fitti n g s: 2- 1 4 C M S e g m e nt s 1/ 4”, 3/ 8”, N o z zl e s 3/ 8”, 1/ 2” M al e N P T c o n n e ct or s C O D E N O. 2 0 1 6- 2 0 2
V- 8 4 4 4 0
1/ 2” E xt e n d e d El e m e nt Kit wit h El e m e nt Cl a m p s I n cl u d e s 4 e a c h of: 1/ 2” E xt e n d e d El e m e nt s 1/ 2” El e m e nt Cl a m p s
C O D E N O. 2 0 1 6- 2 0 3
V- 8 4 0 4 1 V- 8 4 0 8 1
C O D E N O. 2 0 1 6- 2 0 4
1/ 2” 1 5 2 4 C M c oil
C O D E N O. 2 0 1 6- 2 0 5
V- 8 4 0 9 1
1/ 2” 2 5 0 0 C M c oil
V- 6 4 6 4 3
1/ 2” Cir cl e Fl o w N o z zl e Kit A s s e m bl e d wit h 1 5 Si d e Fl o w N o z zl e s 1/ 2” & 1 E n d C a p 1/ 2”
FI G. I T E M N O. D E S C RI P TI O N
V- 8 4 4 4 5
1/ 2” 9 0 o N o z zl e s,
V- 6 4 6 2 6
1/ 2” T Fitti n g s,
V- 8 4 4 6 5
1/ 2” 9 0 o N o z zl e s,
V- 6 4 6 4 6
1/ 2” T Fitti n g s,
V- 8 4 4 4 6
1/ 2” 9 0 o S pr a y B ar, 1/ 2” 9 0 o S pr a y B ar,
C O D E N O. 2 0 1 6- 2 2 3
V- 6 4 6 2 2
1/ 2” Si d e Fl o w N o z zl e s,
V- 8 4 4 6 6
C O D E N O. 2 0 1 6- 2 2 4
V- 6 4 6 4 2
1/ 2” Si d e Fl o w N o z zl e s,
C O D E N O. 2 0 1 6- 2 2 5
V- 6 4 6 2 4
1/ 2” E n d c a p s,
C O D E N O. 2 0 1 6- 2 2 6
V- 6 4 6 4 4
1/ 2” E n d c a p s,
C O D E N O. 2 0 1 6- 2 2 7
V- 8 4 7 2 2
1/ 2” c o n n e cti o n V al v e s,
C O D E N O. 2 0 1 6- 2 2 8
V- 8 4 7 4 2
1/ 2” c o n n e cti o n V al v e s,
V- 8 4 5 2 2
A ci d R e si st a nt 1/ 2” c o n n e cti o n V al v e s,
V- 8 4 5 4 2
1/ 2” c o n n e cti o n V al v e s,
V- 8 4 7 2 3
1/ 2” M al e P T V al v e s,
V- 8 4 7 4 3
1/ 2” M al e P T V al v e s,
V- 8 4 5 2 3
A ci d R e si st a nt 1/ 2” M al e N P T V al v e s,
V- 8 4 5 4 3
1/ 2” M al e N P T V al v e s,
V- 8 4 7 2 4
1/ 2” F e m al e P T V al v e s,
V- 8 4 7 4 4
1/ 2” F e m al e P T V al v e s,
V- 8 4 5 2 4
A ci d R e si st a nt 1/ 2” F e m al e N P T V al v e s,
V- 8 4 5 4 4
1/ 2” F e m al e N P T V al v e s,
C O D E N O. 2 0 1 6- 2 2 1 C O D E N O. 2 0 1 6- 2 2 2
V- 8 4 0 4 7
1 1/ 4” Fl ar e N o z zl e s,
V- 8 4 0 6 7
1 1/ 4” Fl ar e N o z zl e s,
V- 8 4 0 5 0
1 3/ 4” Fl ar e N o z zl e s,
V- 8 4 0 7 0
1 3/ 4” Fl ar e N o z zl e s,
V- 8 4 0 5 2
2 1/ 2” Fl ar e N o z zl e s,
V- 8 4 0 7 2
2 1/ 2” Fl ar e N o z zl e s,
C O D E N O. 2 0 1 6- 2 2 9 C O D E N O. 2 0 1 6- 2 3 0
C O D E N O. 2 0 1 6- 2 0 6
V- 8 4 0 4 6
3/ 8” P T C o n n e ct or s
V- 8 4 0 6 6
3/ 8” P T C o n n e ct or s
C O D E N O. 2 0 1 6- 2 3 1 C O D E N O. 2 0 1 6- 2 3 2
C O D E N O. 2 0 1 6- 2 0 7
V- 8 4 4 4 1
1/ 2” E xt e n d e d El e m e nt s,
V- 8 4 4 6 1
1/ 2” E xt e n d e d El e m e nt s,
V- 8 4 3 4 6
3/ 8” N P T C o n n e ct or s
V- 8 4 0 6 6 A
3/ 8” N P T C o n n e ct or s
C O D E N O. 2 0 1 6- 2 0 9
9 0 o N o z zl e Kit 1 E a c h: 1/ 4”, 3/ 8”, 1/ 2” & S pr a y B ar N o z zl e s
V- 8 4 0 4 4
1/ 4” R o u n d N o z zl e s,
V- 8 4 0 6 4
1/ 4” R o u n d N o z zl e s,
C O D E N O. 2 0 1 6- 2 1 1
C O D E N O. 2 0 1 6- 2 3 4
V- 8 4 0 4 5
1/ 2” P T C o n n e ct or s
V- 8 4 0 6 5
1/ 2” P T C o n n e ct or s
C O D E N O. 2 0 1 6- 2 3 6
V- 8 4 0 4 5 A
1/ 2” N P T C o n n e ct or s
V- 8 4 0 6 5 A
1/ 2” N P T C o n n e ct or s
V- 8 4 0 4 8
1/ 2” Y Fitti n g s
V- 8 4 0 6 8
1/ 2” Y Fitti n g s
C O D E N O. 2 0 1 6- 2 3 8
C O D E N O. 2 0 1 6- 2 3 9 C O D E N O. 2 0 1 6- 2 4 0
V- 8 4 0 6 9
1/ 2” t o 1/ 4” Y R e d u c er s,
C O D E N O. 2 0 1 6- 2 1 3
V- 8 4 6 5 1
1/ 2”t o 1/ 4” A d a pt er s,
C O D E N O. 2 0 1 6- 2 1 4
V- 8 4 8 5 1
1/ 2”t o 1/ 4” A d a pt er s,
3/ 8” R o u n d N o z zl e s,
V- 8 4 0 6 2
3/ 8” R o u n d N o z zl e s,
1/ 2” R o u n d N o z zl e s,
V- 8 4 0 1 1
V- 8 4 0 6 3
1/ 2” R o u n d N o z zl e s,
V- 8 4 0 3 1
C O D E N O. 2 0 1 6- 2 1 5 C O D E N O. 2 0 1 6- 2 1 6
V- 8 4 4 4 3
1/ 4” 9 0 o N o z zl e s,
V- 8 4 4 6 3
1/ 4” 9 0 o N o z zl e s,
V- 8 4 4 4 4
3/ 8” 9 0 o N o z zl e s,
V- 8 4 4 6 4
3/ 8” 9 0 o N o z zl e s,
C O D E N O. 2 0 1 6- 2 5 7 C O D E N O. 2 0 1 6- 2 5 8
C O D E N O. 2 0 1 6- 2 5 9 C O D E N O. 2 0 1 6- 2 6 0
C O D E N O. 2 0 1 6- 2 6 1 C O D E N O. 2 0 1 6- 2 6 2
C O D E N O. 2 0 1 6- 2 6 3 C O D E N O. 2 0 1 6- 2 6 4
C O D E N O. 2 0 1 6- 2 6 5 C O D E N O. 2 0 1 6- 2 6 6
C O D E N O. 2 0 1 6- 2 6 7 C O D E N O. 2 0 1 6- 2 6 8
C O D E N O. 2 0 1 6- 2 6 9
C O D E N O. 2 0 1 6- 2 7 0
C O D E N O. 2 0 1 6- 2 4 2
C O D E N O. 2 0 1 6- 2 4 3
5 6. 2 g C O D E N O. 2 0 1 6- 2 4 5 C O D E N O. 2 0 1 6- 2 4 6
V- 8 4 0 1 3
1/ 4” S A E
V- 8 4 0 3 3
1/ 4” S A E
Fl a r e
V- 5 4 4 1 0
M ai n Fl o w C o ntr ol M a nif ol d S y st e m 1/ 2” 1- M o d ul ar M a nif ol d 1/ 2” 5- C o n n e cti o n V al v e s 1/ 2”
C O D E N O. 2 0 1 6- 2 7 2
N ut
C O D E N O. 2 0 1 6- 2 4 7
Fl a r e
M o d ul ar M a nif ol d S y st e m 1/ 2” 1/ 2”- El b o w Fitti n g- 1 p c s 1 pcs 1/ 2”- T Fitti n g s- 3 p c s 1/ 2”- M o u nti n g s cr e w s3 pcs C O D E N O. 2 0 1 6- 2 7 1
C O D E N O. 2 0 1 6- 2 4 4
N ut
V- 5 4 4 1 6
of 2
C O D E N O. 2 0 1 6- 2 7 3
C O D E N O. 2 0 1 6- 2 4 8
C O D E N O. 2 0 1 6- 2 1 9
V- 6 4 6 2 0
1/ 2” El b o w Fitti n g s,
C O D E N O. 2 0 1 6- 2 2 0
V- 6 4 6 4 0
1/ 2” El b o w Fitti n g s,
G RI N DI N G M A C HI N E A C C E S S O RI E S
C O D E N O. 2 0 1 6- 2 5 6
V- 8 4 7 4 5
C O D E N O. 2 0 1 6- 2 4 1
C O D E N O. 2 0 1 6- 2 1 7 C O D E N O. 2 0 1 6- 2 1 8
C O D E N O. 2 0 1 6- 2 5 5
V- 8 4 7 2 5
V- 5 4 4 0 0
V- 8 4 0 4 3
C O D E N O. 2 0 1 6- 2 5 4
C O D E N O. 2 0 1 6- 2 3 7
1/ 2” t o 1/ 4” Y R e d u c er s,
V- 8 4 0 4 2
C O D E N O. 2 0 1 6- 2 5 3
C O D E N O. 2 0 1 6- 2 3 5
V- 8 4 0 4 9
C O D E N O. 2 0 1 6- 2 1 2
C O D E N O. 2 0 1 6- 2 5 2
C O D E N O. 2 0 1 6- 2 3 3
C O D E N O. 2 0 1 6- 2 0 8
C O D E N O. 2 0 1 6- 2 1 0
B73
V- 8 4 0 4 6 A
C O D E N O. 2 0 1 6- 2 5 1
C O D E N O. 2 0 1 6- 2 4 9 C O D E N O. 2 0 1 6- 2 5 0
V- 2 6 1 7 2
1/ 2” H o s e A s s e m bl y pli er s
C O D E N O. 2 0 1 6- 2 7 4
3/ 8 ” S y st e m V- 8 3 0 3 0
V- 8 3 0 3 0 A
V- 8 3 4 3 0
V- 8 3 4 3 0 A
3/ 8” H o s e Kit 8 p c s of 3/ 8” S e g m e nt - 2 s et s 3/ 8” N o z zl e s 3/ 8” M al e P T c o n n e ct or s C O D E N O. 2 0 1 6- 2 7 5 3/ 8” H o s e Kit 8 p c s of 3/ 8” S e g m e nt - 2 s et s 3/ 8” N o z zl e s 1 3/ 8” M al e N P T c o n n e ct or s C O D E N O. 2 0 1 6- 2 7 6
V- 8 3 0 3 3
3/ 8” H o s e Kit 8 p c s of 3/ 8” S e g m e nt - 2 p c s 1/ 4”, 3/ 8”, 1/ 2” N o z zl e s 3/ 8” & 1/ 2” M al e P T c o n n e ct or Cs O D E N O. 2 0 1 6- 2 7 7 3/ 8” H o s e Kit 8 p c s of 3/ 8” S e g m e nt - 2 p c s 1/ 4”, 3/ 8”, 1/ 2” N o z zl e s 3/ 8” & 1/ 2” M al e N P T c o n n e ct or s
C O D E N O. 2 0 1 6- 2 7 8
V- 8 3 0 3 1
3/ 8” S e g m e nt p a c k ( 2- 1 4. 5 C M 8 p c s)
V- 8 3 0 5 1
3/ 8” 7 6 2 C M c oil
V- 8 3 0 9 1
3/ 8” 1 5 2 4 C M c oil W ei g ht: 2. 8 k g s
V- 8 3 0 3 2
1/ 4” R o u n d N o z zl e s, p a c k of 4 C O D E N O. 2 0 1 6- 2 8 2 1/ 4” R o u n d N o z zl e s, p a c k of 5 0 C O D E N O. 2 0 1 6- 2 8 3
V- 8 3 0 5 2
FI G. I T E M N O. D E S C RI P TI O N
C O D E N O. 2 0 1 6- 2 7 9 C O D E N O. 2 0 1 6- 2 8 0
C O D E N O. 2 0 1 6- 2 8 1
V- 8 3 0 5 3
3/ 8” R o u n d N o z zl e s, p a c k of 4
V- 8 3 0 3 7
1 1/ 4” Fl ar e N o z zl e s, C O D E N O. 2 0 1 6- 2 9 8 p a c k of 2
3/ 8” R o u n d N o z zl e s, p a c k of 5 0
V- 8 3 0 5 7
1 1/ 4” Fl ar e N o z zl e s, p a c k of 2 0 C O D E N O. 2 0 1 6- 2 9 9
Wi g ht: 1 9 7. 2 g
V- 8 3 0 5 8
3/ 8” Y Fitti n g, p a c k of 2 0
C O D E N O. 2 0 1 6- 2 0 1 6- 2 8 4
C O D E N O. 2 0 1 6- 2 0 1 6- 2 8 5
V- 8 3 0 3 4
1/ 2” R o u n d N o z zl e s, C O D E N O. 2 0 1 6- 2 8 6 p a c k of 4
V- 8 3 0 5 4
1/ 2” R o u n d N o z zl e s, p a c k of 5 0 C O D E N O. 2 0 1 6- 2 8 7
V- 8 3 7 2 3
3/ 8” M al e P T V al v e, C O D E N O. 2 0 1 6- 3 0 2 p a c k of 2
V- 8 3 0 2 6
1/ 4” P T C o n n e ct or, p a c k of 4
V- 8 3 7 4 3
3/ 8” M al e P T V al v e, p a c k of 1 0 C O D E N O. 2 0 1 6- 3 0 3
V- 8 3 0 4 6
V- 6 6 6 2 0
3/ 4” El b o w Fitti n g, C O D E N O. 2 0 1 6- 3 8 0 p a c k of 2
V- 6 6 6 4 0
3/ 4” El b o w Fitti n g, p a c k of 2 0
V- 8 6 0 6 0
3/ 4” H o s e Kit 6 p c s of 3/ 4” S e g m e nt- 2 s et s 5/ 8” & 3/ 4” N o z zl e s 3/ 4” M al e P T C o n n e ct or
C O D E N O. 2 0 1 6- 3 8 1
1/ 4” P T C o n n e ct or, p a c k of 5 0 C O D E N O. 2 0 1 6- 2 8 9
V- 8 3 0 3 5
3/ 8” P T C o n n e ct or, p a c k of 4
V- 8 3 0 5 5
3/ 8” P T C o n n e ct or, p a c k of 5 0 C O D E N O. 2 0 1 6- 2 9 1
V- 8 3 7 4 3 A
3/ 8” M al e N P T V al v e, p a c k of 1 0
V- 8 3 0 3 5 A
3/ 8” N P T C o n n e ct or, p a c k of 4
V- 8 3 7 2 4
V- 8 3 0 5 5 A
3/ 8” N P T C o n n e ct or, p a c k of 5 0 C O D E N O. 2 0 1 6- 2 9 3
3/ 8” F e m al e P T V al v e, p a c k of 2
V- 8 3 7 4 4
V- 8 3 0 3 6
1/ 2” P T C o n n e ct or, p a c k of 4
3/ 8” F e m al e P T V al v e, p a c k of 1 0
V- 8 3 0 5 6
1/ 2” P T C o n n e ct or, p a c k of 5 0 C O D E N O. 2 0 1 6- 2 9 5
C O D E N O. 2 0 1 6- 2 9 0
V- 8 3 0 3 6 A V- 8 3 0 5 6 A
V- 8 6 0 6 4 A V- 8 6 0 7 4 A
V- 8 6 0 8 1 V- 8 6 0 9 1
1/ 2” N P T C o n n e ct or, p a c k of 4
C O D E N O. 2 0 1 6- 2 9 6
1/ 2” N P T C o n n e ct or, p a c k of 5 0 C O D E N O. 2 0 1 6- 2 9 7
V- 8 6 0 7 3
V- 8 6 0 2 2
3/ 4” M a g n eti c B a s e, p a c k of 1
C O D E N O. 2 0 1 6- 4 1 3
3/ 4” S e g m e nt P a c k ( 2- 1 5 C M 6 p c s)
V- 8 6 0 6 7
3” Fl ar e N o z zl e, C O D E N O. 2 0 1 6- 4 1 6 p a c k of 2 3” Fl ar e N o z zl e, p a c k of 2 0 C O D E N O. 2 0 1 6- 4 1 7
3/ 4” 1 5 2 4 C M C oil
V- 8 6 0 7 2
V- 8 6 0 6 4 V- 8 6 0 7 4
C O D E N O. 2 0 1 6- 4 1 5
C O D E N O. 2 0 1 6- 4 0 3
3/ 4” 2 5 0 0 C M C oil
V- 8 6 0 6 8
5/ 8” R o u n d N o z zl e, p a c k of 4
V- 8 6 0 7 8
5/ 8” R o u n d N o z zl e, p a c k of 5 0
V- 8 6 0 6 9
C O D E N O. 2 0 1 6- 4 0 5
3/ 4” R o u n d N o z zl e, p a c k of 4
C O D E N O. 2 0 1 6- 4 0 7
3/ 4” R o u n d N o z zl e, p a c k of 5 0 C O D E N O. 2 0 1 6- 4 0 8 3/ 4” P T C o n n e ct or p a c k of 4
C O D E N O. 2 0 1 6- 4 0 9
3/ 4” P T N o z zl e, p a c k of 5 0 C O D E N O. 2 0 1 6- 4 1 0
V- 8 6 0 7 9 V- 8 6 0 5 1 V- 8 6 0 7 1 V- 8 6 0 1 1 V- 8 6 0 3 1
3/ 8” F e m al e N P T V al e v, p a c k of 2
V- 8 3 7 4 4 A
3/ 8” F e m al e N P T V al e v, p a c k of 1 0
V- 2 6 1 7 6
3/ 8” H o s e A s s e m bl y C O D E N O. 2 0 1 6- 3 1 0 pli er s
C O D E N O. 2 0 1 6- 3 0 8
C O D E N O. 2 0 1 6- 3 0 9
3/ 4 ” I N SI D E DI A M E T E R FI G. I T E M N O. D E S C RI P TI O N V- 8 6 7 4 2
V- 8 6 7 4 3 V- 8 6 7 2 3 A
C O D E N O. 2 0 1 6- 4 1 4
V- 8 6 0 7 7
V- 8 3 7 2 4 A
V- 8 6 7 2 3
S hi el d M o u nti n g El b o w, p a c k of 2
C O D E N O. 2 0 1 6- 4 0 6
V- 8 6 0 6 2
3/ 4” N P T N o z zl e, p a c k of 5 0 C O D E N O. 2 0 1 6- 4 1 2 3/ 4” Fi x e d M o u nt, p a c k of 2
C O D E N O. 2 0 1 6- 3 0 6
V- 8 6 7 2 2
C O D E N O. 2 0 1 6- 4 1 1
V- 8 6 0 2 3
C O D E N O. 2 0 1 6- 4 0 4
V- 8 6 0 6 3
3/ 4” N P T C o n n e ct or p a c k of 4
3/ 4” H o s e Kit 6 p c s of 3/ 4” S e g m e nt- 2 s et s 5/ 8” & 3/ 4” N o z zl e s 3/ 4” M al e P T C o n n e ct or
C O D E N O. 2 0 1 6- 4 0 2
C O D E N O. 2 0 1 6- 3 0 5
C O D E N O. 2 0 1 6- 3 0 7
C O D E N O. 2 0 1 6- 2 9 4
V- 8 6 0 2 1
3/ 8” M al e N P T V al v e, p a c k of 2
C O D E N O. 2 0 1 6- 3 0 4
C O D E N O. 2 0 1 6- 2 9 2
FI G. I T E M N O. D E S C RI P TI O N
C O D E N O. 2 0 1 6- 4 0 1
V- 8 6 0 6 1
Wi g ht: 1 2 7 g
V- 8 3 7 2 3 A
C O D E N O. 2 0 1 6- 4 0 0
V- 8 6 0 6 0 A
C O D E N O. 2 0 1 6- 3 2 0
C O D E N O. 2 0 1 6- 2 8 8
3/ 4 ” S y st e m FI G. I T E M N O. D E S C RI P TI O N
FI G. I T E M N O. D E S C RI P TI O N
3/ 4” Y Fitti n g, p a c k of 2 C O D E N O. 2 0 1 6- 4 1 8 3/ 4” Y Fitti n g, p a c k of 2 0 C O D E N O. 2 0 1 6- 4 1 9 3/ 4” t o 1/ 2” Y R e d u c er, C O D E N O. 2 0 1 6- 4 2 0 p a c k of 2 3/ 4” t o 1/ 2” Y R e d u c er, p a c k of 2 0 C O D E N O. 2 0 1 6- 4 2 1 3/ 4” t o 1/ 2” A d a pt er, p a c k of 2 C O D E N O. 2 0 1 6- 4 2 2 3/ 4” t o 1/ 2” A d a pt er, p a c k of 2 0 C O D E N O. 2 0 1 6- 4 2 3 3/ 4” D o u bl e S o c k et, p a c k of 4 C O D E N O. 2 0 1 6- 4 2 4 3/ 4” D o u bl e S o c k et, p a c k of 2 0 C O D E N O. 2 0 1 6- 4 2 5
V- 8 6 7 4 3 A V- 8 6 7 2 4 V- 8 6 7 4 4 V- 8 6 7 2 4 A V- 8 6 7 4 4 A V- 2 6 1 7 7
3/ 4” C o n n e cti o n V al v e C O D E N O. 2 0 1 6- 4 0 9 p a c k of 2 3/ 4” C o n n e cti o n V al v e p a c k of 1 0 C O D E N O. 2 0 1 6- 4 3 0 3/ 4” M al e P T V al v e p a c k of 2 C O D E N O. 2 0 1 6- 4 3 1 3/ 4” M al e P T V al v e p a c k of 1 0 C O D E N O. 2 0 1 6- 4 3 2 3/ 4” M al e N P T V al v e p a c k of 2 C O D E N O. 2 0 1 6- 4 3 3 3/ 4” M al e N P T V al v e p a c k of 1 0 C O D E N O. 2 0 1 6- 4 3 4 3/ 4” F e m al e P T V al v e p a c k of 2 C O D E N O. 2 0 1 6- 4 3 5 3/ 4” F e m al e P T V al v e p a c k of 1 0 C O D E N O. 2 0 1 6- 4 3 6 3/ 4” F e m al e N P T V al v e p a c k of 2 C O D E N O. 2 0 1 6- 4 3 7 3/ 4” F e m al e N P T V al v e p a c k of 1 0 C O D E N O. 2 0 1 6- 4 3 8 3/ 4” H o s e A s s e m bl y Pli er s C O D E N O. 2 0 1 6- 4 2 6
V- 8 6 7 4 4
3/ 4” F e m al e P T V al v e, p a c k of 1 0 C O D E N O. 2 0 1 6- 4 2 7
V- 8 6 7 4 4 A
3/ 4” F e m al e N P T V al v e, p a c k of 1 0 C O D E N O. 2 0 1 6- 4 2 8
G RI N DI N G M A C HI N E A C C E S S O RI E S
B74
C O OL A NT H OSE
FI G. I T E M N O. D E S C RI P TI O N
3/ 8 ” I N SI D E DI A M E T E R
P a p er Filt er F E AT U R E S A p plli c a bl e t o b ot h f err o u s a n d n o n-f err o u s m et al s. Filtr ati o n eff e ct d e p e n d s o n p a p er a c c ur a c y. U s e 5 0 , 3 0 , or 1 5 . c o n s u m pti o n. St a n d ar d a c c e s s or y: o n e r oll of p a p er.
G u ar a nt e e d f or 3 m o nt h s.
E L E C T RI C B O X
FI L T R A TI O N P A P E R E L E C T RI C B O X
M O T O R S HI E L D
F O UL W AT E R I NL ET
B W
P U MP CL E A N W AT E R TA N K F O UL W AT E R I NL ET C HI P C O L L E C T O R
L
S P O S A L W AT E R O R D E R DI N O. C A L/P AMICIN T Y C A TP AA NCIK T Y 20 100 l P F- 2 0 40 120 l P F- 4 0 60 140 l P F- 6 0 80 160 l P F- 8 0 120 210 l P F- 1 2 0 160 260 l P F- 1 6 0
L
A
P U MP
B
C
W
H
1050 850 600 1200 1000 600 1 3 5 0 11 5 0 6 0 0 1500 1300 600 1500 1300 800 1800 1600 800
400 400 400 400 400 400
720 720 720 720 920 920
610 660 660 660 740 740
HP 1/ 8 1/ 8 1/ 8 1/ 4 1/ 2 1/ 2
O UTLET P F 1/ 2 P F 1/ 2 P F 1/ 2 P F 3/ 4 P F 3/ 4 P F 3/ 4
PAPE R M OT O R
PAPE R W :500 M M L :90 M
R E M A R K S (N.k gWs) ( Gk gW s) C NO O.D E 95 130 140 170 185 250
w h e el s att a c h e d
W :700 M M L :90 M
120 150 170 190 210 280
2 0 2 0- 0 0 1 2 0 2 0- 0 0 2 2 0 2 0- 0 0 3 2 0 2 0- 0 0 4 2 0 2 0- 0 0 5 2 0 2 0- 0 0 6
M a g n eti c S e p ar at or F E AT U R E S S uit a bl e i n h e a v y m a c hi ni n g f or f err o u s m et al. M o st e c o n o mi c i n p ur c h a s e & utili z ati o n c o st.
Pl e a s e n otif y v olt a & p h a s e, w h e n y o u or d eri n g. G u ar a nt e e d f or 3 m o nt h s.
M C- 2 0 ~ 1 6 0 St a n d ar d a c c e s s ori e s a. C hi p c oll e ct or 1 p c
M C- 6 0
O R DE R N O.
M C- 2 0 M C- 4 0 M C- 6 0 M C- 8 0 M C- 1 2 0 M C- 1 6 0
B75
DI S P O S A L C A P A CI T Y L/ MI N 20 40 60 80 120 160
L
W
H
M
N
A
B
D
J
K
I NLET O
O UTLET P
M OT O R
464 464 464 464 530 530
130 150 206 242 270 354
205 205 205 205 245 245
65 65 60 60 68 68
145 145 150 150 185 185
398 398 398 398 456 456
100 120 176 212 230 314
11 11 11 11 11 11
230 250 306 342 380 464
300 300 300 300 345 345
P F 1 1 /2 PF2 PF2 PF2 P F 1 1 /2 PF3
P F 1 1 /2 PF2 PF2 P F 1 1 /2 PF3 PF3
2 2 0 V 3 Ø, 2 5 W 2 2 0 V 3 Ø, 2 5 W 2 2 0 V 3 Ø, 2 5 W 2 2 0 V 3 Ø, 2 5 W 2 2 0 V 3 Ø, 4 0 W 2 2 0 V 3 Ø, 4 0 W
G RI N DI N G M A C HI N E A C C E S S O RI E S
b. pl u g s
2pc
c. El b o w
1pc
d. St e el t u b e s
3pc
N. W G W ( k g s) ( k g s)
C O DE N O.
18 20 25 25 50 60
2 0 2 0- 0 1 0 2 0 2 0- 0 1 1 2 0 2 0- 0 1 2 2 0 2 0- 0 1 3 2 0 2 0- 0 1 4 2 0 2 0- 0 1 5
20 23 28 2 6. 8 65 75
M a g n eti c S e p ar at or & P a p er Filt er A P P LI C A B L E T O T H E F O L L O WI N G W O R KI N G M A C HI N E S
M C+ PF60
M A G N E TI C P A P E R FI L T E R
Pl a n e gri n di n g m a c hi n e. Fi n e- gri n di n g m a c hi n e. H o ni n g m a c hi n e. D e e p- h ol e drill. l nt er n al/ e xt erl e s s c yil n d er gri n d er. C e nt erl e s s gri n d er. Pl e a s e s p e cif y t h e p o w er v olt a g e i n y o ur or d er li st. Pl e a s e n otif y v olt a & p h a s e, w h e n y o u or d eri n g. G u ar a nt e e d f or 3 m o nt h s.
F E AT U R E S
W
E
F
B
F O UL W AT E R I NL ET
C
A p pli c a bl e t o b ot h f err o u s a n d n o n-f err o u s m et al s. Filtr ati o n eff e ct d e p e n d s o n p a p er a c c ur a c y.
L
DI M E N SI O N DI A G R A M St a n d ar d a c c e s s or y: o n e r oll p a p er 3 0 FI L T R A TI O N P A P E R
E L E C T RI C B O X
H
P U MP
D
M O T O R S HI E L D
E L E C T RI C B O X
CL E A N W AT E R TA N K
A
C HI P C O L L E C T O R
M A G N E TI C S E P A R A T O R & P A P E R FI L T E R S P E CI FI C A TI O N S O R DE R N O.
DI S P O S A L W A T E R C A P A CI T Y TANK L/ MI N C A P A CI T Y
L
A
B
C
D
E
F
H
W
P U MP
PAPER H P O UTLET M OT O R
M C + P F- 2 0
20
1 0 0 l 1 0 5 0 8 5 0 6 0 0 4 0 0 5 5 0 6 5 5 P F 1 1 /2 6 1 0 7 2 0
1
/8
P F 1 /2
25 W
M C + P F- 4 0
40
1 2 0 l 1200 1000 6 0 0 4 0 0 5 5 0 7 0 5 P F 2
660 720
1
/8
P F 1 /2
25 W
M C + P F- 6 0
60
1 4 0 l 1 3 5 0 11 5 0 6 0 0 4 0 0 5 5 5 7 0 5 P F 2
660 720
1
/8
P F 1 /2
25 W
M C + P F- 8 0
80
1 6 0 l 1500 1300 6 0 0 4 0 0 5 5 5 7 0 5 P F 2
660 720
1
/4
P F 3 /4
25 W
M C + P F- 1 2 0
120
2 1 0 l 1 5 0 0 1 3 0 0 8 0 0 4 0 0 5 9 0 7 5 0 P F 2 1 /2 7 4 0 9 2 0
1
/2
P F 3 /4
40 W
M C + P F- 1 6 0
180
2 6 0 l 1800 1600 8 0 0 4 0 0 6 0 5 7 5 0 P F 3
740 920
1
/2
P F 3 /4
40 W
M C + P F- 2 4 0
240
4 4 0 l 1550 1350 1 0 6 0 4 3 0 6 4 0 9 1 5 P F 3
740 1330
1
PF1
60 W
PAPER
R E M A R K S (N.k gWs) ( Gk gW s) C NO O.D E
W :500 M M L : 90 M w h e el s
W :700 M M L : 90 M
11 5
1 4 0 2 0 2 0- 0 2 0
150
1 7 5 2 0 2 0- 0 2 1
165
2 0 0 2 0 2 0- 0 2 2
190
2 2 5 2 0 2 0- 0 2 3
235
2 7 5 2 0 2 0- 0 2 4
290
3 3 5 2 0 2 0- 0 2 5
W :1000 M M no L : 90 M w h e el s
G RI N DI N G M A C HI N E A C C E S S O RI E S
2 0 2 0- 0 2 6
B76
C o ol a nt T a n k
W AT E R TA N K C A P A CI T Y 4 0 l
D u st C oll e ct or
W AT E R TA N K C A P A CI T Y 1 0 l
U nit: m m
O R D E R N O.
Lx Wx H
M ot or
V C- 6 0 1
500x300x530
1/ 8 H P
G. W.
C O D E N O.
O R D E R N O.
Lx Wx H
M ot or
2 0 2 0- 0 3 0
V C- 6 0 2
560x370x720
1/ 2 H P
U nit: m m
G. W.
C O D E N O. 2 0 2 0- 0 2 6
D u st- S u cti o n A n d C o ol a nt T a n k
T W OI N O N E
P L E A S E N O TI F Y V O L T A & P H A S E, W H E N Y O U O R D E RI N G. C o m bi n ati o n c o ol a nt a n d 1. D u st s u cti o n m ot or 2. C o ol a nt p u m p 3. Filt er a c c e s s d o or 4. Filt er 5. C o ol a nt r et ur n pi p e 6. D u st i nl et pi p e 7. P u m p o utl et W A T E R T A N K C A P A CI T Y 4 5
O R D E R N O.
V C- 6 0 3
Lx Wx H
l
U nit: m m
M ot or
G. W.
6 9 0 x 4 0 0 x 7 8 0 1/ 2 H P x 1, 1/ 8 H P x 1
C O D E N O. 2 0 2 0- 0 2 7
D u st- S u cti o n & C o ol a nt T a n k W/ M a g n eti c S e p ar at or
T H R E EI N O N E
P L E A S E N O TI F Y V O L T A & P H A S E, W H E N Y O U O R D E RI N G.
W A T E R T A N K C A P A CI T Y 4 5
O R D E R N O.
V C- 6 0 6
B77
G RI N DI N G M A C HI N E A C C E S S O RI E S
Lx Wx H
l
M ot or
9 0 0 x 7 8 0 x 8 5 0 1/ 2 H P x 1, 1/ 8 H P x 1
U nit: m m
G. W.
C O D E N O. 2 0 2 0- 0 2 8
Oil S ki m m er Wit h B elt T y p e
OI L S KI M M E R F O R M A C HI N E T O O L. F O R C L E A R F L O A TI N G OI L O N C U T TI N G LI Q UI D.
F E AT U R E S
O R D E R N O. V O S- 8 0 0 O R D E R N O. V O S- 8 1 0
c o m pl et el y g etti n g ri d of dir yt oil. M u c h l e s s c o st of r u n ni n g., wit h o ut a n y m at eri al e x p e n d e d. S m all v ol u m e., li g ht w ei g ht., e a s y t o i n st all a n d t o o p er at e. S p e ci al l e at h er b elt wit h f e at ur e of e x c ell e nt d ur a bilit y, h e atr e si st a n c e, a n d c h e mi c al-r e si st a n c e. V O S- 8 0 0 att a c h e d a 2 4 h o ur s pr o c e d ur e ti m er t o r u n r e p e atl y i n a c c or d a n c e wit h ti m e pr o p orti o n w hi c h it i s s et, a n d al s o U nit: m m
O R DE R N O.
P O WE R S O U R CE
C A P A CI T Y
V O S- 8 0 0
A C 1 1 0/ 2 2 0 V
4 L/ h
V O S- 8 1 0
DI M E N SI O N L
B
H
W EI G H T ( k g s)
B E L T DI M E N SI O N
190 m m
102 m m
153 m m
3. 4
39x800 m m
150 m m
102 m m
138 m m
3
39x550 m m
B
DI M E N SI O N C O D E N O. OF H OSE
L
2 0 2 0- 1 0 0
ø22x600 m m
2 0 2 0- 1 0 1
Oil S ki m m er Wit h B elt T y p e Tubetype
O UTL ET T UBE
WI T H TI M E R
I NL ET T UBE
O R D E R N O. V O S- 8 2 0
M A C HI N E
V O S- 8 3 0
O R D E R N O. V O S- 8 3 0
Li q ui d
Oil
I F T H E M A C HI N E D O N’ T H A V E S P A C E F O R T H E OI L S KI M M E R. P L E A S E C H OI C E T HI S T Y P E. O R DE R N O.
V O S- 8 2 0 V O S- 8 3 0
C A P A CI T Y 1 L/ hr
DI M E N SI O N
I NLET T U B E SI Z E
L
B
H
155 m m
78 m m
178 m m
155 m m
78 m m
140 m m
I 2: 3 0 0 m m I 3: 2 0 0 m m
Q UTLET T U B E SI Z E ø22
150 m m
U nit: m m
P O WE R S OV R CE
W EI G H T ( k g)
C O D E N O.
A C 1 1 0/ 2 2 0 V
1. 9
2 0 2 0- 1 0 2
2
2 0 2 0- 1 0 3
Oil S ki m m er Wit h R ot ar y Pl at e T y p e
U nit: m m
DI M E N SI O N
O R D E R C A P A CI T Y P O W E R N O. S O U R CE
L
W
H
W EI G H T ( k g s)
C O DE N O.
V O S- 8 5 0
479
3 3 7. 2 1
274
8. 6
2 0 2 0- 1 0 4
1 L/ hr
A C 220 V
G RI N DI N G M A C HI N E A C C E S S O RI E S
B78
OI L S KI M M E R
102
Pr e ci si o n G a u g e Bl o c k s
G a u g e bl o c k s ar e f u n d a m e nt al st a n d ar d s f or li n e ar m e a s ur e m e nt. F or a dj u sti n g, c h e c ki n g. or i n s p e cti n g m e a s uri n g i n str um e nt s a n d t o ol s, a n d pr e ci si o n w or k pi e c e s. G a u g e bl o c k s ar e u s e d eit h er i n di vi d u all y or i n c o m bi n ati o n of s e v er al bl o c k s w hi c h ar e wr u n g t o g et h er. St e el g a u g e bl o c k s ar e m a d e of q u alit y all o y st e el. a n d c ar bi d e, t h e c er a mi c s ar e al s o a vil a bl e. T h e h ar d n e s s n u m b er of t h e m e a s uri n g
S T E E L M E T RI C G A U G E B L O C K S O R DE R N O.
N O T F O R L A B O R A T O R Y.
JI S/I S O/ DI N A C C U R A CY STA N D A R D A C C U R A C Y A T 2 0º C ( m) SI Z E O V E R U P T O G R A D E 00 G R A DE 0 10 m m ± 0. 0 6 ± 0. 1 2 10 - 25 m m + 0. 0 7 ± 0. 1 4 25 - 50 m m ± 0. 1 0 ± 0. 2 0 50 - 75 m m ± 0. 1 2 ± 0. 2 5 75- 100 m m ± 0. 1 4 ± 0. 3 0 100- 150 m m ± 0. 4 0
N o mi n al di m e n si o n
St e p s
11 2
1. 0 0 0 5 1. 0 0 1- 1. 0 0 9 1. 0 1- 1. 4 9 0. 5- 2 4. 5 2 5- 1 0 0
0. 0 0 1 0. 0 1 0. 0 5 25
1 9 49 49 4
1. 0 0 5 1. 0 1- 1. 4 9 0. 5- 2 4. 5 2 5- 1 0 0
0. 0 1 0. 5 25
1. 0 0 1- 1. 0 0 9 1. 0 1- 1. 4 9 0. 5- 9. 5 1 0- 1 0 0
V G B- 1 1 2- 0 V G B- 1 1 2- 1 V G B- 1 1 2- 2 V G B- 1 0 3- 0 V G B- 1 0 3- 1
103
V G B- 1 0 3- 2 V G B- 8 7- 0 V G B- 8 7- 1
ar e h e at tr e at e d i n s p e ci al w a y s s o a s t o st a bili z e t h eir l e n gt h s.
T ot al bl o c k s
87
V G B- 8 7- 2 V G B- 4 7- 0 V G B- 4 7- 1
47
V G B- 4 7- 2 V G B- 3 8- 0 V G B- 3 8- 1
38
V G B- 3 8- 2
W ei g ht ( k g)
C O DE N O.
0
3. 7
2 0 0 6- 0 7 0
1
3. 7
2 0 0 6- 1 7 0
2
3. 7
2 0 0 6- 2 7 0
1 49 49 4
0
3. 6
2 0 0 6- 0 7 2
1
3. 6
2 0 0 6- 1 7 2
2
3. 6
2 0 0 6- 2 7 2
0. 0 0 1 0. 0 1 0. 5 10
9 49 19 10
0
3
2 0 0 6- 0 7 3
1
3
2 0 0 6- 1 7 3
2
3
2 0 0 6- 2 7 3
1. 0 0 5 1. 0 1- 1. 0 9 1. 1- 1. 9 1- 2 4 2 5- 1 0 0
0. 0 1 0. 1 1 25
1 9 9 24 4
0
2. 4
2 0 0 6- 0 7 4
1
2. 4
2 0 0 6- 1 7 4
2
2. 4
2 0 0 6- 2 7 4
1. 0 0 5 1. 0 1- 1. 0 9 1. 1- 1. 9 1- 9 1 0- 1 0 0
0. 0 1 0. 1 1 10
1 9 9 9 10
0
2. 5
2 0 0 6- 0 7 5
1
2. 5
2 0 0 6- 1 7 5
2
2. 5
2 0 0 6- 2 7 5
W ei g ht ( k g s)
C O DE N O.
5. 8
2 0 0 6- 0 8 0
5. 8
2 0 0 6- 1 8 0
C A R BI D E M E T RI C G A U G E B L O C K S
A C C U R A C Y A T 2 0º C ( m) SI Z E OVE R UP T O G R A DE 1 G R A DE 2 10 m m ± 0. 2 0 ± 0. 4 5 10 - 25 m m ± 0. 3 0 ± 0. 6 0 25 - 50 m m ± 0. 4 0 ± 0. 8 0 50 - 75 m m ± 0. 5 0 ± 1. 0 0 75- 100 m m ± 0. 6 0 ± 1. 2 0 100- 150 m m ± 0. 8 0 ± 1. 6 0
T ot al N o mi n al bl o c k s di m e n si o n 1. 0 0 0 5 V G B- 1 1 2 T- 0 1. 0 0 1- 1. 0 0 9 11 2 1. 0 1- 1. 4 9 0. 5- 2 4. 5 V G B- 1 1 2 T- 1 2 5- 1 0 0
St e p s
V G B- 1 0 3 T- 0
1. 0 0 5 1. 0 1- 1. 4 9 0. 5- 2 4. 5 2 5- 1 0 0
0. 0 1 0. 5 25
1 49 49 4
0
5. 6
2 0 0 6- 0 8 1
1
5. 7
2 0 0 6- 1 8 1
2
5. 7
2 0 0 6- 2 8 1
1. 0 0 1- 1. 0 0 9 1. 0 1- 1. 4 9 0. 5- 9. 5 1 0- 1 0 0
0. 0 0 1 0. 0 1 0. 5 10
9 49 19 10
0
4. 8
2 0 0 6- 0 8 2
1
4. 9
2 0 0 6- 1 8 2
2
4. 8
2 0 0 6- 2 8 2
1. 0 0 5 1. 0 1- 1. 0 9 1. 1- 1. 9 1- 2 4 2 5- 1 0 0
0. 0 1 0. 1 1 25
1 9 9 24 4
4. 8
2 0 0 6- 0 8 3
4. 8
2 0 0 6- 1 8 3
O R D E R N O.
V G B- 1 0 3 T- 1
103
V G B- 1 0 3 T- 2 V G B- 8 7 T- 0 V G B- 8 7 T- 1
87
V G B- 8 7 T- 2 V G B- 4 7 T- 0 V G B- 4 7 T- 1
B79
N o. of bl o c k s Gr a d e
G RI N DI N G M A C HI N E A C C E S S O RI E S
47
0. 0 0 1 0. 0 1 0. 0 5 25
N o. of bl o c k s Gr a d e 1 0 9 49 49 1 4
0 1 2
C er a mi c G a u g e Bl o c k s H O W T O C H OI C E T H E B L O C K F O R SI N E B A R DI S T A N C E SI N B A R C E N T E R SI N B A R C E N T E R GAU GE BL O C K CAN H EI G H T GET DE GREE
C H OI C E DI F F E R E N T SI Z E G A U G E B L O C K F O R T O T A L T H E H EI G H T
N O T F O R L A B O R A T O R Y.
JI S/I S O/ DI N SI Z E OVE R UP T O
A C C U R A CY STA N D A R D A C C U R A C Y A T 2 0º C ( m) G R A D E 00 G R A DE 0 10 m m ± 0. 0 6 ± 0. 1 2 10 - 25 m m + 0. 0 7 ± 0. 1 4 25 - 50 m m ± 0. 1 0 ± 0. 2 0 50 - 75 m m ± 0. 1 2 ± 0. 2 5 75- 100 m m ± 0. 1 4 ± 0. 3 0 100- 150 m m ± 0. 4 0 A C C U R A C Y A T 2 0º C ( m) G R A DE 1 G R A DE 2 ± 0. 2 0 ± 0. 4 5 ± 0. 3 0 ± 0. 6 0 ± 0. 4 0 ± 0. 8 0 ± 0. 5 0 ± 1. 0 0 ± 0. 6 0 ± 1. 2 0 ± 0. 8 0 ± 1. 6 0
SI Z E OVE R UP T O
10 m m 10 - 25 m m 25 - 50 m m 50 - 75 m m 75- 100 m m 100- 150 m m
C E R A MI C G A U G E B L O C K S O R D E R N O. blT ootc alk s
V G B- 1 1 2 C- 0 V G B- 1 1 2 C- 1 V G B- 1 0 3 C- 0 V G B- 1 0 3 C- 1 V G B- 8 7 C- 0 V G B- 8 7 C- 1 V G B- 4 7 C- 0 V G B- 4 7 C- 1
N o mi n al di m e n si o n 1. 0 0 0 5 1. 0 0 1- 1. 0 0 9 1. 0 1- 1. 4 9 0. 5- 2 4. 5 2 5- 1 0 0
St e p s of blN o.o c k s Gr a d e W (eik gg hts) 1 0 3. 7 0. 0 0 1 9 0. 0 1 49 0. 0 5 49 1 3. 7 25 4
103
1. 0 0 5 1. 0 1- 1. 4 9 0. 5- 2 4. 5 2 5- 1 0 0
0. 0 1 0. 5 25
1 49 49 4
0
3. 6
2 0 0 6- 0 9 1
1
3. 6
2 0 0 6- 1 9 1
87
1. 0 0 1- 1. 0 0 9 1. 0 1- 1. 4 9 0. 5- 9. 5 1 0- 1 0 0
0. 0 0 1 0. 0 1 0. 5 10
9 49 19 10
0
3
2 0 0 6- 0 9 2
1
3
2 0 0 6- 1 9 2
47
1. 0 0 5 1. 0 1- 1. 0 9 1. 1- 1. 9 1- 2 4 2 5- 1 0 0
0. 0 1 0. 1 1 25
1 9 9 24 4
0
2. 4
2 0 0 6- 0 9 3
1
2. 4
2 0 0 6- 1 9 3
11 2
C O D E N O. 2 0 0 6- 0 9 0 2 0 0 6- 1 9 0
50
100
1. 7 4 0 5 2. 6 1 6 8 3. 4 8 7 8 4. 3 5 7 8 5. 2 2 6 4 6. 0 9 3 5 6. 9 5 8 7 7. 8 2 1 7 8. 6 8 2 4 9. 5 4 0 4 1 0. 3 9 5 6 1 1. 2 4 7 6 1 2. 0 9 6 1 1 2. 9 4 0 1 1 3. 7 8 1 9 1 4. 6 1 8 6 1 5. 4 0 5 8 1 6. 2 7 8 4 1 7. 1 0 1 0 1 7. 9 1 8 4 1 8. 7 3 0 3 1 9. 5 3 6 6 2 0. 3 3 6 8 2 1. 1 3 0 9 2 1. 9 1 8 6 2 2. 6 9 9 5 2 3. 4 7 3 6 2 4. 2 4 0 5 2 5. 0 0 0 0 2 5. 7 5 1 9 2 6. 4 9 6 0 2 7. 2 3 2 0 2 7. 9 5 9 6 2 8. 6 7 8 8 2 9. 3 8 9 3 3 0. 0 9 0 8 3 0. 7 8 3 1 3 1. 4 6 6 0 3 2. 1 3 9 4 3 2. 8 0 3 0 3 3. 4 5 6 5 3 4. 0 9 9 9 3 4. 7 3 2 9 3 5. 3 5 5 3
3. 4 8 9 9 5. 2 3 3 6 6. 9 7 5 6 8. 7 1 5 5 1 0. 4 5 2 8 1 2. 1 8 6 9 1 3. 9 1 7 3 1 5. 6 4 3 4 1 7. 3 6 4 8 1 9. 0 8 0 9 2 0. 7 9 1 1 2 2. 4 9 5 1 2 4. 1 9 2 1 2 5. 8 8 1 9 2 7. 5 6 3 7 2 9. 2 3 7 1 3 0. 9 0 1 7 3 2. 5 5 8 6 3 4. 2 0 2 0 3 5. 8 3 6 7 3 7. 4 6 0 6 3 9. 0 7 1 3 4 0. 6 7 3 6 4 2. 2 6 1 8 4 3. 8 3 7 1 4 5. 3 9 9 0 4 6. 9 4 7 1 4 8. 4 8 0 9 5 0. 0 0 0 0 5 1. 5 0 3 8 5 2. 9 9 1 9 5 4. 4 6 3 9 5 5. 9 1 9 2 5 7. 3 5 7 6 5 8. 7 7 8 5 6 0. 1 8 1 5 6 1. 5 6 6 1 6 2. 9 3 2 0 6 4. 2 7 8 7 6 5. 6 0 5 9 6 6. 9 1 3 0 6 8. 1 9 9 8 6 9. 4 6 5 8 7 0. 7 1 0 6
G RI N DI N G M A C HI N E A C C E S S O RI E S
C E R A MI C G A U G E B L O C K S
G A U GE BL O C KS
B80
C a st Ir o n S urf a c e Pl at e s T h e s e s urf a c e pl at e s ar e d e si g n e d f or a di v er sit y of a p pli c ati o n s w h er e a s m o ot h s urf a c e i s n e e d e d. Ri gi dit y a n d l a sti n g a c c ur a c y ar e e n s ur e d b y c o n str u c nti o n. T h e s urf a c e s ar e fr e e fr o m pi n h ol e s. i n s p e cti o n a n d c o u ntl e s s ot h er u s e s. N O T F O R L A B O R AT O R Y
S urf a c e Pl at e s O R D E R N O.
U nit: m m
SI Z E
S U RFA CE A C C U R A CY
A P P R O X. W EI G H T
L x W x H m m
m m
kgs
C O D E N O.
V S- 0 1
200x200x
7. 1
2 0 2 1- 0 0 1
V S- 0 2
250x250x
1 1. 1
2 0 2 1- 0 0 2
V S- 0 3
250x300x
1 0. 9
2 0 2 1- 0 0 3
V S- 0 4
300x300x
1 2. 6
2 0 2 1- 0 0 4
V S- 0 5
300x400x
2 0. 1
2 0 2 1- 0 0 5
V S- 0 6
300x450x
24
2 0 2 1- 0 0 6
V S- 0 7
450x450x
5 0. 5
2 0 2 1- 0 0 7
V S- 0 8
500x500x
56
2 0 2 1- 0 0 8
V S- 0 9
450x600x
6 4. 5
2 0 2 1- 0 0 9
V S- 1 0
600x600x
78
2 0 2 1- 0 1 0
V S- 1 1
600x900x
11 7
2 0 2 1- 0 1 1
V S- 1 2
900x900x
V S- 1 3
900x1200x
0. 0 0 5/ 1 0 0
0. 0 0 6/ 1 0 0
0. 0 0 7/ 1 0 0
220
2 0 2 1- 0 1 2
305
2 0 2 1- 0 1 3
S e p ar at e d M o d ul ar D e si g n DI Y T y p e. Wit h A dj u st m e nt S cr e w F or L e v eli n g
C a st Ir o n S urf a c e Pl at e s St a n d O R D E R N O.
B81
S T A N D SI Z E L x W x H m m
K GS
C O D E N O.
V S D- 0 9 N
450x600x700
2 5. 6
2 0 2 1- 0 0 9 N
V S D- 1 0 N
600x600x700
2 8. 2
2 0 2 1- 0 1 0 N
V S D- 1 1 N
600x900x700
4 7. 8
2 0 2 1- 0 1 1 N
V S D- 1 2 N
900x900x700
5 4. 3
2 0 2 1- 0 1 2 N
V S D- 1 3 N
900x1200x600
7 0. 0
2 0 2 1- 0 1 3 N
G RI N DI N G M A C HI N E A C C E S S O RI E S
Bl a c k Gr a nit e S urf a c e Pl at e s G G G- P- 4 6 3 c. H ar d er t h e n st e el.
G u ar a nt e e d r e p e at r e a di n g. u nil at er al a c c ur a c y of pl at e. D o e s n ot r u st or c orr o d e. S urf a c e A c c ur a c y : 0. 0 1 3 ~ 0. 0 0 6 5 / 1 0 0 m m N O T F O R L A B O R AT O R Y A c c ur a c y a n d O- Gr o a e St yl e a v ail a bl e o nl y i n w or k s h o p Gr a d e A
S urf a c e Pl at e s
U nit: m m
SI Z E
S U RFA CE A C C U R A CY
A P P R O X. W EI G H T
L x W x H m m
m m
kgs
V S G- 0 4
250x300x
0. 0 0 6 5
1 2. 6
2 0 2 1- 0 1 9
V S G- 0 5
300x300x
0. 0 0 6 5
17
2 0 2 1- 0 2 0
V S G- 0 6
300x450x
0. 0 0 6 5
25
2 0 2 1- 0 2 1
V S G- 0 7
450x450x
0. 0 0 6 5
46
2 0 2 1- 0 2 2
V S G- 0 9
450x600x
0. 0 0 7
82
2 0 2 1- 0 2 3
V S G- 1 0
600x600x
0. 0 0 9
109
2 0 2 1- 0 2 4
O R D E R N O.
C O D E N O.
V S G- 1 1
600x900x
0. 0 0 9
185
2 0 2 1- 0 2 5
V S G- 1 3
900x1200x
0. 0 1 2
440
2 0 2 1- 0 2 7
V S G- 1 4
1000x1000x
0. 0 1 2
408
2 0 2 1- 0 2 8
V S G- 1 5
1000x1500x
0. 0 1 3
910
2 0 2 1- 0 2 9
V S G- 2 1
900x900x
0. 0 1 3
380
2 0 2 1- 0 3 2
Str o n g & Ri gi d S e p ar at e d M o d ul ar D e si g n DI Y T y p e.
Bl a c k Gr a nit e S urf a c e Pl at e s St a n d O R D E R N O.
Wit h A dj u st m e nt S cr e w F or L e v eli n g M at eri al : S S 4 1
S T A N D SI Z E L x W x H m m
K GS
C O D E N O.
V S G D- 0 9 N
450x600x700
3 2. 6
2 0 2 1- 0 2 3 N
V S G D- 1 0 N
600x600x700
3 5. 9
2 0 2 1- 0 2 4 N
V S G D- 1 1 N
600x900x700
5 3. 7
2 0 2 1- 0 2 5 N
V S G D- 1 3 N
900x1200x700
7 2. 8
2 0 2 1- 0 2 7 N
V S G D- 1 4 N
1000x1000x700
7 2. 3
2 0 2 1- 0 2 8 N
V S G D- 1 5 N
1000x1500x700
8 3. 7
2 0 2 1- 0 2 9 N
V S G D- 2 1 N
900x900x600
7 3. 0
2 0 2 1- 0 3 2 N
G RI N DI N G M A C HI N E A C C E S S O RI E S
B82
B L A C K G R A NI T E S U R F A C E P L A T E S
R et ai n s a c c ur a c y f or y e ar s.
Gr a nit e S q u ar e R ul er s
N O T F O R L A B O R AT O R Y
A c c ur a c y: S Q U A R E N E S S 0. 0 0 2 / 1 0 0 m m
U nit: m m
O R D E R N O.
SI Z E
G. W.( k g s)
C O D E N O.
V Q R- 4 0 0
400x400x
2 4. 8
2 0 2 1- 0 5 0
V Q R- 5 0 0
500x500x
4 0. 2
2 0 2 1- 0 5 1
Gr a nit e Str ai g ht R ul er s
N O T F O R L A B O R AT O R Y
A c c ur a c y: P A R A L L E LI S M 0. 0 0 2 / 1 0 0 m m O R D E R N O.
U nit: m m
SI Z E
G. W.( k g s)
C O D E N O.
V S R- 6 3 0
630x100x
8. 7
2 0 2 1- 0 6 0
V S R- 1 0 0 0
1000x80x
1 3. 7
2 0 2 1- 0 6 1
Gr a nit e Tri a n gl e R ul er A c c ur a c y: S Q U A R E N E S S 0. 0 0 2 / 1 0 0 m m O R D E R N O.
Si z e
T hi c k n e s s
V G T- 3 0 0
300x200
30
5. 7
2 0 2 2- 0 2 0
V G T- 4 0 0
400x250
30
8. 4
2 0 2 2- 0 2 1
V G T- 6 0 0
600x400
63
2 7. 5
2 0 2 2- 0 2 2
N O T F O R L A B O R AT O R Y
B83
G RI N DI N G M A C HI N E A C C E S S O RI E S
m m
W ei g ht ( k g s)
C O D E N O.
P AI R
A c c ur a c y: P A R A L L E LI S M 0. 0 0 5 / 1 0 0 m m
N O T F O R L A B O R AT O R Y
O R D E R N O.
C A P A CI T Y Ø
DI M E N SI O N
K GS
C O D E N O.
38
1. 7
2 0 2 2- 0 3 0
62
6. 3
2 0 2 2- 0 3 1
MI N.
M A X.
H
W
L
L1
V G V- 6 3
Ø 4
Ø 65
65
65
65
V G V- 1 0 0
Ø 10
Ø 100
100
100
100
m m
H ori z o nt al L e v eli n g I n str u m e nt 0. 0 2 / 1 0 0 m m W h e n t h e b u b bl e i s i n t h e c e nt er & t o u c h a n d wit h i n 2 r e d li n e, t h e n t h e s urf a c e i s l e v el e d. N O T F O R L A B O R AT O R Y
m m
O R D E R N O.
DI M E N SI O N
W ei g ht ( k g s)
V LI- 2 0 0 A
200x46x46
1. 9 6
2 0 2 2- 0 4 3
V LI- 3 0 0 A
3 0 0 x 4 6 x 4 5. 9 0
2. 7 8
2 0 2 2- 0 4 4
C O D E N O.
Pr e ci si o n S q u ar e L e v el 0. 0 2 / 1 0 0 m m W h e n t h e b u b bl e i s i n t h e c e nt er & t o u c h a n d wit h i n 2 r e d li n e, t h e n t h e s urf a c e i s l e v el e d. N O T F O R L A B O R AT O R Y
m m
O R D E R N O.
DI M E N SI O N
W ei g ht ( k g s)
V S L- 2 0 0 A
2 0 0 x 2 0 0 x 3 9. 5
4. 1 0
2 0 2 2- 0 5 3
V S L- 3 0 0 A
3 0 0 x 3 0 0 x 4 4. 6
8. 8 3
2 0 2 2- 0 5 4
C O D E N O.
G RI N DI N G M A C HI N E A C C E S S O RI E S
B84
G R A NI T E V- B L O C K
Gr a nit e V- Bl o c k
Gr a nit e S urf a c e St a n d V H- 4 1, 4 2, 4 3
V H- 4 5, 4 6, 4 7 Ø8
T H E DI A L G A U G E I S O P TI O N A L A C C U R A C Y: 0. 0 0 5/ 1 0 0 m m
N O T F O R L A B O R AT O R Y C si z e m a y b e v ari e d.
O R D E R N O.
C
D
E
52 52 90 52 52 90
252 252 290 185 185 223
200 200 200 133 133 133
A x B G R A NI T E P L A T E DI E M E N SI O N
V H- 4 1 V H- 4 2 V H- 4 3 V H- 4 5 V H- 4 6 V H- 4 7
6 x 6 6 x 9 9 x 12 6 x 6 6 x 9 9 x 12
150x150 m m 150x220 m m 230x300 m m 150x150 m m 150x220 m m 230x300 m m
Ø 6. 5
G u a g e n ot i n cl u d e d C O D E N O.
m m m m m m m m m m m m
W EI G H T ( k g s) 6 9 22 6 7. 9 1 9. 1
F
W EI G H T ( k g s)
C O D E N O.
F 8 8 8 8 8 8
2 0 2 2- 0 0 1 A 2 0 2 2- 0 0 2 A 2 0 2 2- 0 0 3 A 2 0 2 2- 0 0 5 2 0 2 2- 0 0 6 2 0 2 2- 0 0 7
Gr a nit e S urf a c e St a n d O R D E R N O.
V H- 4 8 V H- 4 9 V H- 5 0
A x B G R A NI T E P L A T E DI E M E N SI O N 6 x 6 150x150 m m 6 x 9 150x220 m m 9 x 12 230x300 m m
C
D
E
52
2 0 2 2- 0 1 7
52
2 0 2 2- 0 1 8
90
2 0 2 2- 0 1 9
T e st er Ar m B a s e
F O R S U R F A C E P L AT E 2- S T E P R O U N D S H A P E B A S E SI S E A S Y T O M O V E WI T H 1 H A N D.
F e at ur e s:
M e a s uri n g ai d, N O T F O R L A B O R A T O R Y F or s m o ot h m e a s uri n g o n gr a nit e / c a st ir o n s urf a c e pl at e! Wit h o ut di al g a u g e M at eri al : St e el Si n gl e- h a n d o p er ati o n Gr e at f or si d e m e a s uri n g
B85
O R D E R N O. V T B- 1 2 1
WI T H O U T DI A L G U A G E
O R D E R N O.
B A S E ( Ø)
M AI N R O D O. D x L
V T B- 1 2 0
120
Ø25 x 125
Ø25 x 125
2. 6 5
2 0 2 2- 0 1 5
V T B- 1 2 1
260x60x35
Ø14x200
Ø12x160
3. 6
2 0 2 2- 0 1 4
G RI N DI N G M A C HI N E A C C E S S O RI E S
S U B R O D O. L x L
W EI G H T ( k g s)
C O DE N O.
m m
EX A MPLE
Cl e a ni n g P a p er O R D E R N O. P- 1 0 0 0( P A P E R) C O D E N O. 2 0 2 1- 2 0 0
O R D E R N O. S- 1 0 0 0( S T A N D) C O D E N O. 2 0 2 1- 2 2 0 450L x 330 W x 800 H
C O N C E N T RI C T E S T S T A N D
P A C K: 2 R O L L/ C A R T O N C O L O R: W HI T E
C o n c e ntri c T e st St a n d V CI- 2 0 0
V CI- 4 0 0
G a u g e n ot i n cl u d e d
E x a m pl e O R D E R N O.
LE N GT H
WI D T H
H EI G H T
V CI- 2 0 0 V CI- 3 0 0 V CI- 4 0 0 V CI- 6 0 0
490 530 650 1000
90 90 90 200
100 100 100 230
CE NTE R DI S T A N C E 200 300 400 600
CE NTE R H EI G H T 145 145 145 200
m m
W EI G H T ( k g s) 22 2 6. 8 2 9. 6 1 3 8. 5
C O D E N O. 2 0 2 1- 1 0 1 2 0 2 1- 1 0 5 2 0 2 1- 1 0 2 2 0 2 1- 1 0 6
Pi n G a u g e E A C H 0. 0 1 m m F O R O N E S T E P SI Z E O R DE R N O.
F E A T U R E S: EACH STEP SI Z E 0. 0 5 ~ 0. 0 9 0. 0 1 0. 1 0 ~ 0. 1 9 0. 0 1 0. 2 0 ~ 0. 9 9 0. 0 1 1. 0 0 ~ 1 0. 0 0 0. 0 1 1 0. 0 1 ~ 2 0. 0 0 0. 0 1 2 0. 0 0 ~ 3 0. 0 0 0. 0 1 DI A M E T E R
N O MI N A L DI M E N SI O N P C S/ W EI G H T E A C H 0. 0 1 m m F O R 1 S E T ( k g s) P CS
0. 5 0, 0. 5 1, 0. 5 2 ~ 1. 0 0 V P G- 0 B 1. 0 0, 1. 0 1, 1. 0 2 ~ 1. 5 0 V P G- 1 A 1. 5 0, 1. 5 1, 1. 5 2 ~ 2. 0 0 V P G- 1 B 2. 0 0, 2. 0 1, 2. 0 2 ~ 2. 5 0 V P G- 2 A 2. 5 0, 2. 5 1, 2. 5 2 ~ 3. 0 0 V P G- 2 B 3. 0 0, 3. 0 1, 3. 0 2 ~ 3. 5 0 V P G- 3 A 3. 5 0, 3. 5 1, 3. 5 2 ~ 4. 0 0 V P G- 3 B 4. 0 0, 4. 0 1, 4. 0 2 ~ 4. 5 0 V P G- 4 A 4. 5 0, 4. 5 1, 4. 5 2 ~ 5. 0 0 V P G- 4 B 5. 0 0, 5. 0 1, 5. 0 2 ~ 5. 5 0 V P G- 5 A 5. 5 0, 5. 5 1, 5. 5 2 ~ 6. 0 0 V P G- 5 B 6. 0 0, 6. 0 1, 6. 0 2 ~ 6. 5 0 V P G- 6 A 6. 5 0, 6. 5 1, 6. 5 2 ~ 7. 0 0 V P G- 6 B 7. 0 0, 7. 0 1, 7. 0 2 ~ 7. 5 0 V P G- 7 A L E N G T H I AN C DIC UA RM AE CT YE R RT OO LU EN RD EN NE CS ES H A R D N E S S V P G- 7 B 7. 5 0, 7. 5 1, 7. 5 2 ~ 8. 0 0 8. 0 0, 8. 0 1, 8. 0 2 ~ 8. 5 0 V P G- 8 A 5~10 ± 0. 5 u m 0. 5 u m H V480 8. 5 0, 8. 5 1, 8. 5 2 ~ 9. 0 0 V P G- 8 B 20 ± 0. 5 u m 0. 5 u m H V480 9. 0 0, 9. 0 1, 9. 0 2 ~ 9. 5 0 V P G- 9 A 40 ±1u m 0. 8 u m H V650 9. 5 0, 9. 5 1, 9. 5 2 ~ 1 0. 0 0 V P G- 9 B 50 ±1u m 0. 8 u m H V650 V P G- 1 0 A 1 0. 0 0, 1 0. 0 1, 1 0. 0 2 ~ 1 0. 5 0 50 ± 1. 5 u m 1. 6 u m H V650 V P G- 1 0 B 1 0. 5 0, 1 0. 5 1, 1 0. 5 2 ~ 1 1. 0 0 50 ± 1. 5 u m 1. 6 u m H V650
51 51 51 51 51 51 51 51 51 51 51 51 51 51 51 51 51 51 51 51 51
1 1 1 1 1 1 1 1. 5 1. 5 1. 5 1. 5 3. 1 3. 2 3. 5 3. 5 3. 8 3. 8 4 4 5 5
C O DE N O. 2 0 2 2- 0 6 0 2 0 2 2- 0 6 1 2 0 2 2- 0 6 2 2 0 2 2- 0 6 3 2 0 2 2- 0 6 4 2 0 2 2- 0 6 5 2 0 2 2- 0 6 6 2 0 2 2- 0 6 7 2 0 2 2- 0 6 8 2 0 2 2- 0 6 9 2 0 2 2- 0 7 0 2 0 2 2- 0 7 1 2 0 2 2- 0 7 2 2 0 2 2- 0 7 3 2 0 2 2- 0 7 4 2 0 2 2- 0 7 5 2 0 2 2- 0 7 6 2 0 2 2- 0 7 7 2 0 2 2- 0 7 8 2 0 2 2- 0 7 9 2 0 2 2- 0 8 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
B86
M e a s uri n g I n str u m e nt L: 1 5 0, 2 0 0, 3 0 0 m m
P R E CI SI O N V E R NI E R C A LI P E R
O R D E R N O. V V C- 6 V V C- 8 V V C- 1 2
O R D E R N O. V E C- 6 V E C- 8 V E C- 1 2
DI A L C A LI P E R
O R D E R N O. V D C- 6 V D C- 8 V D C- 1 2
V O M- 2 5 5 0 V O M- 5 0 7 5 V O M- 7 5 1 0 0
0. 0 1 m m
1 S C ALE
W EI G H T( k g) 0. 4 0. 5 0. 8
C O D E N O. 2 0 2 3- 0 1 0 2 0 2 3- 0 1 1 2 0 2 3- 0 1 2
0. 0 1 m m
1 S C ALE
W EI G H T( k g) 0. 4 0. 5 0. 9
C O D E N O. 2 0 2 3- 0 5 0 2 0 2 3- 0 5 1 2 0 2 3- 0 5 2
0. 0 2 m m
I N SI D E MI C R O M E T E R 0- 25 25- 50 50- 75 75- 100 1 0 0- 1 2 5
V O M- 0 0 2 5
C O D E N O. 2 0 2 3- 0 0 1 2 0 2 3- 0 0 2 2 0 2 3- 0 0 3
L: 1 5 0, 2 0 0, 3 0 0 m m
O U T SI D E MI C R O M E T E R
1 S C ALE
0. 0 2 m m 1/ 1 0 0 0”
W EI G H T( k g) 0. 4 0. 5 0. 8
L: 1 5 0, 2 0 0, 3 0 0 m m
DI GI T A L E L E C T R O NI C C A LI P E R
O R D E R N O.
1 S C ALE
5- 30 25- 50 50- 75 75- 100 1 0 0- 1 2 5
m m m m m m m m m m
W EI G H T( k g)
C O D E N O.
O R D E R N O.
0. 3
2 0 2 3- 0 6 0
VI M- 5 0 7 5
0. 4
2 0 2 3- 0 6 1
0. 5
2 0 2 3- 0 6 2
0. 6
2 0 2 3- 0 6 3
VI M- 7 5 1 0 0
1 S C ALE
W EI G H T( k g)
C O D E N O.
0. 4
2 0 2 3- 0 6 7
0. 4
2 0 2 3- 0 6 8
0. 4 2
2 0 2 3- 0 6 9
0. 0 1 m m
VI M- 1 0 0 1 2 5
m m m m m m m m m m
M e a s uri n g I n str u m e nt MI C R O M E T E R S T A N D M A X. O P E N E D 17 m m
1 6 6x 11 0x 1 2 2 m m
B87
G RI N DI N G M A C HI N E A C C E S S O RI E S
O R D E R N O.
W EI G H T( k g)
C O D E N O.
V H- 1 9
1. 3
2 0 2 3- 0 9 0
M e a s uri n g I n str u m e nt ST E EL C O V E R
DI A L I N DI C A T O R
DI A L T E S T I N DI C A T O R
0. 0 1 ~ 1 0 m m
0. 0 1 ~ 0. 8 m m
O R D E R N O.
1 S C ALE
W EI G H T( k g)
C O D E N O.
O R D E R N O.
1 S C ALE
W EI G H T( k g)
C O D E N O.
V DI- 1
0. 0 1 m m
0. 3
2 0 2 3- 0 2 0
V DI- 0. 8 A
0. 0 1 m m
0. 2
2 0 2 3- 0 7 0
H EI G H T V E R NI E R C A LI P E R
H EI G H T DI A L C A LI P E R
H: 3 0 0, 4 5 0, 5 0 0, 6 0 0
O R DE R N O
1 S C A L E W EI( k Gg Hs)T
V H G- 1 2 V H G- 1 8 V H G- 2 0 V H G- 2 4
0. 0 2 m m
C O DE N O.
H: 3 0 0, 6 0 0 m m
4
2 0 2 3- 0 3 4
O R DE R N O.
1 1. 9
2 0 2 3- 0 3 5
V H D- 1 2
1 0. 7
2 0 2 3- 0 3 6
V H D- 2 4
1 1. 8
2 0 2 3- 0 3 7
1 S C A L E W EI( k Gg Hs)T 0. 0 1 m m
C O DE N O.
4
2 0 2 3- 0 8 0
9. 4
2 0 2 3- 0 8 1
M e a s uri n g I n str u m e nt MI C R O M E T E R H E A D
O R D E R N O.
S C ALE x L
W EI G H T( k g)
C O D E N O.
V M H- 2 5
0. 0 1 x 2 5 m m
0. 2
2 0 2 3- 0 4 0
G RI N DI N G M A C HI N E A C C E S S O RI E S
B88
M E A S U RI N G I N S T R U M E N T
NI D D L E T Y P E
A n gl e L e v el
Oil T y p e Pr otr a ct or Wit h M a g n et s
V A L- 6 0
V A L- 5 0
V A L- 1 0
V A L- 3 0
V A L- 2 0
O R DE R N O.
Lx Wx H
B ASE
A C U W EI( kG g)H T
C O DE N O.
V A L- 1 0
78x62x14 m m
ABS
0. 2º
0. 2
2 0 3 3- 1 0 0
V A L- 3 0
93x79x15 m m
ABS
0. 1º
0. 2
2 0 3 3- 1 0 1
V A L- 5 0
93x79x16 m m
M ETAL
0. 0 8 3º
0. 4
2 0 3 3- 1 0 2
V A L- 6 0 1 4 0 x 1 3 0 x 2 0 m m
M ETAL
0. 0 5º
1
2 0 3 3- 1 0 3
ABS
0. 2º
0. 2
2 0 3 3- 1 0 4
V A L- 2 0
70x65x30 m m 1
1 3 m m/ /2 x 3 M/ 1 0
1. R E S E T: F or s etti n g a p s e u d e- h ori z o n, u p o n w hi c h a n e w a n gl e o n t h e p s e u d o- h ori z o n c a n b e dir e ctl y m e a s ur e d. 2. D O U B L E C H E C K: D o u bl e a n n ul ar gr d u ati o n s pr o vi d e d f or c alii br ati n g eit h er p o siti v e or n e g ati v e d e gr e e s.
T h e p oi nt er i s r ot ati n g i n a h y dr a uli c oil f or st a bl e, pr e ci s e a n d err or- eli mi n ati n g r e a di n g, e v e n t o a diff er e nti al s u b gr a d u ati o n l e s s t h a n o n e d e gr e e. T h e t w o p oi nt er s or t h e v er ni er v er s u s t h e a n n ul ar gr a d u ati o n s ar e r e a d s u p p er i m p o s e dl y wit h mi ni m u m r e a di n g err or. D o u bl e a n n ul ar gr a d u ati o n s ar e pr o vi d e d f or pr e v e nti n g wi s u al r e a di n g err or. T h e tr a n s p ar e nt t e m p er at ur e-r e si st a nt oil m a y vi s u all y a m plif y t h e p oi nt er f or a b ett er o pti c al r e a di n g. T h e d o u bl e-r ail m a g n et m a y attr a ct t hi s a n gl e l e v el o n a r o u n d pi p e or a s urf a c e of f err o u s m at eri al. A n e xt e n si o n r ul e c o ul d b e i n s ert e d i nt o t h e b ott o m sl ot f or m e a s ur e m e nt a n d dr a wi n g li n e f or wi d er ar e a.
M U L TI- F U N C TI O N A N G L E L E V E L Fi n di n g a n a n gl e A T hi n ir o n pl at e m a y b e attr a ct e d u n d er t h e a n gl e l e v el f or wi d er m e a s ur e m e nt.
m a c hi n e s
I n s erti n g a str ai g ht e xt e n si o n r ul e i nt o a b ott o m sl ot If t h e a n gl e l e v el.
Attr a cti n g t h e a n gl e l e v el o n a n ir o n pl at e f or m e a s uri n g a n a n gl e i n si d e a
2. Gri n di n g m a c hi n e
3. O ut & i n n er c o n e a n gl e
Ali g n t h e m o v a bl e d e gr e e s c al e 0º r e a di n g, i n li n e wit h S et y o ur i n str u m e nt’ s b ott o m s urf a c e o n t h e o bj e ct t o b e m e a s ur e d. Y o ur r e a di n g of f t h e p oi nt er i s y o ur a n gl e of i n cli n ati o n fr o m 0º
a n gl e s Ali g n t h e d e sir e d a n gl e o n t h e m o v a bl e s c al e t o t h e Tilt t h e i n str u m e nt u ntil t h e p oi nt er i s ali g n e d wit h t h e 0º
s h o wi n g s e v er al m e a s ur e d p o siti o n s b y t hi s a n gl e l e v el. B89 G RI N DI N G M A C HI N E A C C E S S O RI E S
OVE RL AP
H ar d n e s s T e st er
C O D E N O. 2 0 3 3- 2 0 1
H A R D NESS TESTE R
O R D E R N O. V H T- 2 6 0
A C C E S S O RI E S :
Di a m o n d t e st er x 1 St e el b all t e st er x 1 Fl at t e sti n g t a bl e x 2 Pri s m a t e sti n g t a bl e x 1
S wi n g 2 6 0 m m L x W x H: 466 x 238 x 630 m m
H R B 30- 100 H R C 20- 67
St ai nl e s s St e el R ul er
S c al e : a ci d - et c h e d, e n gr a v e d
O R D E R N O.
SI Z E
DI M E N SI O N( m m)
N. W.( k g)
C O D E N O.
V S R- 1 5 0
6”/ 1 5 c m
1 7 0 x 1 4. 7 x 0. 6
0. 0 1 5
2 0 3 3- 3 2 1
V S R- 2 0 0
8”/ 2 0 c m
2 2 6 x 2 0. 0 x 0. 6
0. 0 3
2 0 3 3- 3 2 2
V S R- 3 0 0
1 2”/ 3 0 c m
3 3 4 x 2 3. 7 x 1. 0
0. 0 6
2 0 3 3- 3 2 3
G RI N DI N G M A C HI N E A C C E S S O RI E S
B90
T hr e a d Si z e & D e pt h G a u g e H A N DY TYPE
I N S T A N T R E S U L T, Q UI C K R E A DI N G T H R E A D P L U G G A U G E C H E C K SI Z E B Y G O / Ø D m m S T D A C TI O N & T H R E A D D E P T H. RI N G G A U G E T O S E T O P OI N T B E F O R E U S E 1 M A R K : 0. 2 m m, M 3 x 0. 5- 6 H H I S G R A D E. A L L O W T O P R E S E T T H E D E SI R E D T H R E A D D E P T H
N O G O
G O
O R D E R N O.
V S D- M 3 V S D- M 4 V S D- M 5 V S D- M 6 V S D- M 8 V S D- M 1 0
R O T A TI N G H A N DL E
S P E CI FI C A TI O N A M 3 x 0. 5- 6 H M 4 x 0. 7- 6 H M 5 x 0. 8- 6 H M 6 x 1- 6 H M 8 x 1. 2 5- 6 H M 1 0 x 1. 5- 6 H
B 17 17 17 17 23 23
L 102 102 11 4 11 4 140 140
D Ø30 Ø30 Ø30 Ø30 Ø30 Ø30
S cr e w Pl u g G a u g e G O
N O G O
d Ø 3. 3 Ø 4. 3 Ø 5. 5 Ø 6. 5 Ø10 Ø 1 0. 5
C M E A S U RI N G D e pt h( m m) 8 8 20 20 26 26
L O O S E S C R E W W HI L E S E T TI N G
W EI G H T ( k g)
C O D E N O.
0. 1 2 0. 1 2 0. 1 4 0. 1 4 0. 2 0. 2
2 0 2 2- 4 0 0 2 0 2 2- 4 0 1 2 0 2 2- 4 0 2 2 0 2 2- 4 0 3 2 0 2 2- 4 0 4 2 0 2 2- 4 0 5
T h e m etri c t hr e a d pl u g g a u g e & ri n g g a u g e S cr e w Pl u g G a u g e c o nf or m t o DI N 1 3 / DI N 2 2 8 0.
T h e M etri c T hr e a d S cr e w Pl u g G a u g e I n C o ar s e T hr e a d O R D E R N O. V P G- 3 M V P G- 4 M V P G- 5 M V P G- 6 M V P G- 8 M V P G- 1 0 M V P G- 1 2 M V P G- 1 4 M V P G- 1 6 M
Si z e ( m m) M 3 x 0. 5 P M 4 x 0. 7 P M 5 x 0. 8 P M 6 x 1. 0 P M 8 x 1. 2 5 P M 1 0 x 1. 5 P M 1 2 x 1. 7 5 P M 1 4 x 2. 0 P M 1 6 x 2. 0 P
W ei g ht ( k g) 0. 0 3 0. 0 3 0. 0 3 0. 0 4 0. 0 7 0. 0 7 0. 1 1 0. 1 2 0. 1 2
C O D E N O. 2 0 3 3- 3 4 0 2 0 3 3- 3 4 1 2 0 3 3- 3 4 2 2 0 3 3- 3 4 3 2 0 3 3- 3 4 4 2 0 3 3- 3 4 5 2 0 3 3- 3 4 6 2 0 3 3- 3 4 7 2 0 3 3- 3 4 8
O R D E R N O. V P G- 1 8 M V P G- 2 0 M V P G- 2 2 M V P G- 2 4 M V P G- 2 7 M V P G- 3 0 M V P G- 3 3 M V P G- 3 6 M
Si z e ( m m) M 1 8 x 2. 5 P M 2 0 x 2. 5 P M 2 2 x 2. 5 P M 2 4 x 3. 0 P M 2 7 x 3. 0 P M 3 0 x 3. 5 P M 3 3 x 3. 5 P M 3 6 x 4. 0 P
W ei g ht ( k g) 0. 1 9 0. 2 4 0. 2 4 0. 2 8 0. 3 4 0. 4 0 0. 6 6 0. 7 1
U nit : m m
C O D E N O. 2 0 3 3- 3 4 9 2 0 3 3- 3 5 0 2 0 3 3- 3 5 1 2 0 3 3- 3 5 2 2 0 3 3- 3 5 3 2 0 3 3- 3 5 4 2 0 3 3- 3 5 5 2 0 3 3- 3 5 6
S cr e w Ri n g G a u g e G O TYPE
T h e m etri c t hr e a d pl u g g a u g e & ri n g g a u g e S cr e w Ri n g G a u g e c o nf or m t o DI N 1 3 / DI N 2 2 8 5. B91
G RI N DI N G M A C HI N E A C C E S S O RI E S
St a n d ar d Si z e T h e M etri c T hr e a d S cr e w Ri n g G a u g e I n C o ar s e T hr e a d U nit : m m O R D E R N O. V R G- 3 V R G- 4 V R G- 5 V R G- 6 V R G- 8 V R G- 1 0 V R G- 1 2 V R G- 1 4 V R G- 1 6 V R G- 1 8 V R G- 2 0 V R G- 2 2 V R G- 2 4 V R G- 2 7 V R G- 3 0 V R G- 3 3 V R G- 3 6
Si z e ( m m) M 3 x 0. 5 P M 4 x 0. 7 P M 5 x 0. 8 P M 6 x 1. 0 P M 8 x 1. 2 5 P M 1 0 x 1. 5 P M 1 2 x 1. 7 5 P M 1 4 x 2. 0 P M 1 6 x 2. 0 P M 1 8 x 2. 5 P M 2 0 x 2. 5 P M 2 2 x 2. 5 P M 2 4 x 3. 0 P M 2 7 x 3. 0 P M 3 0 x 3. 5 P M 3 3 x 3. 5 P M 3 6 x 4. 0 P
W ei g ht ( k g) 0. 0 4 0. 0 4 0. 0 4 0. 0 7 0. 0 8 0. 0 9 0. 1 5 0. 1 5 0. 2 0 0. 2 4 0. 2 4 0. 4 2 0. 4 2 0. 5 1 0. 5 6 0. 7 2 0. 7 8
C O D E N O. 2 0 3 3- 3 7 0 2 0 3 3- 3 7 1 2 0 3 3- 3 7 2 2 0 3 3- 3 7 3 2 0 3 3- 3 7 4 2 0 3 3- 3 7 5 2 0 3 3- 3 7 6 2 0 3 3- 3 7 7 2 0 3 3- 3 7 8 2 0 3 3- 3 7 9 2 0 3 3- 3 8 0 2 0 3 3- 3 8 1 2 0 3 3- 3 8 2 2 0 3 3- 3 8 3 2 0 3 3- 3 8 4 2 0 3 3- 3 8 5 2 0 3 3- 3 8 6
E R S pri n g C oll et C h u c k S y st e m E R C O L L E T DI M E N SI O N S
E R c oll et s y st e m of V E R T E X i s m a d e of s p e ci al el a sti c st e el m at eri al u n d er e x c ell e nt h e at tr e am e nt a n d pr e ci s e gri n di n g pr o c e s s, s o it h a s pr e ci s e a c c ur a c y, p o w erf ul cl a m pi n g a bilit y, a n d i s d ur a bl e. T hi s c oll et c a n cl a m p f or a s p e cifi c st a n d ar d si z e a n d it s n e xt si z e, ( R ef er t o t h e d at a s h e et o n p a g e 2). It c a n b e wi d el y u s e d f or b ori n g, milli n g, drilli n g a n d t a p pi n g a s w ell a s f or gri n di n g o p er ati o n, a n d i s a v ail a bl e f or all si z e s.
TYPE
A
B
E R- 8
8. 5
1 3. 5
E R- 1 1
1 1. 5
18
E R- 1 6
17
27
E R- 2 0
21
31
E R- 2 5
26
35
E R- 3 2
33
40
E R- 4 0
41
46
E R- 5 0
52
60
L m m
D
m m
DI N 6 3 4 3 St a n d ar d pr e ci si o n
VE RTEX St a n d ar d pr e ci si o n
A Gr a d e O pti o n al
6
1. 0- 1. 4
0. 0 2
0. 0 1 5
0. 0 1
10
1. 5- 2. 9
0. 0 2
0. 0 1 5
0. 0 1
16
3. 0- 5. 9
0. 0 2
0. 0 1 5
0. 0 1
25
6. 0- 9. 9
0. 0 2
0. 0 1 5
0. 0 1
40
1 0. 0- 1 7. 9
0. 0 3
0. 0 2
0. 0 1
50
1 8. 0- 2 6. 9
0. 0 3
0. 0 2
0. 0 1
60
2 7. 0- 3 4. 9
0. 0 3
0. 0 2
0. 0 1
T H E HI G H P R E CI SI O N O F A G R A D E I S A V AI L A B L E
d o u bl e-t a p er c h u c k
si n gl e-t a p er c h u c k
N O T E: M o u nti n g i n str u cti o n s f or E R c oll et s DI N 6 4 9 9- A a n d DI N 6 4 9 9- B A - Pl a c e c oll et i n si d e n ut a n d r ot at e t h e n ut t o e n g a g e wit h t h e e xtr a ct or s pir al i n c oll et gr o o v e.
B - O nl y t h e n m o u nt n ut a n d c oll et t o g et h er i nt o t h e c oll et h ol d er or m a c hi n e s pi n dl e. N ot e: N e v er u s e a 1 2- 1 1 m m c oll et t o cl a m p a 1 2. 2 m m di a m et er, b ut r at h er u s e a 1 3- 1 2 m m c oll et.
C1
T O O LI N G S Y S T E M
St a n d ar d BT
S h a n k F or M a c hi ni n g C e nt er M AS BT S H A N K
S K
S P E CI FI C A TI O N
D1
D2
t1
t2
L1
L2
L3
L
d1
d2
G
BT30
46
38
20
2
4 8. 4
34
24
7 0. 4
3 1. 7 5
1 2. 5
M12
B T 4 0**
63
53
25
2
6 5. 4
70
30
9 2. 4
4 4. 4 5
17
M16
B T 5 0**
100
85
35
3
1 0 1. 8
90
45
1 3 9. 8
6 9. 8 5
25
M24
D2
t1
t2
L1
L2
L3
d1
d2
M
6 8. 4
4 2. 5
32
4 4. 4 5
17
4 4. 7
1 0 1. 7 5 6 1. 5
47
6 9. 8 5
25
7 0. 1
S P E CI FI C A TI O N
D1
S K40
6 3. 5 5 5 6. 2 5
S K50
9 7. 5
1 5. 9 3. 2
9 1. 2 5
P 35
G M16 M24
* D R A W B A R DI N 6 9 8 7 2 A T Y P E
JI S B 6 1 0 1
NT
TYPE
D1
Z
d1
NT30
3 1. 7 5 0
0. 4
NT40
4 4. 4 5 0
NT50
6 9. 8 5 0
d3
I
I1
p
y
g
I5
b1
1 7. 4 1 6. 5 6 8. 4
4 8. 4
3
1. 6
M 1 2, 1/ 2- 1 2 N C
6
1 6. 1
0. 4
2 5. 3 2 4
9 3. 4
6 5. 4
5
1. 6
M 1 6, 5/ 8- 1 1 N C
8
1 6. 1
0. 4
3 9. 6 3 8
1 2 6. 8 1 0 1. 8
8
3. 2
M 2 4, 1”- 8 N C
1 1. 5 2 5. 7
/2 T A P E R
D1
d1
Drill C h u c k T a p er J A C O BS TAPE R TYPE
JT
JT0 JT1 JT2 JT33 JT6 JT3 JT4 JT5
B12 B16 B18
M or s e T a p er S h a n k M T
DI N 2 3 8
TYPE B12 B16 B18
L
6. 3 5
5. 8 0 2
1 1. 1 2
9. 7 5 4
8. 4 6 9
1 6. 6 6 9
52
1 4. 1 9 9
1 2. 3 8 6
2 2. 2 2 5
01
1 5. 8 5 0
1 4. 2 3 7
2 5. 4 0 0
88
1 7. 1 7 0
1 5. 8 5 2
2 5. 4 0 0
26
2 0. 5 9 9
1 8. 9 5 1
3 0. 9 5 6
59
2 8. 5 5 0
2 6. 3 4 6
4 2. 0 6 9
05
3 5. 8 9 0
3 3. 4 2 2
4 7. 6 2 5
/2 T A P E R 43 50 50
D1 1 2. 0 6 5 1 5. 7 3 3 1 7. 7 8 0
d1 1 1. 1 1 4. 5 1 6. 2
L 1 8. 5 2 4. 0 3 2. 0
TYPE
D
a
D1
d
I5
I6
d4
d5
M T. 0
9. 0 4 5
3
9. 2
6. 4
50
53
6
-
M T. 1
1 2. 0 6 5
3. 5
1 2. 2
9. 4
5 3. 5
57
9
M 6, 1/ 4- 2 0 N C
M T. 2
1 7. 7 8 0
5
1 8. 0
1 4. 6
64
69
14
M 1 0, 3/ 8- 1 6 N C
M T. 3
2 3. 8 2 5
5
2 4. 1
1 9. 8
81
86
19
M 1 2, 1/ 2- 1 2 N C
M T. 4
3 1. 2 6 7
6. 5
3 1. 6
2 5. 9
1 0 2. 5
109
25
M 1 6, 5/ 8- 1 1 N C
M T. 5
4 4. 3 9 9
6. 5
4 4. 7
3 7. 6
1 2 9. 5
136
3 5. 7
M 2 0, 3/ 4- 1 0 N C
M T. 6
6 3. 3 4 8
8
6 3. 8
5 3. 9
182
190
51
M 2 4, 1”- 8 N C
T O O LI N G S Y S T E M
C2
E R C OLLET
DI N 6 9 8 7 1 A S H A N K
E R S pri n g C oll et C h u c k S y st e m
DI N 6 4 9 9 E R
S T A N D A R D P R E CI SI O N T Y P E
E R C O L L E T S E T WI T H C L A M PI N G R A N G E TYPE C O MPLET SET
E R- 8
E R- 1 1
E R- 1 6
E R- 2 0
9 P C S/ S E T
7 P C S/ S E T
1 0 P C S/ S E T
1 2 P C S/ S E T
O R DE R N O.
C A P. m m Ø
O R DE R N O.
C A P. m m Ø
C O DE N O.
V08000
0. 5- 5. 0 3 0 0 1- 1 0 1 V 1 1 0 0 0
0. 5- 7. 0
I N DI VI D U A L V 0 8 0 1 0 U NI T V08015
1. 0- 0. 5 3 0 0 1- 0 0 1 V 1 1 0 1 0
F ULL SET
C3
O R DE R N O.
C A P. m m Ø
C O DE N O.
3 0 0 2- 1 0 1 V 1 6 0 0 0
0. 5- 1 0. 0 3 0 0 3- 1 0 1 V 2 0 0 0 0
1- 1 3
3 0 0 4- 1 0 1
1. 0- 0. 5
3 0 0 2- 0 0 1 V 1 6 0 1 0
1. 0- 0. 5
3 0 0 3- 0 0 1 V 2 0 0 2 0
2- 1
3 0 0 4- 0 0 1
1. 5- 1. 0 3 0 0 1- 0 0 2 V 1 1 0 2 0
2. 0- 1. 5
3 0 0 2- 0 0 2 V 1 6 0 2 0
2. 0- 1. 0
3 0 0 3- 0 0 2 V 2 0 0 3 0
3- 2
3 0 0 4- 0 0 2
V08020
2. 0- 1. 5 3 0 0 1- 0 0 3 V 1 1 0 3 0
3. 0- 2. 5
3 0 0 2- 0 0 3 V 1 6 0 3 0
3. 0- 2. 0
3 0 0 3- 0 0 3 V 2 0 0 4 0
4- 3
3 0 0 4- 0 0 3
V08025
2. 5- 2. 0 3 0 0 1- 0 0 4 V 1 1 0 4 0
4. 0- 3. 5
3 0 0 2- 0 0 4 V 1 6 0 4 0
4. 0- 3. 0
3 0 0 3- 0 0 4 V 2 0 0 5 0
5- 4
3 0 0 4- 0 0 4
V08030
3. 0- 2. 5 3 0 0 1- 0 0 5 V 1 1 0 5 0
5. 0- 4. 5
3 0 0 2- 0 0 5 V 1 6 0 5 0
5. 0- 4. 0
3 0 0 3- 0 0 5 V 2 0 0 6 0
6- 5
3 0 0 4- 0 0 5
V08035
3. 5- 3. 0 3 0 0 1- 0 0 6 V 1 1 0 6 0
6. 0- 5. 5
3 0 0 2- 0 0 6 V 1 6 0 6 0
6. 0- 5. 0
3 0 0 3- 0 0 6 V 2 0 0 7 0
7- 6
3 0 0 4- 0 0 6
V08040
4. 0- 3. 5 3 0 0 1- 0 0 7 V 1 1 0 7 0
7. 0- 6. 5
3 0 0 2- 0 0 7 V 1 6 0 7 0
7. 0- 6. 0
3 0 0 3- 0 0 7 V 2 0 0 8 0
8- 7
3 0 0 4- 0 0 7
V08045
4. 5- 4. 0 3 0 0 1- 0 0 8 V 1 1 0 1 5
1. 5
3 0 0 2- 0 0 8 V 1 6 0 8 0
8. 0- 7. 0
3 0 0 3- 0 0 8 V 2 0 0 9 0
9- 8
3 0 0 4- 0 0 8
V08050
5. 0- 4. 5 3 0 0 1- 0 0 9 V 1 1 0 2 5
2. 5
3 0 0 2- 0 0 9 V 1 6 0 9 0
9. 0- 8. 0
3 0 0 3- 0 0 9 V 2 0 1 0 0
1 0- 9
3 0 0 4- 0 0 9
V11035
3. 5
3 0 0 2- 0 1 0 V 1 6 1 0 0
1 0. 0- 9. 0 3 0 0 3- 0 1 0 V 2 0 1 1 0
1 1- 1 0
3 0 0 4- 0 1 0
V11045
4. 5
3 0 0 2- 0 1 1 V 1 6 0 1 5
1. 5
3 0 0 3- 0 1 1 V 2 0 1 2 0
1 2- 1 1
3 0 0 4- 0 1 1
V11055
5. 5
3 0 0 2- 0 1 2 V 1 6 0 2 5
2. 5
3 0 0 3- 0 1 2 V 2 0 1 3 0
1 3- 1 2
3 0 0 4- 0 1 2
V11065
6. 5
3 0 0 2- 0 1 3 V 1 6 0 3 5
3. 5
3 0 0 3- 0 1 3 V 2 0 0 1 0
1. 0
3 0 0 4- 0 1 3
V16045
4. 5
3 0 0 3- 0 1 4 V 2 0 0 2 5
2. 5
3 0 0 4- 0 1 4
V16055
5. 5
3 0 0 3- 0 1 5 V 2 0 0 3 5
3. 5
3 0 0 4- 0 1 5
V16065
6. 5
3 0 0 3- 0 1 6 V 2 0 0 4 5
4. 5
3 0 0 4- 0 1 6
C O DE N O.
O R DE R N O.
C A P. m m Ø
C O DE N O.
N ot e: A P P R O XI M A T E F O R E A C H
W EI G H T ( k g s)
E R- 8
0. 0 1
V16075
7. 5
3 0 0 3- 0 1 7 V 2 0 0 5 5
5. 5
3 0 0 4- 0 1 7
E R- 1 1
0. 0 2
V16085
8. 5
3 0 0 3- 0 1 8 V 2 0 0 6 5
6. 5
3 0 0 4- 0 1 8
E R- 1 6
0. 0 3
V16095
9. 5
3 0 0 3- 0 1 9 V 2 0 0 7 5
7. 5
3 0 0 4- 0 1 9
E R- 2 0
0. 0 5
V20085
8. 5
3 0 0 4- 0 2 0
E R- 2 5
0. 0 7
V20095
9. 5
3 0 0 4- 0 2 1
E R- 3 2
0. 1 5
V20105
1 0. 5
3 0 0 4- 0 2 2
E R- 4 0
0. 2 8
V20115
1 1. 5
3 0 0 4- 0 2 3
E R- 5 0
0. 5 4
V20125
1 2. 5
3 0 0 4- 0 2 4
T O O LI N G S Y S T E M
E R S pri n g C oll et C h u c k S y st e m
DI N 6 4 9 9
E R
E R C O L L E T S E T WI T H C L A M PI N G R A N G E
O R DE R N O.
V25000 V25020 V25030 V25040 V25050 V25060 V25070 V25080 V25090 V25100 V25110 V25120 V25130 V25140 V25150 V25160 V25015 V25025 V25035 V25045 V25055 V25065 V25075 V25085 V25095 V25105 V25115 V25125 V25135 V25145 V25155
L m m
D m m
6 10 16 25 40 50 60
1. 0- 1. 4 1. 5- 2. 9 3. 0- 5. 9 6. 0- 9. 9 1 0. 0- 1 7. 9 1 8. 0- 2 6. 9 2 7. 0- 3 4. 9
DI N 6 3 4 3 St a n d ar d pr e ci si o n 0. 0 2 0. 0 2 0. 0 2 0. 0 2 0. 0 3 0. 0 3 0. 0 3
VE RTEX St a n d ar d pr e ci si o n 0. 0 1 5 0. 0 1 5 0. 0 1 5 0. 0 1 5 0. 0 2 0. 0 2 0. 0 2
E R- 2 5
E R- 3 2
E R- 4 0
E R- 5 0
1 5 P C S/ S E T
1 8 P C S/ S E T
2 3 P C S/ S E T
1 2 P C S/ S E T
C A P. m m Ø 1- 1 6 2- 1 3- 2 4- 3 5- 4 6- 5 7- 6 8- 7 9- 8 1 0- 9 1 1- 1 0 1 2- 1 1 1 3- 1 2 1 4- 1 3 1 5- 1 4 1 6- 1 5 1. 5 2. 5 3. 5 4. 5 5. 5 6. 5 7. 5 8. 5 9. 5 1 0. 5 1 1. 5 1 2. 5 1 3. 5 1 4. 5 1 5. 5
C O DE N O.
O R DE R N O.
3 0 0 5- 1 0 1 3 0 0 5- 0 0 1 3 0 0 5- 0 0 2 3 0 0 5- 0 0 3 3 0 0 5- 0 0 4 3 0 0 5- 0 0 5 3 0 0 5- 0 0 6 3 0 0 5- 0 0 7 3 0 0 5- 0 0 8 3 0 0 5- 0 0 9 3 0 0 5- 0 1 0 3 0 0 5- 0 1 1 3 0 0 5- 0 1 2 3 0 0 5- 0 1 3 3 0 0 5- 0 1 4 3 0 0 5- 0 1 5 3 0 0 5- 0 1 6 3 0 0 5- 0 1 7 3 0 0 5- 0 1 8 3 0 0 5- 0 1 9 3 0 0 5- 0 2 0 3 0 0 5- 0 2 1 3 0 0 5- 0 2 2 3 0 0 5- 0 2 3 3 0 0 5- 0 2 4 3 0 0 5- 0 2 5 3 0 0 5- 0 2 6 3 0 0 5- 0 2 7 3 0 0 5- 0 2 8 3 0 0 5- 0 2 9 3 0 0 5- 0 3 0
V32000 V32030 V32040 V32050 V32060 V32070 V32080 V32090 V32100 V32110 V32120 V32130 V32140 V32150 V32160 V32170 V32180 V32190 V32200 V32025 V32035 V32045 V32055 V32065 V32075 V32085 V32095 V320105 V320115 V320125 V320135 V320145 V320155 V320165 V320175 V320185 V320195
C A P. m m Ø 2- 2 0 3- 2 4- 3 5- 4 6- 5 7- 6 8- 7 9- 8 1 0- 9 1 1- 1 0 1 2- 1 1 1 3- 1 2 1 4- 1 3 1 5- 1 4 1 6- 1 5 1 7- 1 6 1 8- 1 7 1 9- 1 8 2 0- 1 9 2. 5 3. 5 4. 5 5. 5 6. 5 7. 5 8. 5 9. 5 1 0. 5 1 1. 5 1 2. 5 1 3. 5 1 4. 5 1 5. 5 1 6. 5 1 7. 5 1 8. 5 1 9. 5
C O DE N O.
O R DE R N O.
3 0 0 6- 1 0 1 3 0 0 6- 0 0 1 3 0 0 6- 0 0 2 3 0 0 6- 0 0 3 3 0 0 6- 0 0 4 3 0 0 6- 0 0 5 3 0 0 6- 0 0 6 3 0 0 6- 0 0 7 3 0 0 6- 0 0 8 3 0 0 6- 0 0 9 3 0 0 6- 0 1 0 3 0 0 6- 0 1 1 3 0 0 6- 0 1 2 3 0 0 6- 0 1 3 3 0 0 6- 0 1 4 3 0 0 6- 0 1 5 3 0 0 6- 0 1 6 3 0 0 6- 0 1 7 3 0 0 6- 0 1 8 3 0 0 6- 0 1 9 3 0 0 6- 0 2 0 3 0 0 6- 0 2 1 3 0 0 6- 0 2 2 3 0 0 6- 0 2 3 3 0 0 6- 0 2 4 3 0 0 6- 0 2 5 3 0 0 6- 0 2 6 3 0 0 6- 0 2 7 3 0 0 6- 0 2 8 3 0 0 6- 0 2 9 3 0 0 6- 0 3 0 3 0 0 6- 0 3 1 3 0 0 6- 0 3 2 3 0 0 6- 0 3 3 3 0 0 6- 0 3 4 3 0 0 6- 0 3 5 3 0 0 6- 0 3 6
V40000 V40040 V40050 V40060 V40070 V40080 V40090 V40100 V40110 V40120 V40130 V40140 V40150 V40160 V40170 V40180 V40190 V40200 V40210 V40220 V40230 V40240 V40250 V40260 V40115 V40125 V40135 V40145 V40155 V40165 V40175 V40185 V40195 V40205 V40215 V40225 V40235 V40245 V40255 V40265
C A P. m m Ø 3- 2 6 4- 3 5- 4 6- 5 7- 6 8- 7 9- 8 1 0- 9 1 1- 1 0 1 2- 1 1 1 3- 1 2 1 4- 1 3 1 5- 1 4 1 6- 1 5 1 7- 1 6 1 8- 1 7 1 9- 1 8 2 0- 1 9 2 1- 2 0 2 2- 2 1 2 3- 2 2 2 4- 2 3 2 5- 2 4 2 6- 2 5 1 1. 5 1 2. 5 1 3. 5 1 4. 5 1 5. 5 1 6. 5 1 7. 5 1 8. 5 1 9. 5 2 0. 5 2 1. 5 2 2. 5 2 3. 5 2 4. 5 2 5. 5 2 6. 5
C O DE N O.
O R DE R N O.
3 0 0 7- 1 0 1 3 0 0 7- 0 0 1 3 0 0 7- 0 0 2 3 0 0 7- 0 0 3 3 0 0 7- 0 0 4 3 0 0 7- 0 0 5 3 0 0 7- 0 0 6 3 0 0 7- 0 0 7 3 0 0 7- 0 0 8 3 0 0 7- 0 0 9 3 0 0 7- 0 1 0 3 0 0 7- 0 1 1 3 0 0 7- 0 1 2 3 0 0 7- 0 1 3 3 0 0 7- 0 1 4 3 0 0 7- 0 1 5 3 0 0 7- 0 1 6 3 0 0 7- 0 1 7 3 0 0 7- 0 1 8 3 0 0 7- 0 1 9 3 0 0 7- 0 2 0 3 0 0 7- 0 2 1 3 0 0 7- 0 2 2 3 0 0 7- 0 2 3 3 0 0 7- 0 2 4 3 0 0 7- 0 2 5 3 0 0 7- 0 2 6 3 0 0 7- 0 2 7 3 0 0 7- 0 2 8 3 0 0 7- 0 2 9 3 0 0 7- 0 3 0 3 0 0 7- 0 3 1 3 0 0 7- 0 3 2 3 0 0 7- 0 3 3 3 0 0 7- 0 3 4 3 0 0 7- 0 3 5 3 0 0 7- 0 3 6 3 0 0 7- 0 3 7 3 0 0 7- 0 3 8 3 0 0 7- 0 3 9
V50000 V50120 V50140 V50160 V50180 V50200 V50220 V50240 V50260 V50280 V50300 V50320 V50340
C A P. m m Ø 1 0- 3 4 1 2- 1 0 1 4- 1 2 1 6- 1 4 1 8- 1 6 2 0- 1 8 2 2- 2 0 2 4- 2 2 2 6- 2 4 2 8- 2 6 3 0- 2 8 3 2- 3 0 3 4- 3 2
E R C OLLET
S T A N D A R D P R E CI SI O N T Y P E
C O DE N O. 3 0 0 8- 1 0 1 3 0 0 8- 0 0 1 3 0 0 8- 0 0 2 3 0 0 8- 0 0 3 3 0 0 8- 0 0 4 3 0 0 8- 0 0 5 3 0 0 8- 0 0 6 3 0 0 8- 0 0 7 3 0 0 8- 0 0 8 3 0 0 8- 0 0 9 3 0 0 8- 0 1 0 3 0 0 8- 0 1 1 3 0 0 8- 0 1 2
T O O LI N G S Y S T E M
C4
E R S pri n g C oll et C h u c k S y st e m S U P E R U L T R A P R E CI SI O N T Y P E A G R A DE
TYPE C O MPLET SET
E R
E R- 8
E R- 1 1
E R- 1 6
E R- 2 0
9 P C S/ S E T
7 P C S/ S E T
1 0 P C S/ S E T
1 2 P C S/ S E T
O R DE R N O.
C A P. m m Ø
C O DE N O.
O R DE R N O.
C A P. m m Ø
C O DE N O.
O R DE R N O.
C A P. m m Ø
C O DE N O.
V08000 S
0. 5- 5. 0
3 0 0 0- 0 0 1 V 1 1 0 0 0 S
0. 5- 7. 0
3 0 0 0- 0 0 2 V 1 6 0 0 0 S 0. 5- 1 0. 0 3 0 0 0- 0 0 3 V 2 0 0 0 0 S
1- 1 3
3 0 0 0- 0 0 4
I N DI VI D U A L V 0 8 0 1 0 S U NI T V08015 S
1. 0- 0. 5
3 0 0 0- 0 1 0 V 1 1 0 1 0 S
1. 0- 0. 5
3 0 0 0- 0 2 0 V 1 6 0 1 0 S
1. 0- 0. 5
3 0 0 0- 0 4 0 V 2 0 0 2 0 S
2- 1
3 0 0 0- 0 6 0
1. 5- 1. 0
3 0 0 0- 0 1 1 V 1 1 0 2 0 S
2. 0- 1. 5
3 0 0 0- 0 2 1 V 1 6 0 2 0 S
2. 0- 1. 0
3 0 0 0- 0 4 1 V 2 0 0 3 0 S
3- 2
3 0 0 0- 0 6 1
V08020 S
2. 0- 1. 5
3 0 0 0- 0 1 2 V 1 1 0 3 0 S
3. 0- 2. 5
3 0 0 0- 0 2 2 V 1 6 0 3 0 S
3. 0- 2. 0
3 0 0 0- 0 4 2 V 2 0 0 4 0 S
4- 3
3 0 0 0- 0 6 2
V08025 S
2. 5- 2. 0
3 0 0 0- 0 1 3 V 1 1 0 4 0 S
4. 0- 3. 5
3 0 0 0- 0 2 3 V 1 6 0 4 0 S
4. 0- 3. 0
3 0 0 0- 0 4 3 V 2 0 0 5 0 S
5- 4
3 0 0 0- 0 6 3
V08030 S
3. 0- 2. 5
3 0 0 0- 0 1 4 V 1 1 0 5 0 S
5. 0- 4. 5
3 0 0 0- 0 2 4 V 1 6 0 5 0 S
5. 0- 4. 0
3 0 0 0- 0 4 4 V 2 0 0 6 0 S
6- 5
3 0 0 0- 0 6 4
V08035 S
3. 5- 3. 0
3 0 0 0- 0 1 5 V 1 1 0 6 0 S
6. 0- 5. 5
3 0 0 0- 0 2 5 V 1 6 0 6 0 S
6. 0- 5. 0
3 0 0 0- 0 4 5 V 2 0 0 7 0 S
7- 6
3 0 0 0- 0 6 5
V08040 S
4. 0- 3. 5
3 0 0 0- 0 1 6 V 1 1 0 7 0 S
7. 0- 6. 5
3 0 0 0- 0 2 6 V 1 6 0 7 0 S
7. 0- 6. 0
3 0 0 0- 0 4 6 V 2 0 0 8 0 S
8- 7
3 0 0 0- 0 6 6
V08045 S
4. 5- 4. 0
3 0 0 0- 0 1 7 V 1 1 0 1 5 S
1. 5
3 0 0 0- 0 2 7 V 1 6 0 8 0 S
8. 0- 7. 0
3 0 0 0- 0 4 7 V 2 0 0 9 0 S
9- 8
3 0 0 0- 0 6 7
V08050 S
5. 0- 4. 5
3 0 0 0- 0 1 8 V 1 1 0 2 5 S
2. 5
3 0 0 0- 0 2 8 V 1 6 0 9 0 S
9. 0- 8. 0
3 0 0 0- 0 4 8 V 2 0 1 0 0 S
1 0- 9
3 0 0 0- 0 6 8
V11035 S
3. 5
3 0 0 0- 0 2 9 V 1 6 1 0 0 S 1 0. 0- 9. 0 3 0 0 0- 0 4 9 V 2 0 1 1 0 S
1 1- 1 0
3 0 0 0- 0 6 9
V11045 S
4. 5
3 0 0 0- 0 3 0 V 1 6 0 1 5 S
1. 5
3 0 0 0- 0 5 0 V 2 0 1 2 0 S
1 2- 1 1
3 0 0 0- 0 7 0
V11055 S
5. 5
3 0 0 0- 0 3 1 V 1 6 0 2 5 S
2. 5
3 0 0 0- 0 5 1 V 2 0 1 3 0 S
1 3- 1 2
3 0 0 0- 0 7 1
V11065 S
6. 5
3 0 0 0- 0 3 2 V 1 6 0 3 5 S
3. 5
3 0 0 0- 0 5 2 V 2 0 0 1 0 S
1. 0
3 0 0 0- 0 7 2
V16045 S
4. 5
3 0 0 0- 0 5 3 V 2 0 0 2 5 S
2. 5
3 0 0 0- 0 7 3
V16055 S
5. 5
3 0 0 0- 0 5 4 V 2 0 0 3 5 S
3. 5
3 0 0 0- 0 7 4
V16065 S
6. 5
3 0 0 0- 0 5 5 V 2 0 0 4 5 S
4. 5
3 0 0 0- 0 7 5
V16075 S
7. 5
3 0 0 0- 0 5 6 V 2 0 0 5 5 S
5. 5
3 0 0 0- 0 7 6
V16085 S
8. 5
3 0 0 0- 0 5 7 V 2 0 0 6 5 S
6. 5
3 0 0 0- 0 7 7
V16095 S
9. 5
3 0 0 0- 0 5 8 V 2 0 0 7 5 S
7. 5
3 0 0 0- 0 7 8
V20085 S
8. 5
3 0 0 0- 0 7 9
V20095 S
9. 5
3 0 0 0- 0 8 0
V20105 S
1 0. 5
3 0 0 0- 0 8 1
V20115 S
1 1. 5
3 0 0 0- 0 8 2
V20125 S
1 2. 5
3 0 0 0- 0 8 3
F ULL SET
C5
T O O LI N G S Y S T E M
O R DE R N O.
C A P. m m Ø
C O DE N O.
E R S pri n g C oll et C h u c k S y st e m E R
DI M E N SI O N S TYPE E R08 E R 11 E R16 E R20 E R25 E R32 E R40 E R50
A 8. 5 1 1. 5 17 21 26 33 41 52
B 1 3. 5 18 27 31 35 40 46 60
S G R A D E/ A G R A D E A c c ur a c y L( m m) 6 10 16 25 40 50 60
Ultr a Pr e ci si o n( M M) 1. 0- 1. 4 0. 0 1 1. 5- 2. 9 0. 0 1 3. 0- 5. 9 0. 0 1 6. 0- 9. 9 0. 0 1 1 0. 0- 1 7. 9 0. 0 1 1 8. 0- 2 6. 9 0. 0 1 2 7. 0- 3 4. 9 0. 0 1 ø D( m m)
E R- 2 5
E R- 3 2
E R- 4 0
E R- 5 0
1 5 P C S/ S E T
1 8 P C S/ S E T
2 3 P C S/ S E T
1 2 P C S/ S E T
E R C OLLET
S U P E R U L T R A P R E CI SI O N T Y P E
O R DE R N O.
C A P. m m Ø
C O DE N O.
O R DE R N O.
C A P. m m Ø
C O DE N O.
O R DE R N O.
C A P. m m Ø
C O DE N O.
O R DE R N O.
C A P. m m Ø
C O DE N O.
V25000 S
1- 1 6
3 0 0 0- 0 0 5
V32000 S
2- 2 0
3 0 0 0- 0 0 6
V40000 S
3- 2 6
3 0 0 0- 0 0 7
V50000 S
1 0- 3 4
3 0 0 0- 0 0 8
V25020 S
2- 1
3 0 0 0- 0 9 0
V32030 S
3- 2
3 0 0 0- 1 1 0
V40040 S
4- 3
3 0 0 0- 1 3 0
V50120 S
1 2- 1 0
3 0 0 0- 1 6 0
V25030 S
3- 2
3 0 0 0- 0 9 1
V32040 S
4- 3
3 0 0 0- 1 1 1
V40050 S
5- 4
3 0 0 0- 1 3 1
V50140 S
1 4- 1 2
3 0 0 0- 1 6 1
V25040 S
4- 3
3 0 0 0- 0 9 2
V32050 S
5- 4
3 0 0 0- 1 1 2
V40060 S
6- 5
3 0 0 0- 1 3 2
V50160 S
1 6- 1 4
3 0 0 0- 1 6 2
V25050 S
5- 4
3 0 0 0- 0 9 3
V32060 S
6- 5
3 0 0 0- 1 1 3
V40070 S
7- 6
3 0 0 0- 1 3 3
V50180 S
1 8- 1 6
3 0 0 0- 1 6 3
V25060 S
6- 5
3 0 0 0- 0 9 4
V32070 S
7- 6
3 0 0 0- 1 1 4
V40080 S
8- 7
3 0 0 0- 1 3 4
V50200 S
2 0- 1 8
3 0 0 0- 1 6 4
V25070 S
7- 6
3 0 0 0- 0 9 5
V32080 S
8- 7
3 0 0 0- 1 1 5
V40090 S
9- 8
3 0 0 0- 1 3 5
V50220 S
2 2- 2 0
3 0 0 0- 1 6 5
V25080 S
8- 7
3 0 0 0- 0 9 6
V32090 S
9- 8
3 0 0 0- 1 1 6
V40100 S
1 0- 9
3 0 0 0- 1 3 6
V50240 S
2 4- 2 2
3 0 0 0- 1 6 6
V25090 S
9- 8
3 0 0 0- 0 9 7
V32100 S
1 0- 9
3 0 0 0- 1 1 7
V40110 S
1 1- 1 0
3 0 0 0- 1 3 7
V50260 S
2 6- 2 4
3 0 0 0- 1 6 7
V25100 S
1 0- 9
3 0 0 0- 0 9 8
V32110 S
1 1- 1 0
3 0 0 0- 1 1 8
V40120 S
1 2- 1 1
3 0 0 0- 1 3 8
V50280 S
2 8- 2 6
3 0 0 0- 1 6 8
V25110 S
1 1- 1 0
3 0 0 0- 0 9 9
V32120 S
1 2- 1 1
3 0 0 0- 1 1 9
V40130 S
1 3- 1 2
3 0 0 0- 1 3 9
V50300 S
3 0- 2 8
3 0 0 0- 1 6 9
V25120 S
1 2- 1 1
3 0 0 0- 1 0 0
V32130 S
1 3- 1 2
3 0 0 0- 1 2 0
V40140 S
1 4- 1 3
3 0 0 0- 1 4 0
V50320 S
3 2- 3 0
3 0 0 0- 1 7 0
V25130 S
1 3- 1 2
3 0 0 0- 1 0 1
V32140 S
1 4- 1 3
3 0 0 0- 1 2 1
V40150 S
1 5- 1 4
3 0 0 0- 1 4 1
V50340 S
3 4- 3 2
3 0 0 0- 1 7 1
V25140 S
1 4- 1 3
3 0 0 0- 1 0 2
V32150 S
1 5- 1 4
3 0 0 0- 1 2 2
V40160 S
1 6- 1 5
3 0 0 0- 1 4 2
V25150 S
1 5- 1 4
3 0 0 0- 1 0 3
V32160 S
1 6- 1 5
3 0 0 0- 1 2 3
V40170 S
1 7- 1 6
3 0 0 0- 1 4 3
V25160 S
1 6- 1 5
3 0 0 0- 1 0 4
V32170 S
1 7- 1 6
3 0 0 0- 1 2 4
V40180 S
1 8- 1 7
3 0 0 0- 1 4 4
V32180 S
1 8- 1 7
3 0 0 0- 1 2 5
V40190 S
1 9- 1 8
3 0 0 0- 1 4 5
V32190 S
1 9- 1 8
3 0 0 0- 1 2 6
V40200 S
2 0- 1 9
3 0 0 0- 1 4 6
V32200 S
2 0- 1 9
3 0 0 0- 1 2 7
V40210 S
2 1- 2 0
3 0 0 0- 1 4 7
V40220 S
2 2- 2 1
3 0 0 0- 1 4 8
V40230 S
2 3- 2 2
3 0 0 0- 1 4 9
V40240 S
2 4- 2 3
3 0 0 0- 1 5 0
V40250 S
2 5- 2 4
3 0 0 0- 1 5 1
V40260 S
2 6- 2 5
3 0 0 0- 1 5 2
T O O LI N G S Y S T E M
C6
E R S pri n g C oll et C h u c k S y st e m
E R C O L L E T S E T S T A N D A R D P R E CI SI O N T Y P E
DI N 6 4 9 9
SET TYPE
C O L L E T KI T S TYPE
C O L L E T SI Z E I N SI D E DI A.
V- 0 8 0 0 0
E R- 8
1 + 0. 5- 5 m m( 1, 1. 5, 2, 2. 5, 3, 3. 5, 4, 4. 5, 5 m m)
K G S/ P A C KI N G
C O D E N O.
9P CS
1. 0 6 5( C)
3 0 0 1- 1 0 1
1- 7 m m( 1, 2, 3, 4, 5, 6, 7 m m)
7P CS
1. 0 7 5( C)
3 0 0 2- 1 0 1
1 + 0. 5- 7 m m( 1, 1. 5, 2, 2. 5, 3, 3. 5, 4, 4. 5, 5, 5. 5, 6, 6. 5, 7 m m)
13 P C S
0. 3( C)
3 0 0 2- 1 0 2
1- 1 0 m m( 1, 2, 3, 4, 5, 6, 7, 8, 9, 1 0 m m)
10 P C S
0. 7( C)
3 0 0 3- 1 0 1
3- 1 0 m m( 3, 4, 5, 6, 7, 8, 9, 1 0 m m)
8P CS
0. 6( C)
3 0 0 3- 1 0 2
2- 1 3 m m( 2, 3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3 m m)
12 P C S
0. 9( C)
3 0 0 4- 1 0 1
4- 1 3 m m( 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3 m m)
10 P C S
0. 8( C)
3 0 0 4- 1 0 2
2- 1 6 m m( 2, 3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 4, 1 5, 1 6 m m)
15 P C S
1. 3( W)
3 0 0 5- 1 0 1
4- 1 6 m m( 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 4, 1 5, 1 6 m m)
13 P C S
1. 0( W)
3 0 0 5- 1 0 2
6, 8, 1 0, 1 2, 1 6 m m
5P CS
1. 3 2 5( C)
3 0 0 5- 1 0 3
V- 2 5 0 1 0
4, 6, 8, 1 0, 1 2, 1 4, 1 6 m m
7P CS
0. 3 5( C)
3 0 0 5- 1 0 4
V- 3 2 0 0 0
3- 2 0 m m( 3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 4, 1 5, 1 6, 1 7, 1 8, 1 9, 2 0 m m)
18 P C S
3. 3( P)
3 0 0 6- 1 0 1
4, 5, 6, 8, 1 0, 1 2, 1 3, 1 5, 1 6, 1 8, 2 0 m m
11 P C S
2. 8( C)
3 0 0 6- 1 0 2
V- 3 2 0 0 9
6, 8, 1 0, 1 2, 1 6, 2 0 m m
6P CS
0. 9( C)
3 0 0 6- 1 0 3
V- 4 0 0 0 0
4- 2 6 m m( 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 4, 1 5, 1 6, 1 7, 1 8, 1 9, 2 0, 2 1, 2 2, 2 3, 2 4, 2 5, 2 6 m m)
23 P C S
6. 5( P)
3 0 0 7- 1 0 1
4, 5, 6, 8, 1 0, 1 2, 1 3, 1 5, 1 6, 1 8, 2 0, 2 1, 2 2, 2 5, 2 6 m m
15 P C S
4. 2( P)
3 0 0 7- 1 0 2
6, 8, 1 0, 1 2, 1 6, 2 0, 2 5 m m
7P CS
2. 0( P)
3 0 0 7- 1 0 3
1 2, 1 4, 1 6, 1 8, 2 0, 2 2, 2 4, 2 6, 2 8, 3 0, 3 2, 3 4 m m
12 P C S
6. 5( P)
3 0 0 8- 1 0 1
V- 1 1 0 0 0 V- 1 1 0 1 3 V- 1 6 0 0 0 V- 1 6 0 0 8 V- 2 0 0 0 0 V- 2 0 0 0 8
E R- 1 1
E R- 1 6
E R- 2 0
V- 2 5 0 0 0 V- 2 5 0 0 8 V- 2 5 0 0 9
V- 3 2 0 0 8
V- 4 0 0 0 8
E R- 2 5
E R- 3 2
E R- 4 0
V- 4 0 0 0 9 V- 5 0 0 0 0
C7
STA N D A R D TYPE
O R DE R N O.
E R- 5 0
T O O LI N G S Y S T E M
P C S/ S E T
E R- T y p e C o ol a nt C oll et C oll et s t o DI N 6 4 9 9 B F O R C O OL A NT
S e al C o ol a nt C oll et E R- 1 6
E R- 2 0
E R- 2 5
E R- 3 2
E R- 4 0
P C S/ S E T
P C S/ S E T
P C S/ S E T
P C S/ S E T
P C S/ S E T
O R DE R N O.
C A P. m m Ø
C A P. m m Ø
C O DE N O.
V16040L
4
3 0 0 0- 2 0 0 V 2 0 0 4 0 L
4
3 0 0 0- 2 1 0 V 2 5 0 4 0 L
4
3 0 0 0- 2 2 1 V 3 2 0 4 0 L
4
3 0 0 0- 2 4 0 V 4 0 0 4 0 L
4
3 0 0 0- 2 6 0
V16050L
5
3 0 0 0- 2 0 1 V 2 0 0 5 0 L
5
3 0 0 0- 2 1 1 V 2 5 0 5 0 L
5
3 0 0 0- 2 2 2 V 3 2 0 5 0 L
5
3 0 0 0- 2 4 1 V 4 0 0 5 0 L
5
3 0 0 0- 2 6 1
V16060L
6
3 0 0 0- 2 0 2 V 2 0 0 6 0 L
6
3 0 0 0- 2 1 2 V 2 5 0 6 0 L
6
3 0 0 0- 2 2 3 V 3 2 0 6 0 L
6
3 0 0 0- 2 4 2 V 4 0 0 6 0 L
6
3 0 0 0- 2 6 2
V16070L
7
3 0 0 0- 2 0 3 V 2 0 0 7 0 L
7
3 0 0 0- 2 1 3 V 2 5 0 7 0 L
7
3 0 0 0- 2 2 4 V 3 2 0 7 0 L
7
3 0 0 0- 2 4 3 V 4 0 0 7 0 L
7
3 0 0 0- 2 6 3
V16080L
8
3 0 0 0- 2 0 4 V 2 0 0 8 0 L
8
3 0 0 0- 2 1 4 V 2 5 0 8 0 L
8
3 0 0 0- 2 2 5 V 3 2 0 8 0 L
8
3 0 0 0- 2 4 4 V 4 0 0 8 0 L
8
3 0 0 0- 2 6 4
V16090L
9
3 0 0 0- 2 0 5 V 2 0 0 9 0 L
9
3 0 0 0- 2 1 5 V 2 5 0 9 0 L
9
3 0 0 0- 2 2 6 V 3 2 0 9 0 L
9
3 0 0 0- 2 4 5 V 4 0 0 9 0 L
9
3 0 0 0- 2 6 5
V16100L
10
3 0 0 0- 2 0 6 V 2 0 1 0 0 L
10
3 0 0 0- 2 1 6 V 2 5 1 0 0 L
10
3 0 0 0- 2 2 7 V 3 2 1 0 0 L
10
3 0 0 0- 2 4 6 V 4 0 1 0 0 L
10
3 0 0 0- 2 6 6
V20110 L
11
3 0 0 0- 2 1 7 V 2 5 1 1 0 L
11
3 0 0 0- 2 2 8 V 3 2 1 1 0 L
11
3 0 0 0- 2 4 7 V 4 0 1 1 0 L
11
3 0 0 0- 2 6 7
V20120L
12
3 0 0 0- 2 1 8 V 2 5 1 2 0 L
12
3 0 0 0- 2 2 9 V 3 2 1 2 0 L
12
3 0 0 0- 2 4 8 V 4 0 1 2 0 L
12
3 0 0 0- 2 6 8
V20130L
13
3 0 0 0- 2 1 9 V 2 5 1 3 0 L
13
3 0 0 0- 2 3 0 V 3 2 1 3 0 L
13
3 0 0 0- 2 4 9 V 4 0 1 3 0 L
13
3 0 0 0- 2 6 9
V25140L
14
3 0 0 0- 2 3 1 V 3 2 1 4 0 L
14
3 0 0 0- 2 5 0 V 4 0 1 4 0 L
14
3 0 0 0- 2 7 0
V25150L
15
3 0 0 0- 2 3 2 V 3 2 1 5 0 L
15
3 0 0 0- 2 5 1 V 4 0 1 5 0 L
15
3 0 0 0- 2 7 1
V25160L
16
3 0 0 0- 2 3 3 V 3 2 1 6 0 L
16
3 0 0 0- 2 5 2 V 4 0 1 6 0 L
16
3 0 0 0- 2 7 2
V32170L
17
3 0 0 0- 2 5 3 V 4 0 1 7 0 L
17
3 0 0 0- 2 7 3
V32180L
18
3 0 0 0- 2 5 4 V 4 0 1 8 0 L
18
3 0 0 0- 2 7 4
V32190L
19
3 0 0 0- 2 5 5 V 4 0 1 9 0 L
19
3 0 0 0- 2 7 5
V32200L
20
3 0 0 0- 2 5 6 V 4 0 2 0 0 L
20
3 0 0 0- 2 7 6
V40210L
21
3 0 0 0- 2 7 7
V40220L
22
3 0 0 0- 2 7 8
V40230L
23
3 0 0 0- 2 7 9
V40240L
24
3 0 0 0- 2 8 0
V40250L
25
3 0 0 0- 2 8 1
V40260L
26
3 0 0 0- 2 8 2
C O DE N O.
O R DE R N O.
C A P. m m Ø
C O DE N O.
O R DE R N O.
C A P. m m Ø
C O DE N O.
O R DE R N O.
C A P. m m Ø
C O DE N O.
O R DE R N O.
T O O LI N G S Y S T E M
C8
E R TYPE C OLL A NT C OLLET
C O OL A NT C OLL ET S H A S R O U N D S M ALL T H R O U G H H OL E O N T H E S L O T S, O N L Y W H E N T H E DI A M E T E R I S S M A L L. T H E R E S T I S S A M E A S N O R M A L E R C O L L E T. E R 2 0 Ø 4, 5 M M E R 2 5 Ø 4, 5, 6, 7 M M E R 3 2 Ø 4, 5, 6, 7, 8, 9 M M E R 4 0 Ø 4, 5, 6, 7, 8, 9 M M
E R- G B T a p C oll et s
C oll et s t o DI N 6 4 9 9 B I nt er c h a n g e a bl e wit h E R- c oll et s F or s y s c hr o ni z e d t a p pi n g F O R TAP HEA D
Ø D &
E R- T A P TYPE F ULL SET I N DI VI D U A L U NI T
C9
E R- 1 6 G B
E R- 2 0 G B
T A P SI Z E
T A P SI Z E
C O DE N O.
O R DE R N O.
ø D m m
m m
DI N
3 0 0 0- 4 0 0
G B200450
4. 5
3. 4
M6
M4
3 0 0 0- 4 0 1
G B200500
5
4
M4
3 0 0 0- 4 2 1
4. 5
M5
3 0 0 0- 4 0 2
G B200550
5. 5
4. 5
M5
3 0 0 0- 4 2 2
6
4. 5
M6 1/ 4 U
3 0 0 0- 4 0 3
G B200600
6
4. 5
M 6 1/ 4 U
3 0 0 0- 4 2 3
G B160601
6
4. 9
3 0 0 0- 4 0 4
G B200601
6
4. 9
G B160610
6. 1
5
5/ 1 6 U
3 0 0 0- 4 0 5
G B200610
6. 1
5
5/ 1 6 U
3 0 0 0- 4 2 5
G B160620
6. 2
5
M8
3 0 0 0- 4 0 6
G B200620
6. 2
5
M8
3 0 0 0- 4 2 6
G B160700
7
5. 5
M10 3/ 8 U
3 0 0 0- 4 0 7
G B200700
7
5. 5
M 1 0 3/ 8 U
3 0 0 0- 4 2 7
G B160800
8
6. 2
7/ 1 6 U
3 0 0 0- 4 0 8
G B200800
8
6. 2
7/ 1 6 U
3 0 0 0- 4 2 8
G B200850
8. 5
6. 5
M12
3 0 0 0- 4 2 9
G B200900
9
7. 1
1/ 2 U
3 0 0 0- 4 3 0
G B201000
10
8
O R DE R N O.
ø D m m
m m
DI N
G B160450
4. 5
3. 4
M6
G B160500
5
4
G B160550
5. 5
G B160600
T O O LI N G S Y S T E M
JI S
M8
M10
JI S
3 0 0 0- 4 2 0
M8
M10
M12
C O DE N O.
3 0 0 0- 4 2 4
3 0 0 0- 4 3 1
C oll et s t o DI N 6 4 9 9 B I nt er c h a n g e a bl e wit h E R- c oll et s F or s y s c hr o ni z e d t a p pi n g
E R- T A P E R- 2 5 G B ø D m m
m m
DI N
G B250450
4. 5
3. 4
M6
G B250500
5
4
G B250550
5. 5
4. 5
G B250600
6
G B250601
6
4. 9
G B250610
6. 1
5
G B250620
6. 2
5
G B250700
7
5. 5
G B250800
8
G B250850 G B250900
E R- 4 0 G B
T A P SI Z E
O R DE R N O.
ø D m m
m m
DI N
3 0 0 0- 4 4 0 G B 3 2 0 4 5 0
4. 5
3. 4
M6
M4
3 0 0 0- 4 4 1 G B 3 2 0 5 0 0
5
4
M4
3 0 0 0- 4 6 1
M5
3 0 0 0- 4 4 2 G B 3 2 0 5 5 0
5. 5
4. 5
M5
3 0 0 0- 4 6 2
JI S
C O DE N O.
M6 1/ 4 U 3 0 0 0- 4 4 3 G B 3 2 0 6 0 0
4. 5
Ø D &
E R- 3 2 G B
T A P SI Z E
O R DE R N O.
E R
3 0 0 0- 4 4 4 G B 3 2 0 6 0 1
O R DE R N O.
ø D m m
m m
C O DE N O.
DI N
JI S
4. 5
M6 1/ 4 U 3 0 0 0- 4 9 0
3 0 0 0- 4 6 0
M6 1/ 4 U 3 0 0 0- 4 6 3 G B 4 0 0 6 0 0
4. 5
T A P SI Z E
4. 9
6. 1
5
6. 2
5
M 1 0 3/M 18 0 U 3 0 0 0- 4 4 7 G B 3 2 0 7 0 0
7
5. 5
M 1 0 3/M 18 0 U 3 0 0 0- 4 6 7 G B 4 0 0 7 0 0
6. 2
7/ 1 6 U 3 0 0 0- 4 4 8 G B 3 2 0 8 0 0
8
6. 2
7/ 1 6 U 3 0 0 0- 4 6 8 G B 4 0 0 8 0 0
8
6. 2
7/ 1 6 U 3 0 0 0- 4 9 5
8. 5
6. 5
M 1 2 3 0 0 0- 4 4 9 G B 3 2 0 8 5 0
8. 5
6. 5
M 1 2 3 0 0 0- 4 6 9 G B 4 0 0 8 5 0
8. 5
6. 5
M 1 2 3 0 0 0- 4 9 6
9
7. 1
M 1 2 1/ 2 U 3 0 0 0- 4 5 0 G B 3 2 0 9 0 0
9
7. 1
M 1 2 1/ 2 U 3 0 0 0- 4 7 0 G B 4 0 0 9 0 0
9
7. 1
M 1 2 1/ 2 U 3 0 0 0- 4 9 7
3 0 0 0- 4 5 1 G B 3 2 1 0 0 0
10
8
3 0 0 0- 4 7 1 G B 4 0 1 0 0 0
10
8
3 0 0 0- 4 9 8
M14 9/ 1 6 U 3 0 0 0- 4 7 2 G B 4 0 1 0 5 0 1 0. 5 8
M14 9/ 1 6 U 3 0 0 0- 4 9 9
5/ 1 6 U 3 0 0 0- 4 4 5 G B 3 2 0 6 1 0 M8
8
3 0 0 0- 4 4 6 G B 3 2 0 6 2 0
M8
5/ 1 6 U 3 0 0 0- 4 6 5 G B 4 0 0 6 1 0 M8
M14 9/ 1 6 U 3 0 0 0- 4 5 2 G B 3 2 1 0 5 0 1 0. 5 8
G B 2 5 1 0 5 0 1 0. 5 8
3 0 0 0- 4 6 4 G B 4 0 0 6 0 1
6
6
G B251000 10
M8
6
JI S
C O DE N O.
3 0 0 0- 4 6 6 G B 4 0 0 6 2 0
6
4. 9
6. 1
5
6. 2
5 7
M8
3 0 0 0- 4 9 1 5/ 1 6 U 3 0 0 0- 4 9 2 M8
5. 5
3 0 0 0- 4 9 3
M 13/M 018 0 U 3 0 0 0- 4 9 4
G B 2 5 11 0 0 11
9
M14
3 0 0 0- 4 5 3 G B 3 2 1 1 0 0
11
9
M14
3 0 0 0- 4 7 3 G B 4 0 1 1 0 0
11
9
M14
G B251200 12
9
M 1 6 5/ 8 U 3 0 0 0- 4 5 4 G B 3 2 1 2 0 0
12
9
M 1 6 5/ 8 U 3 0 0 0- 4 7 4 G B 4 0 1 2 0 0
12
9
M 1 6 5/ 8 U 3 0 0 0- 5 0 1
M 1 6 3 0 0 0- 4 7 5 G B 4 0 1 2 5 0 1 2. 5 1 0
M 1 6 3 0 0 0- 5 0 2
G B 2 5 1 2 5 0 1 2. 5 1 0
M 1 6 3 0 0 0- 4 5 5 G B 3 2 1 2 5 0 1 2. 5 1 0
3 0 0 0- 5 0 0
G B321400
14
11
M 1 8 3/M 14 8 U 3 0 0 0- 4 7 6 G B 4 0 1 4 0 0
14
11
M 1 8 3/M 14 8 U 3 0 0 0- 5 0 3
G B321500
15
12
M 2 0 3 0 0 0- 4 7 7 G B 4 0 1 5 0 0
15
12
M 2 0 3 0 0 0- 5 0 4
G B321600
16
12
3 0 0 0- 4 7 8 G B 4 0 1 6 0 0
16
12
G B321700
17
13
M22 7/ 8 U 3 0 0 0- 4 7 9 G B 4 0 1 7 0 0
17
13
G B401800
18
1 4. 5
G B401900
19
15
M 2 4 3 0 0 0- 5 0 8
G B402000
20
15
M27 1” U
G B402001
20
16
M27
3 0 0 0- 5 1 0
G B402200
22
18
M30
3 0 0 0- 5 1 1
M20
M20
3 0 0 0- 5 0 5 M22 7/ 8 U 3 0 0 0- 5 0 6
M22
3 0 0 0- 5 0 7
3 0 0 0- 5 0 9
T O O LI N G S Y S T E M
C10
E R G B TAP C OLLET
E R- G B T a p C oll et s
E R S pri n g C oll et C h u c k S y st e m
C oll et C h u c k Kit W hit I S O T a p er S h a n k
DI N 2 0 8 0/I S O S H A N K DI N 6 4 9 9 E R
O R D E R N O.
N T- 4 0
※
V- 1 0 1 V- 1 0 2 V- 1 0 3 V- 1 0 4 V- 1 0 5 V- 1 0 6 V- 1 0 7 V- 1 0 8 V- 1 0 9
※
V- 1 1 0
TAPE R N T- 3 0 N T- 4 0
C OLLET TYPE
L
D
G
W EI G H T K GS
C O D E N O.
E R- 3 2
55
50
1/ 2 - 1 2 W, M 1 2 X 1. 7 5 P ( U S A 1/ 2 - U N C 1 3)
0. 7
3 0 2 0- 3 0 1
1. 1
3 0 2 0- 3 0 2
E R- 4 0
70
63
E R- 3 2
50
60
E R- 4 0
60
63
5/ 8 - 1 1 W or M 1 6 X 2. 0 P
1. 1
3 0 2 1- 3 0 1
1. 3
3 0 2 1- 3 0 2
E R- 5 0
80
78
2
3 0 2 1- 3 0 3
E R- 3 2
60
50
3. 1
3 0 2 2- 3 0 1
E R- 4 0
65
63
3. 4
3 0 2 2- 3 0 2
E R- 5 0
80
78
4
3 0 2 2- 3 0 3
N T- 3 0
E R- 2 5
55
42
1/ 2 - 1 2 W, M 1 2 X 1. 7 5 P
0. 7
3 0 2 0- 3 0 3
N T- 4 0
E R- 2 5
50
42
5/ 8 - 1 1 W, M 1 6 X 2. 0 P
1. 1
3 0 2 1- 3 0 4
N T- 5 0
1 - 8 W or M 2 4 X 3. 0 P
C oll et C h u c k kit Wit h I S O T a p er S h a n k I n cl u di n g s h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e. C a uti o n: Pl e a s e n otif y t h e t a p er si z e, c oll et t y p e, s et r a n g e, a n d s et n u m b er s w h e n or d eri n g.
N T- 3 0 O R D E R N O. V- 2 0 1 V- 2 0 2 V- 2 0 3 V- 2 0 4 V- 2 0 5 V- 2 0 6 V- 2 0 7 V- 2 0 8 V- 2 0 9 V- 2 1 0 V- 2 1 1 V- 2 1 2 V- 2 1 3 V- 2 1 4 V- 2 1 5 V- 2 1 6 V- 2 1 7 V- 2 1 8 V- 2 1 9 V- 2 2 0 ※ V- 2 2 3 ※ V- 2 2 4 ※ V- 2 2 5 ※ V- 2 2 6
C 11
TAPE R
C OLLET TYPE
N T- 3 0
E R- 3 2
N T- 3 0
E R- 4 0
N T- 4 0
E R- 3 2
N T- 4 0
E R- 4 0
N T- 4 0
E R- 5 0
N T- 5 0
E R- 3 2
N T- 5 0
E R- 4 0
N T- 5 0
E R- 5 0
N T- 3 0
E R- 2 5
N T- 4 0
E R- 2 5
T O O LI N G S Y S T E M
SET R A N GE 3- 2 0 4- 2 0 6- 2 0 4- 2 6 4- 2 6 6- 2 5 3- 2 0 4- 2 0 6- 2 0 4- 2 6 4- 2 6 6- 2 5 1 2- 3 4 3- 2 0 4- 2 0 6- 2 0 4- 2 6 4- 2 6 6- 2 5 1 2- 3 4 2- 1 6 4- 1 6 2- 1 6 4- 1 6
SET P CS 18 11 6 23 15 7 18 11 6 23 15 7 12 18 11 6 23 15 7 12 7 15 7 15
W EI G H T K G S 4. 2 3. 2 2. 8 7. 3 6 4. 6 4. 8 3. 8 3. 4 8. 2 6. 9 5. 2 10 6. 4 5. 4 5. 5 9. 8 8. 5 7 11 2. 8 2. 4 3. 3 3. 0
C O D E N O. 3 0 2 0- 4 0 1 3 0 2 0- 4 0 2 3 0 2 0- 4 0 3 3 0 2 0- 4 0 4 3 0 2 0- 4 0 5 3 0 2 0- 4 0 6 3 0 2 1- 4 0 1 3 0 2 1- 4 0 2 3 0 2 1- 4 0 3 3 0 2 1- 4 0 4 3 0 2 1- 4 0 5 3 0 2 1- 4 0 6 3 0 2 1- 4 0 7 3 0 2 2- 4 0 1 3 0 2 2- 4 0 2 3 0 2 2- 4 0 3 3 0 2 2- 4 0 4 3 0 2 2- 4 0 5 3 0 2 2- 4 0 6 3 0 2 2- 4 0 7 3 0 2 0- 4 0 7 3 0 2 0- 4 0 8 3 0 2 1- 4 0 9 3 0 2 1- 4 1 0
E R S pri n g C oll et C h u c k S y st e m
DI N 6 4 9 9
E R
E R SYSTE M
E xt e n d e d C oll et H ol d er Wit h I S O S h a n k DI N 2 0 8 0/I S O S H A N K E X T E N D E D C H U C K
N T 4 0 WI T H M A H O G R O O V E
O R D E R N O.
V- 2 3 1 V- 2 3 2 V- 2 3 3 V- 2 3 4 V- 2 3 5
TAPE R
C OLLET TYPE
L
D
G
W EI G H T K G
C O D E N O.
N T- 3 0
E R- 1 6
76
28
0. 6
3 0 2 0- 3 0 4
E R- 1 6 E R- 1 6 E R- 2 0 E R- 2 0
76 100 76 100
28 28 34 34
1/ 2 - 1 2 W, M 1 2 X 1. 7 5 P ( U S A 1/ 2 - U N C 1 3)
1. 1 1. 2 1. 2 1. 4
3 0 2 1- 3 1 4 3 0 2 1- 3 0 5 3 0 2 1- 3 0 6 3 0 2 1- 3 0 7
N T- 4 0 N T- 4 0
5/ 8 - 1 1 W or M 1 6 X 2. 0 P 5/ 8 - 1 1 W or M 1 6 X 2. 0 P
E xt e n d e d C oll et C h u c k Kit Wit h I S O S h a n k I n cl u di n g s h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e C a uti o n: Pl e a s e n otif y t h e t a p er si z e, c oll et t y p e, s et r a n g e, a n d s et n u m b er s w h e n or d eri n g.
O R D E R N O. V- 2 4 1 V- 2 4 2 V- 2 4 3 V- 2 4 4 V- 2 4 5 V- 2 4 6 V- 2 4 7 V- 2 4 8 V- 2 4 9 V- 2 5 0
TAPE R
C OLLET TYPE
N T- 3 0
E R- 1 6
N T- 4 0
N T- 4 0
E R- 1 6 E R- 1 6 E R- 2 0 E R- 2 0
R A N GE 1- 1 0 3- 1 0 1- 1 0 3- 1 0 1- 1 0 3- 1 0 2- 1 3 4- 1 3 2- 1 3 4- 1 3
P C S/ S E T 10 8 10 8 10 8 12 10 12 10
L 76 76 100 76 100
W EI G H T K G S 1. 9 1. 8 2. 2 2. 1 2. 4 2. 3 2. 3 2. 2 2. 6 2. 5
C O D E N O. 3 0 2 0- 4 0 9 3 0 2 0- 4 1 0 3 0 2 1- 4 1 1 3 0 2 1- 4 1 2 3 0 2 1- 4 1 3 3 0 2 1- 4 1 4 3 0 2 1- 4 1 5 3 0 2 1- 4 1 6 3 0 2 1- 4 1 7 3 0 2 1- 4 1 8
T O O LI N G S Y S T E M
C12
E R S pri n g C oll et C h u c k S y st e m
C oll et H ol d er s Wit h R- 8 s h a n k
O R D E R N O.
R- 8 S H A N K
TAPE R
V- 3 0 1 V- 3 0 2
R8
V- 3 0 3
E R
C OLLET TYPE
L
D
G
W EI G H T K G
C O D E N O.
E R- 1 6
38
28
7/ 1 6 X 2 0 U N F
0. 5
3 0 2 7- 3 0 1
E R- 3 2
40
50
7/ 1 6 X 2 0 U N F
0. 8
3 0 2 7- 3 0 2
E R- 4 0
70
63
7/ 1 6 X 2 0 U N F
1. 3
3 0 2 7- 3 0 3
C oll et C h u c k Kit Wit h R- 8 S h a n k I n cl u di n g s h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e. ( E R 1 6 n o Wr e n c h) C a uti o n: Pl e a s e n otif y t h e t a p er si z e, c oll et t y p e, s et r a n g e, a n d s et n u m b er s w h e n or d eri n g.
O R D E R N O.
TAPE R
V- 3 1 1
C OLLET TYPE E R16
V- 3 1 2 V- 3 1 3 V- 3 1 4 V- 3 1 5
R8
E R32
V- 3 1 6 V- 3 1 7 V- 3 1 8
C13
T O O LI N G S Y S T E M
E R40
SET R A N GE
SET P CS
W EI G H T K G S
C O D E N O.
1- 1 0
10
1. 5( W)
3 0 2 7- 4 0 1
3- 1 0
8
1. 4 5( P)
3 0 2 7- 4 0 2
3- 2 0
18
4. 3( P)
3 0 2 7- 4 0 3
4- 2 0
11
3. 2( P)
3 0 2 7- 4 0 4
6- 2 0
6
2. 9( P)
3 0 2 7- 4 0 5
4- 2 6
23
7. 3( P)
3 0 2 7- 4 0 6
4- 2 6
15
6. 1( P)
3 0 2 7- 4 0 7
6- 2 5
7
4. 6( P)
3 0 2 7- 4 0 8
E R S pri n g C oll et C h u c k S y st e m
O R D E R N O.
V- 4 0 1 V- 4 0 2 V- 4 0 3 V- 4 0 4 V- 4 0 5 V- 4 0 6 V- 4 5 1 V- 4 5 2 V- 4 0 7 V- 4 0 8 V- 4 0 9 V- 4 1 0 V- 4 1 1
TAPE R MT2
MT3 MT3 MT4 MT5
DI N 6 4 9 9 DI N 2 2 8 M T- S H A N K MT/ M K
C OLLET TYPE
L
D
E R16 E R20 E R25 E R16 E R32 E R40 E R20 E R25 E R32 E R40 E R50 E R40 E R50
40 43 47 40 70 80 43 47 60 82 85 82 85
28 34 42 28 50 63 34 42 50 63 78 63 78
E R
G 3/ 8 - 1 6 W or M 1 0 X 1. 5 P 3/ 8 - 1 6 W or 1/ 2 - 1 2 W M 1 0 X 1. 5 P, M 1 2 X 1. 7 5 P U S A 1/ 2 - U N C 1 3 1/ 2 - 1 2 N C or M 1 2 X 1. 7 5 P 5/ 8 - 1 1 W or M 1 6 X 2. 0 P 1 - 8 W or M 2 4 X 3. 0 P
W EI G H T K GS
C O D E N O.
0. 2 0. 3 0. 4 0. 3 0. 8 1. 1 0. 3 0. 5 1 1. 4 2. 2 2. 1 2. 9
3 0 2 3- 3 0 1 3 0 2 3- 3 0 2 3 0 2 3- 3 0 3 3 0 2 4- 3 0 1 3 0 2 4- 3 0 2 3 0 2 4- 3 0 3 3 0 2 4- 3 0 4 3 0 2 4- 3 0 5 3 0 2 5- 3 0 1 3 0 2 5- 3 0 2 3 0 2 5- 3 0 3 3 0 2 6- 3 0 1 3 0 2 6- 3 0 2
E R SYSTE M
C oll et H ol d er s Wit h M or s e T a p er S h a n k
C oll et C h u c k Kit Wit h M or s e T a p er S h a n k I n cl u di n g s h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e. ( E R 1 6, E R 2 0 n o Wr e n c h) 1. E R 1 6, 2 0, 2 5 P a c k e d i n W o o d e n B o x( W) 2. E R 3 2, 4 0, 5 0, P a c k e d i n Pl a sti c B o x( P) C a uti o n: Pl e a s e n otif y t h e t a p er si z e, c oll et t y p e, s et r a n g e, a n d s et n u m b er s w h e n or d eri n g.
O R D E R N O. V- 4 1 2 V- 4 1 3 V- 4 1 4 V- 4 1 5 V- 4 1 6 V- 4 1 8 V- 4 1 9 V- 4 2 0 V- 4 4 1 V- 4 4 2 V- 4 4 3 V- 4 4 4 V- 4 2 1 V- 4 2 2 V- 4 2 3 V- 4 2 4 V- 4 2 5 V- 4 2 6 V- 4 2 7 V- 4 2 8 V- 4 2 9 V- 4 3 0 V- 4 3 1 V- 4 3 2 V- 4 3 3 V- 4 3 4 V- 4 3 5 V- 4 3 6 V- 4 3 7
TAPE R
C OLLET TYPE
MT2
E R16
MT2
E R20
MT2
E R25
MT3
E R16
MT3
E R20
MT3
E R25
MT3
E R32
MT3
E R40
MT4
E R32
MT4
E R40
MT4
E R50
MT5
E R40
MT5
E R50
SET R A N GE 1- 1 0 3- 1 0 2- 1 3 4- 1 3 2- 1 6 4- 1 6 1- 1 0 3- 1 0 2- 1 3 4- 1 3 2- 1 6 4- 1 6 3- 2 0 4- 2 0 6- 2 0 4- 2 6 4- 2 6 6- 2 5 3- 2 0 4- 2 0 6- 2 0 4- 2 6 4- 2 6 6- 2 5 1 2- 3 4 4- 2 6 4- 2 6 6- 2 5 1 2- 3 4
SET P CS 10 8 12 10 15 7 10 8 12 10 15 7 18 11 6 23 15 7 18 11 6 23 15 7 12 23 15 7 12
W EI G H T K G S. 1. 0 5 1 1. 3 1. 2 2. 4 1. 3 1. 5 1. 1 1. 3 5 1. 3 2. 5 2. 1 4. 1 3 2. 7 7. 2 6 4. 5 4. 3 3. 2 2. 9 7. 3 6. 1 4. 6 9 8. 2 6. 9 5. 4 9. 5
C O D E N O. 3 0 2 3- 4 0 1 3 0 2 3- 4 0 2 3 0 2 3- 4 0 3 3 0 2 3- 4 0 4 3 0 2 3- 4 0 5 3 0 2 3- 4 0 7 3 0 2 4- 4 0 1 3 0 2 4- 4 0 2 3 0 2 3- 4 0 8 3 0 2 3- 4 0 9 3 0 2 3- 4 1 0 3 0 2 3- 4 1 1 3 0 2 4- 4 0 3 3 0 2 4- 4 0 4 3 0 2 4- 4 0 5 3 0 2 4- 4 0 6 3 0 2 4- 4 0 7 3 0 2 4- 4 0 8 3 0 2 5- 4 0 1 3 0 2 5- 4 0 2 3 0 2 5- 4 0 3 3 0 2 5- 4 0 4 3 0 2 5- 4 0 5 3 0 2 5- 4 0 6 3 0 2 5- 4 0 7 3 0 2 6- 4 0 1 3 0 2 6- 4 0 2 3 0 2 6- 4 0 3 3 0 2 6- 4 0 4
T O O LI N G S Y S T E M
C14
E R S pri n g C oll et C h u c k S y st e m
C oll et H ol d er s Wit h Str ai g ht S h a n k
DI N 6 4 9 9 S T R AI G H T S H A N K
J
E R
Ø D 1
D L1
L
M E T RI C SI Z E O R D E R N O.
C OLLET TYPE
V- 5 3 0 V- 5 3 1
S H A N K D1 XL1
L
D
J
K GS
C O D E N O.
Ø16 X50
21
19
M6
0. 1
3 0 0 7- 3 0 0
Ø16 X100
21
19
M6
0. 2
3 0 0 7- 3 1 1
Ø16 X150
21
19
M6
0. 3
3 0 0 7- 3 1 2
E R 11
V- 5 3 2 V- 5 0 1 A
E R16
V- 5 0 1 V- 5 0 2
Ø16 X100
21
28
M10
0. 3
3 0 0 3- 3 0 1 A
Ø20 X50
30
28
M10
0. 2
3 0 0 3- 3 0 1
Ø20 X100
30
28
M10
0. 3
3 0 0 3- 3 0 2
Ø20 X150
30
28
M10
0. 4
3 0 0 3- 3 0 3
E R16
V- 5 0 3 V- 5 0 4
Ø25 X100
30
28
M10
0. 5
3 0 0 3- 3 0 4
V- 5 0 4 A
Ø25 X50
30
28
M10
0. 3
3 0 0 3- 3 0 6
Ø25 X150
30
28
M10
0. 7
3 0 0 3- 3 0 5
V- 5 0 5
E R16
V- 5 0 5 A
Ø25 X200
30
28
M10
0. 5
3 0 0 3- 3 0 7
V- 5 0 6
Ø20 X50
36
34
M12
0. 3
3 0 0 4- 3 0 1
Ø20 X100
36
34
M12
0. 3
3 0 0 4- 3 0 2
Ø20 X150
36
34
M10
0. 5
3 0 0 4- 3 0 3
Ø25 X150
36
34
M10
0. 7
3 0 0 4- 3 0 4
Ø25 X100
36
34
M12
0. 5
3 0 0 4- 3 0 5
V- 5 0 7
E R20
V- 5 0 8 V- 5 0 9 V- 5 0 9 A V- 5 0 9 B
Ø25 X50
36
34
M12
0. 3
3 0 0 4- 3 0 6
V- 5 1 0
Ø20 X50
46
42
M12
0. 4
3 0 0 5- 3 0 1
V- 5 1 1 Wit h Fl at S h a n k
E R20
Ø20 X100
46
42
M12
0. 5
3 0 0 5- 3 0 2
V- 5 1 2
Ø20 X150
46
42
M12
0. 6
3 0 0 5- 3 0 3
V- 5 1 3
Ø25 X100
46
42
M12
0. 6
3 0 0 5- 3 0 4
V- 5 1 4
E R25
Ø25 X150
46
42
M12
0. 7
3 0 0 5- 3 0 5
V- 5 1 5
Ø32 X60
46
42
M12
0. 6
3 0 0 5- 3 0 6
V- 5 1 6
Ø25 X80
54
50
M12
0. 8
3 0 0 6- 3 0 1
V- 5 1 7
Ø32 X100
54
50
M12
1. 1
3 0 0 6- 3 0 2
Ø32 X150
54
50
M12
1. 5
3 0 0 6- 3 0 5
Ø40 X100
54
50
M12
1. 4
3 0 0 6- 3 0 3
Ø32 X100
55
63
M16
1. 5
3 0 0 7- 3 0 2
Ø40 X100
55
63
M16
1. 8
3 0 0 7- 3 0 3
K GS
C O D E N O.
V- 5 1 7 A
E R25
E R32
V- 5 1 8 V- 5 2 3 V- 5 2 4
E R40
I N C H SI Z E O R D E R N O.
C OLLET TYPE
S H A N K D1 XL1
L
5
36
0. 2
3 0 0 3- 3 2 0
3
S T /4 X 4
32
0. 2 4
3 0 0 3- 3 2 1
32
0. 3 2
3 0 0 3- 3 2 2
V- 5 7 4
S T3/4 X 6 ST 1X 4
32
0. 3 5
3 0 0 3- 3 2 3
V- 5 7 5
S T3/4 X 4
34
0. 2 5
3 0 0 4- 3 2 0
V- 5 7 1 V- 5 7 2 V- 5 7 3
V- 5 7 6
S T /8 X 4 E R16
E R20
V- 5 7 7 V- 5 7 8 V- 5 7 9
C15
T O O LI N G S Y S T E M
E R32
3
34
S T /4 X 6 ST 1 X 4
34
ST 1
58
-1
S T 1 /4
58
D
28
34
J 3
3
/8
/8
M12 50
M12
0. 3 3
3 0 0 4- 3 2 1
0. 3 6
3 0 0 4- 3 2 2
0. 5
3 0 0 6- 3 2 0
0. 6
3 0 0 6- 3 2 1
E R S pri n g C oll et C h u c k S y st e m
DI N 6 4 9 9 S T R AI G H T S H A N K
E R
C oll et C h u c k Kit Wit h Str ai g ht S h a n k
O R DE R S H A N K N O. D1 XL1 V- 6 0 1 Ø 2 0 X 5 0 L
C OLLET C H U C K SETS
C OLLET SET TYPE R A N GE 1- 1 0
SET P CS 10
K GS 0. 9
C O DE N O. 3 0 0 3- 4 0 1
O R DE R S H A N K N O. D1 XL1 V- 6 8 1 Ø 1 6 X 5 0 L
3- 1 0
8
0. 8
3 0 0 3- 4 0 2
V- 6 8 2
Ø16 X50L
1- 1 0
10
1
3 0 0 3- 4 0 3
V- 6 8 3
Ø16 X100L
3- 1 0
8
0. 9
3 0 0 3- 4 0 4
V- 6 8 4
Ø16 X100L
V- 6 0 2
Ø20 X50L
V- 6 0 3
Ø20 X100L
V- 6 0 4
Ø20 X100L
V- 6 0 5
Ø20 X150L
1- 1 0
10
1. 1
3 0 0 3- 4 0 5
V- 6 0 6
Ø20 X150L
3- 1 0
8
0. 5
3 0 0 3- 4 0 6
V- 6 0 7
Ø25 X100L
1- 1 0
10
1. 1
3 0 0 3- 4 0 7
O R DE R S H A N K N O. D1 XL1 V- 6 3 0 Ø 2 5 X 1 0 0 L
V- 6 0 7 A Ø 2 5 X 5 0 L
1- 1 0
10
1. 1
3 0 0 3- 4 1 1
V- 6 3 1
Ø25 X150L
3- 1 0
8
1. 1
3 0 0 3- 4 0 8
V- 6 3 3
Ø25 X150L
3- 1 0
8
1. 1
3 0 0 3- 4 1 2
V- 6 3 4
Ø32 X60L
V- 6 0 8
Ø25 X100L
V- 6 0 8 A Ø 2 5 X 5 0 L
E R16
E R16
C OLLET SET SET TYPE R A N GE P CS 1- 7 13 E R 11 1- 7 7
0. 5
C O DE N O. 3 0 0 2- 4 0 1
0. 5
3 0 0 2- 4 0 2
K GS
1- 7
13
0. 6
3 0 0 2- 4 0 3
1- 7
7
0. 5
3 0 0 2- 4 0 4
C OLLET SET SET TYPE R A N GE P CS 6- 1 6 7
K GS 2
C O DE N O. 3 0 0 5- 4 1 2
E R 11
E R25
E R25
2- 1 6
15
2. 6
3 0 0 5- 4 1 3
6- 1 6
7
1. 9
3 0 0 5- 4 1 5
2- 1 6
15
2. 5
3 0 0 5- 4 1 6
6- 1 6
7
1. 9
3 0 0 5- 4 1 8
3- 2 0
18
4. 1
3 0 0 6- 4 0 1
4- 2 0
11
3
3 0 0 6- 4 0 2
V- 6 0 9
Ø25 X150L
1- 1 0
10
1. 3
3 0 0 3- 4 0 9
V- 6 3 6
Ø32 X60L
V- 6 1 0
Ø25 X150L
3- 1 0
8
1. 3
3 0 0 3- 4 1 0
V- 6 3 7
Ø25 X80L
V- 6 1 1
Ø20 X50L
2- 1 3
12
1. 2
3 0 0 4- 4 0 1
V- 6 3 8
Ø25 X80L
V- 6 1 2
Ø20 X50L
4- 1 3
10
1. 2
3 0 0 4- 4 0 2
V- 6 3 9
Ø25 X80L
3- 2 0
6
2. 7
3 0 0 6- 4 0 3
V- 6 1 3
Ø20 X100L
2- 1 3
12
1. 2
3 0 0 4- 4 0 3
V- 6 4 0
Ø32 X100L
4- 2 0
18
4. 3
3 0 0 6- 4 0 4
V- 6 1 4
Ø20 X100L
4- 1 3
10
1. 2
3 0 0 4- 4 0 4
V- 6 4 1
Ø32 X100L
6- 2 0
11
3. 2
3 0 0 6- 4 0 5
V- 6 1 5
Ø20 X150L
2- 1 3
12
1. 4
3 0 0 4- 4 0 5
V- 6 4 2
Ø32 X100L
6- 2 0
6
2. 9
3 0 0 6- 4 0 6
V- 6 1 6
Ø20 X50L
4- 1 3
10
1. 3
3 0 0 4- 4 0 6
V- 6 4 3
Ø40 X100L
3- 2 0
18
4. 6
3 0 0 6- 4 0 7
V- 6 1 5 A Ø 2 5 X 5 0 L
2- 1 3
12
1. 3
3 0 0 4- 4 0 9
V- 6 4 4
Ø40 X100L
4- 2 0
11
3. 5
3 0 0 6- 4 0 8
V- 6 1 6 A Ø 2 5 X 5 0 L
4- 1 3
10
1. 3
3 0 0 4- 4 1 0
V- 6 4 5
Ø40 X100L
6- 2 0
6
3. 2
3 0 0 6- 4 0 9
2- 1 3
12
1. 4
3 0 0 4- 4 0 7
V- 6 4 6
Ø1 X3L
3- 2 0
18
4. 1
3 0 0 6- 4 1 0
2- 1 3
12
1. 5
3 0 0 4- 4 1 1
V- 6 4 7
Ø1 X3L
4- 2 0
11
3
3 0 0 6- 4 1 1
Ø25 X100L
4- 1 3
10
1. 4
3 0 0 4- 4 0 8
V- 6 4 8
Ø1 X3L
6- 2 0
6
2. 9
3 0 0 6- 4 1 2
V- 6 1 8 A Ø 2 5 X 1 5 0 L
4- 1 3
10
1. 5
3 0 0 4- 4 1 2
V- 6 5 8
Ø32 X100L
4- 2 6
23
7. 3
3 0 0 7- 4 0 4
V- 6 1 9
Ø20 X50L
2- 1 6
15
2. 2
3 0 0 5- 4 0 1
V- 6 5 9
Ø32 X100L
4- 2 6
15
6. 1
3 0 0 7- 4 0 5
V- 6 2 1
Ø20 X50L
4- 1 6
7
1. 7
3 0 0 5- 4 0 3
V- 6 6 0
Ø32 X100L
6- 2 5
7
4. 6
3 0 0 7- 4 0 6
V- 6 2 2
Ø20 X100L
2- 1 6
15
2. 3
3 0 0 5- 4 0 4
V- 6 6 1
Ø40 X100L
4- 2 6
23
7. 6
3 0 0 7- 4 0 7
V- 6 2 4
Ø20 X100L
4- 1 6
7
1. 8
3 0 0 5- 4 0 6
V- 6 6 2
Ø40 X100L
4- 2 6
15
6. 5
3 0 0 7- 4 0 8
V- 6 2 5
Ø20 X150L
2- 1 6
15
2. 4
3 0 0 5- 4 0 7
V- 6 6 3
Ø40 X100L
6- 2 5
7
5
3 0 0 7- 4 0 9
V- 6 2 7
Ø20 X150L
4- 1 6
7
2
3 0 0 5- 4 0 9
V- 6 2 8
Ø25 X100L
2- 1 6
15
2. 3
3 0 0 5- 4 1 0
• V- 6 0 3, V- 6 0 4 ar e t h e m o st p o p ul ar it e m. • T H E E R- 2 0/ 2 5/ 3 2/ 4 0 A R E T O B E C O N TI N U E D • V- 6 1 3, V- 6 1 4 ar e t h e m o st p o p ul ar it e m.
V- 6 1 7
Ø25 X100L
V- 6 1 7 A Ø 2 5 X 1 5 0 L V- 6 1 8
E R20
E R20
E R25
E R25
E R32
E R32
E R32
E R32
E R40
E R40
T O O LI N G S Y S T E M
C16
E R SYSTE M
I n cl u di n g s h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e.
E R S pri n g C oll et C h u c k S y st e m
MI NI T Y P E S T R AI G H T S H A N K H O L D E R
DI N 6 4 9 9 MI NI S T R AI G H T S H A N K J
E R
C O L L E T H O L D E R ( MI NI T Y P E)
MI NI T Y P E N U T
C oll et C h u c k Kit Wit h Str ai g ht S h a n k I n cl u di n g s h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e.
O R DE R N O. V- 5 4 1 V- 5 4 2 V- 5 4 3 V- 5 4 4 V- 5 4 5 V- 5 4 6 V- 5 5 1 V- 5 5 2 V- 5 5 2 A V- 5 5 3 V- 5 5 4 V- 5 5 5 V- 5 5 5 A V- 5 5 6 V- 5 5 7 V- 5 5 8 V- 5 5 9 V- 5 6 0 V- 5 6 1 V- 5 6 2 V- 5 6 3 V- 5 6 3 A V- 5 5 7 A V- 5 6 0 A
C OLLET TYPE E R8 M
E R8 M
E R 11 M
E R16 M
E R20 M E R20 M E R16 M E R16 M E R20 M
MI NI T Y P E
MI NI T Y P E N U T
C17
T O O LI N G S Y S T E M
O R DE R N O. V- 6 9 1 A V- 6 9 1 B V- 6 9 2 A V- 6 9 2 B V- 6 9 3 A V- 6 9 3 B V- 6 9 3 C V- 6 9 4 A V- 6 9 4 B V- 6 9 5 A V- 6 9 5 B V- 6 9 5 C V- 6 9 5 D V- 6 9 6 A V- 6 9 6 B V- 6 9 7 A V- 6 9 7 B V- 6 9 8 A V- 6 9 8 B V- 6 9 8 C V- 6 9 8 D
S H A N K D1 XL1 ST08 X50L ST10 X50L ST10 X80L ST12 X50L ST12 X100L ST12 X150L ST16 X50L ST16 X100L ST16 X150L ST20 X50L ST20 X100L ST20 X150L ST20 X200L ST20 X50L ST20 X100L ST20 X150L ST25 X100L ST25 X150L ST16 X100L ST25 X100L ST25 X150L ST25 X200L ST20 X200L ST25 X200L
S H A N K D1 XL1 ST16 X50L ST16 X50L ST16 X100L ST16 X100L ST20 X50L ST20 X50L ST16 X100L ST20 X100L ST20 X100L ST20 X150L ST20 X150L ST25 X100L ST25 X150L ST20 X50L ST20 X50L ST20 X100L ST20 X100L ST20 X150L ST20 X150L ST25 X100L ST25 X150L
C OLLET TYPE E R 11 M E R 11 M E R16 M E R16 M E R16 M
E R16 M
E R20 M
E R20 M
D 12
12 16 16 16 22 22 22 22 28 28 28 28 28 22 22 22 22 28 28
L
J
24 19 19 14 14 14
0. 0 4 0. 0 5 0. 0 7 0. 0 5 0. 0 9 0. 1 2 0. 1 M6 0. 2 0. 3 0. 2 0. 3 M10 0. 4 0. 4 0. 2 M12 0. 3 0. 4 0. 4 M12 0. 6 M 1 0 0. 2 0. 4 M 1 0 0. 6 0. 5 0. 4 M12 0. 5
22
32
33 33 22 22 32 35
SET R A N GE 1- 7 1- 7 1- 7 1- 7 1- 1 0 3- 1 0 1- 1 0 1- 1 0 3- 1 0 1- 1 0 3- 1 0 1- 1 0 1- 1 0 2- 1 3 4- 1 3 2- 1 3 4- 1 3 2- 1 3 4- 1 3 2- 1 3 2- 1 3
SET P CS 7 13 7 13 10 8 10 10 8 10 8 10 10 12 10 12 10 12 10 12 12
K GS
K GS 0. 5 0. 5 0. 6 0. 6 0. 7 1. 0 0. 6 0. 9 1. 1 1. 3 1. 2 1. 2 1. 4 1. 3 1. 2 1. 1 1. 1 1. 2 1. 2 1. 4 1. 5
C O DE N O. 3 0 0 1- 2 9 0 3 0 0 1- 2 9 1 3 0 0 1- 2 9 2 3 0 0 1- 2 9 3 3 0 0 1- 2 9 4 3 0 0 1- 2 9 5 3 0 1 1- 3 0 1 3 0 1 1- 3 0 2 3 0 1 1- 3 0 3 3 0 1 2- 3 0 1 3 0 1 2- 3 0 2 3 0 1 2- 3 0 3 3 0 1 2- 3 0 7 3 0 1 3- 3 0 1 3 0 1 3- 3 0 2 3 0 1 3- 3 0 3 3 0 1 3- 3 0 4 3 0 1 3- 3 0 5 3 0 1 2- 3 0 4 3 0 1 2- 3 0 5 3 0 1 2- 3 0 6 3 0 1 2- 3 0 8 3 0 1 3- 3 0 6 3 0 1 3- 3 0 7
C O DE N O. 3 0 1 1- 4 0 1 3 0 1 1- 4 0 2 3 0 1 1- 4 0 3 3 0 1 1- 4 0 4 3 0 1 2- 4 0 1 3 0 1 2- 4 0 2 3 0 1 2- 4 0 7 3 0 1 2- 4 0 3 3 0 1 2- 4 0 4 3 0 1 2- 4 0 5 3 0 1 2- 4 0 6 3 0 1 2- 4 0 8 3 0 1 2- 4 0 9 3 0 1 3- 4 0 1 3 0 1 3- 4 0 2 3 0 1 3- 4 0 3 3 0 1 3- 4 0 4 3 0 1 3- 4 0 5 3 0 1 3- 4 0 6 3 0 1 3- 4 0 7 3 0 1 3- 4 0 8
Cl a m pi n g N ut s F or C oll et s
E R C L A M PI N G N U T S Y S T E M
E R16 M
E R40 K M WI T H A B E A RI N G
E R40 U M
E R
E R 11 M S
E R N UT SYSTE M
E R20 M
DI N 6 4 9 9
FI G. 1 E R 1 1, 1 6, 2 0 M S
E R16 U M
FI G. 2 E R 1 1, 1 6, 2 0 M E R 8 M, 2 5 M
FI G. 3 E R 1 1, 1 6, 2 0 U M B E A RI N G T Y P E
FI G. 4 E R 2 5, 3 2, 4 0, 5 0 U M
C L A M PI N G N U T S
FI G. 5 E R 4 0, 5 0 K M
O R D E R N O. V- 8 0 0
Fi g. 3
C OLLET TYPE E R 11 U M
D 19
H 1 1. 5
G M 1 4 X 0. 7 5 P
W EI G H T K G. 0. 0 4
C O D E N O. 3 0 1 5- 0 0 1
V- 8 0 1
3
E R16 U M
28
17
M 2 2 X 1. 5 P
0. 0 5
3 0 1 5- 0 0 2
V- 8 0 2
3
E R20 U M
34
19
M 2 5 X 1. 5 P
0. 0 9
3 0 1 5- 0 0 3
V- 8 0 3
4
E R25 U M
42
20
M 3 2 X 1. 5 P
0. 1 3
3 0 1 5- 0 0 4
V- 8 0 4
4
E R32 U M
50
23
M 4 0 X 1. 5 P
0. 1 4
3 0 1 5- 0 0 5
V- 8 0 5
4
E R40 U M
63
25
M 5 0 X 1. 5 P
0. 2 5
3 0 1 5- 0 0 6
V- 8 0 6
4
E R50 U M
78
35
M 6 4 X 2. 0 P
0. 5
3 0 1 5- 0 0 7
V- 8 0 7
1
E R 11 M S
16
12
M 1 3 X 0. 7 5 P
0. 0 0 8
3 0 1 5- 0 0 8
V- 8 0 8
2
E R16 M
22
18
M 1 9 X 1. 0 P
0. 0 3
3 0 1 5- 0 0 9
V- 8 0 9
2
E R20 M
28
19
M 2 4 X 1. 0 P
0. 0 4 5
3 0 1 5- 0 1 0
V- 8 1 0 A
5
E R40 K M
63
29
M 5 0 X 1. 5 P
0. 3
3 0 1 5- 0 1 1
V- 8 1 0 B
5
E R50 K M
78
40
M 6 4 X 2. 0 P
0. 5 8
3 0 1 5- 0 1 2
V- 8 1 0 C
2
E R 11 M
16
12
M 1 3 X 0. 7 5 P
0. 0 2
3 0 1 5- 0 1 3
V- 8 1 0 D
2
E R8 M
12
1 0. 8
M 1 0 X 0. 7 5 P
0. 0 5
3 0 1 5- 0 1 4
V- 8 1 0 E
2
E R25 M
35
20
M 3 0 X 1. 0 P
0. 0 5
3 0 1 5- 0 1 5
V- 8 1 1 A
E R16 M S
22
18
M 1 9 X 1. 0 P
0. 0 2
3 0 1 5- 0 1 6
V- 8 1 1 B
E R20 M S
28
19
M 2 4 X 1. 0 P
0. 0 3 5
3 0 1 5- 0 1 7
T O O LI N G S Y S T E M
C18
Cl a m pi n g Wr e n c h F or C oll et s
E R W RE N C H SYSTE M
DI N 6 4 9 9
E R
L
E R MS
E R M L
L
E R U M 1 1, 1 6, 2 0
L
E R U M 2 5, 3 2, 4 0, 5 0
C19
O R D E R N O. V- 8 2 0
TYPE E R 11 U M
A 35
L 135
K GS 0. 0 7
C O D E N O. 3 0 1 5- 1 0 0
V- 8 2 1
E R 11 M S
22
100
0. 0 7
3 0 1 5- 1 0 1
V- 8 2 2
E R 11 M
17
95
0. 0 5
3 0 1 5- 1 0 2
V- 8 2 3
E R16 M
2 2. 5
11 8
0. 0 6
3 0 1 5- 1 0 3
V- 8 1 5
E R16 U M
44
140
0. 0 8
3 0 1 5- 1 0 4
V- 8 2 4
E R20 M
28
130
0. 0 8
3 0 1 5- 1 0 5
V- 8 1 6
E R20 U M
53
170
0. 1
3 0 1 5- 1 0 6
V- 8 1 1
E R25 U M
65
210
0. 2
3 0 1 5- 1 0 7
V- 8 1 2
E R32 U M
75
250
0. 4
3 0 1 5- 1 0 8
V- 8 1 3
E R40 U M
90
290
0. 5
3 0 1 5- 1 0 9
V- 8 1 4
E R50 U M
11 0
350
0. 9
3 0 1 5- 1 1 0
V- 8 1 7
E R8 M
13
75
0. 0 4
3 0 1 5- 1 1 1
V- 8 1 8
E R25 M
3 6. 5
135
0. 1
3 0 1 5- 1 1 2
V- 8 2 5
E R40 K M
90
290
0. 5
3 0 1 5- 1 1 3
V- 8 2 6
E R50 K M
11 0
350
0. 9
3 0 1 5- 1 1 4
V- 8 2 7
E R16 M S
32
120
0. 1 2
3 0 1 5- 1 1 5
V- 8 2 8
E R20 M S
38
150
0. 1 5
3 0 1 5- 1 1 6
T O O LI N G S Y S T E M
E R S pri n g C oll et C h u c k S y st e m
C oll et H ol d er s Wit h B T T a p er S h a n k ( F or C N C M a c hi n e C e nt er) E R- 3 2 E R- 4 0
M A S 4 0 3 B T- S H A N K
E R
E R SYSTE M
A C C U RA CY R U N O U T 0. 0 0 5 m m T A P E R S H A N K A T- 3 R. P. M. 7 0 0 0
B T- 4 0- E R 3 2 O R D E R N O. V- 7 0 0 V- 7 0 3 A V- 7 0 3 B V- 7 0 4 V- 7 0 4 B V- 7 0 5 V- 7 0 6 V- 7 0 6 B V- 7 0 7 V- 7 1 0 V- 7 1 1 V- 7 1 2 V- 7 1 3 V- 7 1 4 V- 7 1 5 V- 7 1 6 V- 7 1 7 V- 7 1 8 V- 7 1 9 V- 7 2 0 V- 7 2 1 V- 7 2 2 A V- 7 2 2 B V- 7 2 3 A V- 7 2 3 B V- 7 2 4 A V- 7 2 4 B V- 7 2 5 V- 7 2 6 V- 7 2 7
TAPE R BT30 BT40
BT50
BT30
BT40
C OLLET TYPE E R32 E R32 E R32 E R40 E R40 E R32 E R40 E R40 E R50 E R 11 E R 11 E R 11 M E R16 E R16 M E R20 E R20 E R20 M E R25 E R40 E R 11 E R 11 E R 11 M E R 11 M E R16 M E R16 M E R20 M E R20 M E R25 E R25 E R50
B T- 4 0- E R 2 0 M D1 M12 M 1 6 X 2. 0 P M 1 6 X 2. 0 P M 1 6 X 2. 0 P M 1 6 X 2. 0 P M 2 4 X 3. 0 P M 2 4 X 3. 0 P M 2 4 X 3. 0 P M 2 4 X 3. 0 P M12 M12 M12 M12 M12 M12 M12 M12 M12 M12 M16 M16 M16 M16 M16 M16 M16 M16 M16 M16 M16
D2 M 1 2 X 1. 7 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 8 X 1. 5 P M 2 8 X 1. 5 P M 2 8 X 1. 5 P M 3 6 X 1. 5 P M 1 2 X 1. 7 5 P M 1 2 X 1. 7 5 P M 1 2 X 1. 7 5 P M 1 2 X 1. 7 5 P M 1 2 X 1. 7 5 P M 1 2 X 1. 7 5 P M 1 2 X 1. 7 5 P M 1 2 X 1. 7 5 P M 1 2 X 1. 7 5 P M 1 2 X 1. 7 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P M 2 2 X 1. 5 P
D3 50 50 50 63 63 50 63 63 78 19 19 16 28 22 34 34 28 42 63 19 19 16 16 22 22 28 28 42 42 78
L 60 70 100 80 100 100 100 150 100 60 100 100 100 100 60 100 100 60 70 70 100 100 150 100 150 100 150 70 100 90
K GS 0. 7 1. 4 1. 7 1. 7 2 4. 5 4. 6 5. 7 5. 1 0. 5 0. 6 0. 9 0. 8 0. 7 0. 6 0. 9 0. 9 0. 7 1 1. 2 1. 5 1. 0 5 1. 3 1. 3 1. 5 1. 6 1. 6 1. 3 1. 6 2. 2
C O D E N O. 3 0 3 1- 3 0 3 3 0 3 2- 3 0 5 3 0 3 2- 3 0 6 3 0 3 2- 3 0 7 3 0 3 2- 4 2 1 3 0 3 3- 3 0 5 3 0 3 3- 3 0 6 3 0 3 3- 3 0 7 3 0 3 3- 3 0 8 3 0 3 3- 3 1 1 3 0 3 3- 3 1 2 3 0 3 3- 3 1 3 3 0 3 3- 3 1 4 3 0 3 3- 3 1 5 3 0 3 3- 3 1 6 3 0 3 3- 3 1 7 3 0 3 3- 3 1 8 3 0 3 3- 3 1 9 3 0 3 3- 3 2 0 3 0 3 3- 3 2 1 3 0 3 3- 3 2 2 3 0 3 3- 3 2 3 3 0 3 3- 3 2 3 A 3 0 3 3- 3 2 4 3 0 3 3- 3 3 0 3 0 3 3- 3 2 5 3 0 3 3- 3 3 1 3 0 3 3- 3 2 6 3 0 3 3- 3 2 7 3 0 3 3- 3 2 8
T O O LI N G S Y S T E M
C20
E R S pri n g C oll et C h u c k S y st e m
C oll et H ol d er s Wit h E xt e n si o n T y p e B T T a p er S h a n k E R- 1 6, E R- 2 0
E R
A C C U RA CY R U N O U T 0. 0 0 5 m m T A P E R S H A N K A T- 3 R. P. M. 7 0 0 0
B T- 4 0- E R 2 0
O R D E R N O. V- 7 7 0
TAPE R BT30
C OLLET TYPE E R16
V- 7 7 2 V- 7 7 3
BT40
E R16
V- 7 7 4 A
L 60
D1 M12
W EI G H T K G S 0. 6
C O D E N O. 3 0 3 1- 3 0 1
28
70
M16
1. 2
3 0 3 2- 3 0 1
28
100
M16
1. 4
3 0 3 2- 3 0 2
28
150
M16
1. 7
3 0 3 2- 3 0 8
V- 7 7 4
34
70
M16
1. 3
3 0 3 2- 3 0 3
V- 7 7 5
34
100
M16
1. 5
3 0 3 2- 3 0 4
34
135
M16
1. 6
3 0 3 2- 3 0 9
34
150
M16
1. 9
3 0 3 2- 3 1 0
V- 7 7 5 A
BT40
E R20
V- 7 7 5 B V- 7 7 5 C
BT40
E R25
42
150
M16
2. 1
3 0 3 2- 3 1 1
V- 7 3 3
BT40
E R32
50
150
M16
2
3 0 3 3- 3 5 4
28
100
M24
2. 3
3 0 3 3- 3 0 1
28
150
M24
4. 3
3 0 3 3- 3 0 2
28
200
M24
7. 5
3 0 3 3- 3 6 4
V- 7 7 6 V- 7 7 7
BT50
E R16
V- 7 4 3 A V- 7 7 8
34
100
M24
4. 1
3 0 3 3- 3 0 3
34
150
M24
4. 8
3 0 3 3- 3 0 4
V- 7 3 5
34
200
M24
5
3 0 3 3- 3 5 6
V- 7 3 6
42
100
M24
4. 3
3 0 3 3- 3 5 7
42
150
M24
4. 8
3 0 3 3- 3 5 8
42
200
M24
8
3 0 3 3- 3 6 5
V- 7 7 9
V- 7 3 7 A
BT50
BT50
E R20
E R25
V- 7 4 4 A V- 7 3 8 A
50
150
M24
5. 5
3 0 3 3- 3 5 9
50
200
M24
6. 5
3 0 3 3- 3 6 0
E R40
63
200
M24
7. 5
3 0 3 3- 3 6 2
E R50
78
150
M24
6. 7
3 0 3 3- 3 6 3
BT50
E R32
V- 7 4 1 A
BT50
V- 7 4 2 A
BT50
V- 7 3 9 A
C21
D3 28
T O O LI N G S Y S T E M
E R S pri n g C oll et C h u c k S y st e m
M A S 4 0 3 B T- S H A N K DI N 6 4 9 9
E R SYSTE M
E R
O R DE R N O. V- 7 8 0
BT TAPE R B T 3 0- 6 0 L
C OLLET TYPE E R16
SET R A N GE 1- 1 0
C OLLET P CS 10
W EI G H T K GS 1. 9
C O D E N O.
V- 7 8 0 A
B T 3 0- 1 0 0 L
E R16
1- 1 0
10
2
3 0 3 1- 4 0 6
V- 7 8 1
B T 4 0- 7 0 L
E R16
1- 1 0
10
2. 3
3 0 3 2- 4 0 1
V- 7 8 2
B T 4 0- 1 0 0 L
E R16
1- 1 0
10
2. 7
3 0 3 2- 4 0 2
V- 7 8 3
B T 3 0- 6 0 L
E R20
2- 1 3
12
2. 5
3 0 3 1- 4 0 2
V- 7 8 3 A
B T 3 0- 1 0 0 L
E R20
2- 1 3
12
2. 6
3 0 3 2- 4 1 3
V- 7 8 3 B
B T 3 0- 6 0 L
E R25
2- 1 6
15
2. 5
3 0 3 2- 4 1 4
V- 7 8 3 C
B T 3 0- 6 0 L
E R25
4- 1 6
7
2. 8
3 0 3 2- 4 1 5
V- 7 8 4
B T 4 0- 1 0 0 L
E R20
2- 1 3
12
3
3 0 3 2- 4 0 3
V- 7 8 4 A
B T 4 0- 7 0 L
E R20
2- 1 3
12
2. 8
3 0 3 2- 4 1 6
V- 7 8 4 B
B T 4 0- 7 0 L
E R25
2- 1 6
15
3. 2
3 0 3 2- 4 1 7
V- 7 8 4 C
B T 4 0- 1 0 0 L
E R25
4- 1 6
7
3
3 0 3 2- 4 1 8
V- 7 8 5
B T 3 0- 6 0 L
E R32
3- 2 0
18
4. 4
3 0 3 1- 4 0 3
V- 7 8 6
B T 3 0- 6 0 L
E R32
4- 2 0
11
3. 8
3 0 3 1- 4 0 4
V- 7 8 7
B T 3 0- 6 0 L
E R32
6- 2 0
6
3. 4
3 0 3 1- 4 0 5
V- 7 8 8
B T 4 0- 7 0 L
E R32
3- 2 0
18
5. 2
3 0 3 2- 4 0 4
V- 7 8 9
B T 4 0- 7 0 L
E R32
4- 2 0
11
4. 2
3 0 3 2- 4 0 5
V- 7 9 0
B T 4 0- 7 0 L
E R32
6- 2 0
6
3. 8
3 0 3 2- 4 0 6
V- 7 9 1
B T 4 0- 1 0 0 L
E R32
3- 2 0
18
5. 7
3 0 3 2- 4 0 7
V- 7 9 2
B T 4 0- 1 0 0 L
E R32
4- 2 0
11
4. 7
3 0 3 2- 4 0 8
V- 7 9 3
B T 4 0- 1 0 0 L
E R32
6- 2 0
6
4. 3
3 0 3 2- 4 0 9
V- 7 9 4
B T 4 0- 8 0 L
E R40
4- 2 6
23
8. 9
3 0 3 2- 4 1 0
V- 7 9 5
B T 4 0- 8 0 L
E R40
4- 2 6
15
7. 6
3 0 3 2- 4 1 1
V- 7 9 6
B T 4 0- 8 0 L
E R40
6- 2 5
7
6
3 0 3 2- 4 1 2
V- 7 9 7
B T 5 0- 1 0 0 L
E R40
4- 2 6
23
1 1. 3
3 0 3 3- 4 0 1
V- 7 9 8
B T 5 0- 1 0 0 L
E R40
4- 2 6
15
10
3 0 3 3- 4 0 2
V- 7 9 9
B T 5 0- 1 0 0 L
E R40
6- 2 6
7
8. 5
3 0 3 3- 4 0 3
V- 7 3 7
B T 5 0- 1 5 0 L
E R40
4- 2 6
23
1 2. 2
3 0 3 3- 4 0 4
V- 7 3 8
B T 5 0- 1 5 0 L
E R40
4- 2 6
15
11
3 0 3 3- 4 0 5
V- 7 3 9
B T 5 0- 1 5 0 L
E R40
6- 2 6
7
9. 5
3 0 3 3- 4 0 6
V- 7 4 0
B T 5 0- 1 0 0 L
E R50
1 2- 3 4
12
12
3 0 3 3- 4 0 7
V- 7 4 0 C
B T 4 0- 9 0 L
E R50
1 2- 3 4
12
9
3 0 3 3- 4 0 8
V- 7 4 0 B
B T 5 0- 1 0 0 L
E R32
3- 2 0
18
7. 5
3 0 3 3- 4 0 9
3 0 3 1- 4 0 1
T O O LI N G S Y S T E M
C22
S T/ E R Str ai g ht S h a n k Wit h D o u bl e H e a d S pi n dl e
M TYPE D O U BLE HE A D
F O R C N C L AT H E O N LY
E R
U M TYPE
M TYPE O R DE R N O. V- 8 3 0
V- 8 3 1 V- 8 3 2 V- 8 3 3 V- 8 3 4 V- 8 3 5 V- 8 3 6 V- 8 3 7
U M TYPE M TYPE
O R DE R N O. V- 8 5 5
V- 8 5 6
C OLLET TYPE E R 11 E R16 E R16 E R20
C OLLET TYPE E R 11
S H A N K ( Ø D 1- E R- L 1) ø 2 0- E R 1 1 M 2- 5 0
L
L1
D
C O D E N O.
16
W EI G H T ( K G S) 0. 2
70
50
3 0 3 2- 4 3 0
ø 2 0- E R 1 1 M 2- 7 8
108
78
16
0. 3
3 0 3 2- 4 3 1
ø 2 0- E R 1 6 M 2- 5 0
82
50
22
0. 2
3 0 3 2- 4 3 2
ø 2 0- E R 1 6 M 2- 7 0
11 2
70
22
0. 3 2
3 0 3 2- 4 3 3
ø 2 5- E R 1 6 M 2- 5 0
92
50
22
0. 2 5
3 0 3 2- 4 3 4
ø 2 5- E R 1 6 M 2- 8 0
122
80
22
0. 3 5
3 0 3 2- 4 3 5
ø 2 5- E R 2 0 M 2- 5 0
92
50
28
0. 3
3 0 3 2- 4 3 6
ø 2 5- E R 2 0 M 2- 8 0
122
80
28
0. 3 5
3 0 3 2- 4 3 7
S H A N K ( Ø D 1- E R- L 1) ø 2 0- E R 1 1 U M 2- 5 0
L
L1
D
C O D E N O.
80
50
19
W EI G H T ( K G S) 0. 1 5
3 0 3 2- 4 2 8
ø 2 0- E R 1 1 U M 2- 7 0
100
70
19
0. 1 9
3 0 3 2- 4 2 9
V- 8 5 9
E R16
ø 2 5- E R 1 6 U M 2- 8 0
124
80
28
0. 3 5
3 0 3 2- 4 3 9
V- 8 6 2
E R20
ø 2 5- E R 2 0 U M 2- 8 0
134
80
34
0. 3 8
3 0 3 2- 4 3 8
S T/ E R Str ai g ht S h a n k Wit h Si n gl e H e a d S pi n dl e
F O R C N C L AT H E O N LY
U M TYPE M T Y P E SI N G L E H E A D
E R
M T Y P E SI N G L E H E A D
U M TYPE O R DE R N O. V- 8 4 1
C OLLET TYPE
V- 8 4 2
E R16
L1
D
C O D E N O.
22
W EI G H T ( K G S) 0. 2
21
70
3 0 3 2- 4 4 1
ø 2 5- E R 1 6 M- 7 0
21
70
22
0. 2 5
3 0 3 2- 4 4 2
ø 3/ 4 - E R 1 6 M- 7 0
21
70
22
0. 2
3 0 3 2- 4 4 3
V- 8 4 4
ø 2 0- E R 1 6 U M- 7 0
21
70
28
0. 2
3 0 3 2- 4 4 4
ø 2 5- E R 1 6 U M- 7 0
21
70
28
0. 2 5
3 0 3 2- 4 4 5
ø 3/ 4 - E R 1 6 U M- 7 0
21
70
28
0. 2
3 0 3 2- 4 4 6
ø 2 2- E R 2 0 U M- 7 0
23
70
34
0. 2 5
3 0 3 2- 4 4 7
ø 2 5- E R 2 0 U M- 7 0
23
70
34
0. 3
3 0 3 2- 4 4 8
E R16
V- 8 4 6 V- 8 4 7 V- 8 4 8
T O O LI N G S Y S T E M
L
V- 8 4 3 V- 8 4 5
C23
S H A N K ( Ø D 1- E R- L 1) ø 2 0- E R 1 6 M- 7 0
E R20
E R C oll et C h u c k S y st e m
M A S 4 0 3 B T 3 0/ 4 0/ 5 0 S H A N K
E R
Ø D
L
O R D E R N O.
L
Ø D
C OLLET
W EI G H T ( k g)
C O D E N O.
B T 3 0- E R 1 1- 6 0- B
60
19
E R 11
0. 5
3 0 3 3- 5 0 0
B T 3 0- E R 1 1- 1 0 0- B
100
19
E R 11
0. 5 5
3 0 3 3- 5 0 1
B T 3 0- E R 1 6- 6 0- B
60
28
E R16
0. 5
3 0 3 3- 5 0 2
B T 3 0- E R 1 6- 1 0 0- B
100
28
E R16
0. 7
3 0 3 3- 5 0 3
B T 3 0- E R 2 0- 6 0- B
60
34
E R20
0. 5 5
3 0 3 3- 5 0 4
B T 3 0- E R 2 0- 1 0 0- B
100
34
E R20
0. 8
3 0 3 3- 5 0 5
B T 3 0- E R 2 5- 6 0- B
60
42
E R25
0. 6
3 0 3 3- 5 0 6
B T 3 0- E R 3 2- 6 0- B
60
50
E R32
0. 6 5
3 0 3 3- 5 0 7
B T 4 0- E R 1 1- 7 0- B
70
19
E R 11
1
3 0 3 3- 5 0 9
B T 4 0- E R 1 1- 1 0 0- B
100
19
E R 11
1. 1
3 0 3 3- 5 1 0
B T 4 0- E R 1 6- 7 0- B
70
28
E R16
1. 1
3 0 3 3- 5 1 1
B T 4 0- E R 1 6- 1 0 0- B
100
28
E R16
1. 2
3 0 3 3- 5 1 2
B T 4 0- E R 2 0- 7 0- B
70
34
E R20
1. 2
3 0 3 3- 5 1 4
B T 4 0- E R 2 0- 1 0 0- B
100
34
E R20
1. 4
3 0 3 3- 5 1 5
B T 4 0- E R 2 5- 7 0- B
70
42
E R25
1. 2
3 0 3 3- 5 1 8
B T 4 0- E R 2 5- 1 0 0- B
100
42
E R25
1. 4 5
3 0 3 3- 5 1 9
B T 4 0- E R 3 2- 7 0- B
70
50
E R32
1. 3
3 0 3 3- 5 2 1
B T 4 0- E R 3 2- 1 0 0- B
100
50
E R32
1. 5
3 0 3 3- 5 2 2
B T 3 0- E R 1 1 M- 1 0 0- B
100
16
E R 11
0. 5
3 0 3 3- 5 2 3
B T 3 0- E R 1 6 M- 1 0 0- B
100
22
E R16
0. 5 5
3 0 3 3- 5 2 4
B T 3 0- E R 2 0 M- 1 0 0- B
100
28
E R20
0. 6 5
3 0 3 3- 5 2 5
B T 4 0- E R 1 1 M- 1 0 0- B
100
16
E R 11
1. 0 5
3 0 3 3- 5 2 6
B T 4 0- E R 1 6 M- 1 0 0- B
100
22
E R16
1. 1
3 0 3 3- 5 2 7
B T 4 0- E R 2 0 M- 1 0 0- B
100
28
E R20
1. 2
3 0 3 3- 5 2 8
T O O LI N G S Y S T E M
E R SYSTE M
U L T R A P R E CI SI O N T Y P E M A X. S P E E D: 1 5, 0 0 0 R P M; G 2. 5 D Y N A MI C B A L A N C E T E S T E D
C24
E R- S K T a p er S h a n k
C O L L E T H O L D E R WI T H S K- S H A N K DI N 6 9 8 7 1
E R
& C O L L E T C H U C K S E T DI N 6 9 8 7 1
Ø D
L1 L
G
O R DE R C OLLET TAPE R D N O. TYPE E R16 S K40 28 V- 7 4 1
100
W EI G H T C O DE K GS N O. M16 1. 5 3 0 2 9- 3 0 1
V- 7 4 1 K
E R16
S K30
28
60
M12
0. 4 5
3 0 2 9- 3 1 1
V- 7 4 1 B
E R16
S K50
28
100
M24
3. 5
3 0 2 9- 3 1 7
V- 7 4 2
E R20
S K40
34
100
M16
1. 5
3 0 2 9- 3 0 2
V- 7 4 2 C
E R16
S K40
28
70
M16
1. 1
3 0 2 9- 3 1 5
V- 7 4 2 D
E R20
S K40
34
70
M16
1. 2
3 0 2 9- 3 1 6
V- 7 4 2 E
E R20
S K50
34
100
M24
3. 5
3 0 2 9- 3 1 8
V- 7 4 4
E R20
S K50
34
150
M24
4. 8
3 0 3 0- 3 0 2
W EI G H T K GS 1. 2 0. 8 3. 7 1. 6 4. 2 1. 1 3. 4
C O DE N O. 3 0 2 9- 3 0 3 3 0 2 9- 3 1 4 3 0 2 9- 3 2 0 3 0 2 9- 3 0 4 3 0 3 0- 3 0 3 3 0 3 0- 3 0 4 3 0 2 9- 3 1 9
L
G
Ø D
L
J
O R DE R C OLLET TAPE R N O. TYPE E R32 S K40 V- 7 4 5 E R32 S K30 V- 7 4 5 A E R32 S K50 V- 7 4 5 B E R40 S K40 V- 7 4 6 E R40 S K50 V- 7 4 7 E R25 S K40 V- 7 4 9 E R25 S K50 V- 7 4 9 A
D
L
G
50 50 50 63 63 42 42
70 60 100 80 100 70 100
M16 M12 M24 M16 M24 M16 M24
O R DE R E R S K N O. TYPE TAPE R E R 1 6 S K 4 0- 7 0 L V- 7 5 1
SET S E T W EI G H T C O DE RAN GE P CS K GS N O. 1- 1 0 1 0 P C S 2. 3 3 0 2 9- 4 0 1
V- 7 5 1 A E R 1 6 S K 3 0- 6 0 L
1- 1 0
10 P C S
1. 8
3 0 2 9- 4 2 0
V- 7 5 2
E R 2 0 S K 4 0- 7 0 L
2- 1 3
12 P C S
3
3 0 2 9- 4 0 2
V- 7 5 3
E R 3 2 S K 4 0- 7 0 L
3- 2 0
18 P C S
5. 2
3 0 2 9- 4 0 3
V- 7 5 4
E R 3 2 S K 4 0- 7 0 L
4- 2 0
11 P C S
4. 2
3 0 2 9- 4 0 4
V- 7 5 4 A E R 3 2 S K 3 0- 6 0 L
3- 2 0
18 P C S
4. 2
3 0 2 9- 4 2 3
V- 7 5 4 B E R 3 2 S K 5 0- 1 0 0 L
3- 2 0
18 P C S
7
3 0 2 9- 4 2 4
V- 7 5 5
E R 3 2 S K 4 0- 7 0 L
6- 2 0
6P CS
3. 8
3 0 2 9- 4 0 5
V- 7 5 6
E R 4 0 S K 4 0- 8 0 L
4- 2 6
23 P C S
8. 9
3 0 2 9- 4 0 6
V- 7 5 7
E R 4 0 S K 4 0- 8 0 L
4- 2 6
15 P C S
7. 6
3 0 2 9- 4 0 7
V- 7 5 8
E R 4 0 S K 4 0- 8 0 L
6- 2 5
7P CS
6
3 0 2 9- 4 0 8
V- 7 5 9
E R 4 0 S K 5 0- 1 0 0 L
4- 2 6
23 P C S
1 1. 3
3 0 3 0- 4 0 1
V- 7 6 0
E R 4 0 S K 5 0- 1 0 0 L
4- 2 6
15 P C S
10
3 0 3 0- 4 0 2
V- 7 6 1
E R 4 0 S K 5 0- 1 0 0 L
6- 2 6
7P CS
8. 5
3 0 3 0- 4 0 3
V- 7 6 2
E R 2 5 S K 4 0- 7 0 L
2- 1 6
15 P C S
3. 5
3 0 2 9- 4 0 9
V- 7 6 3
E R 2 5 S K 4 0- 7 0 L
4- 2 6
7P CS
3. 2
3 0 2 9- 4 1 0
G
E R
E R 1 6, E R 2 0 P A C K E D I N W O O D E N C A S E E R 3 2, E R 4 0 P A C K E D I N P L A S TI C C A S E C25
T O O LI N G S Y S T E M
E R S pri n g C oll et C h u c k S y st e m
C O L L E T H O L D E R WI T H C A T- S H A N K
V- 8 7 0
C OLLET TYPE E R16
V- 8 7 1
E R16
V- 8 7 2
E R20
V- 8 7 3
E R25
V- 8 7 4 V- 8 7 5 V- 8 7 6
E R40
O R D E R N O.
TAPE R
D
L
G
C AT30
28
2
1/ 2”- 1 3
28
3
34
3
42
2- 1/ 2
E R32
50
E R40
63 63
3- 1/ 2
C AT40
C AT50
W EI G H T K GS 0. 8
C O D E N O.
1. 1
3 0 3 5- 3 0 1
3 0 3 4- 3 0 1
1. 2
3 0 3 5- 3 0 2
1. 2
3 0 3 5- 3 0 3
2- 1/ 2
1. 2
3 0 3 5- 3 0 4
3
1. 5
3 0 3 5- 3 0 5
4
3 0 3 6- 3 0 1
5/ 8”- 1 1
1/ 8”
C O L L E T C H U C K KI T WI T H C A T- S H A N K I N C L U DI N G S H A N K, F U L L S E T O F C O L L E T, W R E N C H A N D C A S E. 1. E R 1 6, E R 2 0, E R 2 5 P A C K E D I N W O O D E N B O X. 2. E R 3 2, E R 4 0, P A C K E D I N P L A S TI C B O X. 3. P A C K A G E I N C L U DI N G: C H U C K, C O L L E T, W R E N C H, B O X.
O R D E R N O.
C OLLET TYPE
V- 8 7 8
E R16
V- 8 7 9
E R20
V- 8 8 0 V- 8 8 1
E R25
V- 8 8 2 V- 8 8 3
E R32
V- 8 8 4 V- 8 8 5 V- 8 8 6
E R40
C AT T A P E R
SET R A N GE
SET P CS
W EI G H T K G S
C O D E N O.
C A T 4 0- 3 L
1. 0- 1 0
10
2. 3
3 0 3 5- 4 0 1
C A T 4 0- 3 L
2. 0- 1 3
12
2. 5
3 0 3 5- 4 0 2
C A T 4 0- 2 1/ 2 L
2. 0- 1 6
15
3
3 0 3 5- 4 0 3
C A T 4 0- 2 1/ 2 L
4. 0- 1 6
7
2. 8
3 0 3 5- 4 0 4
C A T 4 0- 2 1/ 2 L
3. 0- 2 0
18
5. 2
3 0 3 5- 4 0 5
C A T 4 0- 2 1/ 2 L
4. 0- 2 0
11
4. 2
3 0 3 5- 4 0 6
C A T 4 0- 2 1/ 2 L
6. 0- 2 0
6
3. 8
3 0 3 5- 4 0 7
C A T 4 0- 3 L
4. 0- 2 6
23
8. 9
3 0 3 5- 4 0 8
C A T 4 0- 3 L
4. 0- 2 6
15
7. 6
3 0 3 5- 4 0 9
V- 8 8 7
C A T 4 0- 3 L
6. 0- 2 5
7
6
3 0 3 5- 4 1 0
V- 8 8 8
C A T 5 0- 3 1/ 2 L
4. 0- 2 6
23
1 1. 2
3 0 3 6- 4 0 1
C A T 5 0- 3 1/ 2 L
4. 0- 2 6
15
9. 8
3 0 3 6- 4 0 2
C A T 5 0- 3 1/ 2 L
6. 0- 2 5
7
8. 3
3 0 3 6- 4 0 3
V- 8 8 9 V- 8 9 0
E R40
T O O LI N G S Y S T E M
C26
E R SYSTE M
E R
Milli n g C h u c k
DI N 6 3 8 8 # 2 5 S E RI E S DI N 2 0 8 0 N T- S H A N K
C O L L E T H O L D E R WI T H # 2 5 C O L L E T C H U C K DI N 6 3 8 8 T Y P E A O Z- 2 5
O Z - S E RI E S
1. B e st s el e ct e d q u alit y t o ol st e el h ar d e n e d & Pr e ci si o n gr o u n d. 2. A c c ur a c y of c o n c e ntri c t o wit hi n 0. 0 0 8” p er i n c h. ( 0. 0 2 m m p er 2 5 m m) 3. Hi g n ri gi dit y & Cl a m pi n g f or c e. 4. 1 s et i n cl u di n g : 1 c h u c k s h a n k h ol d er 1 wr e n c h ; 1 c a s e. 7 or 1 5 p c s of c oll et.
C H U C K S H A N K O NLY O R DE R N O.
C H U C K S H A N K
V B- M T- 2
MT2
D R A W B A R T H RE A DS M E T RI C S AE M 1 0 X 1. 5 P 3/ 8 - 1 6
V B- M T- 3
MT3
1/ 2 - 1 2
M 1 0 X 1. 5 P
1/ 2 - 1 3
M 1 2 X 1. 7 5 P
W EI G H T( k g) S AE M E T RI C
M E A S. CFT
C O DE N O.
1
1
0. 3
3 1 0 1- 0 0 1
1. 1
1
0. 3
3 1 0 1- 0 0 2
V B- M T- 4
MT4
5/ 8 - 1 1
M 1 6 X 2. 0 P
1. 4
0. 3
3 1 0 1- 0 0 3
V B- M T- 5
MT5
1 -8
M 2 4 X 3. 0 P
2
0. 5
3 1 0 1- 0 0 4
V B- R 8
R- 8
7/ 1 6 - 2 0
0. 3
3 1 0 1- 0 0 5
V B- N T 3 0
NT30
1. 3
1/ 2 - 1 2 M 1 2 X 1. 7 5 P
1. 1
1. 1
0. 3
3 1 0 1- 0 0 6
1/ 2 - 1 3
V B- N T 4 0
NT40
5/ 8 - 1 1
M 1 6 X 2. 0 P
1. 5
1. 5
0. 3
3 1 0 1- 0 0 7
V B- N T 5 0
NT50
1 -8
M 2 4 X 3. 0 P
3. 4
3. 4
0. 5
3 1 0 1- 0 0 8
Pl e a s e N otif y t h e Dr a w B ar T hr e a d Si z e W h e n or d eri n g.
C27
T O O LI N G S Y S T E M
Milli n g C oll et C h u c k Kit
I N C L U DI N G S H A N K, F U L L S E T O F C O L L E T S, W R E N C H A N D C A S E, C O O L E T C H U C K KI T
DI N 6 3 8 8 O Z- 2 5 T Y P E
DI F F E R E N T S H A N K S T Y L E
F ULL SET
C O L L E T S SI Z E O Z- 2 5 C OLLETS TAPE R
O R DE R N O.
V B- 1 0 1
P CS
W EI G H T ( K G S)
C O DE N O.
7
3. 7
3 1 0 1- 1 0 1
15
5. 2
3 1 0 1- 1 0 2
7
4
3 1 0 1- 1 0 3
15
5. 5
3 1 0 1- 1 0 4
7
6. 5
3 1 0 1- 1 0 5
Inch 1/ 8 - 1 1 5 P C S 1/ 4 - 1 7 P C S
15
8. 5
3 1 0 1- 1 0 6
7
3. 3
3 1 0 1- 1 0 7
15
5. 2
3 1 0 1- 1 0 8
M etri c 3 m m- 2 5 m m 15pcs 6 m m- 2 5 m m 7 p c s
7
3. 9
3 1 0 1- 1 0 9
15
5. 4
3 1 0 1- 1 1 0
7
4. 7
3 1 0 1- 1 1 1
15
6. 2
3 1 0 1- 1 1 2
7
3. 7
3 1 0 1- 1 1 3
15
5. 2
3 1 0 1- 1 1 4
7
3. 6
3 1 0 1- 1 1 5
15
5. 1
3 1 0 1- 1 1 6
NT30
V B- 1 0 2 V B- 1 0 3
NT40
V B- 1 0 4 V B- 1 0 5
NT50
V B- 1 0 6 V B- 1 0 7
MT3
V B- 1 0 8 V B- 1 0 9
MT4
V B- 1 1 0 V B- 1 1 1
MT5
V B- 1 1 2 V B- 1 1 3
R8
V B- 1 1 4 V B- 1 1 5
MT2
V B- 1 1 6
OZ SYSTE M
OZ
Pl e a s e N otif y t h e T y p e Si z e, C oll et T y p e, S et R a n g e, a n d S et N u m b er s W h e n Or d eri n g.
C O N T E N T C O L L E T S E T SI Z E 7 P C S/ S E T 15 P C S/ S E T
M M
6, 8, 1 0, 1 2, 1 6, 2 0, 2 5 M M
I N C H
1/ 4 , 5/ 1 6 , 3/ 8 , 1/ 2 , 5/ 8 , 3/ 4 , 1
M M
3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 6, 1 8, 2 0, 2 5 M M
I N C H
1/ 8 , 3/ 1 6 , 1/ 4 , 5/ 1 6 , 3/ 8 , 7/ 1 6 , 1/ 2 , 9/ 1 6 , 5/ 8 , 1 1/ 1 6 , 3/ 4 , 1 3/ 1 6 , 7/ 8 , 1 5/ 1 6 , 1
T O O LI N G S Y S T E M
C28
DI N 6 3 8 8 C oll et F or Milli n g C h u c k
C O L L E T DI N 6 3 8 8, T Y P E A
DI N 6 3 8 8 # 1 6, # 2 5, # 3 2 S E RI E S
C O L L E T M U S T B E A S S E M B L E D I N T O T H E C L A M PI N G N U T B E F O R E I N S E R TI N G I N T O T H E C H U C K D 1 D 2
L
OZ
2° 5 2’
M E T RI C O R DE R N O.
D1
L
D 2 ( M M)
O Z- 2 5-
3 5. 0 5
52
3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 4, 1 5, 1 6, 1 8, 2 0, 2 5
O Z- 3 2-
44
60
6, 8, 1 0, 1 2, 1 6, 2 0, 2 5, 3 2
O R DE R N O.
D1
L
D 2 (I N C H)
O Z- 2 5-
3 5. 0 5
52
O Z- 3 2-
4 3. 7
60
1/ 8 , 3/ 1 6 , 1/ 4 , 5/ 1 6 , 3/ 8 , 7/ 1 6 , 1/ 2 , 9/ 1 6 , 5/ 8 , 1 1/ 1 6 , 3/ 4 , 1 3/ 1 6 , 7/ 8 , 1 5/ 1 6 , 1 1/ 4 , 5/ 1 6 , 3/ 8 , 7/ 1 6 , 1/ 2 , 9/ 1 6 , 5/ 8 , 1 1/ 1 6 , 3/ 4 , 1 3/ 1 6 , 7/ 8 , 1 5/ 1 6 , 1 , 11 /8 , 11 /4
I N C H
O Z- 2 5
C29
R A N G E SI Z E: 3- 2 5( 1/ 8 - 1 ) D: 3 5. 0 5 L: 5 2 T A P E R: 1: 1 0
W EI G H T: 0. 1 8 K G S
O R D E R N O.
M M SI Z E
C O D E N O.
O R D E R N O.
I N C H SI Z E
C O D E N O.
O Z- 2 5 0 3
3. 0
3 1 0 0- 1 0 1
O Z- 2 5 2 6
1/ 8
3 1 0 0- 1 2 4
O Z- 2 5 0 4
4. 0
3 1 0 0- 1 0 2
O Z- 2 5 2 7
3/ 1 6
3 1 0 0- 1 2 5
O Z- 2 5 0 5
5. 0
3 1 0 0- 1 0 3
O Z- 2 5 2 8
1/ 4
3 1 0 0- 1 2 6
O Z- 2 5 0 6
6. 0
3 1 0 0- 1 0 4
O Z- 2 5 2 9
5/ 1 6
3 1 0 0- 1 2 7
O Z- 2 5 0 7
7. 0
3 1 0 0- 1 0 5
O Z- 2 5 3 0
3/ 8
3 1 0 0- 1 2 8
O Z- 2 5 0 8
8. 0
3 1 0 0- 1 0 6
O Z- 2 5 3 1
7/ 1 6
3 1 0 0- 1 2 9
O Z- 2 5 0 9
9. 0
3 1 0 0- 1 0 7
O Z- 2 5 3 2
1/ 2
3 1 0 0- 1 3 0
O Z- 2 5 1 0
10
3 1 0 0- 1 0 8
O Z- 2 5 3 3
9/ 1 6
3 1 0 0- 1 3 1
O Z- 2 5 1 1
11
3 1 0 0- 1 0 9
O Z- 2 5 3 4
5/ 8
3 1 0 0- 1 3 2
O Z- 2 5 1 2
12
3 1 0 0- 1 1 0
O Z- 2 5 3 5
1 1/ 1 6
3 1 0 0- 1 3 3
O Z- 2 5 1 3
13
3 1 0 0- 1 1 1
O Z- 2 5 3 6
3/ 4
3 1 0 0- 1 3 4
O Z- 2 5 1 4
14
3 1 0 0- 1 1 2
O Z- 2 5 3 7
1 3/ 1 6
3 1 0 0- 1 3 5
O Z- 2 5 1 5
15
3 1 0 0- 1 1 3
O Z- 2 5 3 8
7/ 8
3 1 0 0- 1 3 6
O Z- 2 5 1 6
16
3 1 0 0- 1 1 4
O Z- 2 5 3 9
1 5/ 1 6
3 1 0 0- 1 3 7
O Z- 2 5 1 7
17
3 1 0 0- 1 1 5
O Z- 2 5 4 0
1
3 1 0 0- 1 3 8
O Z- 2 5 1 8
18
3 1 0 0- 1 1 6
O Z- 2 5 1 9
19
3 1 0 0- 1 1 7
O Z- 2 5 2 0
20
3 1 0 0- 1 1 8
O Z- 2 5 2 1
21
3 1 0 0- 1 1 9
O Z- 2 5 2 2
22
3 1 0 0- 1 2 0
O Z- 2 5 2 3
23
3 1 0 0- 1 2 1
O Z- 2 5 2 4
24
3 1 0 0- 1 2 2
O Z- 2 5 2 5
25
3 1 0 0- 1 2 3
T O O LI N G S Y S T E M
DI N 6 3 8 8 C oll et F or Milli n g C h u c k
C O L L E T DI N 6 3 8 8, T Y P E A
DI N 6 3 8 8 # 1 6, # 2 5, # 3 2 S E RI E S
C O L L E T M U S T B E A S S E M B L E D I N T O T H E C L A M PI N G N U T B E F O R E I N S E R TI N G I N T O T H E C H U C K
DI N 6 3 8 8 3 2 # O Z- 3 2
OZ SYSTE M
OZ
R A N G E SI Z E: 6- 3 2( 1/ 4 - 1 1/ 4 ) D: 4 3. 7 L: 6 0 T A P E R: 1: 1 0 W EI G H T: 0. 2 5 K G S
O R D E R N O.
M M SI Z E
C O D E N O.
O R D E R N O.
I N C H SI Z E
C O D E N O.
O Z- 3 2 0 6
6. 0
3 1 0 0- 2 0 1
O Z- 3 2 2 7
27
3 1 0 0- 2 2 2
O Z- 3 2 0 7
7. 0
3 1 0 0- 2 0 2
O Z- 3 2 2 8
28
3 1 0 0- 2 2 3
O Z- 3 2 0 8
8. 0
3 1 0 0- 2 0 3
O Z- 3 2 2 9
29
3 1 0 0- 2 2 4
O Z- 3 2 0 9
9. 0
3 1 0 0- 2 0 4
O Z- 3 2 3 0
30
3 1 0 0- 2 2 5
O Z- 3 2 1 0
10
3 1 0 0- 2 0 5
O Z- 3 2 3 1
31
3 1 0 0- 2 2 6
O Z- 3 2 1 1
11
3 1 0 0- 2 0 6
O Z- 3 2 3 2
32
3 1 0 0- 2 2 7
O Z- 3 2 1 2
12
3 1 0 0- 2 0 7
O Z- 3 2 3 3
1/ 4
3 1 0 0- 2 2 8
O Z- 3 2 1 3
13
3 1 0 0- 2 0 8
O Z- 3 2 3 4
5/ 1 6
3 1 0 0- 2 2 9
O Z- 3 2 1 4
14
3 1 0 0- 2 0 9
O Z- 3 2 3 5
3/ 8
3 1 0 0- 2 3 0
O Z- 3 2 1 5
15
3 1 0 0- 2 1 0
O Z- 3 2 3 6
7/ 1 6
3 1 0 0- 2 3 1
O Z- 3 2 1 6
16
3 1 0 0- 2 1 1
O Z- 3 2 3 7
1/ 2
3 1 0 0- 2 3 2
O Z- 3 2 1 7
17
3 1 0 0- 2 1 2
O Z- 3 2 3 8
9/ 1 6
3 1 0 0- 2 3 3
O Z- 3 2 1 8
18
3 1 0 0- 2 1 3
O Z- 3 2 3 9
5/ 8
3 1 0 0- 2 3 4
O Z- 3 2 1 9
19
3 1 0 0- 2 1 4
O Z- 3 2 4 0
1 1/ 1 6
3 1 0 0- 2 3 5
O Z- 3 2 2 0
20
3 1 0 0- 2 1 5
O Z- 3 2 4 1
3/ 4
3 1 0 0- 2 3 6
O Z- 3 2 2 1
21
3 1 0 0- 2 1 6
O Z- 3 2 4 2
1 3/ 1 6
3 1 0 0- 2 3 7
O Z- 3 2 2 2
22
3 1 0 0- 2 1 7
O Z- 3 2 4 3
7/ 8
3 1 0 0- 2 3 8
O Z- 3 2 2 3
23
3 1 0 0- 2 1 8
O Z- 3 2 4 4
1 5/ 1 6
3 1 0 0- 2 3 9
O Z- 3 2 2 4
24
3 1 0 0- 2 1 9
O Z- 3 2 4 5
1
3 1 0 0- 2 4 0
O Z- 3 2 2 5
25
3 1 0 0- 2 2 0
O Z- 3 2 4 6
1- 1/ 8
3 1 0 0- 2 4 1
O Z- 3 2 2 6
26
3 1 0 0- 2 2 1
O Z- 3 2 4 7
1- 1/ 4
3 1 0 0- 2 4 2
DI N 6 3 8 8 N ut s & Wr e n c h
B A L L B E A RI N G, N U T S F O R C O L L E T S DI N 6 3 8 8, T Y P E A
W R E N C H F O R C O L L E T S DI N 6 3 8 8 T Y P E A
O R DE R N O.
C
D1
D3
O Z- 2 5 N
33
60
O Z- 3 2 N
40
72
O R DE R N O.
D1
O Z- 2 5 W O Z- 3 2 W
U nit: m m
C OLLETS
W EI G H T kgs
C O DE N O.
M48 X2
O Z- 2 5
0. 3
3 1 0 0- 3 0 1
M 6 0 X 2. 5
O Z- 3 2
0. 7
3 1 0 0- 3 0 2
U nit: m m
C OLLETS
W EI G H T kgs
C O D E N O.
60
O Z- 2 5
0. 3 5
3 1 0 0- 3 1 0
72
O Z- 3 2
0. 4
3 1 0 0- 3 1 1
T O O LI N G S Y S T E M
C30
Milli n g C oll et C h u c k
O Z- 2 5 C O L L E T H O L D E R WI T H B T- S H A N K
DI N 6 3 8 8 # 2 5 S E RI E S M A S 4 0 3 B T- S H A N K OZ
O R DE R N O.
TAPE R
DI N 6 3 8 8
L
D R A W B A R
W EI G H T K GS
C O D E N O.
V B- B T 4 0
BT40
#25
80
M 1 6 X 2. 0 P
1. 7
3 1 0 1- 0 0 9
V B- B T 5 0
BT50
#25
100
M 2 4 X 3. 0 P
4. 6
3 1 0 1- 0 1 0
C O D E N O.
7
W EI G H T K GS 4. 4
15
5. 9
3 1 0 1- 1 1 8
Milli n g C oll et C h u c k Kit I n cl u di n g S h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e.
M E T RI C C O L L E T S Y S T E M O R D E R N O.
V B- 2 4 1 V B- 2 4 2 V B- 2 5 1 V B- 2 5 2
TAPE R
P C S/ S E T
BT40 BT50
3 1 0 1- 1 1 7
7
7. 5
3 1 0 1- 1 1 9
15
9. 5
3 1 0 1- 1 2 0
C O N T E N T C O L L E T S E T SI Z E M E T RI C R A N G E S E T SI Z E 7 P C S: 6, 8, 1 0, 1 2, 1 6, 2 0, 2 5 m m 1 5 P C S: 3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 6, 1 8, 2 0, 2 5 m m
I N C H C O L L E T S E T SI Z E O R D E R N O.
V B- 2 3 1 V B- 2 3 2 V B- 2 3 3 V B- 2 3 4
TAPE R
C O D E N O.
7
W EI G H T K GS 4. 4
15
5. 9
3 1 0 1- 1 2 2
P C S/ S E T
BT40 BT50
7
7. 5
3 1 0 1- 1 2 3
15
9. 5
3 1 0 1- 1 2 4
I N C H R A N G E S E T SI Z E 7 P C S:1 /4 ,5 /1 6 ,3 /8 ,1 /2 ,5 /8 ,3 /4 , 1 1 5 P C S: 1 /8 ,3 /1 6 ,1 /4 ,5 /1 6 ,3 /8 ,7 /1 6 ,1 /2 ,9 /1 6 ,5 /8 , 11
/1 6 ,3 /4 ,1 3 /1 6 ,7 /8 ,1 5 /1 6 , 1
C31
T O O LI N G S Y S T E M
3 1 0 1- 1 2 1
Milli n g C oll et C h u c k
C O L L E T H O L D E R WI T H B T- S H A N K O Z- 3 2 M A S 4 0 3
DI N 6 3 8 8 # 3 2 S E RI E S
O R DE R N O.
TAPE R
DI N 6 3 8 8
L
D R A W B A R
W EI G H T K GS
C O D E N O.
V B- 2 2 6
B T 4 0- O Z- 3 2
#32
90
M 1 6 X 2. 0 P
2. 3
3 1 0 2- 0 0 3
B T 5 0- O Z- 3 2
#32
100
M 2 4 X 3. 0 P
5. 1
3 1 0 2- 0 0 4
150
M 2 4 X 3. 0 P
6. 8
3 1 0 2- 0 0 5
V B- 2 2 7 V B- 2 2 8
Milli n g C oll et C h u c k Kit I n cl u di n g S h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e.
# 3 2 S E RI E S B T- T Y P E M A S 4 0 3 B T- S H A N K
M E T RI C C O L L E T S Y S T E M S E T O R D E R N O.
V B- 2 4 3 V B- 2 4 4 V B- 2 5 3 V B- 2 5 4
TAPE R
C O D E N O.
8
W EI G H T K GS 7. 4
15
9. 4
3 1 0 2- 1 1 0
8
10
3 1 0 2- 1 1 1
15
12
3 1 0 2- 1 1 2
P C S/ S E T
BT40 BT50
3 1 0 2- 1 0 9
C O N T E N T C O L L E T S E T SI Z E M E T RI C R A N G E S E T SI Z E 8 P C S: 6, 8, 1 0, 1 2, 1 6, 2 0, 2 5, 3 2 m m 1 5 P C S: 6, 8, 9, 1 0, 1 2, 1 3, 1 4, 1 5, 1 6, 1 8, 2 0, 2 2, 2 5, 2 6, 3 0, 3 2 m m
I N C H C OLLET SYSTE M SET O R D E R N O.
V B- 2 5 6 V B- 2 5 7 V B- 2 5 8 V B- 2 5 9
TAPE R BT40 BT50
C O D E N O.
10
W EI G H T K GS 7. 4
15
9. 4
3 1 0 2- 1 1 4
10
10
3 1 0 2- 1 1 5
15
12
3 1 0 2- 1 1 6
P C S/ S E T
3 1 0 2- 1 1 3
I N C H R A N G E S E T SI Z E 1 0 P C S: 1 /4 ,5 /1 6 ,3 /8 ,1 /2 ,5 /8 ,3 /4 ,7 /8 , 1 , 1-1 /8 , 1-1 /4 1 5 P C S: 1 /4 ,5 /1 6 ,3 /8 ,7 /1 6 ,1 /2 ,9 /1 6 ,5 /8 ,1 1 /1 6 ,3 /4 13
/1 6 ,7 /8 ,1 5 /1 6 , 1 , 1-1 /8 , 1-1 /4
T O O LI N G S Y S T E M
C32
OZ SYSTE M
OZ
Milli n g C oll et C h u c k
C O L L E T H O L D E R WI T H I S O- S H A N K O Z- 3 2
DI N 6 3 8 8 # 3 2 S E RI E S DI N 2 0 8 0 N T- S H A N K
O R DE R N O.
TAPE R
DI N 6 3 8 8
V B- 1 3 0
NT30
#32
D R A W B A R 1. M 1 2 X 1. 7 5 P
2
3 1 0 2- 0 0 6
NT40
#32
1. M 1 6 X 2. 0 P 2. /8 - 1 1 W
2. 2
3 1 0 2- 0 0 1
V B- 1 3 2
NT50
#32
1. M 2 4 X 3. 0 P 2. 1 - 8 W
3. 9
3 1 0 2- 0 0 2
C O D E N O.
OZ
Milli n g C oll et C h u c k Kit O Z- 3 2 DI N 6 3 8 8
C O D E N O.
V B- 1 3 1
5
M E T RI C C O L L E T S Y S T E M
l u di n g S h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e.
W EI G H T K GS
O R D E R N O.
TAPE R
V B- 1 2 1
NT40
8
W EI G H T K GS 7. 5
V B- 1 2 1 B
NT40
15
9. 2
3 1 0 2- 1 0 2
V B- 1 2 2
NT50
8
9. 8
3 1 0 2- 1 0 3
V B- 1 2 2 B
NT50
15
1 1. 8
3 1 0 2- 1 0 4
V B- 1 2 3
NT30
8
7
3 1 0 2- 0 9 0
V B- 1 2 3 B
NT30
15
9
3 1 0 2- 0 9 1
V B- 1 2 4
MT B5
8
8
3 1 0 2- 0 9 2
V B- 1 2 4 B
MT B5
15
10
3 1 0 2- 0 9 3
P C S/ S E T
C O N T E N T C O L L E T S E T SI Z E M E T RI C R A N G E S E T SI Z E 8 P C S: 6, 8, 1 0, 1 2, 1 6, 2 0, 2 5, 3 2 m m 1 5 P C S: 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 6, 1 8, 2 0, 2 5, 2 6, 3 0, 3 2 m m
I N C H C OLLET SYSTE M
C O D E N O.
10
W EI G H T K GS 7
15
9
3 1 0 2- 0 9 5
NT40
10
7. 2
3 1 0 2- 1 0 5
NT40
15
9. 2
3 1 0 2- 1 0 6
V B- 1 6 5
NT50
10
9. 8
3 1 0 2- 1 0 7
V B- 1 6 6
NT50
15
1 1. 8
3 1 0 2- 1 0 8
V B- 1 6 7
MT B5
10
8
3 1 0 2- 0 9 6
V B- 1 6 7 B
MT B5
15
10
3 1 0 2- 0 9 7
O R D E R N O.
TAPE R
P C S/ S E T
V B- 1 6 2
NT30
V B- 1 6 2 B
NT30
V B- 1 6 3 V B- 1 6 4
I N C H R A N G E S E T SI Z E 1 0 P C S: 1 /4 ,5 /1 6 ,3 /8 ,1 /2 ,5 /8 ,3 /4 ,7 /8 , 1 , 1-1 /8 , 1-1 /4 1 5 P C S: 1 /4 ,5 /1 6 ,3 /8 ,7 /1 6 ,1 /2 ,9 /1 6 ,5 /8 ,1 1 /1 6 ,3 /4 , 13
/1 6 ,7 /8 ,1 5 /1 6 , 1 , 1-1 /8 , 1-1 /4
C33
T O O LI N G S Y S T E M
3 1 0 2- 1 0 1
3 1 0 2- 0 9 4
Milli n g C oll et C h u c k
DI N 6 3 8 8 # 2 5, # 3 2 S E RI E S
DI N 6 9 8 7 1 A & C A T S H A N K O R DE R N O.
TAPE R
V B- 2 6 1
S K 4 0- O Z 2 5- 8 0 L
V B- 2 6 2
S K 5 0- O Z 2 5- 1 0 0 L
V B- 2 6 3
C A T 4 0- O Z 2 5- 3 L
V B- 2 6 4
1
C A T 5 0- O Z 2 5- 3 /2 L
V B- 2 6 5
S K 4 0- O Z 3 2- 8 0 L
V B- 2 6 6
S K 5 0- O Z 3 2- 1 0 0 L
DI N 6 3 8 8
#25
#32
D R A W B A R W EIK GG SH T M 1 6 X 2. 0 P 1. 6
C O D E N O.
M 2 4 X 3. 0 P
4. 2
3 1 0 1- 0 1 2
5 /8 - 1 1 W
1. 9
3 1 0 1- 0 1 3
3 1 0 1- 0 1 1
1 -8 W
4
3 1 0 1- 0 1 4
M 1 6 X 2. 0 P
2. 3
3 1 0 2- 0 1 1
M 2 4 X 3. 0 P
5
3 1 0 2- 0 1 2
OZ SYSTE M
C O L L E T H O L D E R WI T H DI N 6 9 8 7 1 & C A T T P E
OZ
Milli n g C oll et C h u c k Kit I n cl u di n g S h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e.
M E T RI C C O L L E T S Y S T E M S E T DI N 6 9 8 7 1 A S K- T Y P E WI T H O R DE R N O.
C OLLET H OL DE R
V B- 2 7 1
S K 4 0- O Z 2 5- 8 0 L
V B- 2 7 2
S K 4 0- O Z 2 5- 8 0 L
V B- 2 7 3
S K 4 0- O Z 3 2- 8 0 L
V B- 2 7 4
S K 4 0- O Z 3 2- 8 0 L
V B- 2 7 5
S K 5 0- O Z 2 5- 1 0 0 L
V B- 2 7 6
S K 5 0- O Z 2 5- 1 0 0 L
V B- 2 7 7
S K 5 0- O Z 3 2- 1 0 0 L
V B- 2 7 8
S K 5 0- O Z 3 2- 1 0 0 L
TYPE S K40 S K40 S K50 S K50
DI N 6 3 8 8
# 2 5, # 3 2
R A N GE
SET P CS
K GS
C O D E N O.
#25
3. 0- 2 5
15 P C S
5. 7
3 1 0 1- 1 2 5
#25
6. 0- 2 5
7P CS
4. 2
3 1 0 1- 1 2 6
#32
6. 0- 3 2
15 P C S
9. 2
3 1 0 1- 1 2 7
#32
6. 0- 3 2
8P CS
7. 2
3 1 0 1- 1 2 8
#25
3. 0- 2 5
15 P C S
9. 3
3 1 0 1- 1 2 9
#25
6. 0- 2 5
7P CS
7. 3
3 1 0 1- 1 3 0
#32
6. 0- 3 2
15 P C S
1 1. 8
3 1 0 2- 1 1 7
#32
6. 0- 3 2
8P CS
9. 8
3 1 0 2- 1 1 8
I N C H C O L L E T S Y S T E M S E T C A T- T Y P E WI T H # 2 5, # 3 2 O R DE R N O.
C OLLET H OL DE R
V B- 2 8 1
C A T 4 0- O Z 2 5- 3 L
V B- 2 8 2
C A T 4 0- O Z 2 5- 3 L
V B- 2 8 6
C A T 4 0- O Z 3 2- 3 L
V B- 2 8 7
C A T 4 0- O Z 3 2- 3 L
V B- 2 8 8
C A T 5 0- O Z 2 5- 3 1 /2 L
V B- 2 8 9
C A T 5 0- O Z 2 5- 3 1 /2 L
V B- 2 9 0
C A T 5 0- O Z 3 2- 3 1 /2 L
V B- 2 9 1
C A T 5 0- O Z 3 2- 3 1 /2 L
TYPE C AT40 C AT40 C AT50 C AT50
DI N 6 3 8 8
R A N GE
SET P CS
K GS
C O D E N O.
#25
1/ 8 - 1
15 P C S
5. 7
3 1 0 1- 1 3 1
#25
1/ 4 - 1
7P CS
4. 2
3 1 0 1- 1 3 2
#32
1/ 4 - 1 1/ 4
15 P C S
9. 2
3 1 0 2- 1 1 9
#32
1/ 4 - 1 1/ 4
10 P C S
7. 2
3 1 0 2- 1 2 0
#25
1/ 8 - 1
15 P C S
9. 3
3 1 0 1- 1 3 3
#25
1/ 4 - 1
7P CS
7. 3
3 1 0 1- 1 3 4
#32
1/ 4 - 1 1/ 4
15 P C S
1 1. 8
3 1 0 2- 1 2 1
#32
1/ 4 - 1 1/ 4
10 P C S
10
3 1 0 2- 1 2 2
T O O LI N G S Y S T E M
C34
M ulti- L o c k Milli n g C h u c k
C O L L E T H O L D E R WI T H I S O, B T & S K T A P E R S H A N K S T R AI G H T C O L L E T T Y P E C- 3 2 C- 4 2 DI N 2 0 8 0, M A S 4 0 3 DI N 6 9 8 7 1 A C- 2 0, 2 5, 3 2, 4 2 T Y P E
C TYPE
N T- 4 0 WI T H M A H O G A P
O R D E R N O.
V B- 4 3 1 V B- 4 3 2 V B- 4 3 3 V B- 4 3 4 V B- 4 3 5 A V B- 4 3 5 B V B- 4 3 6 V B- 4 3 7 V B- 4 3 8 V B- 4 3 9 V B- 4 4 0 V B- 4 4 1
TAPE R NT40 NT50 BT40 BT50 NT50 BT50
d
D
L
D R A W B A R
K GS
C O D E N O.
N T 4 0- M C 3 2- 9 5 L
32
75
95
5/ 8 - 1 1
3
3 2 0 2- 0 0 1
N T 4 0- M C 3 2- 9 5 L
32
75
95
M 1 6 x 2. 0 P
3. 1
3 2 0 2- 0 0 2
N T 5 0- M C 3 2- 1 0 0 L
32
75
100
1 -8
4. 8
3 2 0 2- 0 0 3
N T 5 0- M C 3 2- 1 0 0 L
32
75
100
M 2 4 x 3. 0 P
5. 1
3 2 0 2- 0 0 4
B T 4 0- M C 3 2- 1 0 5 L
32
75
105
M 1 6 x 2. 0 P
3. 2
3 2 0 2- 0 0 5
B T 4 0- M C 3 2- 1 5 0 L
32
75
150
M 1 6 x 2. 0 P
3. 5
3 2 0 2- 0 2 0
B T 5 0- M C 3 2- 1 1 0 L
32
75
11 0
M 2 4 x 3. 0 P
5. 2
3 2 0 2- 0 0 6
B T 5 0- M C 3 2- 1 5 0 L
32
75
135
M 2 4 x 3. 0 P
7
3 2 0 2- 0 0 7
N T 5 0- M C 4 2- 1 1 0 L
42
87
11 0
1 -8
6
3 2 0 2- 0 0 8
N T 5 0- M C 4 2- 1 1 0 L
42
87
11 0
M 2 4 x 3. 0 P
6. 1
3 2 0 2- 0 0 9
B T 5 0- M C 4 2- 1 1 5 L
42
87
11 5
M 2 4 x 3. 0 P
6. 1
3 2 0 2- 0 1 0
B T 5 0- M C 4 2- 1 5 0 L
42
87
140
M 2 4 x 3. 0 P
7. 8
3 2 0 2- 0 1 1
S K 4 0- M C 3 2- 1 0 0 L
32
75
100
M 1 6 x 2. 0 P
3. 1
3 2 0 2- 0 1 2
S K50
S K 5 0- M C 3 2- 1 0 5 L
32
75
105
M 2 4 x 3. 0 P
5. 3
3 2 0 2- 0 1 3
BT30
B T 3 0- M C 2 0- 9 5
20
52
95
M 1 2 x 1. 7 5 P
1. 3
3 2 0 2- 0 1 4
V B- 4 4 2
S K40
V B- 4 4 3 V B- 4 4 4 A V B- 4 4 6 A
B T 4 0- M C 2 0- 8 0
20
52
80
M 1 6 x 2. 0 P
3
3 2 0 2- 0 1 6
V B- 4 4 6 B
B T 4 0- M C 2 0- 1 2 0
20
52
120
M 1 6 x 2. 0 P
2. 7
3 2 0 2- 0 1 7
V B- 4 4 7 A
BT40
V B- 4 4 7 B V B- 4 4 8 A V B- 4 4 8 B V B- 4 5 1 A V B- 4 5 1 B V B- 4 5 2
C35
C H U C K
NT30
S K40 S K50
T O O LI N G S Y S T E M
B T 4 0- M C 2 5- 9 0
25
58
90
M 1 6 x 2. 0 P
4. 5
3 2 0 2- 0 1 8
B T 4 0- M C 2 5- 1 3 5
25
58
135
3. 2
3 2 0 2- 0 1 9
N T 3 0- M C 2 0- 8 0
20
52
80
1. 5
3 2 0 2- 0 3 0
N T 3 0- M C 2 5- 8 5
25
58
85
1. 5
3 2 0 2- 0 3 1
S K 4 0- M C 2 0- 8 0
20
52
80
M 1 6 x 2. 0 P 1. M 1 2 X 1. 7 5 P 2. 1/ 2 - 1 2 1. M 1 2 X 1. 7 5 P 2. 1/ 2 - 1 2 M 1 6 X 2. 0 P
2
3 2 0 2- 0 3 5
S K 4 0- M C 2 5- 9 0
25
58
90
M 1 6 X 2. 0 P
2
3 2 0 2- 0 3 6
S K 5 0- M C 4 2- 1 1 0
42
87
11 0
M 2 4 X 3. 0 P
5. 7
3 2 0 2- 0 3 7
M ulti- L o c k Milli n g C h u c k
M U L TI- L O C K MI L LI N G C H U C K KI T
I n cl u di n g s h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e.
DI N 2 0 8 0 N T- S H A N K M A S 4 0 3 B T- S H A N K DI N 6 9 8 7 1 A S K- S H A N K
MI L LI N G C H U C K
C TYPE
O R D E R N O.
V B- 4 4 4 I V B- 4 4 4 V B- 4 5 4 I V B- 4 5 4 V B- 3 4 4 A V B- 3 4 4 B V B- 3 5 4 A V B- 3 5 4 B V B- 5 5 4 V B- 5 5 4 I V B- 5 6 4 A V B- 5 6 4 B V B- 5 6 5 V B- 5 6 6 V B- 5 6 7 V B- 5 6 9 A V B- 5 6 9 B V B- 5 7 0 A V B- 5 7 0 B V B- 5 7 1 V B- 5 7 2 V B- 5 7 4 V B- 5 7 6 V B- 5 7 7 V B- 5 7 8
TAPE R NT40 NT50 BT40 BT50 NT50 BT50 S K- 4 0 S K- 5 0 B T- 3 0 B T- 4 0
NT30 NT40 S K40 S K50
C H U C K
C OLLET
D R A W B A R
K GS
C O D E N O.
N T 4 0- M C 3 2- 9 5 L N T 4 0- M C 3 2- 9 5 L N T 5 0- M C 3 2- 1 0 0 L N T 5 0- M C 3 2- 1 0 0 L B T 4 0- M C 3 2- 1 0 5 L B T 4 0- M C 3 2- 1 5 0 L B T 5 0- M C 3 2- 1 1 0 L B T 5 0- M C 3 2- 1 5 0 L N T 5 0- M C 4 2- 1 1 0 L N T 5 0- M C 4 2- 1 1 0 L B T 5 0- M C 4 2- 1 1 5 L B T 5 0- M C 4 2- 1 5 0 L S K 4 0- M C 3 2- 1 0 0 L S K 5 0- M C 3 2- 1 0 5 L B T 3 0- M C 2 0- 9 5 B T 4 0- M C 2 0- 8 0 B T 4 0- M C 2 0- 1 2 0 B T 4 0- M C 2 5- 9 0 B T 4 0- M C 2 5- 1 3 5
7P CS 7P CS 7P CS 7P CS 7P CS 7P CS 7P CS 7P CS 8P CS 8P CS 8P CS 8P CS 7P CS 7P CS 6P CS 6P CS 6P CS 7P CS 7P CS
7 7 9 9 7 1 1. 5 9. 5 13 12 12 12 14 7 9. 5 6 7 8 9. 5 1 0. 5
3 2 0 2- 1 0 1 3 2 0 2- 1 0 2 3 2 0 2- 1 0 3 3 2 0 2- 1 0 4 3 2 0 2- 1 0 5 3 2 0 2- 1 1 8 3 2 0 2- 1 0 6 3 2 0 2- 1 1 9 3 2 0 2- 1 0 7 3 2 0 2- 1 0 8 3 2 0 2- 1 0 9 3 2 0 2- 1 0 9 B 3 2 0 2- 1 1 0 3 2 0 2- 1 1 1 3 2 0 2- 1 1 2 3 2 0 2- 1 1 4 3 2 0 2- 1 1 5 3 2 0 2- 1 1 6 3 2 0 2- 1 1 7
N T 3 0- M C 2 0- 8 0 L
6P CS
4
3 2 0 2- 1 2 0
N T 3 0- M C 2 5- 8 5 L
7P CS
4
3 2 0 2- 1 2 1
N T 4 0- M C 2 5- 8 5 L
7P CS
4. 5
3 2 0 2- 1 2 3
S K 4 0- M C 2 0- 8 0 L S K 4 0- M C 2 5- 9 0 L S K 5 0- M C 4 2- 1 1 0 L
6P CS 7P CS 8P CS
5/ 8 - 1 1 M 1 6 x 2. 0 P 1 -8 M 2 4 x 3. 0 P M 1 6 x 2. 0 P M 1 6 x 2. 0 P M 2 4 x 3. 0 P M 2 4 x 3. 0 P M 2 4 x 3. 0 P 1 -8 M 2 4 x 3. 0 P M 2 4 x 3. 0 P M 1 6 x 2. 0 P M 2 4 x 3. 0 P M 1 2 x 1. 7 5 P M 1 6 x 2. 0 P M 1 6 x 2. 0 P M 1 6 x 2. 0 P M 1 6 x 2. 0 P 1. M 1 2 X 1. 7 5 P 2. 1/ 2 - 1 2 1. M 1 2 X 1. 7 5 P 2. 1/ 2 - 1 2 1. M 1 6 X 2. 0 P 2. 5/ 8 - 1 1 M 1 6 X 2. 0 P M 1 6 X 2. 0 P M 2 4 X 3. 0 P
4. 5 4. 8 12
3 2 0 2- 1 2 5 3 2 0 2- 1 2 6 3 2 0 2- 1 2 7
T O O LI N G S Y S T E M
C36
C- 2 0, 2 5, 3 2, 4 2 C oll et
C- T Y P E C O L L E T
C TYPE
2 0, 2 5, 3 2, 4 2 S T R AI G H T C O L L E T O R DE R N O. C- 2 0- 6 P C- 2 5- 7 P C- 3 2- 7 P C- 4 2- 8 P
M E T RI C
C O L L E T S SI Z E d I N SI D E DI A M E T E R 4, 6, 8, 1 0, 1 2, 1 6 4, 6, 8, 1 0, 1 2, 1 6, 2 0 6, 8, 1 0, 1 2, 1 6, 2 0, 2 5 6, 8, 1 0, 1 2, 1 6, 2 0, 2 5, 3 2
C OLLET C- 2 0 C- 2 5 C- 3 2 C- 4 2
D1 O. D. 20 25 32 42
D2
L
P C S/ S E T
25 31 37 48
52 60 73 80
6 7 7 8
2 0, 2 5, 3 2, 4 2 S T R AI G H T C O L L E T O R DE R C OLLET N O. C- 2 0 C- 2 0- 6 I C- 2 5 C- 2 5- 6 I C- 3 2 C- 3 2- 7 I C- 4 2 C- 4 2- 8 I
O R D E R N O. C- 2 0 C- 2 5 C- 3 2 C- 4 2
W EI G H T 0. 1 0. 1 8 0. 2 2 0. 3 5
O R D E R N O. C- 2 0- 4 C- 2 0- 6 C- 2 0- 8 C- 2 0- 1 0 C- 2 0- 1 2 C- 2 0- 1 6 C- 2 5- 4 C- 2 5- 6 C- 2 5- 8 C- 2 5- 1 0 C- 2 5- 1 2 C- 2 5- 1 6 C- 2 5- 2 0 C- 3 2- 6 C- 3 2- 8 C- 3 2- 1 0 C- 3 2- 1 2 C- 3 2- 1 6 C- 3 2- 2 0 C- 3 2- 2 5 C- 4 2- 6 C- 4 2- 8 C- 4 2- 1 0 C- 4 2- 1 2 C- 4 2- 1 6 C- 4 2- 2 0 C- 4 2- 2 5 C- 4 2- 3 2
I N C H
C O L L E T S SI Z E d D1 I N SI D E DI A M E T E R O. D. 1 /4 , 5 /1 6 , 3 /8 , 1 /2 , 5 /8 , 3 /1 6 20 1 5 3 1 5 3 /4 , /1 6 , /8 , /2 , /8 , /4 25 1 /4 , 5 /1 6 , 3 /8 , 1 /2 , 5 /8 , 3 /4 , 1 32 1 /4 , 5 /1 6 , 3 /8 , 1 /2 , 5 /8 , 3 /4 , 1 , 11 /4 4 2
M E T RI C
C O DE N O. 3 2 0 2- 1 8 0 3 2 0 2- 1 8 1 3 2 0 2- 1 8 2 3 2 0 2- 1 8 3 C O DE N O. 3 2 0 2- 1 8 4 3 2 0 2- 1 8 5 3 2 0 2- 1 8 6 3 2 0 2- 1 8 7
D2
L
P C S/ S E T
25 31 37 48
52 60 73 80
6 7 7 8
d 3/ 1 6 1/ 4 5/ 1 6 3/ 8 1/ 2 5/ 8 1/ 4 5/ 1 6 3/ 8 1/ 2 5/ 8 3/ 4 3/ 1 6 1/ 4 5/ 1 6 3/ 8 1/ 2 5/ 8 3/ 4 7/ 8 1 1/ 4 5/ 1 6 3/ 8 1/ 2 5/ 8 3/ 4 7/ 8 1 1 1/ 4
C O D E N O. 3 2 0 2- 2 1 0 3 2 0 2- 2 1 1 3 2 0 2- 2 1 2 3 2 0 2- 2 1 3 3 2 0 2- 2 1 4 3 2 0 2- 2 1 5 3 2 0 2- 2 4 1 3 2 0 2- 2 4 2 3 2 0 2- 2 4 3 3 2 0 2- 2 4 4 3 2 0 2- 2 4 5 3 2 0 2- 2 4 6 3 2 0 2- 2 6 0 3 2 0 2- 2 6 1 3 2 0 2- 2 6 2 3 2 0 2- 2 6 3 3 2 0 2- 2 6 4 3 2 0 2- 2 6 5 3 2 0 2- 2 6 6 3 2 0 2- 2 6 7 3 2 0 2- 2 6 8 3 2 0 2- 2 9 0 3 2 0 2- 2 9 1 3 2 0 2- 2 9 2 3 2 0 2- 2 9 3 3 2 0 2- 2 9 4 3 2 0 2- 2 9 5 3 2 0 2- 2 9 6 3 2 0 2- 2 9 7 3 2 0 2- 2 9 8
I N C H
d 4 6 8 10 12 16 4 6 8 10 12 16 20 6 8 10 12 16 20 25 6 8 10 12 16 20 25 32
C O D E N O. 3 2 0 2- 2 0 0 3 2 0 2- 2 0 1 3 2 0 2- 2 0 2 3 2 0 2- 2 0 3 3 2 0 2- 2 0 4 3 2 0 2- 2 0 5 3 2 0 2- 2 2 9 3 2 0 2- 2 3 0 3 2 0 2- 2 3 1 3 2 0 2- 2 3 2 3 2 0 2- 2 3 3 3 2 0 2- 2 3 4 3 2 0 2- 2 3 5 3 2 0 2- 2 5 0 3 2 0 2- 2 5 1 3 2 0 2- 2 5 2 3 2 0 2- 2 5 3 3 2 0 2- 2 5 4 3 2 0 2- 2 5 5 3 2 0 2- 2 5 6 3 2 0 2- 2 8 0 3 2 0 2- 2 8 1 3 2 0 2- 2 8 2 3 2 0 2- 2 8 3 3 2 0 2- 2 8 4 3 2 0 2- 2 8 5 3 2 0 2- 2 8 6 3 2 0 2- 2 8 7
O R D E R N O. C- 2 0- 3/ 1 6 C- 2 0- 1/ 4 C- 2 0- 5/ 1 6 C- 2 0- 3/ 8 C- 2 0- 1/ 2 C- 2 0- 5/ 8 C- 2 5- 1/ 4 C- 2 5- 5/ 1 6 ” C- 2 5- 3/ 8 C- 2 5- 1/ 2 C- 2 5- 5/ 8 C- 2 5- 3/ 4 C- 3 2- 3/ 1 6 C- 3 2- 1/ 4 C- 3 2- 5/ 1 6 C- 3 2- 3/ 8 C- 3 2- 1/ 2 C- 3 2- 5/ 8 C- 3 2- 3/ 4 C- 3 2- 7/ 8 C- 3 2- 1 C- 4 2- 1/ 4 C- 4 2- 5/ 1 6 C- 4 2- 3/ 8 C- 4 2- 1/ 2 C- 4 2- 5/ 8 C- 4 2- 3/ 4 C- 4 2- 7/ 8 C- 4 2- 1 C- 4 2- 1 1/ 4
C- 2 0, 2 5, 3 2, 4 2 Wr e n c h s
C37
T O O LI N G S Y S T E M
O R D E R N O.
L
D
C- 2 0 W C- 2 5 W C- 3 2 W C- 4 2 W
227 227 260 270
52 58 75 87
W EI G H T K GS 0. 2 2 0. 2 2 0. 3 3 0. 3 5
C OLLETS
C O D E N O.
C- 2 0 C- 2 5 C- 3 2 C42
3 2 0 2- 3 1 1 3 2 0 2- 3 1 2 3 2 0 2- 3 1 3 3 2 0 2- 3 1 4
Q ui c k- C h a n g e T o oli n g S y st e m
MI L LI N G- Q UI C K C H A N G E H O L D E R
O Z DI N 6 3 8 8
Q UI C K- C H A N G E T O O LI N G
OZ
Q UI C K- C H A N G C H U C K T A P E R A C C O R DI N G T O DI N 2 0 8 0 S P E CI FI C A TI O N. E A S Y A N D F A S T C H A N GI N G MI L LI N G C H U C K( H O L D E R). C H U C K T A P E R P R E CI S E L Y M A C HI N E D S UI T A B L E F O R H E A V Y C U T TI N G. A L L T H E H O L D E R SI Z E A R E S P E CI A L F O R T HI S Q UI C K- C H A N G E T O O LI N G S Y S T E M O N L Y.
O R D E R N O.
TAPE R
S O C KET
A
C
W EI G H T K G S
C O D E N O.
V D- 1 0 3
NT40
NT40
181
89
2. 4
3 2 0 1- 0 0 3
V D- 1 0 5
NT50
NT40
175
89
3. 8
3 2 0 1- 0 0 4
MI L LI N G- Q UI C K C H A N G E S Y S T E M KI T
O R D E R N O.
TAPE R
S O C KET
V D- 1 1 3
NT40
NT40
V D- 1 1 5
NT50
NT40
F ULL SET 1. MI L LI N G Q UI C K- C H A N G E H O L D E R 2. D RI L L C H U C K H O L D E R 3. M O R S E T A P E R H O L D E R 4. F A C E MI L L H O L D E R 5. DI N 6 3 8 8 # 2 5 C O L L E T C H U C K H O L D E R 6. DI N 6 3 8 8 # 2 5 1 5 P C S C O L L E T 7. W R E N C H 8. W O O D E N B O X
W EI G H T K G S
C O D E N O.
14
3 2 0 1- 0 0 8
16
3 2 0 1- 0 0 9
T O O LI N G S Y S T E M
C38
T G 1 0 0 C oll et S y st e m
DI N 4 6 4 E
P R E CI SI O N T G 1 0 C O L L E T WI T HI N 2 0 MI C R O N
T G
T G- 1 0 0
C39
R A N G E SI Z E: 1/ 8 - 6 3/ 6 4
O R D E R N O.
I N C H
C O D E N O.
O R D E R N O.
I N C H
C O D E N O.
T G 1 0- 0 1
1/ 8
3 2 0 4- 0 0 1
T G 1 0- 3 0
9/ 6 4
3 2 0 4- 0 3 0
T G 1 0- 0 2
3/ 6
3 2 0 4- 0 0 2
T G 1 0- 3 1
1 1/ 6 4
3 2 0 4- 0 3 1
T G 1 0- 0 3
1/ 4
3 2 0 4- 0 0 3
T G 1 0- 3 2
1 3/ 6 4
3 2 0 4- 0 3 2
T G 1 0- 0 4
5/ 1 6
3 2 0 4- 0 0 4
T G 1 0- 3 3
1 5/ 6 4
3 2 0 4- 0 3 3
T G 1 0- 0 5
3/ 8
3 2 0 4- 0 0 5
T G 1 0- 3 4
1 7/ 6 4
3 2 0 4- 0 3 4
T G 1 0- 0 6
7/ 1 6
3 2 0 4- 0 0 6
T G 1 0- 3 5
1 9/ 6 4
3 2 0 4- 0 3 5
T G 1 0- 0 7
1/ 2
3 2 0 4- 0 0 7
T G 1 0- 3 6
2 1/ 6 4
3 2 0 4- 0 3 6
T G 1 0- 0 8
9/ 1 6
3 2 0 4- 0 0 8
T G 1 0- 3 7
2 3/ 6 4
3 2 0 4- 0 3 7
T G 1 0- 0 9
5/ 8
3 2 0 4- 0 0 9
T G 1 0- 3 8
2 5/ 6 4
3 2 0 4- 0 3 8
T G 1 0- 1 0
1 1/ 1 6
3 2 0 4- 0 1 0
T G 1 0- 3 9
2 7/ 6 4
3 2 0 4- 0 3 9
T G 1 0- 1 1
3/ 4
3 2 0 4- 0 1 1
T G 1 0- 4 0
2 9/ 6 4
3 2 0 4- 0 4 0
T G 1 0- 1 2
1 3/ 1 6
3 2 0 4- 0 1 2
T G 1 0- 4 1
3 1/ 6 4
3 2 0 4- 0 4 1
T G 1 0- 1 3
7/ 8
3 2 0 4- 0 1 3
T G 1 0- 4 2
3 3/ 6 4
3 2 0 4- 0 4 2
T G 1 0- 1 4
1 5/ 1 6
3 2 0 4- 0 1 4
T G 1 0- 4 3
3 5/ 6 4
3 2 0 4- 0 4 3
T G 1 0- 1 5
1
3 2 0 4- 0 1 5
T G 1 0- 4 4
3 7/ 6 4
3 2 0 4- 0 4 4
T G 1 0- 1 6
5/ 3 2
3 2 0 4- 0 1 6
T G 1 0- 4 5
3 9/ 6 4
3 2 0 4- 0 4 5
T G 1 0- 1 7
7/ 3 2
3 2 0 4- 0 1 7
T G 1 0- 4 6
4 1/ 6 4
3 2 0 4- 0 4 6
T G 1 0- 1 8
9/ 3 2
3 2 0 4- 0 1 8
T G 1 0- 4 7
4 3/ 6 4
3 2 0 4- 0 4 7
T G 1 0- 1 9
1 1/ 3 2
3 2 0 4- 0 1 9
T G 1 0- 4 8
4 5/ 6 4
3 2 0 4- 0 4 8
T G 1 0- 2 0
1 3/ 3 2
3 2 0 4- 0 2 0
T G 1 0- 4 9
4 7/ 6 4
3 2 0 4- 0 4 9
T G 1 0- 2 1
1 5/ 3 2
3 2 0 4- 0 2 1
T G 1 0- 5 0
4 9/ 6 4
3 2 0 4- 0 5 0
T G 1 0- 2 2
1 7/ 3 2
3 2 0 4- 0 2 2
T G 1 0- 5 1
5 1/ 6 4
3 2 0 4- 0 5 1
T G 1 0- 2 3
1 9/ 3 2
3 2 0 4- 0 2 3
T G 1 0- 5 2
5 3/ 6 4
3 2 0 4- 0 5 2
T G 1 0- 2 4
2 1/ 3 2
3 2 0 4- 0 2 4
T G 1 0- 5 3
5 5/ 6 4
3 2 0 4- 0 5 3
T G 1 0- 2 5
2 3/ 3 2
3 2 0 4- 0 2 5
T G 1 0- 5 4
5 7/ 6 4
3 2 0 4- 0 5 4
T G 1 0- 2 6
2 5/ 3 2
3 2 0 4- 0 2 6
T G 1 0- 5 5
5 9/ 6 4
3 2 0 4- 0 5 5
T G 1 0- 2 7
2 7/ 3 2
3 2 0 4- 0 2 7
T G 1 0- 5 6
6 1/ 6 4
3 2 0 4- 0 5 6
T G 1 0- 2 8
2 9/ 3 2
3 2 0 4- 0 2 8
T G 1 0- 5 7
6 3/ 6 4
3 2 0 4- 0 5 7
T G 1 0- 2 9
3 1/ 3 2
3 2 0 4- 0 2 9
T O O LI N G S Y S T E M
5 C C oll et S y st e m 5 C C oll et
L: 8 7 : 1 0°
D: 3 7. 5 G: 3 1. 7 5 W EI G H T: 0. 2 1 K G S
O R D E R N O.
A c c u r a c y: ± 0. 0 2 m m H a r d n e s s: H R C 4 7º
Q TY
5 C-
1 P C
5 C-
1 P C
R A N G E SI Z E Ø 3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 4, 1 5, 1 6, 1 7, 1 8, 1 9, 2 0, 2 1, 2 2, 2 3, 2 4, 2 5 M M Ø 1/ 8 , 3/ 1 6 , 1/ 4 , 5/ 1 6 , 3/ 8 , 7/ 1 6 , 1/ 2 , 9/ 1 6 , 5/ 8 , 1 1/ 1 6 , 3/ 4 , 1 3/ 1 6 , 7/ 8 , 1 5/ 1 6 , 1
C O M P L E T E S E T A V AI L A B L E SI Z E O R DE R N O.
Q TY
R A N G E SI Z E
P A C KI N G
V E- 1 0 2
7P CS
6, 8, 1 0, 1 2, 1 6, 2 0, 2 5
V E- 1 0 2I
7P CS
1/ 4 , 5/ 1 6 , 3/ 8 , 1/ 2 , 5/ 8 , 3/ 4 , 1
CA RT O N
W EI G H T K GS 1. 5
C O DE N O. 3 2 0 5- 1 0 0
CA RT O N
1. 5
3 2 0 5- 1 0 1
E ME R GE N CY TYPE S OFT C OLLET O R D E R N O.
M A T E RI A L k g s C O D E N O.
V E- 5 C S
ST E EL
V E- 5 C B
B RASS
V E- 5 C N
N YL O N
3 2 0 5- 2 0 1 0. 3 5
3 2 0 5- 2 0 2 3 2 0 5- 2 0 3
C A N B E M A C HI N E D F O R I N SI D E H O L E
R 8 C oll et S y st e m R 8 C oll et
G: 7/ 1 6 - 2 0 U N F O R D E R N O.
Q TY
R 8-
1 P C
R 8-
1 P C
: 8° 3 0
L: 1 0 1 D: 3 1. 7 5 W EI G H T: 0. 2 1 K G S
7/ 1 6 - 2 0 U N F
A c c u r a c y: ± 0. 0 2 m m H a r d n e s s: H R C 4 7º
R A N G E SI Z E Ø 3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 4, 1 5, 1 6, 1 7, 1 8, 1 9, 2 0 M M Ø 1/ 8 , 3/ 1 6 , 1/ 4 , 5/ 1 6 , 3/ 8 , 7/ 1 6 , 1/ 2 , 9/ 1 6 , 5/ 8 , 1 1/ 1 6 , 3/ 4
C O M P L E T E S E T A V AI L A B L E SI Z E O R DE R N O. V E- 1 1 0 V E- 1 1 4
Q TY
R A N G E SI Z E
6P CS 7P CS
6, 8, 1 0, 1 2, 1 6, 2 0 M M 6, 8, 1 0, 1 2, 1 4, 1 6, 2 0 M M
W EI G H T K GS 1. 5 1. 5
C O DE N O. 3 2 0 6- 1 0 0 3 2 0 6- 1 0 1
W EI G H T K GS 1. 1 1. 5 1. 5
C O DE N O. 3 2 0 6- 1 0 2 3 2 0 6- 1 0 3 3 2 0 6- 1 0 4
E ME R GE N CY TYPE S OFT C OLLET O R DE R Q TY R A N G E SI Z E N O. V E- 1 0 9 I 5 P C S 1/ 4 , 3/ 8 , 1/ 2 , 5/ 8 , 3/ 4 , V E- 1 1 0 I 6 P C S 1/ 4 , 5/ 1 6 , 3/ 8 , 1/ 2 , 5/ 8 , 3/ 4 V E- 1 1 4 I 7 P C S 3/ 1 6 , 1/ 4 , 5/ 1 6 , 3/ 8 , 1/ 2 , 5/ 8 , 3/ 4
m m
O R D E R N O. 5 C- 3 5 C- 4 5 C- 5 5 C- 6 5 C- 7 5 C- 8 5 C- 9 5 C- 1 0 5 C- 1 1 5 C- 1 2 5 C- 1 3 5 C- 1 4 5 C- 1 5 5 C- 1 6 5 C- 1 7 5 C- 1 8 5 C- 1 9 5 C- 2 0 5 C- 2 1 5 C- 2 2 5 C- 2 3 5 C- 2 4 5 C- 2 5
Ø d 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25
C O D E N O. 3 2 0 5- 0 0 1 3 2 0 5- 0 0 2 3 2 0 5- 0 0 3 3 2 0 5- 0 0 4 3 2 0 5- 0 0 5 3 2 0 5- 0 0 6 3 2 0 5- 0 0 7 3 2 0 5- 0 0 8 3 2 0 5- 0 0 9 3 2 0 5- 0 1 0 3 2 0 5- 0 1 1 3 2 0 5- 0 1 2 3 2 0 5- 0 1 3 3 2 0 5- 0 1 4 3 2 0 5- 0 1 5 3 2 0 5- 0 1 6 3 2 0 5- 0 1 7 3 2 0 5- 0 1 8 3 2 0 5- 0 1 9 3 2 0 5- 0 2 0 3 2 0 5- 0 2 1 3 2 0 5- 0 2 2 3 2 0 5- 0 2 3
O R D E R N O. 5 C- 1/ 8 5 C- 3/ 1 6 5 C- 1/ 4 5 C- 5/ 1 6 5 C- 3/ 8 5 C- 7/ 1 6 5 C- 1/ 2 5 C- 9/ 1 6 5 C- 5/ 8 5 C- 1 1/ 1 6 5 C- 3/ 4 5 C- 1 3/ 1 6 5 C- 7/ 8 5 C- 1 5/ 1 6 5 C- 1
Ø d 1/ 8 3/ 1 6 1/ 4 5/ 1 6 3/ 8 7/ 1 6 1/ 2 9/ 1 6 5/ 8 1 1/ 1 6 3/ 4 1 3/ 1 6 7/ 8 1 5/ 1 6 1
C O D E N O. 3 2 0 5- 0 2 4 3 2 0 5- 0 2 5 3 2 0 5- 0 2 6 3 2 0 5- 0 2 7 3 2 0 5- 0 2 8 3 2 0 5- 0 2 9 3 2 0 5- 0 3 0 3 2 0 5- 0 3 1 3 2 0 5- 0 3 2 3 2 0 5- 0 3 3 3 2 0 5- 0 3 4 3 2 0 5- 0 3 5 3 2 0 5- 0 3 6 3 2 0 5- 0 3 7 3 2 0 5- 0 3 8
O R D E R N O. R 8- 3 R 8- 4 R 8- 5 R 8- 6 R 8- 7 R 8- 8 R 8- 9 R 8- 1 0 R 8- 1 1 R 8- 1 2 R 8- 1 3 R 8- 1 4 R 8- 1 5 R 8- 1 6 R 8- 1 7 R 8- 1 8 R 8- 1 9 R 8- 2 0
Ø d 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20
C O D E N O. 3 2 0 6- 0 0 1 3 2 0 6- 0 0 2 3 2 0 6- 0 0 3 3 2 0 6- 0 0 4 3 2 0 6- 0 0 5 3 2 0 6- 0 0 6 3 2 0 6- 0 0 7 3 2 0 6- 0 0 8 3 2 0 6- 0 0 9 3 2 0 6- 0 1 0 3 2 0 6- 0 1 1 3 2 0 6- 0 1 2 3 2 0 6- 0 1 3 3 2 0 6- 0 1 4 3 2 0 6- 0 1 5 3 2 0 6- 0 1 6 3 2 0 6- 0 1 7 3 2 0 6- 0 1 8
O R D E R N O. R 8- 1/ 8 R 8- 3/ 1 6 R 8- 1/ 4 R 8- 5/ 1 6 R 8- 3/ 8 R 8- 7/ 1 6 R 8- 1/ 2 R 8- 9/ 1 6 R 8- 5/ 8 R 8- 1 1/ 1 6 R 8- 3/ 4
Ø d 1/ 8 3/ 1 6 1/ 4 5/ 1 6 3/ 8 7/ 1 6 1/ 2 9/ 1 6 5/ 8 1 1/ 1 6 3/ 4
C O D E N O. 3 2 0 6- 0 1 9 3 2 0 6- 0 2 0 3 2 0 6- 0 2 1 3 2 0 6- 0 2 2 3 2 0 6- 0 2 3 3 2 0 6- 0 2 4 3 2 0 6- 0 2 5 3 2 0 6- 0 2 6 3 2 0 6- 0 2 7 3 2 0 6- 0 2 8 3 2 0 6- 0 2 9
inch
m m
T O O LI N G S Y S T E M
inch
C40
C OLLET SYSTE M
5 C R A N GE
U 2 C oll et S y st e m
N O. 1 U 2 C O L L E T R A N G E SI Z E 3 ~ 1 6 m m N O. 2 U 2 C O L L E T R A N G E SI Z E 1 8 ~ 2 5 m m
N O. 2
N O. 1
L: 1 2 0 D: 2 8 d: 2 0 G: 2. 0 P : 1 7° 3 0 W EI G H T: 0. 1 8 K G S O R D E R N O.
A c c u r a c y: ± 0. 0 2 m m H a r d n e s s: H R C 4 7º
Q’ T Y
R A N G E SI Z E
V E- U 2-
1 P C
N O. 1 Ø 1. 5, 2, 3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3, 1 4, 1 5, 1 6 N O. 2 Ø 1 8, 2 0, 2 5 M M
V E- U 2-
1 P C
Ø 1/ 8 , 3/ 1 6 , 1/ 4 , 5/ 1 6 , 3/ 8 , 1/ 2 , 5/ 8
O R D E R N O. V E- U 2- 1. 5 V E- U 2- 2 V E- U 2- 3 V E- U 2- 4 V E- U 2- 5 V E- U 2- 6 V E- U 2- 7 V E- U 2- 8 V E- U 2- 9
d 1. 5 2 3 4 5 6 7 8 9
C O D E N O. 3 2 0 7- 0 2 6 3 2 0 7- 0 2 7 3 2 0 7- 0 0 1 3 2 0 7- 0 0 2 3 2 0 7- 0 0 3 3 2 0 7- 0 0 4 3 2 0 7- 0 0 5 3 2 0 7- 0 0 6 3 2 0 7- 0 0 7
inch
m m
m m
O R D E R N O. V E- U 2- 1 0 V E- U 2- 1 1 V E- U 2- 1 2 V E- U 2- 1 3 V E- U 2- 1 4 V E- U 2- 1 5 V E- U 2- 1 6 V E- U 2- 1 8 V E- U 2- 2 0 V E- U 2- 2 5
d 10 11 12 13 14 15 16 18 20 25
C O D E N O. 3 2 0 7- 0 0 8 3 2 0 7- 0 0 9 3 2 0 7- 0 1 0 3 2 0 7- 0 1 1 3 2 0 7- 0 1 2 3 2 0 7- 0 1 3 3 2 0 7- 0 1 4 3 2 0 7- 0 1 5 3 2 0 7- 0 1 6 3 2 0 7- 0 1 7
O R D E R N O. V E- U 2- 1/ 8 V E- U 2- 3/ 1 6 V E- U 2- 1/ 4 V E- U 2- 5/ 1 6 V E- U 2- 3/ 8 V E- U 2- 1/ 2 V E- U 2- 5/ 8
d 1/ 8 3/ 1 6 1/ 4 5/ 1 6 3/ 8 1/ 2 5/ 8
C O D E N O. 3 2 0 7- 0 1 8 3 2 0 7- 0 1 9 3 2 0 7- 0 2 0 3 2 0 7- 0 2 1 3 2 0 7- 0 2 2 3 2 0 7- 0 2 3 3 2 0 7- 0 2 4
M T 3 C oll et S y st e m
D: 2 4. 1 L: 8 7 W EI G H T: 0. 1 8 K G S D R A W B A R SI Z E: G 1. M 1 2 X 1. 7 5 P
O R D E R N O.
Q TY
R A N G E SI Z E
D R A W B A R SI Z E
M T 3-
1 P C
Ø 4, 6, 8, 1 0, 1 2, 1 6, 2 0 M M
G1 m m
O R D E R N O. M T 3- 4 M T 3- 6 M T 3- 8 M T 3- 1 0 M T 3- 1 2 M T 3- 1 6 M T 3- 2 0
C41
T O O LI N G S Y S T E M
d 4 6 8 10 12 16 20
C O D E N O. 3 2 0 8- 1 0 0 3 2 0 8- 1 0 1 3 2 0 8- 1 0 2 3 2 0 8- 1 0 3 3 2 0 8- 1 0 4 3 2 0 8- 1 0 5 3 2 0 8- 1 0 6
Drill C h u c k s Ar b or O R DE R N O. V J- 1 2 0 V J- 1 2 1 V J- 1 2 2 V J- 1 2 3 V J- 1 2 4
O R DE R N O.
M T 3. 4. 5
V J- 1 2 6 V J- 1 2 6- 1 V J- 1 2 6- 3 V J- 1 3 0 V J- 1 3 0- 2 V J- 1 3 0- 4 V J- 1 3 7 V J- 1 3 1 V J- 1 3 1- 2 V J- 1 3 1- 4 V J- 1 3 4 V J- 1 3 4- 2 V J- 1 3 8 V J- 1 3 8- 1 V J- 1 3 8- 2 V J- 1 3 2 V J- 1 3 2- 1 V J- 1 3 2- 7 V J- 1 3 2- 4 V J- 1 3 2- 5 V J- 1 3 2- 6 V J- 1 3 2- 8 V J- 1 3 5 V J- 1 3 3 V J- 1 3 3- 1 V J- 1 3 3- 2 V J- 1 3 3- 3 V J- 1 3 3- 4 V J- 1 3 3- 5
W EI G H T ( k g) 0. 5 0. 5 0. 5 0. 5 0. 5
C O DE N O. 3 2 0 9- 0 0 0 3 2 0 9- 0 0 1 3 2 0 9- 0 0 2 3 2 0 9- 0 0 3 3 2 0 9- 0 0 4
TAPE R
J T N O.
C
H
R8
JT3 JT1 JT2 JT6 B16
2 0. 6 0 9. 7 5 4 1 3. 9 4 1 7. 1 7 1 5. 7 3 3
34 18 20 26 24
TAPE R
JT N O.
C
H
W EI G H T ( k g)
C O DE N O.
JT3 B16 B18 JT6 JT5 JT4 JT2 JT6 JT5 JT33 B16 B18 JT2 JT3 JT4 JT6 JT3 JT4 JT5 JT2 JT33 B18 B16 JT6 JT3 JT4 JT5 JT2 JT33
2 0. 6 1 5. 7 3 3 1 7. 7 8 1 7. 1 7 3 5. 8 9 2 8. 5 5 1 4. 2 1 7. 1 7 3 5. 8 9 1 5. 8 5 1 5. 7 3 3 1 7. 7 8 1 4. 2 0 2 0. 6 0 2 8. 5 5 1 7. 1 7 2 0. 6 0 2 8. 5 5 3 5. 8 9 1 4. 2 1 5. 8 5 1 7. 7 8 1 5. 7 3 3 1 7. 1 7 2 0. 6 0 2 8. 5 5 3 5. 8 9 1 4. 2 1 5. 8 5
34 29 37 28 50 45 25 26 50 28 24 37 25 34 45 26 34 45 50 25 28 37 29 26 35 46 51 26 29
0. 2 4 0. 2 0. 2 1 0. 2 2 0. 5 0. 4 0. 2 0. 4 0. 7 0. 3 0. 3 0. 4 0. 3 0. 3 5 0. 5 0. 7 0. 7 0. 8 5 1 0. 6 4 0. 6 5 0. 7 0. 7 1. 6 1. 6 1. 8 2 1. 6 1. 6
3 2 0 9- 0 0 6 3 2 0 9- 0 0 6 A 3 2 0 9- 0 0 6 B 3 2 0 9- 0 2 9 3 2 0 9- 0 2 9 A 3 2 0 9- 0 2 9 B 3 2 0 9- 0 5 6 3 2 0 9- 0 3 0 3 2 0 9- 0 3 0 A 3 2 0 9- 0 3 0 B 3 2 0 9- 0 3 3 3 2 0 9- 0 3 3 A 3 2 0 9- 0 3 4 A 3 2 0 9- 0 3 4 3 2 0 9- 0 3 5 3 2 0 9- 0 3 1 3 2 0 9- 0 3 1 A 3 2 0 9- 0 3 1 B 3 2 0 9- 0 3 1 C 3 2 0 9- 0 3 1 D 3 2 0 9- 0 3 1 E 3 2 0 9- 0 3 1 F 3 2 0 9- 0 3 6 3 2 0 9- 0 3 2 3 2 0 9- 0 3 2 A 3 2 0 9- 0 3 2 B 3 2 0 9- 0 3 2 C 3 2 0 9- 0 3 2 D 3 2 0 9- 0 3 2 E
J T N O.
C
H
JT1 JT0 JT2 JT3 B10 JT6 B12 B16 B18 JT6 JT6
9. 7 5 4 6. 3 5 1 4. 2 0 2 0. 6 0 1 0. 2 5 1 7. 1 7 1 2. 1 1 5. 7 3 3 1 7. 7 8 0 1 7. 1 7 1 7. 1 7
19 9 25 35 21 26 2 2. 5 29 32 26 26
W EI G H T ( k g) 0. 2 0. 2 0. 2 0. 2 0. 1 5 0. 2 0. 2 0. 2
C O DE N O. 3 2 0 9- 0 5 8 3 2 0 9- 0 5 8 A 3 2 0 9- 0 5 9 3 2 0 9- 0 5 9 A 3 2 0 9- 0 5 9 B 3 2 0 9- 0 6 0 3 2 0 9- 0 6 0 A 3 2 0 9- 0 6 0 B 3 2 0 9- 0 6 0 C 3 2 0 9- 0 6 1 3 2 0 9- 0 6 2
MT2
MT3
MT4
MT5
C OLLET SYSTE M
R8
C 2 0. 2 5. 3 2 O R DE R S H A N K N O. Ø D V J- 1 3 9 V J- 1 3 9- 1 V J- 1 4 0 V J- 1 4 0- 1 C20 V J- 1 4 0- 2 V J- 1 4 1 V J- 1 4 0- 3 V J- 1 4 0- 4 V J- 1 4 0- 5 C25 V J- 1 4 2 C32 V J- 1 4 3
0. 3 0. 5
T O O LI N G S Y S T E M
C42
M or s e T a p er Sl e e v e O R DE R N O. V Q- 1 0 1 V Q- 1 0 2 V Q- 1 0 3 V Q- 1 0 4 V Q- 1 0 5 V Q- 1 0 6 V Q- 1 0 7 V Q- 1 0 8 V Q- 1 0 9 V Q- 1 1 0 V Q- 1 0 0 V Q- 1 0 0- 1 V Q- 1 0 0- 2 V Q- 1 0 0- 3
I. D. x O. D.
D
d
L
M T2x M T3
2 3. 8 2 5
1 7. 7 8 0
11 2
M T2x M T4
3 1. 2 6 7
1 7. 7 8 0
124
M T2x M T5
4 4. 3 9 9
1 7. 7 8 0
156
M T3x M T4
3 1. 2 6 7
2 3. 8 2 5
140
M T3x M T5
4 4. 3 9 9
2 3. 8 2 5
156
M T3x M T6
6 3. 3 4 8
2 3. 8 2 5
218
M T4x M T5
4 4. 3 9 9
3 1. 2 6 7
171
M T4x M T6
6 3. 3 4 8
3 1. 2 6 7
218
M T5x M T6
6 3. 3 4 8
4 4. 3 9 9
218
M T1x M T3
2 3. 8 2 5
1 2. 0 6 5
100
M T1x M T2
1 7. 7 8 0
1 2. 0 6 5
89
M T1x M T4
3 1. 2 6 7
1 2. 0 6 5
124
M T1x M T5
4 4. 3 9 9
1 2. 0 6 5
156
M T2x M T6
I 2 W EI( kG g)H T 18 67 0. 2 6. 5 6 7 0. 5 6. 5 6 7 1. 4 4. 1 3 2 2. 5 8 4 0. 4 6. 5 8 4 1. 3 8 84 4 2 1. 5 1 0 7 1 8 107 3. 7 8 133 2. 9 6 55 0. 2 14 55 0. 2 2 6. 5 5 5 0. 8 9 7 55 1. 3 3 I1
C O DE N O. 3 2 1 0- 0 0 1 3 2 1 0- 0 0 2 3 2 1 0- 0 0 3 3 2 1 0- 0 0 4 3 2 1 0- 0 0 5 3 2 1 0- 0 0 6 3 2 1 0- 0 0 7 3 2 1 0- 0 0 8 3 2 1 0- 0 0 9 3 2 1 0- 0 1 0 3 2 1 0- 0 1 1 3 2 1 0- 0 1 2 3 2 1 0- 0 1 3 3 2 1 0- 0 1 4
M or s e T a p er E xt e n si o n S o c k et s M O R S E T A P E R E X T E N SI O N S O C K E T S F or a d a pti n g t o ol s wit h m or s e t a p er s h a n k s t o m a c hi n e h a vi n g s m all er m or s e t a p er s pi n dl e or f or a d a pti n g t o ol s wit h m or s e t a p er s h a n k s t o m a c hi n e h a vi n g t h e s a m e or l ar g er m or s e t a p er s pi n dl e. H ar d e n e d a n d gr o u n d t hr o u g h o ut.
O R DE R N O. V Q- 1 1 1- 3 V Q- 1 1 1- 1 V Q- 1 1 1- 2 V Q- 1 1 2 V Q- 1 1 2- 1 V Q- 1 1 2- 2 V Q- 1 1 2- 3 V Q- 1 1 3 V Q- 1 1 4 V Q- 1 1 5 V Q- 1 1 5- 1 V Q- 1 1 5- 2 V Q- 1 1 6 V Q- 1 1 7 V Q- 1 1 8 V Q- 1 1 9- 1 V Q- 1 1 9 V Q- 1 2 0
I. D. x O. D.
D
L
M T1x M T2 M T1x M T3 M T1x M T4 M T2x M T2 M T2x M T3 M T2x M T4 M T2x M T5 M T3x M T2 M T3x M T3 M T3x M T4 M T3x M T5 M T4x M T2 M T4x M T3 M T4x M T4 M T4x M T5 M T5x M T3 M T5x M T4 M T5x M T5
1 8. 2 2 0. 2 2 0. 2 2 4. 2 2 4. 2 2 4. 2 2 4. 2 3 2. 2 3 2. 2 3 2. 2 3 2. 2 4 5. 2 4 5. 2 4 5. 2 4 5. 2 6 3. 2 6 3. 2 6 3. 2
160 175 204 175 194 219 254 196 215 240 275 221 240 265 300 275 300 335
R 8 Wit h M or s e T a p er Sl e e v e
C43
T O O LI N G S Y S T E M
W EI G H T ( k g) 0. 2 8 0. 4 0. 3 5 0. 3 5 0. 5 0. 9 1. 8 5 0. 5 6 0. 7 1. 1 2. 1 1. 2 5 1. 4 1. 7 2. 7 3 3. 2 5 4. 2
C O DE N O. 3 2 1 0- 0 1 8 3 2 1 0- 0 1 9 3 2 1 0- 0 2 0 3 2 1 0- 0 2 1 3 2 1 0- 0 2 2 3 2 1 0- 0 2 2 A 3 2 1 0- 0 2 2 B 3 2 1 0- 0 2 3 3 2 1 0- 0 2 4 3 2 1 0- 0 2 5 3 2 1 0- 0 2 5 A 3 2 1 0- 0 2 6 A 3 2 1 0- 0 2 6 3 2 1 0- 0 2 7 3 2 1 0- 0 2 8 3 2 1 0- 0 2 9 A 3 2 1 0- 0 2 9 3 2 1 0- 0 3 0
O R DE R N O.
S H A N K
SI Z E
MT N O.
W EI G H T ( k g)
C O DE N O.
V Q- 1 2 1
R8
R 8- M T 1
MT1
0. 3 6
3 2 1 1- 0 0 3
V Q- 1 2 2
R8
R 8- M T 2
MT2
0. 4
3 2 1 1- 0 0 1
V Q- 1 2 3
R8
R 8- M T 3
MT3
0. 5
3 2 1 1- 0 0 2
F a c e Mill Ar b or
N T 3 0, 4 0, 5 0, R 8, M T 3, 4
DI N 2 0 8 0/I S O S H A N K
M A T E RI A L: S C M- 2 1 H A R D N E S S: H R C 5 0°- 5 5° F A C E MI L L A R B O R
S q u ar e n e s s of m o u nti n g s urf a c e: L e s s t h a n 0. 0 0 0 2 ( 0. 0 0 5 m m) ( 0. 0 0 5 m m)
I N C H T H REA D
I N C H
F M A TYPE D 2 5. 4
H 20
W 9. 5 7
K 5
M O U N TI N G SI Z E C L 65 20
0. 7
3 2 1 2- 0 0 1
3 1. 7 5
23
1 2. 7 5
7
73
20
1
3 2 1 2- 0 0 2
V F- 1 0 3
3 8. 1
22
1 5. 9 0
9
82
20
1. 1
3 2 1 2- 0 0 3
V F- 1 0 4
2 5. 4
20
9. 5 7
5
65
20
1. 2
3 2 1 2- 0 0 4
3 1. 7 5
22
1 2. 7 5
7
73
20
1. 5
3 2 1 2- 0 0 5
V F- 1 0 6
3 8. 1
23
1 5. 9 0
9
82
20
1. 8
3 2 1 2- 0 0 6
V F- 1 0 9
2 5. 4
20
9. 5 7
5
65
20
3. 2
3 2 1 2- 0 0 9
3 1. 7 5
22
1 2. 7 5
7
73
20
3. 3
3 2 1 2- 0 1 0
3 8. 1
23
1 5. 9 0
9
82
20
3. 6
3 2 1 2- 0 1 1
O R DE R TAPE R N O.
V F- 1 0 1
N T 4 0 WI T H MA H O GAP
V F- 1 0 2
V F- 1 0 5
V F- 1 1 0 V F- 1 1 1
NT30
NT40
NT50
W EI G H T ( k g)
C O DE N O.
V F- 1 1 2
5 0. 8
24
1 9. 0 5
10
95
20
4
3 2 1 2- 0 1 2
V F- 1 1 4
2 5. 4
20
9. 5 7
5
40
20
0. 9
3 2 1 2- 0 1 4
V F- 1 1 5
R8
3 1. 7 5
22
1 2. 7 5
7
53
20
1. 2
3 2 1 2- 0 1 5
V F- 1 1 6
M T- 3
2 5. 4
20
9. 5 7
5
40
20
0. 7
3 2 1 2- 0 1 6
V F- 1 1 7
M T- 4
2 5. 4
20
9. 5 7
5
40
20
1
3 2 1 2- 0 1 7
W EI G H T ( k g)
C O DE N O.
M E T RI C
F M B TYPE
M M T H REA D
D 22
H 18
W 9. 5 7
K 5
M O U N TI N G SI Z E C L 40 20
0. 7
3 2 1 2- 1 0 0
27
20
1 2. 7 5
7
53
20
0. 8
3 2 1 2- 1 0 1
V F- 1 2 2
32
23
1 5. 9 0
7
63
20
1. 1
3 2 1 2- 1 0 2
V F- 1 2 3
22
18
9. 5 7
5
40
20
1. 2
3 2 1 2- 1 0 3
V F- 1 2 3- 1
16
17
1 6. 4
40
20
1. 1 7
3 2 1 2- 1 0 3 A
27
20
1 2. 7 5
7
53
20
1. 3
3 2 1 2- 1 0 4
32
23
1 5. 9 0
7
63
20
1. 4
3 2 1 2- 1 0 5
V F- 1 2 6
40
26
1 9. 0 5
8
85
20
1. 9
3 2 1 2- 1 0 6
V F- 1 2 7
60
32
2 5. 4 0
5
128
24
4
3 2 1 2- 1 0 7
O R DE R N O.
TAPE R
V F- 1 2 0 V F- 1 2 1
NT30
S H A F T SI Z E
V F- 1 2 4 V F- 1 2 5
NT30
NT40
S H A F T SI Z E
V F- 1 2 8
22
18
9. 5 7
5
40
20
3. 1
3 2 1 2- 1 0 8
V F- 1 2 9
27
20
1 2. 7 5
7
53
20
3. 3
3 2 1 2- 1 0 9
32
23
1 5. 9 0
7
63
20
3. 5
3 2 1 2- 1 1 0
40
26
1 9. 0 5
8
85
20
3. 7
3 2 1 2- 1 1 1
V F- 1 3 0
NT50
V F- 1 3 1 V F- 1 3 2
60
32
2 5. 4 0
5
1 2 8. 5 7
24
5. 4
3 2 1 2- 1 1 2
V F- 1 3 4
22
18
9. 5 7
5
40
20
0. 9
3 2 1 2- 1 1 3
27
20
1 2. 7 5
7
53
20
1
3 2 1 2- 1 1 4
V F- 1 3 5
R8
V F- 1 3 6
M T- 3
27
20
9. 5 7
7
53
20
0. 7
3 2 1 2- 1 1 5
V F- 1 3 7
MT4
27
20
9. 5 7
7
53
20
1. 1
3 2 1 2- 1 1 6
T O O LI N G S Y S T E M
C44
M or s e T a p er A d a pt er
N T- 3 0, 4 0, 5 0, R 8, M T 3, 4
DI N 2 0 8 0/I S O S H A N K
SI D E C U T T E R A R B O R
M O RSE TAPE R A D APTE R WI T H S T R AI G H T S H A N K
STA N D A R D TYPE O R D E R N O.
TAPE R
VI- 1 0 2 VI- 1 0 3 VI- 1 0 4 VI- 1 0 5 VI- 1 0 6 VI- 1 0 7 VI- 1 0 8 VI- 1 0 9 VI- 1 1 0 VI- 1 1 1
NT30 NT40
NT50
TYPE
C
L
MT2 MT3 MT1 MT2 MT3 MT4 MT2 MT3 MT4 MT5
32 35 25 32 40 50 32 40 50 65
50 65 30 30 70 90 30 30 45 105
O R D E R N O. R 8- S C A 1
C O D E N O. 3 2 1 1- 0 8 0
N T 3 0- S C A 1
3 2 1 1- 0 8 1
S T 4 0- S C A 1
3 2 1 1- 0 8 2
W EI G H T ( k g s) 0. 6 0. 7 0. 9 1 1. 2 1. 5 2. 8 2. 7 3. 2 3. 7
C O D E N O. 3 2 1 1- 0 3 1 3 2 1 1- 0 3 2 3 2 1 1- 0 3 3 3 2 1 1- 0 3 4 3 2 1 1- 0 3 5 3 2 1 1- 0 3 6 3 2 1 1- 0 3 7 3 2 1 1- 0 3 8 3 2 1 1- 0 3 9 3 2 1 1- 0 4 0
P L E A S E N O TI F Y T H E D R A W B A R T H R E A D SI Z E I S M M SI Z E O R I N C H SI Z E W H E N O R D E RI N G.
STA N D A R D TYPE O R DE R N O. VI- 1 3 1 VI- 1 3 2 VI- 1 3 3 VI- 1 3 4 VI- 1 3 5 VI- 1 3 6 VI- 1 3 7 VI- 1 3 8 VI- 1 3 8- 4
TAPE R C20 C25
C32
SI Z E
D
MT N O
C
L
C 2 0- M T 1 C 2 0- M T 2 C 2 5- M T 1 C 2 5- M T 2 C 2 5- M T 3 C 3 2- M T 1 C 3 2- M T 2 C 3 2- M T 3 C 3 2- M T 4
20 20 25 25 25 32 32 32 32
MT1 MT2 MT1 MT2 MT3 MT1 MT2 MT3 MT4
27 27 33 33 33 37 37 37 37
60 70 60 70 90 60 70 90 11 2
W EI G H T ( k g) 0. 2 0. 2 0. 3 0. 2 0. 2 0. 3 6 0. 3 7 0. 3 5 0. 3
C O DE N O. 3 2 1 1- 0 6 0 3 2 1 1- 0 6 1 3 2 1 1- 0 6 2 3 2 1 1- 0 6 3 3 2 1 1- 0 6 4 3 2 1 1- 0 6 5 3 2 1 1- 0 6 6 3 2 1 1- 0 6 7 3 2 1 1- 0 6 8
Si d e C utt er Ar b or V R A- N T 4 0
V R A- R 8
T H REA D
INCH
C45
M E T RI C
O R D E R N O.
T H RE A D
C O D E N O.
O R D E R N O.
T H RE A D
C O D E N O.
R 8- S C A 1 ”
7/ 1 6- 2 0 U N F
3 2 1 1- 0 8 0
R 8- S C B 2 2
7/ 1 6- 2 0 U N F
3 2 1 1- 0 8 6
N T 3 0- S C A 1 ”
1/ 2- 1 2 N C
3 2 1 1- 0 8 1
N T 3 0- S C B 2 7
M 1 2 x 1. 7 5 P
3 2 1 1- 0 8 7
N T 4 0- S C A 1 ”
5/ 8- 1 1 N C
3 2 1 1- 0 8 2
N T 4 0- S C B 2 7
M 1 6 x 2. 0 P
3 2 1 1- 0 8 8
T O O LI N G S Y S T E M
J a c o b s T a p er Drill C h u c k Ar b or
N T 3 0, 4 0, 5 0- J T & B
DI N 2 0 8 0/I S O S H A N K
TAPE R
JT N O
C
H
V J- 1 0 3 V J- 1 0 6 V J- 1 0 9 V J- 1 1 1 V J- 1 1 2
NT30
JT6
1 7. 1 7
26
NT40
JT6
1 7. 1 7
26
NT50
JT6
1 7. 1 7
26
NT30
B16
1 5. 7 3 3
24
NT40
B16
1 5. 7 3 3
24
W EI G H T ( k g s) 0. 6 1 3. 2 0. 5 1
C O D E N O. 3 2 0 9- 0 9 2
M O RSE TAPE R A D APTE R
O R D E R N O.
3 2 0 9- 0 9 5 3 2 0 9- 0 9 8 3 2 0 9- 0 9 9 3 2 0 9- 1 0 0
P L E A S E N O TI F Y T H E D R A W B A R T H R E A D SI Z E I S M M SI Z E O R I N C H SI Z E W H E N O R D E RI N G.
H ori z o nt al Milli n g Ar b or Wit h K e y W a y Wi d e 5/ 1 6 ”
O R D E R N O.
TAPE R
Ø D
Ø C
G
L
L1
W EI G H T ( k g)
C O D E N O.
V L- 1 1 0
NT40 M 1 6 x 2. 0 P
32
46
M30 x P2
600
490
7. 5
3 2 0 9- 1 3 0
T a n g F or M or s e T a p er S h a n k
S U R F A C E T R E A T M E N T: B L A C K E NI N G
H R C 4 5º
T a n g f or dr a w b ar t hr e a d t y p e t o t a n g t y p e
O R D E R N O.
M or s e
D
L
L1
L2
T
t1
W EI G H T
C O D E N O.
V M T S- 2
2
12
30
7
4
M 1 0 X 1. 5
6
0. 0 2
3 2 0 9- 2 0 1
V M T S- 3
3
17
40
12
4
M 1 2 X 1. 7 5
7. 5
0. 0 4
3 2 0 9- 2 0 2
V M T S- 4
4
24
46
13
5
M16 X2
1 1. 5
0. 0 9
3 2 0 9- 2 0 3
V M T S- 5
5
34
47
14
5
M24 X3
1 5. 5
0. 1 8
3 0 2 9- 2 0 4
T O O LI N G S Y S T E M
C46
N C Ri g ht A n gl e H e a d
Hi g h Pr e ci si o n
Mi ni m u m i nt erf er e n c e O R D E R N O.
A
B
C
Ø D
B T 4 0- R A E R 3 2- 1 8 5 B T 5 0- R A E R 3 2- 1 9 5 S K 4 0- R A E R 3 2- 1 7 6
E
F
Ø G
H
11 3 7 8. 2
6 3. 8
44
2- 2 0
S K 5 0- R A E R 3 2- 1 7 3
Ot h er a n gl e h e a d
11 3 11 3
VE RTEX A N GLE HE A D M O RE S M ALLE R I nt erf er e n c e si z e c o ntr a st Ot h er a n gl e h e a d M a x. cl a m pi n g di a m et er Ø 2 0 V E R T E X = A n gl e h e a d M a x. cl a m pi n g di a m et er Ø 2 0
11 3
A
B
C
Ø171
88
160
Ø156
88
140
V E R T E X a n gl e h e a d S M ALLE R
88
36
80
L
J
W EI G H T
185
65
9
C O DE N O. 3 2 1 4- 2 0 1
195
80
14
3 2 1 4- 2 0 2
176
65
8. 8
3 2 1 4- 2 0 3
173
80
13
3 2 1 4- 2 0 4
T ur n V erti c al M a c hi n e T o H ori z ot al Cl a m pi n g r a n g e Ø 2- 2 0 M a x. s p e e d : 3 0 0 0 P. P. M. Dri v e r ati o 1: 1 F or Li g ht C utti n g-f a ci n g, Drilli n g, T a p pi n g & I nt er n al S urf a c e M a c hi ni n g S uit a bl e F or A T C U s e St a n d ar d B T S h a n k & E R 3 2 C oll et s B uilt I nt er n al C oll et C h u c k S y st e m A s s ur e T h e Hi g h A c c ur a c y Hi g h Pr e ci si o n & Ri gi d- M a d e B o d y Fr e e A dj u st m e nt O F T h e Dri vi n g K e y & L o c ati o n PI N F or S p e ci al A n gl e C utti n g ( N C U ni v er s al A n g ul ar H e a d ) C o m p a ct D e si g n : L o w I n et erf er e n c e Wit h S p e ci al Wr e n c h C a uti o n s : C h e c k Wit h V E R T E X & M a c hi n e T o ol M a n uf a ct ur er Fir st F or T h e M a c hi n e M o u nti n g
T h e m a c hi n e t o ol’ s s pi n dl e a n d a n gl e h e a d s h o ul d R ot at e i n o p p o sit e dir e cti o n, w h e n u s e, pl e a s e m a k e s ur e m a c hi n e t o ol’ s s pi n dl e i s R ot ati n g i n R e v er s e dir e cti o n.
C47
T O O LI N G S Y S T E M
A N G UL A R HE A D
N C U ni v er s al A n g ul ar H e a d
J NEED T O CHECK
Cl a m pi n g R a n c e ø 2 - ø 1 6 M a x. s p e e d : 3 0 0 0 P. P. M. Dri v e r ati o 1: 1 O R D E R N O.
A
B
C
Ø D
E
F
Ø G
B T 4 0- U A E R 2 5- 1 8 2 B T 5 0- U A E R 2 5- 2 0 0 S K 4 0- U A E R 2 5- 1 7 3
138
80
65
S K 5 0- U A E R 2 5- 1 7 8
F or Li g ht C utti n g-f a ci n g, Drilli n g, T a p pi n g & I nt er n al S urf a c e M a c hi ni n g S uit a bl e F or A T C U s e St a n d ar d B T S h a n k & E R 3 2 C oll et s B uilt I nt er n al C oll et C h u c k S y st e m A s s ur e T h e Hi g h A c c ur a c y N o N e e d T o Hir e S p e ci al E n gi n e er s E a s y T o A c hi e v e Hi g h Pr e ci si o n T ur n V erti c al M a c hi n e T o H ori z o nt al
2- 1 6
29
42
L
J
W EI G H T
C O DE N O.
182
65
9. 2
3 2 1 4- 2 2 1
200
80
1 3. 6
3 2 1 4- 2 2 2
173
65
9
3 2 1 4- 2 2 3
178
80
1 2. 6
3 2 1 4- 2 2 4
Hi g h Pr e ci si o n & Ri gi d- M a d e B o d y Fr e e A dj u st m e nt Of T h e Dri vi n g K e y & L o c ati o n PI N F or S p e ci al A n gl e C utti n g ( N C U ni v er s al A n g ul ar H e a d ) C o m p a ct D e si g n : L o w I n et erf er e n c e Wit h S p e ci al Wr e n c h C a uti o n s : J C h e c k Wit h V E R T E X & M a c hi n e T o ol M a n uf a ct ur er Fir st F or T h e M a c hi n e
T h e m a c hi n e t o ol’ s s pi n dl e a n d a n gl e h e a d s h o ul d R ot at e i n o p p o sit e dir e cti o n, w h e n u s e, pl e a s e m a k e s ur e m a c hi n e t o ol’ s s pi n dl e i s R ot ati n g i n R e v er s e dir e cti o n.
P att er n t a p er m a c hi ni n g
O bli q u e s urf a c e m a c hi ni n g
T O O LI N G S Y S T E M
C48
Oli- F e e d H ol d er / Sl o
C o ol a nt h ol e h ol d er f or str ai g ht s h a n k B T 4 0, B T 5 0 Di m e n si o n
( N ot e) H & X di m e n si o n s diff er d e p e n di n g o n m a c hi n e s e m pl o y e d.
P T 1/ 4
P O SI TI O NI N G B L O C K I n u si n g, OI L- F E E D h ol d er, p o siti o ni n g bl o c kill u str at e d h er e i s n e c e s s ar y. T h e p o siti o ni n g bl o c k c a n b e m o u nt e d t o t h e s pi n dl e g ui d e b ut it s h all b e m o u nt e d s o a s n ot t o i nt erf er e wit h A T C ar m, et c. of m a c hi n e. it i s n e c e s s ar y t o c o n s ult t h e m a c hi n e m a n uf a ct ur er a b o ut t h e pr o p er m o uti n g.
U nit: m m
O R D E R N O.
d
L
B
C
D
L0
L1
H
H1
W EI G H T( k g s)
C O D E N O.
B T 4 0 S L O 3 2- 1 6 5
32
165
65
53
90
52
60
15
15
4K GS
3 2 1 4- 0 0 1
B T 5 0 S L O 3 2- 1 6 5
32
165
80
54
100
42
60
15
15
7. 1 K G S
3 2 1 4- 0 0 3
B T 5 0 S L O 4 0- 1 7 0
40
170
80
64
100
52
70
19
18
7. 8 K G S
3 2 1 4- 0 0 4
D3
L1
L2
42
63
6
50
63
6
R e d u ci n g sl e e v e f or oil f e e d h ol d er.
O R D E R N O.
O C 3 2- 2 0 O C 3 2- 2 5 O C 4 0- 2 5 O C 4 0- 3 2
D1
D2 20
32
25 25
40
32
H
W EI G H T( k g)
48
0. 4
3 2 1 4- 1 0 3
54
0. 3
3 2 1 4- 1 0 4
54
0. 6
3 2 1 4- 1 0 5
58
0. 5
3 2 1 4- 1 0 6
Si d el o c k E N D Mill H ol d er
DI N 2 0 8 0
IS O S H A N K
N T 3 0, 4 0, 5 0, R 8- S L A
O R D E R N O. T A P E R NT30 V N- 1 0 2 NT30 V N- 1 0 3 NT40 V N- 1 0 5 NT40 V N- 1 0 6 NT40 V N- 1 0 7 NT40 V N- 1 0 8 NT40 V N- 1 0 9 NT50 V N- 1 1 2 R8 V N- 1 1 8 R8 V N- 1 2 0 NT40 V N- 1 2 2 NT40 V N- 1 2 3 NT40 V N- 1 2 4
C49
T O O LI N G S Y S T E M
D 16 20 12 16 20 25 32 16 12 20 6 8 10
C 45 50 40 45 50 50 60 45 40 50
H 50 60 45 50 60 65 70 50 45 60
C O D E N O.
L 60 65 55 60 65 75 90 60 55 65
H1 22 25 20 22 25 25 30 22 20 25
H2 18 20 16 18 20 22 22 18 16 20
G M10 M12 M10 M10 M12 M12 M16 M10 M10 M12
W EI G H T( k g s) 0. 7 0. 8 1. 0 1. 2 1. 3 1. 5 1. 7 3. 1 0. 7
U nit: m m
C O D E N O. 3 2 1 3- 0 0 2 3 2 1 3- 0 0 3 3 2 1 3- 0 0 5 3 2 1 3- 0 0 6 3 2 1 3- 0 0 7 3 2 1 3- 0 0 8 3 2 1 3- 0 0 9 3 2 1 3- 0 1 2 3 2 1 3- 0 1 8 3 2 1 3- 0 2 0 3 2 1 3- 0 2 2 3 2 1 3- 0 2 3 3 2 1 3- 0 2 4
F a c e Mill Ar b or
B T 3 0, 4 0, 5 0
I N C H F M A TYPE O R D E R N O.
TAPE R
D1
L1
H
C1
W
C4
B T- 1 0 1
BT30
2 5. 4
45
22
45
9. 5
33
N. W. C O D E N O. ( K G) 1. 0 3 2 1 2- 2 0 1
2 5. 4
45
22
50
9. 5
33
1. 6
B T- 1 0 3 B T- 1 0 5
3 2 1 2- 2 0 3
2 5. 4
90
22
50
9. 5
33
1. 6
3 2 1 2- 2 0 5
3 1. 7 5
45
30
60
1 2. 7
40
1. 8
3 2 1 2- 2 0 6
B T- 1 0 8
3 1. 7 5
90
30
60
1 2. 7
40
2. 8
3 2 1 2- 2 0 8
B T- 1 0 9
3 8. 1
60
34
74
1 5. 9
50
2. 5
3 2 1 2- 2 0 9
B T- 1 1 1
2 5. 4
45
22
60
9. 5
33
4. 2
3 2 1 2- 2 1 1
B T- 1 1 2
2 5. 4
105
22
50
9. 5
33
4. 9
3 2 1 2- 2 1 2
B T- 1 1 3
2 5. 4
150
22
50
9. 5
33
6. 2
3 2 1 2- 2 1 3
B T- 1 1 4
3 1. 7 5
45
30
70
1 2. 7
40
4. 0
3 2 1 2- 2 1 4
B T- 1 0 6
B T- 1 1 5
BT40
3 1. 7 5
75
30
60
1 2. 7
40
4. 8
3 2 1 2- 2 1 5
3 1. 7 5
105
30
60
1 2. 7
40
5. 6
3 2 1 2- 2 1 6
B T- 1 1 7
3 8. 1
45
34
85
1 5. 9
50
4. 6
3 2 1 2- 2 1 7
B T- 1 1 8
3 8. 1
75
34
85
1 5. 9
50
5. 6
3 2 1 2- 2 1 8
B T- 1 1 9
5 0. 8
45
36
95
1 9. 0 5
65
4. 8
3 2 1 2- 2 1 9
B T- 1 2 1
4 7. 6 2 5
75
38
1 2 8. 5 7 2 5. 4
-
7. 9
3 2 1 2- 2 2 1
D1
L1
H
C1
W
C4
22
45
18
48
10
33
N. W. C O D E N O. ( K G) 2. 0 3 2 1 2- 2 6 7
27
45
20
60
12
33
2. 2
3 2 1 2- 2 6 8
B T- 1 5 2
22
45
18
48
10
50
1. 5
3 2 1 2- 2 6 9
B T- 1 5 3
22
90
18
48
10
33
2. 2
3 2 1 2- 2 7 0
27
45
20
60
12
33
1. 7
3 2 1 2- 2 7 1
27
90
20
60
12
33
2. 7
3 2 1 2- 2 7 2
32
45
22
62
14
50
1. 8
3 2 1 2- 2 7 3
B T- 1 1 6
BT50
M E T RI C F M B T Y P E O R D E R N O.
B T- 1 5 0 B T- 1 5 1
B T- 1 5 4 B T- 1 5 5
TAPE R BT30
BT40
B T- 1 5 6 B T- 1 5 7
40
60
26
85
16
50
2. 7
3 2 1 2- 2 7 4
B T- 1 5 8
22
45
18
60
10
33
4. 2
3 2 1 2- 2 7 5
B T- 1 5 9
22
75
18
60
10
33
4. 6
3 2 1 2- 2 7 6
B T- 1 6 0
27
45
20
70
12
33
4. 3
3 2 1 2- 2 7 7
B T- 1 6 1 B T- 1 6 2
BT50
F A C E MI L L A R B O E
B T- S H A N K M A S 4 0 3
27
75
20
60
12
33
4. 9
3 2 1 2- 2 7 8
27
105
20
60
12
33
5. 7
3 2 1 2- 2 7 9
B T- 1 6 3
32
75
22
75
14
50
5. 5
3 2 1 2- 2 8 0
B T- 1 6 4
32
105
22
80
14
33
6. 5
3 2 1 2- 2 8 1
B T- 1 6 5
32
150
22
80
14
33
8. 7
3 2 1 2- 2 8 2
B T- 1 6 6
40
75
26
85
16
50
6
3 2 1 2- 2 8 3
T O O LI N G S Y S T E M
C50
Drill C h u c k H ol d er / A P U
O R D E R N O. B T- 1 8 0 B T- 1 8 1 B T- 1 8 2 B T- 1 8 3 B T- 1 8 4 B T- 1 8 6 B T- 1 8 8
M or s e T a p er A d a pt or
B T 3 0, 4 0, 5 0- M T A, M T B
TAPE R B T 3 0- A P U 0 8 B T 3 0- A P U 1 3 B T 4 0- A P U 0 8 B T 4 0- A P U 1 3 B T 4 0- A P U 1 6 B T 5 0- A P U 1 3 B T 5 0- A P U 1 6
Ø D 37 50 37 50 58 50 58
P ull St u d F or M T A A d a pt or
P ull St u d F or M T B A d a pt or
K GS 1 1. 4 1. 5 2 2. 5 4. 7 4. 8
C O D E N O. 3 2 1 2- 3 0 1 3 2 1 2- 3 0 2 3 2 1 2- 3 0 3 3 2 1 2- 3 0 4 3 2 1 2- 3 0 5 3 2 1 2- 3 0 7 3 2 1 2- 3 0 9
M A S 4 0 3 B T- S H A N K
C1
M T A. N O
L1
M T A T Y P E ( S T A N D A R D T Y P E)
M or s e T a p er A d a pt or
O R D E R N O. B T- 2 0 4 B T- 2 0 7 B T- 2 0 9 B T- 2 1 2 B T- 2 1 3 B T- 2 1 5 B T- 2 1 6 B T- 2 1 8 B T- 2 1 9 B T- 2 2 0 B T- 2 2 3 B T- 2 2 4 B T- 2 2 6 B T- 2 2 7 B T- 2 2 9 B T- 2 3 0 B T- 2 3 1
TAPE R BT30
BT40
BT50
M T. N O. M T- 2 M T- 3 M T- 1 M T- 2 M T- 2 M T- 3 M T- 3 M T- 4 M T- 4 M T- 1 M T- 2 M T- 2 M T- 3 M T- 3 M T- 4 M T- 4 M T- 5
L1 60 80 50 50 120 75 135 95 165 45 50 135 65 150 75 180 105
M T B T Y P E ( S T A N D A R D T Y P E) O R D E R N O. B T- 2 3 6 B T- 2 3 7 B T- 2 3 8 B T- 2 3 9 B T- 2 4 1 B T- 2 4 2 B T- 2 4 3 B T- 2 4 4
C51
T O O LI N G S Y S T E M
TAPE R BT40
BT50
M T. N O. L MT B1 45 MT B2 45 MT B3 75 MT B4 75 MT B2 45 MT B3 60 MT B4 75 MT B5 120
C1 32 40 25 32 32 40 40 48 48 25 32 32 40 40 48 48 65
Ø D 25 32 40 48 32 40 48 65
W EI G H T( K G) 0. 6 1. 2 1. 1 1. 1 1. 4 1. 3 1. 7 1. 5 2. 3 3. 5 3. 5 4 3. 6 4. 4 3. 6 4. 9 4. 2
G M16 M10 M12 M16 M10 M12 M16 M20
W EI G H T( K G) 1 1 1. 2 1. 3 3. 6 3. 7 3. 7 5. 2
C O D E N O. 3 2 1 1- 0 9 1 3 2 1 1- 0 9 2 3 2 1 1- 0 9 4 3 2 1 1- 0 9 5 3 2 1 1- 0 9 5 A 3 2 1 1- 0 9 6 3 2 1 1- 0 9 6 A 3 2 1 1- 0 9 7 3 2 1 1- 0 9 7 A 3 2 1 1- 0 9 8 3 2 1 1- 0 9 9 3 2 1 1- 0 9 9 A 3 2 1 1- 1 0 0 3 2 1 1- 1 0 0 A 3 2 1 1- 1 0 1 3 2 1 1- 1 0 1 A 3 2 1 1- 1 0 2
C O D E N O. 3 2 1 1- 1 0 5 3 2 1 1- 1 0 6 3 2 1 1- 1 0 7 3 2 1 1- 1 0 8 3 2 1 1- 1 1 0 3 2 1 1- 1 1 1 3 2 1 1- 1 1 2 3 2 1 1- 1 1 3
O R D E R N O.
B T- 3 1 5 B T- 3 1 6 B T- 3 2 5 B T- 3 3 2 B T- 3 3 2- 1 B T- 3 3 3 B T- 3 3 3- 1
M A S 4 0 3 B T- S H A N K
TAPE R BT40 BT50 BT40 BT50
J T. N O.
L1
D1
H2
W EI G H T ( K G)
C O D E N O.
J T- 6 J T- 6 J T- 6 B16 B18 B16 B18
45 90 45 45 45 45 45
30 30 30 30
4 4 4 4
1. 2 1. 4 4. 2 1. 4 5
30
4
5. 1
3 2 0 9- 1 4 7 3 2 0 9- 1 4 8 3 2 0 9- 1 5 1 3 2 0 9- 1 5 5 3 2 0 9- 1 5 5 A 3 2 0 9- 1 5 6 3 2 0 9- 1 5 6 A
L e v er C h e c ki n g H ol d er s M8 T H R E A D F O R C H E C KI N G A R M
O R D E R N O.
L
Ø D
G
kgs
C O D E N O.
B T 4 0- M 8 B T 5 0- M 8
47 58
30 30
M8 M8
1. 3
3 0 2 9- 1 6 0 3 0 2 9- 1 6 1
L
K GS
250
3. 9 2. 4
C O DE N O. 3 4 0 5- 4 1 2 3 4 0 5- 4 1 3 3 4 0 5- 4 1 4
T e st Ar b or O R DE R N O. A50 A40 A30
T A P E R C A N F O R PG U L L S T U D B T- 5 0 M 2 4 x P 3. 0 B T- 4 0 M 1 6 x P 2. 0 B T- 3 0 M 1 2 x P 1. 7 5
A 40 40 30
5. 3
T O O LI N G S Y S T E M
C52
J A C O BS TAPE R A R B O R
J a c o b s T a p er Ar b or
Si d el o c k E n d Mill H ol d er
B T 3 0, 4 0, 5 0- S L A
M A S 403
W EL D O N T Y P E B T- S H A N K
U nit: m m
O R D E R N O.
B T- 4 3 6 B T- 4 3 7 B T- 4 3 8 B T- 4 3 9 B T- 4 4 0 B T- 4 4 1 B T- 4 4 2 B T- 4 4 3 B T- 4 4 4 B T- 4 4 5 B T- 4 4 6 B T- 4 4 7 B T- 4 4 8 B T- 4 4 9 B T- 4 5 0 B T- 4 5 1 B T- 4 5 1- 1 B T- 4 5 2 B T- 4 5 3 B T- 4 5 4 B T- 4 5 5 B T- 4 5 6 B T- 4 5 7 B T- 4 5 8 B T- 4 5 9 B T- 4 6 0 B T- 4 6 1 B T- 4 6 2 B T- 4 6 3 B T- 4 6 4 B T- 4 6 5 B T- 4 6 6 B T- 4 6 7 B T- 4 6 8 B T- 4 7 0 B T- 4 7 1 B T- 4 7 2 B T- 4 7 4 B T- 4 7 7 B T- 4 7 8 B T- 4 7 9
C53
G
W EI G H T ( k g s)
SI Z E
Ø D
Ø D1
L
L1
H1
H2
B T 3 0- S L A 6- 6 0
6
25
60
30
12
10
M 6 x 1. 0
0. 7
3 2 1 3- 1 2 6
B T 3 0- S L A 8- 6 0
8
28
60
35
14
12
M 8 x 1. 2 5
0. 7
3 2 1 3- 1 2 7
B T 3 0- S L A 1 0- 6 0
10
35
60
40
15
14
M 8 x 1. 2 5
0. 7
3 2 1 3- 1 2 8
B T 3 0- S L A 1 2- 6 0
12
42
60
50
20
16
M 1 2 x 1. 5
0. 8
3 2 1 3- 1 2 9
B T 3 0- S L A 1 6- 7 5
16
48
75
60
20
18
M 1 2 x 1. 5
0. 9
3 2 1 3- 1 3 0
B T 3 0- S L A 2 0- 7 5
20
52
75
70
23
19
M 1 2 x 1. 5
1. 2
3 2 1 3- 1 3 1
B T 4 0- S L A 6- 7 5
6
25
75
30
12
10
M 6 x 1. 0
1. 2
3 2 1 3- 1 3 2
B T 4 0- S L A 8- 7 5
8
28
75
35
14
12
M 8 x 1. 2 5
1. 3
3 2 1 3- 1 3 3
B T 4 0- S L A 1 0- 7 5
10
35
75
40
15
14
M 8 x 1. 2 5
1. 4
3 2 1 3- 1 3 4
B T 4 0- S L A 1 2- 7 5
12
42
75
50
20
16
M 1 2 x 1. 5
1. 5
3 2 1 3- 1 3 5
B T 4 0- S L A 1 4- 7 5
14
44
75
50
20
16
M 1 2 x 1. 5
1. 5
3 2 1 3- 1 3 6
B T 4 0- S L A 1 6- 7 5
16
48
75
60
20
18
M 1 2 x 1. 5
1. 6
3 2 1 3- 1 3 7
B T 4 0- S L A 1 8- 7 5
18
50
75
60
20
18
M 1 2 x 1. 5
1. 6
3 2 1 3- 1 3 8
B T 4 0- S L A 2 0- 9 0
20
52
90
70
23
19
M 1 2 x 1. 5
1. 9
3 2 1 3- 1 3 9
B T 4 0- S L A 2 5- 9 0
25
62
90
80
24
25
M 1 8 x 1. 5
2. 2
3 2 1 3- 1 4 0
B T 4 0- S L A 3 2- 9 0
32
63
90
80
24
28
M 2 0 x 1. 5
2
B T 4 0- S L A 3 2- 1 0 0
32
B T 4 0- S L A 4 0- 1 0 5
40
79
105
80
24
28
M 2 0 x 1. 5
3. 2
3 2 1 3- 1 4 2
B T 4 0- S L A 4 2- 1 0 5
42
79
105
80
24
28
M 2 0 x 1. 5
3. 1
3 2 1 3- 1 4 3
B T 5 0- S L A 6- 9 0
6
25
90
30
12
10
M 6 x 1. 0
3. 9
3 2 1 3- 1 4 4
B T 5 0- S L A 6- 1 5 0
6
25
150
30
12
10
M 6 x 1. 0
4
3 2 1 3- 1 4 5
B T 5 0- S L A 8- 9 0
8
28
90
35
14
12
M 8 x 1. 2 5
3. 7
3 2 1 3- 1 4 6 3 2 1 3- 1 4 7
M 2 0 x 1. 5
C O D E N O.
3 2 1 3- 1 4 1 3 2 1 3- 1 4 1 A
B T 5 0- S L A 8- 1 5 0
8
28
150
35
14
12
M 8 x 1. 2 5
4. 2
B T 5 0- S L A 1 0- 9 0
10
35
90
40
15
14
M 8 x 1. 2 5
4. 2
3 2 1 3- 1 4 8
B T 5 0- S L A 1 0- 1 5 0
10
35
150
40
15
14
M 8 x 1. 2 5
4. 3
3 2 1 3- 1 4 9
B T 5 0- S L A 1 2- 9 0
12
42
90
50
20
16
M 1 2 x 1. 5
4. 2
3 2 1 3- 1 5 0
B T 5 0- S L A 1 2- 1 5 0
12
42
150
50
20
16
M 1 2 x 1. 5
4. 9
3 2 1 3- 1 5 1
B T 5 0- S L A 1 4- 9 0
14
44
90
55
20
16
M 1 2 x 1. 5
4. 2
3 2 1 3- 1 5 2
B T 5 0- S L A 1 6- 9 0
16
48
90
60
20
18
M 1 2 x 1. 5
4. 3
3 2 1 3- 1 5 3
B T 5 0- S L A 1 6- 1 5 0
16
48
150
60
20
18
M 1 2 x 1. 5
5
3 2 1 3- 1 5 4
B T 5 0- S L A 1 8- 9 0
18
50
90
60
20
18
M 1 2 x 1. 5
4. 3
3 2 1 3- 1 5 5
B T 5 0- S L A 2 0- 1 0 5
20
52
105
70
23
19
M 1 2 x 1. 5 P
4. 5
3 2 1 3- 1 5 6
B T 5 0- S L A 2 0- 1 5 0
20
52
150
70
23
19
M 1 2 x 1. 5
4. 5
3 2 1 3- 1 5 7
B T 5 0- S L A 2 0- 2 0 0
20
52
200
70
23
19
M 1 2 x 1. 5
6. 4
3 2 1 3- 1 5 8
B T 5 0- S L A 2 5- 1 0 5
25
65
105
80
24
25
M 1 8 x 1. 5
5
3 2 1 3- 1 6 0
B T 5 0- S L A 2 5- 1 5 0
25
65
150
80
24
25
M 1 8 x 1. 5 P
6. 3
3 2 1 3- 1 6 1
B T 5 0- S L A 2 5- 2 0 0
25
65
200
80
24
25
M 1 8 x 1. 5 P
7. 6
3 2 1 3- 1 6 2
B T 5 0- S L A 3 2- 1 0 5
32
72
105
80
24
28
M 2 0 x 1. 5
5. 3
3 2 1 3- 1 6 4
B T 5 0- S L A 3 2- 2 5 0
32
72
250
80
24
28
M 2 0 x 1. 5
9. 8
3 2 1 3- 1 6 7
B T 5 0- S L A 4 0- 1 2 0
40
90
120
90
30
32
M 2 0 x 1. 5
6. 5
3 2 1 3- 1 6 8
B T 5 0- S L A 4 2- 1 2 0
42
90
120
90
30
32
M 2 0 x 1. 5
6. 7
3 2 1 3- 1 6 9
T O O LI N G S Y S T E M
P ull St u d s
B T 3 0, 4 0, 5 0
F O R M A S 403
T H REA D G R O U N D
P ULL ST U DS
• M A T E RI A L: S N C M 2 1 • H A R D N E S S: H R C 5 4º ± 2º • S H A N K B T- 3 0( P 3 0 T) • S H A N K B T- 4 0( P 4 0 T) • S H A N K B T- 5 0( P 5 0 T)
U nit: m m
O R D E R N O.
T A P E R N O.
a°
L
L1
L2
D
d1
d2
d3
M
N OTE
B T- 5 1 0 B T- 5 0 1 B T- 5 0 2 B T- 5 1 1 B T- 5 0 3 B T- 5 0 4 B T- 5 1 2 B T- 5 0 5 B T- 5 0 6
B T 3 0 X 9 0° B T 3 0 X 4 5° B T 3 0 X 6 0° B T 4 0 X 9 0° B T 4 0 X 4 5° B T 4 0 X 6 0° B T 5 0 X 9 0° B T 5 0 X 4 5° B T 5 0 X 6 0°
90 45 60 90 45 60 90 45 60
43 43 43 60 60 60 85 85 85
23 23 23 35 35 35 45 45 45
18 18 18 28 28 28 35 35 35
1 6. 5 1 6. 5 1 6. 5 23 23 23 38 38 38
11 11 11 15 15 15 23 23 23
7 7 7 10 10 10 17 17 17
1 2. 5 1 2. 5 1 2. 5 17 17 17 25 25 25
M12 M12 M12 M16 M16 M16 M24 M24 M24
3 2 1 5- 0 0 7 3 2 1 5- 0 0 8 3 2 1 5- 0 0 9 3 2 1 5- 0 1 0 3 2 1 5- 0 1 1 3 2 1 5- 0 1 2 3 2 1 5- 0 1 3 3 2 1 5- 0 1 4 3 2 1 5- 0 1 5
P ull St u d s
M A S 403 B T- 4 0, 5 0
JI S B 6 3 3 9- 1 9 8 6
C O D E N O.
F O R M A S 403
• Wit h t hr o u g h h ol e f or i nt er n al c o ol a nt
U nit: m m
O R D E R N O.
T A P E R N O.
a°
L
L1
L2
D
d1
d2
d3
d4
M
C O D E N O.
B T- 5 1 6 B T- 5 1 7 B T- 5 1 8 B T- 5 1 9 B T- 5 2 0 B T- 5 2 1
B T 4 0 X 4 5° W B T 4 0 X 6 0° W B T 4 0 X 9 0° W B T 5 0 X 4 5° W B T 5 0 X 6 0° W B T 5 0 X 9 0° W
45 60 90 45 60 90
60 60 60 85 85 85
35 35 35 45 45 45
28 28 28 35 35 35
23 23 23 38 38 38
15 15 15 23 23 23
10 10 10 17 17 17
17 17 17 25 25 25
4 4 4 7 7 7
M16 M16 M16 M24 M24 M24
3 2 1 5- 0 6 0 3 2 1 5- 0 6 1 3 2 1 5- 0 6 2 3 2 1 5- 0 6 3 3 2 1 5- 0 6 4 3 2 1 5- 0 6 5
T O O LI N G S Y S T E M
C54
P ull St u d s
F O R DI N 6 9 8 7 2- 1 9 8 8
DI N 6 9 8 7 2, ( WI T H T H R O U G H H O L E)- A T Y P E O R DE R N O. B T- 5 2 2 B T- 5 2 3 B T- 5 2 4 B T- 5 2 5
T A P E R N O.
L
L1
L2
D
d1
d2
d3
d4
M
DI N 3 0- A DI N 4 0- A DI N 4 0- A- L DI N 5 0- A
44 54 54 74
24 26 29 34
19 20 23 25
17 23 23 36
13 19 19 28
9 14 14 21
13 17 17 25
3 7 7 1 1. 5
M12 M16 M16 M24
WI T H O U T O- RI N G O R DE R N O. B T- 5 2 6 B T- 5 2 7 B T- 5 2 8
I S O- A T Y P E
T O O LI N G S Y S T E M
C O D E N O. 3 2 1 5- 0 6 6 3 2 1 5- 0 6 7 3 2 1 5- 0 6 8 3 2 1 5- 0 6 9
4
DI N 6 9 8 7 2- B T Y P E
U nit: m m
L
L1
L2
I3
I4
D
d1
d2
d3
d4
M
C O D E N O.
DI N 3 0- B DI N 4 0- B DI N 5 0- B
44 54 74
24 26 34
19 20 25
1. 4 1. 9 3
27 37
17 23 36
13 19 28
9 14 21
13 17 25
7 1 1. 5
M12 M16 M24
3 2 1 5- 0 7 0 3 2 1 5- 0 7 1 3 2 1 5- 0 7 2
F O R I S O/ JI S 7 3 8 8/ 2/ A- 1 9 8 4 A
U nit: m m
T A P E R N O.
L
L1
L2
D
d1
d2
d3
d4
M
H
C O D E N O.
I S O 4 0- A I S O 5 0- A
54 74
26 34
20 25
23 36
29 28
24 21
27 25
7 1 1. 5
M16 M24
3
3 2 1 5- 0 7 3 3 2 1 5- 0 7 4
F O R I S O/ JI S 7 3 8 8/ 2/ B- 1 9 8 4 B
O R DE R N O. B T- 5 3 1 B T- 5 3 2
C55
H
T A P E R N O.
O R DE R N O. B T- 5 2 9 B T- 5 3 0
I S O- B T Y P E
U nit: m m
TAPE R N O. I S O 4 0- B I S O 5 0- B
U nit: m m
L
L1
L2
D
d1
d2
4 4. 5 6 5. 5
1 6. 4 1 1. 1 5 2 2. 5 1 8. 9 5 1 2. 9 5 2 5. 5 1 7. 9 5 3 7 2 9. 1 1 9. 6
d3
d4
M
C O D E N O.
17 25
7. 3 5 1 1. 5 5
M16 M24
3 2 1 5- 0 7 5 3 2 1 5- 0 7 6
P ull St u d s MAZAK
F O R M A Z A K M A C HI N E
MI T S UI
a° 45 45 45
L
L1
L2
L3
D
d1
d2
d3
6 5. 2 2 5. 2 1 7. 5 8 1. 8 3 7 2 8. 9 5 2 0. 8 3 2 5 4 4. 1 1 9. 1 14 2 2 1 8. 8 1 2. 4 5 1 7 4 4. 1 1 6. 1 11 2 2 1 8. 8 1 2. 4 5 1 7
C O DE d4 d5 M N O. 1 0 1 6 M 2 4 3 2 1 5- 0 7 7 7 M 1 6 3 2 1 5- 0 7 8 7 M 1 6 3 2 1 5- 0 7 9
F O R MI T S UI M A C HI N E
U nit: m m
O R DE R N O. B T- 5 3 6 B T- 5 3 7
C AT
T A P E R N O.
a°
L
L1
L2
D
d1
d2
d3
M
C O D E N O.
MI T S UI B T 4 0 MI T S UI B T 5 0
90 90
50 71
25 31
18 23
23 36
15 24
10 18
17 25
M16 M24
3 2 1 5- 0 8 0 3 2 1 5- 0 8 1
F O R A N SI B 5- 5 0
U nit: m m
O R DE R N O. B T- 5 3 8 B T- 5 3 9
T A P E R N O.
a°
C AT40 C AT50
45 45
L
L1
L2
D
d1
d2
d4
M
C O D E N O.
3 8. 1 1 6. 2 1 1. 2 2 3. 8 1 8. 8 1 2. 4 7. 1 5 8. 4 2 5. 4 1 7. 8 3 6 2 8. 9 2 0. 8 1 1. 8
5/ 8 1
3 2 1 5- 0 8 2 3 2 1 5- 0 8 3
T O O LI N G S Y S T E M
C56
P ULL ST U DS
U nit: m m
O R DE R T A P E R N O. N O. B T- 5 3 3 M A Z A K B T 5 0 B T- 5 3 4 M A Z A K B T 4 0 B T- 5 3 5 M A Z A K C A T 4 0
P ull St u d s C A T- B T
F O R B T M A C HI N E
U nit: m m
O R DE R N O.
T A P E R N O.
a°
L
L1
L2
D
d1
d2
B T- 5 4 0
C A T 4 0 X 4 5°
45
57
32
25
23
15
B T- 5 4 1
C A T 4 0 X 6 0°
60
57
32
25
23
15
B T- 5 4 2
C A T 4 0 X 9 0°
90
57
32
25
23
B T- 5 4 3
C A T 5 0 X 4 5°
45
7 8. 6
45
3 5. 2
B T- 5 4 4
C A T 5 0 X 6 0°
60
7 8. 6
45
B T- 5 4 5
C A T 5 0 X 9 0°
90
7 8. 6
B T- 5 4 6
C A T 4 0 X 4 5° M
45
B T- 5 4 7
C A T 4 0 X 6 0° M
B T- 5 4 8
C A T 4 0 X 9 0° M
M
C O D E N O.
10
5/ 8
3 2 1 5- 0 8 4
10
5/ 8
3 2 1 5- 0 8 5
15
10
5/ 8
3 2 1 5- 0 8 6
38
23
17
1
3 2 1 5- 0 8 7
3 5. 2
38
23
17
1
3 2 1 5- 0 8 8
45
3 5. 2
38
23
17
1
3 2 1 5- 0 8 9
57
32
25
23
15
10
17
M16
3 2 1 5- 0 9 0
60
57
32
25
23
15
10
17
M16
3 2 1 5- 0 9 1
90
57
32
25
23
15
10
17
M16
3 2 1 5- 0 9 2
P ull St u d s
d3
F O R JI S 6 3 3 9 B- 4 0 P
O K U N M A JI S # 4 0
U nit: m m
O R D E R N O.
T A P E R N O.
a°
L
L1
L2
D
d1
d2
d3
d4
M
C O D E N O.
B T- 5 5 6
JI S
30
54
29
23
23
19
14
17
7
M16
3 2 1 5- 1 1 1
S T E E L: S N C M- 2 1 C57
T O O LI N G S Y S T E M
C o m pl et e N C T o oli n g S et W e r e c o m m e n d a c o m pl et e s et w hi c h i s i n cl u d e d t o ol h ol d er, c oll et c h u c k, c oll et s et, p ull s al e- mi x i n t h e m ar k et.
I T E M N O.
C O D E N O. 3 2 1 6- 0 0 1 B T- 3 0 WI T H 7 P C S. H O L D E R & E R- 2 0 C O L L E T
D e s cri pti o n s
Fi g ur e s
Q u a ntit y
E x pl a n ati o n
1
E R20 C OLL ET C H U C K B T 3 0- E R 2 0- 6 0
3 p c s.
F or s m all Di a. E n d mill a n d Drill s
2
M O RSE TAPE R A DAPT O R B T 3 0- M T A 1- 5 0
1 p c.
F or drill s wit h M or s e t a p er S h a n k N o. 1.
3
M O RSE TAPE R A DAPT O R B T 3 0- M T A 2- 6 0
1 p c.
F or drill s wit h M or s e t a p er S h a n k N o. 2.
4
E N D MI L L H O L D E R B T- 3 0- S L 1 2- 6 0
1 p c.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 1 2 m m( W E L D O N T y p e)
5
E N D MI L L H O L D E R B T 3 0- S L 1 6- 7 5
1 p c.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 1 6 m m( W E L D O N T y p e)
6
E R 2 0 S P RI N G C O L L E T E R 2 0- d Ø
1 1 p c s.
F or it e m 1. I n cl u di n g 1 1 c oll et s a s b el o w: Ø 3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3 m m
7
P ULL ST U D B T- 5 0 1, B T- 5 0 2
7 p c s.
B T- 5 0 1 B T- 5 0 2
8
T O O L H O L D E R L O C KI N G S T A N D V T S- B T- 3 0
1 p c.
F or l o c ki n g t h e p ull st u d s or pr e p ari n g C utti n g t o ol s of t o ol h ol d er s.
9
E L E C T R O NI C E D G E FI N D E R V P S- 2 0 B
1 p c.
F or s etti n g w or k c o or di n at e o n M a c hi n e C e nt er s.
O R D E R N O. V B T- 3 0- 1 5 2 0 I T E M N O.
T O O LI N G S E T
O R D E R N O. V B T- 3 0- 0 7 2 0
E R
= 4 5° = 6 0°
C O D E N O. 3 2 1 6- 0 1 1 B T- 3 0 WI T H 1 5 P C S. H O L D E R & E R- 2 0 C O L L E T
D e s cri pti o n s
Fi g ur e s
Q u a ntit y
E x pl a n ati o n
1
E R20 C OLL ET C H U C K B T 3 0- E R 2 0- 6 0
6 p c s.
F or s m all Di a. E n d mill a n d Drill s
2
M O RSE TAPE R A DAPT O R B T 3 0- M T A 1- 5 0
1 p c.
F or drill s wit h M or s e t a p er S h a n k N o. 1.
3
M O RSE TAPE R A DAPT O R B T 3 0- M T A 2- 6 0
1 p c.
F or drill s wit h M or s e t a p er S h a n k N o. 2.
4
F A C E MI L L A R B O R B T 3 0- F M B 2 2- 4 5
1 p c.
F or H ol di n g t h e f a c e milli n g C utt er Di a. 5 0, 6 3 m m
5
E N D MI L L H O L D E R B T- 3 0- S L 1 2- 6 0
2 p c s.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 1 2 m m( W E L D O N T y p e)
6
E N D MI L L H O L D E R B T 3 0- S L 1 6- 6 0
2 p c s.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 1 6 m m( W E L D O N T y p e)
7
E N D MI L L H O L D E R B T 3 0- S L 2 0- 7 5
2 p c s.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 2 0 m m( W E L D O N T y p e)
8
E R 2 0 S P RI N G C O L L E T E R 2 0- d Ø
1 1 p c s.
F or it e m 1. I n cl u di n g 1 1 c oll et s a s b el o w: Ø 3, 4, 5, 6, 7, 8, 9, 1 0, 1 1, 1 2, 1 3 m m
9
P ULL ST U D B T- 5 0 1, B T- 5 0 2
1 5 p c s.
B T- 5 0 1 B T- 5 0 2
10
T O O L H O L D E R L O C KI N G S T A N D V T S- B T- 3 0
1 p c.
F or l o c ki n g t h e p ull st u d s or pr e p ari n g C utti n g t o ol s of t o ol h ol d er s.
11
E L E C T R O NI C E D G E FI N D E R V P S- 2 0 B
1 p c.
F or s etti n g w or k c o or di n at e o n M a c hi n e C e nt er s.
= 4 5° = 6 0°
T O O LI N G S Y S T E M
C58
C o m pl et e N C T o oli n g S et
W e r e c o m m e n d a c o m pl et e s et w hi c h i s i n cl u d e d t o ol h ol d er, c oll et c h u c k, c oll et s et, p ull s al e- mi x i n t h e m ar k et.
E R
G. W.: 3 9. 6 k g s
O R D E R N O. V B T- 4 0- 1 5 3 2 I T E M N O.
C59
C O D E N O. 3 2 1 6- 0 0 2 B T- 4 0 WI T H 1 5 P C S. H O L D E R & E R- 3 2 C O L L E T
D e s cri pti o n s
Fi g ur e s
Q u a ntit y
E x pl a n ati o n
1
E R32 C OLL ET C H U C K V- 7 0 3 A B T 4 0- E R 3 2- 7 0
3 p c s.
F or s m all Di a. E n d mill a n d Drill s
2
E R32 C OLL ET C H U C K V- 7 0 3 B B T 4 0- E R 3 2- 1 0 0
3 p c s.
F or s m all Di a. E n d mill a n d Drill s
3
M O RSE TAPE R A DAPT O R B T- 2 0 9 B T 4 0- M T A 1- 5 0
1 p c.
F or drill s wit h M or s e t a p er S h a n k N o. 1.
4
M O RSE TAPE R A DAPT O R B T- 2 1 2 B T 4 0- M T A 2- 5 0
1 p c.
F or drill s wit h M or s e t a p er S h a n k N o. 2.
5
M O RSE TAPE R A DAPT O R B T- 2 1 5 B T 4 0- M T A 3- 7 5
1 p c.
F or drill s wit h M or s e t a p er S h a n k N o. 3.
6
F A C E MI L L A R B O R B T- 1 5 2 B T 4 0- F M B 2 2- 4 5
1 p c.
F or h ol di n g t h e f a c e milli n g C utt er Di a. 5 0, 6 3 m m
7
F A C E MI L L A R B O R B T- 1 5 4 B T 4 0- F M B 2 7- 4 5
1 p c.
F or h ol di n g t h e f a c e milli n g C utt er Di a. 8 0 m m
8
E N D MI L L H O L D E R B T- 4 4 7 B T 4 0- S L A 1 6- 7 5
1 p c.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 1 6 m m( W E L D O N T y p e)
9
E N D MI L L H O L D E R B T- 4 4 9 B T 4 0- S L A 2 0- 9 0
1 p c.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 2 0 m m( W E L D O N T y p e)
10
E N D MI L L H O L D E R B T- 4 5 0 B T 4 0- S L A 2 5- 9 0
1 p c.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 2 5 m m( W E L D O N T y p e)
11
E N D MI L L H O L D E R B T- 4 5 1 B T 4 0- S L A 3 2- 9 0
1 p c.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 3 2 m m( W E L D O N T y p e)
12
E R 3 2 S P RI N G C O L L E T V- 3 2 0 0 8 E R 3 2- d Ø
1 1 p c s./ s et
F or it e m 1. 2. I n cl u di n g 1 1 c oll et s a s b el o w: Ø 4, 5, 6, 8, 1 0, 1 2, 1 3, 1 5, 1 6, 1 8, 2 0 m m
13
P ULL ST U D B T- 5 0 3 O R B T- 5 0 4
T- 5 0 3 1 5 p c s./ s et BB T504
14
T O O L H O L D E R L O C KI N G S T A N D V T S- B T- 4 0
1 p c.
F or l o c ki n g t h e p ull st u d s or pr e p ari n g C utti n g t o ol s of t o ol h ol d er s.
15
E L E C T R O NI C E D G E FI N D E R V P S- 2 0 B
1 p c.
F or s etti n g w or k c o or di n at e o n M a c hi n e C e nt er s.
T O O LI N G S Y S T E M
= 4 5° = 6 0°
C o m pl et e N C T o oli n g S et
W e r e c o m m e n d a c o m pl et e s et w hi c h i s i n cl u d e d t o ol h ol d er, c oll et c h u c k, c oll et s et, p ull s al e- mi x i n t h e m ar k et.
I T E M N O.
C O D E N O. 3 2 1 6- 0 0 3 B T- 4 0 WI T H 2 3 P C S. H O L D E R & E R- 3 2 C O L L E T
D e s cri pti o n s
Fi g ur e s
Q u a ntit y
E x pl a n ati o n
1
E R32 C OLL ET C H U C K B T 4 0- E R 3 2- 7 0
4 p c s.
F or s m all Di a. E n d mill a n d Drill s
2
E R32 C OLL ET C H U C K B T 4 0- E R 3 2- 1 0 0
4 p c s.
F or s m all Di a. E n d mill a n d Drill s
3
M O RSE TAPE R A DAPT O R B T 4 0- M T A 1- 5 0
1 p c.
F or drill s wit h M or s e t a p er S h a n k N o. 1.
4
M O RSE TAPE R A DAPT O R B T 4 0- M T A 2- 5 0
2 p c.
F or drill s wit h M or s e t a p er S h a n k N o. 2.
5
M O RSE TAPE R A DAPT O R B T 4 0- M T A 3- 7 5
2 p c.
F or drill s wit h M or s e t a p er S h a n k N o. 3.
6
F A C E MI L L A R B O R B T 4 0- F M B 2 2- 4 5
1 p c.
F or h ol di n g t h e f a c e milli n g C utt er Di a. 5 0, 6 3 m m
7
F A C E MI L L A R B O R B T 4 0- F M B 2 7- 4 5
1 p c.
F or h ol di n g t h e f a c e milli n g C utt er Di a. 8 0 m m
8
E N D MI L L A R B O R B T 4 0- S L A 1 6- 7 5
2 p c.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 1 6 m m( W E L D O N T y p e)
9
E N D MI L L A R B O R B T 4 0- S L A 2 0- 9 0
2 p c.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 2 0 m m( W E L D O N T y p e)
10
E N D MI L L A R B O R B T 4 0- S L A 2 5- 9 0
2 p c.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 2 5 m m( W E L D O N T y p e)
11
E N D MI L L A R B O R B T 4 0- S L A 3 2- 9 0
2 p c.
F or str ai g ht s h a n k e n d mill wit h Si d el o c k e d g e Di a. 3 2 m m( W E L D O N T y p e)
12
E R 3 2 S P RI N G C O L L E T E R 3 2- d Ø
it e m 1. 2. I n cl u di n g 1 1 c oll et s a s 1 1 p c s./ s et Fb or el o w: Ø 4, 5, 6, 8, 1 0, 1 2, 1 3, 1 5, 1 6, 1 8, 2 0 m m
13
P ULL ST U D B T- 5 0 3 O R B T- 5 0 4
T- 5 0 3 2 3 p c s./ s et BB T504
14
T O O L H O L D E R L O C KI N G S T A N D V T S- B T- 4 0
1 p c.
F or l o c ki n g t h e p ull st u d s or pr e p ari n g C utti n g t o ol s of t o ol h ol d er s.
15
E L E C T R O NI C E D G E FI N D E R V P S- 2 0 B
1 p c.
F or s etti n g w or k c o or di n at e o n M a c hi n e C e nt er s.
T O O LI N G S E T
O R D E R N O. V B T- 4 0- 2 4 3 2
E R
= 4 5° = 6 0°
T O O LI N G S Y S T E M
C60
F a c e Mill H ol d er
H ol d er F or F a c e Mill C utt er. DI N 6 9 8 7 1 A
DI N 6 9 8 7 1 A
U nit: m m
O R D E R N O.
SI Z E
d
D
L1
L2
G
W EI G H T( k g)
C O D E N O.
S K- 1 1 2
S K 4 0- F M B 2 2- 5 0
22
48
50
18
M10
1. 5
3 2 1 1- 2 0 2
S K- 1 1 3
S K 4 0- F M B 2 7- 5 0
27
60
50
20
M12
1. 6
3 2 1 1- 2 0 3
S K- 1 1 4
S K 4 0- F M B 3 2- 5 0
32
62
50
22
M16
2. 1
3 2 1 1- 2 0 4
S K- 1 1 7
S K 5 0- F M B 2 2- 5 0
22
60
50
18
M10
3. 5
3 2 1 1- 2 0 5
S K- 1 1 8
S K 5 0- F M B 2 7- 5 0
27
70
50
20
M12
3. 5
3 2 1 1- 2 0 6
S K- 1 1 9
S K 5 0- F M B 3 2- 6 0
32
75
60
22
M16
3. 7
3 2 1 1- 2 0 7
S K- 1 2 0
S K 5 0- F M B 4 0- 6 0
40
85
60
26
M20
4. 7
3 2 1 1- 2 0 8
M or s e T a p er H ol d er- DI N 6 3 8 3
H ol d er F or M or s e T a p er S h a n k Wit h T a n g. DI N 6 9 8 7 1 A
DI N 6 9 8 7 1 A
U nit: m m
C61
T O O LI N G S Y S T E M
O R D E R N O.
SI Z E
M. T. #
L
D
W EI G H T( k g)
C O D E N O.
S K- 2 1 4
S K 4 0- M T 1- 4 5
1
45
25
1
3 2 1 1- 1 3 3
S K- 2 1 5
S K 4 0- M T 2- 5 0
2
50
32
1
3 2 1 1- 1 3 4
S K- 2 1 6
S K 4 0- M T 3- 7 0
3
70
40
1. 2
3 2 1 1- 1 3 5
S K- 2 1 7
S K 4 0- M T 4- 9 5
4
95
48
1. 3
3 2 1 1- 1 3 6
S K- 2 1 8
S K 5 0- M T 1- 4 5
1
45
25
3
3 2 1 1- 1 3 7
S K- 2 1 9
S K 5 0- M T 2- 6 0
2
60
32
2. 9
3 2 1 1- 1 3 8
S K- 2 2 0
S K 5 0- M T 3- 6 5
3
65
40
3
3 2 1 1- 1 3 9
Si d el o c k E n d Mill H ol d er WEL D O N TYPE
DI N 6 9 8 7 1 A
U nit: m m
O R D E R N O.
SI Z E
Fi g.
D1
D
L1
L2
L3
W EI G H T ( k g)
S K- 4 1 7
S K 4 0- E M 6- 5 0
1
6
25
50
18
-
1
3 2 1 3- 2 0 7
S K- 4 1 8
S K 4 0- E M 8- 5 0
1
8
28
50
18
-
1. 1
3 2 1 3- 2 0 8
S K- 4 1 9
S K 4 0- E M 1 0- 5 0
1
10
35
50
20
-
1. 1
3 2 1 3- 2 0 9
S K- 4 2 0
S K 4 0- E M 1 2- 5 0
1
12
42
50
2 2. 5
-
1. 2
3 2 1 3- 2 1 0
S K- 4 2 1
S K 4 0- E M 1 6- 6 3
1
16
48
63
24
-
1. 5
3 2 1 3- 2 1 1
S K- 4 2 2
S K 4 0- E M 2 0- 6 3
1
20
52
63
25
-
1. 4
3 2 1 3- 2 1 2
S K- 4 2 3
S K 4 0- E M 2 5- 1 0 0
2
25
65
100
24
49
2. 4
3 2 1 3- 2 1 3
S K- 4 2 7
S K 5 0- E M 1 0- 6 3
1
10
35
63
20
-
3. 4
3 2 1 3- 2 1 7
S K- 4 2 8
S K 5 0- E M 1 2- 6 3
1
12
42
63
2 2. 5
-
3. 4
3 2 1 3- 2 1 8
S K- 4 2 9
S K 5 0- E M 1 6- 6 3
1
16
48
63
24
-
3. 5
3 2 1 3- 2 1 9
S K- 4 3 0
S K 5 0- E M 2 0- 6 3
1
20
52
63
25
-
3. 5
3 2 1 3- 2 2 0
S K- 4 3 1
S K 5 0- E M 2 5- 8 0
2
25
65
80
24
49
3. 8
3 2 1 3- 2 2 1
Drill C h u c k H ol d er / A P U
C O D E N O.
DI N 6 9 8 7 1 A
U nit: m m
O R DE R N O.
SI Z E DI N 6 9 8 7 1 A
S A M E SI Z E
Cl a m pi n g range ( Ø m m)
S K- 5 1 1
S K 4 0- A P U 0 8
I N T- 8- S K 4 0
0. 5- 8
3 5. 6
81
S K- 5 1 2
S K 4 0- A P U 1 3 I N T- 1 3- S K 4 0
1- 1 3
52
S K- 5 1 4
S K 5 0- A P U 1 3 I N T- 1 3- S K 5 0
1- 1 3
S K- 5 0 9
S K 3 0- A P U 0 8
I N T- 8- S K 3 0
S K- 5 1 0
L
W EI G H T ( k g)
C O DE N O.
90
1. 4
3 3 0 1- 0 0 1
99
111
1. 9
3 3 0 1- 0 0 2
52
93
106
3. 9
3 3 0 1- 0 0 4
0. 5- 8
3 5. 6
80
88
0. 7
3 3 0 1- 0 0 5
S K 3 0- A P U 1 3 I N T- 1 3- S K 3 0
1- 1 3
52
98
104
1. 3 4
3 3 0 1- 0 0 6
S K- 5 1 5
S K 4 0- A P U 1 6 I N T- 1 6- S K 4 0
3- 1 6
5 6. 8
127
140
2. 4
3 3 0 1- 0 0 7
S K- 5 1 6
S K 5 0- A P U 1 6 I N T- 1 6- S K 5 0
3- 1 6
5 6. 8
98
111
3. 9
3 3 0 1- 0 0 8
D
Mi ni m u m M a xi m u m
T O O LI N G S Y S T E M
C62
MI L L H O L D E R
DI N 6 9 8 7 1 A
F a c e Mill H ol d er
C A T- F M A
O R D E R N O.
L
FI G 2
Ø D
H
K
W
C O D E N O.
50
20
5
9. 5
3 2 1 3- 2 3 0
C A T 4 0- F M A 2 5. 4- 2. 0
2. 0
C A T 4 0- F M A 3 1. 7 5- 2. 2 5
2. 2 5
3 1. 7 5
60
22
7
1 2. 7
3 2 1 3- 2 3 1
C A T 4 0- F M A 3 8. 1- 2. 4
2. 4
3 8. 1
80
25
9
1 5. 9
3 2 1 3- 2 3 2
C A T 5 0- F M A 2 5. 4- 2. 0
2. 0
2 5. 4
50
20
5
9. 5
3 2 1 3- 2 3 3
C A T 5 0- F M A 3 1. 7 5- 1. 5
1. 5
3 1. 7 5
60
22
7
1 2. 7
3 2 1 3- 2 3 4
C A T 5 0- F M A 3 8. 1- 2. 4
2. 4
3 8. 1
80
25
9
1 5. 9
3 2 1 3- 2 3 5
C A T 5 0- F M A 5 0. 8- 2. 4
2. 4
5 0. 8
100
28
12
1 5. 9
3 2 1 3- 2 3 6
Si d e L o c k H ol d er s
FI G 1
Ø d( h 6) 2 5. 4
C A T- S L
O R D E R N O.
FI G
C A T 4 0- S L 0 8- 2. 5 0
L 2. 5
C A T 4 0- S L 1 0- 2. 5 0
Ød
Ø D
H1
8
28
18
10
35
20
2. 6 2
12
42
2 2. 5
C A T 4 0- S L 1 6- 2. 7 5
2. 7 5
16
48
C A T 4 0- S L 2 0- 3. 5 0
3. 5
20
48
C A T 4 0- S L 1 2- 2. 6 2
C A T 4 0- S L 2 5- 4. 0 0 C A T 4 0- S L 3 2- 4. 0 0
1
2
C A T 5 0- S L 0 8- 2. 5 0
4. 0
25
62
32
72
H2
G
C O D E N O.
M8
3 2 1 3- 2 4 0
M10
3 2 1 3- 2 4 1
M12
3 2 1 3- 2 4 2
24
M14
3 2 1 3- 2 4 3
25
M16
3 2 1 3- 2 4 4
24
-
25
M18
3 2 1 3- 2 4 5
28
M20
3 2 1 3- 2 4 6
8
28
18
M8
3 2 1 3- 2 4 7
10
35
20
M10
3 2 1 3- 2 4 8
2. 6 2
12
42
2 2. 5
M12
3 2 1 3- 2 4 9
C A T 5 0- S L 1 6- 2. 7 5
2. 7 5
16
48
24
M14
3 2 1 3- 2 5 0
C A T 5 0- S L 2 0- 3. 5 0
3. 5
20
52
25
M16
3 2 1 3- 2 5 1
M18
3 2 1 3- 2 5 2
2. 5
C A T 5 0- S L 1 0- 2. 5 0 C A T 5 0- S L 1 2- 2. 6 2
1
C A T 5 0- S L 2 5- 4. 0 0 C A T 5 0- S L 3 2- 4. 0 0 C A T 5 0- S L 4 0- 4. 7 0
M or s e T a p er H ol d er s
2
4. 0 4. 7
25
65
32
72
40
90
24 30
-
25 28 32
M20
3 2 1 3- 2 5 3 3 2 1 3- 2 5 4
C A T- M T A
D L
C63
T O O LI N G S Y S T E M
O R D E R N O.
M T N O.
L
Ø D
C O D E N O.
C A T 4 0- M T A 2- 6 0
2
60
32
3 2 1 3- 2 6 2
C A T 4 0- M T A 3- 7 5
3
75
40
3 2 1 3- 2 6 3
C A T 4 0- M T A 4- 9 0
4
90
50
3 2 1 3- 2 6 4
C A T 5 0- M T A 2- 4 5
2
45
32
3 2 1 3- 2 6 5
C A T 5 0- M T A 3- 4 5
3
45
40
3 2 1 3- 2 6 6
C A T 5 0- M T A 4- 7 5
4
75
50
3 2 1 3- 2 6 7
C A T 5 0- M T A 5- 1 0 5
5
105
65
3 2 1 3- 2 6 8
D C Hi g h S p e e d Sli m C h u c k S y st e m D C C oll et S y st e m B a c k p ulli n g l o c k d e si g n. Hi g h cl a m pi n g f or c e. Ri gi d & hi g h st a bilit y. F or hi g h pr e ci si o n c utti n g. C oll et s wit h diff er e nt si z e s c a n b e u s e d o n all ki n d of e n d mill s, r e a m er s, drill s a n d t a p pi n g. R u n o ut: b el o w 0. 0 0 5 m m. S m all e st o ut er di a m et er. M a x s p e e d : 3 0. 0 0 0r p m; G 2. 5.
O R D E R N O. B T 4 0- D C 6- 6 0 B T 4 0- D C 6- 9 0 B T 4 0- D C 8- 9 0 B T 4 0- D C 8- 1 2 0 B T 4 0- D C 1 0- 9 0 B T 4 0- D C 1 0- 1 2 0 B T 4 0- D C 1 2- 9 0 B T 4 0- D C 1 2- 1 2 0
C OLLET TYPE D C6 D C6 D C8 D C8 D C10 D C10 D C12 D C12
L 60 90 90 120 90 120 90 120
Ø D 15 15 22 22 28 28 35 35
C L A M PI N G R A N G E
W RE N C H
B A C K S C RE W
4 m m
M5
5 m m
M6
6 m m
M8
8 m m
M10
S m all C oll et Of Sli m C oll et C h u c k
D C 6 S eri e s : F or Cl a m pi n g E n d Mill s Drill s, R e a m er s A n d T a p s. M a x. Cl a m pi n g Di a m et er R u n o ut : B el o w 0. 0 0 5 m m
ø D
G
1: 1 0 L
4* D 1
W EI G H T ( k g) 1. 1 1. 2 1. 2 1. 4 1. 3 1. 5 1. 3 5 1. 6
C O D E N O. 3 2 1 8- 0 4 6 3 2 1 8- 0 4 7 3 2 1 8- 1 0 0 3 2 1 8- 1 0 1 3 2 1 8- 1 0 2 3 2 1 8- 1 0 3 3 2 1 8- 1 0 4 3 2 1 8- 1 0 5
D C C oll et S y st e m Di m e n si o n TYPE D C6 D C8 D C10 D C12
Ø D 9. 5 15 19 22
L 36 45 52 60
G M 5* 0. 8 P M 6* 1. 0 P M 8- 1. 2 5 P M 1 0* 1. 5 P
Pr e ci si o n D C C oll et wit hi n 5 mi cr o n O R D E R N O.
ø D
L
D C 6- 2 D C 6- 2. 5 D C 6- 3 D C 6- 3. 5 D C 6- 3. 1 7 5 D C 6- 4 D C 6- 4. 5 D C 6- 5 D C 6- 5. 5 D C 6- 6 D C 8- 3 D C 8- 3. 1 7 5 D C 8- 4 D C 8- 5 D C 8- 6 D C 8- 7 D C 1 0- 3 D C 1 0- 4 D C 1 0- 5 D C 1 0- 6 D C 1 0- 8 D C 1 0- 1 0 D C 1 2- 3 D C 1 2- 4 D C 1 2- 5 D C 1 2- 6 D C 1 2- 8 D C 1 2- 1 0 D C 1 2- 1 2
9. 5 9. 5 9. 5 9. 5 9. 5 9. 5 9. 5 9. 5 9. 5 9. 5 15 15 15 15 15 15 19 19 19 19 19 19 22 22 22 22 22 22 22
36 36 36 36 36 36 36 36 36 36 45 45 45 45 45 45 52 52 52 52 52 52 60 60 60 60 60 60 60
C L A M PI N G C A P A CI T Y F O R E N D MI L L D L A. 2 2. 5 3 3. 5 3. 1 7 5 4 4. 5 5 5. 5 6 3 3. 1 7 5 4 5 6 8 3 4 5 6 8 10 3 4 5 6 8 10 12
C L A M PI N G C A P A CI T Y F O R D RI L L R E A M E R. T A P 2. 0 0- 1. 7 5 2. 5 0- 2. 2 5 3. 0 0- 2. 7 5 3. 5 0- 3. 2 5 3. 5 0- 3. 1 7 5 4. 0 0- 3. 7 5 4. 5 0- 4. 2 5 5. 0 0- 4. 7 5 5. 5 0- 5. 2 5 6. 0 0- 5. 7 5 3. 0 0- 2. 7 5 3. 1 7 5- 2. 9 2 4. 0 0- 3. 7 5 5. 0 0- 4. 7 5 6. 0 0- 5. 7 5 8. 0 0- 7. 7 5 3. 0 0- 2. 7 5 4. 0 0- 3. 7 5 5. 0 0- 4. 7 5 6. 0 0- 5. 7 5 8. 0 0- 7. 7 5 1 0. 0 0- 9. 7 5 3. 0 0- 2. 7 5 4. 0 0- 3. 7 5 5. 0 0- 4. 7 5 6. 0 0- 5. 7 5 8. 0 0- 7. 7 5 1 0. 0 0- 9. 7 5 1 2. 0 0- 1 1. 7 5
W EI G H T( k g)
C O D E N O.
0. 0 2 0. 0 2 0. 0 2 0. 0 2 0. 0 2 0. 0 2 0. 0 2 0. 0 2 0. 0 2 0. 0 2 0. 0 3 7 0. 0 3 7 0. 0 3 6 0. 0 3 5 0. 0 3 4 0. 0 3 0. 0 7 4 0. 0 7 4 0. 0 7 4 0. 0 7 2 0. 0 6 8 0. 0 6 2 0. 1 1 0. 1 1 0. 1 0 8 0. 1 0 8 0. 1 0 4 0. 0 9 6 0. 0 8 4
3 2 1 8- 0 5 6 3 2 1 8- 0 5 8 3 2 1 8- 0 6 5 3 2 1 8- 0 6 7 3 2 1 8- 0 6 8 3 2 1 8- 0 6 9 3 2 1 8- 0 7 1 3 2 1 8- 0 7 3 3 2 1 8- 0 7 5 3 2 1 8- 0 7 7 3 2 1 8- 1 2 0 3 2 1 8- 1 2 1 3 2 1 8- 1 2 2 3 2 1 8- 1 2 3 3 2 1 8- 1 2 4 3 2 1 8- 1 2 5 3 2 1 8- 1 4 0 3 2 1 8- 1 4 1 3 2 1 8- 1 4 2 3 2 1 8- 1 4 3 3 2 1 8- 1 4 4 3 2 1 8- 1 4 5 3 2 1 8- 1 6 0 3 2 1 8- 1 6 1 3 2 1 8- 1 6 2 3 2 1 8- 1 6 3 3 2 1 8- 1 6 4 3 2 1 8- 1 6 5 3 2 1 8- 1 6 6
T O O LI N G S Y S T E M
C64
D C S LI M C H U C K
E X P.
D C
H S K- A 6 3, A 1 0 0( DI N- 6 9 8 9 3) T o ol H ol d er F or m A
C o m p ar e d t o t h e st e e p t a p er t h e H S K h a s t h e f oll o wi n g a d v a nt a g e s Hi g h r e p etiti o n a c c ur a c y w h e n cl a m pi n g t o ol s i nt o s pi n dl e S uit a bl e f or hi g h s p e e d c utti n g N o p ull st u d n e c e s s ar y
M at eri al
S p e ci al C a st- h ar d e ni n g st e el f or hi g hl y str e s s e d p art s S urf a c e h ar d n e s s 5 8- 2 H R C
SI Z E H S K 63
Ø D1 63
Ø D2 53
T e n sil e str e n gt h i n c or e mi n. 1 0 0 0 N / m m 2
Ø D3 4 6. 5 3
Ø D4 48
L1 58
L2 16
L3 26
L4 1 4. 7
L5 6. 3
DI N 6 9 8 9 3
H S K- A 6 3, A 1 0 0( DI N 6 9 8 9 3 A) E R C oll et C h u c k s
DI N 6 9 8 9 3 A
L6 1 2. 5 4
1 0 0 0 0 R. P. M. G 6. 3
C a uti o n: E x c e s si v e t or q u e will d a m a g e t h e c h u c k, n ut or c oll et. O R D E R N O.
L
H S K- A 6 3- E R 1 6- 1 0 0 H S K- A 6 3- E R 1 6- 1 5 0 H S K- A 6 3- E R 2 0- 1 0 0 H S K- A 6 3- E R 2 0- 1 5 0 H S K- A 6 3- E R 2 5- 1 0 0 H S K- A 6 3- E R 2 5- 1 5 0 H S K- A 6 3- E R 3 2- 1 0 0 H S K- A 6 3- E R 3 2- 1 5 0 H S K- A 6 3- E R 4 0- 1 0 0 H S K- A 6 3- E R 4 0- 1 5 0 H S K- A 1 0 0- E R 1 6- 1 0 0 H S K- A 1 0 0- E R 1 6- 1 5 0 H S K- A 1 0 0- E R 2 0- 1 0 0 H S K- A 1 0 0- E R 2 0- 1 5 0 H S K- A 1 0 0- E R 2 5- 1 0 0 H S K- A 1 0 0- E R 2 5- 1 5 0 H S K- A 1 0 0- E R 3 2- 1 0 0 H S K- A 1 0 0- E R 3 2- 1 5 0 H S K- A 1 0 0- E R 4 0- 1 0 0 H S K- A 1 0 0- E R 4 0- 1 5 0
100 150 100 150 100 150 100 150 100 150 100 150 100 150 100 150 100 150 100 150
Ø D
Ød R A N GE
W EI G H T ( k g s) 1. 0 7 1. 3 3 1. 0 7 1. 4 7 1. 2 9 1. 8 0 1. 4 8 2. 1 6 1. 5 6 2. 2 7 2. 3 2. 5 2. 4 2. 7 2. 6 4 3. 2 2. 8 3. 6 7 3. 1 4. 2
C O D E N O.
30
0. 5- 1 0
35
1. 0- 1 3
42
1. 0- 1 6
50
2. 0- 2 0
63
3. 0- 2 6
30
0. 5- 1 0
35
1. 0- 1 3
42
1. 0- 1 6
50
2. 0- 2 0
63
3. 0- 2 6
Ød W EI G H T R A N GE ( k g s) 2- 2 5 1. 6
C O DE N O. 3 2 1 7- 1 2 1
3 2 1 7- 1 0 0 3 2 1 7- 1 0 1 3 2 1 7- 1 0 2 3 2 1 7- 1 0 3 3 2 1 7- 1 0 4 3 2 1 7- 1 0 5 3 2 1 7- 1 0 6 3 2 1 7- 1 0 7 3 2 1 7- 1 0 8 3 2 1 7- 1 0 9 3 2 1 7- 1 1 0 3 2 1 7- 1 1 1 3 2 1 7- 1 1 2 3 2 1 7- 1 1 3 3 2 1 7- 1 1 4 3 2 1 7- 1 1 5 3 2 1 7- 1 1 6 3 2 1 7- 1 1 7 3 2 1 7- 1 1 8 3 2 1 7- 1 1 9
H S K- A 6 3, A 1 0 0( DI N 6 9 8 9 3 A) O Z C oll et C h u c k s
DI N 6 9 8 9 3 A
d
1 0 0 0 0 R. P. M. G 6. 3 D
L
O R D E R N O.
L
Ø D
H S K- A 6 3- O Z 2 5- 1 0 0
100
60
H S K- A 6 3- O Z 3 2- 1 2 0
120
78
4- 3 2
2. 3
3 2 1 7- 1 2 2
H S K- A 1 0 0- O Z 2 5- 1 0 0
100
60
2- 2 5
2. 9
3 2 1 7- 1 2 3
H S K- A 1 0 0- O Z 3 2- 1 2 0
120
78
4- 3 2
3. 6
3 2 1 7- 1 2 4
H S K- A 6 3, A 1 0 0 M or s e T a p er H ol d er s
DI N 6 9 8 9 2 A
1 0 0 0 0 R. P. M. G 6. 3 L
C65
T O O LI N G S Y S T E M
O R D E R N O. H S K- A 6 3- M T A 1- 1 0 0 H S K- A 6 3- M T A 2- 1 2 0 H S K- A 6 3- M T A 3- 1 4 0 H S K- A 6 3- M T A 4- 1 6 0 H S K- A 1 0 0- M T A 1- 1 1 0 H S K- A 1 0 0- M T A 2- 1 2 0 H S K- A 1 0 0- M T A 3- 1 5 0 H S K- A 1 0 0- M T A 4- 1 7 0 H S K- A 1 0 0- M T A 5- 2 0 0
M T N O. 1 2 3 4 1 2 3 4 5
DI N 6 9 8 9 2 A L 100 120 140 160 100 120 140 160 200
Ø D 25 35 40 50 25 35 40 50 65
kgs 1 1. 3 1. 6 2. 2 2. 2 2. 5 2. 9 3. 5 5. 3
C O D E N O. 3 2 1 7- 1 3 0 3 2 1 7- 1 3 1 3 2 1 7- 1 3 2 3 2 1 7- 1 3 3 3 2 1 7- 1 3 4 3 2 1 7- 1 3 5 3 2 1 7- 1 3 6 3 2 1 7- 1 3 7 3 2 1 7- 1 3 8
H S K- A 6 3, A 1 0 0 F a c e Mill H ol d er s 1 0 0 0 0 R. P. M. G 6. 3
O R D E R N O. H S K- A 6 3- F M A 2 5. 4- 6 0 H S K- A 6 3- F M A 2 5. 4- 1 2 0 H S K- A 6 3- F M A 3 1. 7 5- 6 0 H S K- A 6 3- F M A 3 1. 7 5- 1 2 0 H S K- A 6 3- F M A 3 8. 1- 6 0 H S K- A 6 3- F M A 3 8. 1- 1 2 0 H S K- A 1 0 0- F M A 2 5. 4- 6 0 H S K- A 1 0 0- F M A 2 5. 4- 1 2 0 H S K- A 1 0 0- F M A 3 1. 7 5- 6 0 H S K- A 1 0 0- F M A 3 1. 7 5- 1 2 0 H S K- A 1 0 0- F M A 3 8. 1- 6 0 H S K- A 1 0 0- F M A 3 8. 1- 1 2 0 H S K- A 1 0 0- F M A 5 0. 8- 6 0 H S K- A 1 0 0- F M A 5 0. 8- 1 2 0
D d H
K
L
DI N 6 9 8 9 3 A
L Ø d( h 6) Ø D 60 2 5. 4 50 120 60 3 1. 7 5 6 0 120 60 3 8. 1 80 120 60 2 5. 4 50 120 60 3 1. 7 5 6 0 120 60 3 8. 1 80 120 60 5 0. 8 1 0 0 120
H S K- A 6 3, A 1 0 0 F a c e Mill H ol d er s
DI N 6 9 8 9 3 A
1 0 0 0 0 R. P. M. G 6. 3 D d K
H
L
O R D E R N O. H S K- A 6 3- F M B 2 2- 5 0 H S K- A 6 3- F M B 2 2- 1 2 0 H S K- A 6 3- F M B 2 7- 6 0 H S K- A 6 3- F M B 2 7- 1 2 0 H S K- A 6 3- F M B 3 2- 6 0 H S K- A 6 3- F M B 3 2- 1 2 0 H S K- A 6 3- F M B 4 0- 6 0 H S K- A 6 3- F M B 4 0- 1 2 0 H S K- A 1 0 0- F M B 2 2- 5 0 H S K- A 1 0 0- F M B 2 2- 1 2 0 H S K- A 1 0 0- F M B 2 7- 6 0 H S K- A 1 0 0- F M B 2 7- 1 2 0 H S K- A 1 0 0- F M B 3 2- 6 0 H S K- A 1 0 0- F M B 3 2- 1 2 0 H S K- A 1 0 0- F M B 4 0- 6 0 H S K- A 1 0 0- F M B 4 0- 1 2 0
L 50 120 60 120 60 120 60 120 50 120 60 120 60 120 60 120
Ø d( h 6) Ø D
H
K
k g s C O D E N O. 1. 4 3 2 1 7- 1 4 0 5 9. 5 2. 4 3 2 1 7. 1 4 1 1. 6 3 2 1 7- 1 4 2 7 1 2. 7 2. 6 3 2 1 7- 1 4 3 2. 0 3 2 1 7- 1 4 4 9 1 5. 9 3. 0 3 2 1 7- 1 4 5 2. 7 3 2 1 7- 1 4 6 5 9. 5 3. 7 3 2 1 7- 1 4 7 2. 9 3 2 1 7- 1 4 8 7 1 2. 7 3. 9 3 2 1 7- 1 4 9 3. 3 3 2 1 7- 1 5 0 9 4. 3 3 2 1 7- 1 5 1 1 5. 9 4. 1 3 2 1 7- 1 5 2 12 5. 6 3 2 1 7- 1 5 3
20 22 25 20 22 25 28
W
DI N 6 9 8 9 3 A H
K
W
22
48
18
5
10
27
60
20
6
12
32
72
22
7
14
40
80
25
8
16
22
48
18
5
10
27
60
20
6
12
32
72
22
7
14
40
80
25
8
16
k g s C O D E N O. 1. 1 3 2 1 7- 1 5 6 2. 1 3 2 1 7- 1 5 7 1. 5 3 2 1 7- 1 5 8 2. 8 3 2 1 7- 1 5 9 1. 8 3 2 1 7- 1 6 0 3. 8 3 2 1 7- 1 6 1 2. 1 3 2 1 7- 1 6 2 3. 2 3 2 1 7- 1 6 3 2. 5 3 2 1 7- 1 6 4 3. 4 3 2 1 7- 1 6 5 2. 9 3 2 1 7- 1 6 6 4. 3 3 2 1 7- 1 6 7 3. 4 3 2 1 7- 1 6 8 5. 3 3 2 1 7- 1 6 9 3. 6 3 2 1 7- 1 7 0 6. 0 3 2 1 7- 1 7 1
H S K- A 6 3, A 1 0 0 Si d el o c k E n d Mill H ol d er
DI N 6 9 8 9 3 A
DI N 6 9 8 9 3 A
O R D E R N O.
L
Ød Ø D
H S K- A 6 3- S L A 6- 8 0 H S K- A 6 3- S L A 8- 8 0 H S K- A 6 3- S L A 1 0- 8 0 H S K- A 6 3- S L A 1 2- 9 0 H S K- A 6 3- S L A 1 4- 9 0 H S K- A 6 3- S L A 1 6- 1 0 0 H S K- A 6 3- S L A 1 8- 1 0 0 H S K- A 6 3- S L A 2 0- 1 0 0 H S K- A 6 3- S L A 2 5- 1 1 0 H S K- A 6 3- S L A 3 2- 1 1 0 H S K- A 1 0 0- S L A 1 0- 8 0 H S K- A 1 0 0- S L A 1 2- 9 0 H S K- A 1 0 0- S L A 1 6- 1 0 0 H S K- A 1 0 0- S L A 2 0- 1 0 0 H S K- A 1 0 0- S L A 2 5- 1 1 0 H S K- A 1 0 0- S L A 3 2- 1 1 0 H S K- A 1 0 0- S L A 4 0- 1 2 0
80 80 80 90 90 100 100 100 11 0 11 0 80 90 100 100 11 0 11 0 120
6 8 10 12 14 16 18 20 25 32 10 12 16 20 25 32 40
H1
H2
FI G W EI kGg H T
G
25 18 M 6 x 0. 7 5 28 18 M 8 x 1. 0 35 20 M 1 0 x 1. 0 4 2 2 2. 5 M 1 2 x 1. 5 45 23 48 24 M 1 4 x 1. 5 50 52 25 M 1 6 x 1. 5 62 2 5 M 1 8 x 2. 0 24 63 2 8 M 2 0 x 2. 0 35 20 M 1 0 x 1. 0 4 2 2 2. 5 M 1 2 x 1. 5 48 24 M 1 4 x 1. 5 52 25 M 1 6 x 1. 5 64 2 5 M 1 8 x 2. 0 24 72 28 M 2 0 x 2. 0 80 30 32
1
2
1
2
0. 8 0. 9 1. 0 1. 2 1. 3 1. 5 1. 6 1. 7 2. 2 2. 1 2. 4 2. 6 2. 9 3. 0 3. 6 4. 1 4. 7
C O DE N O. 3 2 1 7- 1 8 0 3 2 1 7- 1 8 1 3 2 1 7- 1 8 2 3 2 1 7- 1 8 3 3 2 1 7- 1 8 4 3 2 1 7- 1 8 5 3 2 1 7- 1 8 6 3 2 1 7- 1 8 7 3 2 1 7- 1 8 8 3 2 1 7- 1 8 9 3 2 1 7- 1 9 0 3 2 1 7- 1 9 1 3 2 1 7- 1 9 2 3 2 1 7- 1 9 3 3 2 1 7- 1 9 4 3 2 1 7- 1 9 5 3 2 1 7- 1 9 6
T O O LI N G S Y S T E M
C66
M O RSE TAPE R H OL DE RS
DI N 6 9 8 9 3 A
S K S pri n g C oll et S y st e m
JI S S T D. 1 5 0 0 0 R. P. M.
10 m
SK
A G R A DE
S C M 440 T H E R U N O UT OF A C OLL ETI S 10 . T H E G RI P PI N G R A N G E O F DI A. O V E R 3 M M I S 0. 5 M M T H E G RI P PI N G R A N G E O F DI A. B E L O W 3 M M I S 0. 2 5 M M TYPE W EI G H T ( K G S)
S K- 6 A
S K- 1 0 A
S K- 1 3 A
0. 0 0 5
0. 0 2
0. 0 4 8
O R DE R N O.
Ø D
C A P. m m Ø
C O DE N O.
O R DE R N O.
Ø D
C A P. m m Ø
C O DE N O.
O R DE R N O.
Ø D
C A P. m m Ø
C O DE N O.
I N DI VI D U A L S K 0 6 0 1 A U NI T S K0602 A
2
2- 1. 7 5
3 2 1 8- 4 0 0
S K1001 A
2
2- 1. 7 5
3 2 1 8- 4 1 1 S K 1 3 0 1 A
3
3- 2. 7 5
3 2 1 8- 7 0 0
2. 5
2. 5- 2. 2 5 3 2 1 8- 4 0 1
S K1002 A
2. 5
2. 5- 2. 2 5 3 2 1 8- 4 1 2 S K 1 3 0 2 A
3. 5
3. 5- 3
3 2 1 8- 7 0 1
S K0603 A
3
3- 2. 7 5
3 2 1 8- 4 0 2
S K1003 A
3
3- 2. 7 5
3 2 1 8- 4 1 3 S K 1 3 0 3 A
4
4- 3. 5
3 2 1 8- 7 0 2
S K0604 A
3. 5
3. 5- 3
3 2 1 8- 4 0 3
S K1004 A
3. 1 7 5 3. 1 7 5- 2. 7 3 2 1 8- 4 1 4 S K 1 3 0 4 A
4. 5
4. 5- 4
3 2 1 8- 7 0 3
S K0605 A
4
4- 3. 5
3 2 1 8- 4 0 4
S K1005 A
3. 5
3. 5- 3
3 2 1 8- 4 1 5 S K 1 3 0 5 A
5
5- 4. 5
3 2 1 8- 7 0 4
S K0606 A
4. 5
4. 5- 4
3 2 1 8- 4 0 5
S K1006 A
4
4- 3. 5
3 2 1 8- 4 1 6 S K 1 3 0 6 A
5. 5
5. 5- 5
3 2 1 8- 7 0 5
S K0607 A
5
5- 4. 5
3 2 1 8- 4 0 6
S K1007 A
4. 5
4. 5- 4
3 2 1 8- 4 1 7 S K 1 3 0 7 A
6
6- 5. 5
3 2 1 8- 7 0 6
S K0608 A
5. 5
5. 5- 5
3 2 1 8- 4 0 7
S K1008 A
5
5- 4. 5
3 2 1 8- 4 1 8 S K 1 3 0 8 A
6. 5
6. 5- 6
3 2 1 8- 7 0 7
S K0609 A
6
6- 5. 5
3 2 1 8- 4 0 8
S K1009 A
5. 5
5. 5- 5
3 2 1 8- 4 1 9 S K 1 3 0 9 A
7
7- 6. 5
3 2 1 8- 7 0 8
S K1010 A
6
6- 5. 5
3 2 1 8- 4 2 0 S K 1 3 0 1 0 A
7. 5
7. 5- 7
3 2 1 8- 7 0 9
S K1011 A
6. 5
6. 5- 6
3 2 1 8- 4 2 1 S K 1 3 0 1 1 A
8
8- 7. 5
3 2 1 8- 7 1 0
S K1012 A
7
7- 6. 5
3 2 1 8- 4 2 2 S K 1 3 0 1 2 A
8. 5
8. 5- 8
3 2 1 8- 7 1 1
S K1013 A
7. 5
7. 5- 7
3 2 1 8- 4 2 3 S K 1 3 0 1 3 A
9
9- 8. 5
3 2 1 8- 7 1 2
S K1014 A
8
8- 7. 5
3 2 1 8- 4 2 4 S K 1 3 0 1 4 A
9. 5
9. 5- 9
3 2 1 8- 7 1 3
S K1015 A
8. 5
8. 5- 8
3 2 1 8- 4 2 5 S K 1 3 0 1 5 A
10
1 0- 9. 5
3 2 1 8- 7 1 4
S K1016 A
9
9- 8. 5
3 2 1 8- 4 2 6 S K 1 3 0 1 6 A
1 0. 5
1 0. 5- 1 0
3 2 1 8- 7 1 5
S K1017 A
9. 5
9. 5- 9
3 2 1 8- 4 2 7 S K 1 3 0 1 7 A
11
1 1- 1 0. 5
3 2 1 8- 7 1 6
S K1018 A
10
1 0- 9. 5
3 2 1 8- 4 2 8 S K 1 3 0 1 8 A
1 1. 5
1 1. 5- 1 1
3 2 1 8- 7 1 7
S K13019 A
12
1 2- 1 1. 5
3 2 1 8- 7 1 8
S K13020 A
1 2. 5
1 2. 5- 1 2
3 2 1 8- 7 1 9
S K13021 A
13
1 3- 1 2. 5
3 2 1 8- 7 2 0
C67
TYPE
D
L
W EI G H T ( k g s)
S K6
1 0. 5
25
0. 0 0 5
S K10
1 5. 5
3 0. 5
0. 0 2
S K13
20
39
0. 0 4 8
S K16
2 4. 5
45
0. 0 8
S K20
2 8. 5
54
0. 1 3 5
S K25
3 5. 5
57
0. 2 0 5
T O O LI N G S Y S T E M
S K S pri n g C oll et S y st e m 10 m
JI S S T D. 1 5 0 0 0 R. P. M.
SK
A G R A DE
TYPE W EI G H T ( K G S)
S K- 1 6 A
S K- 2 0 A
S K- 2 5 A
0. 0 8
0. 1 3 5
0. 2 0 5
O R DE R N O.
Ø D
C A P. m m Ø
C O DE N O.
O R DE R N O.
Ø D
C A P. m m Ø
C O DE N O.
O R DE R N O.
Ø D
C A P. m m Ø
C O DE N O.
I N DI VI D U A L S K 1 6 0 1 A U NI T S K1602 A
3
3- 2. 7 5
3 2 1 8- 4 3 0
S K2001 A
3
3- 2. 7 5
3 2 1 8- 4 6 0
S K2501 A
6
6- 5. 5
3 2 1 8- 4 7 0
3. 1 7 5 3. 1 7 5- 2. 7 3 2 1 8- 4 3 1
S K2002 A
4
4- 3. 5
3 2 1 8- 4 6 1
S K2502 A
8
8- 7. 5
3 2 1 8- 4 7 1
S K1603 A
3. 5
3. 5- 3
3 2 1 8- 4 3 2
S K2003 A
6
6- 5. 5
3 2 1 8- 4 6 2
S K2503 A
10
1 0- 9. 5
3 2 1 8- 4 7 2
S K1604 A
4
4- 3. 5
3 2 1 8- 4 3 3
S K2004 A
8
8- 7. 5
3 2 1 8- 4 6 3
S K2504 A
12
1 2- 1 1. 5
3 2 1 8- 4 7 3
S K1605 A
4. 5
4. 5- 4
3 2 1 8- 4 3 4
S K2005 A
10
1 0- 9. 5
3 2 1 8- 4 6 4
S K2505 A
14
1 4- 1 3. 5
3 2 1 8- 4 7 4
S K1606 A
5
5- 4. 5
3 2 1 8- 4 3 5
S K2006 A
12
1 2- 1 1. 5
3 2 1 8- 4 6 5
S K2506 A
16
1 6- 1 5. 5
3 2 1 8- 4 7 5
S K1607 A
5. 5
5. 5- 5
3 2 1 8- 4 3 6
S K2007 A
16
1 6- 1 5. 5
3 2 1 8- 4 6 6
S K2507 A
18
1 8- 1 7. 5
3 2 1 8- 4 7 6
S K1608 A
6
6- 5. 5
3 2 1 8- 4 3 7
S K2008 A
20
2 0- 1 9. 5
3 2 1 8- 4 6 7
S K2508 A
20
2 0- 1 9. 5
3 2 1 8- 4 7 7
S K1609 A
6. 5
6. 5- 6
3 2 1 8- 4 3 8
S K2509 A
22
2 2- 2 1. 5
3 2 1 8- 4 7 8
S K1610 A
7
7- 6. 5
3 2 1 8- 4 3 9
S K2510 A
24
2 4- 2 3. 5
3 2 1 8- 4 7 9
S K1611 A
7. 5
7. 5- 7
3 2 1 8- 4 4 0
S K2511 A
25
2 5- 2 4. 5
3 2 1 8- 4 8 0
S K1612 A
8
8- 7. 5
3 2 1 8- 4 4 1
S K2512 A
2 5. 4
2 5. 4- 2 5
3 2 1 8- 4 8 1
S K1613 A
8. 5
8. 5- 8
3 2 1 8- 4 4 2
S K1614 A
9
9- 8. 5
3 2 1 8- 4 4 3
S K1615 A
9. 5
9. 5- 9
3 2 1 8- 4 4 4
S K1616 A
10
1 0- 9. 5
3 2 1 8- 4 4 5
S K1617 A
1 0. 5
1 0. 5- 1 0
3 2 1 8- 4 4 6
S K1618 A
11
1 1- 1 0. 5
3 2 1 8- 4 4 7
S K1619 A
1 1. 5
1 1. 5- 1 1
3 2 1 8- 4 4 8
S K1620 A
12
1 2- 1 1. 5
3 2 1 8- 4 4 9
S K1621 A
1 2. 5
1 2. 5- 1 2
3 2 1 8- 4 5 0
S K1622 A
13
1 3- 1 2. 5
3 2 1 8- 4 5 1
S K1623 A
1 3. 5
1 3. 5- 1 3
3 2 1 8- 4 5 2
S K1624 A
14
1 4- 1 3. 5
3 2 1 8- 4 5 3
S K1625 A
1 4. 5
1 4. 5- 1 4
3 2 1 8- 4 5 4
S K1626 A
15
1 5- 1 4. 5
3 2 1 8- 4 5 5
S K1627 A
1 5. 5
1 5. 5- 1 5
3 2 1 8- 4 5 6
S K1628 A
16
1 6- 1 5. 5
3 2 1 8- 4 5 7
T O O LI N G S Y S T E M
C68
S K CI L L E T
S C M 440 T H E R U N O UT OF A C OLL ETI S 10 . T H E G RI P PI N G R A N G E O F DI A. O V E R 3 M M I S 0. 5 M M T H E G RI P PI N G R A N G E O F DI A. B E L O W 3 M M I S 0. 2 5 M M
S K S pri n g C oll et S y st e m
JI S S T D. 1 5 0 0 0 R. P. M.
5 m
SK
A A G R A DE
S C M 440 T H E R U N O U T O F A A C OLL E TI S 5 . T H E G RI P PI N G R A N G E O F DI A. O V E R 3 M M I S 0. 5 M M T H E G RI P PI N G R A N G E O F DI A. B E L O W 3 M M I S 0. 2 5 M M TYPE W EI G H T ( K G S) O R DE R N O.
S K- 6 A A
S K- 1 0 A A
S K- 1 3 A A
0. 0 0 5
0. 0 2
0. 0 4 8
Ø D
C A P. m m Ø
C O DE N O.
O R DE R N O.
Ø D
C A P. m m Ø
C O DE N O.
O R DE R N O.
Ø D
C A P. m m Ø
C O DE N O.
I N DI VI D U A L S K 0 6 0 1 A A U NI T S K0602 A A
2
2- 1. 7 5
3 2 1 8- 5 0 0 S K 1 0 0 1 A A
2
2- 1. 7 5
3 2 1 8- 5 1 1
S K1301 A A
3
3- 2. 7 5
3 2 1 8- 7 3 0
2. 5
2. 5- 2. 2 5
3 2 1 8- 5 0 1 S K 1 0 0 2 A A
2. 5
2. 5- 2. 2 5
3 2 1 8- 5 1 2
S K1302 A A
3. 5
3. 5- 3
3 2 1 8- 7 3 1
S K0603 A A
3
3- 2. 7 5
3 2 1 8- 5 0 2 S K 1 0 0 3 A A
3
3- 2. 7 5
3 2 1 8- 5 1 3 S K 1 3 0 3 A A
4
4- 3. 5
3 2 1 8- 7 3 2
S K0604 A A
3. 5
3. 5- 3
3 2 1 8- 5 0 3 S K 1 0 0 4 A A 3. 1 7 5 3. 1 7 5- 2. 7 3 2 1 8- 5 1 4 S K 1 3 0 4 A A
4. 5
4. 5- 4
3 2 1 8- 7 3 3
S K0605 A A
4
4- 3. 5
3 2 1 8- 5 0 4 S K 1 0 0 5 A A
3. 5
3. 5- 3
3 2 1 8- 5 1 5 S K 1 3 0 5 A A
5
5- 4. 5
3 2 1 8- 7 3 4
S K0606 A A
4. 5
4. 5- 4
3 2 1 8- 5 0 5 S K 1 0 0 6 A A
4
4- 3. 5
3 2 1 8- 5 1 6 S K 1 3 0 6 A A
5. 5
5. 5- 5
3 2 1 8- 7 3 5
S K0607 A A
5
5- 4. 5
3 2 1 8- 5 0 6 S K 1 0 0 7 A A
4. 5
4. 5- 4
3 2 1 8- 5 1 7 S K 1 3 0 7 A A
6
6- 5. 5
3 2 1 8- 7 3 6
S K0608 A A
5. 5
5. 5- 5
3 2 1 8- 5 0 7 S K 1 0 0 8 A A
5
5- 4. 5
3 2 1 8- 5 1 8 S K 1 3 0 8 A A
6. 5
6. 5- 6
3 2 1 8- 7 3 7
S K0609 A A
6
6- 5. 5
3 2 1 8- 5 0 8 S K 1 0 0 9 A A
5. 5
5. 5- 5
3 2 1 8- 5 1 9 S K 1 3 0 9 A A
7
7- 6. 5
3 2 1 8- 7 3 8
S K1010 A A
6
6- 5. 5
3 2 1 8- 5 2 0 S K 1 3 0 1 0 A A
7. 5
7. 5- 7
3 2 1 8- 7 3 9
S K1011 A A
6. 5
6. 5- 6
3 2 1 8- 5 2 1 S K 1 3 0 1 1 A A
8
8- 7. 5
3 2 1 8- 7 4 0
S K1012 A A
7
7- 6. 5
3 2 1 8- 5 2 2 S K 1 3 0 1 2 A A
8. 5
8. 5- 8
3 2 1 8- 7 4 1
S K1013 A A
7. 5
7. 5- 7
3 2 1 8- 5 2 3 S K 1 3 0 1 3 A A
9
9- 8. 5
3 2 1 8- 7 4 2
S K1014 A A
8
8- 7. 5
3 2 1 8- 5 2 4 S K 1 3 0 1 4 A A
9. 5
9. 5- 9
3 2 1 8- 7 4 3
S K1015 A A
8. 5
8. 5- 8
3 2 1 8- 5 2 5 S K 1 3 0 1 5 A A
10
1 0- 9. 5
3 2 1 8- 7 4 4
S K1016 A A
9
9- 8. 5
3 2 1 8- 5 2 6 S K 1 3 0 1 6 A A
1 0. 5
1 0. 5- 1 0
3 2 1 8- 7 4 5
S K1017 A A
9. 5
9. 5- 9
3 2 1 8- 5 2 7 S K 1 3 0 1 7 A A
11
1 1- 1 0. 5
3 2 1 8- 7 4 6
S K1018 A A
10
1 0- 9. 5
3 2 1 8- 5 2 8 S K 1 3 0 1 8 A A
1 1. 5
1 1. 5- 1 1
3 2 1 8- 7 4 7
S K13019 A A
12
1 2- 1 1. 5
3 2 1 8- 7 4 8
S K13020 A A
1 2. 5
1 2. 5- 1 2
3 2 1 8- 7 4 9
S K13021 A A
13
1 3- 1 2. 5
3 2 1 8- 7 5 0
C69
T O O LI N G S Y S T E M
S K S pri n g C oll et S y st e m 5 m
JI S S T D. 1 5 0 0 0 R. P. M.
SK
A A G R A DE
TYPE W EI G H T ( K G S) O R DE R N O.
S K- 1 6 A A
S K- 2 0 A A
S K- 2 5 A A
0. 0 8
0. 1 3 5
0. 2 0 5
Ø D
C A P. m m Ø
C O DE N O.
O R DE R N O.
3 3- 2. 7 5 3 2 1 8- 5 3 0 S K 2 0 0 1 A A I N DI VI D U A L S K 1 6 0 1 A A U NI T S K 1 6 0 2 A A 3. 1 7 5 3. 1 7 5- 2. 7 3 2 1 8- 5 3 1 S K 2 0 0 2 A A
Ø D
C A P. m m Ø
C O DE N O.
Ø D
C A P. m m Ø
C O DE N O.
3
3- 2. 7 5
3 2 1 8- 5 6 0 S K 2 5 0 1 A A
6
6- 5. 5
3 2 1 8- 5 7 0
4
4- 3. 5
3 2 1 8- 5 6 1 S K 2 5 0 2 A A
8
8- 7. 5
3 2 1 8- 5 7 1
O R DE R N O.
S K1603 A A
3. 5
3. 5- 3
3 2 1 8- 5 3 2 S K 2 0 0 3 A A
6
6- 5. 5
3 2 1 8- 5 6 2 S K 2 5 0 3 A A
10
1 0- 9. 5
3 2 1 8- 5 7 2
S K1604 A A
4
4- 3. 5
3 2 1 8- 5 3 3 S K 2 0 0 4 A A
8
8- 7. 5
3 2 1 8- 5 6 3 S K 2 5 0 4 A A
12
1 2- 1 1. 5
3 2 1 8- 5 7 3
S K1605 A A
4. 5
4. 5- 4
3 2 1 8- 5 3 4 S K 2 0 0 5 A A
10
1 0- 9. 5
3 2 1 8- 5 6 4 S K 2 5 0 5 A A
14
1 4- 1 3. 5
3 2 1 8- 5 7 4
S K1606 A A
5
5- 4. 5
3 2 1 8- 5 3 5 S K 2 0 0 6 A A
12
1 2- 1 1. 5
3 2 1 8- 5 6 5 S K 2 5 0 6 A A
16
1 6- 1 5. 5
3 2 1 8- 5 7 5
S K1607 A A
5. 5
5. 5- 5
3 2 1 8- 5 3 6 S K 2 0 0 7 A A
16
1 6- 1 5. 5
3 2 1 8- 5 6 6 S K 2 5 0 7 A A
18
1 8- 1 7. 5
3 2 1 8- 5 7 6
S K1608 A A
6
6- 5. 5
3 2 1 8- 5 3 7 S K 2 0 0 8 A A
20
2 0- 1 9. 5
3 2 1 8- 5 6 7 S K 2 5 0 8 A A
20
2 0- 1 9. 5
3 2 1 8- 5 7 7
S K1609 A A
6. 5
6. 5- 6
3 2 1 8- 5 3 8
S K2509 A A
22
2 2- 2 1. 5
3 2 1 8- 5 7 8
S K1610 A A
7
7- 6. 5
3 2 1 8- 5 3 9
S K2510 A A
24
2 4- 2 3. 5
3 2 1 8- 5 7 9
S K1611 A A
7. 5
7. 5- 7
3 2 1 8- 5 4 0
S K2511 A A
25
2 5- 2 4. 5
3 2 1 8- 5 8 0
S K1612 A A
8
8- 7. 5
3 2 1 8- 5 4 1
S K2512 A A
2 5. 4
2 5. 4- 2 5
3 2 1 8- 5 8 1
S K1613 A A
8. 5
8. 5- 8
3 2 1 8- 5 4 2
S K1614 A A
9
9- 8. 5
3 2 1 8- 5 4 3
S K1615 A A
9. 5
9. 5- 9
3 2 1 8- 5 4 4
S K1616 A A
10
1 0- 9. 5
3 2 1 8- 5 4 5
S K1617 A A
1 0. 5
1 0. 5- 1 0
3 2 1 8- 5 4 6
S K1618 A A
11
1 1- 1 0. 5
3 2 1 8- 5 4 7
S K1619 A A
1 1. 5
1 1. 5- 1 1
3 2 1 8- 5 4 8
S K1620 A A
12
1 2- 1 1. 5
3 2 1 8- 5 4 9
S K1621 A A
1 2. 5
1 2. 5- 1 2
3 2 1 8- 5 5 0
S K1622 A A
13
1 3- 1 2. 5
3 2 1 8- 5 5 1
S K1623 A A
1 3. 5
1 3. 5- 1 3
3 2 1 8- 5 5 2
S K1624 A A
14
1 4- 1 3. 5
3 2 1 8- 5 5 3
S K1625 A A
1 4. 5
1 4. 5- 1 4
3 2 1 8- 5 5 4
S K1626 A A
15
1 5- 1 4. 5
3 2 1 8- 5 5 5
S K1627 A A
1 5. 5
1 5. 5- 1 5
3 2 1 8- 5 5 6
S K1628 A A
16
1 6- 1 5. 5
3 2 1 8- 5 5 7
T O O LI N G S Y S T E M
C70
S K CI L L E T
S C M 440 T H E R U N O U T O F A A C OLL E TI S 5 . T H E G RI P PI N G R A N G E O F DI A. O V E R 3 M M I S 0. 5 M M T H E G RI P PI N G R A N G E O F DI A. B E L O W 3 M M I S 0. 2 5 M M
B T- S K C oll et C h u c k S y st e m A A
JI S S T D.
T H E S K C H U C K I S A C C O R DI N G T O T H E D E SI G N O F A N G E L 8 WI T H HI G H A C C U R A C Y A N D HI G H G RI P PI N G R A N G E. T H E G RI P PI N G T O R Q U E I S HI G H E R T H A N S T A N D A R D E R C H U C K. T H E D Y N A MI C B A L A N C E O F S K C H U C K C A N B E R E A C H E D 1 5 0 0 0 R P M X 2. 5 G.
D
L1
SK
1 5 0 0 0 R. P. M. 2. 5 G
L
O R DE R N O. S K B- 2 0 1 S K B- 2 0 2 S K B- 2 0 3 S K B- 2 0 4 S K B- 2 0 5 S K B- 2 0 6 S K B- 2 0 7 S K B- 2 0 8 S K B- 2 0 9 S K B- 2 1 0 S K B- 2 1 1 S K B- 2 1 2 S K B- 2 1 3 S K B- 2 1 4 S K B- 2 1 5 S K B- 2 1 6 S K B- 2 1 7 S K B- 2 1 8 S K B- 2 1 9 S K B- 2 2 1 S K B- 2 2 2 S K B- 2 2 3 S K B- 2 2 4 S K B- 2 2 5 S K B- 2 2 6 S K B- 2 2 7 S K B- 2 2 8 S K B- 2 2 9 S K B- 2 3 0 S K B- 2 3 1 S K B- 2 3 2 S K B- 2 3 3 S K B- 2 3 4 S K B- 2 3 5 S K B- 2 3 6 S K B- 2 3 7
C OLLET C OLLET TYPE SI Z E B T- 3 0- S K 6- 6 0 S K6 2- 6 B T- 3 0- S K 6- 9 0 S K6 2- 6 B T- 3 0- S K 1 0- 6 0 S K10 2- 1 0 B T- 3 0- S K 1 0- 9 0 S K10 2- 1 0 B T- 3 0- S K 1 6- 6 0 S K16 3- 1 6 B T- 3 0- S K 1 6- 9 0 S K16 3- 1 6 B T- 4 0- S K 6- 6 0 S K6 2- 6 B T- 4 0- S K 6- 9 0 S K6 2- 6 B T- 4 0- S K 6- 1 2 0 S K6 2- 6 B T- 4 0- S K 1 0- 6 0 S K10 2- 1 0 B T- 4 0- S K 1 0- 9 0 S K10 2- 1 0 B T- 4 0- S K 1 0- 1 2 0 S K10 2- 1 0 B T- 4 0- S K 1 0- 1 5 0 S K10 2- 1 0 B T- 4 0- S K 1 6- 6 0 S K16 3- 1 6 B T- 4 0- S K 1 6- 9 0 S K16 3- 1 6 B T- 4 0- S K 1 6- 1 2 0 S K16 3- 1 6 B T- 4 0- S K 1 6- 1 5 0 S K16 3- 1 6 B T- 4 0- S K 2 0- 6 0 S K20 3- 2 0 B T- 4 0- S K 2 0- 9 0 S K20 3- 2 0 B T- 4 0- S K 2 0- 1 5 0 S K20 3- 2 0 B T- 4 0- S K 2 5- 8 0 S K25 6- 2 5 B T- 4 0- S K 2 5- 1 0 0 S K25 6- 2 5 B T- 5 0- S K 6- 1 0 0 S K6 2- 6 B T- 5 0- S K 6- 1 5 0 S K6 2- 6 B T- 5 0- S K 1 0- 1 0 0 S K10 2- 1 0 B T- 5 0- S K 1 0- 1 5 0 S K10 2- 1 0 B T- 5 0- S K 1 6- 1 0 0 S K16 3- 1 6 B T- 5 0- S K 1 6- 1 5 0 S K16 3- 1 6 B T- 5 0- S K 2 0- 1 0 0 S K20 3- 2 0 B T- 5 0- S K 2 0- 1 5 0 S K20 3- 2 0 B T- 5 0- S K 2 5- 1 0 0 S K25 6- 2 5 B T- 5 0- S K 2 5- 1 5 0 S K25 6- 2 5 B T- 4 0- S K 1 3- 6 0 L S K13 3- 1 3 B T- 4 0- S K 1 3- 9 0 L S K13 3- 1 3 B T- 4 0- S K 1 3- 1 2 0 L S K13 3- 1 3 B T- 4 0- S K 1 3- 1 5 0 L S K13 3- 1 3 BT TYPE
D
L
L1
20 20 28 28 40 40 20 20 20 28 28 28 28 40 40 40 40 50 50 50 55 55 20 20 28 28 40 40 50 50 55 55 33 33 33 33
60 90 60 90 60 90 60 90 120 60 90 120 150 60 90 120 150 60 90 150 80 100 100 150 100 150 100 150 100 150 100 150 60 90 120 150
38 68 38 68 38 68 33 63 93 33 63 93 123 33 63 93 123 33 63 123 53 73 62 11 2 62 11 2 62 11 2 62 11 2 62 11 2 33 63 93 123
W EI G H T ( k g s) 0. 5 0. 5 5 0. 5 0. 7 0. 6 0. 7 0. 9 1 1. 2 1 1. 1 1. 2 1. 3 1. 2 1. 3 1. 4 1. 5 1. 2 1. 3 1. 5 1. 5 1. 6 5 3. 6 4 3. 6 4 4 4. 5 4. 3 5. 3 4. 5 5. 5 1. 1 1. 2 1. 3 1. 4
S et Of S K C oll et A n d M A S B T C h u c k D Y N A MI C B A L A N C E T E S T E D
JI S S T D.
C O D E N O. 3 2 1 8- 6 0 0 3 2 1 8- 6 0 1 3 2 1 8- 6 0 2 3 2 1 8- 6 0 3 3 2 1 8- 6 0 4 3 2 1 8- 6 0 5 3 2 1 8- 6 0 6 3 2 1 8- 6 0 7 3 2 1 8- 6 0 8 3 2 1 8- 6 0 9 3 2 1 8- 6 1 0 3 2 1 8- 6 1 1 3 2 1 8- 6 1 2 3 2 1 8- 6 1 3 3 2 1 8- 6 1 4 3 2 1 8- 6 1 5 3 2 1 8- 6 1 6 3 2 1 8- 6 1 7 3 2 1 8- 6 1 8 3 2 1 8- 6 2 0 3 2 1 8- 6 2 1 3 2 1 8- 6 2 2 3 2 1 8- 6 2 3 3 2 1 8- 6 2 4 3 2 1 8- 6 2 5 3 2 1 8- 6 2 6 3 2 1 8- 6 2 7 3 2 1 8- 6 2 8 3 2 1 8- 6 2 9 3 2 1 8- 6 3 0 3 2 1 8- 6 3 1 3 2 1 8- 6 3 2 3 2 1 8- 6 3 3 3 2 1 8- 6 3 4 3 2 1 8- 6 3 5 3 2 1 8- 6 3 6
1 5 0 0 0 R. P. M.
A A
S K C OLLET SET
M E T RI C R A N G E S E T SI Z E S K 0 6/ 5 p c s : Ø 2, 3, 4, 5, 6 S K 1 0/ 8 p c s : Ø 3, 4, 5, 6, 7, 8, 9, 1 0 S K 1 6/ 8 p c s : Ø 3, 4, 6, 8, 1 0, 1 2, 1 4, 1 6 S K 2 0/ 8 p c s : Ø 3, 4, 6, 8, 1 0, 1 2, 1 6, 2 0 S K 2 5/ 7 p c s : Ø 6, 8, 1 0, 1 2, 1 6, 2 0, 2 5
C71
T O O LI N G S Y S T E M
O R DE R N O. S K B- 3 0 1 S K B- 3 0 2 S K B- 3 0 3 S K B- 3 0 4 S K B- 3 0 5 S K B- 3 0 6 S K B- 3 0 7 S K B- 3 0 8 S K B- 3 0 9 S K B- 3 1 0 S K B- 3 1 1 S K B- 3 1 2 S K B- 3 1 3 S K B- 3 1 4 S K B- 3 1 5
BT TYPE B T- 3 0- S K 6- 6 0 L B T- 3 0- S K 6- 9 0 L B T- 3 0- S K 1 0- 6 0 L B T- 3 0- S K 1 0- 9 0 L B T- 3 0- S K 1 6- 6 0 L B T- 3 0- S K 1 6- 9 0 L B T- 4 0- S K 6- 6 0 L B T- 4 0- S K 6- 9 0 L B T- 4 0- S K 1 0- 6 0 L B T- 4 0- S K 1 0- 9 0 L B T- 4 0- S K 1 6- 6 0 L B T- 4 0- S K 1 6- 9 0 L B T- 4 0- S K 2 0- 6 0 L B T- 4 0- S K 2 0- 9 0 L B T- 4 0- S K 2 5- 8 0 L
C OLLET SET TYPE R A N GE S K6 2- 6 S K6 2- 6 S K10 3- 1 0 S K10 3- 1 0 S K16 3- 1 6 S K16 3- 1 6 S K6 2- 6 S K6 2- 6 S K10 3- 1 0 S K10 3- 1 0 S K16 3- 1 6 S K16 3- 1 6 S K20 4- 2 0 S K20 4- 2 0 S K25 6- 2 5
C O L L E T W EI G H T P CS ( k g) 5 1. 3 5 1. 4 5 8 1. 7 8 1. 9 8 2. 5 8 2. 8 5 2. 1 5 2. 3 8 2. 6 8 2. 8 8 3 8 3. 3 8 3. 8 8 4. 1 7 4. 5
C O D E N O. 3 2 1 8- 6 4 0 3 2 1 8- 6 4 1 3 2 1 8- 6 4 2 3 2 1 8- 6 4 3 3 2 1 8- 6 4 4 3 2 1 8- 6 4 5 3 2 1 8- 6 4 6 3 2 1 8- 6 4 7 3 2 1 8- 6 4 8 3 2 1 8- 6 4 9 3 2 1 8- 6 5 0 3 2 1 8- 6 5 1 3 2 1 8- 6 5 2 3 2 1 8- 6 5 3 3 2 1 8- 6 5 4
S T- S K Str ai g ht C h u c k
JI S S T D.
1 5 0 0 0 R. P. M.
SK
D
O R D E R N O.
TYPE
C OLLET
D
L
L1
W EI G H T( k g)
C O D E N O.
S K S- 2 1 0
S T- 2 0- S K 6- 1 0 0
S K6
20
100
20
0. 2 5
3 2 1 8- 6 6 0
S K S- 2 1 1
S T- 2 0- S K 6- 1 5 0
S K6
20
150
20
0. 3
3 2 1 8- 6 6 1
S K S- 2 1 2
S T- 2 0- S K 1 0- 1 0 0
S K10
28
100
20
0. 3
3 2 1 8- 6 6 2
S K S- 2 1 3
S T- 2 0- S K 1 0- 1 5 0
S K10
28
150
20
0. 4 5
3 2 1 8- 6 6 3
S K S- 2 1 4
S T- 2 0- S K 1 0- 2 0 0
S K10
28
200
20
0. 5 5
3 2 1 8- 6 6 4
L
S et Of S K C oll et A n d Str ai g ht C h u c k JI S S T D.
1 5 0 0 0 R. P. M.
SK
S K C OLLET SET M E T RI C R A N G E S E T SI Z E S K 0 6/ 5 p c s : Ø 2, 3, 4, 5, 6 S K 1 0/ 8 p c s :
C O L L E T R AS NE TG E
Ø 3, 4, 5, 6, 7, 8, 9, 1 0
O R DE R N O.
ST TYPE
C O L L E T W EI G H T SET ( k g)
C O DE N O.
S K S- 2 3 1
S T- 2 0- S K 6- 1 0 0
S K6
2- 6
5
0. 7
3 2 1 8- 6 7 0
S K S- 2 3 2
S T- 2 0- S K 6- 1 5 0
S K6
2- 6
5
0. 8
3 2 1 8- 6 7 1
S K S- 2 3 3
S T- 2 0- S K 1 0- 1 0 0
S K10
3- 1 0
8
1. 1
3 2 1 8- 6 7 2
S K S- 2 3 4
S T- 2 0- S K 1 0- 1 5 0
S K10
3- 1 0
8
1. 3
3 2 1 8- 6 7 3
S K N ut A n d Wr e n c h S K N UT SK
O R DE R N O.
FI G C TO YL LP EE T
D
H
W EI G H T ( k g)
C O DE N O.
S K N- 6 0 1
1
S K06
1 9. 5
15
0. 0 5
3 2 1 8- 6 8 0
S K N- 1 0 1
1
S K10
28
17
0. 0 5
3 2 1 8- 6 8 1
S K N- 1 6 1
2
S K16
40
24
0. 0 8
3 2 1 8- 6 8 2
S K N- 2 0 1
2
S K20
50
25
0. 1
3 2 1 8- 6 8 3
S K N- 2 5 1
2
S K25
55
30
0. 1 2
3 2 1 8- 6 8 4
O R DE R N O.
FI G C TO YL LP EE T
A
L
W EI G H T ( k g)
C O DE N O.
S K W- 6 0 1
1
S K06
18
130
0. 0 8
3 2 1 8- 6 9 0
S K W- 1 0 1
1
S K10
25
140
0. 0 8
3 2 1 8- 6 9 1
S K W- 1 6 1
2
S K16
X
195
0. 2
3 2 1 8- 6 9 2
S K W- 2 0 1
2
S K20
X
228
0. 2 2
3 2 1 8- 6 9 3
S K W- 2 5 1
2
S K25
X
228
0. 2 2
3 2 1 8- 6 9 4
S K W RE N C H
T O O LI N G S Y S T E M
C72
S T- S K S T R AI G H T C H U C K
L1
3 D- T a st er
O R D E R N O. V- 3 D
C O D E N O. 3 2 1 9- 0 0 1
Fi n d y o ur e x a ct z er o p oi nt s i n all t hr e e a x e s i n s e c o n d s wit h t h e n e w di st a n c e m e a s uri n g s c al e ( gr a d u at e d a n d a n al o g u e).
20 m m h5
L=123 m m Wit h St a n d ar d St yl u s
S etti n g of N C- pr o gr a m m e z er o p oi nt s i n s e c o n d s.
75m m
33m m
E a s y a n d pr e ci s e c h a n g e of st yl u s. W ei g ht: 0. 9 3 K G S
ø4m m
long
St a n d ar d- St yl u s ø8m m
STYL US
C h a n g e st yl u s i n s e c o n d s E a s y pr e ci si o n pl u g-i n m e c h a ni s m O R D E R N O.
TYPE
W EI G H T
C O D E N O.
V- 3 D- 0 5
ø 4 x 3 3 st a n d ar d st yl u s
10g
3 2 1 9- 0 0 5
TYPE
A C C U R A CY
V- 3 D- 0 6
ø 8 x 7 5 l o n g st yl u s
15g
3 2 1 9- 0 0 6
3 D- T a st er
0. 0 1 m m
K N T T y p e K e yl e s s Drill C h u c k s
F O R D RI L L O N L Y , N O T F O R E N D MI L L O R T A P
T hi s c h u c k f or C N C k e yl e s s drill c h u c k h ol d er s, b uilt b y t h e hi g h e st e n gi n e eri n g st a n d ar d. I nt e gr at e d drill c h u c k a n d h ol d er o n c e er c o m e off. S p e ci al d e si g n e n s ur e s hi g h ri gi dit y. Hi g h s er vi c e r eli a bilit y. E a s y t o o p er at e, l o n g s er vi c e lif e. s ur e t h e hi g h e st a c c ur a c y. 2 5 0 0 R. P. M O R D E R Cl a m pi n g F e F moral e Ø A Ø B N O. C a p a cit y T a p er
C73
T O O LI N G S Y S T E M
K N T- 8
0. 5- 8
K N T- 1 3
0. 5- 1 3
K N T- 1 6
3- 1 6
MT2
30
MT2
30
MT3
38
MT3
43
56
ITE M N O.
Ød m m 3 6 8 5 10 13 5 10 16
K N T- 8 K N T- 1 3 K N T- 1 6
L m m 35 50 55 75 55 80
Max R u n- o ut m m
T or q u e k gf- c m
0. 0 5
160
0. 0 5
320
0. 0 5
480
C ODE N O.
kg
QTY P c s/ C u- Ft
N W/ G W Kgs
M 6 x 1. 0 0. 3
4 0/ 0. 6
1 5/ 1 6 3 0 3 3- 6 0 0
M 8 x 1. 2 5
1
3 0/ 0. 6
3 0/ 3 1
1 1 5 1 2 8 M 8 x 1. 2 5 1. 3
1 8/ 0. 6
2 4/ 2 5 3 0 3 3- 6 0 2
C
D
3 5 8 2. 5 9 0 56
A C C U R A CY
76
101
1 0 6 11 8
E
3 0 3 3- 6 0 1 3 0 3 3- 6 0 1 A
I nt e gr at e d T y p e K e yl e s s Drill C h u c k s
O R D E R N O.
Cl a m pi n g C a p a cit y m m inch
I N T- 8- C A T 3 0
0. 5- 8
1/ 6 4 - 1/ 8
I N T- 1 3- C A T 3 0
0. 5- 1 3
1/ 6 4 - 1/ 2
I N T- 8- C A T 4 0
0. 5- 8
1/ 6 4 - 1/ 8
I N T- 1 3- C A T 4 0
0. 5- 1 3
1/ 6 4 - 1/ 2
I N T- 1 6- C A T 4 0
3- 1 6
1/ 8 - 5/ 8
I N T- 1 3- C A T 5 0
0. 5- 1 3
1/ 6 4 - 1/ 2
I N T- 1 6- C A T 5 0
3- 1 6
1/ 8 - 5/ 8
A C C U R A CY T a p er C AT30
C AT40
C AT50
O UTE R Ø/ m m
W EI G H T ( k g s)
C O D E N O.
Ø35
0. 8
3 3 0 1- 0 7 3
Ø 5 1. 5
1
3 3 0 1- 0 7 4
Ø35
1. 3 2
3 3 0 1- 0 7 5
Ø 5 1. 5
2. 1
3 3 0 1- 0 7 6
Ø58
2. 2 6
3 3 0 1- 0 7 7
Ø 5 1. 5
3. 9 5
3 3 0 1- 0 7 8
Ø58
4. 2
3 3 0 1- 0 7 9
ITE M N O.
I N T- 8 I N T- 1 0 I N T- 1 3 I N T- 1 6
d
L m m
m m 3 6 8 3 6 10 5 10 13 5 10 16
Max T ol er a n c e m m
T or q u e k gf- c m
0. 0 5
160
0. 0 5
260
0. 0 5
400
0. 0 5
480
25 30 25 30 30 25 25 30
I nt e gr at e d T y p e K e yl e s s Drill C h u c k s
R L t y p e k e yl e s s drill c h u c k wit h B T S H A N K S K S H A N K NT S H A N K
d
D
CA N F O R TAP
c a p a cit y. Hi g h e st s p e e d 6 0 0 0r p m.
L
i m pr o v e s t h e t ot al ri gi dit y.
G
F O R H E X. W RE N C H
O R D E R N O.
Cl a m pi n g C a p a cit y m m/ d
L
D
G
C O D E N O.
B T 4 0- V R L 1 3 B T 4 0- V R L 1 6 S K 4 0- V R L 1 3 S K 4 0- V R L 1 6 N T 4 0- V R L 1 3 N T 4 0- V R L 1 6
0. 5- 1 3 3- 1 6 0. 5- 1 3 3- 1 6 0. 5- 1 3 3- 1 6
95 11 3 85 95 11 2 120
50 57 50 57 50 57
M16 M16 M16 M16
3 3 0 1- 0 9 0 3 3 0 1- 0 9 1 3 3 0 1- 0 9 2 3 3 0 1- 0 9 3 3 3 0 1- 0 9 4 3 3 0 1- 0 9 5
5/ 8 - 1 1 u n c M16
T O O LI N G S Y S T E M
C74
K E Y L E S S D RI L L C H U C K
C A T- T Y P E
F O R D RI L L O N L Y , N O T F O R E N D MI L L O R T A P
I nt e gr at e d T y p e K e yl e s s Drill C h u c k s
F O R D RI L L O N L Y , N O T F O R E N D MI L L O R T A P
I N T- S K 4 0 I N T- N T I N T- R 8
I N T- M T
I N T- J C
F O R S P E CI FI C A TI O N P L E A S E S E E P. C 7 4
I N T- B T
E xtr e m el y ri gi d c o n str u cti o n. A c c ur a c y i s s a m e a s p a g e C 6 6 T h e a c c u m ul ati v e t ol er a n c e s c a n b e r e d u c e d t o a mi ni m u m, S T A N D A R D A C C E S.
T h e I nt e gr at e d t y p e K e yl e s s Drill C h u c k i s d e si g n e d t o s ol v e t hi s pr o bl e m t ot all y. Pr e v e nt t h e Drill C h u c k s fr o m f alli n g o ut. E xtr e m el y s af e i n o p er ati o n. 2 5 0 0 R. P. M.
A C C U R A CY ITE M N O.
I N T- 8 I N T- 1 0 I N T- 1 3 I N T- 1 6
C75
d
m m 3 6 8 3 6 10 5 10 13 5 10 16
L m m 25 30 25 30 30 25 25 30
T O O LI N G S Y S T E M
Max T ol er a n c e m m
T or q u e k gf- c m
0. 0 5
160
0. 0 5
260
0. 0 5
400
0. 0 5
480
O R D E R N O.
Cl a m pi n g C a p a cit y
F e m al e T a p er DI N or J a c o b s
O UTE R Ø/ m m
Ø m m
Øinch
0. 5- 8 0. 5- 8 0. 5- 8 0. 5- 8 0. 5- 8 0. 5- 8 0. 5- 8
0- 5/ 1 6 0- 5/ 1 6 1/ 6 4 - 1/ 8 1/ 6 4 - 1/ 8 1/ 6 4 - 1/ 8 1/ 6 4 - 1/ 8
M T- 2 J C- 2 0 BT30 BT40 NT30 NT40 S K- 4 0
36 36 36 36 36 36 36
1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3 1- 1 3
1/ 6 4 - 1/ 2 0- 1/ 2 0- 1/ 2 0- 1/ 2 0- 1/ 2 0- 1/ 2 0- 1/ 2 0- 1/ 2 0- 1/ 2 1/ 6 4 - 1/ 2 0- 1/ 2 0- 1/ 2 0- 1/ 2
R8 M T- 2 M T- 3 M T- 4 J C- 2 0 J C- 2 5 J C- 3 2 N T- 3 0 N T- 4 0 BT30 B T- 4 0 B T- 5 0 N T- 5 0 S K- 3 0 S K- 4 0 S K- 5 0
50 50 50 50 50 50 50 50 50 50 50 50 50 50 50 50
3- 1 6 3- 1 6 3- 1 6 3- 1 6 3- 1 6 3- 1 6 3- 1 6 3- 1 6 3- 1 6 3- 1 6 3- 1 6 3- 1 6
1/ 8 - 5/ 8 1/ 8 - 5/ 8 1/ 8 - 5/ 8 1/ 8 - 5/ 8 1/ 8 - 5/ 8 1/ 8 - 5/ 8 1/ 8 - 5/ 8 1/ 8 - 5/ 8 1/ 8 - 5/ 8 1/ 8 - 5/ 8 1/ 8 - 5/ 8 1/ 8 - 5/ 8
R8 MT3 MT4 J C- 2 0 J C- 2 5 J C- 3 2 N T- 4 0 B T- 4 0 B T- 5 0 N T- 5 0 S K- 4 0 S K- 5 0
57 57 57 57 57 57 57 57 57 57 57 57
O R D E R N O.
SI Z E DI N 6 9 8 7 1 A
I N T- 8- S K 4 0 I N T- 1 3- S K 4 0 I N T- 1 3- S K 5 0 I N T- 1 3- S K 3 0 I N T- 1 6- S K 4 0 I N T- 1 6- S K 5 0
S K 4 0- A P U 0 8 S K 4 0- A P U 1 3 S K 5 0- A P U 1 3 S K 3 0- A P U 1 3 S K 4 0- A P U 1 6 S K 5 0- A P U 1 6
Cl a m pi n g range ( Ø m m) 0. 5- 8 1- 1 3 1- 1 3 1- 1 3 3- 1 6 3- 1 6
I N T- 8- M T- 2 I N T- 8- J C- 2 0 I N T- 8- B T 3 0 I N T- 8- B T 4 0 I N T- 8- N T 3 0 I N T- 8- N T 4 0 I N T- 8- S K 4 0 I N T- 1 3- R 8 I N T- 1 3- M T 2 I N T- 1 3- M T 3 I N T- 1 3- M T 4 I N T- 1 3- J C- 2 0 I N T- 1 3- J C- 2 5 I N T- 1 3- J C- 3 2 I N T- 1 3- N T 3 0 I N T- 1 3- N T 4 0 I N T- 1 3- B T 3 0 I N T- 1 3- B T 4 0 I N T- 1 3- B T 5 0 I N T- 1 3- N T 5 0 I N T- 1 3- S K 3 0 I N T- 1 3- S K 4 0 I N T- 1 3- S K 5 0 I N T- 1 6- R 8 I N T- 1 6- M T 3 I N T- 1 6- M T 4 I N T- 1 6- J C- 2 0 I N T- 1 6- J C- 2 5 I N T- 1 6- J C- 3 2 I N T- 1 6- N T 4 0 I N T- 1 6- B T 4 0 I N T- 1 6- B T 5 0 I N T- 1 6- N T 5 0 I N T- 1 6- S K 4 0 I N T- 1 6- S K 5 0
O R D E R N O.
I N T- 8- C A T 3 0 I N T- 1 3- C A T 3 0 I N T- 8- C A T 4 0 I N T- 1 3- C A T 4 0 I N T- 1 6- C A T 4 0 I N T- 1 3- C A T 5 0 I N T- 1 6- C A T 5 0
Cl a m pi n g C a p a cit y m m inch 0. 5- 8 1/ 6 4 - 1/ 8 0. 5- 1 3 1/ 6 4 - 1/ 2 0. 5- 8 1/ 6 4 - 1/ 8 0. 5- 1 3 1/ 6 4 - 1/ 2 3- 1 6 1/ 8 - 5/ 8 0. 5- 1 3 1/ 6 4 - 1/ 2 3- 1 6 1/ 8 - 5/ 8
L e n gt h Open Cl o s e d B m m A m m 150 157 134 141 78 85 77 86 67 75 66 74 81 87 196 205 172 184 190 201 216 227 153 164 163 174 173 185 86 99 85 96 96 108 100 111 106 11 7 100 11 2 99 111 100 11 3 93 106 198 2 11 194 207 219 232 152 165 162 178 184 179 11 3 126 11 3 127 111 124 104 11 7 127 141 97 11 0 L
D 3 5. 6 52 52 52 5 6. 8 5 6. 8
T a p er C AT30 C AT40 C AT50
W EI G H T ( k g s)
C O D E N O.
0. 8 0. 8 1 1. 5 0. 8 1. 3 1. 4
3 3 0 1- 0 3 0 3 3 0 1- 0 3 1 3 3 0 1- 0 7 0 3 3 0 1- 0 7 2 3 3 0 1- 0 8 0 3 3 0 1- 0 8 1 3 3 0 1- 0 8 3
1. 5 1. 3 1. 4 1. 8 1. 4 1. 6 1. 8 1. 4 1. 8 1. 4 2 4. 7 4. 3 1. 3 4 1. 9 3. 9
3 3 0 1- 0 3 2 3 3 0 1- 0 8 2 3 3 0 1- 0 3 3 3 3 0 1- 0 3 4 3 3 0 1- 0 3 5 3 3 0 1- 0 3 6 3 3 0 1- 0 3 7 3 3 0 1- 0 3 8 3 3 0 1- 0 3 9 3 3 0 1- 0 7 1 3 3 0 1- 0 4 0 3 3 0 1- 0 4 1 3 3 0 1- 0 5 9 3 3 0 1- 0 8 4 3 3 0 1- 0 8 5 3 3 0 1- 0 8 7
1. 9 1. 9 2 1. 8 1. 7 2. 2 2. 6 2. 5 5 4. 5 2. 4 3. 9
3 3 0 1- 0 4 2 3 3 0 1- 0 4 3 3 3 0 1- 0 4 4 3 3 0 1- 0 4 5 3 3 0 1- 0 4 6 3 3 0 1- 0 4 7 3 3 0 1- 0 4 9 3 3 0 1- 0 5 0 3 3 0 1- 0 5 1 3 3 0 1- 0 5 6 3 3 0 1- 0 5 7 3 3 0 1- 0 5 8
Mi ni m u m
M a xi m u m
W EI G H T ( k g)
C O D E N O.
81 100 93 99 127 97
87 11 3 106 111 140 11 0
1. 4 1. 9 3. 9 1. 3 4 2. 4 3. 9
3 3 0 1- 0 0 1 3 3 0 1- 0 0 2 3 3 0 1- 0 0 4 3 3 0 1- 0 0 6 3 3 0 1- 0 0 7 3 3 0 1- 0 0 8
O UTE R Ø/ m m Ø36 Ø50 Ø36 Ø50 Ø57 Ø50 Ø57
W EI G H T ( k g s) 0. 8 1 1. 3 2 2. 1 2. 2 6 3. 9 5 4. 2
K E Y L E S S D RI L L C H U C K
I nt e gr at e d T y p e K e yl e s s Drill C h u c k s
C O D E N O. 3 3 0 1- 0 7 3 3 3 0 1- 0 7 4 3 3 0 1- 0 7 5 3 3 0 1- 0 7 6 3 3 0 1- 0 7 7 3 3 0 1- 0 7 8 3 3 0 1- 0 7 9
T O O LI N G S Y S T E M
C76
K e yl e s s Drill C h u c k s
T Y P E: X H S P
S P E CI A L H E A V Y D U T Y T Y P E
F O R D RI L L O N L Y , N O T F O R E N D MI L L O R T A P
S p e ci al d e si g n & m a n uf a ct ur e a g ai n st f or s u p er h e a v y t or q u e( Cl a m pi n g c a p a cit y) u s e. O wi n g t o i n s p e cti n g stri ctl y & wit h e x c ell e nt R U N O U T A c c ur a c y a n d q u alit y g u a nt e e d t h e gri p pi n g p o w er i s d o u bl e t h a n t h e g e n er al br a n d. A v oi d t h e drill dr o p p e d w h e n u s e d i n i n st a n e o u s c h a n g e of dir e cti o n a n d e q ui p p e d wit h s p a n n er h ol e f or ti g ht e ni n g p erf e ct s af et y. E s p e ci all y s uit a bl e f or C N C m a c hi ni n g c e nt er & milli n g m a c hi n e u s e. A c c ur a c y: 5 0 m m l e n gt h wit hi n 0. 0 5 m m T h e k e y i s o pti o n al
O P TI O N A L A C C E S. O R DE R N O.
11015 11016 11017 11018 11019 11020 11021 11025 11026 11027 11028 11029 11030 11035 17000 17002 17004 11031 11032 11033 11034
TYPE 8X HSP
10 X H S P
13 X H S P
16 X H S P
6X HSP
Key
L e n gt h F e m al e T a p er DI N OØ /U T mE mR O p e n Cl o s e d Ø m m Øinch or J a c o b s B m m A m m B10 3 4. 3 6 4. 8 7 2. 7 0. 5- 8 0- 5 / 1 6 J1 3 4. 3 6 4. 8 7 2. 7 B12 3 4. 3 6 4. 8 7 2. 7 J33 4 2. 4 8 0. 8 9 1. 1 J2 S 4 2. 4 8 0. 8 9 1. 1 1- 1 0 0- 3 / 8 B12 4 2. 4 8 0. 8 9 1. 1 B16 4 2. 4 8 0. 8 9 1. 1 J6 5 0. 3 9 3. 7 1 0 5. 3 1- 1 3 0- 1 / 2 J33 5 0. 3 9 3. 7 1 0 5. 3 B16 5 0. 3 9 3. 7 1 0 5. 3 J6 52 97 1 1 0. 3 B16 52 9 6. 1 1 1 0. 3 3- 1 6 1/ 8 - 5/ 8 B18 52 97 1 1 0. 4 J3 52 1 0 0. 5 1 0 5. 3 B12 34 6 4. 8 7 2. 7 0. 5- 6. 5 1/ 6 4 - 1/ 4 J1 34 6 4. 8 7 2. 7 B10 34 6 4. 8 7 2. 7 13 X H S P 16 X H S P O P TI O N A L A C C E E S. 8X HSP 10 X H S P
U nit: m m
Cl a m pi n g C a p a cit y
Wt g 320 320 320 700 700 700 700 1030 1035 1030 1450 1450 1450 1450 320 320 320
QTY P c s./ C u- Ft 4 0/ 0. 6 4 0/ 0. 6 4 0/ 0. 6 4 0/ 0. 6 4 0/ 0. 6 4 0/ 0. 6 4 0/ 0. 6 3 0/ 0. 6 3 0/ 0. 6 3 0/ 0. 6 2 4/ 0. 6 2 4/ 0. 6 2 4/ 0. 6 2 4/ 0. 6 4 0/ 0. 6 4 0/ 0. 6 4 0/ 0. 6
K e yl e s s Drill C h u c k s
T Y P E: H E
O R DE R N O.
I n d u stri al d e si g n e s p e ci all y f or lif e a n d s af et y w hil e i n o p er ati o n. All h ar d e n e d p art s e n s ur e l o n g t er m f or milli n g m a c hi n e s a n d drilli n g. A c c ur a c y: 3 5 m/ m l e n gt h wit hi n 0. 0 8 m/ m C77
T O O LI N G S Y S T E M
11061 11062 11063 11064 11065 11066 11067 11068 11070 11071 11072 11073 11074 11075
TYPE 6 HE
0- 6. 5
8 HE
0. 5- 8 0- 5 / 1 6
0- 1 / 4
1 0 H E 1- 1 0
0- 3 / 8
1 3 H E 1- 1 3
0- 1 / 2
1 6 H E 3- 1 6 1/ 8 - 5/ 8
C O D E N O.
1 3/ 1 4 1 3/ 1 4 1 3/ 1 4 2 8/ 2 9 2 8/ 2 9 2 8/ 2 9 2 8/ 2 9 3 1/ 3 2 3 1/ 3 2 3 1/ 3 2 3 5/ 3 6 3 5/ 3 6 3 5/ 3 6 3 5/ 3 6 1 3/ 1 4 1 3/ 1 4 1 3/ 1 4
3 3 0 2- 0 0 2 3 3 0 2- 0 0 3 3 3 0 2- 0 0 4 3 3 0 2- 0 0 5 3 3 0 2- 0 0 6 3 3 0 2- 0 0 7 3 3 0 2- 0 0 8 3 3 0 2- 0 0 9 3 3 0 2- 0 1 0 3 3 0 2- 0 1 1 3 3 0 2- 0 1 2 3 3 0 2- 0 1 3 3 3 0 2- 0 1 4 3 3 0 2- 0 1 5 3 3 0 4- 0 1 0 3 3 0 4- 0 1 1 3 3 0 4- 0 1 2 3 3 0 4- 0 0 1 3 3 0 4- 0 0 2 3 3 0 4- 0 0 3 3 3 0 4- 0 0 4
STA N D A R D TYPE
F O R D RI L L O N L Y , N O T F O R E N D MI L L O R T A P
Cl a m pi n g C a p a cit y Ø Ø m m inch
N. W/ G. W kgs
U nit: m m
F e m al e O U T E R T a p er DI N Ø or J a c o b s m m J1 B10 J1 B10 J2 S J33 B12 B16 J6 J33 B16 J6 B16 B18
34 34 34 34 4 2. 5 4 2. 5 4 2. 5 4 2. 5 5 0. 5 5 0. 5 5 0. 5 5 0. 5 5 0. 5 5 0. 5
L e n gt h O p e n Cl o s e d B m m A m m 6 4. 8 7 2. 7 6 4. 8 7 2. 7 6 4. 8 7 2. 7 6 4. 8 7 2. 7 8 0. 8 9 1. 1 8 0. 8 9 1. 1 8 0. 8 9 1. 1 8 0. 8 9 1. 1 9 3. 7 1 0 5. 3 9 3. 7 1 0 5. 3 9 3. 7 1 0 5. 3 9 3. 7 1 0 5. 8 9 3. 8 1 0 5. 9 9 7. 7 11 0
Wt g
C O DE N O.
4 1 0 3 3 0 2- 0 3 0 4 0 0 3 3 0 2- 0 3 1 4 0 0 3 3 0 2- 0 3 2 4 0 0 3 3 0 2- 0 3 3 7 2 0 3 3 0 2- 0 3 4 7 0 0 3 3 0 2- 0 3 5 7 2 0 3 3 0 2- 0 3 6 7 0 0 3 3 0 2- 0 3 7 1 0 7 0 3 3 0 2- 0 3 9 1 0 3 5 3 3 0 2- 0 4 0 1 0 8 0 3 3 0 2- 0 4 1 1 0 7 0 3 3 0 2- 0 4 2 1 0 8 0 3 3 0 2- 0 4 3 1 0 9 0 3 3 0 2- 0 4 4
K e yl e s s Drill C h u c k s
T Y P E: S
HE AVY D UTY TYPE S
F O R D RI L L O N L Y , N O T F O R E N D MI L L O R T A P
E xtr e m el y hi g h a c c ur a c y a n d pr e ci si o n d e si g n, s uit a bl e f or C N C m a c hi n e s a n d m a c hi n e c e nt er. All p art s ar e gr o u n d, h e at tr e at e d, s urf a c e tr e at e d a n d
Si z e
C a p a cit y m m
inch
1 2 2 0 1- 1 1 2 2 0 1- 2
T a p er M o u nt No DI N or J a c a b s JT1
L e n gt h( m/ m) O p e n Cl o s e d 68
76
O ut er W ei g ht Di a C O D E N O. ( m/ m) ( g) 38 460 3 3 0 2- 0 6 0
JT2 S
68
76
38
450
3 3 0 2- 0 6 1
B10
68
76
38
420
3 3 0 2- 0 6 2
1 2 2 0 1- 4
B12
68
76
38
450
3 3 0 2- 0 6 3
1 2 2 0 2- 1
JT2
80
92
43
660
3 3 0 2- 0 6 4
8S
1 2 2 0 1- 3
1 2 2 0 2- 2
0. 5- 8 0- 5/ 1 6
JT33
80
92
43
630
3 3 0 2- 0 6 5
B10
80
92
43
640
3 3 0 2- 0 6 6
1 2 2 0 2- 4
B12
80
92
43
670
3 3 0 2- 0 6 7
1 2 2 0 3- 1
JT33
90
102
49
970
3 3 0 2- 0 6 8
10 S
1 2 2 0 2- 3
1 2 2 0 3- 2
13 S
1 2 2 0 3- 3
1- 1 0
1- 1 3
0- 3/ 8
0- 1/ 2
1 2 2 0 3- 4
JT6
90
102
49
1020
3 3 0 2- 0 6 9
B12
90
102
49
1040
3 3 0 2- 0 7 0
B16
90
102
49
1030
3 3 0 2- 0 7 1
1 2 2 0 5- 1
JT6
97
11 0
55
1330
3 3 0 2- 0 7 3
1 2 2 0 5- 2
JT3
97
11 0
55
1330
3 3 0 2- 0 7 4
B16
97
11 0
55
1340
3 3 0 2- 0 7 5
B18
97
11 0
55
1360
3 3 0 2- 0 7 6
16 S
1 2 2 0 5- 3
3- 1 6 1/ 8- 5/ 8
1 2 2 0 5- 4
K e y s St e el
L
N ot e
D
O R D E R N O.
Ty p e
D m m
L m m
W ei g ht( g)
P a c ki n g
14001
T1
3. 2
35
20
3 3 0 4- 1 0 0
14002
T2
4
42
40
3 3 0 4- 1 0 1
14003
T3
5. 5
44
45
3 3 0 4- 1 0 2
14004
T4
6
45
55
14005
T5
6. 5
45
50
14007
T7
8
50
80
3 3 0 4- 1 0 6
14008
T8
9. 5
65
150
3 3 0 4- 1 0 7
14009
T9
11
100
320
3 3 0 4- 1 0 8
Pl a sti c Bag
C O D E N O.
3 3 0 4- 1 0 3 3 3 0 4- 1 0 4
C A U TI O N S
T O O LI N G S Y S T E M
C78
K E Y L E S S D RI L L C H U C K
O R DE R N O.
K e y T y p e Drill C h u c k s
T Y P E: G
HI G H P R E CI SI O N
R e m ar k a bl e pr o d u ct s, s u p er pr e ci si o n d ur a bl e & ri git y Bi g o ut si d e di a m et er s uit f or h e a v y d ut y T h e n ut a n d j a w s a d o pt AI SI- 5 2 1 0 0 ( b e ari n g st e el) a n d h e at-tr e at e d, d ur a bilit y Pr e ci si o n c a n b e a s s ur e d. T h e t a p er i s pr e ci si o n gr o u n d. A c c ur a c y: 9 0 m m l e n gt h wit hi n 0. 0 8 m m Wit h k e y s
Cl a m pi n g C a p a cit y m m
inch
G- 6 H
0. 5- 6. 5
1/ 6 4 - 1/ 4
J1 J6
56
7 0. 5
88
800
P6
3 6/ 0. 8 3
3 0/ 3 1
3 3 0 3- 0 0 6
G- 1 3 X H
0. 5- 1 3
1/ 6 4 - 1/ 2
B16
56
7 0. 5
88
800
P6
3 6/ 0. 8 3
3 0/ 3 1
3 3 0 3- 0 0 7
J33
56
7 0. 5
88
800
P6
3 6/ 0. 8 3
3 0/ 3 1
3 3 0 3- 0 0 8
TYPE
10006 10050 10051 10052 10068 10070 10074
C79
L e n gt h O p e n Cl o s e d B m m A m m 41 50
F e m al e T a p er DI N or J a c o b s
O R DE R N O.
G- 1 6 X H
1- 1 6
1/ 3 2 - 5/ 8
G- 1 9 X H
3- 1 9
1/ 8 - 3/ 4
T O O LI N G S Y S T E M
O UTE R Ø/ m m 32
Wt g
Key Si z e
QTY P c s./ C u- Ft
N. W/ G. W kgs
C O D E N O.
200
T2
1 0 0/ 0. 8 2
2 0/ 2 1
3 3 0 3- 0 0 1
J3
65
81
101
1000
P7
2 4/ 0. 8 4
2 4/ 2 5
3 3 0 3- 0 0 9
B18
63
79
101
1000
P7
2 4/ 0. 8 4
2 4/ 2 5
3 3 0 3- 0 1 0
J4
70
9 9. 5
126
2150
P7
1 8/ 0. 8 3
3 9/ 4 0
3 3 0 3- 0 1 1
K e y T y p e Drill C h u c k s S uit a bl e f or h e a v y d ut y & e xtr a h e a v y d ut y.
Cl a m pi n g C a p a cit y m m
inch
F e m al e T a p er DI N or J a c o b s
4 H
0. 5- 4
1/ 6 4 - 5/ 3 2
J O
6 H
0. 5- 6. 5
1/ 6 4 - 1/ 4
O R DE R N O.
TYPE
10001
F e m al e T hr e a d I n c h or m eti c
L e n gt h
Wt g
Key Si z e
C O D E N O.
35
120
T1
3 3 0 3- 0 6 0
40
50
230
T2
3 3 0 3- 0 6 2
32
40
50
190
T2
3 3 0 3- 0 6 3
J2
38
5 0. 5
64
320
T3
3 3 0 3- 0 6 5
J2 S
38
5 0. 5
64
320
T3
3 3 0 3- 0 6 6
10012
B12
38
5 0. 5
64
330
T3
3 3 0 3- 0 6 7
10038
J2 S
47
65
81
520
T5
3 3 0 3- 0 7 1
3/ 8- 2 4
47
65
81
520
T5
3 3 0 3- 0 7 1- 2
1/ 2- 2 0
47
65
81
330
T5
3 3 0 3- 0 7 1- 3
J6
47
65
81
570
T5
3 3 0 3- 0 7 2
10040
B16
47
65
81
580
T5
3 3 0 3- 0 7 3
10041
J33
47
65
81
580
T5
3 3 0 3- 0 7 4
10061
J6
56
78
96
990
T7
3 3 0 3- 0 7 7
J3
56
78
96
960
T7
3 3 0 3- 0 7 8
B16
56
78
96
990
T7
3 3 0 3- 0 7 9
B18
56
78
96
970
T7
3 3 0 3- 0 8 0
B22
6 7. 5
89
126
1660
T8
3 3 0 3- 0 8 3
J3
6 7. 5
89
126
1680
T8
3 3 0 3- 0 8 4
52
69
82
770
T7
3 3 0 3- 0 8 6
69
94
132
1720
T8
3 3 0 3- 0 8 9
10003 10004 10010 10011
10 H
1- 1 0
1/ 3 2 - 3/ 8
Open B m m
Cl o s e d A m m
22
29
J1
32
B10
1 0 0 3 8- 2 1 0 0 3 8- 3 10039
10062 10063
13 H
1- 1 3
16 H
1- 1 6
1/ 3 2 - 1/ 2
1/ 3 2 - 5/ 8
10064 10072
19 H
3- 1 9
1/ 8 - 3/ 4
10046
13 X H
1- 1 3
1/ 3 2 - 1/ 2
10079
19 X H
1- 1 9
10073
PA RT N A ME
1 2
4 H
5 H 6. 5 H 1 0 H 1 3 H 1 6 H 1 9 H 1 3 X H 1 9 X H
Ød m m
3. 5
4. 5
6
9
12
15
18
12
18
H R C 4 5- 4 8
L m m
60
80
90
11 0
140
150
150
140
150
JI S- 4 0 1 8 S A E 1 0 1 8
H R C 3 8- 4 0
L1 m m
40
60
70
85
11 0
120
120
11 0
120
JI S- 4 0 5 1 S A E 1 0 4 5
H R C52±2
M a x R u n- o ut
0. 1 5 0. 1 5 0. 1 5 0. 1 5 0. 1 5 0. 1 5 0. 1 5
0. 1 5
0. 1 5
JI S- 4 0 5 1 S A E 1 0 4 5
H R C61±2
T or q u e k g- m
18
190
300
M A T E RI A L
Body
JI S- 4 0 5 1 S A E 1 0 4 5
Case N ut
1/ 2- 2 0
J4
H E AT T R E AT E D
3 4
J6
R u n- o ut A c c ur a c y & T or q u e I n s p e cti o n T a bl e
M at eri al A n al y si s T a bl e PA RT N O.
O UTE R Ø/ m m
Ty p e
20
45
75
85
250
300
T O O LI N G S Y S T E M
C80
D RI L L C H U C K
Wit h k e y s
K e y T y p e Drill C h u c k s St ai nl e s s
TAPE R & T H RE A D M O U NT
E nl ar g e d p h ot o F E A T U R E S:
St ai nl e s s - A nti - R u st G o o d R e si st a n c e - A ci d R e si st a n c e S m o ot h o p er ati o n S uit f or E D M, F o o d, m ari n e i n d u str y.
O R D E R N O. 1 0 0 9 0 Cl a m pi n g C a p a cit y
O R DE R N O.
TYPE
10090
4KST
0. 3- 4
10091
6KST
0. 3- 6. 5
1 0 0 9 2- 2 1 0 0 9 2- 3
10 K ST
m m
inch
0. 3- 1 0
Pit c h
Wt g
Key Si z e
C O D E N O.
22
L e n gt h Open Cl o s e d B m m A m m 28 35
5/ 1 6 - 2 4
50
T 0- 3 S
3 3 0 3- 1 0 0
3/ 8 - 2 4
125
T 1- 3 S
F e m al e T a p er DI N or J a c o b s
O UTE R Ø/ m m
JT0 JT1
2 8. 5
4 0. 5
49
Ø D13
37
57
69
Ø D15
37
57
69
250
3/ 8 - 2 4
250
T 2- 3 S
3 3 0 3- 1 0 1 3 3 0 3- 1 0 3 3 3 0 3- 1 0 4
K e yl e s s Drill C h u c k s St ai nl e s s
KEYLESS TAPE R & T H RE A D M O U NT
F E A T U R E S:
St ai nl e s s - A nti - R u st G o o d R e si st a n c e - A ci d R e si st a n c e S m o ot h o p er ati o n S uit f or E D M, F o o d, m ari n e i n d u str y.
E nl ar g e d p h ot o O R D E R N O. 1 6 0 0 1- 3 1 O R DE R N O.
1 6 0 0 1- 3 0 1 6 0 0 1- 3 1 1 6 0 0 1- 6 1
C a p a cit y
Si z e
m m
inch
3ST
0. 3- 3
1/ 6 4- 1/ 8
6ST
0. 3- 6. 5
1/ 6 4- 1/ 4
T a p er M o u nt No DI N or J a c a b s JT0
Open 44
JT1
44
JT1
62
W ei g ht ( g)
50
O ut er Di a ( m/ m) 30
11 0
3 3 0 3- 1 1 1
4 8. 5
24
11 0
3 3 0 3- 1 1 2
68
33
300
3 3 0 3- 1 1 3
L e n gt h( m/ m) Cl o s e d
C O D E N O.
K e y s F or St ai nl e s s K e y T y p e Drill C h u c k L
H
D C81
T O O LI N G S Y S T E M
3/ 8"
O R D E R N O.
Ty p e
D m m H m m L m m
W ei g ht( g)
P a c ki n g
C O D E N O.
15001
T 0- 3 S
3. 2
33
60
16
3 3 0 3- 1 2 1
15002
T 1- 3 S
4. 0
4 7. 6
65
40
3 3 0 3- 1 2 2
15003
T 2- 3 S
5. 5
4 8. 4
71
45
3 3 0 3- 1 2 3
T a p er S h a n k F or B ori n g H e a d s S eri e s B S 7 0, 1 0 0, 2 0 0, 3 0 0, 4 0 0 T a p er S h a n k F or B ori n g H e a d s S eri e s B 1 0 7 0 ~ B 6 2 3 0 B S 7 0 ~ 4 0 0 S E RI E S
B 1 0 7 0 ~ 6 2 3 0 S E RI E S
B1070~ B3260
O R D E R N O.
L e n gt h ( L)
E xt er n al Di a m et er ( D)
A p pli c a bl e B ori n g H e a d s
W ei g ht ( k g s)
C O D E N O.
V T- B T 3 0- B 1 0 7 0
70
19
F B B20
0. 5
3 3 2 0- 2 1 4
V T- B T 3 0- B 2 0 8 0
80
24
V R B25; F B B25
0. 6
3 3 2 0- 2 1 5
V T- B T 3 0- B 3 0 8 0
80
31
V R B32; F B B32
0. 7
3 3 2 0- 2 1 6
V T- B T 3 0- B 4 0 7 0
70
39
V R B40; F B B40; F B B44
0. 8
3 3 2 0- 2 1 7
V T- B T 3 0- B 5 0 6 0
60
50
V R B52; F B B52; F B B55
0. 8
3 3 2 0- 2 1 8
V T- B T 3 0- B 6 0 6 0
60
64
V R B68; V R B90; F B B68 F B B100; F B B150; F B B66
1. 0
3 3 2 0- 2 1 9
V T- B T 4 0- B 1 0 7 5
75
19
F B B20
1. 2
3 3 2 0- 2 2 0
V T- B T 4 0- B 2 0 8 5
85
23
V R B25; F B B25
1. 2
3 3 2 0- 2 2 1
V T- B T 4 0- B 3 0 9 5
95
30
V R B32; F B B32
1. 4 5
3 3 2 0- 2 2 2
V T- B T 4 0- B 4 0 8 5
85
38
V R B40; F B B40; F B B44
1. 5
3 3 2 0- 2 2 3
V T- B T 4 0- B 5 0 7 5
75
50
V R B52; F B B52; F B B55
1. 8
3 3 2 0- 2 2 5
V T- B T 4 0- B 6 0 6 5
65
64
2. 1 5
3 3 2 0- 2 2 7
V T- B T 4 0- B S 7 0
70
95
V R B68; V R B90; F B B68 F B B100; F B B150; F B B66 V R B120; F B B200 V R B 1 2 0 a n d a b o v e; F B B 2 0 0 a n d a b o v e
3. 2
3 3 2 0- 2 2 8
V T- B T 5 0- B 1 1 1 5
11 5
19
F B B20
3. 5
3 3 2 0- 2 2 9
V T- B T 5 0- B 2 1 1 0
125
23
V R B25; F B B25
4
3 3 2 0- 2 3 0
V T- B T 5 0- B 3 1 2 5
125
30
V R B 3 2; F B B 3 2
4. 4
3 3 2 0- 2 3 2
V T- B T 5 0- B 4 1 1 5
11 5
3 3 2 0- 2 3 4
175
V R B 4 0; F B B 4 0; F B B 4 4
4. 8
V T- B T 5 0- B 4 1 7 5
38
5. 2
3 3 2 0- 2 3 5
V T- B T 5 0- B 5 1 0 5
105
5. 4
3 3 2 0- 2 3 6
V T- B T 5 0- B 5 1 8 0
180
6. 2
3 3 2 0- 2 3 7
V T- B T 5 0- B 5 2 4 0
240
6. 4
3 3 2 0- 2 3 8
V T- B T 5 0- B 6 0 9 5
95
5. 9
3 3 2 0- 2 3 9
6. 5
3 3 2 0- 2 4 0
6. 9
3 3 2 0- 2 4 1
5. 7 1
3 3 2 0- 2 4 2
8. 7 9
3 3 2 0- 2 4 4
1 1. 2 5
3 3 2 0- 2 4 6
1 9. 3
3 3 2 0- 2 4 7
V T- B T 5 0- B 6 1 7 0
170
V T- B T 5 0- B 6 2 3 0
230
V T- B T 5 0- B S 1 0 0
100
V T- B T 5 0- B S 2 0 0
200
V T- B T 5 0- B S 3 0 0
300
V T- B T 5 0- B S 4 0 0
400
50
64
95
V R B 5 2; F B B 5 2; F B B 5 5
V R B68; V R B90; F B B68 F B B100; F B B150; F B B66
V R B120 V R B 1 2 0 a n d a b o v e; V R B 2 0 0 - 5 0 0; l ar g e di a m et er b ori n g h e a d s s eri e s F B B 2 0 0- 5 0 0
T O O LI N G S Y S T E M
C82
B O RI N G S Y S T E M
M o d ul ar B ori n g S y st e m s
L ar g e Di a m et er 2 I n s ert s R o u g h B ori n g
M o d ul ar St yl e F or Di a m et er O v er 2 0 0 m m B ori n g ø D r a n g e fr o m ø 2 0 0- ø 1, 2 5 0 m m
I n s ert N ot I n cl u d e d R B200 C12/ R B200T16/ R B200T22/ R B200 S12 A R E F O R V R B200 ~ V R B900 Ar b or i s n ot i n cl u d e d O R D E R N O.
B ori n g Head Ty p e
V R B200
V R B300
V R B400
V R B500
V R B600
V R B900
L e n gt h
130
130
130
130
150
150
( k g s) T ot al W ei g ht St e el/ All o y
9. 5
1 1. 5
1 3. 5
1 5. 5
33
43
D( m m) B ori n g Di a m et er R a n g e
2 0 0- 3 1 0
3 0 0- 4 1 0
4 0 0- 5 1 0
5 0 0- 6 1 0
6 0 0- 9 0 0
9 0 0- 1 2 0 0
T a p er S h a n k
B T 5 0- B S
Fl a n g e ( k g s) W ei g ht St e el/ All o y
B R200 2. 7
E xt e n si o n Sli d e ( k g) W ei g ht St e el/ All o y
M o d ul e
B R600
B R900
8. 8 k g
1 3. 5 k g
R ST200
R ST300
R ST400
R ST500
R ST300 x2pcs
R ST400 x2pcs
3. 4 k g
5. 4 k g
7. 4 k g
9. 4 k g
1 0. 8 k g
1 4. 8 k g
Cl a m p B a s e ( k g) W ei g ht H ei g ht S eti n g S hi m ( k g) W ei g ht
R S200 0. 9 8 k g R S201 0. 0 5 k g
I n s ert H ol d er
R B200 C12
R B200T16
R B200T22
R B200 S12
A p pli c a bl e I n s ert
C C MT120404
T C MT16T304
T C MT220404
S C MT120404
( k g) W ei g ht C O D E N O.
C83
B T 5 0- F M A- 4 7. 6 2 5
T O O LI N G S Y S T E M
0. 6 8 k g 3 3 2 0- 2 5 0
3 3 2 0- 2 5 1
3 3 2 0- 2 5 2
3 3 2 0- 2 5 3
3 3 2 0- 2 5 4
3 3 2 0- 2 5 5
E nl ar g e a bl e Fi ni s h B ori n g H e a d
B O RI N G S Y S T E M
M o d ul ar St yl e F or Di a m et er O v er 2 0 0 m m B ori n g ø D fr o m ø 2 0 0- ø 1, 2 5 0 m m
Ar b or i s n ot i n cl u d e d
B ori n g Head Ty p e
M o d ul e
O R D E R N O.
VF B200
VF B300
VF B400
VF B500
VF B600
VF B900
L e n gt h
130
130
130
130
150
150
( k g s) T ot al W ei g ht St e el/ All o y
7
7. 8
8. 6
9. 4
1 5. 8
2 2. 1
D( m m) B ori n g Di a m et er
2 0 0- 3 1 0
3 0 0- 4 1 0
4 0 0- 5 1 0
5 0 0- 6 1 0
6 0 0- 9 0 0
9 0 0- 1 2 0 0
T a p er S h a n k
B T 5 0- B S
Fl a n g e ( k g) W ei g ht St e el/ All o y
B R200 2. 7 k g
B T 5 0- F M A- 4 7. 6 2 5 B R600
B R900
8. 8 k g
1 3. 5 k g
E xt e n si o n Sli d e
R ST200
R ST300
R ST400
R ST500
R ST300 x2pcs
R ST400 x2pcs
( k g s) W ei g ht
1. 1 k g
1. 9 k g
2. 7 k g
3. 5 k g
3. 8 k g
5. 4 k g
B al a n c e W ei g ht ( k g) W ei g ht
R B N200 1. 6 k g
Fi ni s h H e a d ( k g s) W ei g ht
C B200 1. 6 k g
A p pli c a bl e I n s ert C O D E N O.
T P 0 8/ Ø 3. 2 x M 2/ T 6, T P 0 9/ M 2. 5/ T 8, T C 1 1/ M 2. 5/ T 8 3 3 2 0- 2 6 0
3 3 2 0- 2 6 1
3 3 2 0- 2 6 2
3 3 2 0- 2 6 3
3 3 2 0- 2 6 4
3 3 2 0- 2 6 5
T O O LI N G S Y S T E M
C84
I n s ert T y p e B ori n g B ar
O R D E R N O. B B A R- D 1 6
C O D E N O. 6 0 0 4- 0 7 1
B O RI N G B A R F O R B O RI N G H E A D B O RI N G B A R
S H A N K D.
B R B 1 6 0 8- 3 2 B R B 1 6 1 0- 4 0 B R B 1 6 1 2- 5 3 B R B 1 6 1 6- 6 8 B R B 1 6 2 0- 8 3 B R B 1 6 2 5- 9 0 B R B 1 6 3 0- 9 0 B R B 1 6 4 0- 9 0
16 16 16 16 16 16 16 16
R A N GE d~d1 8- 1 1 1 0- 1 3 1 2- 1 5 1 6- 2 1 2 0- 2 6 2 5- 3 1 3 0- 3 6 4 0- 4 6
DEPT H m 32 40 53 68 83 90 90 90
L1 32 32 32 32 32 32 32 32
S H A N K L. L 80 80 85 100 11 5 122 122 122
C o nt a ct u s b ef or e or d eri n g fr o m F 1 ~ F 4 9
8 P C S/ S E T
I NSE RT
FI XI N G U NI T
W RE N C H
T B GT060102L
T S2001
T6
T P G H090204L
T S2504
T8
W EI G H T ( k g)
2 T P G H 11 0 3 0 4 L
T S3005
T10
I NSE RT
W RE N C H
T B GT060102L
FI XI N G U NI T T S2001
T P G H090204L
T S2504
T8
T P G H 11 0 3 0 4 L
T S3005
T10
I n s ert T y p e B ori n g B ar
O R D E R N O. B B A R- D 1 8 A C O D E N O. 6 0 0 4- 0 7 2 A
B O RI N G B A R F O R B O RI N G H E A D B O RI N G B A R
S H A N K D.
B R B 1 8 1 0- 4 0 B R B 1 8 1 2- 5 3 B R B 1 8 1 6- 6 8 B R B 1 8 2 0- 8 3
18 18 18 18
R A N GE d~d1 1 0- 1 3 1 2- 1 7 1 6- 2 1 2 0- 1 3 0
DEPT H m 40 53 68 83
L1 32 32 32 32
S H A N K L. L 80 88 104 11 8
4 P C S/ S E T T6
W EI G H T ( k g) 1. 0
I n s ert T y p e B ori n g B ar
O R D E R N O. B B A R- D 2 0
C O D E N O. 6 0 0 4- 0 7 3
8 P C S/ S E T
B O RI N G B A R F O R B O RI N G H E A D B O RI N G B A R
S H A N K D.
B R B 2 0 0 8- 3 2 B R B 2 0 1 0- 4 0 B R B 2 0 1 2- 5 3 B R B 2 0 1 6- 6 8 B R B 2 0 2 0- 8 3 B R B 2 0 2 5- 9 6 B R B 2 0 3 0- 1 1 5 B R B 2 0 3 5- 9 7- L
20 20 20 20 20 20 20 20
C85
T O O LI N G S Y S T E M
R A N GE d~d1 8- 1 1 1 0- 1 3 1 2- 1 7 1 6- 2 1 2 0- 1 3 0 2 5- 1 3 5 3 0- 1 4 0 1 2 0- 2 8 0
DEPT H m 23 40 53 68 83 96 11 5 14
L1 32 32 32 32 32 32 32
S H A N K L. L 80 80 85 100 11 5 135 154 99
I NSE RT
FI XI N G U NI T
W RE N C H
T B GT060102L
T S2001
T6
T P G H090204L
T S2504
T8
T P G H 11 0 3 0 4 L
T S3005
T10
W EI G H T ( k g)
2. 6 5
C h a n g e a bl e 2 I n s ert s R o u g h B ori n g H e a d V R B
V M H- S Y S T E M
B ori n g di a m et er fr o m ø 2 5- ø 3 5 0 m m
B O RI N G S Y S T E M
A dj u st a bl e
- C I N S E R T S T Y L E- T -S
O R D E R N O.
T o ol c o n n e cti o n
V R B 2 5- 3 3 C
B2080
25
33
45
24
B3080
32
42
55
31
B4070
40
55
65
39
V R B 3 2- 4 2 C V R B 3 2- 4 2 T
D( m m) L C B ori n g R a n g e ( m m) ( m m)
V R B 4 0- 5 5 C V R B 4 0- 5 5 T
I n s ert
W ei g ht ( g)
C O D E N O.
C C MT060204
0. 1 5
3 3 2 0- 2 7 0
C C MT060204 T C M T 11 0 2 0 4
0. 3
C C MT09T304 T C MT16T304
3 3 2 0- 2 7 1 3 3 2 0- 2 7 2 3 3 2 0- 2 7 3
0. 5
3 3 2 0- 2 7 4
V R B 4 0- 5 5 S
S C MT09T304
3 3 2 0- 2 7 5
V R B 5 2- 7 0 C
C C MT09T304
3 3 2 0- 2 7 6
V R B 5 2- 7 0 T
B5060
52
70
75
50
V R B 5 2- 7 0 S V R B 6 8- 9 2 C V R B 6 8- 9 2 T
1
68
92
85
64
T C MT16T304
3 3 2 0- 2 7 9 2
S C MT120404
V R B 9 0- 1 2 2 C 90
122
100
80
T C MT220408
3 3 2 0- 2 8 0 3 3 2 0- 2 8 1
C C MT120408 B6065
3 3 2 0- 2 7 7 3 3 2 0- 2 7 8
C C MT120408 B6065
V R B 6 8- 9 2 S V R B 9 0- 1 2 2 T
T C MT16T304 S C MT09T304
3 3 2 0- 2 8 2 2. 9
3 3 2 0- 2 8 3
V R B 9 0- 1 2 2 S
S C MT120404
3 3 2 0- 2 8 4
V R B 1 2 0- 1 6 4 C
C C MT120408
3 3 2 0- 2 8 5
V R B 1 2 0- 1 6 4 T
120
164
V R B 1 2 0- 1 6 4 S
V R B 1 6 0- 2 0 4 S V R B 2 0 0- 3 0 0 C V R B 2 0 0- 3 0 0 T
V T- B T 4 0- B S 7 0 V T- B T 5 0- B S 1 0 0 V T- B T 5 0- B S 2 0 0 V T- B T 5 0- B S 3 0 0 V T- B T 5 0- B S 4 0 0
160
200
204
V R B 2 0 0- 3 0 0 S V R B 3 0 0- 4 0 0 T V R B 3 0 0- 4 0 0 S
170 95
V R B 3 0 0- 4 0 0 C 300
400
3. 8
260
T C MT220408
3 3 2 0- 2 8 6 3 3 2 0- 2 8 7
C C MT120408 130
300
T C MT220408 S C MT120404
95
V R B 1 6 0- 2 0 4 C V R B 1 6 0- 2 0 4 T
100
3 3 2 0- 2 8 8 4. 8
3 3 2 0- 2 8 9
S C MT120404
3 3 2 0- 2 9 0
C C MT120408
3 3 2 0- 2 9 1 A
T C MT220408
6. 5
3 3 2 0- 2 9 2 A
S C MT120404
3 3 2 0- 2 9 3 A
C C MT120408
3 3 2 0- 2 9 7 A
T C MT220408 S C MT120404
10
3 3 2 0- 2 9 8 A 3 3 2 0- 2 9 9 A
T O O LI N G S Y S T E M
C86
T a p er S h a n k F or B ori n g H e a d s S eri e s
M o d ul ar B ori n g S y st e m s
V B K N O.
E xt e n si o n ( R e d u c e d) O R D E R N O.
d1
d2
V B Q 2- 1- 3 6 V B Q 3- 1- 4 1 V B Q 3- 2- 3 7 V B Q 4- 1- 5 8 V B Q 4- 2- 5 0 V B Q 4- 3- 5 0 V B Q 5- 1- 6 0 V B Q 5- 2- 5 4 V B Q 5- 2- 7 4 V B Q 5- 3- 4 7 V B Q 5- 3- 7 2 V B Q 5- 4- 4 2 V B Q 5- 4- 6 7 V B Q 6- 1- 7 0 V B Q 6- 2- 6 3 V B Q 6- 2- 9 3 V B Q 6- 3- 5 6 V B Q 6- 3- 9 6 V B Q 6- 4- 5 1 V B Q 6- 4- 1 0 1 V B Q 6- 5- 4 1 V B Q 6- 5- 9 1
14
24
18
31
22
39
28
36
50
64
D1
D2
11
19
14 11 14 18 11
24 19 24 31 19
14
24
18
31
22
39
11
19
14
24
18
31
22
39
28
50
L 36 41 37 58 50 50 60 54 74 47 72 42 67 70 63 93 56 96 51 101 41 91
30 30 25 40 36 37 40 35 55 29 54 25 50 40 45 75 39 79 35 85 25 75
A p pli c a bl e B ori n g Heads F B B20 F B B20 V R B25; F B B25 F B B20 V R B25; F B B25 V R B32; F B B32 F B B20 V R B25; F B B25 V R B25; F B B25 V R B32; F B B32 V R B32; F B B32 V R B40; F B B40 V R B40; F B B40 F B B20 V R B25; F B B25 V R B25; F B B25 V R B32; F B B32 V R B32; F B B32 V R B40; F B B40 V R B40; F B B40 V R B52; F B B52 V R B52; F B B52
W ei g ht ( k g)
C O D E N O.
0. 1 0. 1 5 0. 1 5 0. 3 0. 3 0. 3 5 0. 4 5 0. 4 5 0. 5 0. 5 0. 6 0. 5 0. 7 0. 9 0. 7 0. 8 0. 7 5 0. 9 5 0. 8 5 1. 3 0. 8 5 1. 4 5
3 3 2 0- 3 0 1 3 3 2 0- 3 0 2 3 3 2 0- 3 0 3 3 3 2 0- 3 0 4 3 3 2 0- 3 0 5 3 3 2 0- 3 0 6 3 3 2 0- 3 0 7 3 3 2 0- 3 0 8 3 3 2 0- 3 0 9 3 3 2 0- 3 1 0 3 3 2 0- 3 1 1 3 3 2 0- 3 1 2 3 3 2 0- 3 1 3 3 3 2 0- 3 1 4 3 3 2 0- 3 1 5 3 3 2 0- 3 1 6 3 3 2 0- 3 1 7 3 3 2 0- 3 1 8 3 3 2 0- 3 1 9 3 3 2 0- 3 2 0 3 3 2 0- 3 2 1 3 3 2 0- 3 2 2
W ei g ht ( k g) 0. 0 7 0. 1 0. 1 5 0. 4 0. 8
C O D E N O.
1. 4
3 3 2 0- 3 2 8
E xt e n si o n ( C o n st a nt Di a m et er)
C87
T O O LI N G S Y S T E M
O R DE R N O. V B Q 1- 1- 3 0 V B Q 2- 2- 3 0 V B Q 3- 3- 3 0 V B Q 4- 4- 4 5 V B Q 5- 5- 6 0
d
D
L
A p pli c a bl e B ori n g H e a d s
11 14 18 22 28
19 24 31 39 50
30 30 30 45 60
V B Q 6- 6- 6 0
36
64
60
F B B20 V R B25; F B B25 V R B32; F B B32 V R B40; F B B40; F B B44 V R B52; F B B52; F B B55 V R B 6 8/ V R B 9 0 ; F B B 6 8, 1 0 0, 1 5 0 ; F B B 6 6
3 3 2 0- 3 2 3 3 3 2 0- 3 2 4 3 3 2 0- 3 2 5 3 3 2 0- 3 2 6 3 3 2 0- 3 2 7
C h a n g e b al e 2 I n s ert s R o u g h B ori n g H e a d V R B- L A dj u st a bl e
O R D E R N O.
T o ol c o n n e cti o n
D( m m) L C B ori n g R a n g e ( m m) ( m m)
V R B 2 5- 3 5 L C V R B 3 2- 4 5 L C V R B 3 2- 4 5 L T V R B 4 0- 5 5 L C V R B 4 0- 5 5 L T V R B 4 0- 5 5 L S V R B 5 2- 7 5 L C V R B 5 2- 7 5 L T V R B 5 2- 7 5 L S V R B 6 8- 1 0 0 L C V R B 6 8- 1 0 0 L T V R B 6 8- 1 0 0 L S V R B 9 0- 1 3 0 L C V R B 9 0- 1 3 0 L T V R B 9 0- 1 3 0 L S V R B 1 2 0- 1 6 4 L C V R B 1 2 0- 1 6 4 L T V R B 1 2 0- 1 6 4 L S V R B 1 6 0- 2 0 4 L C V R B 1 6 0- 2 0 4 L T V R B 1 6 0- 2 0 4 L S V R B 2 0 0- 3 1 0 L V R B 3 0 0- 4 1 0 L V R B 4 0 0- 5 1 0 L V R B 5 0 0- 6 1 0 L V R B 6 0 0- 9 0 0 L V R B 9 0 0- 1 2 0 0 L
B2080
25~35
50
24
B3080
32~45
60
31
B4070
40~55
74
39
B5060
52~75
80
50
B6065
68~100
90
66
B6065
90~130
100
88
120~164 V T- B T 4 0- B S 7 0 V T- B T 5 0- B S 1 0 0 V T- B T 5 0- B S 2 0 0 V T- B T 5 0- B S 3 0 0 V T- B T 5 0- B S 4 0 0
F M A- 4 7. 6 2 5
100 95
160~204
130
200~310 300~410 400~510 500~610 600~900 900~1200
180 280 380 480 580 680
F B B Fi ni s h B ori n g H e a d
130
150
I n s ert
W ei g ht ( g)
C O DE N O.
C C MT060204 C C MT060204 T C M T 11 0 2 0 4 C C MT09T304 T C MT16T304 S C MT09T304 C C MT09T304 T C MT16T304 S C MT09T304 C C MT120408 T C MT16T304 S C MT120404 C C MT120408 T C MT16T304 S C MT120404 C C MT120408 T C MT220408 S C MT120404 C C MT120408 T C MT220408 S C MT120404
0. 1 5
3 3 2 0- 3 4 0 3 3 2 0- 3 4 1 3 3 2 0- 3 4 2 3 3 2 0- 3 4 3 3 3 2 0- 3 4 4 3 3 2 0- 3 4 5 3 3 2 0- 3 4 6 3 3 2 0- 3 4 7 3 3 2 0- 3 4 8 3 3 2 0- 3 4 9 3 3 2 0- 3 5 0 3 3 2 0- 3 5 1 3 3 2 0- 3 5 2 3 3 2 0- 3 5 3 3 3 2 0- 3 5 4 3 3 2 0- 3 5 5 3 3 2 0- 3 5 6 3 3 2 0- 3 5 7 3 3 2 0- 3 5 8 3 3 2 0- 3 5 9 3 3 2 0- 3 6 0 3 3 2 0- 3 6 1 3 3 2 0- 3 6 2 3 3 2 0- 3 6 3 3 3 2 0- 3 6 4 3 3 2 0- 3 6 5 3 3 2 0- 3 6 6
O pti o n al l n s ert s C C MT120408 T C MT16T304 T C MT220408 S C MT120404
0. 3 0. 6
1
2. 5
3. 1
3. 8
4. 8 9. 5 1 1. 5 1 3. 5 1 5. 5 23 32
B ori n g di a m et er fr o m ø 2 0- ø 1 2 5 0 m m
V B Q5
F E A T U R E S:
F B B fi ni s h b ori n g h e a d i s s uit a bl e f or Ø 2 0 m m t o Ø 1 2 5 0 m m o n di a m et er. T h e di al h a s b e e n gr a d u at e d i nt o 5 0
O R D E R N O.
Ø D T o ol W ei g ht B ori n g H e a d C o n n e cti o n B ori n g l e n gt h ( k g) R a n g e Ty p e B1070 2 0- 2 6 35 0. 1 F B B20 o n di a m et er. A v ail a bl e i s a s u b- di al f or B2080 2 5- 3 3 0. 2 F B B25 40 B3080 3 2- 4 2 0. 3 F B B32 B4070 4 0- 5 5 50 0. 5 F B B40 i n n er l u bri c ati o n i s fr e e fr o m t h e eff e ct s B5075 5 2- 7 5 60 1 F B B52 of c hi p, f e at uri n g hi g h d ur a bilit y. B 6 0 6 5 6 81 0 2 2 F B B 6 8 C o ol a nt n o z zl e e a sil y c o ol s t h e i n s ert 70 B6065 1 0 0- 1 5 2 2. 9 F B B100 B6065 1 5 0- 2 0 2 4. 2 F B B150
I n s ert/ Cl a m pi n g/ S cr e w
C O DE N O.
3 3 2 0- 3 7 0 3 3 2 0- 3 7 1 T P G H 0 8 0 2 0 4/ Ø 2. 7 x M 2/ T 6 3 3 2 0- 3 7 2 3 3 2 0- 3 7 3 3 3 2 0- 3 7 4 3 3 2 0- 3 7 5 T P G H 0 8 0 2 0 4/ Ø 3. 2 x M 2/ T 6 3 3 2 0- 3 7 6 3 3 2 0- 3 7 7
pr o vi n g hi g h st a bilit y a n d ri gi dit y.
T O O LI N G S Y S T E M
C88
B O RI N G S Y S T E M
B ori n g r o n g e fr o m ø 2 5 m m t o ø 1 2 5 0 m m; a v ari et y of t o ol h ol d er s a n d b ori n g h e a d s ar e f or y o ur s el e cti o n.
F B B Fi ni s h B ori n g H e a d
B ori n g di a m et er fr o m Ø 3 - Ø 4 0 m m F E A T U R E S:
B O RI N G C A P A CI T Y F B B 4 4 Ø 8 - Ø 2 0 m/ m F B B 5 5 Ø 1 2 - Ø 4 0 m/ m F B B 6 6 Ø 8 - Ø 4 0 m/ m
A v ail a bl e ar e t hr e e diff er e nt st yl e s e n a bli n g s m all di a met er b ori n g fr o m Ø 8 m m t o Ø 4 0 m m. B ori n g r a n g e c a n b e b ori n g b ar h a s b e e n e m pl o y e d. T h e di al h a s b e e n gr a d u at e d i nt o 5 0 di vi si o n s, e a c h of
i s fr e e fr o m t h e eff e ct s of c hi p, f e at uri n g hi g h d ur a bilit y. f a c e s u p p ort, pr o vi n g hi g h st a bilit y a n d ri gi dit y. O R D E R N O. B ori n g H e a d T y p e
T o ol C o n n e cti o n
Ød Ø D I nt er n al Di a m et er E xt er n al Di m et er
F B B44
B4070
10
F B B55
B5060
12
F B B66
B6065
16
B O RI N G B A R S L E E V E F O R F B B 6 6
m m W ei g ht feed ( k g)
L l e n gt h
L1
39
32
Ø22x24L
0- 2
0. 4
3 3 2 0- 3 9 0
50
40
Ø 2 8 x 3 0 L 0- 3. 5
0. 8
3 3 2 0- 3 9 1
64
50
Ø36x40L
1. 4
3 3 2 0- 3 9 2
0- 5
C O D E N O.
O R DE R N O. E C1608
D m m 16
D1 m m 8
A p pli c a bl e C ar bi d e T o ol H ol d er
C O D E N O.
S T 0 8- 5 M
3 3 2 0- 3 9 3
E C1610
16
10
S T 1 0- 6 M
3 3 2 0- 3 9 4
E C1612
16
12
S T 1 2- 6 M
3 3 2 0- 3 9 5
S m all Di a m et er B ori n g H e a d F B B 4 4
F O R F B B 4 4 B O RI N G C A P A CI T Y F R O M Ø 8 - Ø 2 0 M M B R B 1 0 0 8- 3 2
Ød m m 8
L m m 64
L2 m m 32
B R B 1 0 1 0- 4 0
10
72
40
B R B 1 0 1 2- 4 5
12
77
27
16
77
27
O R D E R N O.
Ø D m m
10
B R B 1 0 1 6- 4 5
H m m
9
I n s ert
Cl a m p S cr e w
Wr e n c h
T B GT060104 KY O CE RA
M2
T6
T P G B090204 KY O CE RA
M 2. 5
T8
T P G B090204 M 2. 5 20 77 27 B R B 1 0 2 0- 4 5 KY O CE RA B R B 1 0- 5 P C S/ S E T B R B 1 0 0 8- 3 2 B R B 1 0 1 0- 4 0 B R B 1 0 1 2- 4 5 B R B 1 0 1 6- 4 5 B R B 1 0 2 0- 4 5
T8
C O D E N O. 3 3 2 0- 4 0 0 3 3 2 0- 4 0 1 3 3 2 0- 4 0 2 3 3 2 0- 4 0 3 3 3 2 0- 4 0 4 3 3 2 0- 4 0 5
F O R F B B 6 6 B O RI N G C A P A CI T Y F R O M Ø 8 - Ø 4 0 M M B R B 1 6 0 8- 3 2
Ød m m 8
L m m 74
L2 m m 32
B R B 1 6 1 0- 4 0
10
75
40
B R B 1 6 1 2- 5 3
12
85
53
B R B 1 6 1 6- 6 8
16
100
68
20
11 5
83
B R B 1 6 2 5- 9 0
25
122
90
B R B 1 6 3 0- 9 0
30
122
90
O R D E R N O.
Ø D m m
B R B 1 6 2 0- 8 3
B R B 1 6 4 0- 9 0
16
H m m
15
I n s ert
Cl a m p S cr e w
Wr e n c h
T B GT060104 KY O CE RA
M2
T6
T P G B090204 KY O CE RA
M 2. 5
T8
T O O LI N G S Y S T E M
3 3 2 0- 4 0 6 3 3 2 0- 4 0 7 3 3 2 0- 4 0 8 3 3 2 0- 4 0 9 3 3 2 0- 4 1 0
T P G B090204 KY O CE RA
40 122 90 B R B 1 6 0 8- 3 2 B R B 1 6 1 0- 4 0 B R B 1 6 1 2- 5 3 B R B 1 6 1 6- 6 8 B R B 1 6- 8 P C S/ S E T B R B 1 6 2 0- 8 3 B R B 1 6 2 5- 9 0 B R B 1 6 3 0- 9 0 B R B 1 6 4 0- 9 0
C89
C O D E N O.
M 2. 5
T8
3 3 2 0- 4 1 1 3 3 2 0- 4 1 2 3 3 2 0- 4 1 3 3 3 2 0- 4 1 4
C ar bi d e S h a n k H ol d er
O R D E R N O.
S T 0 8- 5 M- 1 0 0
L m m 100
D m m 8
S T 1 0- 6 M- 1 1 0
11 0
10
S T 1 2- 6 M- 1 2 0
120
12
S T 1 6- 1 0 M- 1 6 0
160
16
M m m M5
B ori n g di a m et er fr o m Ø8- Ø16 m m
A p pli c a bl e I n s ert H ol d er
A p pli c a bl e B u s hi n g
C O D E N O.
I H 0 9, I H 1 0. 5
E C1608
3 3 2 0- 4 2 0
I H12
E C1610
3 3 2 0- 4 2 1
I H 1 4, I H 1 6
E C1612
3 3 2 0- 4 2 4
I H 1 8,I H 2 0,I H 2 2,I H 2 4 I H 2 6,I H 2 8,I H 3 0,I H 3 2 I H 3 4,I H 3 6,I H 3 8,I H 4 0
---
3 3 2 0- 4 2 6
M6 M 1 0 x 1. 2 5 P
I n s ert H ol d er F or C ar bi d e S h a n k H ol d er B ori n g di a m et er fr o m Ø 9 -
O R D E R N O.
d( m m)
H( m m)
L( m m)
M( m m)
I H09 I H 1 0. 5 I H12 I H14 I H16 I H18 I H20 I H22 I H24 I H26 I H28 I H30 I H32 I H34 I H36 I H38 I H40
9 1 0. 5 12 14 16 18 20 22 24 26 28 30 32 34 36 38 40
7 7 8 10 10 14 14 14 14 14 14 14 14 14 14 14 14
18
M5
23
M6
I n s ert
T P GT080204L S U MI T O M O 27
Ø40 m m
Cl a m pi n g S cr e w
Wr e n c h
C O D E N O.
Ø 3. 2 x M 2
T6
3 3 2 0- 4 3 0 3 3 2 0- 4 3 1 3 3 2 0- 4 3 2 3 3 2 0- 4 3 3 3 3 2 0- 4 3 4 3 3 2 0- 4 3 5 3 3 2 0- 4 3 6 3 3 2 0- 4 3 7 3 3 2 0- 4 3 8 3 3 2 0- 4 3 9 3 3 2 0- 4 4 0 3 3 2 0- 4 4 1 3 3 2 0- 4 4 2 3 3 2 0- 4 4 3 3 3 2 0- 4 4 4 3 3 2 0- 4 4 5 3 3 2 0- 4 4 6
M 1 0 x 1. 2 5 P
V R B C h a n g e a bl e 2 I n s ert s R o u g h B ori n g H e a d
B ori n g di a m et er fr o m Ø 2 5 -
Ø500 m m
fr o m Ø 2 5 m m t o Ø 3 5 0 m m o n di a m et er. B ori n g h e a d c a n b e e a sil y a bj u st e d t o diff er e nt b ori n g n e e d s f or m a c hi ni n g o n d e m a n d. B ori n g d e pt h c a n b e e xt e n d e d b y t o ol c o n n e cti o n. M o st s uit a bl e f or b ori n g o n v ari o u s m a c hi n e c e nt er s or b ori n g mill s. U ni v er s al d e si g n a c c e pt s P at e nt e d st e p b ori n g d e si g n; s uit a bl e f or b ot h l e v el b ori n g a n d st e p b ori n g.
C h a n g e a bl e 2 I n s ert s R o u g h B ori n g H e a d V R B 2 0 0 ~ 9 0 0 B ori n g di a m et er fr o m Ø 2 5 -
Ø204 m m
P at e nt e d st e p b ori n g d e si g n; s uit a bl e f or b ot h l e v el b ori n g a n d st e p b ori n g.
E nl a g e a bl e M o d ul ar R o u g h B ori n g H e a d Wit h Di a m et er O v er Ø 2 0 0 m m B ori n g di a m et er fr o m Ø 2 0 0 -
Ø 2, 0 0 0 m m
O pti o n s of v ari o u s i n s ert s f or r o u g h b ori n g of diff er e nt m at eri al s a n d b ori n g st yl e s.
T O O LI N G S Y S T E M
C90
B O RI N G S Y S T E M
S m all Di m et er M o d ul ar B ori n g B ar
Pr e ci si o n Fi ni s h B ori n g H e a d S et s
B ori n g di a m et er Ø 6- 9 0 m m B ori n g B ar PA G E C85
1 S C A L E 0. 0 0 2 M M p er Ø
D48
Pr o c e s si n g r a n g e Ø d 6- 9 0 m m. Pl e a s e k e e p b ori n g h e a d cl e a n a n d l u bri c at e c o n st a ntl y.
SET TYPE V B H D- B T- 3 0
B T 3 0- V C K 4- 4 5
Head L 1 Di a. P C S/ S E T C O D E N O. Ø D 45 3 3 2 0- 4 5 0
V B H D- B T- 4 0
B T 4 0- V C K 4- 6 0
60
3 3 2 0- 4 5 1
V B H D- B T- 5 0
B T 5 0- V C K 4- 7 5
75
3 3 2 0- 4 5 2
V B H D- S K- 4 0
S K 4 0- V C K 4- 6 5
65
O R D E R N O.
V B H D- S K- 5 0
B ori n g Range Ø
6- 9 0
Shank
48
14 P C S/ S E T
3 3 2 0- 4 5 3
S K 5 0- V C K 4- 7 5
75
V B H D- N T- 4 0
N T 4 0- 4 0- V C K 4- 6 0
60
3 3 2 0- 4 5 4
V B H D- N T- 5 0
N T 5 0- 5 0- V C K 4- 6 0
60
3 3 2 0- 4 5 6
V B H D- H S K 6 3 A
H S K 6 3 A- V C K 4- 7 5
75
3 3 2 0- 4 5 7
V B H D- H S K 1 0 0 A
H S K 1 0 0 A- V C K 4- 7 5 7 5
3 3 2 0- 4 5 8
3 3 2 0- 4 5 5
V B H D S H A N K
O R D E R N O. B T 3 0- V C K 4- 4 5 B T 4 0- V C K 4- 6 0 B T 5 0- V C K 4- 7 5 S K 4 0- V C K 4- 6 5 S K 5 0- V C K 4- 7 5 N T 4 0- 4 0- V C K 4- 6 0 N T 5 0- 5 0- V C K 4- 6 0 H S K 6 3 A- V C K 4- 7 5 H S K 1 0 0 A- V C K 4- 7 5
A C C E S S O RI E S: B O RI N G B A R SI Z E F O R S E T T Y P E B R- 1 6 0 6- 2 0
Range d 6- 9
D e pt h m 20
W B GT060102L
B R- 1 6 0 8- 2 8
8- 1 1
28
T B GT060102L
B R- 1 6 1 0- 3 6
1 0- 1 3
36
T B GT060104L
B R- 1 6 1 2- 4 2
1 2- 1 5
42
B R- 1 6 1 4- 5 0
1 4- 1 7
50
B R- 1 6 1 6- 6 0
1 6- 2 0
60
B R- 1 6 2 0- 6 3
2 0- 2 4
63
B R- 1 6 2 4- 6 4
2 4- 2 8
64
B ori n g B ar
B M5
I n s ert
S RT P2838
2 8- 3 8
+10
S RT P3652
3 6- 5 2
+12
S RT P4470
4 4- 7 0
+12
C91
5 8- 9 0
T O O LI N G S Y S T E M
+20
Feed m m/ R E V. 0. 0 5- 0. 1
T S2
T6
0. 0 5- 0. 1 0. 0 7- 0. 1 5 0. 0 5- 0. 1
T8
T P GT090204L
0. 0 7- 0. 1 5 M5 X15 C A P
4
T S25
T8
M8 X 15 C A P
6
T S25
T8
0. 0 5- 0. 1
T P GT090204L
B M8 S R T P 5 8- 9 0
Wr e n c h
T S25
T P GT090202L
W EI G H T
S cr e w
T P GT090202L
6 0 + S R T P 2 8 3 8/ S R T P 3 6 5 2/ S R T P 4 4 7 0
L 45 60 75 65 75 60 60 75 75
T P GT090204L
0. 0 7- 0. 1 5
C O D E N O. 3 3 2 0- 4 5 0 S 3 3 2 0- 4 5 1 S 3 3 2 0- 4 5 2 S 3 3 2 0- 4 5 3 S 3 3 2 0- 4 5 4 S 3 3 2 0- 4 5 5 S 3 3 2 0- 4 5 6 S 3 3 2 0- 4 5 7 S 3 3 2 0- 4 5 8 S
Pr e ci si o n Fi ni s h B ori n g H e a d S et s
B ori n g di a m et er Ø 6- 1 5 0 m m B ori n g B ar PA G E C85
1 S C A L E 0. 0 0 2 M M p er Ø
B O RI N G H E A D S E T S
D60
Pr o c e s si n g r a n g e Ø d 6- 1 5 0 m m. Pl e a s e k e e p b ori n g h e a d cl e a n a n d l u bri c at e c o n st a ntl y.
SET TYPE
V B HE S H A N K
V B H E- N T- 5 0
N T 5 0- 5 0- V C K 5- 7 5
O R D E R N O. Head L 1 Di a. P C S/ S E T C O D E N O. B T 4 0- V C K 5- 6 0 Ø D B T 5 0- V C K 5- 7 5 60 3 3 2 0- 4 6 0 S K 4 0- V C K 5- 6 5 75 3 3 2 0- 4 6 1 S K 5 0- V C K 5- 7 5 65 3 3 2 0- 4 6 2 N T 4 0- 4 0- V C K 5- 6 0 75 3 3 2 0- 4 6 3 N T 5 0- 5 0- V C K 5- 7 5 15 60 H S K 6 3 A- V C K 5- 7 5 P C S/ S E T 60 3 3 2 0- 4 6 4 H S K 1 0 0 A- V C K 5- 7 5 75 3 3 2 0- 4 6 5
V B H E- H S K 6 3 A
H S K 6 3 A- V C K 5- 7 5
75
3 3 2 0- 4 6 6
V B H E- H S K 1 0 0 A
H S K 1 0 0 A- V C K 5- 7 5
75
3 3 2 0- 4 6 7
O R D E R N O.
B ori n g Range Ø
Shank
V B H E- B T- 4 0
B T 4 0- V C K 5- 6 0
V B H E- B T- 5 0
B T 5 0- V C K 5- 7 5
V B H E- S K- 4 0
S K 4 0- V C K 5- 6 5
V B H E- S K- 5 0 V B H E- N T- 4 0
6- 1 5 0
S K 5 0- V C K 5- 7 5 N T 4 0- 4 0- V C K 5- 6 0
A C C E S S O RI E S: B O RI N G B A R SI Z E F O R S E T T Y P E
L 60 75 95 75 60 75 75 75
W EI G H T
Range d 6- 9
D e pt h m 20
W B GT060102L
B R- 1 6 0 8- 2 8
8- 1 1
28
T B GT060102L
B R- 1 6 1 0- 3 6
1 0- 1 3
36
T B GT060104L
0. 0 7- 0. 1 5
B R- 1 6 1 2- 4 2
1 2- 1 5
42
B R- 1 6 1 4- 5 0
1 4- 1 7
50
T P GT090202L
0. 0 5- 0. 1
B R- 1 6 1 6- 6 0
1 6- 2 0
60
B R- 1 6 2 0- 6 3
2 0- 2 4
63
B R- 1 6 2 4- 6 4
2 4- 2 8
64
B ori n g B ar B R- 1 6 0 6- 2 0
B M5
I n s ert
S cr e w
Wr e n c h
T S2
T6
T S25
6 0 + S R T P 2 8 3 8/ S R T P 3 6 5 2/ S R T P 4 4 7 0 2 8- 3 8
+10
S RT P3652
3 6- 5 2
+12
S RT P4470
4 4- 7 0
+12
T P GT090204L
S R T P 7 0 11 0
7 0- 1 1 0
+20
T P GT090202L
S R T P 11 0 1 5 0
1 1 0- 1 5 0
+20
T P GT090204L
T P GT090202L
B M8
Feed m m/ R E V. 0. 0 5- 0. 1 0. 0 5- 0. 1
T8
T P GT090204L
S RT P2838
C O D E N O. 3 3 2 0- 4 6 0 S 3 3 2 0- 4 6 1 S 3 3 2 0- 4 6 2 S 3 3 2 0- 4 6 3 S 3 3 2 0- 4 6 4 S 3 3 2 0- 4 6 5 S 3 3 2 0- 4 6 6 S 3 3 2 0- 4 6 7 S
0. 0 7- 0. 1 5 M5 X15 C A P
4 0. 0 5- 0. 1
T S25
T8 0. 0 7- 0. 1 5
M8 X 15 C A P
6
T S25
T8
0. 0 5- 0. 1 0. 0 7- 0. 1 5
T O O LI N G S Y S T E M
C92
Mi cr o B ori n g H e a d S et
I S c al e 0. 0 0 2 m m B ori n g di a m et er fr o m Ø 6 - Ø 1 5 4 m m B ori n g B ar PA G E C85
Pr o c e s si n g r a n g e Ø 6- 1 5 4 m m. Pr e ci s el y gr o u n d a n d h ar d e n e d s h a n k s m o ot h o p er ati o n. Pl e a s e k e e p b ori n g h e a d cl e a n a n d l u bri c at e d c o n st a ntl y. E a s y & Si m pl e o p er ati o n. C o m p el et e s et. Fi n e a dj u st m e nt. L u x ur y b o x. M at eri al : t o ol st e el
SET TYPE O R D E R N O.
B ori n g R a n g e Ø
V B H 5 5- B T 4 0 V B H 5 5- B T 5 0
6- 1 5 4
L
P c s/ S E T
B T 4 0- V B K 5- 7 5
75
18
3 3 2 0- 4 7 0
B T 5 0- V B K 5- 1 0 5
105
18
3 3 2 0- 4 7 1
I N C L U DI N G A C C E S S O RI E S : B O RI N G B A R SI Z E F O R S E T T Y P E
C93
B ori n g B ar B R 1 6 0 6 A- 2 1
Range Ø6- Ø9
B R 1 6 0 8 A- 2 8
Ø 8 - Ø 11
B R 1 6 1 0 A- 3 5
Ø10- Ø13
B R 1 6 1 2 A- 4 2
Ø12- Ø15
B R 1 6 1 4 A- 5 0
Ø14- Ø17
B R 1 6 1 6 A- 6 0
Ø16- Ø20
B R 1 6 2 0 A- 6 5
Ø20- Ø24
B R 1 6 2 4 A- 6 8
Ø24- Ø28
C 1 6- B R M- S P 2 7
Ø27- Ø40
C 1 6- B R M- S P 3 5
Ø35- Ø50
C 1 6- B R M- S P 4 5
Ø45- Ø68
C B- M 1 0- S P 5 5
Ø55- Ø80
C B- M 1 0- S P 6 8
Ø68- Ø104
C B- M 1 0- S P 1 0 0
Ø100- Ø154
T O O LI N G S Y S T E M
W ei g ht ( k g s)
Shank
C O D E N O.
I n s ert W B GT060102
S cr e w Ø3 x M2
Wr e n c h T6
T B GT060102
Ø 2. 7 x M 2
T6
T P GT090204
M 2. 5
T8
Mi cr o B ori n g H e a d S et
I S c al e 0. 0 0 2 m m B ori n g di a m et er fr o m Ø 6 - Ø 2 0 4 m m
B O RI N G H E A D S E T S
B ori n g B ar PA G E C85
Pr o c e s si n g r a n g e Ø 6- 2 0 4 m m. Pr e ci s el y gr o u n d a n d h ar d e n e d s h a n k s m o ot h o p er ati o n. Pl e a s e k e e p b ori n g h e a d cl e a n a n d l u bri c at e d c o n st a ntl y. E a s y & Si m pl e o p er ati o n. C o m p el et e s et. Fi n e a dj u st m e nt. L u x ur y b o x. M at eri al : t o ol st e el
SET TYPE O R D E R N O.
B ori n g R a n g e Ø
V B H 6 8- B T 4 0 V B H 6 8- B T 5 0
6- 2 0 4
W ei g ht ( k g s)
Shank
L
P c s/ S E T
B T 4 0- V B K 6- 6 5
65
19
3 3 2 0- 4 7 6
B T 5 0- V B K 6- 9 5
95
19
3 3 2 0- 4 7 7
I N C L U DI N G A C C E S S O RI E S : B O RI N G B A R SI Z E F O R S E T T Y P E B ori n g B ar B R 1 6 0 6 A- 2 1
Range Ø6- Ø9
B R 1 6 0 8 A- 2 8
Ø 8 - Ø 11
B R 1 6 1 0 A- 3 5
Ø10- Ø13
B R 1 6 1 2 A- 4 2
Ø12- Ø15
B R 1 6 1 4 A- 5 0
Ø14- Ø17
B R 1 6 1 6 A- 6 0
Ø16- Ø20
B R 1 6 2 0 A- 6 5
Ø20- Ø24
B R 1 6 2 4 A- 6 8
Ø24- Ø28
C 1 6- B R M- S P 2 7
Ø27- Ø40
C 1 6- B R M- S P 3 5
Ø35- Ø50
C 1 6- B R M- S P 4 5
Ø45- Ø68
C B- M 1 0- S P 6 8
Ø68- Ø104
C B- M 1 0- S P 1 0 0
Ø100- Ø154
C B 1 5 0- R C M 1 0 0- S P 1 0 0
Ø150- Ø204
C O D E N O.
I n s ert W B GT060102
S cr e w Ø3 x M2
Wr e n c h T6
T B GT060102
Ø 2. 7 x M 2
T6
T P GT090204
M 2. 5
T8
T O O LI N G S Y S T E M
C94
Hi g h Pr e ci si o n B ori n g H e a d S et
1 S C A L E 0. 0 0 5 m m 0. 0 1 m m p er Ø B O RI N G C A P A CI T Y Ø 8- Ø 4 6
B ori n g B ar PA G E C85
V B H 620 M a d e of t o ol st e el, hi g h ri gi dit y, n o d ef or m ati o n. E a c h di vi di n g s c al e i s 0. 0 0 5 m m, t ot al str o k e: 6 m m. F or Ø di a m et er i s 0. 0 1 m m
B ori n g B ar
I n cl u d e 8 b ori n g b ar s, r a n g e Ø 8 ~ Ø 4 6 m m. B ori n g b ar si z e = Ø 1 6 x 8 p c s Wr e n c h x 6 p c s
SET TYPE O R D E R N O.
S H A N K TYPE
D R A W B A R S. A. E
T H RE A D M E T RI C
W ei g ht ( k g s)
C O D E N O.
V B H 6 2 0- N T 4 0
N T- 4 0
5/ 8 - 1 1 W
M 1 6 X 2. 0 P
6. 5
3 3 2 0- 4 8 0
V B H 6 2 0- N T 5 0
N T- 5 0
1 -8 W
M 2 4 X 3. 0 P
7. 8
3 3 2 0- 4 8 1
V B H 6 2 0- B T 4 0
B T- 4 0
M 1 6 X 2. 0 P
6. 5
3 3 2 0- 4 8 2
V B H 6 2 0- B T 5 0
B T- 5 0
M 2 4 X 3. 0 P
8
3 3 2 0- 4 8 3
V B H 6 2 0- S K 4 0
S K- 4 0
M 1 6 X 2. 0 P
6. 5
3 3 2 0- 4 8 4
V B H 6 2 0- S K 5 0
S K- 5 0
M 2 4 X 3. 0 P
7. 8
3 3 2 0- 4 8 5
B O RI N G B A R F O R B O RI N G H E A D
C95
B O RI N G B A R
R A N GE d
DEPT H m
S H A N K L
B R B 1 6 0 8- 3 2
8- 1 1
32
80
B R B 1 6 1 0- 4 0
1 0- 1 3
40
80
B R B 1 6 1 2- 5 3
1 2- 1 5
53
85
B R B 1 6 1 6- 6 8
1 6- 2 1
68
100
B R B 1 6 2 0- 8 3
2 0- 2 6
83
11 5
B R B 1 6 2 5- 9 0
2 5- 3 1
90
122
B R B 1 6 3 0- 9 0
3 0- 3 6
90
122
B R B 1 6 4 0- 9 0
4 0- 4 6
90
122
T O O LI N G S Y S T E M
I NSE RT
S C RE W
W RE N C H
T B GT060102L
T S2001
T6
T P G H090204L
T P G H 11 0 3 0 4 L
T S2504
T S3005
T8
T10
Hi g h Pr e ci si o n B ori n g H e a d S et 1 S C A L E 0. 0 0 5 m m 0. 0 1 m m p er Ø B O RI N G C A P A CI T Y Ø 8- Ø 2 8 0
B O RI N G H E A D S E T S
B ori n g B ar PA G E C85
V B H 2084 M a d e of t o ol st e el, hi g h ri gi dit y, n o d ef or m ati o n. E a c h di vi di n g s c al e i s 0. 0 0 5 m m, t ot al str o k e: 2 7 m m. F or Ø di a m et er i s 0. 0 1 m m
B ori n g H e a d B ori n g B ar
I n cl u d e 8 b ori n g b ar s, r a n g e Ø 8 ~ Ø 2 8 0 m m. B ori n g b ar si z e = Ø 2 0 x 8 p c s Wr e n c h x 6 p c s
SET TYPE O R D E R N O.
S H A N K TYPE
V B H 2 0 8 4- R 8 V B H 2 0 8 4- N T 3 0 V B H 2 0 8 4- N T 4 0 V B H 2 0 8 4- N T 5 0 V B H 2 0 8 4- B T 4 0 V B H 2 0 8 4- B T 5 0 V B H 2 0 8 4- S K 4 0 V B H 2 0 8 4- S K 5 0 V B H 2 0 8 4- M T 3 V B H 2 0 8 4- M T 4 V B H 2 0 8 4- M T 5 V B H 2 0 8 4- C 2 5 V B H 2 0 8 4- C 3 2
R- 8 N T- 3 0 N T- 4 0 N T- 5 0 B T- 4 0 B T- 5 0 S K- 4 0 S K- 5 0 M T- 3 M T- 4 M T- 5 C25 C32
D R A W B A R S. A. E 7/ 1 6 - 2 0 U N F 1/ 2 - 1 2 W 5/ 8 - 1 1 W 1 -8 W
T H RE A D M E T RI C n/ a M 1 2 X 1. 7 5 P M 1 6 X 2. 0 P M 2 4 X 3. 0 P M 1 6 X 2. 0 P M 2 4 X 3. 0 P M 1 6 X 2. 0 P M 2 4 X 3. 0 P M 1 2 X 1. 5 P M 1 6 X 2. 0 P M 2 4 X 3. 0 P
W ei g ht ( k g s) 6. 6 6. 6 7 9 8 1 0. 4 8
C O D E N O. 3 3 2 0- 4 9 1 3 3 2 0- 4 9 2 3 3 2 0- 4 9 3 3 3 2 0- 4 9 4 3 3 2 0- 4 9 5 3 3 2 0- 4 9 6 3 3 2 0- 4 9 7 3 3 2 0- 5 0 1 3 3 2 0- 4 9 8 3 3 2 0- 4 9 9 3 3 2 0- 5 0 0 3 3 2 0- 5 0 2 3 3 2 0- 5 0 3
6. 6 7 8
B O RI N G B A R F O R B O RI N G H E A D B O RI N G B A R
R A N GE d
DEPT H m
S H A N K L
B R B 2 0 0 8- 3 2
8- 1 1
32
80
B R B 2 0 1 0- 4 0
1 0- 1 3
40
80
B R B 2 0 1 2- 5 3
1 2- 1 7
53
85
B R B 2 0 1 6- 6 8
1 6- 2 1
68
100
B R B 2 0 2 0- 8 3
2 0- 1 3 0
83
11 5
B R B 2 0 2 5- 9 6
2 5- 1 3 5
96
135
B R B 2 0 3 0- 1 1 5
3 0- 1 4 0
11 5
154
B R B 2 0 3 5- 9 7- L
1 2 0- 2 8 0
14
99
I NSE RT
S C RE W
W RE N C H
T B GT060102L S U MI T O M O
T S2001
T6
T P G H090204L MI T S U BI S HI
T S2504
T8
T P G H 11 0 3 0 4 L MI T S U BI S HI
T S3005
T10
T O O LI N G S Y S T E M
C96
U ni v er s al B ori n g A n d F a ci n g M a st er H e a d
B O RI N G C A P A CI T Y Ø 5- Ø 2 5 0 F O R V E R TI C A L H O L E B O RI N G I S Ø 1 1 0
1 S C A L E 0. 0 1 m m p er Ø
VB H U
B ori n g B ar PA G E C85 O R D E R N O.
S H A N K TYPE
V B H U- 2 0 2 V B H U- 2 0 3 V B H U- 2 0 4 V B H U- 2 0 5 V B H U- 2 0 6 V B H U- 2 0 7 V B H U- 2 0 8 V B H U- 2 0 9 V B H U- 2 1 0 V B H U- 2 1 1 V B H U- 2 1 2 V B H U- 2 1 3 V B H U- 2 1 4
M T- 3 M T- 4 M T- 5 R- 8 N T- 3 0 N T- 4 0 N T- 5 0 B T- 4 0 C- 2 5 S K- 4 0 S K- 5 0 B T- 5 0 C- 2 0
D R A W B A R T H RE A D S. A. E M E T RI C 1/ 2 - 1 2 W M 1 2 X 1. 5 P 5/ 8 1 1 W M 1 6 X 2. 0 P 1 -8 W M 2 4 X 3. 0 P 7/ 1 6 -” 2 0 U N F n/ a 1/ 2 - 1 2 W M 1 2 X 1. 7 5 P 5/ 8 - 1 1 W M 1 6 X 2. 0 P 1 -8 W M 2 4 X 3. 0 P M 1 6 X 2. 0 P
78
C97
C O D E N O.
6 6. 3 7 6. 2 6 6. 2 8. 5 6. 9 4. 5 5. 6 8. 3 9. 7 6
3 4 0 1- 0 0 1 3 4 0 1- 0 0 2 3 4 0 1- 0 0 3 3 4 0 1- 0 0 4 3 4 0 1- 0 0 5 3 4 0 1- 0 0 6 3 4 0 1- 0 0 7 3 4 0 1- 0 0 8 3 4 0 1- 0 0 9 3 4 0 1- 0 1 0 3 4 0 1- 0 1 1 3 4 0 1- 0 1 2 3 4 0 1- 0 1 3
M 1 6 X 2. 0 P M 2 4 X 3. 0 P M 2 4 X 3. 0 P
S P E CI FI C A TI O N V B H U A C T U A L SI Z E
W ei g ht ( k g)
O V E RI N G B A R H O L E SI Z E 100
T O O LI N G S Y S T E M
B O RI N G B A R H O L E SI Z E 18
C E N T E R DI S T B E T W E E N H O L E S. 23
U nit: m m
C R O S S H O L E DI A
OFFSET
18
15
I nt er c h a n g e a bl e S h a n k s S HA NK A M T. 4 M 1 6
I S O- 4 0 M 1 6
I S O- 4 0 S G 2 0 X 2
R8
M T. 4 M 1 6 SI P
C- 2 0 C- 2 5 C- 3 2
I S O- 3 0
S H A N K C H A N G E A BL E
B O RI N G H E A D S E T S
M T. 3 M 1 2
B T- 4 0 B T- 5 0
I S O- 5 0 M 2 4
a c h a n g e i n di a m et er of b or e d h ol e b y . 0 0 0 5 .
-
D uri n g r e c e s si n g, t ur ni n g of fr o nt or r e ar f a ci n g s or si mil ar j o b s c alli n g f or a ut o m ati c tr a n s v er s e f e e d m o v e m e nt t o t h e t o ol sli d e, t h e pr e s el e ct e d f e e d
M e c h a ni s m of t h e b ori n g h e a d s h a s a l u bri c ati o n cir c uit d eli v eri n g oil fr o m
R e c e s si n g
O ut si d e t ur ni n g
F a ci n g of t h e r e v er s e si d e b y u si n g b ori n g b ar h ol d er s c o nt ai n e d i n att a c h m e nt.
h ol d er a n d a b or i n g b ar
S H A N K F O R V B H UM T- 3 M T- 4 M T- 5 N T- 3 0 N T- 4 0 N T- 5 0 R- 8 C- 2 0 C25 C- 3 2 B T- 4 0 B T- 5 0 S K- 4 0 S K- 5 0
i n g b ar h ol d e n r ei nf or c e d b y
diff er e nt bit s fr o m 5 Ø - 2 5 0 m m
b ori n g b ar a n d b ori n g b ar h ol d er
B e c a u s e of t h e s m all c o n str u cti o n of t h e f a ci n g a n d b ori n g h e a d s d e e p b or e s c a n b e m a d e. I n t hi s c a s e t h e b ori n g bit
T O O LI N G S Y S T E M
C98
B ori n g H e a d S et s
STA N D A R D TYPE
B ori n g B ar PA G E C85
I N S E R T N O. T B G T 0 6 0 1 0 2 L- W- T 1 2 0 0 A F O R S T E E L T B G T 0 6 0 1 0 2 L- W- G 1 1 F O R C A S TI N G “ S U MI T O M O” B R A N D
1 S C A L E 0. 0 0 5 m m, 0. 0 1 m m p er Ø Pr o c e s si n g R a n g e ø 1 0 ~ ø 2 4 0 m m
F ULL SET O R DE R N O.
S H A N K TYPE
Si m pl e, e xtr e m el y ri gi d c o n str u cti o n, Fi n e st m at eri al s a n d cr aft s m a n s hi p ar e e m pl o y e d t o c o m bi n e str e n gt h,
V B H- 1 0 2 V B H- 1 0 3 V B H- 1 0 4
M T- 3 M T- 4 M T- 5
v erti c al b ori n g t o ol h ol e s: o n e c e nt er e d a n d o n e off s et. O n e cr o s s h ol e f or gr e at er v er s atilit y a n d c a p a cit y. D e p e n d a bl e a dj u st m e nt --- f ar s pr e a d gr a d u ati o n f or cl o s er r e a di n g. P erf e ctl y b al a n c e d f or hi g h s p e e d o p er ati o n.
V B H- 1 0 5
R- 8
V B H- 1 0 6
N T- 3 0
V B H- 1 0 7 V B H- 1 0 8 V B H- 1 0 9 V B H- 1 1 0 V B H- 1 1 1 V B H- 1 1 2 V B H- 1 1 3 V B H- 1 1 4
N T- 4 0 N T- 5 0 B T- 4 0 S K- 4 0 C- 2 5 B T- 5 0 S K- 5 0 C- 3 2
t h e h e a d f or r o uti n g a n d s m o ot h er o p er ati o n.
D R A W B A R T H RE A D S. A. E M E T RI C M 1 2 X 1. 7 5 P M 1 6 X 2. 0 P M 2 0 X 3. 0 P 7/ 1 6 ~20 U NF 1/ 2 - 1 2 W or M 1 2 X 1. 7 5 P 1/ 2 - 1 3 W 5/ 8 - 1 1 W M 1 6 X 2. 0 P 1 -8 W M 2 4 X 3. 0 P M 1 6 X 2. 0 P M 1 6 X 2. 0 P M 2 4 X 3. 0 P M 2 4 X 3. 0 P
W ei g ht ( k g s)
C O DE N O.
5. 9 6. 1 7
3 4 0 1- 1 0 1 3 4 0 1- 1 0 2 3 4 0 1- 1 0 3
5. 9
3 4 0 1- 1 0 4
5. 8
3 4 0 1- 1 0 5
6 8. 9 7. 1 6. 8 5. 7 9. 4 5. 9 5. 9
3 4 0 1- 1 0 6 3 4 0 1- 1 0 7 3 4 0 1- 1 0 8 3 4 0 1- 1 0 9 3 4 0 1- 1 1 0 3 4 0 1- 1 1 1 3 4 0 1- 1 1 2 3 4 0 1- 1 1 3
S H A N K F O R B O RI N G H E A D
M T- 3, 4, 5 N T- 3 0, 4 0 , 5 0 B T- 4 0, 5 0 S K- 4 0, 5 0 C- 2 5, 3 2 C99
T O O LI N G S Y S T E M
O R D E R N O.
V B H- M T 3
V B H- M T 4
V B H- M T 5
V B H- R 8
W EI G H T ( K G)
0. 6
1. 2
2. 1
1
C O D E N O.
3 4 0 1- 1 2 0
3 4 0 1- 1 2 1
3 4 0 1- 1 2 2
3 4 0 1- 1 2 3
O R D E R N O.
V B H- N T 3 0
V B H- N T 4 0
V B H- N T 5 0
V B H- B T 4 0
W EI G H T ( K G)
1 .1
1 .2
3 .9
1 .9
C O D E N O.
3 4 0 1- 1 2 4
3 4 0 1- 1 2 5
3 4 0 1- 1 2 6
3 4 0 1- 1 2 7
O R D E R N O.
V B H- S K 4 0
V B H- C 2 5
V B H- B T 5 0
V B H- S K 5 0
W EI G H T ( K G)
1. 9
1. 5
3. 1
3. 9 8
C O D E N O.
3 4 0 1- 1 2 8
3 4 0 1- 1 2 9
3 4 0 1- 1 3 0
3 4 0 1- 1 3 1
B ori n g H e a d S et C- T y p e
1 S C A L E 0. 0 1 m m 0. 0 2 m m p er Ø
B ori n g B ar PA G E C85
H er e i s a st ur d y u nit of e xt e n d e d b ori n g r a n g e, c a p a bl e of p e eli n g off h e a v y r o u g hi n g c ut s a s s e c ur el y o n t h e b o d y, eli mi n at e s t h e n e e d f or a b e c o m e a n i nt e gr al p art of t h e b o d y.
a n d a dj u st m e nt s of 0. 0 1 or l e s s. All Crit eri o n B ori n g H e a d s h a v e t hr e a d e d b a c k s
V B H C- B C 2 S E T T Y P E
t a k e s a 1- 1/ 2”- 1 8 t hr e a d e d s h a n k. S H A N K SI Z E: N T- 3 0, 4 0, 5 0, M T- 3, 4, 5, R 8
M A X. B O RI N G D E P T H 5 0 m m
V B H C- B C 3 S E T T Y P E
B O RI N G C A P A CI T Y Ø 1 0 ~ Ø 1 1 0
B O RI N G C A P A CI T Y Ø 1 0 ~ Ø 2 2 0
O R D E R N O.
W EI G H T ( k g s)
C O D E N O.
V B H C- R- 8- B C- 2
O R D E R N O.
W EI G H T ( k g s)
C O D E N O.
2
3 4 0 1- 1 5 0
V B H C- R- 8- B C- 3
4. 2
3 4 0 1- 1 6 0
V B H C- M T- 2- B C- 2
1. 6 6
3 4 0 1- 1 4 9
V B H C- M T- 2- B C- 3
4
3 4 0 1- 1 4 8
V B H C- M T- 3- B C- 2
1. 9
3 4 0 1- 1 5 1
V B H C- M T- 3- B C- 3
4
3 4 0 1- 1 6 1
V B H C- M T- 4- B C- 2
2. 1
3 4 0 1- 1 5 2
V B H C- M T- 4- B C- 3
4. 3
3 4 0 1- 1 6 2
V B H C- N T- 3 0- B C- 2
2. 2
3 4 0 1- 1 5 3
V B H C- N T- 3 0- B C- 3
4. 1
3 4 0 1- 1 6 3
V B H C- N T- 4 0- B C- 2
2. 8
3 4 0 1- 1 5 4
V B H C- N T- 4 0- B C- 3
4. 7
3 4 0 1- 1 6 4
V B H C- B T- 3 0- B C- 2
2. 6 5
3 4 0 1- 1 5 5
V B H C- N T- 5 0- B C- 3
6. 9
3 4 0 1- 1 6 5
V B H C- B T- 4 0- B C- 2
2. 6 5
3 4 0 1- 1 5 6
V B H C- B T- 3 0- B C- 3
4. 3 4
3 4 0 1- 1 6 6
V B H C- B T- 5 0- B C- 2
5. 6 5
3 4 0 1- 1 5 7
V B H C- B T- 4 0- B C- 3
4. 7
3 4 0 1- 1 6 7
V B H C- C- 2 0- B C- 2
1. 7 5
3 4 0 1- 1 5 8
V B H C- B T- 5 0- B C- 3
7. 7
3 4 0 1- 1 6 8
V B H C- S K- 4 0- B C- 2
3 4 0 1- 1 7 4
V B H C- C- 2 0- B C- 3
4
3 4 0 1- 1 6 9
V B H C- S K- 5 0- B C- 2
3 4 0 1- 1 7 6
V B H C- S K- 4 0- B C- 3
3 4 0 1- 1 7 5
V B H C- S K- 5 0- B C- 3
3 4 0 1- 1 7 7
T O O LI N G S Y S T E M
C100
B O RI N G H E A D S E T S
aff er h ar d e ni n g a n d a pl ai nl y m ar k e d di al f a c e i n
B ori n g H e a d S h a n k C- T y p e F O R V B H C- T Y P E A N D B C- 2, B C- 3, B C- 4 B O RI N G H E A D
D: 1 1/ 2 - 1 8 U N C
T h e s h a n k s ar e m a d e t or f or C-t y p e b ori n g h e a d u s e. Al s o it c a n b e r e pl a c e d fr o m ti m e t o ti m e.
N T- 3 0 M1/122 x- 1.1 27 5U PN C N T- 4 0 B T- 4 0, 5 0
N T- 5 0
R- 8
M 1 0 x 1. 5 P 3/ 8- 1 6 N C M 1 2 x 1. 7 5 P 3/ 8 - 1 6 U N C M 1 6 x 2. 0 P 5/ 8 - 1 1 U N C M 2 4 x 3. 0 P 1 -8 U N C
M T- 2 M T- 3
M 1 6 x 2. 0 P 5/ 8 - 1 1 U N C M 2 4 x 3. 0 P 1 -8 U N C
M T- 4 M T- 5
O R DE R N O. W EI G H T ( K G)
V B C- R 8
V B C- N T 3 0
V B C- N T 4 0
V B C- M T 2
V B C- M T 3
V B C- M T 4
V B C- M T 5
0. 4
0. 7
1. 3
0. 3 9
0. 6
0. 9
1. 6
C O D E N O.
3 4 0 1- 2 1 0
3 4 0 1- 2 1 1
3 4 0- 2 1 2
3 4 0 1- 2 0 9
3 4 0 1- 2 1 3
3 4 0 1- 2 1 4
3 4 0 1- 2 1 5
O R DE R N O. W EI G H T ( K G)
V B C- B T 4 0
V B C- B T 5 0
V B C- C 2 0
V B C- S K 4 0
V B C- B T 3 0
V B C- S K 5 0
1. 4
3. 9 7
0. 4
1. 2 8
1. 1
1. 3
C O D E N O.
3 4 0 1- 2 1 6
3 4 0 1- 2 1 7
3 4 0 1- 2 1 9
3 4 0 1- 2 2 2
3 4 0 1- 2 2 3
3 4 0 1- 2 2 4
C101
T O O LI N G S Y S T E M
C- T y p e B ori n g H e a d 1 S C A L E 0. 0 1 m m 0. 0 2 m m p er Ø i n a n y s h o p.
Crit eri o n i n n o v ati o n t h at i n cr e a s e s b e ari n g s urf a c e s b y 5 0 % o v er t h e ol d er m o d el s.
O R D E R N O. V B C- 2
S P E CI FI C A TI O N
B O RI N G C A P A CI T Y Ø 1 0- Ø 1 0 0
O R DE R N O.
A CT U AL SI Z E
OVE R ALL LE N GT H
B O RI N G B A R H O L E SI Z E
C E N T E R DI S T B E T W E E N H O L E S.
C R OSS H O L E DI A
OFFSET
W EI G H T ( k g)
C O D E N O.
V B C- 2(I)
2 Di a.
2- 7/ 1 6
1/ 2
5/ 8
1/ 2
5/ 8
0. 7
3 4 0 1- 3 0 1
V B C- 2( m)
50
62
12
15
12
15
0. 8
3 4 0 1- 3 0 2
B ori n g B ar PA G E C85
1 S C A L E 0. 0 1 m m 0. 0 2 m m p er Ø H er e i s a st ur d y u nit of e xt e n d e d b ori n g r a n g e, c ah ol d er r e sti n g s e c ur el y o n t h e b o d y, eli mi n at e s t h e
h ar d e ni n g a n d a pl ai nl y m ar k e d di al f a c e i n n o nj u st m e n s of. 0 0 0 5 or l e s s. All Crit eri o n B ori n g H e a d s h a v e t hr e a d e d b a c k s f or
1 1/ 2 - 1 8 N C
O R D E R N O. V B C- 3
S P E CI FI C A TI O N
1- 1/ 2 - 1 8 N C t hr e a d e d s h a n k. B O RI N G C A P A CI T Y Ø 1 0- Ø 2 2 0
O R DE R N O.
A CT U AL SI Z E
OVE R ALL LE N GT H
B O RI N G B A R H O L E SI Z E
C E N T E R DI S T B E T W E E N H O L E S.
C R OSS H O L E DI A
OFFSET
W EI G H T ( k g)
C O D E N O.
V B C- 3(I)
3 Di a.
3. 5/ 3 2
3/ 4
1 5/ 1 6
3/ 4
1
2
3 4 0 1- 3 0 3
V B C- 3( m)
75
80
18
23
18
25
2
3 4 0 1- 3 0 4
1 S C A L E 0. 0 1 m m 0. 0 2 m m p er Ø p ut o n al ar g e m a c hi n e t o pr o c e s s m or e a s y o u a b o ut ø 4 0 0 m m l o n g b y a b ori n g b ar of 1 6 0 m m. All Crit eri o n B ori n g H e a d s h a v e t hr e a d e d b a c k s f or 1 1/ 2 - 1 8 N C
S P E CI FI C A TI O N
1- 1/ 2”- 1 8 N C t hr e a d e d s h a n k. B O RI N G C A P A CI T Y Ø 1 0- Ø 2 5 0
O R DE R N O.
A CT U AL SI Z E
OVE R ALL LE N GT H
B O RI N G B A R H O L E SI Z E
C E N T E R DI S T B E T W E E N H O L E S.
C R OSS H O L E DI A
OFFSET
W EI G H T ( k g)
C O D E N O.
V B C- 4(I)
4 Di a.
3- 1/ 2
1
1- 1/ 4
1
1
4
3 4 0 1- 3 0 5
V B C- 4( m)
100
90
25
32
25
25
4
3 4 0 1- 3 0 6
T O O LI N G S Y S T E M
C102
B O RI N G H E A D
A 1/ 2 cr o s s h ol e i s a v ail a bl e. T h e u nit h a s a 1 1/ 2 - 1 8 N C t hr e a d e d b a c k a n d al s o
1 1/ 2 - 1 8 N C
T o u c h P oi nt S e n s or
E d g e Fi n d er wit h B e e p er & O pti c al
BEEPE R O P TI C A L
N o n e e d t o r ot at e w hil e m e a s uri n g. T h e r e d li g ht w a s s e al e d wit h s etti n g r e d- gl u e; it c a n c o n c e ntr at e t h e li g ht a n d r e si st w at er. T h e s e n s or b e e p s w hil e t h e r e d li g ht i s o n. T h e s e n s or will b e e p w h e n t h e u s er c o ul d n’t s e e t h e r e v er s e si d e or g et a cl e ar si g ht. E x a m pl e. If s e n s or’ s li g ht i s w or ki n g, vi s u all y y o u c o ul d n’t s e e i n si d e of t h e i n n er h ol e, w hil e pr o bi n g t h e u s er c a n b e w ar n e d b y t h e b e e p er. W h e n pr o b e t h e d e e p h ol e, y o u c a n’t s e e t h e r e d li g ht, b ut y o u c a n h e ar t h e s o u n d fr o m b e e p er. A c c ur a c y: wit hi n 0. 0 0 5 m m. ※ N o n e e d t or ot at e.
O P TI C A L T Y P E WI T H B E E P E R O R DE R N O.
D
d1
d2
L
V P S- 2 0 B
Ø20
18
10
157 77
41
V P S- 3 2 B
Ø32
18
10
157 74
41
V P S- 3/ 4 B
Ø 3/ 4
18
10
157 74
41
l1 l2
B AT T E R Y TYPE U M- 5 #( S P) x 1 P C S/ 1 2 V
T o u c h P oi nt S e n s or
O pti c al T y p e
U nit: m m
W EI G H T ( k g) 0. 4
C O D E N O.
0. 7
3 4 0 2- 0 0 2
0. 7
3 4 0 2- 0 1 2
3 4 0 2- 0 0 1
Wit h o ut B e e p er
Hi g h s e n siti vit y p o siti o n s e n s or. R e d pil ot c a n b e s e e n cl e arl y. W h ol e tr a v el of r e d pil ot i s s p ar kli n g, d et e cti n g al s o c a n b e d o n e d uri n g t ur ni n g w hil e s pi n dl e st o p s. L o c ati o n of e n d s urf a c e, o utt er cir cl e di a.,i n n er cir cl e di a. of t h e w or kpi e c e f or pr o c e s si n g c a n b e d et e ct e d wit h f ull eff e ct. D e vi c e d wit h s af et y li n e e x c e s s, b all s u p p ort e d b y s pri n g, s o e v e n li n e T h e pr e ci si o n will r e a c h u p t o mi cr o m et er w hil e t h e b all r et ur n s t o c e nt er p o siti o n. E d g e Fi n d er A c c ur a c y: Wit hi n ± 0. 0 0 5 m m
O P TI C A L T Y P E
V P S- 2 0
V P S- 3 2
O R DE R N O.
D
d1
d2
L
l1
V P S- 2 0
20
18
10
V P S- 3 2
32
18
10
U nit: m m
l2
B AT T E R Y TYPE
W EI G H T ( k g)
C O D E N O.
157 76
33
0. 4
3 4 0 2- 0 0 3
157 74
41
U M- 5 #( S P) x 2 P/ R 1./ 1. 5 V
0. 7
3 4 0 2- 0 0 4
-
+ -
C: 5 m m C: C e nt er Di st a n c e
C
※ C103
N o n e e d t or ot at e. T O O LI N G S Y S T E M
+
T o u c h P oi nt S e n s or V P S- 2 0 1
E d g e Fi n d er
T hi s s eri e s i s a hi g h pr e ci si o n s etti n g d e vi c e f or p o siti o ni n g t h e a c c ur at e c e nt er b et w e e n t o ol s pi n dl e of m a c hi n e a n d r ef er e n c e s urf a c e of w or ki n g at l o w- c o st a n d s a vi n g ti m e. A c c ur a c y : wit hi n 0. 0 0 5 m m M a d e of t o ol st e el, h ar d e n e d a n d gr o u n d. S uit a bl e r ot ati o n s p e e d : V P S- 2 0 1 5 0 0 t o 7 0 0r p m.
C R E A MI C T Y P E V P S- 2 0 1 C
O R D E R N O.
V P S- 2 0 1
V P S- 2 0 1 C
W EI G H T ( K G)
0. 0 3
0. 0 6
C O D E N O.
3 4 0 2- 0 0 5
3 4 0 2- 0 0 7
T O U C H P OI N T S E N S O R
M E C H A NI C A L T Y P E
U N TI L T A S T E R C O N C E N T RI C
T o u c h P oi nt S e n s or
D el u x e T y p e F E A T U R E S:
M at eri al: hi g h- c ar b o n st e el. A c c ur a c y: wit hi n 0. 0 0 3 m m
R. P. M. Wit hi n 6 0 0- 9 0 0 S uit a bl e f or milli n g m a c hi n e. Drill m a c hi n e a n d b ori n g m a c hi n e. E d g e Fi n d er
V P S- 4 0 1 C E R A MI C ST E EL
V P S- 4 0 1 C
V P S- 4 0 1 ( 2 P C S/ S E T) V P S- 4 0 2 A( L O N G) SI N G L E V P S- 4 0 2 B( S H O R T) SI N G L E
O R D E R N O.
V P S- 4 0 1
V P S- 4 0 1 C
P C S/ S E T
2 P C S/ S E T
2 P C S/ S E T
M A T E RI A L
ST E EL
C E R A MI C
W EI G H T ( K G)
0. 2 6
0. 2 6
C O D E N O.
3 4 0 2- 0 0 6
3 4 0 2- 0 0 8
E X A M P L E S- A P P LI C A TI O N
U N TI L T A S T E R C O N C E N T RI C
T O O LI N G S Y S T E M
C104
T o u c h P oi nt S e n s or
M E C H A NI C A L T Y P E
V P S- 3 0 1 S T E E L
V P S- 3 0 1 S S T AI N L E S S
V P S- 3 0 2 S T E E L
V P S- 3 0 2 S S T AI N L E S S
V P S- 3 0 1 C C E R A MI C T Y P E
V P S- 3 0 2 C C E R A MI C T Y P E
V P S- 3 0 3 N O N- M A G N E TI C C O A TI N G
A c c ur a c y of z er o p oi nt t o p oi nt i s wit hi n ± 0. 0 0 3 m m R. P. M. wit hi n 5 0 0- 7 0 0. MI N.( 4 m m) c a n b e t e st mi ni h ol e f or y o ur w or k pi e c e. O R DE R N O.
V P S- 3 0 1 V P S- 3 0 2 S pi n dl e r u n s a b o ut 5 0 0r p m. m o v e s pi n dl e cl o s e d t o m e a s uri n g s urf a c e.
C105
W h e n m e a s uri n g pr o b e t o u c h e s w or k pi e c e, it l o o k s i n o n e p art.
T O O LI N G S Y S T E M
W h e n t h e pr o b e a n d s h a n k ar e i n ali g n m e nt, pr o b e will sli d e o ut of r ot ati n g c e nt er. N o w,t h e c e nt er s pi n dl e i s l o c at e d 5 m m a w a y fr o m m e a s uri n g s urf a c e
V P S- 3 0 1 S V P S- 3 0 2 S
M A T E RI A L ALL O Y ST E EL S T AI N L E S S
H A R D NESS
W EI G H T ( k g)
C O DE N O.
0. 0 6
3 4 0 2- 1 0 0
0. 0 5
3 4 0 2- 1 0 1
0. 0 6
3 4 0 2- 1 0 2
0. 0 6
3 4 0 2- 1 0 3
V P S- 3 0 1 C
C E R A MI C
0. 0 6
3 4 0 2- 1 0 4
V P S- 3 0 2 C
C E R A MI C
0. 0 6
3 4 0 2- 1 0 5
V P S- 3 0 3
N O N- M a g n eti c C o ati n g
0. 0 6
3 4 0 2- 1 0 6
H ei g ht Pr e s ett er
O P TI C A L T Y P E
H P- 5 0 Z H P- 5 0 Z B A T T E R Y L R4476 A G13 1 S E T/ 2 P C S H P- 5 0 Z M L R44 1 S E T/ 2 P C S
H EI G H T P R E S E T T E R
LI G H T O P TI C A L
M O D E L F or N E X T H ei g ht 5 0 m m a n d 1 0 0 m m. Wit h M a g n eti c b a s e. T h e r e d l a m p will b e li g ht e d u p w h e n t o u c h e d. A c c ur a c y 0. 0 0 5 m m. C o m bi n e d v erti c al a n d h ori z o nt al i n a u nit. W ei g ht: 0. 7 k g s
H P- 1 0 0 Z M
H P- 1 0 0 Z
EX A MPLE
T o u c h pl at e S et t h e t o ol & pr e s s t h e t o u c h pl at e u ntil y o u s e e t h e r e d li g ht .
LI G H T
W O R K TA BLE
O R DE R N O.
H
S TYLE
H P- 5 0 Z
50 m m
H P- 5 0 Z M
LI G H T
St a n d ar d h ei g ht 5 0 M M ± 0. 0 0 5 or 1 0 0 M M ± 0. 0 0 5
W O R K TA BLE
W EI G H T ( k g) N. W.
G. W.
C O DE N O.
STA N DA R D TYPE
0. 3 2
0. 7
3 4 0 3- 0 0 1
50 m m
WI T H M A G N E TI C B A S E
0. 3 2
0. 6
3 4 0 3- 0 0 2
H P- 1 0 0 Z
100 m m
STA N DA R D TYPE
1. 0
1. 2 5
3 4 0 3- 0 0 3
H P- 1 0 0 Z M
100 m m
WI T H M A G N E TI C B A S E
1. 0
1. 2 3
3 4 0 3- 0 0 4
T O O LI N G S Y S T E M
C106
El e ctr o ni c T o ol L e n gt h S ett er
S T AI N L E S S S T E E L B A S E WI T H M A G N E T
EX A MPLE
HI G H A C C U R A C Y E A S Y O P E R A TI O N B e s ur e t o r e m o v e all c hi p s a n d all fr o m t h e s e n s or pl at e a n d t h e b a s e of t h e H P- 5 0 E a s w ell a s fr o m t h e w or k pi e c e a n d t o ol. T o m o v e t h e t o ol a p pr o a c hi n g t h e s e n s or pl at e sl o wl y. W h e n t o u c hi n g, t h e “ L E D” t ur n s o n i m m e di at el y a n d “ H” i s j u st 5 0. 0 0 m m.( or 2 ) L E D will n ot f u n cti o n if b att eri e s ar e n ot s et i n c orr e ctl y. D e si g n e d t o b e u s e d o n f err o u s. O R DE R N O.
H
H P- 5 0 E M
50 m m
H P- 1 0 0 E M
100 m m
STYLE WI T H M A G N E TI C B A S E
St ai nl e s s St e el B a s e Wit h M a g n et T O O L P R E- S E T T E R F O R M A C HI NI N G C E N T E R S. C N C & S T A N D A R D MI L LI N G M A C HI N E S A N D C N C & S TA N D A R D L AT H E S C107
T O O LI N G S Y S T E M
W EI G H T( k g) N. W.
C O DE N O.
0. 6
3 4 0 3- 0 3 2
1. 2 5
3 4 0 3- 0 3 3
Z- Z er o- S ett er
H P- 5 0 A
H P- 1 0 0 A M
Z- Z E R O- S E T T E R
C O M P E N S A TI O N P L AI N S U R F A C E
C H E C KI N G B A R F O R 5 0 O R 1 0 0 M M P O SI TI O N A T Z E R O P OI N T
C H E C KI N G B A R
H P- 5 0 B
C H E C KI N G B A R F O R 5 0 O R 1 0 0 M M P O SI TI O N A T Z E R O P OI N T H a v e t h e c e ntr al m e a s uri n g p art of t h e z er o s ett er pr e s ett er a g ai n st a pl ai n s urf a c e a n d ali g n e d if wit h t h e o ut er r ef er e n c e s urf a c e. T ur n t h e di al g a u g e f or z er o s etti n g. H a v e t h e c utt er t o u c h e d a g ai n st t h e z z er o s ett er. O n c e t h e i n di c at or p o siti o n at z er o, t h e di st a n c e b et w e e n t h e t o ol ti p t o w or k pi e c e i s 5 0 m m, 0. 0 0 5, 1 0 0 m m,
O R DE R N O.
H
H P- 5 0 A H P- 5 0 B H P- 5 0 A M
H P- 1 0 0 A M
W EI G H T ( k g)
C O DE N O.
1. 1
3 4 0 3- 0 2 0
1. 7
3 4 0 3- 0 2 1
1. 2
3 4 0 3- 0 2 2
1. 7
3 4 0 3- 0 2 3
STA N DA R D TYPE
1. 7 8
3 4 0 3- 0 2 4
WI T H M A G N E TI C B A S E
1. 7 7
3 4 0 3- 0 2 5
STYLE STA N DA R D TYPE
50 m m WI T H M A G N E TI C B A S E
H P- 5 0 B M H P- 1 0 0 A
0. 0 0 5.
100 m m
T O O LI N G S Y S T E M
C108
H ei g ht Pr e s ett er ( F or M a c hi ni n g C e nt er)
O R D E R N O. H P- 1 0 0
C O D E N O. 3 4 0 3- 0 1 0
H ei g ht fr o m r ef er e n c e s urf a c e
W EI G H T( k g s)
100 m m
2. 6
WI T H C H E C KI N G G A U G E
L o c at e t h e h ei g ht pr e s ett er o n a pl a c e s uit a bl e f or a r ef er e n c e s urf a c e of w or k pi e c e. A p pl y t h e c utt er o n t h e m e a s uri n g s urf a c e a n d sl o wl y l o w er t h e Z- a xi s. T h e n, c utt er g et s n e ar t o t h e m e a s uri n g p o siti o n. A di st a n c e fr o m t h e r ef er e n c e s urf a c e t o t h e t o ol ti p c a n b e m e a s ur e d e a sil y a n d pr e ci s el y s o t h at t hi s pr e s ett er i s m o st s uit a bl e n ot o nl y f or m a c hi n ei n g c e nt er s b ut f or N C l at h e s a n d N C milli n g m a c hi n e s. * M a g n eti c b a s e f u n cti o n c a n b e u s e d i n v erti c al p o siti o n & h ori z o nt al p o siti o n. * H EI G H T: 1 0 0 m m ± 0. 0 0 5 , 1 s c al e 0. 0 1 m m
C e nt eri n g I n di c at or
O R D E R N O. V CI- 1 7 0
C O D E N O. 3 4 0 2- 1 3 0
( WI T H S T O P B A R F O R FI XI N G T H E H E A D)
R P M Wit hi n 8 0 0. U s e f or I nt er n al or E xt er n al. U s e f or V erti c al or H ori z o nt al. W hil e S pi n dl e R ot at e s, Wit h St o p b ar f or Fi xi n g T h e H e a d T h e C e nt eri n g I n di c at or Al w a y s f a c e s t h e o p er at or. S H A N K
ø10
m m
LE N GT H
170
m m
I NT E R N AL
ø4~ø108
m m
E XT E R N AL
ø0~ø108
m m
MI N. I N DI C A T O R
0. 0 1
m m
I N DI C A T O R R A N G E
0~6
m m
W EI G H T
C109
T O O LI N G S Y S T E M
0. 8 k g s
O R DE R N O.
T A P PI N G C A P A CI T Y
S H A N K
T O W O R K WI T H D RI L LI N G M A C HI N E
W EI G H T ( K G)
P A C KI N G m m
SPEE D
C O DE N O.
K 1- 1/ 2
Ø 3- 8 m m
1/ 2
D RI L LI N G M A C HI N E M U S T E Q UI P P E D WI T H D RI L L C H U C K C A P A CI T Y 1 3 M/ M
0. 8
90 X90 X190
1: 1
3 4 0 4- 0 0 1
K 1- M T- 2
Ø 3- 8 m m
M T- 2
D RI L LI N G M A C HI N E M U S T E Q UI P P E D WI T H M T- 2 H O L E
1
90 X90 X240
1: 1
3 4 0 4- 0 0 2
K 2- 1/ 2
Ø 5- 1 0 m m
1/ 2
D RI L LI N G M A C HI N E M U S T E Q UI P P E D WI T H D RI L L C H U C K C A P A CI T Y 1 3 M/ M
1. 5
100 X100 X210
1: 1
3 4 0 4- 0 0 3
K 2- M T- 2
Ø 5- 1 0 m m
M T- 2
1. 6
100 X100 X260
1: 1
3 4 0 4- 0 0 4
K 3- M T- 3
Ø 6- 1 4 m m
M T- 3
3. 1
125 X125 X300
1: 1
3 4 0 4- 0 0 5
K 4- M T- 3
Ø 1 2- 2 5 m m
M T- 3
D RI L LI N G M A C HI N E M U S T E Q UI P P E D WI T H M T 2 H O L E O T H E R S LI K E M T- 3 S H A N K B O RI N G H O L E D RI L LI N G M A C HI N E N. T. A V AI L A B L E O T H E R S LI K E M T- 3 S H A N K B O RI N G H O L E D RI L LI N G M A C HI N E N. T. A V AI L A B L E
5. 4
160 X160 X360
1: 1
3 4 0 4- 0 0 6
K 1 T Y P E U S E D C H U C K T O FI X T H E T A P K 2, K 3, K 4 T Y P E U S E D T H E S LI DI N G P L A T E O F T H E S Q U A R E S H A R P H O L E T O FI X T H E T A P.
T a p C h u c k S eri e s
VTA13
d o u bl e- h e a d s cr e w
lock a nti cl o c k wi s e ti g htl y, a n d o p e n w h e n it i s cl o c k wi s e.
l o c k cl o c k wi s e ti g htl y, a n d o p e n w h e n it i s a nti cl o c k wi s e. f or e sl e e v e
O R DE R N O.
V T A 1 6- 3 MT2
TAP C H U CK W RE N C H
T A P PI N G C A P A BI LI T Y m m inch
V T A 1 3- 1 I V T A 1 3- 2 I M 3- M 1 2 V T A 1 3- 3 II V T A 1 6- 2 I V T A 1 6- 3 II M 3- M 1 6 V T A 1 6- 4 II E xtr a P ur c h a s e W el c o m e. V T A 1 8- 2 II M 9- M 1 8 V T A 1 8- 3 III
Drill T a p p er
W 1/ 8” ~ W 1/ 2”
W 1/ 8” ~ W 5/ 8” W 3/ 8” ~ W 3/ 4”
T H E D E SI G N C A N P R E V E N T T HE TAPS C H U CK F R O M L O O S E NI N G A F T E R T A P PI N G. S UI T F O R V A RI O U S T A P S. L A R G E T A P PI N G C A P A CI T Y. HI G H P O W E R T O R SI O N. D
T a p er
N. W ( k g)
C O D E N O.
43 43 47 54 4 8. 5 4 8. 5 51 51
J6 B16 MT2 B18 MT2 MT3 MT2 MT3
0. 5 5 0. 7 6 0. 7 6 1 0. 9 1. 1 0. 9 2 4 1. 0 7 4
3 4 0 4- 0 0 0 3 4 0 4- 0 0 7 3 4 0 4- 0 0 8 3 4 0 4- 0 1 7 3 4 0 4- 0 1 8 3 4 0 4- 0 1 9 3 4 0 4- 0 1 9 A 3 4 0 4- 0 1 9 B
I n cl u di n g s h a n k, f ull s et of c oll et s, wr e n c h a n d c a s e. ( U s e d f or r a di al drilli n g, l at h e a n d t a p pi n g m a c hi n e s. 1 M ai n b o d y, 6 T a p C oll et, 1 Drill C h u c k H ol d er O pti o n al i n C oll et s & T a p p er Sl e e v e s.) 0. 6 C U F T.
U nit: m m
S T A N D A R D A S S E M B L Y S P E CI FI C A TI O N O R DE R G. W. M E A S. C O D E M AI N B O D Y TAP C OLLET T A P E R S L E E V E D RI L L C H U C K N O. kg CFT N O. 1 P C/ S E T 6 P C S/ S E T 2 P C S/ S E T H O L D E R 1 P C/ S E T 3 3- M T 1 M 8, 1 0, 1 2, 1 4, 1 6, 1 1. 9 3 4 0 4- 0 1 0 M T- 3 3 3- M T 2 1 8, 2 0, 2 2, 2 4, 2 7, M T- 4 12 3 4 0 4- 0 1 1 3 3- J T 6 Wit h 3 3- M T 3 3 0, 3 3( M M) 0. 6 1/ 2 Drill V D T- 3 3 1, 1- 1/ 8, 1- 1/ 4(I N C H) Chuck M T- 5 1 2. 8 3 4 0 4- 0 1 2 3 3- M T 4 P T 1/ 8, 1/ 4, 3/ 8, 1/ 2, 3/ 4, 1(I N C H)
T O O LI N G S Y S T E M
C 11 0
T A P PI N G A T T A C H M E N T
R e v e r si bl e T a p pi n g Att a c h m e nt f or Drilli n g & Milli n g M a c hi n e
R e v er si bl e T a p pi n g Att a c h m e nt s
R a di al Fl o at i s S E L F C E N T E RI N G t o c o m p e n s at e f or h ol e c e nt er mi s ali g n m e nt. U ni q u e D o u bl e S pri n g M e c h a ni s m pr o d u c e s A ut o m ati c F e e d a n d C u s hi o n Dri v e. T h er e ar e t w o s pri n g s f or t h e f e e d a n d t w o s pri n g s f or t h e r e v er s al. E a c h s et gi v e s y o u d o u bl e s m o ot h n e s s f or U L T R A a c c ur at e t a p pi n g a p pli c ati o n s( n ot p o s si bl e wit h t hi s t y p e of t a p pi n g h e a d i n t h e p a st). Pr e- s et T or q u e C o ntr ol P er mit s e a s y o p er ati o n of t a p br a k e t or q u e c o ntr ol J A C O B S R U B B E R F L E X C O L L E T S ar e st a n d ar d a c c e s s or y.
R e v er si n g T y p e
L E N G T H C O M P E N S A TI O N R. H. R O T A TI O N N O N R O T A T L H. R O T A T. C O MP E X P. E X P. E X P. A B C E
AT T A C H M E N T D E SI G N A TI O N S O R D E R N O.
F O R TAPS
S UI T A B L E A D A P T E R S R SE PC.E ME AD X SI Z E
V T A 7- J T 6
M 2- M 7
F C- 1 0/ F C- 1 1 1 5 0 0 R P M
5
3. 5
1. 5
V T A 1 2- J T 6
M 3- M 1 2 F C- 2 0/ F C- 2 1 1 0 0 0 R P M
5
4. 5
V T A 2 0- M 2 0
M 8- M 2 0 F C- 3 0/ F C- 3 1
5. 5
5
600 R P M
D DI A
D1 DI A
7. 0
52
23
1. 5
8. 5
7 3. 5
2. 0
9. 0
91
R u b b er Fl e x C oll et F or V T A T a p p er O R D E R N O.
C OLLETS C A P A CI T Y
D4
L
C O D E N O.
F C- 1 0
Ø 2. 5 - Ø 4. 5
16
11
3 4 0 4- 0 3 0
F C- 1 1
Ø 4. 5 - Ø 6. 5
16
11
3 4 0 4- 0 3 1
F C- 2 0
Ø 4- Ø 7
2 1. 5
13
3 4 0 4- 0 3 2
F C- 2 1
Ø 7- Ø 10
2 1. 5
13
3 4 0 4- 0 3 3
F C- 3 0
Ø 5. 3 6 - Ø 9
2 6. 5
15
3 4 0 4- 0 3 4
F C- 3 1
Ø 1 0. 3 8 - Ø 1 4
2 6. 5
15
3 4 0 4- 0 3 5
C 111
T O O LI N G S Y S T E M
W EI G H T ( k g s)
C O DE N O.
1 2 5. 5 9 4. 5
1. 3
3 4 0 4- 0 2 0
28
169
122
3. 1
3 4 0 4- 0 2 1
38
190
128
5. 7
3 4 0 4- 0 2 2
L
L1
C O N N E C TI N G A R B O R F O R V T A 2 0- M 2 0
M T 3- M 2 0
3 4 0 4- 0 3 6 A
M T 4- M 2 0
3 4 0 4- 0 3 7 A
A R B O R E X A M PL E: MT TYPE pl e a s e s e e p a g e C 4 6
VJ T Y P E
Ta p C h u c k ot h er br a n d s of t a p s c h u c k. T h e d e si g n c a n pr e v e nt t h e t a p s c h u c k fr o m l o o s e ni n g aft er t a p pi n g.
m m
inch
T a p er M o u nt N O. DI N or J a c o b s
L e n gt h ( m/ m)
1/ 2
M 3- M 1 2
1/ 8- 1/ 2
JT6
75
42
850
3 4 0 4- 0 5 6 A
1/ 2
M 4- M 1 2
1/ 8- 1/ 2
B16
75
42
585
3 4 0 4- 0 5 7 A
O R DE R N O.
SI Z E
V T A- 1 3- 1 1 V T A- 1 3- 1 2
E x p a n si bl e T a p pi n g H ol d er
W ei g ht ( g)
C O DE N O.
C o m pr e s si o n Di st a n c e 6 m m
E R20
E R32
H O L D E R- B T- T Y P E O R D E R N O.
C OLLET
H O L D E R ( D X L)
L
D 1
V E T- 2 7 1
E R20
BT40 20 X100
100
34
V E T- 2 7 2
E R20
BT50 20 X95
95
34
V E T- 2 7 3
E R32
B T 4 0 3 2 X 11 0
11 0
50
V E T- 2 7 4
E R32
B T 5 0 3 2 X 11 0
11 0
50
T A P PI N G R A N GE M 2- M 1 6 M 3- M 2 5
U nit: m m
W EI G H T ( K G S)
C O D E N O.
2. 2
3 4 0 4- 0 2 6
4
3 4 0 4- 0 2 7
2. 4
3 4 0 4- 0 2 8
4. 5
3 4 0 4- 0 2 9
WI T H S P A N N E R
H O L D E R- MI NI T Y P E O R D E R N O.
C OLLET
H O L D E R ( D X L)
L 1
D 1
T A P PI N G R A N GE
V E T- 2 6 0
E R16
E R16 M 20 X70
35
22
V E T- 2 6 1
E R16
E R16 M 25 X70
35
22
M 3- M 1 0 1/ 8 - 3/ 8
U nit: m m
W EI G H T ( K G)
C O D E N O.
0. 2
3 4 0 4- 0 3 6
0. 2
3 4 0 4- 0 3 7
T O O LI N G S Y S T E M
C 11 2
T A P PI N G H O L D E R
U nit: m m
O ut er Di a. ( m/ m)
T A P PI N G C A P A CI T Y
E x p a n si bl e T a p pi n g H ol d er Fl o ati n g a n d e x p a n si o n d e si g n will r e d u ct e t h e diff er e nti al of m ot or r ot ar y s p e e d a n d f e e di n g s p e e d s o will e xt e n d t h e lif e of t a p. U s e E R Hi g h S pri n g C oll et, y o u d o n’t n e e d t o w orr y t h e f e w si z e will d el a y w or ki n g, s o t h eir v al u e i s m or e t h a n a n y ot h er t a p pi n g s y st e m. Str o n g Vi s e cl a m pi n g f u n cti o n w hi c h i s c o ntr oll e d b y o n e s cr e w will k e e p t h e o utl et w hi c h h a v e b e e n c o ntr oll e d b y E R c oll et, s o it c a n a ut o- c e nt er a n d y o u o w n t h e d o u bl e l o c k a n d s a v e i n cl a m pi n g. S T R AI G H T S H A N K
D2 C O M P R E S SI O N T E N SI O N L1
L2
C o m pr e s si o n Di st a n c e 6 m m
SI N G L E H O L D E R O R DE R N O.
V E T- 1 0 2
U nit: m m
C OLLET
H OL DE R ( D2 X L 2 )
L1
E R16
20 X80
47
D 1
T A P PI N G R A N GE
W EI G H T ( K G)
C O D E N O.
28
M 3- M 1 0 ( 1/ 8 - 3/ 8 )
0. 4
3 4 0 4- 0 4 1
D2 C O M P R E S SI O N T E N SI O N L1
SI N G L E H O L D E R O R DE R N O.
C OLLET
H OL DE R ( D2 X L 2 )
L1
V E T- 2 0 2
E R20
20 X80
V E T- 2 5 2
E R20
V E T- 3 0 3
E R32
L2
D 1
W EI G H T ( K G)
C O D E N O.
70
34
1
3 4 0 4- 0 4 3
25 X80
70
34
M 3- M 1 6 ( 1/ 8- 5/ 8 )
1. 2
3 4 0 4- 0 4 4
32 X100
90
50
( M 3- M 2 5) ( 1/ 8- 1 )
2
3 4 0 4- 0 4 5
SETS TYPE
C 11 3
U nit: m m
T A P PI N G R A N GE
U nit: m m
O R D E R N O.
C OLLET
H O L D E R ( D 2X L 2)
S E T/ P C S
W EI G H T ( K G)
C O D E N O.
V E T- 1 0 5
E R16
20 X80
8
1
3 4 0 4- 0 4 6
V E T- 1 0 6
E R16
20 X80
10
1. 1
3 4 0 4- 0 4 7
V E T- 2 5 3
E R20
20 X80
10
1. 6
3 4 0 4- 0 4 8
V E T- 2 5 4
E R20
20 X80
12
1. 7
3 4 0 4- 0 4 9
T O O LI N G S Y S T E M
Q ui c k C h a n g e T a p pi n g C h u c k S P E CI A
L!
E ur o p e a n T y p e
T A P PI N G C H U C K S
S AF E T Y! Q UI C K !
Q UI C K C H A N G E T A P PI N G C H U C K S ( wit h l e n gt h c o m p e n s ati o n) M A S- B T- 3 0, 4 0, 5 0 S h a n k / DI N 6 9 8 7 1 A S K- 4 0, 5 0 / S T- 2 0 , 3 2 / M T- 2 , 3 , 4 T e n si o n a n d c o m pr e s si o n f e at ur e all o w s t a p s t o f oll o w t h eir o w n t hr e a d l e a d. Wit h e xtr e m e li g ht c o m pr e s si o n c o m pr e s si o n a n d t e n si o n o p er at e d b y b all c a g e.
T O O LI N G S Y S T E M
C 11 4
Q ui c k C h a n g e T a p pi n g C h u c k s
S af et y C oll et T C- 3 1 2 T e n si o n a n d c o m pr e s si o n f e at ur e all o w s t a p s t o f oll o w t h eir o w n t hr e a d l e a d. Wit h e xtr e m e li g ht c o m p e n s ati o n c o m pr e s si o n a n d t e n si o n o p er at e d b y b all c a g e.
W F- B T 3 0/ B T 4 0/ S K 3 0/ S K 4 0
L E N G T H C O M P E N S A TI O N T Y P E
L
Ø D 1 Chuck C o n n e cti n g DI A.
Ø D 2
M 2- M 1 4
70
Ø 19
B T 4 0- W F 1 2 S K 4 0- W F 1 2
M 2- M 1 4
75
B T 3 0- W F 2 0
M 5- M 2 4
B T 4 0- W F 2 0 S K 4 0- W F 2 0
O R D E R N O.
T hr e a d Si z e
B T 3 0- W F 1 2
L e n gt h C o m p e n s ati o n
T a p pi n g C oll et s
W EI G H T ( k g)
C O D E N O.
7. 5
T C- 3 1 2
0. 8
3 4 0 4- 0 5 0 A
7. 5
7. 5
T C- 3 1 2
1. 3
3 4 0 4- 0 5 0
1. 3
3 4 0 4- 0 5 1
53
1 2. 5
1 2. 5
T C- 8 2 0
1. 3
3 4 0 4- 0 5 2 A
Ø 31
53
1 2. 5
1 2. 5
T C- 8 2 0
1. 8
3 4 0 4- 0 5 2
Ø 32
53
1 2. 5
1 2. 5
T C- 8 2 0
1. 8
3 4 0 4- 0 5 3
C o m pr e s si o n
T e n si o n
36
7. 5
Ø 19
36
94
Ø 31
M 5- M 2 4
95
M 5- M 2 4
95
T a p pi n g C oll et R e d u c er A d a pt er : T C 8 2 0 / T C 3 1 2- A D
Q ui c k C h a n g e T a p pi n g C h u c k s
E ur o p e a n T y p e
T C- 3 1 2 T e n si o n a n d c o m pr e s si o n f e at ur e all o w s t a p s t o f oll o w t h eir o w n t hr e a d l e a d. Wit h e xtr e m e li g ht c o m p e n s ati o n c o m pr e s si o n a n d t e n si o n o p er at e d b y b all c a g e.
W F- B T 5 0/ S K 5 0 O R D E R N O.
B T 5 0- W F 1 2 S K 5 0- W F 1 2 B T 5 0- W F 2 0 S K 5 0- W F 2 0 B T 5 0- W F 3 3
L E N G T H C O M P E N S A TI O N T Y P E Ø D 1 Chuck C o n n e cti n g Ø D 2 DI A.
T hr e a d Si z e
L
M 2- M 1 4
85
Ø 19
M 5- M 2 4
105
M 1 4- M 3 6
142
L e n gt h C o m p e n s ati o n C oll et s
C o m pr e s si o n
T e n si o n
36
7. 5
7. 5
T C- 3 1 2
Ø 31
53
1 2. 5
1 2. 5
T C- 8 2 0
Ø 48
78
20
20
T C- 1 4 3 3
T a p pi n g C oll et R e d u c er A d a pt er : T C 8 2 0 / T C 3 1 2- A D T C 1 4 3 3 / T C 8 2 0- A D C 11 5
T O O LI N G S Y S T E M
W EI G H T ( k g)
C O D E N O.
4
3 4 0 4- 0 6 0
4
3 4 0 4- 0 6 1
4. 1
3 4 0 4- 0 6 2
4. 1
3 4 0 4- 0 6 3
5. 8
3 4 0 4- 0 6 4
Q ui c k C h a n g e T a p pi n g C h u c k s
Q UI C K C H A N G E T A P PI N G C H U C K S ( wit h l e n gt h c o m p e n s ati o n) S T R AI G H T S H A N K
T e n si o n a n d c o m pr e s si o n f e at ur e all o w s t a p s t o f oll o w t h eir o w n t hr e a d l e a d. Wit h e xtr e m e li g ht c o m p e n s ati o n c o m pr e s si o n a n d t e n si o n o p er at e d b y b all c a g e.
W F- S T
L E N G T H C O M P E N S A TI O N T Y P E
O R D E R N O.
S T 2 0- W F 1 2 S T 3 2- W F 1 2 S T 2 0- W F 2 0
L e n gt h C o m p e n s ati o n
L1
Ø D 1 Chuck C o n n e cti n g DI A.
Ø D 2
105
40
Ø 19
120
65
Ø31
T hr e a d Si z e
L
M 2- M 1 4 M 5- M 2 4
C oll et s
C o m pr e s si o n
T e n si o n
36
7. 5
7. 5
T C- 3 1 2
53
1 2. 5
1 2. 5
T C- 8 2 0
W EI G H T ( k g)
C O D E N O.
0. 4
3 4 0 4- 0 8 7
0. 6
3 4 0 4- 0 8 8
1
3 4 0 4- 0 8 9
T a p pi n g C oll et R e d u c er A d a pt er : T C 8 2 0 / T C 3 1 2- A D T C 1 4 3 3 / T C 8 2 0- A D
Q ui c k C h a n g e T a p pi n g C h u c k s
S oli d T y p e
T C- 3 1 2 T e n si o n a n d c o m pr e s si o n f e at ur e all o w s t a p s t o f oll o w t h eir o w n t hr e a d l e a d. Wit h e xtr e m e li g ht c o m p e n s ati o n c o m pr e s si o n a n d t e n si o n o p er at e d b y b all c a g e.
W F- M T
L E N G T H C O M P E N S A TI O N T Y P E
O R D E R N O.
T hr e a d Si z e
M T 2- W F 1 2 M T 3- W F 1 2
M or s e. T a p er MT MT2
M 2- M 1 4
MT3
M T 4- W F 1 2
MT4
M T 2- W F 2 0
MT2
M T 3- W F 2 0
M 5- M 2 4
M T 4- W F 2 0 M T 4- W F 3 3
MT3
L
4 7. 5
Ø D 1 L e n g ht C o m p e n s ati o n Chuck Ø D 2 C o n n e cti n g C o m pr e s si o n T e n si o n DI A.
Ø19
36
7. 5
7. 5
C oll et s
T C- 3 1 2
49
70
Ø31
53
1 2. 5
1 2. 5
T C- 8 2 0
MT4 M 1 4- M 3 6
MT4
103
Ø48
78
20
15
T C- 1 4 3 3
W EI G H T ( k g)
C O D E N O.
0. 4
3 4 0 4- 1 2 3
0. 5 6
3 4 0 4- 1 2 3 A
0. 8 6
3 4 0 4- 1 2 3 B
0. 8
3 4 0 4- 1 2 4
0. 9 6
3 4 0 4- 1 2 4 A
1. 5
3 4 0 4- 1 2 4 B
2. 7 6
3 4 0 4- 1 2 5
T a p pi n g C oll et R e d u c er A d a pt er : T C 8 2 0 / T C 3 1 2- A D T C 1 4 3 3 / T C 8 2 0- A D T O O LI N G S Y S T E M
C 11 6
T A P PI N G C H U C K S
T C- 3 1 2
Q ui c k C h a n g e T a p pi n g C h u c k s
Q UI C K C H A N G E T A P PI N G C H U C K S ( wit h l e n gt h c o m p e n s ati o n) M A S- B T S H A N K / DI N 6 9 8 7 1 A S H A N K T e n si o n a n d c o m pr e s si o n f e at ur e all o w s t a p s t o f oll o w t h eir o w n t hr e a d l e a d.
T C- 3 1 2
W F E- B T 4 0
L E N G T H C O M P E N S A TI O N T Y P E T hr e a d Si z e
O R D E R N O.
B T 4 0- W F E 1 2- 1 3 5 B T 4 0- W F E 1 2- 1 6 5
M 2- M 1 4
L 135 165
Ø D 1 Chuck C o n n e cti n g DI A.
Ø D 2
Ø 19
46
L e n gt h C o m p e n s ati o n C o m pr e s si o n
T e n si o n
15
20
C oll et s
T C- 3 1 2
W EI G H T ( k g)
C O D E N O.
1. 5
3 4 0 4- 0 7 0
2. 4
3 4 0 4- 0 7 2
W EI G H T ( k g)
C O D E N O.
4. 5 4
3 4 0 4- 0 8 0
4. 9 4
3 4 0 4- 0 8 2
7
3 4 0 4- 0 8 4
T a p pi n g C oll et R e d u c er A d a pt er : T C 8 2 0 / T C 3 1 2- A D T C 1 4 3 3 / T C 8 2 0- A D
Q ui c k C h a n g e T a p pi n g C h u c k s
Q UI C K C H A N G E T A P PI N G C H U C K S ( wit h l e n gt h c o m p e n s ati o n) M A S- B T S H A N K / DI N 6 9 8 7 1 A S H A N K T e n si o n a n d c o m pr e s si o n f e at ur e all o w s t a p s t o f oll o w t h eir o w n t hr e a d l e a d.
T C- 3 1 2
W F E- B T 5 0
L E N G T H C O M P E N S A TI O N T Y P E
O R D E R N O.
B T 5 0- W F E 1 2- 1 3 5 B T 5 0- W F E 1 2- 1 6 5 B T 5 0- W F E 2 0- 1 6 5
T hr e a d Si z e
M 2- M 1 4 M 5- M 2 4
L 135 165 165
L e n gt h C o m p e n s ati o n Ø D 1 Chuck C o n n e cti n g Ø D 2 C o m pr e s si o n T e n si o n DI A.
C oll et s
Ø19
46
15
20
T C- 3 1 2
Ø31
58
15
15
T C- 8 2 0
T a p pi n g C oll et R e d u c er A d a pt er : T C 8 2 0 / T C 3 1 2- A D T C 1 4 3 3 / T C 8 2 0- A D C 11 7
T O O LI N G S Y S T E M
Q ui c k C h a n g e T a p pi n g C h u c k s
S oli d T y p e
M S A- B T S H A N K & DI N 6 9 8 7 1 A S H A N K N o t e n si o n or c o m p e n s ati o n str o k e f or u s e i n s y n c hr o n o u s t a p pi n g(ri gi d t a p pi n g) c y cl e.
T C- 3 1 2
T C- 3 1 2 B
B T 4 0- S F- RI GI D T A P PI N G T Y P E , N O L E N G T H C O M P E N S A TI O N O R D E R N O.
T hr e a d Si z e
L
Ø D 1 Chuck C o n n e cti n g DI A.
B T 4 0- S F 1 2
M 2- M 1 4
72
Ø19
34
B T 4 0- S F 2 0
M 5- M 2 4
91
Ø31
50
B T 4 0- S F 3 3
M 1 4- M 3 6
130
Ø48
74
Ø D 2
C oll et s
W EI G H T ( k g)
C O D E N O.
1
3 4 0 4- 1 0 0
1. 4
3 4 0 4- 1 0 2
3. 5
3 4 0 4- 1 0 4
T C- 3 1 2 T C- 3 1 2 B T C- 8 2 0 T C- 8 2 0 B T C- 1 4 3 3 T C- 1 4 3 3 B
T a p pi n g C oll et R e d u c er A d a pt er : T C 8 2 0 / T C 3 1 2- A D T C 1 4 3 3 / T C 8 2 0- A D
Q ui c k C h a n g e T a p pi n g C h u c k s
M S A- B T S H A N K & DI N 6 9 8 7 1 A S H A N K
S oli d T y p e
N o t e n si o n or c o m p e n s ati o n str o k e f or u s e i n s y n c hr o n o u s t a p pi n g(ri gi d t a p pi n g) c y cl e.
T C- 3 1 2 or
T C- 3 1 2 B
B T 5 0- S F- RI GI D T A P PI N G T Y P E, N O L E N G T H C O M P E N S A TI O N O R D E R N O.
T hr e a d Si z e
L
Ø D 1 Chuck C o n n e cti n g DI A.
B T 5 0- S F 1 2
M 2- M 1 4
78
Ø19
34
B T 5 0- S F 2 0
M 5- M 2 4
95
Ø31
50
B T 5 0- S F 3 3
M 1 4- M 3 6
142
Ø48
74
Ø D 2
C oll et s T C- 3 1 2 T C- 3 1 2 B T C- 8 2 0 T C- 8 2 0 B T C- 1 4 3 3 T C- 1 4 3 3 B
W EI G H T ( k g)
C O D E N O.
3. 6
3 4 0 4- 1 1 0
4
3 4 0 4- 1 1 2
5. 6
3 4 0 4- 1 1 6
T a p pi n g C oll et R e d u c er A d a pt er : T C 8 2 0 / T C 3 1 2- A D T C 1 4 3 3 / T C 8 2 0- A D T O O LI N G S Y S T E M
C 11 8
T A P PI N G C H U C K S
or
Q ui c k C h a n g e T a p pi n g C h u c k s
S oli d T y p e Q UI C K C H A N G E T A P PI N G C H U C K S T e n si o n a n d c o m pr e s si o n f e at ur e all o w s t a p s t o f oll o w t h eir o w n t hr e a d l e a d. M O RSE TAPE R S H A N K
Wit h e xtr e m e li g ht c o m p e n s ati o n c o m pr e s si o n a n d t e n si o n o p er at e d b y b all c a g e.
T C- 3 1 2 or T C- 3 1 2 B
S T- S F- T Y P E S O LI D
RI GI D T A P PI N G T Y P E
O R D E R N O.
T hr e a d Si z e
L
L 1
S T 2 0- S F 1 2 S T 3 2- S F 1 2
M 2- M 1 4
104 106
S T 2 0- S F 2 0
M 5- M 2 4
105
S T 3 2- S F 3 3
M 1 4- M 3 6
169
Ø D 1 Chuck C o n n e cti n g DI A.
Ø D 2
C oll et s
W EI G H T ( k g)
C O D E N O.
Ø19 Ø19
34
T C- 3 1 2 T C- 3 1 2 B
0. 3 0. 6 6
3 4 0 4- 1 4 0 3 4 0 4- 1 4 0 A
Ø31
50
T C- 8 2 0 T C- 8 2 0 B
0. 7 4
3 4 0 4- 1 4 1
Ø48
76
T C- 1 4 3 3 T C- 1 4 3 3 B
2. 8 6
3 4 0 4- 1 4 2 A
70
T C- 3 1 2
or
T C- 3 1 2 B M T- S F- T Y P E S O LI D RI GI D T A P PI N G T Y P E, N O L E N G T H C O M P E N S A TI O N O R D E R N O.
M T 2- S F 1 2 M T 3- S F 1 2 M T 4- S F 1 2 M T 2- S F 2 0 M T 3- S F 2 0 M T 4- S F 2 0 M T 3- S F 3 3 M T 4- S F 3 3
M or s e. T a p er M T
T hr e a d Si z e
MT2 MT3 MT4 MT2 MT3 MT4 MT3 MT4
M 2- M 1 4 M 5- M 2 4 M 1 4- M 3 6
L
Ø D 1 C h u c k C o n n e cti n g DI A.
Ø D 2
C oll et s
Ø19
34
T C- 3 1 2 T C- 3 1 2 B
Ø31
50
T C- 8 2 0 T C- 8 2 0 B
Ø48
74
T C- 1 4 3 3 T C- 1 4 3 3 B
45 46 70 75 99 99
W EI G H T ( k g)
C O D E N O.
0. 3 0. 8 0. 8 0. 6 0. 8 1. 1 8 0. 8 4 2. 2
3 4 0 4- 1 2 0 3 4 0 4- 1 2 0 A 3 4 0 4- 1 2 0 B 3 4 0 4- 1 2 1 A 3 4 0 4- 1 2 1 3 4 0 4- 1 2 1 B 3 4 0 4- 1 2 2 A 3 4 0 4- 1 2 2
d
T C- 3 1 2
or
J T A - S F- B 1 6- S F O R D E R N O.
T hr e a d Si z e
J T A 6- S F 1 2 B 1 6- S F 1 2
M 2- M 1 4
B 1 2- S F 1 2
C 11 9
T C- 3 1 2 B RI GI D T A P PI N G T Y P E L 66 61
Ø D 1 C h u c k C o n n e cti n g DI A.
Ø D 2
d JT6
Ø19
32
B16 B12
C oll et s
W EI G H T ( k g)
C O D E N O.
0. 3
3 4 0 4- 1 3 0
0. 2 2
3 4 0 4- 1 3 0 A
0. 2
3 4 0 4- 1 3 0 B
T C- 3 1 2 T C- 3 1 2 B
T a p pi n g C oll et R e d u c er A d a pt er : T C 8 2 0 / T C 3 1 2- A D T C 1 4 3 3 / T C 8 2 0- A D T O O LI N G S Y S T E M
Q ui c k C h a n g e T a p pi n g C h u c k s S et
S h a n k wit h l e n gt h c o m p e n s ati o n
E ur o p e a n T y p e
T A P PI N G C H U C K S
T e n si o n a n d c o m pr e s si o n f e at ur e all o w s t a p s t o f oll o w t h eir o w n t hr e a d l e a d. Wit h e xtr e m e li g ht c o m p e n s ati o n c o m pr e s si o n a n d t e n si o n o p er at e d b y b all c a g e.
C oll et s Si z e
S E T T Y P E B T- W F S H A N K WI T H 7 P C S/ S E T O V E R L O A D C L U T C H T A P PI N G C O L L E T DI N, I S O & JI S S Y S T E M S: P L E A S E S E E P A G E 1 2 1.
T C- 3 1 2
M 3, M 4, M 5, M 6, M 8, M 1 0, M 1 2
T C- 8 2 0
M 8, M 1 0, M 1 2, M 1 4, M 1 6, M 1 8, M 2 0
Pl e a s e i nf or m t h e c oll et si z e w h e n or d eri n g. Pl e a s e u s e f oll o wi n g p a g e a s r ef er e n c e f or c oll et si z e.
SETS
L e n gt h C o m p e n s ati o n C o m pr e s si o n T e n si o n 7. 5 7. 5
O R D E R N O.
Shank Si z e
T hr e a d Si z e
V Q T- 3 1 2
B T- 3 0- W F 1 2
M 3- M 1 2
70
19
36
V Q T- 3 2 0
B T- 3 0- W F 2 0
M 8- M 2 0
105
31
53
V Q T- 4 1 2
B T- 4 0- W F 1 2
M 3- M 1 2
75
19
36
7. 5
7. 5
T C- 3 1 2
7P CS
3 4 0 4- 1 9 2
V Q T- 4 2 0
B T- 4 0- W F 2 0
M 8- M 2 0
95
31
53
1 2. 5
1 2. 5
T C- 8 2 0
7P CS
3 4 0 4- 1 9 3
V Q T- 5 1 2
B T- 5 0- W F 1 2
M 3- M 1 2
85
19
36
7. 5
7. 5
T C- 3 1 2
7P CS
3 4 0 4- 1 9 4
V Q T- 5 2 0
B T- 5 0- W F 2 0
M 8- M 2 0
105
31
53
1 2. 5
1 2. 5
T C- 8 2 0
7P CS
3 4 0 4- 1 9 5
L
Ø D1
Ø D2
1 2. 5
1 2. 5
P C S/ SET
C oll et s
C O D E N O.
T C- 3 1 2
7P CS
3 4 0 4- 1 9 0
T C- 8 2 0
7P CS
3 4 0 4- 1 9 1
Q ui c k C h a n g e M T T a p pi n g C h u c k S et
Wit h O v erl o a d Cl ut c h
T e n si o n a n d c o m pr e s si o n f e at ur e all o w s t a p s t o f oll o w t h eir o w n t hr e a d l e a d. Wit h e xtr e m e li g ht c o m p e n s ati o n c o m pr e s si o n a n d t e n si o n o p er at e d b y b all c a g e.
S E T T Y P E M T- S F S H A N K WI T H 7 P C S/ S E T O V E R L O A D C L U T C H T A P PI N G C O L L E T DI N, I S O & JI S S Y S T E M S: P L E A S E S E E P A G E 1 2 1. C oll et s Si z e
T C- 3 1 2
M 3, M 4, M 5, M 6, M 8, M 1 0, M 1 2
T C- 8 2 0
M 8, M 1 0, M 1 2, M 1 4, M 1 6, M 1 8, M 2 0
Pl e a s e i nf or m t h e c oll et si z e w h e n or d eri n g. Pl e a s e u s e f oll o wi n g p a g e a s r ef er e n c e f or c oll et si z e.
SETS O R D E R N O.
V Q T- 7 1 2 V Q T- 8 1 2 V Q T- 7 2 0 V Q T- 8 2 0
Shank Si z e M T 3- S F 1 2 M T 4- S F 1 2 M T 3- S F 2 0 M T 4- S F 2 0
T hr e a d Si z e M 3- M 1 2 M 3- M 1 2 M 8- M 2 0 M 8- M 2 0
L
Ø D2
C oll et s
39 34 59 55
32 32 50 50
T C- 3 1 2 T C- 3 1 2 T C- 8 2 0 T C- 8 2 0
P C S/ SET 7P CS 7P CS 7P CS 7P CS
C O D E N O. 3 4 0 4- 1 9 6 3 4 0 4- 1 9 7 3 4 0 4- 1 9 8 3 4 0 4- 1 9 9
T O O LI N G S Y S T E M
C120
T a p pi n g C oll et R e d u c er A d a pt er A DAPTE R
E X A M PL E
T hi s a d a pt er i s f or tr a n sf or mi n g T hi s a d a pt er all o w s t h e t a p pi n g c h u c k t o u s e s m all er si z e. Tr a n sf or mi n g t h e bi g t a p pi n g si z e t o s m all er o n e. l ar g e r a n g e t y p e f or t a p M 3 ~ M 2 4, T C 3 1 2, T C 8 2 0, T C 1 4 3 3 C O S T S A VI N G!
SI Z E
C O NVE RTE R
O R D E R N O. T R A N S F O R MI N G SI Z E T C820 T O T C312 T C 8 2 0/ T C 3 1 2- A D T C1433 T O T C820 T C 1 4 3 3/ T C 8 2 0- A D
WI G H T 0. 2 0. 6
E v er y t a p n e e d s a m at c h si z e t a p pi n g c oll et.
C O D E N O. 3 4 0 4- 4 6 1 3 4 0 4- 4 6 2
A dj u st a bl e Wr e n c h e s
F or T a p pi n g C oll et’ s T or q u e F or c e A dj u st m e nt T o ol f or S etti n g Ti m e S a vi n g
Ø D
E X A M PL E
Ø D Ø D Ø D
O R D E R N O. SI Z E 7- 4 0 V W R- 4 0 1 1- 6 0 V W R- 6 0
Ø D 2. 5 4
C OLLETS T C- 8 2 0 T C- 1 4 3 3
W EI G H T C O D E N O. 0. 1 5 k g s 3 4 0 4- 1 5 0 0. 1 5 k g s 3 4 0 4- 1 5 1
Q ui c k C h a n g e T a p pi n g C oll et T C 3 1 2 8 P C S/ S E T
O R D E R N O. T C- 3 1 2- DI N 3 7 1- A
C O D E N O. 3 4 0 4- 1 7 5 Q UI C K C H A N G E T A P C O L L E T S ( wit h o v erl o a d s af et y c oll et) T C- 3 1 2 DI N 3 7 1 8 P C S/ S E T ( M 1, M 2, M 3, M 3. 5, M 4, M 4. 5, M 8, M 1 0) N O. 1 2 3 4 5 6 7 8
Ø D X SI Z E S A M E A S DI N 3 7 1 T C 3 1 2 M 1, M 1. 1 ~ M 1. 8 M 2, M 2. 5, M 2 ~ M 2. 5 M3 M 3. 5 M4 M 4. 5, M 5, M 6 M8 M10
Q ui c k C h a n g e T a p pi n g C oll et T C 3 1 2 8 P C S/ S E T
O R D E R N O. T C- 3 1 2- DI N 3 7 6- B
C O D E N O. 3 4 0 4- 1 7 6 Q UI C K C H A N G E T A P C O L L E T S ( wit h o v erl o a d s af et y c oll et) T C- 3 1 2 DI N 3 7 6 8 P C S/ S E T ( M 4, M 5, M 6, M 7, M 8, M 1 0, M 1 2 M 1 4) N O.
C121
T O O LI N G S Y S T E M
Ø D X
1
M4
2
M 5, M 4. 5
3
M6
4
M7
5
M8
6
M10
7
M12
8
M14
SI Z E S A M E A S DI N 3 7 6 T C 3 1 2
Q ui c k C h a n g e T a p pi n g C oll et T C 8 2 0 8 P C S/ S E T
O R D E R N O. T C 8 2 0- DI N 3 7 6- C
C O D E N O. 3 4 0 4- 1 7 7
Q UI C K C H A N G E T A P C O L L E T S ( wit h o v erl o a d s af et y c oll et) T C- 8 2 0 DI N 3 7 6 8 P C S/ S E T ( M 8, M 1 0, M 1 2, M 1 4, M 1 6, M 1 8, M 2 0, M 2 2) Ø D X
SI Z E S A M E A S DI N 3 7 6 T C 8 2 0
1
M8
2
M10
3
M12
4
M14
5
M16
6
M18
7
M20
8
M 2 2, M 2 4
T A P PI N G C H U C K S
N O.
Q ui c k C h a n g e T a p pi n g C oll et T C 8 2 0 4 P C S/ S E T
O R D E R N O. T C 8 2 0- DI N 3 7 1- D
C O D E N O. 3 4 0 4- 1 7 8
Q UI C K C H A N G E T A P C O L L E T S ( wit h o v erl o a d s af et y c oll et) T C- 8 2 0 DI N 3 7 1 4 P C S/ S E T ( M 5, M 6, M 8, M 1 0) N O.
Ø D X
1
M 5, M 6
2
M 6, M 5
3
M8
4
M10
SI Z E S A M E A S DI N 3 7 1 T C 8 2 0
Q ui c k C h a n g e T a p pi n g C oll et T C 8 2 0 8 P C S/ S E T
O R D E R N O. T C 8 2 0-I S O 2 2 8 3- E
C O D E N O. 3 4 0 4- 1 7 9
Q UI C K C H A N G E T A P C O L L E T S ( wit h o v erl o a d s af et y c oll et) T C- 8 2 0 I S O 2 2 8 3 8 P C S/ S E T ( M 8, M 1 0, M 1 2, M 1 4, M 1 6, M 1 8, M 2 2, M 2 4) N O.
Ø D X
1
M8
2
M10
3
M12
4
M14
5
M16
6
M 1 8, M 2 0
7
M22
8
M24
SI Z E S A M E A S I S O 2 2 8 3 T C 8 2 0
T O O LI N G S Y S T E M
C122
Q ui c k C h a n g e T a p pi n g C oll et
Q UI C K C H A N G E T A P C O L L E T S ( wit h o v erl o a d s af et y c oll et)
C H U C K S UI T F O R DI A. Ø D 1 T C- 3 1 2, 3 1 2 B I S Ø 1 9 M M T C- 8 2 0, 8 2 0 B I S Ø 3 1 M M T C- 1 4 3 3, 1 4 3 3 B I S Ø 4 8 M M
T a p pi n g C oll et R e d u c er / A d a pt er T hi s a d a pt er i s f or tr a n sf or mi n g T hi s a d a pt er all o w s t h e V A T-t a p pi n g s pi n dl e t o u s e s m all er si z e. Tr a n sf or mi n g t h e bi g t a p pi n g si z e t o s m all er o n e. L ar g e r a n g e t y p e f or t a p M 3 ~ M 2 4, T C 3 1 2, T C 8 2 0, T C 1 4 3 3 C O S T S A VI N G!
T or q u e i s f a ct or y- s et t o pr ot e ct t h e t a p. S m all a dj u st m e nt s c a n b e m a d e b y a tr ai n e d u s er t o a c c o m o d at e t a p str e n gt h a n d m at eri al v ari ati o n s. C oll et st o p s dri vi n g w h e n s et t or q u e i s e x c e e d e d. E v er y t a p n e e d s a m at c h si z e t a p pi n g c oll et. Ø D 1 i s c h u c k s uit f or di a.
C o n n e cti n g Si z e Li st
Q UI C K C H A N G E T A P C O L L E T S ( wit h o v erl o a d s af et y c oll et)
JI S S Y S T E M SI Z E Si z e
T hr e a d
M2 M3 M4 M5 M6 M7 M8 M9 M10 M 11 T C 312 M12 ( # 1) •M 1 4 •M 1 5 U N C 1/ 4 U N C 5/ 1 6 U N C 3/ 8 U N C 7/ 1 6 U N C 1/ 2 • U N C 9/ 1 6 P T 1/ 8 P T 1/ 4
C123
O R D E R N O . S A M E C O L O R A R E I N T E R- C H A N G E A B L E
Ta p S h a n k Ø D 3 4 5 5. 5 6 6. 2 6. 2 7 7 8 8. 5 1 0. 5 1 0. 5 6 6. 1 7 8 9 1 0. 5 8 11
T O O LI N G S Y S T E M
2. 5 3. 2 4 4. 5 4. 5 5 5 5. 5 5. 5 6 6. 5 8 8 4. 5 5 5. 5 6 7 8 6 9
Ø D1
S uit f or DI A. 19
L 1
L 2 O R D E R N O.
C O D E N O.
22
3 1 2- 0 0 3 1 2- 0 1 3 1 2- 0 2 3 1 2- 0 3 3 1 2- 0 4 3 1 2- 0 5 3 1 2- 0 6 3 1 2- 0 7 3 1 2- 0 8 3 1 2- 0 9 3 1 2- 1 0 • 3 1 2- 1 1 • 3 1 2- 1 2 3 1 2- 1 3 3 1 2- 1 4 3 1 2- 1 5 3 1 2- 1 6 3 1 2- 1 7 • 3 1 2- 1 8 3 1 2- 1 9 3 1 2- 2 0
3 4 0 4- 2 0 0 A 3 4 0 4- 2 0 0 3 4 0 4- 2 0 1 3 4 0 4- 2 0 2 3 4 0 4- 2 0 3 3 4 0 4- 2 0 4 3 4 0 4- 2 0 5 3 4 0 4- 2 0 6 3 4 0 4- 2 0 7 3 4 0 4- 2 0 8 3 4 0 4- 2 0 9 3 4 0 4- 2 1 0 3 4 0 4- 2 1 1 3 4 0 4- 2 1 2 3 4 0 4- 2 1 3 3 4 0 4- 2 1 4 3 4 0 4- 2 1 5 3 4 0 4- 2 1 6 3 4 0 4- 2 1 7 3 4 0 4- 2 1 8 3 4 0 4- 2 1 9
25
1P C
0. 1 8 k g
Ø D x Si z e s a m e a s JI S i n c h or m m W 1/ 8’’ M 4. 5 M 5. 5, W 3/ 1 6’’ W 1/ 4’’, U N C 1/ 4’’ M8 M7 M 1 0, W 3/ 8’’, U N C 3/ 8’’ M 9, W 3/ 8’’, U N C 3/ 8’’ W 7/ 1 6’’, P T 1/ 8’’, P S 1/ 8’’, P F 1/ 8’’, U N C 7/ 1 6’’ M 1 5, W 9/ 1 6’’, U N C 9/ 1 6’’ M 1 4, W 9/ 1 6’’, U N C 9/ 1 6’’ M 6, W 1/ 4’’ M 9, M 1 0, W 3/ 8’’ M 1 1, W 7/ 1 6’’, P T 1/ 8’’ , P S 1/ 8’’ , P F 1/ 8’’ W 1/ 2’’ M 1 4, M 1 5, W 9/ 1 6’’ M 1 1, W 7/ 1 6, P S 1/ 8’’ , P F 1/ 8’’ , U N C 7/ 1 6’’ P S 1/ 4, P F 1/ 4
M at c hi n g Si z e Li st Si z e
T hr e a d
M6 M7 M8 M9 M10 M 11 M12 M14 M15 M16 M18 M20 T C820 M22 ( # 2) U N C 3 /8 U N C 7 /1 6 U N C 1 /2 U N C 9 /1 6 U N C 5 /8 U N C 3 /4 U N C 7 /8 P T 1 /8 P T 1 /4 P T 3 /8 P T 1 /2 M24
O R D E R N O . S A M E C O L O R A R E I N T E R- C H A N G E A B L E
Ta p S h a n k Ø D 6 4. 5 6. 2 5 6. 2 5 7 5. 5 7 5. 5 8 6 8. 5 6. 5 1 0. 5 8 1 0. 5 8 1 2. 5 10 14 11 15 12 17 13 7 5. 5 8 6 9 7 1 0. 5 8 12 9 14 11 17 13 8 6 11 9 14 11 18 14 19 15
Ø D1
S uit f or DI A. 31
L 1
L 2 O R D E R N O.
C O D E N O.
8 2 0- 0 0 A 8 2 0- 0 1 8 2 0- 0 2 8 2 0- 0 3 8 2 0- 0 4 8 2 0- 0 5 8 2 0- 0 6 8 2 0- 0 7 8 2 0- 0 8 8 2 0- 0 9 8 2 0- 1 1 8 2 0- 1 2 8 2 0- 1 3 8 2 0- 1 4 8 2 0- 1 5 8 2 0- 1 6 8 2 0- 1 7 8 2 0- 1 8 8 2 0- 1 9 8 2 0- 2 0 8 2 0- 2 1 8 2 0- 2 2 8 2 0- 2 3 8 2 0- 2 4 8 2 0- 2 5
3 4 0 4- 2 2 8 3 4 0 4- 2 3 0 3 4 0 4- 2 3 1 3 4 0 4- 2 3 2 3 4 0 4- 2 3 3 3 4 0 4- 2 3 4 3 4 0 4- 2 3 5 3 4 0 4- 2 2 6 3 4 0 4- 2 3 7 3 4 0 4- 2 3 8 3 4 0 4- 2 4 0 3 4 0 4- 2 4 1 3 4 0 4- 2 4 2 3 4 0 4- 2 4 3 3 4 0 4- 2 4 4 3 4 0 4- 2 4 5 3 4 0 4- 2 4 6 3 4 0 4- 2 4 7 3 4 0 4- 2 4 8 3 4 0 4- 2 4 9 3 4 0 4- 2 5 0 3 4 0 4- 2 5 1 3 4 0 4- 2 5 2 3 4 0 4- 2 5 3 3 4 0 4- 2 5 4
3 6 3 0. 5
1P C
M 1 5, W 9/ 1 6’’, U N C 9/ 1 6’’ M 1 4, W 9/ 1 6’’, U N C 9/ 1 6’’ W 3/ 4’’, P T 3/ 8’’, P S 3/ 8’’, P F 3/ 8’’, U N C 3/ 4’’ W 7/ 8’’, U N C 7/ 8’’ M 9, M 1 0 , W 3/ 8’’ M 1 1, W 7/ 1 6’’, P T 1/ 8’’, P S 1/ 8’’, P F 1/ 8’’ W 1/ 2’’ M 1 4, M 1 5, W 9/ 1 6’’ W 5/ 8’’ M 1 8, W 3/ 4’’, P T 3/ 8’’, P S 3/ 8’’, P F 3/ 8’’ M 2 2, W 7/ 8’’ M 1 1, W 7/ 1 6’’, U N C 7/ 1 6’’, P S 1/ 8’’, P F 1/ 8’’ P S 1/ 4’’, P F 1/ 4’’ M 1 8, W 3/ 4’’, P S 3/ 8’’, P F 3/ 8’’, U N C 3/ 4’’ P S 1/ 2’’, P F 1/ 2’’ M 2 5, P F 5/ 8’’
O R D E R N O . S A M E C O L O R A R E I N T E R- C H A N G E A B L E
JI S S Y S T E M SI Z E
1P C
Si z e
T hr e a d
T C 1433 ( # 3)
M14 M15 M16 M18 M20 M22 M24 M25 M26 M27 M28 M30 M32 M33 M34 M35 M36 U N C 9 /1 6 U N C 5 /8 U N C 3 /4 U N C 7 /8 U N C 1 U N C 1 1 /8 U N C 1 1 /4 U N C 1 3 /8 P T 1 /4 P T 3 /8 P T 1 /2 P T 3 /4 PT 1
Ta p S h a n k Ø D 1 0. 5 1 0. 5 1 2. 5 14 15 17 19 19 20 20 21 23 24 25 26 26 28 1 0. 5 12 14 17 20 22 24 26 11 14 18 23 26
0. 6 k g
Ø D x Si z e s a m e a s JI S i n c h or m m W 1/ 4’’, U N C 1/ 4’’ M8 M7 M 1 0, W 3/ 8’’, U N C 3/ 8’’ M 9, W 3/ 8’’, U N C 3/ 8’’ W 7/ 1 6’’, U N C 7/ 1 6’’, P T 1/ 8’’, P S 1/ 8’’, P F 1/ 8’’
T A P PI N G C H U C K S
JI S S Y S T E M SI Z E
8 8 10 11 12 13 15 15 15 15 17 17 19 19 21 21 21 8 9 11 13 15 17 19 21 9 11 14 17 21
Ø D1
S uit f or DI A. 48
L 1
56
L 2 O R D E R N O. C O D E N O.
45
1 4 3 3- 0 1 1 4 3 3- 0 2 1 4 3 3- 0 3 1 4 3 3- 0 5 1 4 3 3- 0 6 1 4 3 3- 0 7 1 4 3 3- 0 8 1 4 3 3- 0 9 1 4 3 3- 1 0 1 4 3 3- 1 1 1 4 3 3- 1 2 1 4 3 3- 1 3 1 4 3 3- 1 4 1 4 3 3- 1 5 1 4 3 3- 1 6 1 4 3 3- 1 7 1 4 3 3- 1 8 V 4 3 3- 1 9 1 4 3 3- 2 0 1 4 3 3- 2 1 1 4 3 3- 2 2 1 4 3 3- 2 3 1 4 3 3- 2 4 1 4 3 3- 2 5 1 4 3 3- 2 6 1 4 3 3- 2 7 1 4 3 3- 2 8 1 4 3 3- 2 9 1 4 3 3- 3 0 1 4 3 3- 3 1
3 4 0 4- 2 6 0 3 4 0 4- 2 6 1 3 4 0 4- 2 6 2 3 4 0 4- 2 6 4 3 4 0 4- 2 6 5 3 4 0 4- 2 6 6 3 4 0 4- 2 6 7 3 4 0 4- 2 6 8 3 4 0 4- 2 6 9 3 4 0 4- 2 7 0 3 4 0 4- 2 7 1 3 4 0 4- 2 7 2 3 4 0 4- 2 7 3 3 4 0 4- 2 7 4 3 4 0 4- 2 7 5 3 4 0 4- 2 7 6 3 4 0 4- 2 7 7 3 4 0 4- 2 7 8 3 4 0 4- 2 7 9 3 4 0 4- 2 8 0 3 4 0 4- 2 8 1 3 4 0 4- 2 8 2 3 4 0 4- 2 8 3 3 4 0 4- 2 8 4 3 4 0 4- 2 8 5 3 4 0 4- 2 8 6 3 4 0 4- 2 8 7 3 4 0 4- 2 8 8 3 4 0 4- 2 8 9 3 4 0 4- 2 9 0
1. 8 k g
Ø D x Si z e s a m e a s JI S i n c h or m m M 1 5, W 9/ 1 6’’, U N C 9/ 1 6’’ M 1 4, W 9/ 1 6’’, U N C 9/ 1 6’’ W 3/ 4’’, U N C 3/ 4’’, P T 3/ 8’’, P S 3/ 8’’, P F 3/ 8’’ W 7/ 8’’, U N C 7/ 8’’ M 2 5, P F 5/ 8’’ M 2 4, P F 5/ 8’’ M 2 7, W 1’’, U N C 1’’ M 2 6, W 1’’, U N C 1’’ P T 3/ 4’’, P S 3/ 4’’, P F 3/ 4’’ W 1- 1/ 4’’, P F 7/ 8’’, U N C 1- 1/ 4’’ M 3 5, W 1- 3/ 8’’, P T 1’’, P S 1’’, P F 1’’, U N C 1- 3/ 8’’ M 3 4, W 1- 3/ 8’’, P T 1’’, P S 1’’, P F 1’’, U N C 1- 3/ 8’’ M 1 4, M 1 5, W 9/ 1 6’’ M 1 8, W 3/ 4’’, P T 3/ 8’’, P S 3/ 8’’, P F 3/ 8’’ M 2 2, W 7/ 8’’ M 2 6, M 2 7, W 1’’ M 3 2, W 1- 1/ 4’’, P F 7/ 8’’ M 3 4, M 3 5, W 1- 3/ 8’’, P T 1’’, P S 1’’, P F 1’’ M 1 8, W 3/ 4’’, P T 3/ 8’’, P S 3/ 8’’, P F 3/ 8’’, U N C 3/ 4’’ M 3 0, P S 3/ 4’’, P F 3/ 4’’ M 3 4, M 3 5, W 1- 3/ 8’’, P S 1’’, P F 1’’, U N C 1- 3/ 8’’
T O O LI N G S Y S T E M
C124
Q ui c k C h a n g e T a p pi n g C oll et
O R D E R N O . S A M E C O L O R A R E I N T E R- C H A N G E A B L E
Ø D 1 i s c h u c k s uit f or di a.
Wit h O v erl o a d S af et y C oll et
DI N 3 7 1 T y p e O R DE R N O. 3 1 2- 0 1 D 3 1 2- 0 2 D 3 1 2- 0 2 D A 3 1 2- 0 2 D B 3 1 2- 0 3 D 3 1 2- 0 4 D 3 1 2- 0 5 D 3 1 2- 0 6 D 3 1 2- 0 7 D 3 1 2- 0 8 D 3 1 2- 0 9 D 3 1 2- 1 0 D O R DE R N O. 8 2 0- 0 1 D 8 2 0- 0 2 D 8 2 0- 0 3 D 8 2 0- 0 4 D
Si z e
T C 312 DI N 3 7 1
Si z e T C 820 DI N 3 7 1
DI N 3 7 6 T y p e O R DE R N O. 3 1 2- 2 1 D 3 1 2- 2 2 D 3 1 2- 2 3 D 3 1 2- 2 4 D 3 1 2- 2 5 D 3 1 2- 2 6 D 3 1 2- 2 7 D 3 1 2- 2 8 D 3 1 2- 2 9 D 3 1 2- 3 0 D O R DE R N O. 8 2 0- 2 1 D 8 2 0- 2 2 D 8 2 0- 2 3 D 8 2 0- 2 4 D 8 2 0- 2 5 D 8 2 0- 2 6 D 8 2 0- 2 7 D 8 2 0- 2 8 D 8 2 0- 2 9 D O R DE R N O. 1 4 3 3- 0 1 D 1 4 3 3- 0 2 D 1 4 3 3- 0 3 D 1 4 3 3- 0 4 D 1 4 3 3- 0 5 D 1 4 3 3- 0 6 D 1 4 3 3- 0 7 D 1 4 3 3- 0 8 D 1 4 3 3- 0 9 D 1 4 3 3- 1 0 D
C125
Si z e
T C 312 DI N 3 7 6
Si z e
T C 820 DI N 3 7 6
Si z e
T C 1433 DI N 3 7 6
T or q u e i s f a ct or y- s et t o pr ot e ct t h e t a p f or w hi c h a p arti c ul ar c oll et i s d e si g n e d. S m all a dj u st m e nt s c a n b e m a d e b y a tr ai n e d u s er t o a c c o m o d at e t a p str e n gt h a n d m at eri al v ari ati o n s. C oll et st o p s dri vi n g w h e n s et t or q u e i s e x c e e d e d. E v er y t a p n e e d s a m at c h si z e t a p pi n g c oll et.
Ta p S h a n k C a p a cit y ( Lm/1 m) ( Lm/2 m) ( Ø m/D 1 m) ( Ø m/D 2 m) C O D E N O. Ø D 3 4 0 4- 5 0 1 2. 5 2. 1 2. 8 2. 1 3 4 0 4- 5 0 2 2. 8 2. 1 3 4 0 4- 5 0 2 A 2. 8 2. 1 3 4 0 4- 5 0 2 B 3. 5 2. 7 3 4 0 4- 5 0 3 S uit 4. 0 3. 0 3 4 0 4- 5 0 4 f or M1~ M14 2 2. 5 25 32 DI A. 4. 5 3. 4 3 4 0 4- 5 0 5 19 6. 0 4. 9 3 4 0 4- 5 0 6 6. 0 4. 9 3 4 0 4- 5 0 7 6. 0 4. 9 3 4 0 4- 5 0 8 8. 0 6. 2 3 4 0 4- 5 0 9 1 0. 0 8. 0 3 4 0 4- 5 1 0 Ta p S h a n k T C820 C a p a cit y ( Lm/1 m) ( Lm/2 m) ( Ø m/D 1 m) ( Ø m/D 2 m) C O D E N O. DI N 3 7 1 T a p Ø D M5 6. 0 4. 9 3 4 0 4- 5 2 1 S uit M6 6. 0 4. 9 3 4 0 4- 5 2 2 f or M5~ M24 35 3 0. 5 50 DI A. M8 8. 0 6. 2 3 4 0 4- 5 2 3 31 M10 1 0. 0 8. 0 3 4 0 4- 5 2 4
T C312 DI N 3 7 1 T a p M 1 ~ M 1. 8 M 2 ~ M 2. 5 M2 M 2. 5 M3 M 3. 5 M4 M 4. 5 M5 M6 M8 M10
L1 L2 Ø D1 Ø D2 ( m/ m) ( m/ m) ( m/ m) ( m/ m) C O D E N O. 3 4 0 4- 5 3 1 3 4 0 4- 5 3 2 3 4 0 4- 5 3 3 3 4 0 4- 5 3 4 S uit 3 4 0 4- 5 3 5 f or 32 2 2. 5 25 DI A. 3 4 0 4- 5 3 6 19 3 4 0 4- 5 3 7 3 4 0 4- 5 3 8 3 4 0 4- 5 3 9 3 4 0 4- 5 4 0
T C820 DI N 3 7 6 T a p M8 M10 M12 M14 M16 M18 M20 M22 M24
Ta p S h a n k C a p a cit y Ø D 6. 0 4. 9 7. 0 5. 5 9. 0 7. 0 1 1. 0 9. 0 M8~ M24 1 2. 0 9. 0 1 4. 0 1 1. 0 1 6. 0 1 2. 0 1 8. 0 1 4. 5 1 8. 0 1 4. 5
L1 L2 Ø D1 Ø D2 ( m/ m) ( m/ m) ( m/ m) ( m/ m) C O D E N O. 3 4 0 4- 5 5 1 3 4 0 4- 5 5 2 3 4 0 4- 5 5 3 S uit 3 4 0 4- 5 5 4 f or 35 3 0. 5 50 3 4 0 4- 5 5 5 DI A. 3 4 0 4- 5 5 6 31 3 4 0 4- 5 5 7 3 4 0 4- 5 5 8 3 4 0 4- 5 5 9
T C1433 DI N 3 7 6 T a p M14 M16 M18 M20 M22 M24 M27 M30 M33 M36
Ta p S h a n k Ø D 1 1. 0 9. 0 1 2. 0 9. 0 1 4. 0 1 1. 0 1 6. 0 1 2. 0 1 8. 0 1 4. 5 1 8. 0 1 4. 5 2 0. 0 1 6. 0 2 2. 0 1 8. 0 2 5. 0 2 0. 0 2 8. 0 2 2. 0
T O O LI N G S Y S T E M
M14~ M36
M 2, M 2. 5 M 2 ~ M 2. 5, M 2. 5 M 2, M 2 ~ M 2. 5
M 5, M 6 M 4. 5, M 6 M 4. 5, M 5
Ø D x Si z e s a m e a s DI N 3 7 1 M6 M5
* C u st o m- b uil d pr o d u ct s ar e a v ail a bl e o n r e q u e st.
Ta p S h a n k T C312 C a p a cit y DI N 3 7 6 T a p Ø D M 3. 5 2. 5 2. 1 M4 2. 8 2. 1 M 4. 5 3. 5 2. 7 M5 3. 5 2. 7 M6 4. 5 3. 4 M3~ M14 M7 5. 5 4. 3 M8 6. 0 4. 9 M10 7. 0 5. 5 M12 9. 0 7. 0 M14 1 1. 0 9. 0
C a p a cit y
Ø D x Si z e s a m e a s DI N 3 7 1
L1 L2 Ø D1 Ø D2 ( m/ m) ( m/ m) ( m/ m) ( m/ m)
5 5. 5
45
S uit f or DI A. 48
72
Ø D x Si z e s a m e a s DI N 3 7 6 M5 M 4. 5
Ø D x Si z e s a m e a s DI N 3 7 6
M24 M22
C O DE Ø D x N O. Si z e s a m e a s DI N 3 7 6 3 4 0 4- 5 7 1 3 4 0 4- 5 7 2 3 4 0 4- 5 7 3 3 4 0 4- 5 7 4 3 4 0 4- 5 7 5 M 2 4 3 4 0 4- 5 7 6 M 2 2 3 4 0 4- 5 7 7 3 4 0 4- 5 7 8 3 4 0 4- 5 7 9 3 4 0 4- 5 8 0
Q ui c k C h a n g e T a p pi n g C oll et
O R D E R N O . S A M E C O L O R A R E I N T E R- C H A N G E A B L E
3 1 2- 2 1 I 3 1 2- 2 2 I 3 1 2- 2 3 I 3 1 2- 2 4 I 3 1 2- 2 5 I 3 1 2- 2 6 I 3 1 2- 2 7 I 3 1 2- 2 8 I 3 1 2- 2 9 I 3 1 2- 3 0 I 3 1 2- 3 1 I 3 1 2- 3 2 I
Si z e
T C 312 IS O 5 2 9/ 2 2 8 3
O R DE R N O.
Si z e
8 2 0- 2 1 I 8 2 0- 2 2 I 8 2 0- 2 3 I 8 2 0- 2 4 I 8 2 0- 2 5 I 8 2 0- 2 6 I 8 2 0- 2 7 I 8 2 0- 2 9 I 8 2 0- 3 0 I 8 2 0- 3 1 I
T C 820 IS O 5 2 9/ 2 2 8 3
O R DE R N O.
Si z e
1 4 3 3- 0 1 I 1 4 3 3- 0 2 I 1 4 3 3- 0 3 I 1 4 3 3- 0 4 I 1 4 3 3- 0 5 I 1 4 3 3- 0 6 I 1 4 3 3- 0 7 I 1 4 3 3- 0 8 I 1 4 3 3- 0 9 I 1 4 3 3- 1 0 I
T C312I S O 5 2 9/ 2 2 8 3 T a p M3 M 3. 5 M4 M 4. 5 M5 M6 M7 M8 M9 M10 M12 M14
T C820I S O 5 2 9/ 2 2 8 3 Ta p M8 M9 M10 M12 M14 M16 M18 M20 M22 M24
T C 1433 IS O 5 2 9/ 2 2 8 3
Ta p S h a n k Ø D 6. 3 7. 1 8. 0 9. 0 1 1. 2 1 2. 5 1 4. 0 1 4. 0 1 6. 0 1 8. 0
* C u st o m- b uil d pr o d u ct s ar e a v ail a bl e o n r e q u e st.
Ta p S h a n k Ø D 2. 2 4 1. 8 2. 5 2. 0 3. 1 5 2. 5 3. 5 5 2. 8 4. 0 3. 1 5 4. 5 3. 5 5 5. 6 4. 5 6. 3 5. 0 7. 1 5. 6 8. 0 6. 3 9. 0 7. 1 1 1. 2 9. 0
5. 0 5. 6 6. 3 7. 1 9. 0 1 0. 0 1 1. 2 1 1. 2 1 2. 5 1 4. 0
L1 L2 Ø D1 Ø D2 ( m/ m) ( m/ m) ( m/ m) ( m/ m) C O D E N O. 3 4 0 4- 6 3 1 3 4 0 4- 6 3 2 3 4 0 4- 6 3 3 3 4 0 4- 6 3 4 3 4 0 4- 6 3 5 S uit 3 4 0 4- 6 3 6 f or 2 2. 5 25 32 DI A. 3 4 0 4- 6 3 7 19 3 4 0 4- 6 3 8 3 4 0 4- 6 3 9 3 4 0 4- 6 4 0 3 4 0 4- 6 4 1 3 4 0 4- 6 4 2
C a p a cit y
M3~ M14
C a p a cit y
L1 L2 Ø D1 Ø D2 ( m/ m) ( m/ m) ( m/ m) ( m/ m) C O D E N O.
M8~ M24
3 4 0 4- 6 5 1 3 4 0 4- 6 5 2 3 4 0 4- 6 5 3 3 4 0 4- 6 5 4 3 4 0 4- 6 5 5 3 4 0 4- 6 5 6 3 4 0 4- 6 5 7 3 4 0 4- 6 5 8 3 4 0 4- 6 5 9 3 4 0 4- 6 6 0
T C1433 Ta p S h a n k I S O 5 2 9/ 2 2 8 3 Ø D Ta p M14 1 1. 2 9. 0 M16 1 2. 5 1 0. 0 M18 1 4. 0 1 1. 2 M20 1 4. 0 1 1. 2 M22 1 6. 0 1 2. 5 M24 1 8. 0 1 4. 0 M27 2 0. 0 1 6. 0 M30 2 0. 0 1 6. 0 M33 2 2. 4 1 8. 0 M36 2 5. 0 2 0. 0
35
3 0. 5
S uit f or DI A. 31
50
Ø D x
Si z e s a m e asI S O 529
M 1 ~ M 2, M 2 M3 M 3. 5 M4 M 4. 5 M6 M7 M8 M9
Si z e Ø D x sa me asI S O 529/ 2283
Ø D x Si z e s a m e asI S O 529 M6 M7 M8 M9
M20 M18
L1 L2 Ø D1 Ø D 2 C O D E N O. Si z e sØa D m xe a s I S O ( m/ m) ( m/ m) ( m/ m) ( m/ m) 529/ 2283
C a p a cit y
M14~ M36
5 5. 5
S uit f or DI A. 48
45
72
3 4 0 4- 6 7 1 3 4 0 4- 6 7 2 3 4 0 4- 6 7 3 3 4 0 4- 6 7 4 3 4 0 4- 6 7 5 3 4 0 4- 6 7 6 3 4 0 4- 6 7 7 3 4 0 4- 6 7 8 3 4 0 4- 6 7 9 3 4 0 4- 6 8 0
M20 M18 M30 M27
I S O 5 2 9 Ty p e
Ta p S h a n k T C312 C a p a cit y I O S 5 2 9 Ta p Ø D
O R DE R N O.
Si z e
3 1 2- 0 1 I 3 1 2- 0 1 I A 3 1 2- 0 2 I 3 1 2- 0 2 I A 3 1 2- 0 3 I 3 1 2- 0 4 I 3 1 2- 0 5 I 3 1 2- 0 6 I 3 1 2- 0 7 I 3 1 2- 0 8 I 3 1 2- 0 9 I 3 1 2- 1 0 I 3 1 2- 1 1 I 3 1 2- 1 2 I
M1~ M2 M2 M 2. 2 ~ M 2. 5 M 2. 5 M3 M 3. 5 T C M4 312 IS O M 4. 5 529 M5 M6 M7 M8 M9 M10
O R D E R N O.
Si z e
8 2 0- 0 1 I 8 2 0- 0 2 I 8 2 0- 0 3 I 8 2 0- 0 4 I 8 2 0- 0 5 I
T C 820 I S O 529
2. 5 2. 5 2. 8 2. 8 3. 1 5 3. 5 5 4. 0 4. 5 5. 0 6. 3 7. 1 8. 0 9. 0 1 0. 0
2. 0 2. 0 2. 2 4 2. 2 4 2. 5 2. 8 3. 1 5 3. 5 5 4. 0 5. 0 5. 6 6. 3 7. 1 8. 0
M1~ M14
Ta p S h a n k T C820 I S O 5 2 9 Ta p Ø D M6 6. 3 5. 0 M7 7. 1 5. 6 M8 8. 0 6. 3 M9 9. 0 7. 1 M10 1 0. 0 8. 0
L1 L2 Ø D1 Ø D2 ( m/ m) ( m/ m) ( m/ m) ( m/ m) C O D E N O.
2 2. 5
C a p a cit y
M6~ M24
25
S uit f or DI A. 19
32
3 4 0 4- 6 0 1 3 4 0 4- 6 0 1 A 3 4 0 4- 6 0 2 3 4 0 4- 6 0 2 A 3 4 0 4- 6 0 3 3 4 0 4- 6 0 4 3 4 0 4- 6 0 5 3 4 0 4- 6 0 6 3 4 0 4- 6 0 7 3 4 0 4- 6 0 8 3 4 0 4- 6 0 9 3 4 0 4- 6 1 0 3 4 0 4- 6 1 1 3 4 0 4- 6 1 2
Ø D x Si z e sa me asI S O 529/ 2283 M 3. 5 M 3. 5 M4 M 4. 5 M5 M6
Ø D x Si z e s a m e a s I S O 529 M2 M1~ M2 M 2. 5 M 2. 2 ~ M 2. 5
M8 M9 M10 M12
Si z e s a m e a s L1 L2 Ø D1 Ø D2 Ø D x I S O 529/ 2283 ( m/ m) ( m/ m) ( m/ m) ( m/ m) C O D E N O. 3 4 0 4- 6 2 1 M 8 S uit 3 4 0 4- 6 2 2 M 9 f or 3 4 0 4- 6 2 3 M 1 0 35 3 0. 5 50 DI A. 3 4 0 4- 6 2 4 M 1 2 31 3 4 0 4- 6 2 5
T O O LI N G S Y S T E M
C126
T A P PI N G C H U C K S
I S O 5 2 9/ 2 2 8 3 T y p e O R D E R N O.
Wit h O v erl o a d S af et y C oll et
T C- 3 1 2
Q ui c k C h a n g e T a p pi n g C oll et
Q UI C K C H A N G E T A P C O L L E T S
Wit h O v erl o a d S af et y C oll et
A N SI T Y P E
Ta p S h a n k
T C312 A N SI Ta p
Ø D inch
m m
inch
m m
T C 3 1 2- # 5- A N SI
#5
0. 1 4 1
3. 5 8 1
0. 1 1
2. 7 9 4
3 4 0 4- 7 0 1 U N C 1/ 8’’, M 3, M 3. 1 5
T C 3 1 2- # 6- A N SI
#6
0. 1 4 1
3. 5 8 1
0. 1 1
2. 7 9 4
3 4 0 4- 7 0 2 M 3. 5
T C 3 1 2- # 8- A N SI
#8
0. 1 6 8
4. 2 6 7
0. 1 3 1
3. 3 2 7
T C 3 1 2- # 1 0- A N SI
#10
0. 1 9 4
4. 9 2 8
0. 1 5 2
3. 8 6 1
T C 3 1 2- # 1 2- A N SI
#12
0. 2 2 0
5. 5 8 8
0. 1 6 5
4. 1 9 1
T C 3 1 2- # 1 4- A N SI
#14
0. 2 5 5
6. 4 7 7
0. 1 9 1
4. 8 5 1
3 4 0 4- 7 0 6 U N C 1/ 4’’, M 6, M 6. 3
T C 3 1 2- M 3- A N SI
M3
0. 1 4 1
3. 5 8 1
0. 1 1
2. 7 9 4
3 4 0 4- 7 0 7 # 5, U N C 1/ 8’’, M 3. 1 5
T C 3 1 2- M 4- A N SI
M4
0. 1 6 8
4. 2 6 7
0. 1 3 1
3. 3 2 7
3 4 0 4- 7 0 8 # 8, U N C 5/ 3 2’’
T C 3 1 2- M 5- A N SI
M5
0. 1 9 4
4. 9 2 8
0. 5 2
3. 8 6 1
3 4 0 4- 7 0 9 # 1 0, U N C 3/ 1 6’’, M 4. 5
M6
0. 2 5 5
6. 4 7 7
0. 1 9 1
4. 8 5 1
M8
0. 3 1 8
8. 0 7 7
0. 2 3 8
6. 0 4 5
T C 3 1 2- M 1 0- A N SI
M10
0. 3 2 3
8. 2 0 4
0. 2 4 2
6. 1 4 7
3 4 0 4- 7 1 2 U N C 7/ 1 6’’
T C 3 1 2- M 1 2- A N SI
M12
0. 3 6 7
9. 3 2 2
0. 2 7 5
6. 9 8 5
3 4 0 4- 7 1 3 U N C 1/ 2’’, M 1 2. 5
T C 3 1 2- M 1 4- A N SI
M14
0. 4 2 9 1 0. 8 9 7 0. 3 2 2
8. 1 7 9
3 4 0 4- 7 1 4 U N C 9/ 1 6’’
O R D E R N O.
Si z e
T C 3 1 2- M 6- A N SI T C 3 1 2- M 8- A N SI
T C312 A N SI
L1
C a p a cit y
#5~#14
L2 ( m m)
Ø D1
Ø D x Si z e s a m e a s A N SI
3 4 0 4- 7 0 3 U N C 5/ 3 2’’, M 4
S uit f or DI A. 1 9. 0
2 1. 5
C O DE N O.
Ø D2 ( m m)
3 4 0 4- 7 0 4 U N C 3/ 1 6’’, M 4. 5, M 5 3 4 0 4- 7 0 5
3 4 0 4- 7 1 0 # 1 4, U N C 1/ 4’’, M 6. 3
M3~ M14
3 4 0 4- 7 1 1 U N C 5/ 1 6’’, M 7
T C 3 1 2- U N C 1/ 8- A N SI
U N C 1/ 8
0. 1 4 1
3. 5 8 1
0. 1 1
2. 7 9 4
3 4 0 4- 7 1 5 # 5, M 3, M 3. 1 5
T C 3 1 2- U N C 3/ 1 6- A N SI
U N C 3/ 1 6 0. 1 9 4
4. 9 2 8
0. 1 5 2
3. 8 6 1
3 4 0 4- 7 1 6 # 1 0, M 4. 5, M 5
T C 3 1 2- U N C 1/ 4- A N SI
U N C 1/ 4
0. 2 5 5
6. 4 7 7
0. 1 9 1
4. 8 5 1
T C 3 1 2- U N C 5/ 1 6- A N SI
U N C 5/ 1 6 0. 3 1 8
8. 0 7 7
0. 2 3 8
6. 0 4 5
T C 3 1 2- U N C 7/ 1 6- A N SI
U N C 7/ 1 6 0. 3 2 3
8. 2 0 4
0. 2 4 2
6. 1 4 7
T C 3 1 2- U N C 1/ 2- A N SI
U N C 1/ 2
0. 3 6 7
9. 3 2 2
0. 2 7 5
6. 9 8 5
3 4 0 4- 7 2 0 M 1 2, M 1 2. 5
T C 3 1 2- U N C 3/ 8- A N SI
U N C 3/ 8
0. 3 8 1
9. 6 7 7
0. 2 8 6
7. 2 6 4
3 4 0 4- 7 2 1
A N SI T Y P E O R D E R N O.
Si z e
T C820 A N SI T a p
Ta p S h a n k C a p a cit y
Ø D inch
m m
inch
m m
T C 8 2 0- U N C 7/ 1 6- A N SI
U N C 7/ 1 6
0. 3 2 3
8. 2 0 4
0. 2 4 2
6. 1 4 7
T C 8 2 0- U N C 1/ 2- A N SI
U N C 1/ 2
0. 3 6 7
9. 3 2 2
0. 2 7 5
6. 9 8 5
T C 8 2 0- U N C 9/ 1 6- A N SI
U N C 1/ 8 ~ U N C 9/ 1 6
U N C 9/ 1 6
0. 4 2 9 1 0. 8 9 7 0. 3 2 2
8. 1 7 9
U N C 5/ 8
0. 4 8 0 1 2. 1 9 2
9. 1 4 4
T C 8 2 0- U N C 1 1/ 1 6- A N SI
U N 1 1/ 1 6
0. 5 4 2 1 3. 7 6 7 0. 4 0 6 1 0. 3 1 2
T C 8 2 0- U N C 1 3/ 1 6- A N SI
U N C 1 3/ 1 6
0. 6 5 2 1 6. 5 6 1 0. 4 8 9 1 2. 4 2 1
T C 8 2 0- U N C 5/ 8- A N SI
C127
T C820 A N SI
T O O LI N G S Y S T E M
0. 3 6
3 4 0 4- 7 1 7 # 1 4, M 6, M 6. 3 2 5. 0
L1
L2 ( m m)
3 5. 0 U N C 7/ 1 6 ~ U N C 7/ 8
3 2. 0
3 4 0 4- 7 1 9 M 1 0
Ø D1 Ø D2 ( m m)
S uit f or DI A. 3 1. 0
M6~ M24
3 4. 0
3 4 0 4- 7 1 8 M 7, M 8
5 0. 0
C O DE N O.
Ø D x Si z e s a m e a s A N SI
3 4 0 4- 7 3 1
M10
3 4 0 4- 7 3 2
M 1 2, M 1 2. 5
3 4 0 4- 7 3 4
M14
3 4 0 4- 7 3 5
M16
3 4 0 4- 7 3 6
M18
3 4 0 4- 7 3 8
M20
Q ui c k C h a n g e T a p pi n g C oll et
JI S S Y S T E M SI Z E Si z e
T hr e a d
T C312 B ( # 1)
M3 M4 M5 M6 U N C 5/ 1 6 M 7/ M 8 M 9/ M 1 0 M 11 M12 U N C 1/ 2 M14 P T 1/ 4
Si z e
T hr e a d
T C820 B ( # 2)
M 7/ M 8 M 9/ M 1 0 M 11 M12 U N C 1/ 2 M14 P T 1/ 4 U N C 5/ 8 M16 M18 M20 M22 P T 1/ 2
Ta p S h a n k Ø D 4 3. 2 5 4 5. 5 4. 5 6 4. 5 6. 1 5 6. 2 5 7 5. 5 8 6 8. 5 6. 5 9 7 1 0. 5 8 11 9
Ta p S h a n k Ø D 6. 2 5 7 5. 5 8 6 8. 5 6. 5 9 7 1 0. 5 8 11 9 12 9 1 2. 5 10 14 11 15 12 17 13 18 14
1P C
Ø D1
S uit f or DI A. 19
L 1
2 1. 5
L2
O R D E R N O.
C O D E N O.
7
3 1 2 B- 0 1 3 1 2 B- 0 2 3 1 2 B- 0 3 3 1 2 B- 0 4 3 1 2 B- 0 5 3 1 2 B- 0 6 3 1 2 B- 0 7 3 1 2 B- 0 8 3 1 2 B- 0 9 3 1 2 B- 1 0 3 1 2 B- 1 1 3 1 2 B- 1 2
3 4 0 4- 3 0 0 3 4 0 4- 3 0 1 3 4 0 4- 3 0 2 3 4 0 4- 3 0 3 3 4 0 4- 3 0 4 3 4 0 4- 3 0 5 3 4 0 4- 3 0 6 3 4 0 4- 3 0 7 3 4 0 4- 3 0 8 3 4 0 4- 3 0 9 3 4 0 4- 3 1 0 3 4 0 4- 3 1 1
Ø D x S a m e JI S i n c h or m m W 1/ 8’’ M 4. 5 M 5. 5, W 3/ 1 6’’ W 1/ 4’’, U N C 1/ 4’’ W 3/ 8’’, U N C 3/ 8’’ W 7/ 1 6’’, P T 1/ 8’’, P S 1/ 8’’, P F 1/ 8’’, U N C 7/ 1 6’’ W 1/ 2’’ M 1 5, W 9/ 1 6’’ P S 1/ 4’’, P F`/ 4’’ 1P C
Ø D1
S uit f or DI A. 31
L 1
35
L2
O R D E R N O.
C O D E N O.
11
8 2 0 B- 0 1 8 2 0 B- 0 2 8 2 0 B- 0 3 8 2 0 B- 0 4 8 2 0 B- 0 5 8 2 0 B- 0 6 8 2 0 B- 0 7 8 2 0 B- 0 8 8 2 0 B- 0 9 8 2 0 B- 1 1 8 2 0 B- 1 2 8 2 0 B- 1 3 8 2 0 B- 1 4
3 4 0 4- 3 3 0 3 4 0 4- 3 3 1 3 4 0 4- 3 3 2 3 4 0 4- 3 3 3 3 4 0 4- 3 3 4 3 4 0 4- 3 3 5 3 4 0 4- 3 3 6 3 4 0 4- 3 3 7 3 4 0 4- 3 3 8 3 4 0 4- 3 4 0 3 4 0 4- 3 4 1 3 4 0 4- 3 4 2 3 4 0 4- 3 4 3
Si z e
T hr e a d
M 1 4/ M 1 5 P T 1/ 4 U N C 5/ 8 M16 M18 M20 M22 P T 1/ 2 T C 1 4 3 3 B M 2 4/ M 2 5 ( # 3) M 2 6/ M 2 7 M28 U N C 1 1 /8 M30 M32 M33 M 3 4/ M 3 5 M36
Ø D1
S uit f or DI A. 48
L 1
5 5. 5
L2
O R D E R N O.
C O D E N O.
14
1 4 3 3 B- 0 1 1 4 3 3 B- 0 2 1 4 3 3 B- 0 3 1 4 3 3 B- 0 4 1 4 3 3 B- 0 6 1 4 3 3 B- 0 7 1 4 3 3 B- 0 8 1 4 3 3 B- 0 9 1 4 3 3 B- 1 0 1 4 3 3 B- 1 1 1 4 3 3 B- 1 2 1 4 3 3 B- 1 3 1 4 3 3 B- 1 4 1 4 3 3 B- 1 5 1 4 3 3 B- 1 6 1 4 3 3 B- 1 7 1 4 3 3 B- 1 8
3 4 0 4- 3 6 0 3 4 0 4- 3 6 1 3 4 0 4- 3 6 2 3 4 0 4- 3 6 3 3 4 0 4- 3 6 5 3 4 0 4- 3 6 6 3 4 0 4- 3 6 7 3 4 0 4- 3 6 8 3 4 0 4- 3 6 9 3 4 0 4- 3 7 0 3 4 0 4- 3 7 1 3 4 0 4- 3 7 2 3 4 0 4- 3 7 3 3 4 0 4- 3 7 4 3 4 0 4- 3 7 5 3 4 0 4- 3 7 6 3 4 0 4- 3 7 7
0. 2 8 k g
Ø D x S a m e JI S i n c h or m m W 3/ 8’’, U N C 3/ 8’’ W 7/ 1 6’’, U N C 7/ 1 6’’, P T 1/ 8’’, P S 1/ 8’’, P F 1/ 8’’ W 1/ 2’’ M 1 5, W 9/ 1 6’’, U N C 9/ 1 6’’ P S 1/ 4’’, P F 1/ 4’’ W 5/ 8’’ W 3/ 4’’, P T 3/ 8’’, P S 3/ 8’’, P F 3/ 8’’, U N C 3/ 4’’ W 7/ 8’’ U N C 7/ 8’’ P S 1/ 2’’, P F 1/ 2’’ 1P C
Ta p S h a n k Ø D 1 0. 5 8 11 9 12 9 1 2. 5 10 14 11 15 12 17 13 18 14 19 15 20 15 21 17 22 17 22 18 24 19 25 20 26 21 28 22
0. 0 8 k g
0. 8 k g
Ø D x S a m e JI S i n c h or m m W 9/ 1 6’’, U N C 9/ 1 6’’
W 3/ 4’’, U N C 3/ 4’’, P T 3/ 8’’, P S 3/ 8’’, P F 3/ 8’’ W 7/ 8’’, U N C 7/ 8’’ P F 5/ 8’’ W 1’’, U N C 1’’ P T 3/ 4’’, P S 3/ 4’’, P F 3/ 4’’ W 1- 1/ 4’’, P F 7/ 8’’, U N C 1- 1/ 4’’ W 1- 3/ 8’’, P T 1’’, P S 1’’, P F 1’’, U N C 1- 3/ 8’’ P S 1- 1/ 8’’, P F 1- 1/ 8’’
T O O LI N G S Y S T E M
C128
T A P PI N G C H U C K S
Q UI C K C H A N G E T A P C O L L E T S
T a p S h a n k Di m e n si o n s I N T. S T D
F or T a p pi n g C h u c k
JI S S T A N D A R D M E T RI C T H RE A D M3 M 4 M 4. 5 M 5 M 5. 5 M6
I N C H T H RE A D W 1/ 8 W 1/ 4 W 5/ 1 6
M8 M7 M10 M9 M 11 M12
W 3/ 8 W 7/ 1 6 W 1/ 2 W 9/ 1 6 W 5/ 8
M14 M15 M16 M17 M18 M20 M22 M24 M25 M27 M26 M28
W 3/ 4 W 7/ 8 W1 W 1- 1/ 8
M30 M32 M33 M35 M34 M36 M38 M39 M40 M42 M45 M48
F O R TAP T hr e a d W 1/ 8 W 3/ 1 6 W 1/ 4 W 5/ 1 6 W 3/ 8 W 7/ 1 6 W 1/ 2 W 5/ 8 W 3/ 4 W 7/ 8 W 1
W 1- 1/ 4 W 1- 3/ 8 W 1- 1/ 2 W 1- 5/ 8 W 1- 3/ 4 W 1- 7/ 8
Ød 4 5. 5 6 6. 1 7 8 9 12 14 17 20
JI S 3. 2 4. 5 4. 5 5 5. 5 6 7 9 11 13 15
Ød
IS O
Ød 4 5 5. 5 6 6. 1 6. 2 7 8 8. 5 9 1 0. 5 12 1 2. 5 13 14 15 17 19 20 21 22 23 24 25 26 28 30 32 35 38
DI N 3 7 1 Ød
JI S S T A N D A R D PI P E T H R E A D F or T a p St yl e PT 1/ 8 1/ 4 3/ 8 1/ 2
PS 1/ 8 1/ 4 3/ 8 1/ 2
3/ 4
3/ 4
1
1 1 - 1/ 8 1 - 1/ 4 1 - 3/ 8 1 - 1/ 2
1 - 1/ 4 1 - 3/ 8 1 - 1/ 2
C129
PF 1/ 8 1/ 4 3/ 8 1/ 2 5/ 8 3/ 4 7/ 8 1 1 - 1/ 8 1 - 1/ 4 1 - 3/ 8 1 - 1/ 2
T O O LI N G S Y S T E M
3. 2 4 4. 5 4. 5 5 5 5. 5 6 6. 5 7 8 9 10 10 11 12 13 15 15 17 17 17 19 19 21 21 23 26 26 29
DI N 3 7 6 Ød
T a p pi n g C h u c k T a p Si z e Ød 8 6 11 9 14 11 18 14 19 15 23 17 24 19 26 21 28 21 32 26 35 26 38 29
F O R TAP T hr e a d M3 M4 M5 M6 M8 M10 M12 M14 M16 M18 M20 M22 M24 M27 M30 P T 1/ 8 P T 1/ 4 P T 3/ 8 P T 1/ 2 P T 5/ 8 P T 3/ 4
Ød 4 5 5. 5 6 6. 2 7 8. 5 1 0. 5 1 2. 5 14 15 17 19 20 23 8 11 14 18 19 23
JI S
DI N S T A N D A R D
3. 2 4 4. 5 4. 5 5 5. 5 6. 5 8 10 11 12 13 15 15 17 6 9 11 14 15 17
IS O Ød 3. 1 5 2. 5 4 3. 1 5 5 4 6. 3 5 8 6. 3 10 8 9 7. 1 1 1. 2 9 1 2. 5 10 14 1 1. 2 14 1 1. 2 16 1 2. 5 18 14 20 16 20 16
F O R TAP T hr e a d M 1, M 1. 1, M 1. 2, M 1. 4, M 1. 6, M 1. 8 M 2, M 2. 2, M 2. 5 M3 M 3. 5 M4 M 5, M 6 M8 M8 M10 M10 M 12 M14 M16 M18 M20 M 2 2, M 2 4 M27 M30
DI N 3 7 1 Ød 3. 5 2. 7 4. 5 3. 4 6 4. 9 6 4. 9 8 6. 2 10 8
DI N 3 7 1 Ød 2. 5 2. 1 2. 8 2. 1 3. 5 2. 7 4 3 4. 5 3. 4 6 4. 9 8 6. 2 10
8
DI N 3 5 2 Ød 2. 5 2. 1 2. 8 2. 1 3. 5 2. 7 4 3 4. 5 3. 4 6 4. 9 6
4. 9
7 9 11 12 14 16 18 20 22
5. 5 7 9 9 11 12 1 4. 5 16 18
D RI L L H O L E SI Z E F O R T A P T H R E A D TAP T H RE A D M1 M 1. 1 M 1. 2 M 1. 4 M 1. 6 M 1. 8 M2 M 2. 2 M 2. 5 M3 M 3. 5 M4 M 4. 5 M5 M6 M7 M8 M9 M10 M 11 M12 M14 M16 M18 M20 M22 M24 M27 M30 M33 M36
PI T C H( P) 0. 2 5 0. 2 5 0. 2 5 0. 3 0. 3 5 0. 3 5 0. 4 0. 4 5 0. 4 5 0. 5 0. 6 0. 7 0. 7 5 0. 8 1 1 1. 2 5 1. 2 5 1. 5 1. 5 1. 7 5 2 2 2. 5 2. 5 2. 5 3 3 3. 5 3. 5 4
DI N 3 7 6 Ød 2. 2 2. 8 2. 1 3. 5 2. 7 4. 5 3. 4 6 4. 9 7 5. 5 9 7 11 9 12 9 14 11 16 12 18 1 4. 5 18 1 4. 5 20 16 22 18
DI N 3 7 6 Ød 2. 2
-
2. 8
2. 1
6 6 7 7 9 11 12 14 16 18 20 22
4. 9 4. 9 5. 5 5. 5 7 9 9 11 12 1 4. 5 16 18
D RI L L H O L E ( d m m) 0. 7 5 0. 8 5 0. 9 5 1. 1 1. 2 5 1. 4 5 1. 6 1. 7 5 2. 0 5 2. 5 2. 9 3. 3 3. 7 5 4. 2 5 6 6. 7 5 7. 7 5 8. 5 9. 5 1 0. 2 12 14 1 5. 5 1 7. 5 1 9. 5 21 24 2 6. 5 2 9. 5 32
Mi ni T y p e Ar m T y p e Air T a p pi n g U nit
HI G H T O R Q U E HI G H E F FI C E N C Y E A S Y O P E R A TI O N
A C C E S S O RI E S
Air t a p pi n g s pi n dl e P ar all el ar m & Air c o m bi n ati o n T a bl e m o u nti n g c ol u m n C h o o s e a n y si x s af et y cl ut c h t a p pi n g a d a pt er s R a di al ji b Air pr e s s ur e: 6 ~ 8 k g s/ c m 2 V A T- 0 8/ 1 2 s eri e s r e q uir e: 5 H P c o m pr e s s or V A T- 1 6/ 2 0 s eri e s r e q uir e: 1 0 H P c o m pr e s s or
V A T- 7 0 8
V A T- 7 1 2
V A T- 7 1 6
V A T- 7 2 0
V A T- 7 2 2
V A T- 7 2 4
M3~ M8
M5~ M12
M8~ M16
M10~ M20
M12~ M22
M14~ M24
T C- 3 1 2
T C- 3 1 2
T C- 8 2 0
T C- 8 2 0
T C- 8 2 0
T C- 8 2 0
S p e e d (r p m)
6 3 0/ 7 0 0
3 5 0/ 4 0 0
250
200
200
100
W ei g ht ( k g s)
1 3. 2
1 3. 1
1 7. 3
2 0. 6
2 0. 6
2 2. 1
3 4 0 4- 4 1 3 A
3 4 0 4- 4 1 3 B
O R D E R N O. F or T a p
B a s e n ot i n cl u d e d
W or k R a n g e C O D E N O.
R max 700 m m 3 4 0 4- 4 1 0
3 4 0 4- 4 1 1
3 4 0 4- 4 1 2
3 4 0 4- 4 1 3
S m all Ar m T y p e Air T a p pi n g U nit
HI G H T O R Q U E HI G H E F FI C E N C Y E A S Y O P E R A TI O N
B a s e n ot i n cl u d e d
A C C E S S O RI E S
Air t a p pi n g s pi n dl e P ar all el ar m & Air c o m bi n ati o n T a bl e m o u nti n g c ol u m n C h o o s e a n y si x s af et y cl ut c h t a p pi n g a d a pt er s R a di al ji b, i n cr e a s e s ar m r e a c h b y 5 0 0 m m
O R D E R N O. F or T a p S p e e d (r p m) W ei g ht ( k g s)
V A T- 1 4 0 8 M3~ M8 T C- 3 1 2 700 1 8. 2
V A T- 1 4 1 2 M5~ M12 T C- 3 1 2 400 1 8. 2
3 4 0 4- 4 1 5
3 4 0 4- 4 1 6
W or k R a n g e C O D E N O.
Wit h o ut st a n d pl at e Air pr e s s ur e: 6 ~ 8 k g s / c m 2 V A T- 0 8/ 1 2 s eri e s r e q uir e: 5 H P c o m pr e s s or V A T- 1 6/ 2 0 s eri e s r e q uir e: 1 0 H P c o m pr e s s or
G U A R N T E E D F O R 3 M O N T H S. M U STI N STALL O N A STA BL E/ H A R D S U RF A C E F O R P A R A L L E L W O R K. V A T- 1 4 1 6 V A T- 1 4 2 0 M8~ M16 M10~ M20 T C- 8 2 0 T C- 8 2 0 250 200 2 4. 6 2 5. 6 R max 1400 m m R mi n 2 0 0 m m 3 4 0 4- 4 1 7 3 4 0 4- 4 1 8
V A T- 1 4 2 2 M12~ M22 T C- 8 2 0 200 2 5. 6
V A T- 1 4 2 4 M14~ M24 T C- 8 2 0 100 2 7. 1
3 4 0 4- 4 1 8 A
3 4 0 4- 4 1 8 B
V A T- 1 4 2 4 c a n b e r e pl a c e d b y V A T- 1 6 2 4 T O O LI N G S Y S T E M C130
AI R T A P PI N G U NI T
G U A R N T E E D F O R 3 M O N T H S. M U STI N STALL O N A STA BL E/ H A R D S U R F A C E F O R P A R A L L E L W O R K.
Ar m T y p e Air T a p pi n g U nit
HI G H T O R Q U E HI G H E F FI C E N C Y E A S Y O P E R A TI O N
W ORK RAN GE 1 6 0 0 X 5 0 0 m/ m R M A X. X MI N. T o s ol v e all t a p pi n g pr o bl e m s
R a pi d p o sit o ni n g a n d hi g h m a c hi ni n g s p e e d i n cr e a s e pr o d u cti vit y. L o w er t a p d a m a g e r at e, hi g h t hr e a d a c c ur a c y. T a p s h all n e v er br e a k f or t a p pi n g t hr o u g h- h ol e or bli n d- h ol e. T a p pi n g f or h e a vi er w or k pi e c e r e q uir e s n eit h er p o siti o ni n g e q ui p m e nt s n or m o v e m e nt or l ar g e w or k ar e a. L o w er m a c hi ni n g c o st t h a n t h at b y C N C m a g hi n e, drilli n g m a c hi n e or m a n u al t a p pi n g o p er ati o n. Drilli n g t o m a x: 6 m m di a m et er E a s y o p er ati o n, n o e x p eri e n c e or str e n gt h r e q uir e d. Wit h o ut st a n d pl at e. Air pr e s s ur e: 6 ~ 8 k g s/ c m² V A T- 0 8/ 1 2 s eri e s r e q uir e: 5 H P c o m pr e s s or V A T- 1 6/ 2 0 s eri e s r e q uir e: 1 0 H P c o m pr e s s or G U A R N T E E D F O R 3 M O N T H S. M U STI N STALL O N A STA BL E/ H A R D S U RF A C E F O R P A R A L L E L W O R K.
B a s e n ot i n cl u d e d
V A T- 1 6 0 8/ 1 6 1 2/ 1 6 1 6 V A T- 1 6 2 0/ 1 6 2 2/ 1 6 2 4
S u g g e st c oll et si z e f or st a n d ar d a c c e s
0 8 C O L L E T SI Z E T C 3 1 2- M 3, M 4, M 5, M 6* 2, M 8 1 2 C O L L E T SI Z E T C 3 1 2- M 5, M 6, M 8* 2, M 1 0, M 1 2 1 6 C O L L E T SI Z E T C 3 1 2/ T C 8 2 0 T C 3 1 2- M 8, M 1 0 T C 8 2 0- M 1 0, M 1 2, M 1 4, M 1 6 2 0 C O L L E T SI Z E T C 8 2 0- M 1 0, M 1 2, M 1 4, M 1 6, M 1 8, M 2 0 2 2 C O L L E T SI Z E T C 8 2 0- M 1 2, M 1 4, M 1 6, M 1 8, M 2 0, M 2 2 2 4 C O L L E T SI Z E T C 8 2 0- M 1 4, M 1 6, M 1 8, M 2 0, M 2 2, M 2 4
V A TV A TV A TV A TV A TV A T-
JI S & DI N 3 7 6 M o st P o p ul ar e d V A T- 1 6 0 8
V A T- 1 6 1 2
V A T- 1 6 1 6
V A T- 1 6 2 0
V A T- 1 6 2 2
V A T- 1 6 2 4
M3~ M8
M5~ M12
M8~ M16
M10~ M20
M12~ M22
M14~ M24
T C- 3 1 2
T C- 3 1 2
T C- 8 2 0
T C- 8 2 0
T C- 8 2 0
T C- 8 2 0
S p e e d (r p m)
700
400
250
200
200
100
W ei g ht ( k g s)
1 6. 9
17
2 1. 1
2 4. 6
2 4. 6
2 6. 1 0
3 4 0 4- 4 2 8 A
3 4 0 4- 4 2 8 B
O R D E R N O. F or T a p
R max 1600 m m
W or k R a n g e
R mi n 5 0 0 m m
C O D E N O.
3 4 0 4- 4 2 0
3 4 0 4- 4 2 1
3 4 0 4- 4 2 2
3 4 0 4- 4 2 8
V A T- 1 6 0 8, 1 6 1 2, 1 6 1 6, 1 6 2 0, 1 6 2 2, 1 6 2 4 S T A N D A R D A C C E S S O RI E S Air t a p pi n g s pi n dl e P ar all el ar m T a bl e
C131
m o u nti n g c ol u m n
T O O LI N G S Y S T E M
Air c o m bi n ati o n C h o o s e a n y si x s af et y cl ut c h t a p pi n g a d a pt er s
Air T a p pi n g U nit
S T A N D A R D A C C E S S O RI E S:
V A T- 1 9 0 8
V A T- 1 9 1 2
V A T- 1 9 1 6
V A T- 1 9 2 0
V A T- 1 9 2 2
V A T- 1 9 2 4
M3~ M8
M5~ M12
M8~ M16
M10~ M20
M12~ M22
M14~ M24
T C- 3 1 2
T C- 3 1 2
T C- 8 2 0
T C- 8 2 0
T C- 8 2 0
T C- 8 2 0
S p e e d (r p m)
700
400
250
1 8 0/ 2 0 0
1 8 5/ 2 0 5
9 0/ 1 0 0
W ei g ht ( k g s)
1 9. 7
2 3. 9
2 3. 5
26
28
28
3 4 0 4- 4 3 1
3 4 0 4- 4 3 1 A
O R D E R N O. F or T a p
R max 1900 m m
W or k R a n g e
B a s e n ot i n cl u d e d
C O D E N O.
R mi n 2 0 0 m m 3 4 0 4- 4 2 5
3 4 0 4- 4 2 6
3 4 0 4- 4 2 7
3 4 0 4- 4 3 0
V A T- 1 9 2 4 c a n b e r e pl a c e d b y V A T- 1 6 2 4 G U A R N T E E D F O R 3 M O N T H S.
Air T a p pi n g S pi n dl e
r e q uir e m e nt. Li g ht a n d h a n d y m ai n s h aft d e si g n, e a s y o p er ati o n.
T h e r e q uir e d pr e s s ur e i s 6. 3 k g/ c m 2 = 9 0 P SI. S P 0 8 & S P 1 2 R e q uir e d 5 H P c o m pr e s s or a n d m or e. S P 1 6 & S P 2 0 R e q uir e d 1 0 H P c o m pr e s s or a n d m or e. ( m u st k e e p t h e air pr e s s ur e at 6. 3 k g/ c m 2 ) G U A R N T E E D F O R 3 M O N T H S.
O R DE R N O. V A T- S P 0 8 V A T- S P 1 2 V A T- S P 1 6 V A T- S P 2 0 V A T- S P 2 2 V A T- S P 2 4 O R DE R N O. V A T- S P 0 8 V A T- S P 1 2 V A T- S P 1 6 V A T- S P 2 0 V A T- S P 2 2 V A T- S P 2 4
T A P PI N G C A P A CI T Y M 3- M 8 M 5- M 1 2 M 8- M 1 6 M 1 0- M 2 0 M 1 2- M 2 2 M 1 4- M 2 4
SPEE D (r p m) 6 3 0/ 7 0 0 3 5 0/ 4 0 0 2 3 0/ 2 5 0 1 8 0/ 2 0 0 1 8 5/ 2 0 5 9 0/ 1 0 0
M O U N TI N G DI A. ø 3 8. 5 ( 1 1 /2 ) ø 3 8. 5 ( 1 1 /2 ) ø 6 1. 3 ( 2 1 3 /3 2 ) ø 6 1. 3 ( 2 1 3 /3 2 ) ø 6 1. 3 ( 2 1 3 /3 2 ) ø 6 1. 3 ( 2 1 3 /3 2 )
W EI G H T ( k g s) 1. 5 1. 5 3. 9 3. 9 3. 9 4. 3
C O D E N O. 3 4 0 4- 4 3 2 3 4 0 4- 4 3 3 3 4 0 4- 4 3 4 3 4 0 4- 4 3 5 3 4 0 4- 4 3 5 A 3 4 0 4- 4 3 5 B
A
B
C
D
d
L
C O D E N O.
19 19 31 31 31 31
30 30 48 48 48 48
22 22 27 27 27 27
46 46 65 65 65 65
32 32 50 50 50 50
263 263 360 360 360 395
3 4 0 4- 4 3 2 3 4 0 4- 4 3 3 3 4 0 4- 4 3 4 3 4 0 4- 4 3 5 3 4 0 4- 4 3 5 A 3 4 0 4- 4 3 5 B
P ar all el Ar m F or Air T a p pi n g U nit 14 19
16
Ty p e
Ty p e Ty p e
PA R ALLEL A R M O R D E R N O.
W EI G H T S P- 0 8
F O R T H E AI R T A P PI N G U NI T W EI G H T W EI G H T C O D E N O. S P- 1 2 S P- 1 6
V A T- A R M 7 0 0- S P 0 8 , 1 2 , 1 6
12kgs
1 2 kgs
1 4 kgs
3 4 0 4- 4 3 6
V A T- A R M 1 4 0 0 x 2 0 0- S P 0 8 , 1 2 , 1 6
17kgs
1 7 kgs
1 8 kgs
3 4 0 4- 4 3 7
V A T- A R M 1 6 0 0 x 5 0 0- S P 0 8 , 1 2 , 1 6
17kgs
1 7 kgs
1 8 kgs
3 4 0 4- 4 3 8
V A T- A R M 1 9 0 0 x 2 0 0- S P 0 8 , 1 2 , 1 6
19kgs
1 9 kgs
2 0 kgs
3 4 0 4- 4 3 9
M U S T I N S T A L L O N A S T A B L E / H A R D S U R F A C E F O R P A R A L L E W O R K. T O O LI N G S Y S T E M
C132
AI R T A P PI N G U NI T
Air t a p pi n g s pi n dl e P ar all el ar m & Air c o m bi n ati o n T a bl e m o u nti n g c ol u m n C h o o s e a n y si x s af et y cl ut c h t a pi n g a d a pt er s R a di al ji b, i n cr e a s e s ar m r e a c h b y 500 m m Air pr e s s ur e: 6 ~ 8 k g s / c m 2 V A T- 0 8/ 1 2 s e ri e s r e q ui r e: 5 H P c o m pr e s s or V A T- 1 6/ 2 0 s eri e s r e q uir e: 1 0 H P c o m pr e s s or
A dj u st a bl e A n gl e H e a d F or Air T a p pi n g U nit
O R DE R N O.
O R DE R N O.
F O R V A T- T Y P E V A T- 1 4 0 8 V A T- 1 6 0 8 V A T- 1 9 0 8 V A T- 1 4 1 2 V A T- 1 9 1 2
V A T- 1 6 1 2
F O R V A T- T Y P E V A T- 1 4 1 6 V A T- 1 6 1 6 V A T- 1 9 1 6
W EI G H T ( k g)
C O DE N O.
1. 5
3 4 0 4- 4 4 2
W EI G H T ( k g)
C O DE N O.
V A T- 1 9 2 0
1. 5
3 4 0 4- 4 4 3
1. 1
3 4 0 4- 4 4 0
V A T- 1 9 2 2
1. 5
3 4 0 4- 4 4 4
1. 1
3 4 0 4- 4 4 1
V A T- 1 9 2 4
1. 5
3 4 0 4- 4 4 6
M a g n eti c B a s e F or Air T a p pi n g U nit
P O R T A B L E & M O V E A B L E AI R T A P PI N G A R M
S p e ci al A c c e s s or y f or V A T- S eri e s
M U S T I N S T A L L O N A S T A B L E / H A R D S U R F A C E F O R P A R A L L E L W O R K.
O R DE R N O.
M A G N E TI C B A S E
M a g n eti c B a s e H ol di n g Di m e n si o n P o w er L X W X H( m m)
V L M- 3 0 0 A
300kg
155x90x93
V L M- 6 0 0 A
600kg
2 2 4x 11 5x 1 2 0
Mi st C o ol a nt S y st e m F or Air T a p pi n g U nit
O R D E R N O. V A C- 0 8 C O D E N O. 3 4 0 4- 4 5 2 Wit h o ut Oil
E N L A R G E T H E T A P P E R LI F E 5 0 % C133
T O O LI N G S Y S T E M
s uit F or V A T- T y p e V A T- 7 0 8, 7 1 2, 7 1 6 V A T- 1 4 0 8, 1 4 1 2, 1 4 1 6 V A T- 1 6 0 8, 1 6 1 2, 1 6 1 6 V A T- 1 9 0 8, 1 9 1 2, 1 9 1 6 V A T- 7 2 0, 7 2 2, 7 2 4 V A T- 1 4 2 0, 1 4 2 2, 1 4 2 4 V A T- 1 6 2 0, 1 6 2 2, 1 6 2 4 V A T- 1 9 2 0, 1 9 2 2, 1 9 2 4
W ei g ht ( k g s)
C O DE N O.
9. 4
3 4 0 4- 4 5 0
2 1. 9
3 4 0 4- 4 5 1
C oll et R a c k F or Air T a p pi n g U nit
O R D E R N O. V C R- 0 8 C O D E N O. 3 4 0 4- 4 5 3 C OLL ET RA CK
P ort a bl e Air T a p p er
JI S S T A N D A R D T A P
V A T- 3 0 8 P
AI R T A P PI N G U NI T
R e v er s e
V A T- 6 1 2 P Air c o n s u m pti o n i s 0. 2 5 l /mi n . R e q uir e d i n st all air c o m bi n ati o n. L u br u c at e air i nl et c o n n e ct or wit h 3 c. c. oil. Al w a y s b ef or e a n d aft er u si n g.
Li g ht w ei g ht. S uitf ul bi g w or k pi e c e. P o w erf ul. E a s y o p er ati o n. R e q uir e d air pr e s s ur e 6 k g/ c m 2
SET TYPE T A P PI N G O R D E R N O. C A P A CI T Y
C O L L E T W O R KI N G SET SPEED ( p c s/ s et) ( Y. P. M.)
S PI N D L E H OSE OVE R ALL S P E E D C O N NE CT L E N GT H ( R. P. M.) SI Z E ( m m)
N. W. ( k g s)
C UFT
C O D E N O.
V A T- 3 0 8 P
M3~ M8
5 pcs
350
8500
P T 1/ 4”
158 m m
0. 9
0. 1 3
3 4 0 4- 4 7 1
V A T- 6 1 2 P
M6~ M12
4 pcs
280
8000
P T 1/ 4”
168 m m
1. 1
0. 1 3
3 4 0 4- 4 7 2
pcs/ s et
N. W. ( k g s)
C O D E N O.
5 p c s/ s et
0. 2
3 4 0 4- 4 8 1
4 p c s/ s et
0. 3
3 4 0 4- 4 8 2
A C C E S S O RI E S C O L L E T SI Z E O R DE R N O.
Ø D x
V A T- 3 0 8 P C
M3( M4( M5(
V A T- 6 1 2 P C
M 6 ( Ø 6 x 4. 5 ) M 8 ( Ø 6. 2 x 5 )
Ø Ø Ø
p c s / s et JI S S T D. F O R T A P SI Z E
4 x 3. 2 ) x 1 p c s 5 x 4) x 1pcs 5. 5 x 4. 5 ) x 1 p c s x 1pcs x 1pcs
M6( M8(
Ø Ø
6 x 4. 5 ) 6. 2 x 5 )
x 1pcs x 1pcs
M 1 0 ( Ø 7 x 5. 5 ) x 1 p c s M 1 2 ( Ø 8. 5 x 6. 5 ) x 1 p c s
N ot e F or V A T- S eri e s / V A G- S eri e s
C A U TI O N S
: 1. AI R C O M P R E S S O R P R E S S U R E 6 ~ 8 k g / c m 2 , D R Y AI R. 2. Al w a y s c h e c k oil l e v el of t h e 3 i n 1 air c o m bi n ati o n. 3. T a p pi n g A R M h a s t o b e m o u nt e d o n t h e s a m e h ar d e n e d w or k pl at e. 4. S E T T H E W O R K PI E C E S U R F A C E T O B E P A R A L L E L E D WI T H T A P PI N G A R M S T A N D.
5. Al w a y s s u p pl y c utti n g oil w hil e t a p pi n g. 6. W or k e v er y 1 h o ur r e st 1 0 t o 1 5 mi n ut e s, 8 h o ur s p er d a y. E v er y 3 m o ut h s n e e d s er vi c e. 7. Aft er u s e, dr o p s o m e # 6 0 oil / l u bri c ati o n i nt o air i nl et. Air h o s e & c o n n e ct or m u st b e cl e a n e d b ef or e u s e!
T O O LI N G S Y S T E M
C134
D el u x e T y p e T o ol S etti n g St a n d
T hi s t o ol s etti n g st a n d i s o n e ki n d of s u b si di z e t o ol f or
a n d d o e s n’t eff e ct t h e pr e ci si o n of m a c hi n e’ s s pi n dl e. It’ s b e st f or u si n g o n h ori z o nt al or v erti c al li n e s, si m pl e & q ui c k o p er ati o n s. A m ulti-f u n cti o n t o ol, it i s c h a n g e a bl e, h a s t w o ki n d s of c o ul d b e u s e d a s t w o s et s m a c hi n e s. A d diti o n al s p e ci al a c c e s s ori e s t o m a k e y o ur o p er ati n g m or e c o n v e ni e nt. C A T & S K s h ar e s a m e m o d el.
V T D- 1
S H A N K TAPE RS T O OL A D APTE R P OST H O L DI N G B T- # 4 0 x 1 B T- # 4 0 x 2
V T D- 2
B T- # 5 0 x 1
B T- # 5 0 x 2
22
3 4 0 5- 0 0 2
V T D- 3
B T- # 5 0 x 1
B T- # 5 0 x 1 B T- # 4 0 x 1
24
3 4 0 5- 0 0 3
V T D- 4
B T- # 4 0 x 1
B T- # 5 0 x 1 B T- # 4 0 x 1
24
3 4 0 5- 0 0 4
V T D- 5
S K- 4 0 x 1
S K- 4 0 x 2
26
3 4 0 5- 0 0 5
V T D- 6
S K- 5 0 x 1
S K- 5 0 x 2
24
3 4 0 5- 0 0 6
V T D- 7
S K- 5 0 x 1
S K- 5 0 x 1 S K- 4 0 x 1
25
3 4 0 5- 0 0 7
V T D- 8
S K- 4 0 x 1
S K- 5 0 x 1 S K- 4 0 x 1
25
3 4 0 5- 0 0 8
V T D- 9
B T- 3 0 x 1
B T- 3 0 x 2
23
3 4 0 5- 0 0 9
V T D- 1 0
S K- 3 0 x 1
S K- 3 0 x 2
23
3 4 0 5- 0 0 9 A
W EI G H T ( k g) 1 1. 9
C O D E N O.
O R DE R N O.
Si m pl e T y p e T o ol S etti n g St a n d
T hi s t o ol s etti n g st a n d i s o n e ki n d of s u b si di z e t o ol f or
It i s s af e, a n d d o e s n’t eff e ct t h e pr e ci si o n of m a c hi n e’ s s pi n dl e. a b o v e a n d h ol d t h e p ull st u d s o n t h e b el o w of it. T hi s i s t h e e x c ell e nt h el pi n g t o ol s f or si m pl e, r a pi d a n d s af e.
C135
T O O LI N G S Y S T E M
O R DE R N O. V T S- B T- 3 0
S H A N K TAPE RS
V T S- B T- 4 0
40
V T S- B T- 5 0
50
V T S- S K- 3 0
30
V T S- S K- 4 0
40
V T S- S K- 5 0
50
30
ST D BT IS O NT C AT DI N 69871 A
W EI G H T ( k g s)
C O DE N O.
2 2. 4
3 4 0 5- 0 0 1
3 4 0 5- 0 1 0
1 2. 4
3 4 0 5- 0 1 1
1 1. 9
3 4 0 5- 0 1 2
1 1. 9
3 4 0 5- 0 1 3
1 2. 4
3 4 0 5- 0 1 4
1 1. 9
3 4 0 5- 0 1 5
O R D E R N O. B
C
D
ST D
V T G- B T 3 0
O R D E R N O.
A
E
F
G
H
I
J
K
L
C O D E N O.
V T G- B T 3 0
205 99 127 124 15
10
16
71
15
91
9
78
3 4 0 5- 0 2 0
V T G- B T 4 0
205 99 127 124 16
9
14
71
15
91
9
78
3 4 0 5- 0 2 1
V T G- S K 4 0
V T G- B T 5 0
282 152 203 162 25
16
2 2 1 0 8 2 5 11 5
9
11 5
3 4 0 5- 0 2 2
V T G- S K 5 0
IS O BT
V T G- B T 4 0 V T G- B T 5 0
W EI G H T ( K G S) 4. 1
C O D E N O.
4. 2
3 4 0 5- 0 2 1
1 1. 8
3 4 0 5- 0 2 2
4
3 4 0 5- 0 2 4
1 2. 3
3 4 0 5- 0 2 5
C AT S K DI N 6 9 8 7 1 A
T o ol H ol d er L o c ki n g D e vi c e
3 4 0 5- 0 2 0
TI L TI N G T Y P E
E x a m pl e S h a n k N ot I n cl u d e d O R D E R N O. V T L- B T 3 0 V T L- B T 4 0 V T L- B T 5 0 V T L- S K 3 0 V T L- S K 4 0 V T L- S K 5 0 V T L- N T 3 0 V T L- N T 4 0 V T L- N T 5 0
ST D IS O BT DI N 6 9 8 7 1 A NT
W EI G H T ( K G S) 4. 2 4. 3 9. 8 4 4 8 4. 2 4. 3 9. 8
C O D E N O. 3 4 0 5- 0 3 0 3 4 0 5- 0 3 1 3 4 0 5- 0 3 2 3 4 0 5- 0 3 3 3 4 0 5- 0 3 4 3 4 0 5- 0 3 5 3 4 0 5- 0 3 6 3 4 0 5- 0 3 7 3 4 0 5- 0 3 8
O R D E R N O.
A
B
C
D
E
F
C O D E N O.
V T L- B T 3 0
11 6 9 1 1 2 6 1 6
15
14
3 4 0 5- 0 3 0
V T L- B T 4 0
11 7 9 1 1 3 6 1 6
15
14
3 4 0 5- 0 3 1
V T L- B T 5 0
149 121 189 25
15
15
3 4 0 5- 0 3 2
T O O LI N G S Y S T E M
C136
T O O L H O L D E R L O C KI N G
T o ol H ol d er L o c ki n g D e vi c e
T o ol H ol d er L o c ki n g Fi xt ur e s
HS K TYPE
O R D E R N O. V T L- H S K 4 0 V T L- H S K 5 0 V T L- H S K 6 3
ST D
W EI G H T ( K G S) 2. 5 3. 5 4. 5
DI N 6 9 8 9 3 HSK
C O D E N O. 3 4 0 5- 0 4 6 3 4 0 5- 0 4 7 3 4 0 5- 0 4 8
R o u n d T o ol L o c ki n g D e vi c e
F e at ur e: Li g ht w ei g ht & c o m p a ct d e si g h Q ui c k s et u p ti m e F or t o ol h ol d er l o c ki n g S p a c e s a vi n g
E x a m pl e
O R D E R N O. V T O- B T 3 0 V T O- B T 4 0 V T O- B T 5 0
S H A N K TAPE R 30 40 50
Ø D Ø d 3 H O L E P. C. D. 90 50 70 105 65 85 135 95 11 5
H A ø14x9x ø9 108 ø14x9x ø9 130 ø14x9x ø9 188
B 20 20 24
C 48 50 82
F a st T o ol S etti n g St a n d
D 30 50 70
E 10 10 12
F 16 16 2 5. 4
W EI G H T ( k g) 1. 2 2. 2 5
C O D E N O. 3 4 0 5- 1 9 0 3 4 0 5- 1 9 1 3 4 0 5- 1 9 2
HS K TYPE
L E V E R F O R C L A M PI N G & U N C L A N PI N G S E T TI N G I N SI D E F O R C L A M PI N G
M O V E A B L E K E Y F O R F L E XI B L E P U R P O S E F L E XI B L E
E x a m pl e O R D E R N O. V T S- H S K 6 3 V T S- H S K 1 0 0
C137
T O O LI N G S Y S T E M
ST D DI N 6 9 8 9 3 H S K
W EI G H T ( k g) 1 0. 5 1 1. 5
C O D E N O. 3 4 0 5- 1 9 3 3 4 0 5- 1 9 4
S pi n dl e T a p er Wi p er E a sil y a n d q ui c kl y f or cl e a ni n g s pi n dl e h ol e. Pl a sti c b o d y, t h e t a p er wi p er i s m a d e of s p e ci al c ott o n m at eri al, will n ot d a m a g e t h e s pi n dl e. T h e B T & DI N of t a p er ar e s a m e T A P E R T O T A L W EI G H T N O. LE N GT H ( k g)
C O DE N O.
V T W- 3 0
#30
169 m m
0. 0 7
3 4 0 5- 0 6 0
V T W- 4 0
#40
187 m m
0. 0 8
3 4 0 5- 0 6 1
V T W- 5 0
#50
241 m m
0. 0 2
3 4 0 5- 0 6 2
E a sil y a n d q ui c kl y f or cl e a ni n g s pi n dl e h ol e. Pl a sti c b o d y, t h e t a p er wi p er i s m a d e of s p e ci al c ott o n m at eri al, will n ot d a m a g e t h e s pi n dl e. T h e B T & DI N of t a p er ar e s a m e R e pl a c e a bl e Wi p er. E a s y t o r e pl a c e n e w wi p er s. I n cl u d e d 2 s et s x di s p o s a bl e wi p er s E C O Fri e n dl y O R DE R TAPE R T OTAL W EI G H T N O. N O. LE N GT H ( k g) #30 162 m m 0. 0 8 V T W- 3 0 R #40 180 m m 0. 0 9 V T W- 4 0 R #50 230 m m 0. 1 8 V T W- 5 0 R
C O DE N O. 3 4 0 5- 0 6 5 3 4 0 5- 0 6 6 3 4 0 5- 0 6 7
O R DE R N O. V T W- 3 0 R- WI P E R V T W- 4 0 R- WI P E R V T W- 5 0 R- WI P E R
S pi n dl e T a p er Wi p er
WI T H R E P L A C E WI P E R
S pi n dl e T a p er Wi p er
C O N T AI N S SPA RE 20pcs/ box 20pcs/ box 25pcs/ box
W EI G H T ( k g) 0. 0 1 0. 0 2 0. 0 4
C O DE N O. 3 4 0 5- 5 3 0 3 4 0 5- 5 3 1 3 4 0 5- 5 3 2
W EI G H T ( k g)
C O D E N O.
O R D E R N O.
T A P E R N O.
T OTAL LE N GT H
V T W- 4 0 H
H S K40
147 m m
V T W- 5 0 H
H S K50
159 m m
0. 1
3 4 0 5- 0 7 1
V T W- 6 3 H
H S K63
167 m m
0. 1 2
3 4 0 5- 0 7 2
V T W- 1 0 0 H
H S K100
191 m m
3 4 0 5- 0 7 3
3 4 0 5- 0 7 4
H Ty p e
T O O LI N G S Y S T E M
C138
T O O LI N G C A R T
O R DE R N O.
T o oli n g R a c k St a n d V T T- 3 0
V T T- 3 1 C o m p a ct d e si g n Cl e ar St or a g e E a s y t o cl e a n P ort a bl e d e si g n L ar g e t o oli n g st or a g e V T T- 3 0 wit h R u b b er m at e Bi g si z e v ari et y
V T T- 3 0 FL AT TA BL E
R UBBE R
V T T- 3 0- 3 0
T O O LI N G C O DE S H E AT H N O. C A P A CI T Y B T- 3 0, DI N 6 9 8 7 1 A 1 6 p c s/ s et 3 4 0 5- 2 1 1
V T T- 3 0- 4 0
B T- 4 0, DI N 6 9 8 7 1 A 1 4 p c s/ s et
3 4 0 5- 2 1 2
V T T- 3 0- 5 0
B T- 5 0, DI N 6 9 8 7 1 A 1 0 p c s/ s et
3 4 0 5- 2 1 3
O R D E R N O.
Lx Wx H: 550x430x360 m m C A P A CI T Y V T T- 3 0 WI T H B T- 3 0 1 6 S H E A T H, 1 F L A T T A B L E B T- 4 0 1 4 S H E A T H, 1 F L A T T A B L E B T- 5 0 1 0 S H E A T H, 1 F L A T T A B L E H S K 6 3 1 2 S H E A T H, 1 F L A T T A B L E
Lx Wx H: 550x430x360 m m V T T- 3 1 WI T H B T- 3 0 2 4 S H E A T H B T- 4 0 2 1 S H E A T H B T- 5 0 1 5 S H E A T H H S K63 18 S H E AT H
ST D
V T T- 3 0- H S K 6 3
H S K63
1 2 p c s/ s et
3 4 0 5- 2 1 4
V T T- 3 1- 3 0
B T- 3 0, DI N 6 9 8 7 1 A 2 4 p c s/ s et
3 4 0 5- 2 1 5
V T T- 3 1- 4 0
B T- 4 0, DI N 6 9 8 7 1 A 2 1 p c s/ s et
3 4 0 5- 2 1 6
V T T- 3 1- 5 0
B T- 5 0, DI N 6 9 8 7 1 A 1 5 p c s/ s et
V T T- 3 1- H S K 6 3
H S K63
1 8 p c s/ s et
3 4 0 5- 2 1 7 3 4 0 5- 2 1 8
T o oli n g C art
º º
O V E R A L L SI Z E: 6 2 6 X 6 5 5 X 9 8 0 m m
O R D E R N O.
F O R ST D
T O O L L O C KI N G D E VI C E
V T T- 2 1- 3 0
V T T- 2 1- 5 0
B T- 3 0 DI N 6 9 8 7 1 A S K 3 0, C A T 3 0, I S O 3 0 B T- 4 0 DI N 6 9 8 7 1 A S K 4 0, C A T 4 0, I S O 4 0 B T- 5 0 DI N 6 9 8 7 1 A S K 5 0, C A T 5 0, I S O 5 0
B T- 3 0 DI N 6 9 8 7 1 A S K 3 0, C A T 3 0, I S O 3 0 B T- 4 0 DI N 6 9 8 7 1 A S K 4 0, C A T 4 0, I S O 4 0 B T- 5 0 DI N 6 9 8 7 1 A S K 5 0, C A T 5 0, I S O 5 0
V T T- 2 1- H S K 6 3
H S K63
H S K63
V T T- 2 1- 4 0
C139
T O O LI N G S Y S T E M
W EI G H T: 4 3 K G S
T O O LI N G S H E A T H C A P A CI T Y
C O D E N O.
3 2 P C S/ S E T
3 4 0 5- 0 8 0
2 8 P C S/ S E T
3 4 0 5- 0 8 1
2 0 P C S/ S E T
3 4 0 5- 0 8 2
2 4 P C S/ S E T
3 4 0 5- 0 8 3
T O O LI N G C A R T
T o oli n g C art
O R D E R N O. V T T- 1 1
O R D E R N O. V T T- 1 2
T O O LI N G S H E A T H T Y P E
T O O LI N G S H E A T H WI T H 1 D R A W E R S
O R D E R N O.
F O R ST D
T O O LI N G S H E AT H C A P A CI T Y
C O D E N O.
O R D E R N O.
F O R ST D
T O O LI N G S H E AT H C A P A CI T Y
C O D E N O.
V T T- 1 1- 3 0
B T- 3 0, S K 3 0, C A T 3 0, I S O 3 0 DI N 6 9 8 7 1 A
64 P C S/ S E T
3 4 0 5- 2 3 0
V T T- 1 2- 3 0
B T- 3 0, S K 3 0, C A T 3 0, I S O 3 0 DI N 6 9 8 7 1 A
48 P C S/ S E T
3 4 0 5- 2 4 0
V T T- 1 1- 4 0
B T- 4 0, S K 4 0, C A T 4 0, I S O 4 0 DI N 6 9 8 7 1 A
56 P C S/ S E T
3 4 0 5- 2 3 1
V T T- 1 2- 4 0
B T- 4 0, S K 4 0, C A T 4 0, I S O 4 0 DI N 6 9 8 7 1 A
42 P C S/ S E T
3 4 0 5- 2 4 1
V T T- 1 1- 5 0
B T- 5 0, S K 5 0, C A T 5 0, I S O 5 0 DI N 6 9 8 7 1 A
40 P C S/ S E T
3 4 0 5- 2 3 2
V T T- 1 2- 5 0
B T- 5 0, S K 5 0, C A T 5 0, I S O 5 0 DI N 6 9 8 7 1 A
30 P C S/ S E T
3 4 0 5- 2 4 2
V T T- 1 1- H S K 6 3
H S K63
48 P C S/ S E T
3 4 0 5- 2 3 3
V T T- 1 2- H S K 6 3
H S K63
36 P C S/ S E T
3 4 0 5- 2 4 3
O V E R A L L SI Z E: 6 2 6 X 9 6 0 X 1 0 0 0 M M, W EI G H T: 6 3 K G S
O V E R A L L SI Z E: 6 2 6 X 9 6 0 X 1 0 0 0 M M, W EI G H T: 6 5 K G S
T O O LI N G S Y S T E M
C140
T o oli n g Tr oll e y s C OL O R M AY VA RY
V T T- 2
P A C KI N G S E T/ 1 PA P E R B O X
T O O LI N G S H E AT H PL AT F O R M
O R D E R N O.: V T T- 2 W EI G H T: 5 1 k g s
B T- 3 0 DI N 6 9 8 7 1 A
T O O LI N G S H E AT H C A P A CI T Y 32 P C S/ S E T
3 4 0 5- 1 0 0
V T T- 2- 4 0
B T- 4 0 DI N 6 9 8 7 1 A
28 P C S/ S E T
3 4 0 5- 1 0 1
V T T- 2- 5 0
B T- 5 0 DI N 6 9 8 7 1 A
20 P C S/ S E T
3 4 0 5- 1 0 2
H S K63
24 P C S/ S E T
3 4 0 5- 1 0 3
C O DE N O. 3 4 0 5- 1 1 0
O R D E R N O.
ST D
V T T- 2- 3 0
V T T- 2- H S K 6 3
V T T- 5
P A C KI N G S E T/ 3 PA P E R B O X E S ( 2 D R A W E R S/ B O X E S)
C O DE N O.
O v er all Si z e : 1 0 0 2 x 6 5 0 x 8 1 0 m m Gr a y c ol or
O R D E R N O.: V T T- 5 W EI G H T: 6 4 k g s WI T H 2 D R A W E R S O R D E R N O.
ST D
V T T- 5- 3 0
B T- 3 0 DI N 6 9 8 7 1 A
T O O LI N G S H E AT H C A P A CI T Y 32 P C S/ S E T
V T T- 5- 4 0
B T- 4 0 DI N 6 9 8 7 1 A
28 P C S/ S E T
3 4 0 5- 1 1 1
V T T- 5- 5 0
B T- 5 0 DI N 6 9 8 7 1 A
20 P C S/ S E T
3 4 0 5- 1 1 2
H S K63
24 P C S/ S E T
3 4 0 5- 1 1 3
C O DE N O. 3 4 0 5- 1 0 5
V T T- 5- H S K 6 3
O v er all Si z e : 1 0 0 2 x 6 5 0 x 8 1 0 m m Gr a y c ol or
V T T- 6
P A C KI N G S E T/ 2 PA P E R B O X E S
O R D E R N O.: V T T- 6 W EI G H T: 5 3 k g s WI T H 1 D R A W E R S O R D E R N O.
ST D
V T T- 6- 3 0
B T- 3 0 DI N 6 9 8 7 1 A
T O O LI N G S H E AT H C A P A CI T Y 32 P C S/ S E T
V T T- 6- 4 0
B T- 4 0 DI N 6 9 8 7 1 A
28 P C S/ S E T
3 4 0 5- 1 0 6
V T T- 6- 5 0
B T- 5 0 DI N 6 9 8 7 1 A
20 P C S/ S E T
3 4 0 5- 1 0 7
H S K63
24 P C S/ S E T
3 4 0 5- 1 0 8
V T T- 6- H S K 6 3
O v er all Si z e : 1 0 0 2 x 6 5 0 x 8 1 0 m m Gr a y c ol or
C141
T O O LI N G S Y S T E M
T o oli n g R a c k
T o oli n g S h e at h C OL O R M AY VA RY
º
O R D E R N O.
F O R ST D
T O O LI N G S H E AT H C A P A CI T Y
W EI G H T ( k g s)
C O D E N O.
V T T R- 3 0 T R
B T 3 0, S K 3 0, C A T 3 0,I S O 3 0
8 P CS
4. 0
3 4 0 5- 2 5 0
V T T R- 4 0 T R
B T 4 0, S K 4 0, C A T 4 0,I S O 4 0 B T 5 0, S K 5 0, C A T 5 0,I S O 5 0
7 P CS
4. 0
3 4 0 5- 2 5 1
5 P CS
4. 0
3 4 0 5- 2 5 2
V T T R- 5 0 T R
T O O LI N G T R O L L E Y S
T H E B T & DI N O F T A P E R A R E S A M E. O R D E R N O.: V T T S- B T- 3 0 W EI G H T: 0. 0 7 7 k g C O D E N O. 3 4 0 5- 1 3 0 SI Z E: 4 8 X 1 3 8 X 6 5 m m O R D E R N O.: V T T S- B T- 4 0 W EI G H T: 0. 0 8 5 k g C O D E N O. 3 4 0 5- 1 3 1 SI Z E: 6 3 X 1 3 8 X 7 4 m m O R D E R N O.: V T T S- B T- 5 0 W EI G H T: 0. 1 2 3 k g C O D E N O. 3 4 0 5- 1 3 2 SI Z E: 9 3 X 1 3 8 X 1 0 4 m m
º
E n d Mill S h e at h R a c k
O R D E R N O. V M S- 2
C O D E N O. 3 4 0 5- 0 5 0
M at eri al: A B S wit h 6 2 s h e at h s.
C utti n g T o ol S h e at h R a c k
O R D E R N O. V M S- 3
C O D E N O. 3 4 0 5- 0 5 1
T o oli n g R a c k St a n d
O R D E R N O. V T C- 2 0
C O D E N O. 3 4 0 5- 2 2 1
C A P A CI T Y R A N GE Ø6~ Ø42
U nit: m m
W EI G H T ( k g) 0. 4
SI Z E 205x205x80
M M
Ø 1. 0 ~ Ø 1 0. 0( Ø 1. 0, 1. 1 ~ 9. 9, 1 0. 0) E A C H 0. 1 O N E P O SI TI O N Ø 1 0. 5, 1 0. 9, 1 1. 0, 1 1. 5, 1 1. 9, 1 2. 0, 1 2. 5, 1 2. 9, 1 3. 0 T O T A L 1 0 0 P O SI TI O N F O R D RI L L & E N D MI L L 3 6 0º R O T A TI O N U nit: m m
C A P A CI T Y R A N GE Ø 1. 0 ~ Ø 1 3. 0
SI Z E Ø 1 7 4 x 9 0 m /m
W EI G H T ( k g) 0. 2 1
S uit f or diff er e nt ki n d s m all m a c hi n e P o w erf ul d e si n g C o m p a ct & wit h bi g c a p a cit y Wit h r u b b er m at e 3 si z e dr a w er c o ul d st or e Diff er e nt si z e t o ol s Lx Wx H: 460x370x860 m m V T C- 2 0 3 D R A W E R S 1 FL AT TA BL E C A N U SI N G F O R V D G-, V E G, U 2, V C F- 5 0 0 E T C. ST R O N G TYPE W EI G H T: 3 0. 2 5 K G S
D R A W E R: W x L x H: 3 3 0 x 3 1 5 x 1 3 0 m m W x L x H: 3 3 0 x 3 1 5 x 2 8 0 m m
E x a m pl e
T O O LI N G S Y S T E M
C142
T o ol C a bi n et
A L L T H E O V E R A L L SI Z E I S WI T H W H E E L S H EI G H T. C OL O R M AY VA RY 5 Dr a w er s R oll C a bi n et C uft: 6. 9 N et W ei g ht: 3 1. 3 k g s Gr o s s W ei g ht: 3 4 k g s B all b e ari n g sli d e wit h Q ui c k Di s c o n n e ct H e a v y D ut y 4 x 1 C a st er D o u bl e w all c o n str u cti o n El e ctr o - P o w d er C o ati n g t o R e si st S cr at c h & s ol v e nt m ar ki n g s 1 0 m m T o p M at All dr a w er s a p p e n d e d t o Dr a w er Li n er s R e d c ol or C OL O R M AY VA R Y O R D E R N O.
C O D E N O.
V T C- 2 3
3 4 0 5- 1 4 4
m m
W
D
H
D RA WE RS
480
292
75
D RA WE RS
480
292
154
570 W X345 D X769 H m m
7 Dr a w er s R oll C a bi n et C uft: 1 3 N et W ei g ht: 6 7. 9 k g s Gr o s s W ei g ht: 7 7. 5 k g s Er g o n o mi c L ar g e Dr a w er D e si g n B all b e ari n g sli d e wit h Q ui c k Di s c o n n e ct H e a v y D ut y 5 x 2 C a st er D o u bl e w all c o n str u cti o n El e ctr o - P o w d er C o ati n g t o R e si st S cr at c h & s ol v e nt m ar ki n g s 1 0 m m T o p M at All dr a w er s a p p e n d e d t o Dr a w er Li n er s Gr a y c ol or C OL O R M AY VA R Y m m O R D E R N O.
C O D E N O.
V T C- 2 5
3 4 0 5- 1 4 9
680 W X460 D X995 H m m
W
D
H
D RA WE RS
308
395
75
D RA WE RS
308
395
154
T o oli n g Tr oll e y s
O R D E R N O. V T C- 1 0 0 C OL O R M AY VA RY
C O D E N O. 3 4 0 5- 1 5 4
Wx Dx H
873x500x880 m m
Package
1 P C/ 1 C T N/ 2. 7 3 C U F T
N. W.
2 3. 9 1 K G S
G. W.
2 5. 9 0 K G S
Gr e y c ol or
C143
T O O LI N G S Y S T E M
W or k b e n c h
O R D E R N O. V W B- 1 5 8 0
C O D E N O. 3 4 0 5- 1 5 8 SI Z E : 1 5 0 0 W x 7 5 0 D x 8 0 0 H m m
C OL O R M AY VA RY D E S C RI P TI O N
W
D
H
N. W.
G. W.
C UFT
O V E R ALL
1500
750
800
6 9. 7
7 4. 0 4
4. 6 8
T O O L C A BI N E T
H y dr o Lift T a bl e C OL O R M AY VA RY P A C KI N G WI T H O U T W O O D E N C A S E
O R DE R N O. V L T- 3 0 0
M A X. Hi g h Fr o m T h e Fl o or 900
A
B MI N. L o w W or kt a bl e Fr o m T h e L e n gt h Fl o or 270 815
C W or kt a bl e Wi dt h 500
D
E Br a k e H a n dl e B O v er all Hi g h Fr o arm O v er all W h e el W h e el L e n gt h T h e Fl o or Wi dt h 500 127 × 38 1 1020 960
Load C a p a cit y W ei g ht kgs 300
72
C O DE N O. 3 4 0 5- 1 7 0
H y dr o P all et Tr oll e y s C OL O R M AY VA RY P A C KI N G WI T H O U T W O O D E N C A S E
O R D E R N O.
H P T- 2 0 N S H P T- 2 0 N M H P T- 2 0 W L
O v er all O v er all B o d y( N ot T h e F or k F or k F or k F or k M A X. L e n gt h H ei g ht I n cl u d e S urf a c e wi dt h L e n gt h Wi d e F or k F or k) wi dt h H ei g ht A A+ B E F C B G 1300 1200 390 160 520 910 200 200 1460 1200 390 160 520 1070 200 200 1610 1200 390 160 685 1220 365 200
MI N. F or k Hi g h Fr o m T h e Fl o or H 85 85 85
W ei g ht Load C a p a cit y kgs 2000 2000 2000
Kgs
C O DE N O. 3 4 0 5- 1 8 1 3 4 0 5- 1 8 2 3 4 0 5- 1 8 3
T O O LI N G S Y S T E M
C144
P art s C a bi n et C OL O R M AY VA RY
G R AY C OL O R
T H E SI Z E O F D R A W E R 2 4 5 D x 1 4 3 W x 8 3 H ( m/ m)
O R D E R N O. V A 6- 2 1 2 H
O R D E R N O. V A 6- 3 3 0 H
O R D E R N O.
SI Z E ( m m) W x D x H
D R A WE R SI Z E( m m)
V A 6- 2 1 2 H
362 x 265 x 571
245 x 143 x 83
V A 6- 3 3 0 H
533 x 264 x 937
245 x 143 x 83
V A 7- 3 2 4 P
440 x 222 x 642
218 x 120 x 70
V A 7- 4 4 8 P
586 x 222 x 937
218 x 120 x 70
V A 1- 5 2 5
586 x 222 x 350
218 x 90 x 55
V A 1- 5 7 5
586 x 222 x 937
218 x 90 x 55
T H E SI Z E O F D R A W E R 2 1 8 D x 1 2 0 W x 7 0 H ( m/ m)
O R D E R N O. V A 7- 3 2 4 P METAL
D R A WE R N U M BE RS
W EI G H T( k g s)
C O D E N O.
12 P C S
1 0. 8
3 4 0 5- 2 0 0
30 P C S
2 5. 3
3 4 0 5- 2 0 1
24 P C S
1 5. 5
3 4 0 5- 2 0 2
48 P C S
2 7. 5
3 4 0 5- 2 0 3
25 P C S
10
3 4 0 5- 2 0 4
75 P C S
3 2. 3
3 4 0 5- 2 0 5
S T E EL PL AT E C O V E R WI T H ZI N C. Dr a w er m at eri al: GPS
T o ol B o x
C O M E S I N DI F F E R E N T C O L O R
C OL O R M AY VA RY
O R D E R N O. V T B- 1 0 2 O R D E R N O.
O R D E R N O. V A 7- 4 4 8 P
O R D E R N O. V T B- 9 0 1 SI Z E ( m m)
M A T E RI A L
W x D x H
V T B- 1 0 2
420 x 235 x 180
V T B- 9 0 1
378 x 182 x 144
ABS
P art s St or a g e
W EI G H T( k g)
C O D E N O.
1. 9
3 4 0 5- 3 0 0
0. 9
3 4 0 5- 3 0 1
C O L O R: R E D, B L U E, Y E L L O W E a s y p art s st or a g e Or g a ni z e
C145
T O O LI N G S Y S T E M
O R D E R N O.
SI Z E
PA C KE D
E A C H W EI G H T ( k g)
C O D E N O.
V H B- 1 2 1 8
120 Wx180 Dx80 H m m
6 0 P C S/ C A S E
8. 6
1 0 2 1- 1 0 0
V H B- 1 5 2 5
1 5 0 W x 2 5 0 D x 1 2 0 H m m 3 6 P C S/ C A S E
9. 6
1 0 2 1- 1 0 1
V H B- 2 0 3 5
2 0 0 W x 3 5 0 D x 1 5 0 H m m 1 8 P C S/ C A S E
0. 5 8 5
1 0 2 1- 1 0 2
V H B- 2 0 4 5
2 0 0 W x 4 5 0 D x 1 7 7 H m m 1 2 P C S/ C A S E
0. 8
1 0 2 1- 1 0 3
V H B- 3 0 4 5
300 Wx450 Dx177 H m m
1. 8 8 2 5
1 0 2 1- 1 0 4
8 P C S/ C A S E
P A C K A G E 5 P C S/ S E T
P A R T S C A BI N E T
E c o n o mi c al P all et
Zi n c C o ati n g F or Tr a n s p ort Li g ht W ei g ht D ut y R e c y cl a bl e Di s p o s a bl e: 1 Ti m e U s e L o a d: 5 0 0 K g s O R D E R N O.
SI Z E
W EI G H T ( k g s / 5 s et s)
C O D E N O.
V E P T- 0 1
11 0 0 x 1 4 0 0 x 1 2 0 m m
85 kgs
3 4 0 5- 6 0 1
V E P T- 0 2
1 0 0 0 x 11 0 0 x 1 2 0 m m
55 kgs
3 4 0 5- 6 0 2
H e a v y D ut y P all et
P A C K A G E 5 P C S/ S E T
H e a v y D ut y Zi n c C o ati n g M at eri al: St e el F or Tr a n s p ort M ulti pl e U s e L o a d: 1 8 0 0 K g s O R D E R N O.
SI Z E
W EI G H T ( k g s / 5 s et s)
C O D E N O.
V H P T- H 0 1
11 0 0 x 1 4 0 0 x 1 2 0 m m
215 kgs
3 4 0 5- 6 1 1
T O O LI N G S Y S T E M
C146
N C- R ot ar y T a bl e
HI G H A C C U R A C Y A N D HI G H RI GI DI T Y A d o pti o n of n e w d o u bl e-l e a d w or m g e ar-- e n g a g e m e nt b et w e e n
C OL O R M AY VA RY
S L E E V E T Y P E C L A M PI N G M E C H A NI S M
D O U BLE LE A D W O R M GE A RS SYSTE M N e w d e si g n/ s p e ci al m at eri al
P R O G R A M M A BLE SE RV O M OT O R C O NT R OLLE R D1
M A C HI N E C E N T E R A C C E S S O RI E S
S P E CI FI C A TI O N S
U nit: m m
O R D E R N O.
V N C M- 1 5 0 L R
V N C M- 2 2 0 L R
V N C M- 2 5 0 L R
V N C M- 3 2 0 L R
V N C M- 4 0 0 L R
O O Ø160
O O
O O
O O
160
160
O O Ø320 220 210
Ri g ht- h a n d t y p e L eft- h a n d t y p e T ur nt a bl e di a m et er T a bl e h ei g ht( H ori z o nt al p o s.) T a bl e c e nt er h ei g ht( V erti c al p o s.) C e nt er b or e di a m et er T- sl ot si z e G ui d e- bl o c k si z e N u m b er of w or m w h e el t e et h S er v o m ot or t y p e S p e e d r e d u cti o n r ati o T a bl e gr a d u ati o n a n gl e p er 1 p ul s e
3 1/ 9 0
6 1/ 1 8 0
6 1/ 1 8 0
12 1/ 1 8 0
6 1/ 3 6 0
12 1/ 1 8 0
T a bl e r ot ati o n s p e e d 8/
L o a d c a p a cit y, h ori z o nt al( k g) L o a d c a p a cit y, v erti c al( k g) I n erti a f or c e ( k g- c m- s e c2 ) M a x.t o r q u e c a p a cit y of w o r m g e a r ( k g- m) M a x. w or k pi e c e di a m et er C u m ul ati v e i n d e xi n g a c c ur a c y s e c. R e p e at a bilit y s e c. I n erti a f or c e( c o n v ert i nt o m ot or s h aft) k g- c m- s e c 2 X 1 0 - 2 N et w ei g ht ( k g) C O D E N O.
1 8 0/ 2
2
2
100
100
2
2
200
160 20
320
200
300
A C C U R A CY STA N D A R D N O.
N C- R O T A R Y T A B L E
Cl a m p m et h o d & Cl a m p t or q u e ( k g- m)
U nit: m m
I n s p e cti o n It e m
I n s p e cti o n It e m
1
P er o v er all l e n gt h
2 3
P ar all eli s m of t a bl e t o p a n d fr a m e b ott o m
P er o v er all l e n gt h
4 5
H ol e e n d
C e nt er b or e r u n o ut
P er 1 0 0 m m
6
P er o v er all l e n gt h
7
P er o v er all l e n gt h
8 9
P er 3 0 0 m m
10
1
2
8 s h o ul d b e u s e d f o r i n d e xi n g
3
6
9
M A C HI N E C E N T E R A C C E S S O RI E S
D2
N C- R ot ar y T a bl e V N C M- 1 5 0 R
V N C M- 1 5 0 R
V N C M- 2 2 0 R V N C M- 2 2 0 R
V N C M- 2 5 0 R V N C M- 2 5 0 R
V N C M- 3 2 0 R V N C M- 3 2 0 R
V N C M- 4 0 0 R V N C M- 4 0 0 R
D3
M A C HI N E C E N T E R A C C E S S O RI E S
N C- R ot ar y T a bl e
Di m e n si o n s
C O D E N O. 4 0 0 1- 0 1 0
U nit: m m
lt e m
A C C U R A CY STA N D A R D N O
U nit: m m
l n s p e cti o n lt m e
T ol er a n c e P er o v er all l e n gt h
1 C e nt er h ei g ht
160
C e nt er h ol e di a m et er
32
2 P er o v er all l e n gt h
3 P ar all eli s m of t a bl e t o p a n d fr a m e b ott o m 4
18 20
All o w a bl e w ei g ht
H ori z o nt al s et u p
200 100
H ol e e n d
5 C e nt er b or e r u n o ut
P er 1 0 0 m m
6
P er o v er all l e n gt h
7
P er o v er all l e n gt h
8 1: 9 0
9
P er 3 0 0 m m
10
V N C X- 1 0
1
4
7
2
5
8 i n str u m e nt s h o ul d b e u s e d f or i n d e xi n g
3
6
9
M A C HI N E C E N T E R A C C E S S O RI E S
N C- R O T A R Y T A B L E
O R D E R N O. V N C X- 1 0
T ail st o c k F or N C R ot ar y T a bl e
D e a d C e nt er
M T- 3 F or Li v e C e nt er
M ai n di m e n si o n O R DE R N O.
F or
U nit: m m
C e nt er h ei g ht A
C e nt er di a m et er B
St or k e C
p oi nt e d end di a m et er D
H a n dl e Base di a m et er di m e n si o n s E FX M
T S- 1 3 5
G
H
I
332
T S- 1 3 5- M T 3 T S- 1 6 0
160
T S- 1 6 0- M T 3
K
109
-
230x130
L
193
ø18
T S- 2 1 0
J
30
30
129
210
T S- 2 1 0- M T 3
U nit: m m
M ai n di m e n si o n O R DE R N O.
F or
G ui d e - bl o c k si z e M
T S- 1 3 5
T S- 1 6 0- M T 3
u
19
T S- 1 3 5- M T 3 T S- 1 6 0
c
18
19
T S- 2 1 0 T S- 2 1 0- M T 3
f
g
h
j
69
r
N et w ei g ht ( k g s)
C O D E N O.
80
80
23
Li st e d i n t h e a b o v e t a bl e ar e e x a m pl e s of a p pli c a bl e m o d el s. T h o s e n ot li st e d a b o v e s h o ul d b e s el e ct e d s o t h at t h e c e nt er h ei g ht of t h e r ot ar y t a bl e a n d di vi di n g h e a d s i s t h e s a m e a s t h at of t h e t ail st o c k.
M A C HI N E C E N T E R A C C E S S O RI E S
M C P o w er Vi s e 4 0 0 5 ~ S E RI E S
M C P O W E R VI S E
P L E A S E S E E A S Y S T E M F O R M P A G E A S E RI E S
M A C HI N E C E N T E R A C C E S S O RI E S
D6
M C P o w er Vi s e
S A M E H EI G H T G U A R A N T E E
T O G G L E J OI N T M E C H A NI S M D E SI G N F O R H E A V Y D U T Y W O R KI N G
F e at ur e s
I N S P E C TI O N S P E CI FI C A TI O N 1
G u ar a nt e e d
2
1 3
2
4
3
C L A M PI N G C A P A CI T Y O R D E R N O.
J A W J
V Q C- 1 0 0 V Q C- 1 2 5 V Q C- 1 6 0 V Q C- 1 6 0 L V Q C- 2 0 0 L
O R D E R N O.
A
V Q C- 1 0 0 V Q C- 1 2 5 V Q C- 1 6 0 V Q C- 1 6 0 L V Q C- 2 0 0 L
616
O R D E R N O.
M
V Q C- 1 0 0 V Q C- 1 2 5 V Q C- 1 6 0 V Q C- 1 6 0 L V Q C- 2 0 0 L
B
a
D
120
P
99
180
126 161 162 202
160 200
N
Q
W
96
M A C HI N E C E N T E R A C C E S S O RI E S
G
M A X. Cl a m pi n g F or c e ( K N) 120 30 B
190
60 60 60
J
K
H
G. W. kg
108
L
39 86 86 102
X
11 0 21 21 21 21
R
J A W Open C 128
18 18 18 18
100 120 120 120
86 86 98
Y
C OPE N 128
f 20 20 20 20 20
86 98 98
j
n 11 2 139
286 286 386
169
C O D E N O.
M C P o w er Vi s e C L A M PI N G F O R C E C H A R T
S C ALE O R DE R K N N O. V Q C- 1 0 0 V Q C- 1 2 5 V Q C- 1 6 0 V Q C- 1 6 0 L V Q C- 2 0 0 L
4
3
2
1
0
-
O P TI O N A L: FJ
S O F T FI X E D J A W A
B
C
D
E
V Q C- 1 0 0 F J
Fi x e d si d e
F
G
H
19
6
18
J
K
L
M
26
11
V Q C- 1 2 5 F J
91
V Q C- 1 6 0 F J
102 60
9
28
22
30
V Q C- 1 6 0 L- F J
102 60
9
28
22
30
9
28
V Q C- 2 0 0 L- F J
200
60
88
8
122
62
19
N
13
C O D E N O.
63
100
S OFT M OVE A BLE J A W O R D E R N O.
A
B
C
D
E
F
G
V Q C- 1 0 0 M J
J
K
6 18
23
8
38
L
M
26
11
V Q C- 1 2 5 M J
60
V Q C- 1 6 0 M J
102 60
9 28
22
30
V Q C- 1 6 0 L- M J
102 60
9 28
22
30
G
H
6
18
V Q C- 2 0 0 L- M J
O P TI O N A L:
H
200
29
62
39
19
N
C O D E N O.
K
C O D E N O.
13
9 28
L T Y P E FI X E D J A W O R D E R N O.
A
B
C
D
E
V Q C- 1 0 0 F J L V Q C- 1 2 5 F J L
88
J
8
20 39
20
V Q C- 1 6 0 F J L
86
9
28
V Q C- 1 6 0 L- F J L
86
9
28
62
9
28
E
G
H
J
K
V Q C- 1 0 0 M J L
6
18
32
20
V Q C- 1 2 5 M J L
8
V Q C- 2 0 0 L- F J L
200
102
L TYPE M OVE A BLE J A W O R D E R N O.
A
B
C
D
20
V Q C- 1 6 0 M J L
86
9
28
V Q C- 1 6 0 L- M J L
86
9
28
9
28
V Q C- 2 0 0 L- M J L
200
98
62
C O D E N O.
M A C HI N E C E N T E R A C C E S S O RI E S
D8
M C P O W E R VI S E
O R D E R N O.
B a s e Pl at e S eri e s
O R D E R N O. T B P- 6 0 4 0 T B P- 6 0 5 0 T B P- 6 0 6 0 T B P- 8 0 4 0 T B P- 9 0 4 5 T B P- 1 0 0 5 0 T B P- 6 0 4 0 D T B P- 6 0 5 0 D T B P- 6 0 6 0 D T B P- 8 0 4 0 D T B P- 9 0 4 5 D T B P- 1 0 0 5 0 D
mi ni mi z e l o s s of o p er ati n g ti m e of e x p e n si v e
S Q U A RE TYPE O R D E R N O. S B P- 4 0 4 0 S B P- 5 0 5 0 S B P- 6 3 6 3 S B P- 8 0 8 0 S B P- 4 0 4 0 A S B P- 5 0 5 0 A S B P- 6 3 6 3 A S B P- 8 0 8 0 A
A( ± 0. 0 2) 60 60 60 60
B
C 320
630 800
D( H 7)
E
320
18 18 18 18
630 800
A
B
600 H B P- 4 0 6 0 600 H B P- 5 0 6 0 600 600 H B P- 6 0 6 0 800 H B P- 4 0 8 0 900 H B P- 4 5 9 0 1000 H B P- 5 0 1 0 0 600 H B P- 4 0 6 0 T 600 H B P- 5 0 6 0 T 600 600 H B P- 6 0 6 0 T 800 H B P- 4 0 8 0 T 900 H B P- 4 5 9 0 T 1000 H B P- 5 0 1 0 0 T S p e ci al di m e n si o n’ s or d er w el c o m e.
D9
F Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18
100
100
S U B TA BLE T HE R A D TYPE O R D E R N O.
A B C( ± 0. 0 2) 600 60 600 60 600 600 60 800 60 900 60 1000 60 600 600 600 600 800 900 1000
M A C HI N E C E N T E R A C C E S S O RI E S
D Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18
( F 7) Ø12 Ø12 Ø12 Ø12 Ø12 Ø12 Ø16 Ø16 Ø16 Ø16 Ø16 Ø16
T
D
E
18 18 18 18 18 18
F( ± 0. 0 2) 100 100 100 100 100 100 100 100 100 100 100 100
G Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18 Ø18
U nit: m m
k g C O D E N O. 120 160 100 133 169
G( ± 0. 0 2) 160 200
H( ± 0. 0 2) 80 100
kg
320 160 200
160 80 100
230
320
160
298
B A S E P L A T E S E RI E S
S U B T A B L E T- S L O T T Y P E
U nit: m m
C O DE N O
90
11 8
U nit: m m
TAP
N O. O F M T P h ol s e 96 120 128 162 200 96 120 128 162 200
K GS 90 11 2 11 9
108 129
180
C O D E N O.
M/ C A n gl e Pl at e 9 0º
A
B
C
D
B P 2 0- 3 0
300
300
220
100
280
160
B P 2 0- 4 0 B P 2 0- 5 0
E
F
320
200
B P 2 0- 6 0
630
630
B P 2 0- 8 0
800
800
G
H
kgs
90
30
90
30
90
90 100
302
M/ C A n gl e Pl at e 9 0º
O R D E R N O.
A
B
C
D
B P 2 2- 3 0
300
300
220
100
280
160
B P 2 2- 4 0 B P 2 2- 5 0 630
630
B P 2 2- 8 0
800
800
B P 2 2- 8 3 0
300
300
B P 2 2- 8 4 0 B P 2 2- 8 5 0 B P 2 2- 8 6 0
E 320
200
B P 2 2- 6 0
630
T- S L O T T Y P E
90
60
30
ø18
K ( + 0. 0 2) 100
90
60
30
ø18
100
90
60
ø18
100
100
60
ø18
F
G
H
320 220
100
300
160 200
630
C O D E N O.
M/ C A N G L E P L A T E
O R D E R N O.
I
J
C O D E N O.
100
90
60
30
ø18
18
100
90
60
30
ø18
18
100
90
60
ø18
18
100
ø18
18
100
K GS
316
ø18 320
L
M A C HI N E C E N T E R A C C E S S O RI E S
D10
M C C L A M PI N G C U B E
M/ C Cl a m pi n g C u b e
S P E CI A L D E SI G N W E L C O M O R D E R N O.
A
B
C
B P 0 7- 1 0 B P 0 7- 2 0
600
B P 0 7- 3 0 B P 0 7- 4 0
D 11
E
320
200
F
300 630
800
D
800
M A C HI N E C E N T E R A C C E S S O RI E S
G
N O. of M o u nti n g h ol e s
kg
8 100
8 8
390
C O D E N O.
M at eri al : C a st lr o n F C- 3 0 0 G G- 3 0
O R D E R N O.
A
B
B C 4 5- 1 5
100
100
B C 4 5- 3 0
100
100
B C 4 5- 1 5 1
200
200
B C 4 5- 3 0 1
200
200
C
D
E
F
kgs
10 300
10
300
22
20
22
20
A n g ul ar H oll o w Bl o c k 3 0º
M at eri al: C a st lr o n F C- 3 0 0 G G- 3 0
O R D E R N O.
A
B
B C 3 0- 1 5
63
100
B C 3 0- 3 0
63
100
B C 3 0- 1 5 1
200
B C 3 0- 3 0 1
200
C O D E N O.
C
300 300
T- S L O T T Y P E
D
E
F
G
12
9
108
6
12
9
108
6
20
222
8
20
222
8
kgs
C O D E N O.
M A C HI N E C E N T E R A C C E S S O RI E S
D12
A N G UL A R H OLL O W BL O C K
A n g ul ar H oll o w Bl o c k 4 5º
Fl e xi bl e Li n e U p Vi c e
O R D E R N O.
V F S- 5 0 3 0 V F S- 5 0 3 0 G
A 300
B ± 0. 0 1
C
D
30
80 100
V F S- 5 0 4 0
80
V F S- 5 0 4 0 G
100
V F S- 5 0 5 0
80
V F S- 5 0 5 0 G
100
V F S- 5 0 6 0 V F S- 5 0 6 0 G
600
60
80 100
E
F
12
G
H
I
J
K
36
10
12
12
36
10
12
12
36
10
12
12
36
10
12
12
36
10
12
L
M
N
O
P 160
100
100
80 100
200
90
320
100
300
100
Q 60
60
60
80
V F S- 5 0 7 0 G
100
V F S- 7 2 4 0
100
16
18
11 0
16
100
V F S- 7 2 5 0
100
16
18
11 0
16
100
100
16
18
11 0
16
100
82
100
16
18
11 0
16
100
82
V F S- 7 2 7 0
600
Cl a m pi n g f or c e M A X. Cl a m p f or c e ( k g s) V F S- 5 0 : 1000 kgs V F S- 7 2 : 2000 kgs
D13
M A C HI N E C E N T E R A C C E S S O RI E S
10
60
V F S- 5 0 7 0
V F S- 7 2 6 0
K G
11 0
60
13
200
82
19
300
82
100
M at eri al t o ol st e el H ar d n e s s o v er H R C 5 5
30
C O D E N O.
F L E XI B L E LI N E U P VI C E
STA N D A R D STYLE 4 P O SI TI O N F O R E A C H I T E M.
M a xi m u m wi dt h of t h e w or k pi e c e s c a n b e cl a m p e d O n e w or k pi e c e
T w o w or k pi e c e s
T hr e e w or k pi e c e s
F o ur w or k pi e c e s
O R D E R N O.
V F S- 5 0 3 0
203
V F S- 5 0 4 0
303
-121
60
30
V F S- 5 0 5 0 V F S- 5 0 6 0
221
V F S- 5 0 7 0
603
V F S- 7 2 4 0
269
V F S- 7 2 5 0
369
80 160
93
-68
V F S- 7 2 6 0
193
30
101
V F S- 7 2 7 0
80
Fi v e w or k pi e c e
Si x w or k pi e c e
S e v e n w or k pi e c e
Ei g ht w or k pi e c e
Ni n e w or k pi e c e
V F S- 5 0 3 0
--
--
--
--
--
V F S- 5 0 4 0
--
--
--
--
--
V F S- 5 0 5 0
32
16
--
--
--
33
20
--
--
22
13
O R D E R N O.
V F S- 5 0 6 0 V F S- 5 0 7 0 V F S- 7 2 4 0
--
--
--
--
--
V F S- 7 2 5 0
--
--
--
--
--
V F S- 7 2 6 0
28
--
--
--
--
26
--
--
--
V F S- 7 2 7 0
M A C HI N E C E N T E R A C C E S S O RI E S
F L E XI B L E LI N E U P VI C E
Fl e xi bl e Li n e U P Vi c e
Fl e xi bl e Li n e U P Vi c e
O R D E R N O.
V F L- 5 0 3 0 V F L- 5 0 3 0 G
A 300
B
C
D
30
80
100
100
V F L- 5 0 4 0
80
80
V F L- 5 0 4 0 G
100
100
V F L- 5 0 5 0
90
80
V F L- 5 0 5 0 G
100
100
V F L- 5 0 6 0 V F L- 5 0 6 0 G
600
100
60
E
F
G
H
80 100
I
J
K
L
10
12
10
12
10
12
10 10
M
N
O
P 160 100 200 320
Q
R 12 12 12
9
12
12
11
12
12
12 19
300
V F L- 5 0 7 0
11 0
80
V F L- 5 0 7 0 G
100
100
V F L- 7 2 4 0
100
100
18
11 0
16
200
16
V F L- 7 2 5 0
100
100
18
11 0
16
300
16
100
100
18
11 0
16
16
100
100
18
11 0
16
16
V F L- 7 2 6 0 V F L- 7 2 7 0
600
M at eri al:t o ol st e el H ar d n e s s: o v er H R C 5 5
M A C HI N E C E N T E R A C C E S S O RI E S
K G
C O D E N O.
F L E XI B L E L U N E U P VI C E
STA N D A R D STYLE 4 P O SI TI O N F O R E A C H I T E M.
F L E XI B L E LI N E U P VI C E
Fl e xi bl e Li n e U P Vi c e
M a xi m u m wi dt h of t h e w or k pi e c e s c a n b e cl a m p e d O n e w or k pi e c e
T w o w or k pi e c e s
T hr e e w or k pi e c e s
F o ur w or k pi e c e s
Fi v e w or k pi e c e s
V F L- 5 0 3 0
82
32
21
--
V F L- 5 0 4 0
132
V F L- 5 0 5 0
182
98
V F L- 5 0 6 0
232
132
96
63
V F L- 7 2 4 0
100
33
20
--
O R D E R N O.
23
V F L- 7 2 5 0
16
V F L- 7 2 6 0
200
100
V F L- 7 2 7 0
133
Si x w or k pi e c e
Seven w or k pi e c e s
--
--
--
V F L- 5 0 4 0
--
--
V F L- 5 0 5 0
19
V F L- 5 0 6 0
33
28
O R D E R N O.
V F L- 5 0 3 0
36
T e n w or k pi e c e s
El e v e n w or k pi e c e s
--
--
--
--
--
--
--
--
--
Ei g ht w or k pi e c e s Ni n e w or k pi e c e s
--
V F L- 7 2 4 0
--
--
--
--
--
--
V F L- 7 2 5 0
--
--
--
--
--
--
V F L- 7 2 6 0
--
--
--
--
--
V F L- 7 2 7 0
23
18
--
--
--
M A C HI N E C E N T E R A C C E S S O RI E S
D16
O R D E R N O. V F N- 6 0 3 0
B
H
A
C
D
E
F
G
300
1P
2P
208
3P
4P
30
8
V F N- 6 0 4 0
33
V F N- 6 0 5 0 V F N- 6 0 6 0
38
96
600
V F N- 6 0 7 0
100
V F N- 8 5 4 0
16
608
83
162
108 12
V F N- 8 5 5 0 V F N- 8 5 6 0
C O D E N O.
9 12 22 26
600
200
800
300
108
62
V F N- 8 5 7 0 V F N- 8 5 8 0
S C RE W
10
129 100
K GS
30 33
102
M a xi m u m wi dt h of t h e w or k pi e c e s c a n b e cl a m p e d O n e w or k pi e c e O R D E R N O.
V F N- 6 0 3 0
1P
T w o w or k pi e c e s 2P
T hr e e w or k pi e c e s 3P
208
F o ur w or k pi e c e s 4P
30
V F N- 6 0 4 0
8 33
V F N- 6 0 5 0
96
V F N- 6 0 6 0
129
83
162
108
V F N- 6 0 7 0
608
V F N- 8 5 4 0
100
12
V F N- 8 5 5 0 V F N- 8 5 6 0
200
108
62
V F N- 8 5 7 0 V F N- 8 5 8 0
M A C HI N E C E N T E R A C C E S S O RI E S
300
102
F L E XI B L E LI N E U P VI C E
Fl e xi bl e Li n e U P Vi c e
Li g ht D ut y Li v e C e nt er C e nt er i s m a d e of S C M 4 2 0 all o y st e el b y h e at tr e at m e nt t o pr o vi d e hi g h er ri gi dit y w e ar-r e si st a n c e. C e nt er i s c o n stit ut e d b y b all b e ari n g s a s s e m bl y. A p pli c a bl e t o mi d dl e- s p e e d & hi g h- s p e e d l at h e wit h li g ht l o a d. F O R V P C- T Y P E
S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
U nit: m m
P A C KI N G Lx Wx H 11 5 x 1 3 6 x 3 8
C O D E N O.
6 0º
G. W. w ei g ht k g s 0. 3
O R D E R N O.
A
B
C
D
D1
L
A c c ur a c y
V P C- M T 1
21
31
56
32
16
108
0. 0 0 5
Speed Max R. P. M. 3200
V P C- M T 2
26
37
69
40
22
132
0. 0 0 5
2800
6 0º
0. 5
140 x 45 x 45
5 0 0 1- 0 0 2
V P C- M T 3
32
46
86
45
26
164
0. 0 0 5
2000
6 0º
0. 9
170 x 50 x 52
5 0 0 1- 0 0 3
V P C- M T 4
34
46
108
48
30
188
0. 0 0 5
1800
6 0º
1. 3
195 x 58 x 56
5 0 0 1- 0 0 4
V P C- M T 5
50
62
136
68
45
248
0. 0 0 5
1500
6 0º
3. 2
268 x 86 x 77
5 0 0 1- 0 0 5
Li v e L at h e C e nt er
5 0 0 1- 0 0 1
C e nt er s h aft & m ai n b o d y i s m a d e of S C M 4 2 0 all o y st e el b y h e at tr e at m e nt t o pr o vi d e hi g h er ri gi dit y w e ar- r e si st a n c e. C e nt er i s c o n stit ut e d b y t hr u st b all b e ari n g, n e e dl e r oll er b e ari n g s & b all b e ari n g s a s s e m bl y. A p pli c a bl e t o mi d dl e- s p e e d & hi g h- s p e e d l at h e wit h h e a v y l o a d. B T Y P E S UI T A B L E F O R S M A L L - W O R K PI E C E M A C HI NI N G.
A TYPE
B TYPE S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
U nit: m m
O R D E R N O.
TYPE
A
B
C
D
D1
d
L
A c c ur a c y
V L C- 2 1 2
MT2 A
28
35
69
32
23
-
132
0. 0 0 5
Speed Max R. P. M. 4000
V L C- 2 1 3
MT3 A
36
44
86
41
35
-
166
0. 0 0 5
V L C- 2 1 4
MT4 A
41
51
108
47
40
-
200
V L C- 2 1 5
MT5 A
54
72
136
65
52
-
262
V L C- 2 1 3 B
MT3 B
46
44
86
41
25
10
176
0. 0 0 5
3000
6 0º
0. 9
198 x 67 x 51
5 0 0 1- 0 1 4
V L C- 2 1 4 B
MT4 B
55
51
108
47
32
12
214
0. 0 0 5
2500
6 0º
1. 5
240 x 70 x 61
5 0 0 1- 0 1 5
G. W. w ei g ht k g s
P A C KI N G Lx Wx H
C O D E N O.
6 0º
0. 3
173 x 43 x 40
5 0 0 1- 0 1 0
3000
6 0º
0. 9
198 x 67 x 51
5 0 0 1- 0 1 1
0. 0 0 5
2500
6 0º
1. 5
240 x 70 x 61
5 0 0 1- 0 1 2
0. 0 0 5
2000
6 0º
3. 8
290 x 92 x 80
5 0 0 1- 0 1 3
T H E C H A R T F O R L O A DI N G W EI G H T WI T H R. P. M.
F O R V L C- T Y P E
E1
L A T H E M A C HI N E A C C E S S O RI E S
F O R V C F/ V C P- T Y P E
F O R V C S- T Y P E
Hi g h- S p e e d N C Li v e C e nt er W A T E R- P R O O F T Y P E C e nt er s h aft i s m a d e of S U J 2 m at eri al u n d er v a c u u m h e at tr e at m e nt t o pr o vi d e hi g h er ri gi dit y A TYPE
w e ar-r e si st a n c e. C e nt er i s c o n stit ut e d b y d u al b all b e ari n g. T hr u st b e ari n g & n e e dl e r oll er b e ari n g a s s e m bl y. A p pli c a bl e t o hi g h- s p e e d l at h e & N C l at h e wit h h e a v y l o a d w at er- pr o of. B T y p e i s a p pli c a bl e i n t h e m et al w or ki n g s o n s m all di a m et er w or k pi e c e s.
B TYPE S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
O R D E R N O.
TYPE
A
B
C
D
D1
d
L
A c c ur a c y
V L C- M T 3 A
MT3 A
39
51
86
53
30
-
176
0. 0 0 5
Speed Max R. P. M. 4000
V L C- M T 4 A
MT4 A
42
62
108
63
32
-
212
0. 0 0 5
V L C- M T 5 A
MT5 A
57
71
136
83
40
-
264
V L C- M T 6 A
MT6 A
80
111 1 8 9 1 2 8
70
-
V L C- M T 3 B
MT3 B
48
52
86
53
30
V L C- M T 4 B
MT4 B
52
62
108
63
V L C- M T 5 B
MT5 B
67
71
136
83
U nit: m m
P A C KI N G Lx Wx H
C O D E N O.
6 0º
1. 3
240 x 70 x 61
5 0 0 1- 0 2 0
3000
6 0º
2. 2
253 x 92 x 80
5 0 0 1- 0 2 1
0. 0 0 5
2500
6 0º
4. 5
303 x 108 x 101
5 0 0 1- 0 2 2
380
0. 0 0 8
1500
6 0º
1 5. 6
410 x 177 x 168
5 0 0 1- 0 2 3
10
186
0. 0 0 5
4000
6 0º
1. 4
240 x 70 x 61
5 0 0 1- 0 2 4
32
12
218
0. 0 0 5
3000
6 0º
2. 2
253 x 92 x 80
5 0 0 1- 0 2 5
40
14
274
0. 0 0 5
2500
6 0º
4. 5
303 x 108 x 101
5 0 0 1- 0 2 6
LI V E C E N T E R
G. W. w ei g ht k g s
Hi g h- L o a d N C Li v e C e nt er S h aft u s e s m at eri al S U J 2: t hr o u g h v a c u u m h e at tr e at m e nt, it i s e v e n m or e d ur al e, h ar d n e s s i s a s hi g h a s ( H R C 6 0º ± Fr o nt e n d i s c o n stit ut e d b y a n g ul ar c o nt a ct b all b e ari n g & t hr u st b all b e ari n g. mi d dl e & r e ar e n d s ar e c o m pri s e d of n e e dl e r oll er b e ari n g a s s e m bl y. T h e s e c e nt er s ar e s uit a bl e f or N C l at h e at hi g h- s p e e d & h e a v y-l o a d o p er ati o n, w at er- pr o of. B T y p e i s a p pli c a bl e i n t h e m et al w or ki n g s o n s m all w or k pi e c e s.
A TYPE
B TYPE S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
U nit: m m
G. W. w ei g ht k g s
P A C KI N G Lx Wx H
C O D E N O.
O R D E R N O.
A
B
C
D
D1
d
L
A c c ur a c y
Speed Max R. P. M.
V C F- M T 3 A
38
50
86
53
30
-
174
0. 0 0 3
5000
6 0º
1. 3
240 x 70 x 61
5 0 0 1- 0 3 0
V C F- M T 4 A
45
60
108
68
32
-
213
0. 0 0 3
4500
6 0º
2. 4
253 x 92 x 80
5 0 0 1- 0 3 1
V C F- M T 5 A
52
70
136
87
40
-
258
0. 0 0 3
3000
6 0º
5
303 x 108 x 101
5 0 0 1- 0 3 2
V C F- M T 3 B
52
50
86
53
25
10
188
0. 0 0 3
5000
6 0º
1. 3
240 x 70 x 61
5 0 0 1- 0 3 3
V C F- M T 4 B
55
60
108
68
32
12
223
0. 0 0 3
4500
6 0º
2. 4
253 x 92 x 80
5 0 0 1- 0 3 4
V C F- M T 5 B
67
70
136
87
40
14
273
0. 0 0 3
3000
6 0º
5
303 x 108 x 101
5 0 0 1- 0 3 5
L A T H E M A C HI N E A C C E S S O RI E S
E2
I nt er- c h a n g e a bl e P oi nt s Li v e C e nt er
C o m pl et e s et wit h 7 I nt er c h a n g e a bl e P oi nt s f or v ari o u s pr o c e s si n g. P a c k e d i n c a s e. Hi g h a c c ur a n c y a n d d ur a bilit y a s w ell a s c o m pl et e r u st- pr o of p erf or m a n c e C e nt er m a b e of S C M 4 2 0 s p e ci al t o ol st e el h ar d e n e d a n d gr o u n d c a n b e u s e d f or h e a v y d ut y w or k.
G230 ø32
G212 ø 1 2. 6
ø 11
G210
G208
G206
ø10
ø8
ø6
G205
ø 6. 5
ø8
ø52
ø19
ø32
G200
ø39
S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
U nit: m m
G. W. w ei g ht k g s
P A C KI N G Lx Wx H
C O D E N O.
O R D E R N O.
TYPE
A
B
C
D
D1
L
A c c ur a c y
S p e e d M a x. R. P. M.
V L C- 3 1 2
MT2
22
36
69
32
25
127
0. 0 0 8
4000
6 0º
0. 9
166 x 105 x 63
5 0 0 1- 0 4 0
V L C- 3 1 3
MT3
23
44
86
41
30
153
0. 0 0 8
3000
6 0º
1. 4
255 x 138 x 100
5 0 0 1- 0 4 1
V L C- 3 1 4
MT4
23
51
108
47
32
182
0. 0 0 8
2500
6 0º
2
255 x 138 x 100
5 0 0 1- 0 4 2
Hi g h S p e e d N C I nt er c h a n g e a bl e P oi nt s Li v e C e nt er
V C S- M T 3, M T 4 G230 ø32
V C S- M T 4 P, M T 5 P
G212 ø 1 2. 6
ø 11
G210
G208
G206
ø10
ø8
ø6
G205
G200
ø10
ø 6. 5
ø45
G316
G312
G310
G308
G306
ø 1 5. 5
ø20
ø47
ø52
ø19
ø32
ø8
G345
ø52
ø39
C e nt er s h aft i s m a d e of S U J 2 m at eri al u n d er v a c u u m h e at tr e at m e nt t o pr o vi d e hi g h er ri gi dit y ( H R C 6 0º ± 2º) a n d C e nt er i s c o n stit ut e d b y d u al b all b e ari n g. T hr u st b e ari n g & n e e dl e r oll er b e ari n g a s s e m bl y. S uit f or t o hi g h- s p e e d l at h e & N C l e at h e wit h h e a v y l o a d, w at er- pr o of.
S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
U nit: m m
G. W. w ei g ht k g s
P A C KI N G Lx Wx H
C O D E N O.
O R D E R N O.
A
B
C
D
D1
L
A c c ur a c y
S p e e d M a x. R. P. M.
V C S- M T 3
28
51
86
53
30
165
0. 0 0 8
4000
6 0º
1. 8
255 x 138 x 100
5 0 0 1- 0 5 0
V C S- M T 4
30
62
108
63
32
196
0. 0 0 8
3500
6 0º
2. 5
255 x 138 x 100
5 0 0 1- 0 5 1
V C S- M T 4 P
30
62
108
63
32
196
0. 0 0 8
3500
6 0º
2. 7
235 x 130 x 80
5 0 0 1- 0 5 2
V C S- M T 5 P
34
71
136
83
40
237
0. 0 0 8
2500
6 0º
5. 1
275 x 147 x 97
5 0 0 1- 0 5 3
E3
L A T H E M A C HI N E A C C E S S O RI E S
Hi g h L o a d I nt er c h a n g e a bl e P oi nt s Li v e C e nt er
S h aft u s e s m at eri al S U J 2:t hr o u g h v a c u u m h e at tr e at m e nt, it i s e v e n m or e d ur a bl e, h ar d n e s s i s a s hi g h a s Fr o nt e n d i s c o n stit ut e d b y S K F a n g ul ar c o nt a ct b all b e ari n g & t hr u st b all b e ari n g. mi d dl e & r e ar e n d s ar e c o m pri s e d of n e e dl e r oll er b e ari n g a s s e m bl y. T h e s e c e nt er s ar e s uit a bl e f or N C l at h e at hi g h- s p e e d & h e a v y-l o a d o p er ati o n, w at er- pr o of. S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
G. W. w ei g ht k g s
P A C KI N G Lx Wx H
U nit: m m
O R D E R N O.
A
B
C
D
D1
L
A c c ur a c y
S p e e d M a x. R. P. M.
V C P- M T 3
30
50
86
53
30
170
0. 0 0 5
5000
6 0º
1. 7 2
V C P- M T 4
30
64
108
68
32
202
0. 0 0 5
4500
6 0º
3
253 x 130 x 80
5 0 0 1- 0 6 0
V C P- M T 5
37
70
136
87
40
243
0. 0 0 5
3000
6 0º
5. 5
275 x 147 x 97
5 0 0 1- 0 6 1
C O D E N O.
LI V E C E N T E R
5 0 0 1- 0 5 9
Hi g h S p e e d Li v e C e nt er E U R O STYLE
A TYPE
B TYPE S uit f or t o C N C l at h e s, c a n b e u s e d at hi g h s p e e d t ur ni n g a n d wit h w at er pr o of d e si g n. T h e c e nt er u s e s t h e c o m bi n ati o n of r oll er b e ari n g, t hr u st b all b e ari n g a n d b all b e ari n g. B T y p e i s a p pli c a bl e i n t h e m et al w or ki n g s o n s m all w or k pi e c e s. S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
U nit: m m
O R DE R N O.
TYPE
A
B
C
D
D1
L
d1
A c c ur a c y
V L C- 5 1 2
MT2 A
20
46
69
32
13
135
-
0. 0 0 3
Speed M a x. R. P. M 6000
V L C- 5 1 3
MT3 A
34
61
86
58
25
181
-
0. 0 0 3
5200
1. 8
253x92x80
5 0 0 1- 0 6 3
V L C- 5 1 4
MT4 A
44
67
11 4
76
35
225
-
0. 0 0 3
5000
3. 2
290x92x80
5 0 0 1- 0 6 4
V L C- 5 1 5
MT5 A
55
88
142
95
45
285
-
0. 0 0 3
3500
5. 6
303x108x101
5 0 0 1- 0 6 5
V L C- 5 1 3 B
MT3 B
45
61
86
58
25
192
10
0. 0 0 3
5200
1. 8
290x92x80
5 0 0 1- 0 6 7
V L C- 5 1 4 B
MT4 B
55
67
11 4
76
35
236
12
0. 0 0 3
5000
3. 2
253x92x80
5 0 0 1- 0 6 8
V L C- 5 1 5 B
MT5 B
67
88
142
95
45
297
14
0. 0 0 3
3500
6. 0
303x108x101
5 0 0 1- 0 6 9
G. W. w ei g ht
P A C KI N G L x W x H
C O DE N O.
0. 8
240x70x61
5 0 0 1- 0 6 2
L A T H E M A C HI N E A C C E S S O RI E S
E4
B ull N o s e Pi p e C e nt er
Pi p e Li v e C e nt er
H A R D E N P R O C E S S : H R C 5 0º C O N C E N T RI CI T Y : 0. 0 0 5 m m R O U N D N E S S : 0. 0 0 5 m m M A T E RI A L : S T E E L
S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m
2
U nit: m m
R. P. M. 1 0 0 L O A D W EI G H T ( K G S)
G. W. w ei g ht ( K G S)
C O D E N O.
O R DE R N O.
SI Z E MTx D
A
B
C
D
D1
L
S p e e d M a x. R. P. M.
V L C- 4 2 2
M T 2 × 2 1/ 2”
48
12
69
6 3. 5
12
128
3000
6 0°
200
0. 9
5 0 0 1- 0 7 0 A
V L C- 4 2 3
M T 2 × 3”
56
12
69
78
19
138
2500
6 0°
400
1. 3
5 0 0 1- 0 7 0 B
V L C- 4 2 4
M T 2 × 4”
58
12
69
106
32
141
2000
7 0°
640
2. 3
5 0 0 1- 0 7 0 C
V L C- 4 3 3
M T 3 × 3”
52
18
86
78
19
156
3300
6 0°
400
1. 6
5 0 0 1- 0 7 0
V L C- 4 3 4
M T 3 × 4”
59
16
86
106
32
161
3000
7 0°
500
2. 8
5 0 0 1- 0 7 1
V L C- 4 3 5
M T 3 × 5”
71
12
89
128
35
173
1900
7 0°
960
4. 2
5 0 0 1- 0 7 1 A
V L C- 4 3 6
M T 3 × 6”
81
12
89
156
50
183
1900
7 0°
1200
7. 3
5 0 0 1- 0 7 1 B
V L C- 4 4 3
M T4x3
52
18
108
78
19
178
3300
6 0º
400
1. 8
5 0 0 1- 0 7 2
V L C- 4 4 4
M T4x4
59
16
108
106
32
183
3000
7 0º
500
3. 1
5 0 0 1- 0 7 3
V L C- 4 4 5
M T4x5
73
12
108
128
35
193
2000
7 0º
650
4. 9
5 0 0 1- 0 7 4
V L C- 4 4 6
M T4x6
88
12
108
156
50
208
1900
7 0º
800
7. 7
5 0 0 1- 0 7 5
V L C- 4 4 8
M T4x8
98
12
108
206
54
218
1500
7 5º
1300
1 5. 4
5 0 0 1- 0 7 6
V L C- 4 4 1 0
M T 4 × 1 0”
107
13
11 0
258
92
236
1000
8 0°
2000
24
5 0 0 1- 0 7 6 A
V L C- 4 5 4
M T 5 × 4”
58
12
143
106
32
214
2000
7 0°
640
4
5 0 0 1- 0 7 7 A
V L C- 4 5 5
M T 5 × 5”
73
12
136
128
35
221
2000
7 0°
650
5. 8
5 0 0 1- 0 7 7
V L C- 4 5 6
M T 5 × 6”
88
12
136
156
50
236
1900
7 0°
800
8. 6
5 0 0 1- 0 7 8
V L C- 4 5 8
M T 5 × 8”
98
12
136
206
54
246
1500
7 5°
1600
1 5. 7
5 0 0 1- 0 7 9
V L C- 4 5 1 0
M T 5 × 1 0”
107
13
143
258
92
264
1000
8 0°
2200
2 5. 5
5 0 0 1- 0 7 9 A
V L C- 4 5 1 2
M T 5 × 1 2”
11 0
25
143
306
120
281
1000
9 0°
3000
3 7. 5
5 0 0 1- 0 7 9 B
V L C- 4 6 6
M T 6 × 6”
81
12
185
156
50
281
1900
7 0°
1200
12
5 0 0 1- 0 8 0 A
V L C- 4 6 8
M T 6 × 8”
103
13
185
206
54
298
1500
7 5°
2000
1 5. 8
5 0 0 1- 0 8 0
V L C- 4 6 1 0
M T 6 × 1 0”
107
13
185
258
92
306
1000
8 0°
2500
28
5 0 0 1- 0 8 1
V L C- 4 6 1 2
M T 6 × 1 2”
11 0
25
185
306
120
323
1000
9 0°
3000
40
5 0 0 1- 0 8 2
E5
L A T H E M A C HI N E A C C E S S O RI E S
L at h e C e nt er
H alf di a m et er Hi g h pr e ci si o n C ar bi d e ti p DI N 8 0 6
S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
O R D E R N O.
SI Z E
A 2
C
Ø D
Ø d
L
V L C- 1 1 7 V L C- 1 1 8 V L C- 1 1 9
MT3 MT4 MT5
41 54 69
3 4 4. 5
24 3 1. 3 4 4. 5
9 1 1. 5 13
124 158 198
C O DE N O 5 0 0 1- 0 8 6 5 0 0 1- 0 8 7 5 0 0 1- 0 8 8
K 2 0 C ar bi d e ti p p e d- H R C 7 0º H ar d e n e d & pr e ci si o n gr o u n d. C o n c e ntri cit y wit hi n. 0 0 0 2 ( 0. 0 0 5 m m) DI N 8 0 6 L AT H E C E N T E R
L at h e C e nt er
W ei g ht ( k g s) 0. 3 3 0. 7 2 1. 7 3
S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m
O R DE R N O. V L C- 1 1 2 V L C- 1 1 3 V L C- 1 1 4 V L C- 1 1 5 V L C- 1 1 6
2
U nit: m m
SI Z E
A
B
C
E
L
d2
d1
d
M T- 2 M T- 3 M T- 4 M T- 5 M T- 6
69 89 109 136 190
67 81 1 0 2. 5 1 2 9. 5 182
31 39 46 64 80
8 10 14 18 30
100 125 165 200 270
1 7. 7 8 0 2 3. 8 2 5 3 1. 2 6 7 4 4. 3 9 9 6 3. 6 4 8
1 8. 0 2 4. 1 3 1. 6 4 4. 7 6 3. 8
6 8 10 14 18
W ei g ht ( k g s) 0. 2 0. 4 0. 8 2. 1 5. 7
C O DE N O. 5 0 0 1- 0 9 0 5 0 0 1- 0 9 1 5 0 0 1- 0 9 2 5 0 0 1- 0 9 3 5 0 0 1- 0 9 4
D e a d C e nt er S uit f or l at h e & gri n di n g m a c hi n e H ar d e n e d & pr e ci si o n gr o u n d DI N 8 0 6
S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
O R D E R N O. V L C- 1 2 6 V L C- 1 2 7 V L C- 1 2 8 V L C- 1 2 9 V L C- 1 3 0
SI Z E MT2 MT3 MT4 MT5 MT6
A 18 24 30 39 54
B 7 10 11 16 29
C 75 91 11 4 145 187
D 19 25 32 46 64
L 100 125 155 200 270
W ei g ht ( k g s) 0. 1 6 0. 3 4 0. 7 3 1. 9 5. 1 2
C O D E N O. 5 0 0 1- 1 1 1 5 0 0 1- 1 1 2 5 0 0 1- 1 1 3 5 0 0 1- 1 1 4 5 0 0 1- 1 1 5
L A T H E M A C HI N E A C C E S S O RI E S
E6
W or k- Dri vi n g C e nt er O P TI O N A L :
V D K- 1 5
75L
40
V D K- 2 3 MT4
10
T A P E R S L E E V E C 4 0- M T 4 V D K- 3 2
T hi s Cl a m p-fr e e c e nt er i s c o m pri s e d of e x c ell e nt m e c h a ni c al str u ct ur e, n e arl y fr e e of br e a k d o w n. m ai n b o d y & c e nt er s h aft ar e m a d e of S L D m at eri al b y h e at tr e at m e nt( H R C 6 2º). Dri vi n g i s r e q uir e d f or tr a diti o n al l at h e m a c hi ni n g t o pr e v e nt w or k pi e c e fr o m st o p. T hi s cl a m p-fr e e c e nt er wit h 6 T & 8 T d e si g n o n e n d s urf a c e i s a bl e t o s e c ur el y s u p p ort w or k pi e c e s urf a c e t o S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m
O R DE R N O. V D K- 1 5- M T 4 V D K- 2 3- M T 4 V D K- 3 2- M T 4
O P TI O N A L:
2
C e nt er S h aft Si z e
O ut er Di a
W or ki n g R a n g e
6ø 8ø 8ø
16ø 23ø 32ø
1 6 ø- 2 5 ø 2 3 ø- 3 2 ø 3 2 ø- 4 5 ø
U nit: m m
W ei g ht ( K G S) 0. 6 0. 7 0. 7
C O D E N O. 5 0 0 1- 1 0 0 5 0 0 1- 1 0 1 5 0 0 1- 1 0 2 U nit: m m
O R D E R N O.
S uit F or It e m
Si z e
C O D E N O.
V D K- S L E E V E
V D K- 1 5- M T 4 V D K- 2 3- M T 4 V D K- 3 2- M T 4
C 4 0- M T 4
5 0 0 1- 1 0 5
W or k- Dri vi n g C e nt er- C h a n g a bl e Ti p s 75L
40
MT4
S ET ST YL E
ST OPPE R
10
T A P E R S L E E V E C 4 0- M T 4
CE NTE R
S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
E7
O R D E R N O.
C e nt er S h aft Si z e
V D C- 3 0- M T 4
6 ø, 8 ø, 1 0 ø
L A T H E M A C HI N E A C C E S S O RI E S
St o p p er O ut er Di a 1 6 ø, 2 3 ø, 3 0 ø
W or ki n g R a n g e 1 5 ø- 4 5 ø
W ei g ht ( K G S) 2. 6 3
C O D E N O. 5 0 0 1- 1 0 6
I nt er- C h a n g e a bl e P oi nt R olli n g C e nt er
E c o n o mi c al T y p e
7 p oi nt s / s et C o n c e ntri cit y : ± 0. 0 0 8 m m Wit h hi g h gr a d e b e ari n g
O R DE R N O.
TYPE
A
B
C
D
D1
L
V L C- 6 1 2 V L C- 6 1 3 V L C- 6 1 4 V L C- 6 1 5
MT2 MT3 MT4 MT5
24 24 24 25
39 43 44 64
69 91 107 138
40 46 48 6 3. 5
29 30 32 35
132 158 175 227
Li v e L at h e C e nt er
A c c ur a c y
G. W. W ei g ht K g s
C O DE N O.
0. 0 0 5 0. 0 0 5 0. 0 0 5 0. 0 0 5
1800 1600 1600 1000
0. 8 5 1. 1 1. 4 3. 8
5 0 0 1- 1 2 1 5 0 0 1- 1 2 2 5 0 0 1- 1 2 3 5 0 0 1- 1 2 4
H ar d e n e d & pri ci si o n gr o u n d C o n c e ntri cit y : 0. 0 0 0 2” ( ± 0. 0 0 5 m m)
S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
O R D E R N O.
TYPE
A
B
C
D
D1
L
V L C- 1 7 2 V L C- 1 7 3 V L C- 1 7 4 V L C- 1 7 5
MT2 MT3 MT4 MT5
32 34 34 50
40 45 45 61
72 88 109 134
41 45 45 68
25 30 30 45
144 167 188 245
S P E E D M A X. R. P. M. 2300 2000 1800 1500
Drill C h u c k s Ar b or M T 3. 4. 5 - J T-
SL E E V E O R DE R N O. V Q- 1 0 1 V Q- 1 0 2 V Q- 1 0 3 V Q- 1 0 4 V Q- 1 0 5 V Q- 1 0 6 V Q- 1 0 7 V Q- 1 0 8 V Q- 1 0 9 V Q- 1 1 0 V Q- 1 0 0 V Q- 1 0 0- 1 V Q- 1 0 0- 2 V Q- 1 0 0- 3
Pl e a s e s e e p a g e C 4 3, C 4 4, C 5 6, C 5 7 I. D. x O. D. M T2x M T3 M T2x M T4 M T2x M T5 M T2x M T6 M T3x M T4 M T3x M T5 M T3x M T6 M T4x M T5 M T4x M T6 M T5x M T6 M T1x M T3 M T1x M T2 M T1x M T4 M T1x M T5
D
d
2 3. 8 2 5 1 7. 7 8 0 3 1. 2 6 7 1 7. 7 8 0 4 4. 3 9 9 1 7. 7 8 0 3 1. 2 6 7 4 4. 3 9 9 6 3. 3 4 8 4 4. 3 9 9 6 3. 3 4 8 6 3. 3 4 8 2 3. 8 2 5 1 7. 7 8 0 3 1. 2 6 7 4 4. 3 9 9
2 3. 8 2 5 2 3. 8 2 5 2 3. 8 2 5 3 1. 2 6 7 3 1. 2 6 7 4 4. 3 9 9 1 2. 0 6 5 1 2. 0 6 5 1 2. 0 6 5 1 2. 0 6 5
U nit: m m
Speed Max R. P. M.
C O DE N O. 1 1 2 1 8 6 7 0. 2 3 2 1 0- 0 0 1 1 2 4 6. 5 6 7 0. 5 3 2 1 0- 0 0 2 1 5 6 6. 5 6 7 1. 4 3 2 1 0- 0 0 3 4. 1 3 3 2 1 0- 0 0 4 1 4 0 2 2. 5 8 4 0. 4 3 2 1 0- 0 0 5 1 5 6 6. 5 8 4 1. 3 3 2 1 0- 0 0 6 218 8 84 4 3 2 1 0- 0 0 7 1 7 1 2 1. 5 1 0 7 1 3 2 1 0- 0 0 8 2 1 8 8 1 0 7 3. 7 3 2 1 0- 0 0 9 2 1 8 8 1 3 3 2. 9 3 2 1 0- 0 1 0 100 6 5 5 0. 2 3 2 1 0- 0 1 1 8 9 1 4 5 5 0. 2 2 3 2 1 0- 0 1 2 1 2 4 6. 5 5 5 0. 8 9 3 2 1 0- 0 1 3 156 7 5 5 1. 3 3 3 2 1 0- 0 1 4 L
I1
I2
kg
O R DE R N O. V J- 1 2 6 V J- 1 2 6- 1 V J- 1 2 6- 3 V J- 1 3 0 V J- 1 3 0- 2 V J- 1 3 0- 4 V J- 1 3 7 V J- 1 3 1 V J- 1 3 1- 2 V J- 1 3 1- 4 V J- 1 3 4 V J- 1 3 4- 2 V J- 1 3 8- 1 V J- 1 3 1- 2 V J- 1 3 8- 2 V J- 1 3 2 V J- 1 3 2- 1 V J- 1 3 2- 7 V J- 1 3 2- 4 V J- 1 3 2- 5 V J- 1 3 2- 6 V J- 1 3 2- 8 V J- 1 3 5 V J- 1 3 3 V J- 1 3 3- 1 V J- 1 3 3- 2 V J- 1 3 3- 3 V J- 1 3 3- 4 V J- 1 3 3- 5
W O R K L O A DI N G- K G S 60 160 300 800 TAPE R MT2 MT2 MT2 MT2 MT2 MT2 MT2 MT3 MT3 MT3 MT3 MT3 MT3 MT3 MT3 MT4 MT4 MT4 MT4 MT4 MT4 MT4 MT4 MT5 MT5 MT5 MT5 MT5 MT5
JT N O. JT3 B16 B18 JT6 JT5 JT4 JT2 JT6 JT5 JT33 B16 B18 JT3 JT5 JT4 JT6 JT3 JT4 JT5 JT2 JT33 B18 B16 JT6 JT3 JT4 JT5 JT2 JT33
G. W. w ei g ht k g s 0. 5 5 0. 8 4 1. 1 5 3. 3
C
H
kg
2 0. 6 1 5. 7 3 3 1 7. 7 8 1 7. 1 7 3 5. 8 9 2 8. 5 5 1 4. 2 1 7. 1 7 3 5. 8 9 1 5. 8 5 1 5. 7 3 3 1 7. 7 8 2 0. 6 0 3 5. 8 9 2 8. 5 5 1 7. 1 7 2 0. 6 0 2 8. 5 5 3 5. 8 9 1 4. 2 1 5. 8 5 1 7. 7 8 1 5. 7 3 3 1 7. 1 7 2 0. 6 0 2 8. 5 5 3 5. 8 9 1 4. 2 1 5. 8 5
34 29 37 28 50 45 25 26 50 28 24 37 34 50 45 26 34 45 50 25 28 37 29 26 35 46 51 26 29
0. 2 4 0. 2 0. 2 1 0. 2 2 0. 5 0. 4 0. 2 0. 4 0. 7 0. 3 0. 3 0. 4 0. 3 5 0. 7 0. 5 0. 7 0. 7 0. 8 5 1 0. 6 4 0. 6 5 0. 7 0. 7 1. 6 1. 6 1. 8 2 1. 6 1. 6
C O DE N O 5 0 0 1- 1 3 1 5 0 0 1- 1 3 2 5 0 0 1- 1 3 3 5 0 0 1- 1 3 4
C O DE N O. 3 2 0 9- 0 0 6 3 2 0 9- 0 0 6 A 3 2 0 9- 0 0 6 B 3 2 0 9- 0 2 9 3 2 0 9- 0 2 9 A 3 2 0 9- 0 2 9 B 3 2 0 9- 0 5 6 3 2 0 9- 0 3 0 3 2 0 9- 0 3 0 A 3 2 0 9- 0 3 0 B 3 2 0 9- 0 3 3 3 2 0 9- 0 3 3 A 3 2 0 9- 0 3 4 3 2 0 9- 0 3 0 A 3 2 0 9- 0 3 5 3 2 0 9- 0 3 1 3 2 0 9- 0 3 1 A 3 2 0 9- 0 3 1 B 3 2 0 9- 0 3 1 C 3 2 0 9- 0 3 1 D 3 2 0 9- 0 3 1 E 3 2 0 9- 0 3 1 F 3 2 0 9- 0 3 6 3 2 0 9- 0 3 2 3 2 0 9- 0 3 2 A 3 2 0 9- 0 3 2 B 3 2 0 9- 0 3 2 C 3 2 0 9- 0 3 2 D 3 2 0 9- 0 3 2 E
L A T H E M A C HI N E A C C E S S O RI E S
E8
L AT H E C E N T E R
S u g g e st e d t ail st o c k pr e s s ur e u n d er 6 k g/ c m 2
3 J a w S elf C e nt eri n g C h u c k
2 S et of S oli d J a w. Pl ai n B a c k
N or m al T y p e
S P E CI FI C A TI O N S O R D E R N O.
D- Si z e
d1
d2
d3
L
L1
V S C- 3 A V S C- 4 A V S C- 5 A V S C- 6 A V S C- 7 A V S C- 8 A V S C- 9 A V S C- 1 0 A V S C- 1 2 A V S C- 1 6 A V S C- 2 0 A V S C- 2 5 A
8 0 m m( 3 ) 1 0 0 m m( 4 ) 1 3 0 m m( 5 ) 1 6 0 m m( 6 ) 1 9 0 m m( 7 1 /2 ) 2 0 0 m m( 8 ) 2 4 0 m m( 9 1 /2 ) 2 5 0 m m( 1 0 ) 3 1 5 m m( 1 2 ) 4 0 0 m m( 1 6 ) 5 0 0 m m( 2 0 ) 6 3 0 m m( 2 5 )
66 84 11 5 142 172 180 215 226 285 368 465 595
55 72 100 130 155 165 195 206 260 340 440 560
16 22 30 45 55 70 70 80 100 130 210 260
66 7 4. 5 78 95 105 109 1 2 2. 5 120 1 4 7. 5 1 7 3. 5 202 194
50 55 55 65 75 75 80 80 90 100 11 5 130
G RI P PI N G R A N G E W EI G H T h T H RE A D ( k g s) O. D. R A N G E I. D. R A N G E 3. 5 3- M 6 Ø 2- Ø 7 0 Ø 2 4- Ø 6 4 2 3. 5 3- M 8 Ø 3- Ø 9 0 Ø 3 2- Ø 8 4 3. 3 3. 5 3- M 8 Ø 3- Ø 1 1 0 Ø 3 5- Ø 1 0 0 5. 8 5 3- M 8 Ø 3- Ø 1 6 0 Ø 4 8- Ø 1 5 0 9 5 3- M 1 0 Ø 4- Ø 1 8 0 Ø 5 6- Ø 1 7 0 1 5. 1 5 3- M 1 0 Ø 4- Ø 1 8 0 Ø 5 6- Ø 1 7 0 1 5. 6 5 3- M 1 2 Ø 5- Ø 2 2 0 Ø 6 2- Ø 2 1 0 26 5 3- M 1 2 Ø 6- Ø 2 2 0 Ø 7 0- Ø 2 5 0 2 6. 5 6 3- M 1 6 Ø 1 0- Ø 3 0 0 Ø 8 6- Ø 2 9 0 47 6 3- M 1 6 Ø 1 4- Ø 4 0 0 Ø 1 0 0- Ø 3 8 0 73 6 3- M 1 6 Ø 2 5- Ø 5 0 0 Ø 1 5 0- Ø 5 0 0 131 6 3- M 1 6 Ø 5 0- Ø 6 3 0 Ø 1 7 0- Ø 6 3 0 200
U nit: m m
C O D E N O. 5 0 0 2- 0 2 0 A 5 0 0 2- 0 2 1 A 5 0 0 2- 0 2 2 A 5 0 0 2- 0 2 3 A 5 0 0 2- 0 2 4 A 5 0 0 2- 0 2 5 A 5 0 0 2- 0 2 6 A 5 0 0 2- 0 2 7 A 5 0 0 2- 0 2 8 A 5 0 0 2- 0 2 9 A 5 0 0 2- 0 3 0 A 5 0 0 2- 0 3 1 A
3 J a w P o w erf ul S elf C e nt eri n g C h u c k
N or m al T y p e
R e v er si bl e T o p J a w s. Pl ai n B a c k
3 J A W S E L F C E N T E RI N G C H U C K R E V E R SI B L E T O P J A W S. P L AI N B A C K
S P E CI FI C A TI O N S O R D E R N O.
D- Si z e
d1
d2
d3
L
L1
V S K- 6 A V S K- 8 A V S K- 1 0 A V S K- 1 2 A V S K- 1 3 A V S K- 1 5 A V S K- 1 6 A
1 6 0 m m( 6 ) 2 0 0 m m( 8 ) 2 5 0 m m( 1 0 ) 3 1 5 m m( 1 2 ) 3 2 5 m m( 1 3 ) 3 8 0 m m( 1 5 ) 4 0 0 m m( 1 6 )
142 180 226 285 296 350 368
130 165 206 260 272 325 340
45 65 80 100 100 130 130
95 109 120 1 5 6. 5 1 5 4. 5 1 5 6. 5 1 8 1. 5
71 78 84 1 0 2. 5 1 0 2. 5 1 0 4. 5 1 2 9. 5
E9
L A T H E M A C HI N E A C C E S S O RI E S
h
T H RE A D 5 5 5 6 6 6 6
3- M 8 3- M 1 2 3- M 1 2 3- M 1 6 3- M 1 6 3- M 1 6 3- M 1 6
G RI P PI N G R A N G E O. D. R A N G E I. D. R A N G E Ø 8- Ø 1 6 0 Ø 5 5- Ø 1 5 0 Ø 8- Ø 1 8 0 Ø 6 2- Ø 1 7 0 Ø 1 2- Ø 2 6 0 Ø 8 0- Ø 2 5 0 Ø 1 5- Ø 3 0 0 Ø 9 0- Ø 2 9 0 Ø 1 1. 5- Ø 3 5 0 Ø 1 1 0- Ø 3 4 0 Ø 1 1. 5- Ø 4 0 0 Ø 1 1 0- Ø 4 0 0 Ø 3 0- Ø 4 7 0 Ø 1 1 0- Ø 3 8 0
U nit: m m
W EI G H T ( k g s)
C O D E N O.
8. 3 16 2 1. 7 41 4 5. 8 6 4. 7 7 5. 5
5 0 0 2- 0 4 0 A 5 0 0 2- 0 4 2 A 5 0 0 2- 0 4 3 A 5 0 0 2- 0 4 3 B 5 0 0 2- 0 4 4 A 5 0 0 2- 0 4 5 A 5 0 0 2- 0 4 6 A
4 J a w S elf C e nt eri n g C h u c k s N or m al T y p e
S P E CI FI C A TI O N S
U nit: m m
L1
h
T H RE A D
W EI G H T ( k g s)
O R D E R N O.
D
d1
d2
d3
V P S- 6 A
165
130
145
45
94
65
5
3- M 8
Ø 4- Ø 1 6 5
Ø 5 5- Ø 1 5 0
9. 3
5 0 0 2- 0 5 0
V P S- 8 A
200
165
180
65
109
75
5
3- M 1 0
Ø 4- Ø 2 0 0
Ø 6 5- Ø 2 0 0
1 6. 6
5 0 0 2- 0 5 2
V P S- 1 0 A
250
206
226
80
120
80
5
3- M 1 2
Ø 6- Ø 2 5 0
Ø 9 0- Ø 2 5 0
28
5 0 0 2- 0 5 3
V P S- 1 2 A
315
260
285
100
1 4 7. 5
90
6
3- M 1 6
Ø 1 0- Ø 3 1 5
Ø 1 0 0- Ø 3 1 5
54
5 0 0 2- 0 5 4
O. D. R A N G E I. D. R A N G E
C O D E N O.
4- J a w P o w erf ul S elf C e nt eri n g C h u c k s N or m al T y p e
S P E CI FI C A TI O N S
U nit: m m
G RI P PI N G R A N G E
W EI G H T ( k g s)
C O D E N O.
Ø 5 5- Ø 1 5 0
9. 5
5 0 0 2- 0 5 5
Ø 4- Ø 2 0 0
Ø 6 5- Ø 2 0 0
1 4. 8
5 0 0 2- 0 5 7
3- M 1 2
Ø 6- Ø 2 5 0
Ø 9 0- Ø 2 5 0
2 4. 7
5 0 0 2- 0 5 8
3- M 1 6
Ø 1 0- Ø 3 1 5
Ø 1 0 0- Ø 3 1 5
4 5. 7
5 0 0 2- 0 5 9
O R D E R N O.
D
d1
d2
d3
L
L1
h
T H RE A D
V P S- 6 A K
165
130
145
45
109
65
5
3- M 8
Ø 4- Ø 1 6 5
V P S- 8 A K
200
165
180
65
122
75
5
3- M 1 0
V P S- 1 0 A K
250
206
226
80
136
80
5
V P S- 1 2 A K
315
260
285
100
1 5 6. 5
90
6
O. D. R A N G E I. D. R A N G E
L A T H E M A C HI N E A C C E S S O RI E S
E10
C E N T E RI N G C H U C K
L
G RI P PI N G R A N G E
3- J a w S cr oll C h u c k s D 1 C a ml o c k Dir e ct M o u nti n g N or m al T y p e
B A C K S A M PL E ( A S A s pi n dl e n o s e D 1- 4, D 1- 5, D 1- 6, D 1- 8) A m eri c a n st a n d ar d c a ml o c k t y p e wit h 2- pi e c e r e v er si bl e h ar d t o p j a w s. Gri p pi n g a c c ur a c y of 0. 0 3 m m( 0. 0 0 2i n c h) T.I. R. St a n d ar d a c c e s s ori e s A c h u c k wr e n c h a n d h e x. k e y O n e s et of m o u nti n g b olt s.( U N C- b olt s)
S P E CI FI C A TI O N S O R D E R S pi n dl e C h u c k A B C H J N O. Si z e Si z e
K D 5- 8 ” K D 6- 8 ”
D 1- 5 D 1- 6
200 200
K
M o u nti n g Di m e n si o n s F1
F2 F3
Gri p pi n g R a n g e O. D. Range
F4
W ei g ht ( k g)
I. D. Range
7 7 4 6 1 1 8 2 2 8 4 2 8 2. 5 6 3 1 4. 3 1 9 1 0 4. 7 8 Ø 8- Ø 1 8 0 Ø 6 2- Ø 1 7 0 7 7 5 8 1 1 8 2 2 8 4 2 1 0 6. 3 7 5 1 6 2 2 1 3 3. 3 5 Ø 8- Ø 1 8 0 Ø 6 2- Ø 1 7 0
All o w a bl e Gri p pi n g M a x. H a n dl e F or c e ( k gf.I M 2 ) S p e e d C NO O.D E T or q u e ( k gf) (r. p. m.) ( k gf. m)
18 17
1 1. 5 17
3600 3600
0. 0 7 0. 0 7
3200 3200
5 0 0 2- 0 6 1 5 0 0 2- 0 6 3
3- J a w P o w erf ul C a ml o c k T y p e S elf- C e nt eri n g C h u c k N or m al T y p e
Ød4
D 160 200 250 315
M O U N TI N G TYPE D5 D6 D6 D6
8 2. 5 6 3
D 1- 6
1 0 6. 3 7 5
D 1- 8
1 0 6. 3 7 5
D 1- 1 1
1 0 6. 3 5 7
W EI G H T ( k g s) 10 17 32 49
C O D E N O.
V S C- W 1 6
V S C- W 2 0
S A M PL E
S P E CI FI C A TI O N S O R DE R N O. V S K C- 6 A V S K C- 8 A V S K C- 1 0 A V S K C- 1 2 A
D 1- 5
d1
d2
d3
d4
h1
L
h
T H RE A D
40 50 70 100
1 0 4. 8 1 3 3. 4 1 3 3. 4 1 3 3. 4
146 181 181 181
8 2. 5 6 3 1 0 6. 3 7 5 1 0 6. 3 7 5 1 0 6. 3 7 5
12 13 13 13
73 86 98 1 0 3. 5
15 16 16 16
6- M 1 2 x 1. 0 P 6- M 1 6 x 1. 5 P 6- M 1 6 x 1. 5 P 6- M 1 6 x 1. 5 P
5 0 0 2- 1 1 1 5 0 0 2- 1 1 2 5 0 0 2- 1 1 3 5 0 0 2- 1 1 4
3- J a w Wr e n c h N or m al T y p e
O R D E R V S C- W 3 N O.
V S C- W 5
V S C- W 6
I II C O DE N O.
E 11
L A T H E M A C HI N E A C C E S S O RI E S
V S C- W 8
V S C- W 1 0
V S C- W 1 2
DI N- T y p e 3- J a w S elf- C e nt eri n g C h u c k s
SI MI L A R DI N 6 3 5 0
It h a v e fr o nt m o u nti n g t y p e a s w ell.
S P E CI FI C A TI O N S
G RI P PI N G R A N G E
O R D E R N O.
D
d1
d2
d3
L
L1
h
T H RE A D
R. P. M. M AX SPEE D
W EI G H T ( k g s)
C O D E N O.
V S C- 3 D
80
56
67
16
6 6. 5
50
4
3- M 6
4000
Ø 2- Ø 7 0
Ø 2 2- Ø 6 3
1. 9
5 0 0 2- 2 1 5
V S C- 4 D
100
70
83
22
7 4. 5
55
3
3- M 8
3500
Ø 2- Ø 9 0
Ø 3 0- Ø 8 0
3. 3
5 0 0 2- 2 1 6
V S C- 5 D
125
95
108
30
8 4. 5
58
4
3- M 8
3000
Ø 2. 5- Ø 1 2 5
Ø 3 8- Ø 1 1 0
5. 2
5 0 0 2- 2 1 7
V S C- 6 D
160
125
140
45
94
65
5
6- M 1 0
2500
Ø 3- Ø 1 6 0
Ø 5 5- Ø 1 4 5
9. 1
5 0 0 2- 2 1 8
V S C- 8 D
200
160
176
65
109
75
5
6- M 1 0
2500
Ø 4- Ø 2 0 0
Ø 6 5- Ø 2 0 0
16
5 0 0 2- 2 1 9
V S C- 1 0 D
250
200
224
80
120
80
5
6- M 1 2
1600
Ø 6- Ø 2 5 0
Ø 9 0- Ø 2 5 0
2 7. 5
5 0 0 2- 2 1 9 A
O. D. R A N G E I. D. R A N G E
4- J a w I n d e p e n d e nt C h u c k Pl ai n B a c k
S P E CI FI C A TI O N S O R DE R N O. V K C- 4
D- si z e
d1
d2
d3
L
1 0 0 m m( 4 )
72
84
25
74
V K C- 5
1 2 5 m m( 5 )
95
108
30
78
G RI P PI N G R A N G E L 1 h T H R E A D M A XR. SP. P M.E E D O. D. R A N G E I. D. R A N G E 5 4 3. 5 2300 Ø 6- Ø 4 5 Ø 4 0- Ø 1 0 0 4- M 8 5 6 4. 5 1900 Ø 7- Ø 5 7 Ø 4 8- Ø 1 2 5
V K C- 6
1 6 0 m m( 6 )
65
95
45
93
75
5
4- M 1 0
V K C- 8
2 0 0 m m( 8 )
80
11 2
56
107
80
V K C- 1 0
2 5 0 m m( 1 0 )
11 0
130
75
120
90
V K C- 1 2 B
3 2 0 m m( 1 2 )
140
165
95
V K C- 1 4
3 5 0 m m( 1 4 )
130
168
11 0
134
90
V K C- 1 6
4 0 0 m m( 1 6 )
160
185
125
143
95
V K C- 2 0
5 0 0 m m( 2 1 )
200
236
160
161 106
V K C- 2 5
6 3 0 m m( 2 5 )
220
258
180
1 7 5 11 8 1 0
V K C- 3 2
8 0 0 m m( 3 2 )
250
300
210
202 132 12
V K C- 4 0
1 0 0 0 m m( 4 0 ) 3 2 0
370
305
259 170 15
V K C- 5 0
1 2 5 0 m m( 5 0 ) 4 0 0
500
385
273 185 15
8- M 2 0
6
4- M 1 2 4- M 1 6
8
U nit: m m
W EI G H T ( k g s) 3. 5
C O D E N O. 5 0 0 2- 2 2 0
5. 1
5 0 0 2- 2 2 1
1500
Ø 8- Ø 8 0
Ø 5 0- Ø 1 6 0
8. 3
5 0 0 2- 2 2 2
1350
Ø 1 0- Ø 1 0 0
Ø 6 3- Ø 2 0 0
1 5. 9
5 0 0 2- 2 2 3
11 0 0
Ø 1 5- Ø 1 3 0
Ø 8 0- Ø 2 5 0
2 1. 8
5 0 0 2- 2 2 4
850
Ø 2 0- Ø 1 7 6
Ø 1 0 0- Ø 3 1 5
41
5 0 0 2- 2 2 6
550
Ø 2 0- Ø 2 0 6
Ø 1 0 0- Ø 3 5 0
5 3. 6
5 0 0 2- 2 2 7
550
Ø 2 5- Ø 2 5 0
Ø 1 1 8- Ø 4 0 0
56
5 0 0 2- 2 2 8
350
Ø 3 5- Ø 3 0 0
Ø 1 2 5- Ø 5 0 0
105
5 0 0 2- 2 2 9
280
Ø 5 0- Ø 4 0 0
Ø 1 6 0- Ø 6 3 0
162
5 0 0 2- 2 3 0
8- M 2 0
200
Ø 7 0- Ø 5 4 0
Ø 2 0 0- Ø 8 0 0
265
5 0 0 2- 2 3 1
8- M 2 0
150
Ø 1 0 0- 6 8 0
Ø 2 5 0- 1 0 0 0
536
5 0 0 2- 2 3 2
150
Ø 1 7 0- 9 0 0
Ø 2 5 0- 1 2 5 0
905
5 0 0 2- 2 3 3
4- M 2 0
L A T H E M A C HI N E A C C E S S O RI E S
E12
S C R OLL C H U C K
U nit: m m
3- J a w S cr oll C h u c k Ø B2
Ø A1
Ø B1
O. D. M A X.
Ø A2
Ø A3
Ø A4
I. D. M A X.
S P E CI FI C A TI O N S O R DE R N O.
Ø A1 2- 3 0 3- 4 0 3- 5 3 4- 7 4 4- 8 8 4- 8 8 5- 1 1 4 6- 1 4 3 1 0- 1 6 7 1 2- 2 0 1 1 4- 2 3 1
V S C- 3 V S C- 4 V S C- 5 V S C- 6 V S C- 7 V S C- 8 V S C- 9 V S C- 1 0 V S C- 1 2 V S C- 1 4 V S C- 1 6
I nt er c h a n g a bl e utili z ati o n of i nt er n al a n d e xt er n al h ar d j a w s. V S C t y p e s f e at ur e e c o n o mi c al a n d d ur a bl e, s uit a bl e f or m a s s pr o d u cti o n. Gri p pi n g a c c ur a c y of 0. 0 3 m m ( 0. 0 1 2i n c h) T.I. R.. T h e b o d y i s m a d e of M E E H A NI T E. It i s s uit a bl y u s e d f or hi g h s p e e d r e v ol uti o n a n d 3 ti m e s m or e d ur a bl e t h a n r e g ul ar c h u c k s.
S P E CI FI C A TI O N S Di m
U nit: m m
I nt er n al Gri p pi n g Ø B1 Ø B2 4 4- 6 4 2 4- 4 9 3 2- 6 3 5 3- 8 4 3 5- 8 3 6 2- 1 0 0 4 8- 1 1 4 8 6- 1 5 0 5 6- 1 3 3 9 8- 1 7 0 5 6- 1 3 3 9 8- 1 7 0 6 2- 1 6 5 1 1 1- 2 1 0 7 0- 2 0 3 1 3 0- 2 5 0 8 6- 2 3 5 1 4 2- 2 9 0 9 6- 2 8 1 1 6 8- 3 2 0 1 0 0- 3 1 9 1 9 4- 3 8 0
Gri p pi n g All o w a bl e Gri p pi n g M a x. Range H a n dl e I W ei g ht C O DE F or c e ( k gf. m) ( k g s) S p e e d T or q u e N O. O. D. I. D. ( k gf) (r. p. m.) ( k gf. m) Range Range
A
B
C
D
E
F
G
H
J
K
L
V S C- 3
85
46
60
73
16
4
3- M 6
36
11
15
7
3. 0
900
-
1. 9
2500
Ø 2Ø70
Ø 2 464 Ø
5 0 0 2001
V S C- 4
11 2 5 9
80
95
2 4 4. 5 3- M 8
42
14
17
8
4. 5
1200
-
3. 9
2500
Ø 3Ø90
Ø 3 2Ø84
5 0 0 2002
V S C- 5
1 3 2 6 0 1 0 0 1 1 5 3 2 4. 5 3- M 8
50
16
20
8
6. 5
1500
0. 0 1
4. 6
2500
Ø 3Ø 11 0
Ø 3 5Ø100
5 0 0 2003
V S C- 6
165 67 130 147 45
5 3- M 1 0 6 3
19
23
10
9. 0
3300
0. 0 3
7. 6
2000
Ø 4Ø160
Ø 4 8Ø150
5 0 0 2004
V S C- 7
1 9 2 7 6. 5 1 5 5 1 7 2 5 8
5 3- M 1 0 7 7 2 1. 5 2 8
11
1 1. 0
3600
0. 0 6
12
2000
Ø 4Ø180
Ø 5 6Ø170
5 0 0 2005
V S C- 8
2 0 0 7 6. 5 1 6 0 1 7 6 5 8
5 3- M 1 0 7 7 2 1. 5 2 8
11
1 1. 0
3600
0. 0 7
1 3. 3
2000
Ø 4Ø180
Ø 5 6Ø170
5 0 0 2006
V S C- 9
232 84 190 210 70
6 3- M 1 2 8 7
2 4 3 4. 5 1 2
1 5. 0
3900
0. 1 5
1 9. 3
2000
Ø 5Ø220
Ø 6 2Ø210
5 0 0 2007
V S C- 1 0
2 7 3 8 7 2 3 0 2 5 0 8 7 8. 5 3- M 1 2 9 8
28
39
12
1 9. 5
4800
0. 2 5
2 6. 2
1800
Ø 6Ø260
Ø 7 0Ø250
5 0 0 2008
V S C- 1 2
3 1 0 9 6 2 6 0 2 8 5 1 0 5 7 3- M 1 2 1 1 0 3 0
45
14
2 1. 0
5700
0. 5 8
3 7. 6
1800
Ø 1 0Ø300
Ø 8 6Ø290
5 0 0 2009
V S C- 1 4
3 5 5 1 1 2 3 0 0 3 2 8 1 2 7 7 6- M 1 2 1 3 2 3 5
50
15
2 3. 0
4500
-
5 7. 2
1500
Ø 1 2Ø350
Ø 9 6Ø230
5 0 0 2009 A
V S C- 1 6
4 0 5 1 2 2 3 4 5 3 7 5 1 6 0 8. 5 3- M 1 4 1 4 6 4 2
56
15
2 3. 0
4500
1. 7 5
8 0. 7
1500
Ø 1 4Ø400
Ø 1 0 0Ø380
5 0 0 2010
O R DE R N O.
E13
Gri p pi n g R a n g e E xt er n al Gri p pi n g Ø A2 Ø A3 Ø A4 2 9- 5 5 4 9- 7 0 2- 3 0 3 8- 7 4 6 4- 9 0 3- 4 0 4 3- 9 4 7 3- 1 1 0 3- 5 3 4 7- 1 2 0 9 1- 1 6 0 4- 7 4 6 0- 1 4 6 1 1 1- 1 8 0 4- 8 8 6 0- 1 4 6 1 1 1- 1 8 0 4- 8 8 6 4- 1 7 5 1 2 0- 2 2 0 5- 1 1 4 7 9- 2 1 9 1 4 5- 2 6 0 6- 1 4 3 8 8- 2 5 2 1 5 8- 3 0 0 1 0- 1 6 7 1 0 6- 3 0 3 1 8 9- 3 5 0 1 2- 2 0 1 1 1 1- 3 3 9 2 1 1- 4 0 0 1 4- 2 3 1
L A T H E M A C HI N E A C C E S S O RI E S
3- J a w P o w erf ul S cr oll C h u c k Ø B2
Ø A1
Ø B1
O. D. M A X.
Ø A2
Ø A3
I. D. M A X.
S P E CI FI C A TI O N S
V S K- 4 V S K- 5 V S K- 6 V S K- 7 V S K- 8 V S K- 9 V S K- 1 0 V S K- 1 2 V S K- 1 4 V S K- 1 6 V S K- 2 0
V S K t y p e s c h u c k s h a v e wi d er u nili z ati o n r a n g e; h ar d j a w s s uit a bl ef or h e a v y c utti n g; o pti o n al s oft j a w s s uit a bl e f or li g ht a n d pr e ci si o n c utti n g. H ar d j a w s c o ul d b e u s e d a s i nt er n al j a w s a n d e xt er n al j a w s. Gri p pi n g a c c ur a c y of 0. 0 3 m m( 0. 0 1 2i n c h) T.I. R. T h e b o d y i s m a d e of M E E H A NI T E. It i s s uit a bl y u s e d f or hi g h s p e e d r e v ol uti o n a n d 3 ti m e s m or e d ur a bl e t h a n r e g ul ar c h u c k s.
S P E CI FI C A TI O N S Di m
V S K r e v er si bl e t y p e
A
B
C
D
E
V S K- 4
11 2
58
80
95
2 4 4. 5 3- M 8
V S K- 5
132
60
1 0 0 1 1 5 3 2 4. 5 3- M 8
V S K- 6
165
67
O R DE R N O.
Ø A1 3- 3 6 3- 4 7 8- 7 4 8- 8 8 8- 8 8 1 1- 1 1 8 1 2- 1 4 2 1 5- 1 6 6 2 5- 2 0 2 3 0- 2 3 8 2 5- 3 6 6
F
G
H
J
K
All o w a bl e Gri p pi n g H a n dl e I W ei g ht S Mp ae x.e d L F or c e T or q u e ( k gf) ( k gf. m) ( k g s) (r. p. m.) ( k gf. m)
S C R OLL C H U C K
O R DE R N O.
U nit: m m
Gri p pi n g R a n g e E xt er n al I nt er n al Gri p pi n g Gri p pi n g Ø A2 Ø A3 Ø B1 Ø B2 4 2- 7 3 6 9- 1 0 0 6 0- 9 3 3 5- 6 6 4 5- 8 7 8 4- 1 2 3 4 3- 8 4 7 9- 1 2 2 5 9- 1 2 4 1 0 7- 1 6 0 5 5- 1 1 3 9 5- 1 5 0 7 0- 1 5 0 1 2 5- 1 8 0 6 2- 1 3 4 1 1 0- 1 7 0 7 0- 1 5 0 1 2 5- 1 8 0 6 2- 1 3 4 1 1 0- 1 7 0 8 0- 1 8 7 1 4 4- 2 2 0 7 0- 1 6 9 1 2 5- 2 1 0 8 8- 2 1 9 1 5 2- 2 6 0 8 0- 2 0 3 1 3 4- 2 5 0 1 0 3- 2 5 7 1 8 4- 3 0 0 9 0- 2 3 0 1 5 7- 2 9 0 1 2 0- 3 0 7 2 1 2- 3 5 0 1 1 0- 2 8 1 1 8 6- 3 2 0 1 2 7- 3 4 9 2 2 8- 4 0 0 1 1 0- 3 2 6 2 0 5- 3 8 0 1 2 3- 4 7 1 2 0 7- 4 8 0 1 2 5- 4 5 6 1 9 2- 4 6 0
Gri p pi n g Range C O DE N O. O. D. I. D. Range Range
4 7 1 9 3 1. 5 8
4. 5
1200
-
3. 4 5
2500
Ø 3Ø100
Ø 3 5Ø93
5 0 0 2028
57 24 36
8
6. 5
1500
-
5
2500
Ø 3Ø123
Ø 4 3122
5 0 0 2029
130 147 45
5 3- M 1 0 7 2 2 6 3 9 1 0
9. 0
3300
0. 0 3
9. 5
2000
Ø 8Ø160
Ø 5 5Ø150
5 0 0 2030
V S K- 7
1 9 2 7 6. 5 1 5 5 1 7 2 5 8
5 3- M 1 0 8 2 2 8 4 3 1 1
1 1. 0
3600
0. 0 6
1 2. 8
2000
Ø 8Ø180
Ø 6 2Ø170
5 0 0 2031
V S K- 8
2 0 0 7 6. 5 1 6 0 1 7 6 5 8
5 3- M 1 0 8 2 2 8 4 3 1 1
1 1. 0
3600
0. 0 7
1 4. 7
2000
Ø 8Ø180
Ø 6 2Ø170
5 0 0 2032
V S K- 9
232
84
1 9 0 2 1 0 7 0 5. 5 3- M 1 2 9 6 3 2 5 0 1 2
1 5. 0
3900
0. 1 6
2 0. 4
2000
Ø 1 1Ø220
Ø 7 0Ø210
5 0 0 2033
V S K- 1 0
273
87
2 3 0 2 5 0 8 7 5. 5 3- M 1 2 1 0 0 3 5 5 4. 5 1 2
1 9. 5
4800
0. 2 6
2 6. 7
1800
Ø 1 2Ø260
Ø 8 0Ø250
5 0 0 2034
V S K- 1 2
310
96
2 6 0 2 8 5 1 0 5 7 3- M 1 2 1 1 4 4 0 5 6 1 4
2 1. 0
5700
0. 5 8
3 9. 3
1800
Ø 1 5Ø300
Ø 9 0Ø290
5 0 0 2035
V S K- 1 4
3 5 5 1 1 2 3 0 0 3 2 8 1 2 7 7 6- M 1 2 1 3 9 4 5 7 0. 5 1 5
2 3. 0
4500
-
6 0. 7
1500
Ø 2 5Ø350
Ø 1 1 0Ø320
5 0 0 2035 A
V S K- 1 6
4 0 5 1 2 2 3 4 5 3 7 5 1 6 0 8 6- M 1 4 1 5 0 5 0 7 5 1 5
2 3. 0
4500
1. 7 2
8 2. 3
1500
Ø 3 0Ø400
Ø 1 1 0Ø380
5 0 0 2037
V S K- 2 0
5 0 0 1 4 0 4 2 0 4 5 8 2 0 5 5. 5 6 M- 1 4 1 4 0 5 5 8 4 1 9
-
-
-
1 4 5. 5
1000
Ø 2 5Ø480
Ø 1 2 5Ø460
5 0 0 2038
L A T H E M A C HI N E A C C E S S O RI E S
E14
C o m p a ct, S m all A n d Li g ht W ei g ht N o Wr e n c h R e q uir e d, T ur n T o L o o s e & L o c k B y Fi xi n g Ri n g St e el M a d e B o d y R e v er si bl e J a w s V L B K- S eri e s I s L at e st V erti c al Cl a m pi n g D e si g n F or C N C, Milli n g M a c hi n e A n d M a c hi ni n g C e nt er.
DI M E N SI O N S Gri p pi n g R a n g e
W ei g ht ( k g s)
C O D E N O.
ø23~ø58
1. 2
5 0 0 2- 1 3 0
ø1~ø81
ø31~ø70
2. 9
5 0 0 2- 1 3 1
ø1~ø100
ø36~ø90
4. 6
5 0 0 2- 1 3 2
21
1 1. 5 ø 1. 5 ~ ø 1 1 6
ø43~ø106
6. 2
5 0 0 2- 1 3 3
26
15
ø52~ø148
11
5 0 0 2- 1 3 4
O R D E R N O.
A
B
C
D
E
F
G
H
I
J
K
L
V L B K- 2
11 8
28
63
100
16
4
4- M 5 X 0. 8 P
27
26
8
13
V L B K- 3
143
37
85
11 6
20
4
4- M 6 X 1. 0 P
35
32
V L B K- 4
168
39
11 0 1 4 0
26
5
4- M 6 X 1. 0 P
42
V L B K- 5
202
45
130 168
32
6
4- M 8 X 1. 2 5 P
V L B K- 6
248
52
160 208
50
8
4- M 1 0 X 1. 5 P
O. D. Range
I. D. Range
8
ø 0. 8 ~ ø 6 3
11
1 5 1 0. 5
40
14
19
10
50
49
16
65
70
19
ø 1. 5 ~ ø 1 6 0
6- J a w A wl T y p e C h u c k s
S P E CI FI C A TI O N S
M a x. Gri p pi n g Di a m et er
U nit: m m
O R D E R N O.
A
B
C
D
E
F
G
H
J
K
L
Gr o s s W ei g ht ( k g s)
M a x. S p e e d (r. p. m.)
V A S- 4
11 2
58
80
95
32
4. 5
3- M 8
45
14
46
8
4. 2
1200
Ø 2- 3 2
5 0 0 5- 0 1 1
V A S- 6
167
65
130 147
60
5
3- M 1 0 6 6
19
43
10
9. 2
1200
Ø 3- 6 0
5 0 0 5- 0 1 2
Q u alit y st a n d ar d F or L at h e C h u c k A c c ur a c y O R D E R N O.
T E STIT E M R A DI A L R U N O U T
E15
L A T H E M A C HI N E A C C E S S O RI E S
O. D. Cl a m pi n g
C O DE N O.
M a c hi ni n g J a w C h u c k
(j a w l o c k s) t o f or m t h e s oft-j a w s. A bl e t o gri p s q u ar e w or k s b y u si n g t hi s c h u c k a s a t w o- w a y j a w u nit L o n git u di n al w or k s c a n al s e b e gri p p e d b y u si n g t h e b or e of t hi s c h u c k. A d u st c o v er i s pr o vi d e d a n d t hi s k e e p s t h e s h a vi n g s fr o m e nt eri n g t h e m a c hi n e. T h e h a n dl e i s s et o n t h e f a c e a n d d o e s n ot i nt erf er e wit h t h e t a bl e. A n u m b er of c h u c k s c a n b e u s e d t o g et h er . M A X. G RI P PI N G DI A M E T E R
Gri p pi n g F or c e ( k gf)
W EI G H T ( k g s)
C O D E N O.
Ø 5 5- Ø 1 2 8
900
1 3. 5
5 0 0 2- 2 4 0
Ø 5- Ø 1 6 2
Ø 6 2- Ø 1 6 2
1620
2 1. 5
5 0 0 2- 2 4 1
7 2 1 2 2 5 0 4- M 1 4
Ø 6- Ø 2 0 0
Ø 7 2- Ø 2 0 0
1800
3 6. 1
5 0 0 2- 2 4 2
8 5 1 4 1 5 6 4- M 1 6
Ø 1 0- Ø 2 6 5
Ø 9 0- Ø 2 6 5
2250
6 2. 8
5 0 0 2- 2 4 3
O R DE R N O.
A
D
E
G
I
J
K
L
M
V M J- 6
165 215 144 18
25
26 130 40
18
57
96
3 9 4- M 1 0
Ø 4- Ø 1 2 8
V M J- 8
200 250 174 18
25
28 160 55
20
6 5 1 0 8 4 3 4- M 1 2
V M J- 1 0
250 310 218 18
30
32 200 70
22
V M J- 1 2
310 380 274 22
35
40 260 100 25
B
C
H
N
C L A M PI N G DI A P R O PI N G DI A
S u p er T hi n C h u c k s
T h e a n gl e b et w e e n H A N D L E A N D B A S E O F C H U C K i s 3 0º d e gr e e, T h er e F or e, it i s m u c h m or e c o n v e ni e nt f or H A N D L E r ot ati o n. T hi s P O W E R S U P E R T HI N d e si g n of c h u c k m a y i n cr e a s e t h e all o w a bl e l e n gt h of m a c hi ni g o p er ati o n. P O W E RF UL T Y P E
d e si g n.
S P E CI FI C A TI O N S
U nit: m m
Di m
A1
A2
M
Gri p pi n g F or c e ( k gf)
W ei g ht ( k g s)
6 3- M 1 0 6 8
26 40 10 13
1800
1 2. 4
60
6 3- M 1 0 8 2
2 8 4 3 11 1 3
2250
80
6 3- M 1 2 9 3
32 52 12 16
3150
2 8 5 1 0 5 5 3- M 1 2 1 1 8 4 0 5 9 1 4 1 8
3670
O R DE R N O. V N B K- 6
B1 B2
C
D
E
F
220 170 58 18
130
147
45
V N B K- 8
270 210 65 20
155
172
V N B K- 1 0
315 255 73 20
190
210
V N B K- 1 2
370 305 80 22
250
G
H
J
K
L
Gri p pi n g R a n g e O. D. R a n g e I. D. R a n g e
C O D E N O.
Ø 8- 1 6 0
Ø 4 8- 1 5 0
5 0 0 2- 0 7 0
2 0. 2
Ø 1 1- 2 0 0
Ø 6 2- 1 9 0
5 0 0 2- 0 7 1
3 0. 5
Ø 1 2- 2 5 0
Ø 7 2- 2 4 0
5 0 0 2- 0 7 2
4 6. 8
Ø 1 5- 3 0 0
Ø 8 6- 2 9 0
5 0 0 2- 0 7 3
L A T H E M A C HI N E A C C E S S O RI E S
E16
T HI N C H U C K
S P E CI FI C A TI O N S
V erti c al M a c hi ni n g C h u c k s
C o n v ert 3/ 4 J a w s c h u c k i nt o cl a m pi n g c h u c k. V erti c al c utti n g / l o c ki n g.
wit h p o w erf ul 4 J a w c h u c k
vi s e b o d y. 3 J a w s c a n f or r o u n d w or k pi e c e. 4 J a w s c a n f or s q u ar e w or k pi e c e & r o u n d w or k pi e c e. T h e h a n dl e i s s et o n t h e f a c e a n d d o e s n ot i nt erf er e wit h t h e t a bl e. A n u m b er of c h u c k s c a n b e u s e d t o g et h er. S uit f or M C c e nt er, Milli n g & B ori n g m a c hi n e. E a s y t o e x c h a n g e 3/ 4 J a w s c h u c k.
O R D E R N O.
C O D E N O.
V M J- S 1 2
5 0 0 2- 2 6 7
wit h V P S- A K( s e e P a g e E 1 0) O R D E R N O.
C O D E N O.
V M J- S 1 2 A K
5 0 0 2- 2 7 3
VS K TYPE O R D E R N O.
A
B
V M J- 1 5 0
219 83
C
D
U nit: m m
I
J
K
L
M
N
P
Q
R
G n p pi n g R a n g e
W ei g ht C O D E N O. ( k g s)
E
F
H
90 147 45
20
72 150 26
39 215 18 200 165 175 67
Ø 8- Ø 1 6 0
Ø 5 5- Ø 1 5 0
1 7. 7
5 0 0 2- 2 6 0
V M J- 2 0 0
254 83 120 176 58
20
82 150 28
4 3 2 5 0 1 8 2 0 0 2 0 0 2 0 0 7 6. 5
Ø 8- Ø 1 8 0
Ø 6 2- Ø 1 7 0
2 4. 4
5 0 0 2- 2 6 1
V M J- 2 5 0
327 83 190 250 87
24 100 150 35
50 324 18 200 273 283 87
Ø 1 2- Ø 2 6 0
Ø 8 0- Ø 2 5 0
4 8. 7
5 0 0 2- 2 6 2
V M J- 3 0 0
3 6 4 8 3 2 2 0 2 8 5 1 0 5 2 4 11 4 1 5 0 4 0
56 360 18 200 310 320 96
Ø 1 5- Ø 3 0 0
Ø 9 0- Ø 2 9 0
6 3. 7
5 0 0 2- 2 6 3
O. D R a n g e I. D R a n g e
S P E CI FI C A TI O N S O R D E R N O.
A
V M J- B 1 5 0
219 83
C
D
J
K
L
M
N
P
Q
R
W ei g ht C O D E N O. ( k g s)
F
H
90 147 45
20
72 150 19
39 215 18 200 165 175 67
Ø 3- Ø 1 6 0
Ø 4 8- Ø 1 5 0
1 8. 5
5 0 0 2- 2 7 5
V M J- B 2 0 0
254 83 120 176 58
20
8 2 1 5 0 2 1. 5 4 3 2 5 0 1 8 2 0 0 2 0 0 2 0 0 7 6. 5
Ø 4- Ø 1 8 0
Ø 5 6- Ø 1 7 0
2 4. 9
5 0 0 2- 2 7 6
V M J- B 2 5 0
327 83 190 250 87
24 100 150 28
50 324 18 200 273 283 87
Ø 6- Ø 2 6 0
Ø 7 0- Ø 2 5 0
50
5 0 0 2- 2 7 7
V M J- B 3 0 0
3 6 4 8 3 2 2 0 2 8 5 1 0 5 2 4 11 4 1 5 0 3 0
56 360 18 200 310 320 96
Ø 1 0- Ø 3 0 0
Ø 8 6- Ø 2 9 0
6 6. 5
5 0 0 2- 2 7 8
L A T H E M A C HI N E A C C E S S O RI E S
I
G n p pi n g R a n g e
E
E17
B
U nit: m m
O. D R a n g e I. D R a n g e
S oft J a w F or S K- T y p e C h u c k C a n f or j a p a n e s e br a n d 3 j a w c h u c k KI T A G A W A, H O W A , VI C T O R
3 P C S/ S E T Di m
C- 1
C- 2
C- 3
C- 4
C- 5
C- 6
C- 7
C- 8
C- 9
C- 1 0
C- 1 1
C- 1 2
C- 1 3
W ei g ht ( k g s)
C O DE N O.
V S J- 4
52
19
30
24
14
11
7
21
M6
9. 5 3
7. 9 4
2. 5
3
0. 4 5
5 0 0 2- 2 9 8
V S J- 5
62
24
35
32
15
14
9
24
M8
1 2. 6 8
7. 9 4
3
3. 5
0. 9
5 0 0 2- 2 9 9
V S J- 6
75
26
38
3 8. 1
18
14
8. 5
27
M8
1 2. 6 8
7. 9 4
3
3. 5
1. 3
5 0 0 2- 3 0 0
V S J- 7
95
31
48
4 4. 4 5
25
17
11
35
M10
1 2. 6 8
7. 9 4
3
3. 5
3. 4
5 0 0 2- 3 0 1
V S J- 8
95
31
48
4 4. 4 5
25
17
11
35
M10
1 2. 6 8
7. 9 4
3
3. 5
2. 7
5 0 0 2- 3 0 2
V S J- 9
11 0
37
48
5 3. 9 8
28
19
13
36
M12
1 9. 0 3
1 2. 7
3
3. 5
3. 7
5 0 0 2- 3 0 3
V S J- 1 0
11 0
37
48
5 3. 9 8
28
19
13
36
M12
1 9. 0 3
1 2. 7
3
3. 5
3. 7
5 0 0 2- 3 0 4
V S J- 1 2
125
40
54
6 3. 5
32
19
13
4 0. 5
M12
1 9. 0 3
1 2. 7
3
3. 5
5. 3
5 0 0 2- 3 0 5
V S J- 1 6
160
50
70
7 6. 2
42
25
17
48
M16
1 9. 0 3
1 2. 7
6
5. 5
1 0. 6
5 0 0 2- 3 0 6
ORDER N O.
T H E S P E CI A L O F H EI G H T ( C- 3) F O R V S J- T Y P E I S A V AI L A B L E O R D E R N O.
M O DEL
H EI G H T
C O D E N O.
O R D E R N O.
M O DEL
H EI G H T
C O D E N O.
V S J- 6- 5
V S J- 6
50 H
5 0 0 2- 3 0 0 5
V S J- 1 0- 5
V S J- 1 0
50 H
5 0 0 2- 3 0 4 5
V S J- 6- 6
V S J- 6
60 H
5 0 0 2- 3 0 0 6
V S J- 1 0- 6
V S J- 1 0
60 H
5 0 0 2- 3 0 4 6
V S J- 6- 7
V S J- 6
70 H
5 0 0 2- 3 0 0 7
V S J- 1 0- 7
V S J- 1 0
70 H
5 0 0 2- 3 0 4 7
V S J- 6- 8
V S J- 6
80 H
5 0 0 2- 3 0 0 8
V S J- 1 0- 8
V S J- 1 0
80 H
5 0 0 2- 3 0 4 8
V S J- 6- 9
V S J- 6
90 H
5 0 0 2- 3 0 0 9
V S J- 1 0- 9
V S J- 1 0
90 H
5 0 0 2- 3 0 4 9
V S J- 8- 5
50 H
5 0 0 2- 3 0 2 5
V S J- 1 0- 1 0
V S J- 1 0
100 H
5 0 0 2- 3 0 4 1 0
60 H
5 0 0 2- 3 0 2 6
V S J- 1 0- 1 2
V S J- 1 0
120 H
5 0 0 2- 3 0 4 1 2
70 H
5 0 0 2- 3 0 2 7
V S J- 1 0- 1 3
V S J- 1 0
130 H
5 0 0 2- 3 0 4 1 3
60 H
5 0 0 2- 3 0 5 6
5 0 0 2- 3 0 2 8
V S J- 1 2- 6
V S J- 1 2
80 H
V S J- 1 2- 7
V S J- 1 2
70 H
5 0 0 2- 3 0 5 7
V S J- 8- 9
V S J- 7 V S J- 8 V S J- 7 V S J- 8 V S J- 7 V S J- 8 V S J- 7 V S J- 8 V S J- 7 V S J- 8
90 H
5 0 0 2- 3 0 2 9
V S J- 1 2- 8
V S J- 1 2
80 H
5 0 0 2- 3 0 5 8
V S J- 9- 5
V S J- 9
50 H
5 0 0 2- 3 0 3 5
V S J- 1 2- 9
V S J- 1 2
90 H
5 0 0 2- 3 0 5 9
V S J- 9- 6
V S J- 9
60 H
5 0 0 2- 3 0 3 6
V S J- 1 2- 1 0
V S J- 1 2
100 H
5 0 0 2- 3 0 5 1 0
V S J- 9- 7
V S J- 9
70 H
5 0 0 2- 3 0 3 7
V S J- 1 2- 1 2
V S J- 1 2
120 H
5 0 0 2- 3 0 5 1 2
V S J- 9- 8
V S J- 9
80 H
5 0 0 2- 3 0 3 8
V S J- 1 2- 1 3
V S J- 1 2
130 H
5 0 0 2- 3 0 5 1 3
V S J- 9- 9
V S J- 9
90 H
5 0 0 2- 3 0 3 9
V S J- 1 2- 1 5
V S J- 1 2
150 H
5 0 0 2- 3 0 5 1 5
V S J- 9- 1 0
V S J- 9
100 H
5 0 0 2- 3 0 3 1 0
V S J- 1 6- 1 0
V S J- 1 6
100 H
5 0 0 2- 3 0 6 1 0
V S J- 9- 1 2
V S J- 9
120 H
5 0 0 2- 3 0 3 1 2
V S J- 1 6- 1 2
V S J- 1 6
120 H
5 0 0 2- 3 0 6 1 2
V S J- 8- 6 V S J- 8- 7 V S J- 8- 8
L A T H E M A C HI N E A C C E S S O RI E S
E18
P O WE R C H U C K
U nit: m m
S oft J a w F or H y dr a uli c P o w er C h u c k s
F or J a p a n e s e br a n d JI S & KI T A G A W A
STA N DA R D 3 P C S/ S E T
A L U MI NI U M
S T E EL:
V H C- 0 5 ~ 1 5 PI T C H 1. 5 V H C- 2 4 PI T C H 3. 0
M A T E RI A L: S T E E L
U nit: m m
C- 1
C- 2
C- 3
C- 4
C- 5
C- 6
C- 7
C- 8
C- 9
C- 1 0
C- 1 1
C- 1 2
C- 1 3
V H C- 0 5
62
25
30
10
5
9
14
39
1 3. 5
9
21
M8
5
W ei g ht ( k g s) 0. 9
V H C- 0 6
73
31
36
12
5
15
20
38
17
11
23
M10
14
1. 6
5 0 0 2- 3 3 1
V H C- 0 8
95
35
37
14
5
24
25
46
19
13
22
M12
16
2. 4
5 0 0 2- 3 3 2
V H C- 1 0
11 0
40
42
16
5
30
30
50
19
13
27
M12
18
3. 7
5 0 0 2- 3 3 3
V H C- 1 2
130
50
50
21
5
39
30
61
25
17
30
M16
23
6. 4
5 0 0 2- 3 3 4
V H C- 1 5
165
62
62
22
8
37
43
85
32
21
38
M20
-
1 2. 7
5 0 0 2- 3 3 5
V H C- 1 2- 1
130
50
50
18
5
39
30
61
23
15
30
M14
23
6. 2 5
5 0 0 2- 3 3 6
V H C- 1 5- 1
165
62
62
2 5. 5
5
37
43
85
32
21
38
M20
-
13
5 0 0 2- 3 3 7
V H C- 2 4
180
64
70
25
9
40
60
80
32
21
45
M20
-
17
5 0 0 2- 3 3 8
W ei g ht ( k g s)
C O DE N O. 5 0 0 2- 2 4 5 A
Or d er N o.
Di m
M A T E RI A L : A L U MI NI U M Di m
C- 1
C- 2
C- 3
C- 4
C- 5
C- 6
C- 7
C- 8
C- 9
C- 1 0
C- 1 1
C- 1 2
C- 1 3
V H C- 5 A L
62
25
30
10
5
10
14
38
14
9
20
M8
3
Or d er N o.
C O DE N O. 5 0 0 2- 3 3 0
V H C- 6 A L
73
31
36
12
5
15
20
38
17
11
23
M10
14
V H C- 8 A L
95
35
37
14
5
24
25
46
19
13
22
M12
16
0. 8 4
5 0 0 2- 2 5 0 A
V H C- 1 0 A L
11 0
40
42
16
5
30
30
50
19
13
27
M12
18
1. 3 1
5 0 0 2- 2 5 1 A
V H C- 1 2 A L
130
50
50
21
5
40
30
60
25
17
30
M16
23
5 0 0 2- 2 4 7 A
V H C- 1 5 A L
165
62
62
22
8
37
43
85
32
21
37
M20
-
5 0 0 2- 2 4 8 A
V H C- 2 4 A L
180
64
70
25
9
40
60
80
32
21
45
M20
-
5 0 0 2- 2 4 9 A
E19
L A T H E M A C HI N E A C C E S S O RI E S
5 0 0 2- 2 4 6 A
S oft J a w F or H y dr a uli c P o w er C h u c k s
F or J a p a n e s e br a n d JI S & KI T A G A W A
T H E S P E CI A L O F H EI G H T ( C- 3) F O R V H C- T Y P E I S A V AI L A B L E M A T E RI A L : A L U MI NI U M H EI G H T
C O DE N O.
O R DE R N O.
TYPE
H EI G H T
V H C- 1 0
120 H
5 0 0 2- 3 3 3 1 2
V H C- 0 5- 5- A L
V H C- 0 5 A L
50 H
5 0 0 2- 2 4 8 5
V H C- 1 0- 1 3
V H C- 1 0
130 H
5 0 0 2- 3 3 3 1 3
V H C- 0 5- 6- A L
V H C- 0 5 A L
60 H
5 0 0 2- 2 4 8 6
5 0 0 2- 3 3 0 7
V H C- 1 0- 1 4
V H C- 1 0
140 H
5 0 0 2- 3 3 3 1 4
V H C- 0 5- 7- A L
V H C- 0 5 A L
70 H
5 0 0 2- 2 4 8 7
80 H
5 0 0 2- 3 3 0 8
V H C- 1 0- 1 5
V H C- 1 0
150 H
5 0 0 2- 3 3 3 1 5
V H C- 0 5- 8- A L
V H C- 0 5 A L
80 H
5 0 0 2- 2 4 8 8
V H C- 0 6
50 H
5 0 0 2- 3 3 1 5
V H C- 1 0- 1 6
V H C- 1 0
160 H
5 0 0 2- 3 3 3 1 6
V H C- 0 6- 5- A L
V H C- 0 6 A L
50 H
5 0 0 2- 2 4 9 5
V H C- 0 6- 6
V H C- 0 6
60 H
5 0 0 2- 3 3 1 6
V H C- 1 0- 1 8
V H C- 1 0
180 H
5 0 0 2- 3 3 3 1 8
V H C- 0 6- 7
V H C- 0 6
70 H
5 0 0 2- 3 3 1 7
V H C- 0 6- 6- A L
V H C- 0 6 A L
60 H
5 0 0 2- 2 4 9 6
V H C- 1 0- 2 0
V H C- 1 0
200 H
5 0 0 2- 3 3 3 2 0
V H C- 0 6- 8
V H C- 0 6
80 H
5 0 0 2- 3 3 1 8
V H C- 0 6- 7- A L
V H C- 0 6 A L
70 H
5 0 0 2- 2 4 9 7
V H C- 1 0- 2 2
V H C- 1 0
220 H
5 0 0 2- 3 3 3 2 2
V H C- 0 6- 9
V H C- 0 6
90 H
5 0 0 2- 3 3 1 9
80 H
5 0 0 2- 2 4 9 8
V H C- 1 2 1 8 S L O T
60 H
5 0 0 2- 3 3 6 6
V H C- 0 6- 8- A L
V H C- 0 6 A L
V H C- 1 2- 6 A
V H C- 0 6- 1 0
V H C- 0 6
100 H
5 0 0 2- 3 3 2 0
V H C- 1 2- 7 A
50 H
5 0 0 2- 2 5 0 5
70 H
5 0 0 2- 3 3 6 7
V H C- 0 8- 5- A L
V H C- 0 8 A L
V H C- 1 2 1 8 S L O T
V H C- 0 6- 1 1
V H C- 0 6
11 0 H
5 0 0 2- 3 3 2 1
V H C- 1 2- 8 A
V H C- 1 2 1 8 S L O T
80 H
5 0 0 2- 3 3 6 8
V H C- 0 8- 6- A L
V H C- 0 8 A L
60 H
5 0 0 2- 2 5 0 6
V H C- 0 6- 1 2
V H C- 0 6
120 H
5 0 0 2- 3 3 2 2
V H C- 1 2- 9 A
V H C- 1 2 1 8 S L O T
90 H
5 0 0 2- 3 3 6 9
V H C- 0 8- 7- A L
V H C- 0 8 A L
70 H
5 0 0 2- 2 5 0 7
V H C- 0 6- 1 3
V H C- 0 6
130 H
5 0 0 2- 3 3 2 3
100 H
5 0 0 2- 3 3 6 1 0
V H C- 0 8- 8- A L
V H C- 0 8 A L
80 H
5 0 0 2- 2 5 0 8
V H C- 0 6- 1 5
V H C- 1 2- 1 0 A V H C- 1 2 1 8 S L O T
V H C- 0 6
150 H
5 0 0 2- 3 3 2 4
V H C- 0 8- 5
V H C- 0 8
50 H
5 0 0 2- 3 3 2 5
V H C- 0 8- 6
V H C- 0 8
60 H
5 0 0 2- 3 3 2 6
V H C- 0 8- 7
V H C- 0 8
70 H
5 0 0 2- 3 3 2 7
V H C- 0 8- 8
V H C- 0 8
80 H
5 0 0 2- 3 3 2 8
V H C- 0 8- 9
V H C- 0 8
90 H
5 0 0 2- 3 3 2 9
V H C- 0 8- 1 0
V H C- 0 8
100 H
5 0 0 2- 3 3 3 0
V H C- 0 8- 1 1
V H C- 0 8
11 0 H
5 0 0 2- 3 3 3 1
V H C- 0 8- 1 2
V H C- 0 8
120 H
5 0 0 2- 3 3 3 2
V H C- 0 8- 1 3
V H C- 0 8
130 H
5 0 0 2- 3 3 3 3
V H C- 0 8- 1 4
V H C- 0 8
140 H
5 0 0 2- 3 3 3 4
O R DE R N O.
H EI G H T
C O DE N O.
O R DE R N O.
TYPE
TYPE
V H C- 0 5- 5
V H C- 0 5
50 H
5 0 0 2- 3 3 0 5
V H C- 1 0- 1 2
V H C- 0 5- 6
V H C- 0 5
60 H
5 0 0 2- 3 3 0 6
V H C- 0 5- 7
V H C- 0 5
70 H
V H C- 0 5- 8
V H C- 0 5
V H C- 0 6- 5
V H C- 0 8- 1 5 V H C- 0 8- 1 6 V H C- 0 8- 1 8 V H C- 0 8- 2 0
V H C- 0 8 V H C- 0 8 V H C- 0 8 V H C- 0 8
150 H 160 H 180 H 200 H
C O DE N O.
V H C- 1 2- 6
V H C- 1 2 2 1 S L O T
60 H
5 0 0 2- 3 3 4 6
V H C- 1 0- 5- A L
V H C- 1 0 A L
50 H
5 0 0 2- 2 5 1 5
V H C- 1 2- 8
V H C- 1 2 2 1 S L O T
80 H
5 0 0 2- 3 3 4 8
V H C- 1 0- 6- A L
V H C- 1 0 A L
60 H
5 0 0 2- 2 5 1 6
V H C- 1 2- 1 0
V H C- 1 2 2 1 S L O T
100 H
5 0 0 2- 3 3 4 1 0
V H C- 1 0- 7- A L
V H C- 1 0 A L
70 H
5 0 0 2- 2 5 1 7
V H C- 1 2- 1 1
V H C- 1 2 2 1 S L O T
11 0 H
5 0 0 2- 3 3 4 1 1
V H C- 1 0- 8- A L
V H C- 1 0 A L
80 H
5 0 0 2- 2 5 1 8
V H C- 1 2- 1 2
V H C- 1 2 2 1 S L O T
120 H
5 0 0 2- 3 3 4 1 2
V H C- 1 0- 9- A L
V H C- 1 0 A L
90 H
5 0 0 2- 2 5 1 9
V H C- 1 2- 1 3
V H C- 1 2 2 1 S L O T
130 H
5 0 0 2- 3 3 4 1 3
V H C- 1 0- 1 0- A L
V H C- 1 0 A L
100 H
5 0 0 2- 2 5 1 1 0
V H C- 1 2- 1 4
V H C- 1 2 2 1 S L O T
140 H
5 0 0 2- 3 3 4 1 4
V H C- 1 2- 6 A- A L
V H C- 1 2 A L 18 SL OT
60 H
5 0 0 2- 2 4 5 6 A
V H C- 1 2- 1 5
V H C- 1 2 2 1 S L O T
150 H
5 0 0 2- 3 3 4 1 5
V H C- 1 2- 7 A- A L
V H C- 1 2 A L 18 SL OT
70 H
5 0 0 2- 2 4 5 7 A
V H C- 1 2- 1 6
V H C- 1 2 2 1 S L O T
160 H
5 0 0 2- 3 3 4 1 6
V H C- 1 2- 8 A- A L
80 H
5 0 0 2- 2 4 5 8 A
V H C- 1 2- 1 7
V H C- 1 2 A L 18 SL OT
V H C- 1 2 2 1 S L O T
170 H
5 0 0 2- 3 3 4 1 7
V H C- 1 2- 9 A- A L
90 H
5 0 0 2- 2 4 5 9 A
V H C- 1 2- 1 8
V H C- 1 2 2 1 S L O T
180 H
5 0 0 2- 3 3 4 1 8
V H C- 1 2 A L 18 SL OT
5 0 0 2- 2 4 5 1 0 A
V H C- 1 2 2 1 S L O T
190 H
5 0 0 2- 3 3 4 1 9
V H C- 1 2 A L 18 SL OT
100 H
V H C- 1 2- 1 9
V H C- 1 2- 1 0 A- A L
60 H
5 0 0 2- 2 4 5 6
V H C- 1 2 2 1 S L O T
200 H
5 0 0 2- 3 3 4 2 0
V H C- 1 2 A L 21 SL OT
5 0 0 2- 3 3 3 4 C
V H C- 1 2- 2 0
V H C- 1 2- 6- A L
V H C- 1 5
70 H
5 0 0 2- 3 3 5 7
V H C- 1 2 A L 21 SL OT
70 H
5 0 0 2- 2 4 5 7
5 0 0 2- 3 3 3 4 D
V H C- 1 5- 7
V H C- 1 2- 7- A L
80 H
5 0 0 2- 3 3 5 8
V H C- 1 2- 8- A L
V H C- 1 2 A L 21 SL OT
80 H
5 0 0 2- 2 4 5 8
V H C- 1 2- 9- A L
V H C- 1 2 A L 21 SL OT
90 H
5 0 0 2- 2 4 5 9
V H C- 1 2- 1 0- A L
V H C- 1 2 A L 21 SL OT
100 H
5 0 0 2- 2 4 5 1 0
5 0 0 2- 3 3 3 4 A 5 0 0 2- 3 3 3 4 B
V H C- 1 0- 5
V H C- 1 0
50 H
5 0 0 2- 3 3 3 5
V H C- 1 5- 8
V H C- 1 5
V H C- 1 0- 6
V H C- 1 0
60 H
5 0 0 2- 3 3 3 6
V H C- 1 5- 9
V H C- 1 5
90 H
5 0 0 2- 3 3 5 9
V H C- 1 0- 7
V H C- 1 0
70 H
5 0 0 2- 3 3 3 7
V H C- 1 5- 1 0
V H C- 1 5
100 H
5 0 0 2- 3 3 5 1 0
V H C- 1 0- 8
V H C- 1 0
80 H
5 0 0 2- 3 3 3 8
V H C- 1 5- 1 2
V H C- 1 5
120 H
5 0 0 2- 3 3 5 1 2
V H C- 1 5- 7- A L
V H C- 1 5 A L
70 H
5 0 0 2- 2 4 6 7
V H C- 1 0- 9
V H C- 1 0
90 H
5 0 0 2- 3 3 3 9
V H C- 1 5- 1 5
V H C- 1 5
150 H
5 0 0 2- 3 3 5 1 5
V H C- 1 5- 8- A L
V H C- 1 5 A L
80 H
5 0 0 2- 2 4 6 8
V H C- 1 0- 1 0
V H C- 1 0
100 H
5 0 0 2- 3 3 3 1 0
V H C- 1 5- 1 8
V H C- 1 5
180 H
5 0 0 2- 3 3 5 1 8
V H C- 1 5- 9- A L
V H C- 1 5 A L
90 H
5 0 0 2- 2 4 6 9
V H C- 1 0- 1 1
V H C- 1 0
11 0 H
5 0 0 2- 3 3 3 1 1
V H C- 1 5- 2 0
V H C- 1 5
200 H
5 0 0 2- 3 3 5 2 0
V H C- 1 5- 1 0- A L
V H C- 1 5 A L
100 H
5 0 0 2- 2 4 6 1 0
L A T H E M A C HI N E A C C E S S O RI E S
E20
P O WE R C H U C K
M A T E RI A L: S T E E L
S oft J a w F or mi n g Ri n g T h e si z e c a n b e a dj u st e d a g ai n st t h e h eli c al sl ot.
Bi a s pi n c a n b e r ot at e d 1 8 0 d e g r e e f o r diff er e nt si z e t o e xt e n d a cl a m pi n g r a n g e. D o n’t n e e d t o drill n e w h ol e. T h e h ol e o n t h e s oft j a w s c a n b e u s e d dir e ctl y f or bi a s pi n. T h e m at eri al,i s h ar d e n e d a n d gr o u n d, c a n l a st f or a l o n g ti m e.
FAET U RES
C H U C K N OTI N CL U D E D
F or mi n g ri n g i s a v ail a bl e f or 5 , 6 , 8 , 1 0 & 1 2 p o w er c h u c k. T h e cl a m pi n g f or c e i s i n cr e a si n g. t h e r o u n d n e s s a n d vi br ati o n c a u s e d b y e c c e ntri cit y c a n b e i m pr o v e d. T h e c utti n g e a s y a n d e n d ur a bl e. M or e i m pr o v e m e nt f or u s e d c h u c k t o h a v e b ett er a c c ur a c y & str o n g cl a m pi n g f or c e . F or C N C L at h e.
I N S T R U C TI O N
B e c a u s e t h e f or mi n g ri n g i s u s e d f or c utti n g s oft j a w s b y cl a m pi n g a n d wit h e xt e n di n g. t hr o u g h- h ol e c o ul d i n cr e a s e t h e a c c ur a c y of cl a m pi n g
O R D E R N O. S UI T T O S K- C H U C K SI Z E 5 V F R- 0 5 6 V F R- 0 6 8 V F R- 0 8 10 V F R- 1 0 12 V F R- 1 2 15 V F R- 1 5
ri n g. C a u s e b a d a c c ur a c y. T h e cl a m pi n g f or c e i s n ot st a bl e & vi br ati o n will o c c ur.
H 12 12 12 12 15 20
D1 140 168 218 258 316 380
D2 60 80 11 5 150 188 230
S1 12 12 17 15 21 23
S2 28 32 36 40 50 52
G 10 10 10 10 10 12
R o u n d Di s c S oft J a w
K GS 1 1. 5 2. 4 3 5 1 0. 1
C O D E N O. 5 0 0 2- 3 6 0 5 0 0 2- 3 6 1 5 0 0 2- 3 6 2 5 0 0 2- 3 6 3 5 0 0 2- 3 6 4 5 0 0 2- 3 6 5
Pi e J a w ar e s uit a bl e f or e xtr a bi g g er o ut er di a. (t hi n w all) T o s uit kit a g a w a a n d ot h er f a m o u s c h u c k s. Pi e s h s p e s oft j a w
T hi s t y p e of s oft j a w c a n c o v er t h e o ut er di e of w or k pi e c e t o d e cr e a s e d ef or m ati o n a n d i n cr e a s e t h e a c c ur a c y. F or e x a m pl e : V F R D- 8 c a n h ol d p art s wit h o ut er di a. of 2 0 0 m m.
U nit: m m
O R D E R N O.
D
A
B
C
H
T H RE A D
V F R D- 6 V F R D- 8 V F R D- 9 V F R D- 1 0 V F R D- 1 2
169 200 200 250 300
12 14 14 16 21
20 25 25 30 30
4 9. 5 51 51 65 81
36 40 50 50 50
M10 M12 M12 M12 M16
L A T H E M A C HI N E A C C E S S O RI E S
O 1 3. 5 1 6. 5 1 8. 5 1 8. 5 2 1. 5 31
M A T E RI A L : S T E E L S 4 5 C
FAET U RES
E21
H1 9 9 9 9 9 16
T H R U H OLE 25
S E R R A TI O N PI T C H
W EI G H T ( k g) 6. 1 2 9. 6 4 1 3. 2 1 8. 1 2 5. 8
C O D E N O. 5 0 0 2- 3 8 1 5 0 0 2- 3 8 2 5 0 0 2- 3 8 3 5 0 0 2- 3 8 4 5 0 0 2- 3 8 5
T N ut F or H y dr a uli c C h u c k F or J a p a n e s e br a n d J Z S & KI T A G A W A
F or Kit a g a w a B- 2 0 0 S eri e s & T ai w a n e s e P o w er C h u c k O R D E R N O.
C H U C K SI Z E
A
B
C
D
E
F
W EI G H T ( k g)
C O D E N O.
B- 2 0 5 T
5”
14
10
9. 5
5
14
M8
0. 1
5 0 0 2- 3 9 0
B- 2 0 6 T
6”
1 7. 5
12
11
7. 5
20
M10
0. 1
5 0 0 2- 3 9 1
B- 2 0 8 T
8”
2 0. 5
14
12
8. 5
25
M12
0. 2
5 0 0 2- 3 9 2
B- 2 1 0 T
1 0”
2 2. 5
16
13
8. 5
30
M12
0. 3
5 0 0 2- 3 9 3
B- 2 1 2 T
1 2”
28
21
1 6. 5
1 1. 5
30
M16
0. 6
5 0 0 2- 3 9 4
B- 2 1 5 T
1 5”
3 3. 5
22
29
1 6. 5
43
M20
H Y D R A U LI C C H U C K
F or c o n n e ct p o w er c h u c k a n d s oft j a w s, s uit f or J A P A N E S E & T AI W A N E S E br a n d s c h u c k.
5 0 0 2- 3 9 5
H ar d J a w s F or H y dr a uli c P o w er C h u c k s F or J a p a n e s e br a n d J Z S & KI T A G A W A
3 P C S/ S ET
DI M E N SI O N S O R DE R N O. HJ05
Di m
U nit: m m
ati o n H- 1 H- 2 H- 3 H- 4 H- 5 H- 6 H- 7 H- 8 H- 9 H- 1 0 H- 1 1 H- 1 2 H- 1 3 S err Pit c h 53
2 3 2 7. 5 1 0
M at c hi n g Chuck
4
3 0. 5 1 4 2 2. 5 1 3. 5 8. 5
10
M8
6
1. 5 x 6 0º
Fi g- 2
N- 2 0 5
3- J a w C O DE W ei g ht N O. ( k g s) 0. 4 5 0 0 2- 4 0 1
HJ06
6 7. 5 3 1
35
12
5
3 9. 5 2 0 2 7. 5 1 7
11
12
M10
16
1. 5 x 6 0º
Fi g- 2 N- 2 0 6. V- 2 0 6
1. 0
5 0 0 2- 4 0 2
HJ08
86
35
51
14
5
31
25
18
19
13
12
M12
12
1. 5 x 6 0º
Fi g- 1 N- 2 0 8. V- 2 0 8
1. 9
5 0 0 2- 4 0 3
HJ10
9 9. 5 4 0
54
16
5
43
30
17
19
13
13
M12
15
1. 5 x 6 0º
Fi g- 1 N- 2 1 0. V- 2 1 0
2. 9
5 0 0 2- 4 0 4
HJ12
103
50
52
21
4
6 2. 5 3 0 4 0. 5 2 5
17
17
M16
30
1. 5 x 6 0º
Fi g- 2
N- 2 1 2
2. 6 5
5 0 0 2- 4 0 5
H J 1 2- 1
103
50
52
18
5
6 2. 5 3 0 4 0. 5 2 2
15
17
M14
30
1. 5 x 6 0º
Fi g- 2
V- 2 1 2
2. 7
5 0 0 2- 4 0 6
HJ15
149
62
86
22
8
63
43
34
32
21
20
M20
40
1. 5 x 6 0º
Fi g- 1
N- 2 1 5
9. 6
5 0 0 2- 4 0 7
H J 1 5- 1
149
62
8 6 2 5. 5
5
63
43
34
32
21
20
M20
40
1. 5 x 6 0º
Fi g- 1
V- 2 1 5
9. 5
5 0 0 2- 4 0 8
L A T H E M A C HI N E A C C E S S O RI E S
E22
3- J a w W e d g e T y p e T hr o u g h- h ol e P o w er C h u c k ( Wit h A d a pt or)
M or e l ar g e b or e: H a vi n g t h e l ar g e st b or e i n w e d e t y p e p o w er o p er at e d c h u c k s. 2 0 % l ar g e b or e: A p pr o xi m at el y 2 0 % hi g h er s p e e d, hi g h er gri p pi n g f or c e a n d l ar g er b or e c o m p ar e d wit h u s u al c h u c k s. M o d el N- 2 0 0 A c h u c k s ar e a s s e m bl e d wit h a d a pt or f or A S A B 5. 9 t y p e A s pi n dl e s. M o d el N- 2 0 0 A c h u c k s ar e m a n uf a ct ur e d f or m hi g h gr a b e all o y st e el, All sli di n g s urf a c e s ar e h ar d e n e d a n d gr o u n d f or a c c ur at e a ct u al r u n ni n g a n d l o n g s er vi c e r e p e at a bilit y.
S P E CI FI C A TI O N S
O R D E R N O. N- 2 0 5 A 4 Di m ø33 T hr o u g h- H ol e ( m m) 10 Pl u n g er Str o k e ( m m) 5. 4 J a w Str o k e ( m m) 1700 M a x. Dr a w B ar P ull F or c e ( k gf) 3600 M a x. Gri p pi n g F or c e ( k gf) Ø10~135 Gri p pi n g R a n g e M a x. O p er ati n g Pr e s s ur e ( k gt/ 2 9. 6 c m) 7000 M a x. S p e e d (r. p. m.) 6. 9 W ei g ht ( k g s) M1036 M at c hi n g C yli n d er V H C05 M at c hi n g S oft J a w HJ05 M at c hi n g H ar d J a w 5 0 0 2- 0 8 0 C O D E N O.
DI M E N SI O N S Di m A B G D E F C H J K L M N m a x. N mi n. O m a x. O mi n. P m a x. P mi n. Q R S T U m a x. V W R E F E R FI G.
E23
O R D E R N O. N- 2 0 5 A 4 135 71 96 14 15 6 5. 5 1 3 11 0 8 2. 5 5 1 5. 5 3x M10 33 4 2 6. 5 2 3. 8 1 9. 7 5 7. 7 5 16 6 2 10 20 23 M 4 0 x 1. 5 3x M6 45 Fi g- 1
N- 2 0 6 A 5 ø45 12 5. 5 2200 5700 Ø13~169
N- 2 0 8 A 5 ø52 16 7. 4 3400 8800 Ø13~210
N- 2 0 8 A 6 ø52 16 7. 4 3400 8800 Ø13~210
N- 2 1 0 A 6 ø75 19 8. 8 4300 11 0 0 0 Ø30~254
N- 2 1 0 A 8 ø75 19 8. 8 4300 11 0 0 0 Ø30~254
N- 2 1 2 A 8 ø91 23 1 0. 6 5500 14300 Ø35~304
N- 2 1 5 A 8 ø 1 1 7. 5 23 1 0. 6 7240 18355 Ø35~381
N- 2 1 5 A 1 1 ø 1 1 7. 5 23 1 0. 6 7240 18355 Ø35~381
2 8. 5
2 6. 5
2 6. 5
2 7. 5
2 7. 5
2 7. 5
2 3. 5
2 3. 5
6000 1 4. 2 M1246 V H C06 HJ06 5 0 0 2- 0 8 1
4900 2 5. 8 M1552 V H C08 HJ08 5 0 0 2- 0 8 2
4900 2 4. 0 5 M1552 V H C08 HJ08 5 0 0 2- 0 8 3
4200 4 0. 9 M1875 V H C10 HJ10 5 0 0 2- 0 8 4
4200 3 7. 4 M1875 V H C10 HJ10 5 0 0 2- 0 8 5
3300 6 3. 2 M2091 V H C12 HJ12 5 0 0 2- 0 8 6
2500 134 M 2 5 11 V H C15 HJ15 5 0 0 2- 0 8 7
2500 127 M 2 5 11 V H C15 HJ15 5 0 0 2- 0 8 8
N- 2 0 6 A 5 169 91 11 6 20 15 8 2. 5 6 3 140 1 0 4. 7 8 16 6x M10 45 5 32 2 9. 2 5 2 2. 7 5 9. 2 5 26 14 2 12 19 32 M 5 5 x 2. 0 3x M6 60 Fi g- 1
N- 2 0 8 A 5 210 109 1 3 3. 3 5 25 23 8 2. 5 6 3 170 1 0 4. 7 8 13 6x M12 52 5 3 8. 7 35 2 9. 7 5 1 4. 7 5 3 7. 5 2 1. 5 2 14 2 0. 5 37 M 6 0 x 2. 0 6x M10 66 Fi g- 2
N- 2 0 8 A 6 210 103 150 25 17 1 0 6. 3 7 5 170 1 3 3. 3 5 18 6x M12 52 5 3 8. 7 35 2 9. 7 5 1 4. 7 5 3 1. 5 1 5. 5 2 14 2 0. 5 37 M 6 0 x 2. 0 3x M6 66 Fi g- 1
N- 2 1 0 A 6 254 120 1 7 1. 4 5 30 25 1 0 6. 3 7 5 220 1 3 3. 3 5 18 6x M16 75 5 51 4 6. 6 3 3. 7 5 1 4. 2 5 3 3. 5 1 4. 5 2 16 25 42 M 8 5 x 2. 0 6x M12 94 Fi g- 2
N- 2 1 0 A 8 254 11 3 190 30 18 1 3 9. 7 1 9 220 1 7 1. 4 5 24 6x M16 75 5 51 4 6. 6 3 3. 7 5 1 4. 2 5 2 6. 5 7. 5 2 16 25 42 M 8 5 x 2. 0 3x M8 94 Fi g- 1
N- 2 1 2 A 8 304 122 190 30 18 1 3 9. 7 1 9 220 1 7 1. 4 5 25 6x M16 91 6 6 1. 3 56 4 5. 7 5 1 5. 7 5 26 3 2 21 28 52 M 1 0 0 x 2. 0 3x M8 108 Fi g- 1
N- 2 1 5 A 8 381 160 235 43 33 1 3 9. 7 1 9 300 1 7 1. 4 5 24 6x M20 1 1 7. 5 6 82 7 6. 7 4 6. 7 5 1 3. 7 5 40 17 5 24 43 62 M 1 3 0 x 2. 0 6x M16 139 Fi g- 2
N- 2 1 5 A 1 1 381 149 260 43 22 1 9 6. 8 6 9 300 235 28 6x M20 1 1 7. 5 6 82 7 6. 7 4 6. 7 5 1 3. 7 5 29 6 5 24 43 62 M 1 3 0 x 2. 0 3x M20 139 Fi g- 1
U nit: m m
L A T H E M A C HI N E A C C E S S O RI E S
2- J a w W e d g e T y p e T hr o u g h- h ol e P o w er C h u c k ( Wit h A d a pt or)
All sli di n g s urf a c e s ar e h ar d e n e d a n d gr o u n d f or a c c ur at e a ct u al r u n ni n g a n d l o n g s er vi c e r e p e at a bilit y. L u bri c ati o n ni p pl e i n e a c h b a s e j a w. B a s e j a w: 1. 5 m m x 6 0º s errti o n. M o u nti n g:
Di m T hr o u g h- H ol e ( m m) Pl u n g er Str o k e ( m m) J a w Str o k e ( m m) M a x. Dr a w B ar P ull F or c e ( k gf) M a x. Gri p pi n g F or c e ( k gf) M a x. S p e e d (r. p. m.) W ei g ht ( k g s) M at c hi n g C yli n d er M a x. O p er ati n g Pr e s s ur e ( k gt/ c m 2) M at c hi n g S oft J a w M at c hi n g H ar d J a w C O D E N O.
DI M E N SI O N S Di m A B C ( H 6) D E M G H J K L F N m a x. N mi n. O m a x. O mi n. P m a x. P mi n. S T U m a x. W
O R D E R N O.
U nit: m m
P O WE R C H U C K
O R D E R N O.
NT205 Ø33 10 5. 4 11 8 9 2447 7000 5. 9 M1036
NT206 Ø45 12 5. 5 1479 3875 6000 13 M1246
NT208 Ø52 16 7. 4 2294 5710 4800 2 2. 1 M1552
NT210 Ø75 19 8. 8 2906 7546 4200 3 3. 2 M1875
NT212 Ø91 23 1 0. 6 3739 9789 3300 6 1. 9 M2091
NT215 Ø 1 1 7. 5 23 1 0. 6 4793 12236 2500 11 5 M 2 5 11
1 9. 5
1 8. 9
1 7. 3
1 8. 4
1 8. 4
1 5. 3
V H C05 HJ05 5 0 0 2- 2 5 0
V H C06 HJ06 5 0 0 2- 2 5 1
V H C08 HJ08 5 0 0 2- 2 5 2
V H C10 HJ10 5 0 0 2- 2 5 3
V H C12 HJ12 5 0 0 2- 2 5 4
V H C15 HJ15 5 0 0 2- 2 5 5
NT205 135 60 11 0 20 8 2. 5 5 4 23 10 33 3- M 1 0 2 45 2 6. 5 2 3. 8 1 9. 7 5 7. 7 5 1 -9 12 1 5 .5 M 4 0 x 1. 5 14
NT206 169 81 140 19 1 0 4. 7 8 5 32 12 45 6- M 1 0 2 60 32 2 9. 2 5 2 2. 7 5 9. 2 5 11 -1 20 16 M55x2 20
NT208 210 91 170 2 0. 5 1 3 3. 3 5 5 37 14 52 6- M 1 2 2 66 3 8. 7 35 2 9. 7 5 1 4. 7 5 1 4 .5 - 1. 5 30 20 M60x2 25
NT210 254 100 220 25 1 7 1. 4 5 5 42 16 75 6- M 1 6 2 94 51 4 6. 6 3 3. 7 5 1 4. 2 5 8 .5 - 1 0. 5 45 22 M85x2 30
NT212 304 11 0 220 28 1 7 1. 4 5 6 52 21 91 6- M 1 6 2 108 6 1. 3 56 4 5. 7 5 1 5. 7 5 8 -15 50 23 M100x2 30
NT215 381 133 300 43 235 6 62 24 1 1 7. 5 6- M 2 0 5 139 82 7 6. 7 4 6. 7 5 1 3. 7 5 7 -16 60 30 M130x2 43
U nit: m m
L A T H E M A C HI N E A C C E S S O RI E S
E24
3- J a w W e d g e T y p e N o n T hr o u g h- h ol e P o w er C h u c k ( Wit h A d a pt or)
Dir e ct m o u nti n g: Dir e ct m o u nt f or V A s eri e s c h u c k s o nt o s h ort t a p er s pi n dl e of A S A a n d JI S st a n d ar d s. Hi g h p erf or m a n c e: Si mil ar hi g h p erf or m a n c e t o V s eri e s. C h u c k m o u nti n g s cr e w s: M etri c or U N C s o c k et h e a d c a p s cr e w s ar e s u p pli e d f or b olti n g t h e c h u c k t o t h e s pi n dl e.
O R D E R N O.
Di m J a w Str o k e ( m m) Pl u n g er Str o k e ( m m) M a x. P ull F or c e ( k gf) M a x. Gri p pi n g F or c e ( k gf) M a x. O p er ati n g Pr e s s ur e ( k gt/ c m 2) M a x. S p e e d (r. p. m.) W ei g ht ( k g s) M o m e nt of I n erti a I ( k gf. m 2 ) M at c hi n g C yli n d er M at c hi n g S oft J a w M at c hi n g H ar d J a w C O D E N O.
DI M E N SI O N S Di m A B C F K L M N P T V U E m a x. E mi n. G H m a x. H mi n. I J O Q m a x. Q mi n. R S W R E F E R FI G.
E25
U nit: m m
V- 2 0 6 A 5 9. 2 20 1835 5253
V- 2 0 8 A 6 9. 7 21 2549 7548
V- 2 1 0 A 6 8. 8 25 2957 10013
V- 2 1 0 A 8 8. 8 25 2957 10013
V- 2 1 2 A 8 1 0. 5 30 4181 15807
V- 2 1 5 A 8 16 35 8362 25391
V- 2 1 5 A 1 1 16 35 8362 25391
2 5. 5
2 4. 5
2 8. 6
2 8. 6
2 7. 5
3 0. 6
3 0. 6
5000 1 2. 5 0. 0 4 5 M S105 M H100 V H C06 HJ06 5 0 0 2- 0 9 0
4000 2 4. 4 0. 3 1 7 M S125 M H125 V H C08 HJ08 5 0 0 2- 0 9 1
3500 4 0. 6 5 0. 3 M S125 M H125 V H C10 HJ10 5 0 0 2- 0 9 2
3500 3 7. 1 5 0. 3 M S125 M H125 V H C10 HJ10 5 0 0 2- 0 9 3
3000 6 1. 7 5 0. 7 2 5 M S150 M H150 V H C 1 2- 1 H J 1 2- 1 5 0 0 2- 0 9 4
2800 105 1. 8 M S150 M H150 V H C 1 5- 1 H J 1 5- 1 5 0 0 2- 0 9 5
2800 103 1. 8 M S200 M H200 V H C 1 5- 1 H J 1 5- 1 5 0 0 2- 0 9 6
V- 2 1 5 A 8 381 141 1 7 1. 4 5 43 300 6- M 1 6 6 24 33 1 3 9. 7 1 9 235 5 0. 2 5 2 3. 2 5 2 71 36 55 M 3 0 x 3. 5 60 7 7. 5 6 9. 5 50 2 5. 5 6- M 1 6 Fi g- 2
V- 2 1 5 A 1 1 381 130 235 43 300 6- M 2 0 6 32 22 1 9 6. 8 6 9 260 5 0. 2 5 2 3. 2 5 2 82 47 55 M 3 0 x 3. 5 60 7 7. 5 6 9. 5 50 2 5. 5 3- M 1 0 Fi g- 1
O R D E R N O. V- 2 0 6 A 5 165 84 1 0 4. 7 8 20 140 6- M 1 0 5 14 21 15 8 2. 5 6 3 11 6 1 5. 2 5 9. 2 5 4 8 9. 6 6 9. 6 36 M 1 6 x 2. 0 34 3 8. 7 3 4. 1 31 12 3- M 6 Fi g- 1
L A T H E M A C HI N E A C C E S S O RI E S
U nit: m m
V- 2 0 8 A 5 210 103 1 0 4. 7 8 25 170 6- M 1 2 5 13 21 23 8 2. 5 6 3 1 3 3. 3 5 2 2. 2 5 1 1. 7 5 5 109 88 36 M 2 0 x 2. 5 38 4 6. 7 5 4 1. 9 35 14 6- M 1 0 Fi g- 2
V- 2 0 8 A 6 210 97 1 3 3. 3 5 25 170 6- M 1 2 5 18 25 17 1 0 6. 3 7 5 150 2 2. 2 5 1 1. 7 5 5 11 5 94 36 M 2 0 x 2. 5 38 4 6. 3 4 1. 9 35 14 3- M 6 Fi g- 1
V- 2 1 0 A 6 254 109 1 3 3. 3 5 30 220 6- M 1 6 5 18 34 25 1 0 6. 3 7 5 1 7 1. 4 5 3 0. 7 5 1 1. 2 5 5 133 108 36 M 2 0 x 2. 5 45 5 1. 1 4 6. 7 40 16 6- M 1 2 Fi g- 2
V- 2 1 0 A 8 254 102 1 7 1. 4 5 30 220 6- M 1 6 5 25 34 18 1 3 9. 7 1 9 190 3 0. 7 5 1 1. 2 5 5 140 11 5 36 M 2 0 x 2. 5 45 5 1. 1 4 6. 7 40 16 6- M 8 Fi g- 1
V- 2 1 2 A 8 304 11 8 1 7 1. 4 5 30 220 6- M 1 6 6 25 34 18 1 3 9. 7 1 9 190 4 8. 7 5 1 2. 7 5 5 145 11 5 36 M 2 0 x 2. 5 50 61 5 5. 7 5 50 18 6- M 8 Fi g- 1
4- J a w W e d g e T y p e T hr o u g h H ol e P o w er C h u c k ( Wit h A d a pt or)
O R D E R N O.
A
V NI T- 2 0 8 V NI T- 2 1 0 V NI T- 2 1 2 V NI T- 2 1 5
210 254 304 381
C E ( H 6) D 9 1 1 7 0 2 0. 5 1 3 3. 3 5 1 0 0 2 2 0 2 5 1 7 1. 4 5 1 1 0 2 2 0 2 8 1 7 1. 4 5 133 300 43 235 B
M
G
H
5 5 6 6
37 42 52 62
14 16 21 24
S P E CI FI C A TI O N S O R D E R N O.
T hr o u g h- H ol e PlStru no gk er e ( m m) ( m m)
V NI T- 2 0 8 V NI T- 2 1 0 V NI T- 2 1 2 V NI T- 2 1 5
Ø52 Ø75 Ø91 Ø 1 1 7. 5
16 19 23 23
J
K
N N O M a x. Mi n. M a x. 6 6 3 8. 7 3 5 2 9. 7 5 94 5 1 4 6. 6 3 3. 7 5 1 0 8 6 1. 3 5 6 4 5. 7 5 1 3 9 8 2 7 6. 7 4 6. 7 5
L
5 2 4- M 1 2 7 5 4- M 1 6 9 1 4- M 1 6 1 1 7. 5 4- M 2 0
2 2 2 5
M a x. Dr a w GriMpa pix. n g B ar P ull F or c e F or c e ( k gf) ( k gf) 2294 5716 2906 7546 3739 9789 6828 12236
Ja w Str o k e ( m m) 7. 4 8. 8 1 0. 6 1 0. 6
O P P Mi n. M a x. Mi n. 1 4. 7 5 1 4. 5 1. 5 1 4. 7 5 8. 5 - 1 0. 5 1 5. 7 5 8 -15 1 3. 7 5 7 -16
F
M a x. Speed (r. p. m.)
W ei g ht ( k g s)
4900 4200 3300 2500
24 36 5 8. 5 11 4
S
T
U
W
30 45 50 60
20 22 23 30
M60x2 M85x2 M100x2 M130x2
25 30 30 43
M at c hi n g M a x.Pr eO sp seruratie n g C O D E N O. C yli n d er ( k gf/ c m 2 ) M1552 M1875 M2091 M 2 5 11
1 7. 3 1 8. 4 1 8. 4 1 5. 3
5 0 0 3- 0 5 0 5 0 0 3- 0 5 1 5 0 0 3- 0 5 2 5 0 0 3- 0 5 3
N o n T hr o u g h H ol e R ot ar y H y dr a uli c C yli n d er ( Wit h V al v e s) K
J
5
2- M 5 X 1 0
Ø30 40
ØF
2B
B
Ø C
A: B or e B: St o k e
2- P T 3/ 8
2- M 5 X 1 0
P 5
M
N
Ø Eh7
L
P T 1/ 4
40
R
Q
A B
DI M E N SI O N S Di m ORDER N O.
M S105 M S125 M S150 M S200
A
B
C
D
E
F
G
H
J
K
L
M
N
P P M a x. Mi n.
105 125 150 200
20 25 30 35
135 160 190 245
100 130 130 145
80 11 0 11 0 120
30 35 45 55
21 25 31 37
M 2 0 x 2. 5 M 2 4 x 3. 0 M 3 0 x 3. 5 M 3 6 x 4. 0
35 44 45 60
197 205 214 228
108 108 108 108
89 97 106 122
152 160 169 183
45 51 56 69
25 26 26 34
Q
R
C O D E N O.
6- M 1 0 x 2 0 6- M 1 2 x 2 4 1 2- M 1 2 x 2 4 1 2- M 1 6 x 3 0
158 166 175 189
5 0 0 3- 0 3 0 5 0 0 3- 0 3 1 5 0 0 3- 0 3 2 5 0 0 3- 0 3 3
T ot al Leakage (l/ mi n)
M o m e nt W ei g ht I n erti a I ( k gf. m 2 ) ( k g s)
S P E CI FI C A TI O N S Di m ORDER N O.
M S105 M S125 M S150 M S200
Pi st o n Ar e a P u s h Si d e P ull Si d e ( c m2 ) ( c m2 )
86 122 176 314
79 11 3 160 290
M a x. Dr a w B ar P ull P ull Si d e K N ( k gf)
Pi st o n Str o k e ( m m)
2 9( 2 9 5 7) 4 2( 4 2 8 3) 6 0( 6 1 1 8) 1 0 8( 1 1 0 1 3)
20 25 30 35
M a x. S p e e d M a x.Pr eO sp seruratie n g (r. p. m.) ( k gf/ c m 2 )
6000 6000 5500 5500
4. 0( 4 0. 8) 4. 0( 4 0. 8) 4. 0( 4 0. 8) 4. 0( 4 0. 8)
0. 8 0. 8 0. 8 0. 8
0. 0 1 2 5 0. 0 2 2 5 0. 0 4 7 5 0. 0 9 7 5
L A T H E M A C HI N E A C C E S S O RI E S
7. 1 10 1 3. 5 22
E26
H Y D R A U LI C C Y LI N D E R
DI M E N SI O N S
S u p er Hi g h S p e e d T hr o u g h H ol e R ot ar y H y dr a uli c C yli n d er
S m all- si z e d li g ht w ei g ht: C o m p ari n g wit h t h e tr a diti o n al pr o d u ct, it i s s m all- si z e d (r e d u c e d t o M A X 9 5 m m) a n d a li g ht w ei g ht ( w ei g ht e d M A X 4. 5 k g s). M a k e it s c a p a cit y m or e sl a bl e t o r e d u c e t h e b ur d e n of t h e m a c hi n er y at hi g h s p e e d t ur ni n g. T h e m o st l ar g e st b or e: C o m p ari n g wit h t h e ol d pr o d u ct, it h a s a b o ut 2 0 % m or e b or e f ull di a m et er f or utili zi n g t h e c a p a cit y of m a c hi n er y. T h e s af et y m e c h a ni s m: It c a n r et ai n t h e gri p pi n g f or c e wit h a c h e c k v al v e.
S P E CI FI C A TI O N S Di m
ORDER N O. M1036 M1236 M1246 M1546 M1552 M1868 M1875 M2091 M2511
M a x. Dr a w B ar P ull F or c e Pi st o n Str o k e P ull Si d e ( m m) P u s h Si d e P ull Si d e K N ( k g s) K N ( k g s) ( c m2 )
Pi st o n Ar e a
Pi st o n Di a. ( m m)
Push Si d e ( c m2 ) 71 100 100 161 161 198 198 252 348
105 125 125 155 155 180 180 205 250
6 8. 5 89 89 150 150 183 183 234 336
15 15 15 22 22 25 25 30 23
M a x. T ot al e nt W ei g ht O p er ati n g S Mp ae x.e d M Io n merti eakage Pr e s s ur e (r. p. m.) I ( k gf. ma2 ) ( k g s) L (l/ mi n) ( k gf/ c m 2 )
2 4. 8( 2 5 2 9) 2 4( 2 4 4 7) 3 8( 3 8 7 5) 3 3( 3 3 6 5) 3 8( 3 8 7 5) 3 3( 3 3 6 5) 6 0( 6 1 1 8) 5 6( 5 7 1 0) 6 0( 6 1 1 8) 5 6( 5 7 1 0) 7 5( 7 5 4 6) 6 9( 7 0 3 6) 7 5( 7 5 4 6) 6 9( 7 0 3 6) 9 4( 9 5 8 5) 8 8( 8 9 7 3) 1 2 4( 1 2 6 4 4) 1 2 0( 1 2 2 3 6)
4 0. 8 4 0. 8 4 0. 8 4 0. 8 4 0. 8 4 0. 8 4 0. 8 4 0. 8 4 0. 8
8000 7000 7000 6200 6200 4700 4700 3800 2800
0. 0 1 1 0. 0 1 9 0. 0 1 9 0. 0 5 2 0. 0 5 2 0. 0 9 5 0. 0 9 5 0. 1 5 0. 4 5
C O DE N O.
8. 6 1 3. 0 1 2. 0 18 1 6. 8 2 8. 0 2 6. 0 3 7. 0 57
3. 0 3. 0 3. 0 3. 9 3. 9 4. 2 4. 2 4. 5 7. 0
5 0 0 3- 0 0 1 5 0 0 3- 0 0 2 5 0 0 3- 0 0 3 5 0 0 3- 0 0 4 5 0 0 3- 0 0 5 5 0 0 3- 0 0 6 5 0 0 3- 0 0 7 5 0 0 3- 0 0 8 5 0 0 3- 0 0 9
X1
B
DI M E N SI O N S Di m
ORDER N O. M1036 M1236 M1246 M1546 M1552 M1868 M1875 M2091 M2511
C1
E1
F1
G1
H1
J1
K1 L1
M1
N1
O1 P1
25 30 30 30 30 35 35 35 45
M 5 x 0. 8 M 1 0 x 1. 5 1 2 6 8 8 M 6 x 1. 0 M 1 0 x 1. 5 1 3 5 9 8 M 6 x 1. 0 M 1 0 x 1. 5 1 3 5 9 8 M 6 x 1. 0 M 1 0 x 1. 5 1 4 5 1 1 0 M 6 x 1. 0 M 1 0 x 1. 5 1 4 5 1 1 0 M 6 x 1. 0 M 1 0 x 1. 5 1 6 6. 5 1 5 5 M 6 x 1. 0 M 1 0 x 1. 5 1 6 6. 5 1 5 5 M 6 x 1. 0 M 1 2 x 1. 7 5 1 8 3 1 6 5 M 6 x 1. 0 M 1 6 x 2. 0 1 9 7 2 0 6
68 76 76 86 86 101 101 11 0 129
Q1
R1
S1
T1
U1
W1
53 47 47 47 47 47 47 47 55
15 38 15 38 15 50 15 50 15 55 15 70 15 80 15 95 20 123
64 76 76 85 85 108 108 120 160
14 14 14 14 14 16 16 16 18
4 4 4 4 4 4 4 4 4
M 5 x 0. 8 M 5 x 0. 8 M 5 x 0. 8 M 6 x 1. 0 M 6 x 1. 0 M 6 x 1. 0 M 6 x 1. 0 M 6 x 1. 0 M 6 x 1. 0
4 6 6 7 7 7 7 7 7
P T 3/ 8 P T 1/ 2 P T 1/ 2 P T 1/ 2 P T 1/ 2 P T 1/ 2 P T 1/ 2 P T 1/ 2 P T 1/ 2
6 6 6 6 6 6 6 6 6
136 169 169 1 8 7. 5 1 8 7. 5 220 220 267 294
M 4 4 x 1. 5 M 5 2 x 1. 5 M 5 2 x 1. 5 M 5 8 x 1. 5 M 5 8 x 1. 5 M84x2 M84x2 M99x2
K
L
M
N
O
P
Q
S
T
32 36 36 36 36 36 36 36 36
6 2 4 4. 6 5 4 6 7 5 2. 6 6 4 6 7 5 2. 6 6 4 7 5 5 9. 6 7 3 7 5 5 9. 6 7 3 8 4 8 4. 6 9 8 8 4 8 4. 6 9 8 9 3 9 9. 6 1 0 8 8 9 1 3 4. 6 1 4 8
126 166 166 184 184 215 215 264 362
73 85 85 96 96 121 121 138 178
80 90 90 102 102 131 131 148
104 11 8 11 8 137 137 166 166 182 232
1 1 5 1 7 9. 5 11 4 1 8 4 11 4 1 8 4 130 196 130 196 160 230 160 230 185 253 215 296
C
42 101 136 50 9 9 1 5 4. 5 50 9 9 1 5 4. 5 56 103 190 56 103 190 81 126 215 81 126 215 96 141 240 1 3 4. 6 1 8 6 3 1 0
Di m ORDER N O. M1036 M1236 M1246 M1546 M1552 M1868 M1875 M2091 M2511
E27
D
E
F
G
11 5 130 130 170 170 190 190 215 275
100 100 100 130 130 160 160 180 230
65 48 80 65 80 65 85 70 85 70 120 95 120 95 1 4 0 11 0 166 140
H
J
M 4 2 x 1. 5 3 6 M 4 2 x 1. 5 3 6 M55x2 46 M55x2 46 M60x2 52 M75x2 68 M85x2 75 M100x2 91 M 1 3 0 x 2 1 1 7. 5
L A T H E M A C HI N E A C C E S S O RI E S
U
V V W W m a x mi x m a x mi x 10 10 10 17 17 20 20 25 18
-5 -5 -5 -5 -5 -5 -5 -5 -5
39 40 40 47 47 50 50 55 38
X
Z
A1
B1
2 4 2. 5 5 1 1 2 5 4 5 11 2 5 4 5 11 2 5 4 5 11 2 5 4 5 11 2 5 4 5 1 7. 5 2 5 4 5 1 7. 5 25 3 5 21 15 3 6 27
1 2 0. 5 1 2 6. 5 1 2 6. 5 136 136 1 5 3. 5 1 5 3. 5 168 1 8 4. 5
L at h e C oll et C h u c k s
L at h e C oll et s Pl e a s e S e e E 2 9
Pl e a s e u s e DI N 6 3 4 3 c oll et s
S pri n g C oll et
L AT H E C O L L E T C H U C K S
c oll et ill u str ati o n
M ulti- B or e C oll et
H ol di n g R a n g e P u s h t h e c o v er
C H U C K
Ti g ht e n t h e c o v er a nti r ot ati o n s cr e w s
T ur n t h e c o v er
DI M E N SI O N S
M U L TI B O R E
S P RI N G C O L L E T
N O.
C A T N O.
C R42
M- 6 7 3
42
36
3 0 1 7 3 E/ 4 7 2 8 4 2
36
30
C R60
M- 6 7 7
60
52
4 2 1 8 5 E/ 4 2 9 1 6 0
52
42
C A T N O.
O R D E R N O.
A
B
C
D
E
F
G
H
J M a x.
K
L
M
N
O
P
R
C R42 A5
135
124
100
27
1 0 4. 7 8
8 2. 5 6 3
M 6 6 x P 1. 5
60
M55x P20
25
6 2. 5
54
2 7. 4
1 9. 4
M10
28
C R42 A6
170
124
100
32
1 3 3. 3 5
1 0 6. 3 7 5
M 6 6 x P 1. 5
66
M60x P20
25
6 2. 5
54
2 7. 4
1 9. 4
M12
28
C R60 A6
170
145
130
27
1 3 3. 3 5
1 0 6. 3 7 5
M 9 0 x P 1. 5 6 7. 5
M60x P20
30
83
77
2 9. 9
2 1. 9
M12
3 9. 5
S P E CI FI C A TI O N S O R D E R N O.
Di a m et er of S h a nlt
M at eri al Di a m et er ( m m)
C oll et Tr a v el Di st a n c e ( m m)
W ei g ht ( k g s)
M a xi m u m B e ari n g K N ( k gf)
M a xi m u m H ol di n g P o w er K N ( k gf)
M a xi m u m Speed (r. p. m.)
C O D E N O.
C R42 A5
A 2- 5
42
7
6. 2
2 5( 2 5 4 9)
5 5( 5 6 0 8)
6, 0 0 0
5 0 0 3- 0 4 0
C R42 A6
A 2- 6
42
7
8. 2
2 5( 2 5 4 9)
5 5( 5 6 0 8)
6, 0 0 0
5 0 0 3- 0 4 1
C R60 A6
A 2- 6
60
7
13
3 3( 3 3 6 5)
5 9( 6 0 1 6)
5, 0 0 0
5 0 0 3- 0 4 2
L A T H E M A C HI N E A C C E S S O RI E S
E28
L at h e C oll et DI N 6 3 4 3
T e st B ar
0. 2 ~ 1. 0 1. 0 ~ 1. 6 1. 6 ~ 3. 0 3. 0 ~ 6. 0 6. 0 ~ 1 0. 0 1 0. 0 ~ 1 8. 0 1 8. 0 ~ 2 4. 0 2 4. 0 ~ 3 0. 0 3 0. 0 ~ 5 0. 0 5 0. 0 ~ 6 0. 0
DI N 6 3 4 3
C O N E SI Z E R O U N D S H A P E / M E T RI C C 2 6- D Ø O R D E R N O. C 2 6- D 6 C 2 6- D 8 C 2 6- D 9 C 2 6- D 1 0 C 2 6- D 1 1 C 2 6- D 1 2 C 2 6- D 1 3 C 2 6- D 1 4 C 2 6- D 1 5 C 2 6- D 1 6 C 2 6- D 1 7 C 2 6- D 1 8 C 2 6- D 1 9 C 2 6- D 2 0 C 2 6- D 2 1 C 2 6- D 2 2 C 2 6- D 2 3 C 2 6- D 2 4 C 2 6- D 2 5
E29
C O D E N O. 5 0 0 3- 1 0 1 5 0 0 3- 1 0 2 5 0 0 3- 1 0 3 5 0 0 3- 1 0 4 5 0 0 3- 1 0 5 5 0 0 3- 1 0 6 5 0 0 3- 1 0 7 5 0 0 3- 1 0 8 5 0 0 3- 1 0 9 5 0 0 3- 1 1 0 5 0 0 3- 1 1 1 5 0 0 3- 1 1 2 5 0 0 3- 1 1 3 5 0 0 3- 1 1 4 5 0 0 3- 1 1 5 5 0 0 3- 1 1 6 5 0 0 3- 1 1 7 5 0 0 3- 1 1 8 5 0 0 3- 1 1 9
L ( m m) 3 6 10 16 25 40 50 60 80 100
D ( S, H)
Cl a s s 1
A
Cl a s s 2 0. 0 1 5
0. 0 1 5
0. 0 2 0
0. 0 2 0
0. 0 3 0
0. 0 3 0
0. 0 4 0
K O N US W N KEL D2 D3 L C OLL ET ST A N D A R D D1 S PI N D L E C O N E ( m m) ( m m) ( m m) ( m m) TYPE N O. A N GLE
C O L L E T R A N G E( m m)
32 45 34 C- 2 6 161 E 42 55 42 C- 3 6 171 E 48 60 50 C- 4 2 173 E 58 70 60 C- 5 2 177 E 66 84 73 C- 6 0 185 E 90 107 92 C- 8 0 193 E C 8 0: H e x./ S q u ar e s h a p e or d er t o m a k e.
Ø 3- Ø 2 6 Ø 6- Ø 2 2 Ø36 Ø32 Ø 3- Ø 4 2 Ø 6- Ø 3 6 Ø52 Ø45 Ø 3- Ø 6 0 Ø 6- Ø 5 0 Ø 3- Ø 8 0 Ø 6- Ø 7 0
C 4 2- D Ø
O R D E R N O. C 4 2- D 6 C 4 2- D 8 C 4 2- D 9 C 4 2- D 1 0 C 4 2- D 1 1 C 4 2- D 1 2 C 4 2- D 1 3 C 4 2- D 1 4 C 4 2- D 1 5 C 4 2- D 1 6 C 4 2- D 1 7 C 4 2- D 1 8 C 4 2- D 1 9 C 4 2- D 2 0 C 4 2- D 2 1 C 4 2- D 2 2 C 4 2- D 2 3 C 4 2- D 2 4 C 4 2- D 2 5 C 4 2- D 2 7 C 4 2- D 2 8 C 4 2- D 3 0 C 4 2- D 3 2 C 4 2- D 3 4 C 4 2- D 3 6 C 4 2- D 3 8 C 4 2- D 4 0 C 4 2- D 4 2
L A T H E M A C HI N E A C C E S S O RI E S
M E T RI C SI Z E
C O D E N O. 5 0 0 3- 1 3 1 5 0 0 3- 1 3 2 5 0 0 3- 1 3 3 5 0 0 3- 1 3 4 5 0 0 3- 1 3 5 5 0 0 3- 1 3 6 5 0 0 3- 1 3 7 5 0 0 3- 1 3 8 5 0 0 3- 1 3 9 5 0 0 3- 1 4 0 5 0 0 3- 1 4 1 5 0 0 3- 1 4 2 5 0 0 3- 1 4 3 5 0 0 3- 1 4 4 5 0 0 3- 1 4 5 5 0 0 3- 1 4 6 5 0 0 3- 1 4 7 5 0 0 3- 1 4 8 5 0 0 3- 1 4 9 5 0 0 3- 1 5 0 5 0 0 3- 1 5 1 5 0 0 3- 1 5 2 5 0 0 3- 1 5 3 5 0 0 3- 1 5 4 5 0 0 3- 1 5 5 5 0 0 3- 1 5 6 5 0 0 3- 1 5 7 5 0 0 3- 1 5 8
75 94 94 94 11 0 130
1 5º 1 5º 1 5º 1 5º 1 5º 1 5º
C 6 0- D Ø
O R D E R N O. C 6 0- D 8 C 6 0- D 9 C 6 0- D 1 0 C 6 0- D 1 1 C 6 0- D 1 2 C 6 0- D 1 3 C 6 0- D 1 4 C 6 0- D 1 5 C 6 0- D 1 6 C 6 0- D 1 7 C 6 0- D 1 8 C 6 0- D 1 9 C 6 0- D 2 0 C 6 0- D 2 1 C 6 0- D 2 2 C 6 0- D 2 3 C 6 0- D 2 4 C 6 0- D 2 5 C 6 0- D 2 7 C 6 0- D 2 8 C 6 0- D 3 0 C 6 0- D 3 2 C 6 0- D 3 4 C 6 0- D 3 6 C 6 0- D 3 8 C 6 0- D 4 0 C 6 0- D 4 2 C 6 0- D 4 5 C 6 0- D 4 7 C 6 0- D 4 8 C 6 0- D 5 0
C O D E N O. 5 0 0 3- 1 7 1 5 0 0 3- 1 7 2 5 0 0 3- 1 7 3 5 0 0 3- 1 7 4 5 0 0 3- 1 7 5 5 0 0 3- 1 7 6 5 0 0 3- 1 7 7 5 0 0 3- 1 7 8 5 0 0 3- 1 7 9 5 0 0 3- 1 8 0 5 0 0 3- 1 8 1 5 0 0 3- 1 8 2 5 0 0 3- 1 8 3 5 0 0 3- 1 8 4 5 0 0 3- 1 8 5 5 0 0 3- 1 8 6 5 0 0 3- 1 8 7 5 0 0 3- 1 8 8 5 0 0 3- 1 8 9 5 0 0 3- 1 9 0 5 0 0 3- 1 9 1 5 0 0 3- 1 9 2 5 0 0 3- 1 9 3 5 0 0 3- 1 9 4 5 0 0 3- 1 9 5 5 0 0 3- 1 9 6 5 0 0 3- 1 9 7 5 0 0 3- 1 9 8 5 0 0 3- 1 9 9 5 0 0 3- 2 0 0 5 0 0 3- 2 0 1
Ø 5- Ø 1 8 Ø26 Ø 5- Ø 3 0 Ø36 Ø 5- Ø 4 0 Ø 5- Ø 5 7
C 8 0- D Ø O R D E R N O. C 8 0- D 1 8 C 8 0- D 2 0 C 8 0- D 2 5 C 8 0- D 2 8 C 8 0- D 3 0 C 8 0- D 3 2 C 8 0- D 3 5 C 8 0- D 3 8 C 8 0- D 4 0 C 8 0- D 4 2 C 8 0- D 4 5 C 8 0- D 4 8 C 8 0- D 5 0 C 8 0- D 5 2
C O D E N O. 5 0 0 3- 2 1 1 5 0 0 3- 2 1 2 5 0 0 3- 2 1 3 5 0 0 3- 2 1 4 5 0 0 3- 2 1 5 5 0 0 3- 2 1 6 5 0 0 3- 2 1 7 5 0 0 3- 2 1 8 5 0 0 3- 2 1 9 5 0 0 3- 2 2 0 5 0 0 3- 2 2 1 5 0 0 3- 2 2 2 5 0 0 3- 2 2 3 5 0 0 3- 2 2 4
O R D E R N O. C 2 6- H 8 C 2 6- H 1 0 C 2 6- H 1 2 C 2 6- H 1 3 C 2 6- H 1 5 C 2 6- H 1 6 C 2 6- H 1 7 C 2 6- H 1 9 C 2 6- H 2 0 C 2 6- H 2 1
C O D E N O. 5 0 0 3- 2 4 1 5 0 0 3- 2 4 2 5 0 0 3- 2 4 3 5 0 0 3- 2 4 4 5 0 0 3- 2 4 5 5 0 0 3- 2 4 6 5 0 0 3- 2 4 7 5 0 0 3- 2 4 8 5 0 0 3- 2 4 9 5 0 0 3- 2 5 0
M E T RI C SI Z E C 4 2- H O R D E R N O. C 4 2- H 8 C 4 2- H 1 0 C 4 2- H 1 2 C 4 2- H 1 3 C 4 2- H 1 5 C 4 2- H 1 6 C 4 2- H 1 7 C 4 2- H 1 9 C 4 2- H 2 0 C 4 2- H 2 1 C 4 2- H 2 2 C 4 2- H 2 4 C 4 2- H 2 5 C 4 2- H 2 7 C 4 2- H 3 0
R O U N D S H A P E/I N C H C 2 6- D Ø O R D E R N O. C 2 6- D 1 /4 C 2 6- D 3 /8 C 2 6- D 1 /2 C 2 6- D 5 /8 C 2 6- D 3 /4 C 2 6- D 7 /8 C 2 6- D 1
C O D E N O. 5 0 0 3- 3 0 1 5 0 0 3- 3 0 2 5 0 0 3- 3 0 3 5 0 0 3- 3 0 4 5 0 0 3- 3 0 5 5 0 0 3- 3 0 6 5 0 0 3- 3 0 7
H E X. S H A P E / I N C H C 2 6- H O R D E R N O. C 2 6- H 1 /4 C 2 6- H 3 /8 C 2 6- H 1 /2 C 2 6- H 5 /8 C 2 6- H 3 /4 C 2 6- H 7 /8
C O D E N O. 5 0 0 3- 4 1 1 5 0 0 3- 4 1 2 5 0 0 3- 4 1 3 5 0 0 3- 4 1 4 5 0 0 3- 4 1 5 5 0 0 3- 4 1 6
S Q U A R E S H A P E/I N C H C 2 6- S O R D E R N O. C 2 6- S 1 /4 C 2 6- S 3 /8 C 2 6- S 1 /2 C 2 6- S 5 /8
C O D E N O. 5 0 0 3- 4 7 1 5 0 0 3- 4 7 2 5 0 0 3- 4 7 3 5 0 0 3- 4 7 4
C O D E N O. 5 0 0 3- 2 6 1 5 0 0 3- 2 6 2 5 0 0 3- 2 6 3 5 0 0 3- 2 6 4 5 0 0 3- 2 6 5 5 0 0 3- 2 6 6 5 0 0 3- 2 6 7 5 0 0 3- 2 6 8 5 0 0 3- 2 6 9 5 0 0 3- 2 7 0 5 0 0 3- 2 7 1 5 0 0 3- 2 7 2 5 0 0 3- 2 7 3 5 0 0 3- 2 7 4 5 0 0 3- 2 7 5
C 6 0- H O R D E R N O. C 6 0- H 8 C 6 0- H 1 0 C 6 0- H 1 2 C 6 0- H 1 3 C 6 0- H 1 5 C 6 0- H 1 6 C 6 0- H 1 7 C 6 0- H 1 9 C 6 0- H 2 0 C 6 0- H 2 1 C 6 0- H 2 2 C 6 0- H 2 4 C 6 0- H 2 5 C 6 0- H 2 7 C 6 0- H 3 0
C O D E N O. 5 0 0 3- 2 8 1 5 0 0 3- 2 8 2 5 0 0 3- 2 8 3 5 0 0 3- 2 8 4 5 0 0 3- 2 8 5 5 0 0 3- 2 8 6 5 0 0 3- 2 8 7 5 0 0 3- 2 8 8 5 0 0 3- 2 8 9 5 0 0 3- 2 9 0 5 0 0 3- 2 9 1 5 0 0 3- 2 9 2 5 0 0 3- 2 9 3 5 0 0 3- 2 9 4 5 0 0 3- 2 9 5
DI N 6 3 4 3 C OLLET STA N D A R D TYPE N O.
C- 2 6 C- 4 2 C- 6 0 C- 8 0
161 E 173 E 185 E 193 E
I N C H SI Z E C 4 2- D Ø O R D E R N O. C 4 2- D 1 /4 C 4 2- D 3 /8 C 4 2- D 1 /2 C 4 2- D 5 /8 C 4 2- D 3 /4 C 4 2- D 7 /8 C 4 2- D 1 C 4 2- D 1 1 /8 C 4 2- D 1 1 /4 C 4 2- D 1 3 /8 C 4 2- D 1 1 /2 C 4 2- D 1 5 /8
C O D E N O. 5 0 0 3- 3 2 1 5 0 0 3- 3 2 2 5 0 0 3- 3 2 3 5 0 0 3- 3 2 4 5 0 0 3- 3 2 5 5 0 0 3- 3 2 6 5 0 0 3- 3 2 7 5 0 0 3- 3 2 8 5 0 0 3- 3 2 9 5 0 0 3- 3 3 0 5 0 0 3- 3 3 1 5 0 0 3- 3 3 2
I N C H SI Z E C 4 2- H O R D E R N O. C 4 2- H 3 /8 C 4 2- H 1 /2 C 4 2- H 5 /8 C 4 2- H 3 /4 C 4 2- H 7 /8 C 4 2- H 1 C 4 2- H 1 1 /8 C 4 2- H 1 1 /4
C O D E N O. 5 0 0 3- 4 3 1 5 0 0 3- 4 3 2 5 0 0 3- 4 3 3 5 0 0 3- 4 3 4 5 0 0 3- 4 3 5 5 0 0 3- 4 3 6 5 0 0 3- 4 3 7 5 0 0 3- 4 3 8
I N C H SI Z E C 4 2- S O R D E R N O. C 4 2- S 3 /8 C 4 2- S 1 /2 C 4 2- S 5 /8 C 4 2- S 3 /4 C 4 2- S 7 /8
C O D E N O. 5 0 0 3- 4 9 1 5 0 0 3- 4 9 2 5 0 0 3- 4 9 3 5 0 0 3- 4 9 4 5 0 0 3- 4 9 5
C 6 0- D Ø O R D E R N O. C 6 0- D 3 /8 C 6 0- D 1 /2 C 6 0- D 5 /8 C 6 0- D 3 /4 C 6 0- D 7 /8 C 6 0- D 1 C 6 0- D 1 1 /8 C 6 0- D 1 1 /4 C 6 0- D 1 3 /8 C 6 0- D 1 1 /2 C 6 0- D 1 5 /8 C 6 0- D 1 3 /4 C 6 0- D 1 7 /8 C 6 0- D 2
C O D E N O. 5 0 0 3- 3 5 1 5 0 0 3- 3 5 2 5 0 0 3- 3 5 3 5 0 0 3- 3 5 4 5 0 0 3- 3 5 5 5 0 0 3- 3 5 6 5 0 0 3- 3 5 7 5 0 0 3- 3 5 8 5 0 0 3- 3 5 9 5 0 0 3- 3 6 0 5 0 0 3- 3 6 1 5 0 0 3- 3 6 2 5 0 0 3- 3 6 3 5 0 0 3- 3 6 4
C 8 0- Ø O R D E R N O. C 8 0- D 3 /4 C 8 0- D 7 /8 C 8 0- D 1 C 8 0- D 1 1 /8 C 8 0- D 1 1 /4 C 8 0- D 1 3 /8 C 8 0- D 1 1 /2 C 8 0- D 1 5 /8 C 8 0- D 1 3 /4 C 8 0- D 1 7 /8 C 8 0- D 2 C 8 0- D 2 1 /8 C 8 0- D 2 1 /4 C 8 0- D 2 3 /8 C 8 0- D 2 1 /2 C 8 0- D 2 5 /8 C 8 0- D 2 7 /8 C 8 0- D 3
C O D E N O. 5 0 0 3- 3 8 1 5 0 0 3- 3 8 2 5 0 0 3- 3 8 3 5 0 0 3- 3 8 4 5 0 0 3- 3 8 5 5 0 0 3- 3 8 6 5 0 0 3- 3 8 7 5 0 0 3- 3 8 8 5 0 0 3- 3 8 9 5 0 0 3- 3 9 0 5 0 0 3- 3 9 1 5 0 0 3- 3 9 2 5 0 0 3- 3 9 3 5 0 0 3- 3 9 4 5 0 0 3- 3 9 5 5 0 0 3- 3 9 6 5 0 0 3- 3 9 7 5 0 0 3- 3 9 8
L AT H E C O L L E T
H E X. S H A P E / M E T RI C C 2 6- H
C 6 0- H O R D E R N O. C 6 0- H 3 /8 C 6 0- H 1 /2 C 6 0- H 5 /8 C 6 0- H 3 /4 C 6 0- H 7 /8 C 6 0- H 1 C 6 0- H 1 1 /8 C 6 0- H 1 1 /4 C 6 0- H 1 3 /8
C O D E N O. 5 0 0 3- 4 5 1 5 0 0 3- 4 5 2 5 0 0 3- 4 5 3 5 0 0 3- 4 5 4 5 0 0 3- 4 5 5 5 0 0 3- 4 5 6 5 0 0 3- 4 5 7 5 0 0 3- 4 5 8 5 0 0 3- 4 5 9
C 6 0- S O R D E R N O. C 6 0- S 3 /8 C 6 0- S 1 /2 C 6 0- S 5 /8 C 6 0- S 3 /4 C 6 0- S 7 /8 C 6 0- S 1 C 6 0- S 1 1 /8
C O D E N O. 5 0 0 3- 5 0 1 5 0 0 3- 5 0 2 5 0 0 3- 5 0 3 5 0 0 3- 5 0 4 5 0 0 3- 5 0 5 5 0 0 3- 5 0 6 5 0 0 3- 5 0 7
L A T H E M A C HI N E A C C E S S O RI E S
E30
T o ol P o st Gri n d er O N L at h e W/ O C E
Li g ht D ut y
F or I nt er n al Gri n di n g
O R D E R N O. V G R- 1 5 0
1.
3.
2.
St a n d ar d A c c e s s ori e s 4.
6.
1.I nt er n al S pi n dl e ....................................................... 1 2. P ull e y f or I nt er n al Gri n di n g .................................... 2 3. Fl at B elt ................................................................... 1 4. Di a m o n d t o ol .......................................................... 1 5. H ol d er f or Di a m o n d T o ol ......................................... 1 6. k e y F ol d s ( 8, 5, 3, 2 m m) ......................................... 4 E C O N O MI C A L T Y P E F O R LI G H T D U T Y O N L Y 2 2 0 V/ 3 P H, 3 8 0 V/ 3 P H C O L O R & S H A P E M A Y V A R Y.
5.
C h ar a ct eri sti c F e at ur e s w hi c h ar e m a d e of all o y st e el h e at-tr e at e d f or hi g h w e ar r e si st a n c e, pr e ci si o n, a s w ell a s m ai nt ai ni n g t o t h e l o w e st t e m p er at ur e f or d ur a bilit y a n d st a bilit y. T h e m ot or b a s e a n d t h e s pi n dl e b u s hi n g ar e a dj u st a bl e. T h e m ot or i s w ell d e si g n e d wit h a s p e ci al a n d ni c e a p p e ar a n c e, T h e R. P. M. of t hi s m ot or v ari e d d e p e n di n g o n t h e si z e of t h e w or k pi e c e. T hi s gri n d er i s c a p a bl e of gri n di n g t h e w or k pi e c e t o a mi ni m u m of 3 m m i n o ut er di a m et er a n d fr o m 2 m m u p i n i n n er T h e s pi n dl e b u s hi n g i s m a d e of c a st ir o n, a n d s u p p ort e d b y t hr e e s urf a c e s. T h er ef or e, it i s d ur a bl e a n d el a sti c. M at eri al s s u c h a s st e el, ir o n, c o p p er ( br a s s), al u mi n u m, c a st ir o n, pl a sti c s, pr o c el ai n, m ar bl e, r e g ar dl e s s of b ei n g h e at tr e at e d or n ot, c a n b e gr o u n d o n t hi s m a c hi n e w hi c h f u n cti o n s li e a c yli n dri c al gri n d er. S o it m a y l o w er t h e c o st of t h e pr o d u cti o n. W e a s s ur e y o u of hi g h q u alit y pr o d u ct s.
T y p e s of Gri n di n g F or W or k Pi e c e s
E31
L A T H E M A C HI N E A C C E S S O RI E S
T O O L P O S T G RI N D E R O N L A T H E
T o ol P o st Gri n d er O N L at h e
CL O C R M AY VA R Y N O T F O R HI G H P R E CI SI O N G RI N DI N G
M ai n Di m e n si o n. ( m m) A
B
C
D
E
F
G
J
K
L
M
O
N et W ei g ht ( k g s)
V G R- 1 6 5
280
275
2 6 0- 3 1 0
50
160
11 0
65
230
4 0- 6 5
105
40
85
48
520x430x350
V G R- 1 5 0
280
275
2 5 0- 3 0 0
48
160
11 0
65
150
4 0- 6 5
105
40
85
38
520x430x350
V G R- 1 2 5
270
230
2 3 0- 2 8 0
48
-
11 0
65
150
3 4- 5 8
90
15
75
35
520x430x350
V G R- 1 0 0
235
200
170
40
-
11 0
50
150
28
45
10
64
24
450x320x340
O R DE R N O.
E xt er n al S pi n dl e
P a c ki n g Si z e ( m m)
Gri n d er o n L at h e ( L e n gt h of S Fwiorn g Gri n di n g B e d of m/ m D e pt h L at h e) ( m m) Ft.
I nt er n al S pi n dl e
C O DE N O.
O R DE R N O.
H P Si z e of W h e el di a x wi dt hh ol e
V G R- 1 6 5
1
5 x 5/ 8 x 5/ 8
3000 3700
2490 3070
2 5- 5 0
1 x 3 /8 x 1 /4
20000 16800 1 3 5 0 0 11 5 0 0
70
8- 1 0
6 5 0- 1 6 0 0 5 0 0 4- 0 0 3
V G R- 1 5 0
1
5 x 5/ 8 x 5/ 8
4500 6000
3750 5000
1 9- 4 0
1 x 3 /8 x 1 /4
20000 16800 1 3 5 0 0 11 5 0 0
70
6- 8
5 5 0- 9 0 0
5 0 0 4- 0 0 4
( R. P. M.) N o n-l o a d Speed
Di a m et er Si z e of W h e el to be di a x wi dt h x gr o u n d h ol e
( R. P. M.) N o n-l o a d Speed
V G R- 1 2 5
1
/2
5 x 5/ 8 x 5/ 8
4500 6000
3750 5000
1 9- 4 0
1 x 3 /8 x 1 /4
20000 16800 1 3 5 0 0 11 5 0 0
70
4- 6
4 3 0- 8 5 0
5 0 0 4- 0 0 5
V G R- 1 0 0
1
/4
5 x 5/ 8 x 5/ 8
4500 6000
3750 5000
1 9- 4 0
1 x 3 /8 x 1 /4
20000 16800 1 3 5 0 0 11 5 0 0
50
u n d er 4
3 2 0- 4 0 0
5 0 0 4- 0 0 6
L A T H E M A C HI N E A C C E S S O RI E S
E32
V DI T o ol H ol d er s
C o u pli n g T y p e S y st e m
DI N 6 9 8 8 0
A DI N 1 8 0 9 ( F or D U P L O M A TI C)
B DI N 5 4 8 0 ( F or S A U T E R/ D U P L O M A TI C)
C DI N 5 4 8 2 ( F or S A U T E R/ D U P L O M A TI C)
C o u pli n g t o DI N 1 8 0 9
C o u pli n g t o DI N 5 4 8 0
C o u pli n g t o DI N 5 4 8 2
D M T ( F or B A R U F F A L DI)
E I T ( F or D U P L O M A TI C)
S p ur C o u pli n g
S p ur C o u pli n g
V DI T o ol H ol d er s
T o ol H ol d er s Dir e cti o n S y st e m A: A xi al Dir e cti o n
E33
L A T H E M A C HI N E A C C E S S O RI E S
DI N 6 9 8 8 0 B: R a di al Dir e cti o n ( St ar T urr et)
M o d el D A Stri g ht Dir e ct Dri v e
V DI 2 0
V DI 3 0
V DI 4 0
V DI 5 0
20
30
40
50
S H A F T DI A.
BL
B: b a c k w ar d R: ri g ht h a n d
B: b a c k w ar d L: l eft h a n d
F R
FL
F: f or w ar d R: ri g ht h a n d
F: f or w ar d L: l eft h a n d
V DI
B R
TXX T: T a p pi n g
E X: B R 4 0 1 8 0 9 3 2 9 0 it’ s V DI 4 0, ri g ht h a n d, c o u pli n g t y p e 1 8 0 9, b a c k w ar d c o m e wit h E R 3 2 n ut. P. C. D. i s 9 0 m m F L 3 0 5 4 8 2 2 5 5 5 it’ s V DI 3 0 l eft h a n d c o u pli n g t y p e 5 4 8 2 ( B 1 5 x 1 2) f or w ar d, c o m e wit h E R 2 5 n ut. P. C. D. i s 5 5 m m O R D E R M A D E, N O T R E F U N D A B L E. L A T H E M A C HI N E A C C E S S O RI E S
E34
A xi al Drilli n g A n d Milli n g H e a d s
DI N 1 8 0 9
O R D E R M A D E, N O T R E F U N D A B L E.
P o w er Tr a n s mi s si o n A c c or di n g T o DI N 1 8 0 9
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A20180916
20
D A30180925
30
D A40180932
40
D A50180940
50
D A60180950
60
X C a p a cit y 1- 1 0 E R16 1- 1 6 E R25 2- 2 0 E R32 3- 2 6 E R40 1 0- 3 4 E R50
E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
S
M a xi m u m R. P. M.
i
A
B
C
C O D E N O.
32
6000
1: 1
77
49
58
5 0 0 6- 0 0 1
42
6000
1: 1
101
70
68
5 0 0 6- 0 0 2
50
6000
1: 1
111
7 3. 5
86
5 0 0 6- 0 0 3
63
6000
1: 1
120
8 1. 5
96
5 0 0 6- 0 0 4
78
6000
1: 1
140
8 8. 5
11 6
5 0 0 6- 0 0 5
A xi al T a p pi n g H e a d s DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
T D A30180916
30
T D A40180920
40
T D A50180925
50
T D A60180932
60
X C a p a cit y 1- 1 0 E R16 1- 1 3 E R20 1- 1 6 E R25 2- 2 0 E R32
S
M a xi m u m R. P. M.
i
A
B
C
C O D E N O.
30
3000
1: 1
108
7 1. 5
68
5 0 0 6- 0 0 6
35
3000
1: 1
9 5. 5
55
86
5 0 0 6- 0 0 7
42
3000
1: 1
123
8 1. 5
96
5 0 0 6- 0 0 8
50
3000
1: 1
1 5 8. 5
8 8. 5
11 6
5 0 0 6- 0 0 9
A xi al Milli n g H e a d s
DI N 1 8 0 9
E xt er n al c o ol a nt a n d i nt er m e di at e ri n g s s u p pl y T o b e u s e d f or c utt er ar b or a c c or di n g t o DI N 6 3 5 8
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
X C a p a cit y
S
M a xi m u m R. P. M.
i
A
B
C
G
C O D E N O.
D A30180916 C
30
16
32
3000
1: 1
9 1. 5
70
68
27
5 0 0 6- 0 1 0
D A40180922 C
40
22
40
3000
1: 1
8 6. 5
7 3. 5
86
31
5 0 0 6- 0 1 2
D A50180922 C
50
22
40
3000
1: 1
11 7
8 1. 5
96
31
5 0 0 6- 0 1 3
D A50180927 C
50
27
40
3000
1: 1
11 7
8 1. 5
96
33
5 0 0 6- 0 1 4
E35
L A T H E M A C HI N E A C C E S S O RI E S
R a di al Drilli n g A n d Milli n g H e a d s- B a c k W ar d T y p e M O D E: B L
M O D E: B R
L E F T- H A N D
RI G H T- H A N D
DI N 1 8 0 9
E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9 O R D E R N O.
B R2018091660 BL2018091660 B R3018092572 BL3018092572 B R4018093290 BL4018093290 B R5018094090 BL5018094090 B R60180950106 BL60180950106
D DI N 6 9 8 8 0 20 30 40 50 60
X C a p a cit y 1- 1 0 E R16 1- 1 6 E R25 2- 2 0 E R32 3- 2 6 E R40 1 0- 3 4 E R50
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
C O D E N O.
30
5000
1: 1
83
50
35
70
27
27
60
5 0 0 6- 0 1 5 A
42
5000
1: 1
95
60
4 1. 5
7 5. 5
3 1. 5
29
72
5 0 0 6- 0 1 6 A
50
5000
1: 1
124
80
44
11 0
42
34
90
5 0 0 6- 0 1 7
63
5000
1: 1
129
86
49
11 2
45
39
90
5 0 0 6- 0 1 8
78
5000
1: 1
154
104
7 4. 5
123
54
52
106
5 0 0 6- 0 1 9 A
R a di al T a p pi n g H e a d s- B a c k W ar d T y p e
DI M E N SI O N S O R D E R N O.
T B R3018091672 T BL3018091672 T B R4018092090 T BL4018092090 T B R5018092590 T BL5018092590 T B R60180932106 T BL60180932106
D DI N 6 9 8 8 0 30 40 50 60
X C a p a cit y 1- 1 0 E R16 1- 1 3 E R20 1- 1 6 E R25 2- 2 0 E R32
DI N 1 8 0 9
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
C O D E N O.
30
3000
1: 1
95
60
44
7 5. 5
3 1. 5
32
72
5 0 0 6- 0 2 0 A
35
3000
1: 1
124
80
5 9. 5
11 0
42
4 9. 5
90
5 0 0 6- 0 2 1
42
3000
1: 1
129
86
54
11 2
45
36
90
5 0 0 6- 0 2 2
50
3000
1: 1
154
104
105
123
54
8 2. 5
106
5 0 0 6- 0 2 3 A
R a di al Drilli n g A n d Milli n g H e a d s
DI N 1 8 0 9
O R D E R M A D E, N O T R E F U N D A B L E.
M O D E: F L
M O D E: F R
L E F T- H A N D
RI G H T- H A N D
T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
F R3018092555 FL3018092555 F R4018093265 FL4018093265 F R5018094075 FL5018094075
D DI N 6 9 8 8 0 30 40 50
X C a p a cit y 1- 1 6 E R25 2- 2 0 E R32 3- 2 6 E R40
S
M a xi m u m R. P. M.
i
A
B
C
F
G
M
C O D E N O.
42
5000
1: 1
87
64
7 4. 5
34
26
55
5 0 0 6- 0 2 4
50
5000
1: 1
99
80
71
40
23
65
5 0 0 6- 0 2 5
63
5000
1: 1
11 5
88
101
56
34
75
5 0 0 6- 0 2 6
R a di al T a p pi n g H e a d s DI M E N SI O N S O R D E R N O.
TF R3018091655 TFL3018091655 TF R4018092065 TFL4018092065 TF R5018092575 TFL5018092575
D DI N 6 9 8 8 0 30 40 50
X C a p a cit y 1- 1 0 E R16 1- 1 3 E R20 1- 1 6 E R25
DI N 1 8 0 9
S
M a xi m u m R. P. M.
i
A
B
C
F
G
M
C O D E N O.
30
3000
1: 1
87
64
75
41
30
55
5 0 0 6- 0 2 7
35
3000
1: 1
99
80
9 3. 5
40
46
65
5 0 0 6- 0 2 8
42
3000
1: 1
11 5
88
103
56
42
75
5 0 0 6- 0 2 9
L A T H E M A C HI N E A C C E S S O RI E S
E36
V DI
DI M E N SI O N S
A xi al Drilli n g A n d Milli n g H e a d s
OFFSET
DI N 1 8 0 9
C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9 E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S
i i s s p e e d r ati o e x a m pl e: 1: 2. It’ s 2 ti m e s of s p e e d
O R D E R N O.
D DI N 6 9 8 8 0
D A2018091629
20
D A3018092529
30
D A 3 0 1 8 0 9 2 5 2 9/ 1
30
D A4018093250
40
D A5018094065
50
X C a p a cit y 1- 1 0 E R16 1- 1 6 E R25 1- 1 6 E R25 2- 2 0 E R32 3- 2 6 E R40
S
M a xi m u m R. P. M.
i
A
B
C
C O D E N O.
30
4000
1: 1
9 3. 5
29
50
5 0 0 6- 0 3 0
42
4000
1: 1
100
29
60
5 0 0 6- 0 3 1
42
8000
1: 2
100
29
60
5 0 0 6- 0 3 2
50
4000
1: 1
1 2 5. 5
50
75
5 0 0 6- 0 3 3
63
3000
1: 1
124
65
86
5 0 0 6- 0 3 4
R a di al Milli n g H e a d s
DI S K C U T T E R U NI T S
DI N 1 8 0 9
O R D E R M A D E, N O T R E F U N D A B L E.
E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
B R 3 0 1 8 0 9 1 6 C/ 3 B L 3 0 1 8 0 9 1 6 C/ 3
i;( 3: 1),It’ s 3 ti m e s of s p e e d d e cr e a s e D DI N 6 9 8 8 0
X C a p a cit y
M a xi m u m R. P. M.
i
A
B
C
E
F
30
16
3000
3: 1
133
64
45
7 7. 5
49
G 5
H
K
M
C O D E N O.
65
16
1 0 7. 5
5 0 0 6- 0 3 5
A n g ul ar H e a d s
T H E A N GL EI S A DJ U ST E D
DI N 1 8 0 9
T o b e u s e d f or c oll et DI N 6 4 9 9 E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A30180920 B
30
E37
X C a p a cit y 1- 1 3 E R20
L A T H E M A C HI N E A C C E S S O RI E S
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
C O D E N O.
35
4000
1: 1
± 9 0º
64
59
54
32
27
60
5 0 0 6- 0 3 6 A
A xi al Drilli n g A n d Milli n g H e a d s
DI N 5 4 8 0
O R D E R M A D E, N O T R E F U N D A B L E.
P o w er Tr a n s mi s si o n A c c or di n g T o DI N 5 4 8 0
DI M E N SI O N S
E xt er n al c o ol a nt s u p pl y T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d
D DI N 6 9 8 8 0
X C a p a cit y
S
M a xi m u m R. P. M.
i
A
B
C
P DI N 5 4 8 0
C O D E N O.
D A30548025
30
1- 1 6 E R25
42
6000
1: 1
101
70
68
W 1 6 X 0. 8
5 0 0 6- 0 3 7
D A40548032
40
2- 2 0 E R32
50
6000
1: 1
111
75
86
W 2 0 X 0. 8
5 0 0 6- 0 3 8
D A50548040
50
3- 2 6 E R40
63
6000
1: 1
122
82
96
W 2 4 X 1. 2 5
5 0 0 6- 0 3 8 A
V DI
O R D E R N O.
A xi al T a p pi n g H e a d s DI M E N SI O N S
DI N 5 4 8 0
O R D E R N O.
D DI N 6 9 8 8 0
X C a p a cit y
S
M a xi m u m R. P. M.
i
A
B
C
P DI N 5 4 8 0
C O D E N O.
T D A30548016
30
1- 1 0 E R16
30
3000
1: 1
108
7 1. 5
68
W 1 6 X 0. 8
5 0 0 6- 0 3 9 A
T D A40548020
40
1- 1 3 E R20
35
3000
1: 1
9 5. 5
55
86
W 2 0 X 0. 8
5 0 0 6- 0 4 0 A
A xi al Milli n g H e a d s
DI N 5 4 8 0
T o b e u s e d f or c utt er ar b or a c c or di n g t o DI N 6 3 5 8 E xt er n al c o ol a nt a n d i nt er m e di at e ri n g s s u p pl y
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
X C a p a cit y
S
M a xi m u m R. P. M.
i
A
B
C
G
P DI N 5 4 8 0
C O D E N O.
D A30548016 C
30
16
32
3000
1: 1
9 1. 5
70
68
27
W 1 6 X 0. 8
5 0 0 6- 0 4 1
D A40548016 C
40
16
32
3000
1: 1
6 8. 5
55
86
27
W 2 0 X 0. 8
5 0 0 6- 0 4 2
D A40548022 C
40
22
32
3000
1: 1
6 8. 5
55
86
31
W 2 0 X 0. 8
5 0 0 6- 0 4 3
L A T H E M A C HI N E A C C E S S O RI E S
E38
R a di al Drilli n g A n d Milli n g H e a d s- B a c k w ar d T y p e M O D E: B L
M O D E: B R
L E F T- H A N D
RI G H T- H A N D
O R D E R M A D E, N O T R E F U N D A B L E.
T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
B R3054802572 BL3054802572 B R4054803290 BL4054803290 B R5054804090 BL5054804090
D X DI N 6 9 8 8 0 C a p a cit y 1- 1 6 30 E R25 2- 2 0 40 E R32 3- 2 6 50 E R40
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
P DI N 5 4 8 0
C O D E N O.
42
5000
1: 1
95
60
4 1. 5
7 5. 5
3 1. 5
2 8. 5
72
W 1 6 X 0. 8
5 0 0 6- 0 4 4 A
50
5000
1: 1
124
80
44
11 0
42
34
90
W 2 0 X 0. 8
5 0 0 6- 0 4 5
63
5000
1: 1
129
86
49
11 2
42
39
90
W 2 4 X 1. 2 5
5 0 0 6- 0 4 5 A
R a di al T a p pi n g H e a d s- S et B a c k DI M E N SI O N S O R D E R N O.
T B R3054801672 T BL3054801672 T B R4054802090 T BL4054802090
D X DI N 6 9 8 8 0 C a p a cit y 1- 1 0 30 E R16 1- 1 3 40 E R20
DI N 5 4 8 0
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
P DI N 5 4 8 0
C O D E N O.
30
3000
1: 1
95
60
44
7 5. 5
3 1. 5
32
72
W 1 6 X 0. 8
5 0 0 6- 0 4 6 A
35
3000
1: 1
124
80
5 9. 5
11 0
42
4 9. 5
90
W 2 0 X 0. 8
5 0 0 6- 0 4 7
R a di al Drilli n g A n d Milli n g H e a d s M O D E: F L
M O D E: F R
L E F T- H A N D
RI G H T- H A N D
DI N 5 4 8 0
T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
F R3054802555 FL3054802555 F R3054802585 FL3054802585 F R4054803265 FL4054803265 F R4054803285 FL4054803285 F R40548032100 FL40548032100
D DI N 6 9 8 8 0 30 30 40 40 40
X C a p a cit y 1- 1 6 E R25 1- 1 6 E R25 2- 2 0 E R32 2- 2 0 E R32 2- 2 0 E R32
S
M a xi m u m R. P. M.
i
A
B
C
F
G
M
P DI N 5 4 8 0
C O D E N O.
42
5000
1: 1
97
64
7 4. 5
41
26
55
W 1 6 X 0. 8
5 0 0 6- 0 4 8
42
5000
1: 1
11 7
64
7 4. 5
41
26
85
W 1 6 X 0. 8
5 0 0 6- 0 4 9
50
5000
1: 1
99
80
71
40
23
65
W 2 0 X 0. 8
5 0 0 6- 0 5 0
50
5000
1: 1
11 9
80
71
40
23
85
W 2 0 X 0. 8
5 0 0 6- 0 5 1
50
5000
1: 1
134
80
71
40
23
100
W 2 0 X 0. 8
5 0 0 6- 0 5 2
R a di al T a p pi n g H e a d s DI M E N SI O N S O R D E R N O.
TF R3054801655 TFL3054801655 TF R3054801685 TFL3054801685 TF R4054802065 TFL4054802065 TF R4054802085 TFL4054802085
E39
D DI N 6 9 8 8 0 30 30 40 40
X C a p a cit y 1- 1 0 E R16 1- 1 0 E R16 1- 1 3 E R20 1- 1 3 E R20
L A T H E M A C HI N E A C C E S S O RI E S
S
M a xi m u m R. P. M.
i
A
B
C
F
G
M
P DI N 5 4 8 0
C O D E N O.
30
3000
1: 1
97
64
75
41
30
55
W 1 6 X 0. 8
5 0 0 6- 0 5 3 A
30
3000
1: 1
11 7
64
75
41
30
85
W 1 6 X 0. 8
5 0 0 6- 0 5 4
35
3000
1: 1
99
80
70
40
25
65
W 2 0 X 0. 8
5 0 0 6- 0 5 5
35
3000
1: 1
11 9
80
70
40
25
85
W 2 0 X 0. 8
5 0 0 6- 0 5 6
A xi al Drilli n g A n d Milli n g H e a d s- Off s et O R D E R M A D E, N O T R E F U N D A B L E.
OFFSET
DI N 5 4 8 0
C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9 E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A3054802529
30
D A 3 0 5 4 8 0 2 5 2 9/ 1
※
D A4054803250
X C a p a cit y 1- 1 6 E R25 1- 1 6 E R25 2- 2 0 E R32
30 40
S
M a xi m u m R. P. M.
i
A
B
C
P DI N 5 4 8 0
C O D E N O.
42
4000
1: 1
100
29
60
W 1 6 X 0. 8
5 0 0 6- 0 5 7
42
8000
1: 2
100
29
60
W 1 6 X 0. 8
5 0 0 6- 0 5 8
50
4000
1: 1
125
65
86
W 2 0 X 0. 8
5 0 0 6- 0 5 9
R a di al Drilli n g A n d Milli n g H e a d s
DI N 5 4 8 0 V DI
DI S K C U T T E R U NI T S
E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
B R 3 0 5 4 8 0 1 6 C/ 3 B L 3 0 5 4 8 0 1 6 C/ 3
D DI N 6 9 8 8 0
X C a p a cit y
M a xi m u m R. P. M.
30
16
3000
i
A
B
C
E
F
3: 1 133
64
45
7 7. 5
49
H
K
M
P DI N 5 4 8 0
C O D E N O.
65
1 6 1 0 8. 5
W 1 6 X 0. 8
5 0 0 6- 0 6 0
G 5
A n g ul ar H e a d s
A N GL EI S A DJ U ST E D
DI N 5 4 8 0
C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9 E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A30548020 B
30
X C a p a cit y 1- 1 3 E R20
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
P DI N 5 4 8 0 C O D E N O.
35
4000
1: 1
± 9 0º
64
59
54
32
27
67
W 1 6 X 0. 8 5 0 0 6- 0 6 1 A
L A T H E M A C HI N E A C C E S S O RI E S
E40
R a di al D o u bl e Drilli n g A n d Milli n g H e a d s
DI N 5 4 8 0
O R D E R M A D E, N O T R E F U N D A B L E.
C oll et i s n ot i n cl u d e d E xt er n al c o ol a nt s u p pl y T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
DF3054802585 D
30
DF4054803285 D
40
DF40548032100 D
40
X C a p a cit y 1- 1 6 E R25 2- 2 0 E R32 2- 2 0 E R32
S
M a xi m u m R. P. M.
i
A
B
C
G
M
P DI N 5 4 8 0
C O D E N O.
42
4000
1: 1
11 2
64
66
2 6. 5
85
W 1 6 X 0. 8
5 0 0 6- 0 6 2
50
4000
1: 1
11 9
80
82
28
85
W 2 0 X 0. 8
5 0 0 6- 0 6 3
50
4000
1: 1
134
80
82
28
100
W 2 0 X 0. 8
5 0 0 6- 0 6 4
A xi al D o u bl e Drilli n g A n d Milli n g H e a d s
D O U B L E C O L L E T S, Y O F F S E T
DI N 5 4 8 0
C oll et i s n ot i n cl u d e d E xt er n al c o ol a nt s u p pl y T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A30548016 D Y
30
E41
X C a p a cit y 1- 1 0 E R16
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
H
P DI N 5 4 8 0 C O D E N O.
30
4000
1: 1
83
2 4. 5
24
80
95
40
48
W 1 6 X 0. 8
L A T H E M A C HI N E A C C E S S O RI E S
5 0 0 6- 0 6 5
A xi al Drilli n g A n d Milli n g H e a d s
F O R DI N 5 4 8 2 M A C HI N E U SI N G
DI N 5 4 8 2
E xt er n al c o ol a nt s u p pl y T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d
P o w er Tr a n s mi s si o n A c c or di n g T o DI N 5 4 8 2
DI M E N SI O N S
D DI N 6 9 8 8 0
X C a p a cit y
S
M a xi m u m R. P. M.
i
A
B
C
P DI N 5 4 8 2
C O D E N O.
D A30548225
30
1- 1 6 E R25
42
6000
1: 1
101
70
68
B15 X12
5 0 0 6- 0 6 6
D A40548232
40
2- 2 0 E R32
50
6000
1: 1
11 0
7 3. 5
86
B17 X14
5 0 0 6- 0 6 7
D A50548240
50
3- 2 6 E R40
63
6000
1: 1
120
8 1. 5
96
B20 X17
5 0 0 6- 0 6 8
D A60548250
60
1 0- 3 4 E R50
78
6000
1: 1
140
8 8. 5
11 6
B25 X22
5 0 0 6- 0 6 9
V DI
O R D E R N O.
A xi al T a p pi n g H e a d s DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
T D A30548216
30
T D A40548220
40
T D A50548225
50
T D A60548232
60
X C a p a cit y 1- 1 0 E R16 1- 1 3 E R20 1- 1 6 E R25 2- 2 0 E R32
DI N 5 4 8 2
S
M a xi m u m R. P. M.
i
A
B
C
P DI N 5 4 8 2
C O D E N O.
30
3000
1: 1
108
7 1. 5
68
B15 X12
5 0 0 6- 0 7 0
35
3000
1: 1
9 5. 5
55
86
B17 X14
5 0 0 6- 0 7 1
42
3000
1: 1
123
8 1. 5
96
B20 X17
5 0 0 6- 0 7 2
50
3000
1: 1
1 5 8. 5
8 8. 5
11 6
B25 X22
5 0 0 6- 0 7 3
A xi al Milli n g H e a d s
DI N 5 4 8 0
O R D E R M A D E, N O T R E F U N D A B L E.
E xt er n al c o ol a nt a n d i nt er m e di at e ri n g s s u p pl y T o b e u s e d f or c utt er ar b or a c c or di n g t o DI N 6 3 5 8
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
X C a p a cit y
S
M a xi m u m R. P. M.
i
A
B
C
G
P DI N 5 4 8 2
C O D E N O.
D A30548216 C
30
16
32
3000
1: 1
9 1. 5
70
68
27
B15 X12
5 0 0 6- 0 7 4
D A40548216 C
40
16
32
3000
1: 1
6 8. 5
55
86
27
B17 X14
5 0 0 6- 0 7 5
D A40548222 C
40
22
32
3000
1: 1
6 8. 5
55
86
31
B17 X14
5 0 0 6- 0 7 6
D A50548222 C
50
22
40
3000
1: 1
11 7
8 1. 5
96
31
B20 X17
5 0 0 6- 0 7 7
D A50548227 C
50
27
40
3000
1: 1
11 7
8 8. 5
96
33
B20 X17
5 0 0 6- 0 7 8
L A T H E M A C HI N E A C C E S S O RI E S
E42
R a di al Drilli n g A n d Milli n g H e a d s
B A C K WA R DS
DI N 5 4 8 2
M O D E: B L
M O D E: B R
L E F T- H A N D
RI G H T- H A N D
T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S
D X DI N 6 9 8 8 0 C a p a cit y 1- 1 6 B R3054822572 30 E R25 BL3054822572 2- 2 0 B R4054823290 40 E R32 BL4054823290 3- 2 6 B R5054824090 50 E R40 BL5054824090 1 0- 3 4 B R60548250106 60 E R50 BL60548250106 O R D E R N O.
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M DI N P5 4 8 2
42
5000
1: 1
95
60
42
7 5. 5
3 1. 5
2 8. 5
72
B15 X12
5 0 0 6- 0 7 9 A
50
5000
1: 1
124
80
44
11 0
42
34
90
B17 X14
5 0 0 6- 0 8 0
63
5000
1: 1
129
86
49
11 2
45
39
90
B20 X17
5 0 0 6- 0 8 1
78
5000
1: 1
147
104
83
11 8
54
42
106
B25 X22
5 0 0 6- 0 8 2 A
C O D E N O.
R a di al T a p pi n g H e a d s- B a c k w ar d s
DI M E N SI O N S
D X DI N 6 9 8 8 0 C a p a cit y 1- 1 0 T B R3054821672 30 E R16 T BL3054821672 1- 1 3 T B R4054822090 40 E R20 T BL4054822090 2- 1 6 T B R5054822590 50 E R25 T BL5054822590 2- 2 0 T B R60548232106 60 E R32 T BL60548232106 O R D E R N O.
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
P DI N 5 4 8 2
C O D E N O.
30
3000
1: 1
95
60
44
7 5. 5
3 1. 5
32
69
B15 X12
5 0 0 6- 0 8 3 A
35
3000
1: 1
24
80
50
11 0
42
34
90
B17 X14
5 0 0 6- 0 8 4
42
3000
1: 1
129
86
54
11 2
45
36
90
B20 X17
5 0 0 6- 0 8 5
50
3000
1: 1
147
104
87
11 8
54
40
106
B25 X22
5 0 0 6- 0 8 6 A
R a di al Drilli n g A n d Milli n g H e a d s
DI N 5 4 8 2
O R D E R M A D E, N O T R E F U N D A B L E.
M O D E: F L
M O D E: F R
L E F T- H A N D
RI G H T- H A N D
T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
F R3054822565 FL3054822565 F R3054822585 FL3054822585 F R4054823265 FL4054823265 F R4054823285 FL4054823285
D DI N 6 9 8 8 0 30 30 40 40
X C a p a cit y 1- 1 6 E R25 1- 1 6 E R25 2- 2 0 E R32 2- 2 0 E R32
S
M a xi m u m R. P. M.
i
A
B
C
F
G
M
P DI N 5 4 8 2
C O D E N O.
42
5000
1: 1
97
64
7 4. 5
41
26
65
B15 X12
5 0 0 6- 0 8 7
42
5000
1: 1
11 7
64
7 4. 5
41
26
85
B15 X12
5 0 0 6- 0 8 8
50
5000
1: 1
99
80
71
40
23
65
B17 X14
5 0 0 6- 0 8 9
50
5000
1: 1
11 9
80
71
40
23
85
B17 X14
5 0 0 6- 0 9 0
R a di al T a p pi n g H e a d s
DI M E N SI O N S O R D E R N O.
TF R3054821665 TFL3054821665 TF R3054821685 TFL3054821685 TF R4054822065 TFL4054822065 TF R4054822085 TFL4054822085
E43
D DI N 6 9 8 8 0 30 30 40 40
X C a p a cit y 1- 1 0 E R16 1- 1 0 E R16 1- 1 3 E R20 1- 1 3 E R20
L A T H E M A C HI N E A C C E S S O RI E S
S
M a xi m u m R. P. M.
i
A
B
C
F
G
M
P DI N 5 4 8 2
C O D E N O.
30
3000
1: 1
97
64
75
41
30
65
B15 X12
5 0 0 6- 0 9 2
30
3000
1: 1
11 7
64
75
41
30
85
B15 X12
5 0 0 6- 0 9 3
35
3000
1: 1
99
80
70
40
25
65
B17 X14
5 0 0 6- 0 9 4
35
3000
1: 1
11 9
80
70
40
25
85
B17 X14
5 0 0 6- 0 9 5
A xi al Drilli n g A n d Milli n g H e a d s
OFFSET TYPE
DI N 5 4 8 2
O R D E R M A D E, N O T R E F U N D A B L E.
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A3054822529
30
D A 3 0 5 4 8 2 2 5 2 9/ 1
※ 30
D A4054823250
40
D A5054824065
50
X C a p a cit y 1- 1 6 E R25 1- 1 6 E R25 2- 2 0 E R32 3- 2 6 E R40
S
M a xi m u m R. P. M.
i
A
B
C
P DI N 5 4 8 2
C O D E N O.
42
4000
1: 1
100
29
60
B15 X12
5 0 0 6- 0 9 7
42
8000
1: 2
100
29
60
B15 X12
5 0 0 6- 0 9 8
50
4000
1: 1
125
50
75
B17 X14
5 0 0 6- 0 9 9
63
3000
1: 1
124
65
86
B20 X17
5 0 0 6- 1 0 0
R a di al Milli n g H e a d s
DI S K C U T T E R U NI T S
DI N 5 4 8 2
E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
B R 3 0 5 4 8 2 1 6 C/ 3 B L 3 0 5 4 8 2 1 6 C/ 3
D X M a xi m u m DI N 6 9 8 8 0 C a p a cit y R. P. M. 30
16
3000
i
A
B
C
E
F
3: 1 133
64
45
7 7. 5
49
H
K
M
P DI N 5 4 8 2
C O D E N O.
65
1 6 1 0 7. 5
B15 X12
5 0 0 6- 1 0 1
G 5
A n g ul ar H e a d s
DI N 5 4 8 2
T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A30548220 B
30
X C a p a cit y 1- 1 3 E R20
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
35
4000
1: 1
± 9 0º
64
59
54
32
27
67
P DI N 5 4 8 2 C O D E N O. B15 X12
5 0 0 6- 1 0 2 A
L A T H E M A C HI N E A C C E S S O RI E S
E44
V DI
T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d E xt er n al c o ol a nt s u p pl y
A xi al Drilli n g A n d Milli n g H e a d sF or B ar uff al di T y p e S PO UR RD E CR O MUA PD LIE, NN G-O T MR TE FT UYN PD EA B L E.
P o w er Tr a n s mi s si o n A c c or di n g T o B A R U F F A L DI M T: Fr o nt al Tr a n s mi s si o n C o u pli n g G e ar i s Fi x e d V er si o n DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A20 MT16
20
D A30 MT25
30
D A40 MT32
40
D A50 MT40
50
X C a p a cit y 1- 1 0 E R16 1- 1 6 E R25 2- 2 0 E R32 3- 2 6 E R40
T o b e u s e d f or c oll et DI N 6 4 9 9 E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d
S
M a xi m u m R. P. M.
i
A
B
C
C O D E N O.
30
6000
1: 1
76
48
58
5 0 0 6- 1 0 3
42
6000
1: 1
86
55
68
5 0 0 6- 1 0 4
50
6000
1: 1
11 2
55
86
5 0 0 6- 1 0 5
63
6000
1: 1
11 8
8 1. 5
96
5 0 0 6- 1 0 6
A xi al T a p pi n g H e a d s DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
T D A30 MT16
30
T D A40 MT20
40
T D A50 MT25
50
X C a p a cit y 1- 1 0 E R16 1- 1 3 E R20 1- 1 6 E R25
S
M a xi m u m R. P. M.
i
A
B
C
C O D E N O.
30
3000
1: 1
108
7 1. 5
68
5 0 0 6- 1 0 7
35
3000
1: 1
9 5. 5
55
86
5 0 0 6- 1 0 8
42
3000
1: 1
123
8 1. 5
96
5 0 0 6- 1 0 9
A xi al Milli n g H e a d s
S P U R C O U P LI N G- M T T Y P E
E xt er n al c o ol a nt a n d i nt er m e di at e ri n g s s u p pl y T o b e u s e d f or c utt er ar b or a c c or di n g t o DI N 6 3 5 8
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
X C a p a cit y
S
M a xi m u m R. P. M.
i
A
B
C
G
C O D E N O.
D A30 MT16 C
30
16
32
3000
1: 1
9 1. 5
55
68
27
5 0 0 6- 1 1 0
D A40 MT16 C
40
16
32
3000
1: 1
6 8. 5
55
86
27
5 0 0 6- 1 1 1
D A40 MT22 C
40
22
32
3000
1: 1
6 8. 5
55
86
31
5 0 0 6- 1 1 2
D A50 MT22 C
50
22
40
3000
1: 1
11 7
8 1. 5
96
31
5 0 0 6- 1 1 3
D A50 MT27 C
50
27
40
3000
1: 1
11 7
8 1. 5
96
33
5 0 0 6- 1 1 4
E45
L A T H E M A C HI N E A C C E S S O RI E S
R a di al Drilli n g A n d Milli n g H e a d s- B a c k w ar d s M O D E: B L
O R D E R M A D E, N O T R E F U N D A B L E.
M O D E: B R
L E F T- H A N D
RI G H T- H A N D
E xt er n al c o ol a nt s u p pl y T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d
DI M E N SI O N S O R D E R N O.
B R20 MT1660 BL20 MT1660 B R30 MT2572 BL30 MT2572 B R40 MT3290 BL40 MT3290 B R50 MT4090 BL50 MT4090
S P U R C O U P LI N G- M T T Y P E
D DI N 6 9 8 8 0 20 30 40 50
X C a p a cit y 1- 1 0 E R16 1- 1 6 E R25 2- 2 0 E R32 3- 2 6 E R40
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
C O D E N O.
30
5000
1: 1
83
50
35
70
27
27
60
5 0 0 6- 1 1 5 A
42
5000
1: 1
95
60
42
76
32
29
72
5 0 0 6- 1 1 6 A
50
5000
1: 1
124
80
44
11 0
42
34
90
5 0 0 6- 1 1 7
63
5000
1: 1
129
86
49
11 2
45
39
90
5 0 0 6- 1 1 8
R a di al T a p pi n g H e a d s- B a c k w ar d s
O R D E R N O.
T B R30 MT1672 T BL30 MT1672 T B R40 MT2090 T BL40 MT2090 T B R50 MT2590 T BL50 MT2590
D DI N 6 9 8 8 0 30 40 50
X C a p a cit y 1- 1 0 E R16 1- 1 3 E R20 1- 1 6 E R25
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
C O D E N O.
30
3000
1: 1
95
60
44
76
32
32
72
5 0 0 6- 1 1 9 A
35
3000
1: 1
124
80
50
11 0
42
34
90
5 0 0 6- 1 2 0
42
3000
1: 1
129
86
54
11 2
45
36
90
5 0 0 6- 1 2 1
V DI
DI M E N SI O N S
R a di al Drilli n g A n d Milli n g H e a d s M O D E: F L
M O D E: F R
L E F T- H A N D
RI G H T- H A N D
S P U R C O U P LI N G- M T T Y P E
E xt er n al c o ol a nt s u p pl y T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d
DI M E N SI O N S
D DI N 6 9 8 8 0
O R D E R N O.
F R30 MT2565 FL30 MT2565 F R30 MT2585 FL30 MT2585 F R40 MT3265 FL40 MT3265 F R40 MT3285 FL40 MT3285 F R40 MT32100 FL40 MT32100
30 30 40 40 40
X C a p a cit y 1- 1 6 E R25 1- 1 6 E R25 2- 2 0 E R32 2- 2 0 E R32 2- 2 0 E R32
S
M a xi m u m R. P. M.
i
A
B
C
F
G
M
C O D E N O.
42
5000
1: 1
97
64
7 4. 5
41
26
65
5 0 0 6- 1 2 2
42
5000
1: 1
11 7
64
7 4. 5
41
26
85
5 0 0 6- 1 2 3
50
5000
1: 1
99
80
71
40
23
65
5 0 0 6- 1 2 4
50
5000
1: 1
11 9
80
71
40
23
85
5 0 0 6- 1 2 5
50
5000
1: 1
134
80
71
40
23
100
5 0 0 6- 1 2 6
R a di al T a p pi n g H e a d s DI M E N SI O N S O R D E R N O.
TF R30 MT1665 TFL30 MT1665 TF R30 MT1685 TFL30 MT1685 TF R40 MT2065 TFL40 MT2065 TF R40 MT2085 TFL40 MT2085 TF R50 MT2575 TFL50 MT2575
D DI N 6 9 8 8 0 30 30 40 40 50
X C a p a cit y 1- 1 0 E R16 1- 1 0 E R16 1- 1 3 E R20 1- 1 3 E R20 1- 1 6 E R25
S
M a xi m u m R. P. M.
i
A
B
C
F
G
M
C O D E N O.
30
3000
1: 1
97
64
75
41
30
65
5 0 0 6- 1 2 8
30
3000
1: 1
11 7
64
75
41
30
85
5 0 0 6- 1 2 9
35
3000
1: 1
99
80
70
40
25
65
5 0 0 6- 1 3 0
35
3000
1: 1
11 9
80
70
40
25
85
5 0 0 6- 1 3 1
42
3000
1: 1
11 5
88
103
56
42
75
5 0 0 6- 1 3 2
L A T H E M A C HI N E A C C E S S O RI E S
E46
A xi al Drilli n g A n d Milli n g H e a d s
OFFSET TYPE
S P U R C O U P LI N G- M T T Y P E
C oll et i s n ot i n cl u d e d E xt er n al c o ol a nt s u p pl y T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A20 MT1629
20
D A30 MT2529
30
D A 3 0 M T 2 5 2 9/ 1
※ 30
D A40 MT3250
40
D A50 MT4065
50
X C a p a cit y 1- 1 0 E R16 1- 1 6 E R25 2- 2 0 E R32 2- 2 0 E R32 3- 2 6 E R40
S
M a xi m u m R. P. M.
i
A
B
C
C O D E N O.
30
4000
1: 1
9 3. 5
29
50
5 0 0 6- 1 3 3
42
4000
1: 1
100
29
60
5 0 0 6- 1 3 4
42
8000
1: 2
100
29
60
5 0 0 6- 1 3 5
50
4000
1: 1
125
50
75
5 0 0 6- 1 3 6
63
3000
1: 1
124
65
86
5 0 0 6- 1 3 7
R a di al Milli n g H e a d s
S P U R C O U P LI N G- M T T Y P E
O R D E R M A D E, N O T R E F U N D A B L E
E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
B R 3 0 M T 1 6 C/ 3 B L 3 0 M T 1 6 C/ 3
E47
D DI N 6 9 8 8 0
X C a p a cit y
M a xi m u m R. P. M.
i
A
B
C
E
F
30
16
3000
3: 1
133
64
45
7 7. 5
49
L A T H E M A C HI N E A C C E S S O RI E S
G 5
H
K
M
C O D E N O.
65
16
1 0 7. 5
5 0 0 6- 1 3 8
A n g ul ar H e a d s
O R D E R M A D E, N O T R E F U N D A B L E
S P U R C O U P LI N G- M T T Y P E
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A30 MT20 B
30
X C a p a cit y 1- 1 3 E R20
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
C O D E N O.
35
4000
1: 1
± 9 0º
64
59
54
32
27
67
5 0 0 6- 1 3 9 A
R a di al Drilli n g A n d Milli n g H e a d s
D O U BLE HE A D TYPE
S P U R C O U P LI N G- M T T Y P E
T o b e u s e d f or c oll et DI N 6 4 9 9 E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
DF30 MT2585 D
30
DF40 MT3285 D
40
DF40 MT32100 D
40
X C a p a cit y 1- 1 6 E R25 2- 2 0 E R32 2- 2 0 E R32
S
M a xi m u m R. P. M.
i
A
B
C
G
M
C O D E N O.
42
4000
1: 1
11 2
64
66
27
85
5 0 0 6- 1 4 0
50
4000
1: 1
11 9
80
82
28
85
5 0 0 6- 1 4 1
50
4000
1: 1
134
80
82
28
100
5 0 0 6- 1 4 2
L A T H E M A C HI N E A C C E S S O RI E S
E48
V DI
T o b e u s e d f or c oll et DI N 6 4 9 9 E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d
A xi al Drilli n g A n d Milli n g H e a d sF or D u pl o m ati c T y p e S P OU R RD EC R O MU APDLIE, N N G-IO T TR TE FY UP NED A B L E.
P o w er Tr a n s mi s si o n A c c or di n g T o D U P L O M A TI C I T: Fr o n- si d e C o u pli n g i s El a sti c Str o k e
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A 3 0I T 2 5
30
X C a p a cit y 1- 1 6 E R25
E xt er n al c o ol a nt s u p pl y T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d
S
M a xi m u m R. P. M.
i
A
B
C
C O D E N O.
42
6000
1: 1
86
55
68
5 0 0 6- 1 4 3
A xi al T a p pi n g H e a d s DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
T D A 3 0I T 1 6
30
T D A 4 0I T 2 0
40
X C a p a cit y 1- 1 0 E R16 1- 1 3 E R20
S
M a xi m u m R. P. M.
i
A
B
C
C O D E N O.
30
3000
1: 1
85
55
68
5 0 0 6- 1 4 6
35
3000
1: 1
102
55
86
5 0 0 6- 1 4 7
A xi al Milli n g H e a d s
S P U R C O U P LI N G-I T T Y P E
T o b e u s e d f or c utt er ar b or a c c or di n g t o DI N 6 3 5 8 E xt er n al c o ol a nt a n d i nt er m e di at e ri n g s s u p pl y
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
X DI N 6 3 5 8
S
M a xi m u m R. P. M.
i
A
B
C
G
C O D E N O.
D A 3 0I T 1 6 C
30
16
32
3000
1: 1
9 1. 5
55
68
27
5 0 0 6- 1 4 9
D A 4 0I T 1 6 C
40
16
32
3000
1: 1
6 8. 5
55
86
27
5 0 0 6- 1 5 0
D A 4 0I T 2 2 C
40
22
32
3000
1: 1
6 8. 5
55
86
31
5 0 0 6- 1 5 1
E49
L A T H E M A C HI N E A C C E S S O RI E S
R a di al Drilli n g A n d Milli n g H e a d s O R D E R M A D E, N O T R E F U N D A B L E.
M O D E: F L
M O D E: F R
L E F T- H A N D
RI G H T- H A N D
S P U R C O U P LI N G-I T T Y P E
E xt er n al c o ol a nt s u p pl y T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
F L 3 0I T 2 5 6 5 F R 3 0I T 2 5 8 5 F L 3 0I T 2 5 8 5 F L 4 0I T 3 2 6 5
30
F L 4 0I T 3 2 1 0 0
40
30 40
X C a p a cit y 1- 1 6 E R25 1- 1 6 E R25 2- 2 0 E R32 2- 2 0 E R32
S
M a xi m u m R. P. M.
i
A
B
C
F
G
M
C O D E N O.
42
5000
1: 1
97
64
7 4. 5
41
26
65
5 0 0 6- 1 5 4
42
5000
1: 1
11 7
64
7 4. 5
41
26
85
5 0 0 6- 1 5 5
50
5000
1: 1
99
80
71
40
23
65
5 0 0 6- 1 5 6
50
5000
1: 1
134
80
71
40
23
100
5 0 0 6- 1 5 8
V DI
R a di al T a p pi n g H e a d s DI M E N SI O N S O R D E R N O.
T F R 3 0I T 1 6 6 5 T F L 3 0I T 1 6 6 5 T F R 3 0I T 1 6 8 5 T F L 3 0I T 1 6 8 5 T F R 4 0I T 2 0 6 5 T F R 4 0I T 2 0 8 5 T F L 4 0I T 2 0 8 5
D DI N 6 9 8 8 0 30 30 40 40
X C a p a cit y 1- 1 0 E R16 1- 1 0 E R16 1- 1 3 E R20 1- 1 3 E R20
S
M a xi m u m R. P. M.
i
A
B
C
F
G
M
C O D E N O.
32
3000
1: 1
97
64
75
41
30
65
5 0 0 6- 1 6 0
32
3000
1: 1
11 7
64
75
41
30
85
5 0 0 6- 1 6 1
35
3000
1: 1
99
80
70
40
25
65
5 0 0 6- 1 6 2
35
3000
1: 1
11 9
80
70
40
25
85
5 0 0 6- 1 6 3
A n g ul ar H e a d s
E xt er n al c o ol a nt s u p pl y T o b e u s e d f or c oll et DI N 6 4 9 9 C oll et i s n ot i n cl u d e d
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D A 3 0I T 2 0 B
30
X C a p a cit y 1- 1 3 E R20
S
M a xi m u m R. P. M.
i
A
B
C
E
F
G
M
C O D E N O.
35
4000
1: 1
± 9 0º
64
59
54
32
27
67
5 0 0 6- 1 6 5 A
Ot h er s h a n k di m e n si o n s u n d er d e v el o p m e nt L A T H E M A C HI N E A C C E S S O RI E S
E50
R a di al Drilli n g A n d Milli n g H e a d s
D O U BLE C OLLETS
S P U R C O U P LI N G-I T T Y P E
O R D E R M A D E, N O T R E F U N D A B L E.
C oll et i s n ot i n cl u d e d E xt er n al c o ol a nt s u p pl y T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D F 3 0I T 2 5 8 5 D
30
D F 4 0I T 3 2 8 5 D
40
D F 4 0I T 3 2 1 0 0 D
40
X C a p a cit y 1- 1 6 E R25 2- 2 0 E R32 2- 2 0 E R32
S
M a xi m u m R. P. M.
i
A
B
C
G
M
C O D E N O.
42
4000
1: 1
11 2
64
66
2 6. 5
85
5 0 0 6- 1 6 6
50
4000
1: 1
11 9
80
82
28
85
5 0 0 6- 1 6 7
50
4000
1: 1
134
80
82
28
100
5 0 0 6- 1 6 8
Ot h er s h a n k di m e n si o n s u n d er d e v el o p m e nt
DI M E N SI O N S
E51
d1 h6
l1 ± 0. 3
d3
h1 max
h2 ± 0. 1
l2 ± 0. 0 5
l3 mi n
l4 +1
r4 ± 0. 0 2
20
40
10
H6
50
16
18
2 1. 7
24
2
18
30
55
14
H9
68
20
27
2 9. 7
40
2
25
40
63
14
H9
83
25
36
2 9. 7
40
3
32
50
78
16
H9
98
32
45
3 5. 7
48
3
37
60
94
16
H9
123
32
55
4 3. 7
56
4
48
d2
L A T H E M A C HI N E A C C E S S O RI E S
R a di al St ati c H ol d er s
B1 B2 T Y P E
DI N 6 9 8 8 0
O R D E R M A D E, N O T R E F U N D A B L E.
S h ort E xt er n al C o ol a nt S u p pl y Ri g ht- h a n d
B1 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
B 1- 2 0 x 1 6
20
55
30
7
16
19
30
25
30
16
5 0 0 6- 1 8 0
B 1- 3 0 x 2 0
30
70
35
10
20
26
38
28
40
22
5 0 0 6- 1 8 1
B 1- 4 0 x 2 5
40
85
4 2. 5
1 2. 5
25
35
48
3 2. 5
44
22
5 0 0 6- 1 8 2
B 1- 5 0 x 3 2
50
100
50
16
32
42
60
35
55
30
5 0 0 6- 1 8 3
B 1- 6 0 x 3 2
60
125
6 2. 5
16
32
46
6 2. 5
4 2. 5
60
30
5 0 0 6- 1 8 4
L eft- h a n d E xt er n al C o ol a nt S u p pl y S h ort
B2 O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
B 2- 2 0 x 1 6
20
55
30
7
16
19
30
25
30
16
5 0 0 6- 1 8 5
B 2- 3 0 x 2 0
30
70
35
10
20
26
38
28
40
22
5 0 0 6- 1 8 6
B 2- 4 0 x 2 5
40
85
4 2. 5
1 2. 5
25
35
48
3 2. 5
44
22
5 0 0 6- 1 8 7
B 2- 5 0 x 3 2
50
100
50
16
32
42
60
35
55
30
5 0 0 6- 1 8 8
B 2- 6 0 x 3 2
60
125
6 2. 5
16
32
46
6 2. 5
4 2. 5
60
30
5 0 0 6- 1 8 9
R a di al St ati c H ol d er s
B3 B4 T Y P E
DI N 6 9 8 8 0 S h ort E xt er n al C o ol a nt S u p pl y Ri g ht- h a n d
B3 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
B 3- 2 0 x 1 6
20
55
30
7
16
19
30
25
30
16
5 0 0 6- 1 9 0
B 3- 3 0 x 2 0
30
70
35
10
20
22
38
35
40
22
5 0 0 6- 1 9 1
B 3- 4 0 x 2 5
40
85
4 2. 5
1 2. 5
25
30
48
4 2. 5
44
22
5 0 0 6- 1 9 2
B 3- 5 0 x 3 2
50
100
50
16
32
35
60
50
55
30
5 0 0 6- 1 9 3
B 3- 6 0 x 3 2
60
125
6 2. 5
16
32
4 2. 5
6 2. 5
4 2. 5
60
30
5 0 0 6- 1 9 4
L eft- h a n d E xt er n al C o ol a nt S u p pl y S h ort
B4 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
B 4- 2 0 x 1 6
20
55
30
7
16
19
30
25
30
16
5 0 0 6- 1 9 5
B 4- 3 0 x 2 0
30
70
35
10
20
22
38
35
40
22
5 0 0 6- 1 9 6
B 4- 4 0 x 2 5
40
85
4 2. 5
1 2. 5
25
30
48
4 2. 5
44
22
5 0 0 6- 1 9 7
B 4- 5 0 x 3 2
50
100
50
16
32
35
60
50
55
30
5 0 0 6- 1 9 8
B 4- 6 0 x 3 2
60
125
6 2. 5
16
32
4 2. 5
6 2. 5
4 2. 5
60
30
5 0 0 6- 1 9 9
L A T H E M A C HI N E A C C E S S O RI E S
E52
V DI
DI M E N SI O N S
R a di al St ati c H ol d er s
B5 B6 T Y P E
DI N 6 9 8 8 0
O R D E R M A D E, N O T R E F U N D A B L E.
E xt er n al C o ol a nt S u p pl y Ri g ht- h a n d Long
B5 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
B 5- 2 0 x 1 6
20
75
50
7
16
19
30
25
30
16
5 0 0 6- 2 0 0
B 5- 3 0 x 2 0
30
100
65
10
20
26
38
28
40
22
5 0 0 6- 2 0 1
B 5- 4 0 x 2 5
40
11 8
76
1 2. 5
25
35
48
3 2. 5
44
22
5 0 0 6- 2 0 2
B 5- 5 0 x 3 2
50
130
80
16
32
42
60
35
55
30
5 0 0 6- 2 0 3
B 5- 6 0 x 3 2
60
145
83
16
32
46
6 2. 5
4 2. 5
60
30
5 0 0 6- 2 0 4
L eft- h a n d E xt er n al C o ol a nt S u p pl y Long
B6 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
B 6- 2 0 x 1 6
20
75
50
7
16
19
30
25
30
16
5 0 0 6- 2 0 5
B 6- 3 0 x 2 0
30
100
65
10
20
26
38
28
40
22
5 0 0 6- 2 0 6
B 6- 4 0 x 2 5
40
11 8
76
1 2. 5
25
35
48
3 2. 5
44
22
5 0 0 6- 2 0 7
B 6- 5 0 x 3 2
50
130
80
16
32
42
60
35
55
30
5 0 0 6- 2 0 8
B 6- 6 0 x 3 2
60
145
83
16
32
46
6 2. 5
4 2. 5
60
30
5 0 0 6- 2 0 9
R a di al St ati c H ol d er s
B7 B8 T Y P E
DI N 6 9 8 8 0 E xt er n al C o ol a nt S u p pl y Ri g ht- h a n d Long
B7 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
B 7- 2 0 x 1 6
20
75
50
7
16
19
30
25
30
16
5 0 0 6- 2 1 0
B 7- 3 0 x 2 0
30
100
65
10
20
22
38
35
40
22
5 0 0 6- 2 1 1
B 7- 4 0 x 2 5
40
11 8
7 5. 5
1 2. 5
25
30
48
4 2. 5
44
22
5 0 0 6- 2 1 2
B 7- 5 0 x 3 2
50
130
80
16
32
35
60
50
55
30
5 0 0 6- 2 1 3
B 7- 6 0 x 3 2
60
145
8 2. 5
16
32
4 2. 5
6 2. 5
4 2. 5
60
30
5 0 0 6- 2 1 4
L eft- h a n d E xt er n al C o ol a nt S u p pl y Long
B8 DI M E N SI O N S
E53
L A T H E M A C HI N E A C C E S S O RI E S
O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
B 8- 2 0 x 1 6
20
75
50
7
16
19
30
25
30
16
5 0 0 6- 2 1 5
B 8- 3 0 x 2 0
30
100
65
10
20
22
38
35
40
22
5 0 0 6- 2 1 6
B 8- 4 0 x 2 5
40
11 8
7 5. 5
1 2. 5
25
30
48
4 2. 5
44
22
5 0 0 6- 2 1 7
B 8- 5 0 x 3 2
50
130
80
16
32
35
60
50
55
30
5 0 0 6- 2 1 8
B 8- 6 0 x 3 2
60
145
8 2. 5
16
32
4 2. 5
6 2. 5
4 2. 5
60
30
5 0 0 6- 2 1 9
A xi al St ati c H ol d er s
C1 C2 T Y P E
O R D E R M A D E, N O T R E F U N D A B L E.
DI N 6 9 8 8 0 Ri g ht- h a n d E xt er n al C o ol a nt S u p pl y
C1 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
L3
C O D E N O.
C 1- 2 0 x 1 6
20
65
40
26
16
23
30
25
50
7
30
5 0 0 6- 2 2 0
C 1- 3 0 x 2 0
30
70
35
17
20
28
38
28
70
10
30
5 0 0 6- 2 2 1
C 1- 4 0 x 2 5
40
85
4 2. 5
21
25
-
48
3 2. 5
85
1 2. 5
30
5 0 0 6- 2 2 2
C 1- 5 0 x 3 2
50
100
50
26
32
-
60
35
100
16
40
5 0 0 6- 2 2 3
C 1- 6 0 x 3 2
60
1 2 5 6 2. 5
33
32
-
6 2. 5 4 2. 5 1 2 5
16
40
5 0 0 6- 2 2 4
E xt er n al C o ol a nt S u p pl y L eft- h a n d
C2 O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
L 3
C O D E N O.
C 2- 2 0 x 1 6
20
65
40
26
16
23
30
25
50
7
30
5 0 0 6- 2 2 5
C 2- 3 0 x 2 0
30
76
41
23
20
28
38
28
70
10
30
5 0 0 6- 2 2 6
C 2- 4 0 x 2 5
40
90
4 7. 5 2 5. 5
25
-
48
3 2. 5
85
1 2. 5
30
5 0 0 6- 2 2 7
C 2- 5 0 x 3 2
50
105
55
3 0. 5
32
-
60
35
100
16
40
5 0 0 6- 2 2 8
C 2- 6 0 x 3 2
60
1 2 5 6 2. 5
33
32
-
6 2. 5 4 2. 5 1 2 5
16
40
5 0 0 6- 2 2 9
A xi al St ati c H ol d er s
C3 C4 T Y P E
DI N 6 9 8 8 0 Ri g ht- h a n d E xt er n al C o ol a nt S u p pl y
C3 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
L3
C O D E N O.
C 3- 2 0 x 1 6
20
65
40
26
16
23
30
25
50
7
30
5 0 0 6- 2 3 0
C 3- 3 0 x 2 0
30
70
35
17
20
28
38
35
70
10
30
5 0 0 6- 2 3 1
C 3- 4 0 x 2 5
40
85
4 2. 5
21
25
-
48
4 2. 5
85
1 2. 5
30
5 0 0 6- 2 3 2
C 3- 5 0 x 3 2
50
100
50
26
32
-
60
50
100
16
40
5 0 0 6- 2 3 3
C 3- 6 0 x 3 2
60
1 2 5 6 2. 5
33
32
-
6 2. 5 6 2. 5 1 2 5
16
40
5 0 0 6- 2 3 4
E xt er n al C o ol a nt S u p pl y L eft- h a n d
C4 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
L3
C O D E N O.
C 4- 2 0 x 1 6
20
65
40
26
16
23
30
25
50
7
30
5 0 0 6- 2 3 5
C 4- 3 0 x 2 0
30
76
41
23
20
28
38
35
70
10
30
5 0 0 6- 2 3 6
C 4- 4 0 x 2 5
40
90
4 7. 5 2 5. 5
25
-
48
4 2. 5
85
1 2. 5
30
5 0 0 6- 2 3 7
C 4- 5 0 x 3 2
50
105
55
3 0. 5
32
-
60
50
100
16
40
5 0 0 6- 2 3 8
C 4- 6 0 x 3 2
60
1 2 5 6 2. 5
33
32
-
6 2. 5 6 2. 5 1 2 5
16
40
5 0 0 6- 2 3 9
L A T H E M A C HI N E A C C E S S O RI E S
E54
V DI
DI M E N SI O N S
C o m bi n e d St ati c H ol d er s
C B1 C B2 T Y P E
DI N 6 9 8 8 0
O R D E R M A D E, N O T R E F U N D A B L E.
E xt er n al C o ol a nt S u p pl y Ri g ht- h a n d
C B1 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
C B 1- 2 0 x 1 6
20
65
40
14
16
19
30
25
50
14
5 0 0 6- 2 4 0
C B 1- 3 0 x 2 0
30
74
40
18
20
26
38
28
70
18
5 0 0 6- 2 4 1
C B 1- 4 0 x 2 5
40
85
45
22
25
35
48
3 2. 5
100
22
5 0 0 6- 2 4 2
C B 1- 5 0 x 3 2
50
105
55
25
32
42
60
35
120
25
5 0 0 6- 2 4 3
C B 1- 6 0 x 3 2
60
125
6 2. 5
30
32
46
6 2. 5
4 2. 5
135
30
5 0 0 6- 2 4 4
L eft- h a n d E xt er n al C o ol a nt S u p pl y
C B2 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
C B 2- 2 0 x 1 6
20
65
40
14
16
19
30
25
50
14
5 0 0 6- 2 4 5
C B 2- 3 0 x 2 0
30
74
40
18
20
26
38
28
70
18
5 0 0 6- 2 4 6
C B 2- 4 0 x 2 5
40
85
47
22
25
35
48
3 2. 5
100
22
5 0 0 6- 2 4 7
C B 2- 5 0 x 3 2
50
105
55
25
32
42
60
35
120
25
5 0 0 6- 2 4 8
C B 2- 6 0 x 3 2
60
125
6 2. 5
30
32
46
6 2. 5
4 2. 5
135
30
5 0 0 6- 2 4 9
C o m bi n e d St ati c H ol d er s
C B3 C B4 T Y P E
DI N 6 9 8 8 0 E xt er n al C o ol a nt S u p pl y Ri g ht- h a n d
C B3 DI M E N SI O N S O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
C B 3- 2 0 x 1 6
20
65
40
14
16
19
25
30
50
14
5 0 0 6- 2 5 0
C B 3- 3 0 x 2 0
30
74
40
18
20
22
38
28
70
18
5 0 0 6- 2 5 1
C B 3- 4 0 x 2 5
40
85
45
22
25
30
48
3 2. 5
100
22
5 0 0 6- 2 5 2
C B 3- 5 0 x 3 2
50
105
55
25
32
35
50
60
120
25
5 0 0 6- 2 5 3
C B 3- 6 0 x 3 2
60
125
6 2. 5
30
32
4 2. 5
6 2. 5
6 2. 5
135
30
5 0 0 6- 2 5 4
L eft- h a n d E xt er n al C o ol a nt S u p pl y
C B4 DI M E N SI O N S
E55
L A T H E M A C HI N E A C C E S S O RI E S
O R D E R N O.
D
B1
B2
B3
H1
H2
H3
H4
L1
L2
C O D E N O.
C B 4- 2 0 x 1 6
20
65
40
14
16
19
30
25
50
14
5 0 0 6- 2 5 5
C B 4- 3 0 x 2 0
30
74
40
18
20
22
28
38
70
18
5 0 0 6- 2 5 6
C B 4- 4 0 x 2 5
40
85
47
22
25
30
3 2. 5
48
100
22
5 0 0 6- 2 5 7
C B 4- 5 0 x 3 2
50
105
55
25
32
35
60
50
120
25
5 0 0 6- 2 5 8
C B 4- 6 0 x 3 2
60
125
6 2. 5
30
32
4 2. 5
6 2. 5
6 2. 5
135
30
5 0 0 6- 2 5 9
C o m bi n e d St ati c H ol d er s
DI N 6 9 8 8 0
O R D E R M A D E, N O T R E F U N D A B L E.
Ri g ht- h a n d E xt er n al C o ol a nt S u p pl y
D1 DI M E N SI O N S O R DE R N O.
D
B1
B2
B3
B4
H1
H2
H3
H4
L1
L2
C O DE N O.
D 1- 3 0 x 2 0
30
35
17
41
23
20
38
35
30
60
42
2 5º
5 0 0 6- 2 6 0
D 1- 4 0 x 2 5
40
4 2. 5
21
4 7. 5 2 5. 5
25
48
4 2. 5
40
72
50
2 5º
5 0 0 6- 2 6 1
D 1- 5 0 x 3 2
50
50
26
55
3 0. 5
32
60
50
-
85
60
-
5 0 0 6- 2 6 2
D 1- 6 0 x 3 2
60
5 7. 5
33
5 7. 5
33
32
6 2. 5 6 2. 5
-
11 0
85
-
5 0 0 6- 2 6 3
L eft- h a n d E xt er n al C o ol a nt S u p pl y
D2 DI M E N SI O N S O R DE R N O.
D
B1
B2
B3
B4
H1
H2
H3
H4
L1
L2
D 2- 3 0 x 2 0
30
35
17
41
23
20
38
35
30
60
42
2 5º
5 0 0 6- 2 6 4
D 2- 4 0 x 2 5
40
4 2. 5
21
4 7. 5 2 5. 5
25
48
4 2. 5
40
72
50
2 5º
5 0 0 6- 2 6 5
D 2- 5 0 x 3 2
50
50
26
55
3 0. 5
32
60
50
-
85
60
-
5 0 0 6- 2 6 6
D 2- 6 0 x 3 2
60
5 7. 5
33
5 7. 5
33
32
6 2. 5 6 2. 5
-
11 0
85
-
5 0 0 6- 2 6 7
St ati c H ol d er s
E1 T Y P E
C O DE N O.
DI N 6 9 8 8 0
E1 I nt er n al C o ol a nt S u p pl y U Drill s
DI M E N SI O N S O R D E R N O.
D
D1
D2
D3
H
L1
L2
L3
C O D E N O.
E 1- 2 0 x 2 0
20
20
40
50
-
67
57
18
5 0 0 6- 2 6 8
E 1- 2 0 x 2 5
20
25
45
50
-
71
59
18
5 0 0 6- 2 6 9
E 1- 3 0 x 2 0
30
20
40
68
28
67
54
22
5 0 0 6- 2 7 0
E 1- 3 0 x 2 5
30
25
45
68
28
71
59
22
5 0 0 6- 2 7 1
E 1- 3 0 x 3 2
30
32
52
68
28
75
63
22
5 0 0 6- 2 7 2
E 1- 4 0 x 2 0
40
20
40
83
3 2. 5
67
54
22
5 0 0 6- 2 7 3
E 1- 4 0 x 2 5
40
25
45
83
3 2. 5
75
59
22
5 0 0 6- 2 7 4
E 1- 4 0 x 3 2
40
32
52
83
3 2. 5
75
63
22
5 0 0 6- 2 7 5
E 1- 4 0 x 4 0
40
40
60
83
3 2. 5
90
73
22
5 0 0 6- 2 7 6
E 1- 5 0 x 2 0
50
20
40
98
35
67
54
30
5 0 0 6- 2 7 7
E 1- 5 0 x 2 5
50
25
45
98
35
80
59
30
5 0 0 6- 2 7 8
E 1- 5 0 x 3 2
50
32
52
98
35
80
63
30
5 0 0 6- 2 7 9
E 1- 5 0 x 4 0
50
40
60
98
35
90
73
30
5 0 0 6- 2 8 0
E 1- 5 0 x 5 0
50
50
70
98
35
100
83
30
5 0 0 6- 2 8 1
L A T H E M A C HI N E A C C E S S O RI E S
E56
V DI
D1 D2 T Y P E
St ati c H ol d er s
E2 T Y P E
O R D E R M A D E, N O T R E F U N D A B L E.
DI N 6 9 8 8 0
E2 B ori n g B ar H ol d er E xt er n al C o ol a nt S u p pl y
DI M E N SI O N S O R D E R N O. E 2- 2 0 x 8 E 2- 2 0 x 1 0 E 2- 2 0 x 1 2 E 2- 2 0 x 1 6 E 2- 2 0 x 2 0 E 2- 2 0 x 2 5 E 2- 3 0 x 8 E 2- 3 0 x 1 0 E 2- 3 0 x 1 2 E 2- 3 0 x 1 6 E 2- 3 0 x 2 0 E 2- 3 0 x 2 5 E 2- 3 0 x 3 2 E 2- 4 0 x 1 0 E 2- 4 0 x 1 2 E 2- 4 0 x 1 6 E 2- 4 0 x 2 0 E 2- 4 0 x 2 5 E 2- 4 0 x 3 2 E 2- 4 0 x 4 0 E 2- 5 0 x 1 0 E 2- 5 0 x 1 2 E 2- 5 0 x 1 6 E 2- 5 0 x 2 0 E 2- 5 0 x 2 5 E 2- 5 0 x 3 2 E 2- 5 0 x 4 0 E 2- 5 0 x 5 0 E 2- 6 0 x 1 0 E 2- 6 0 x 1 2 E 2- 6 0 x 1 6 E 2- 6 0 x 2 0 E 2- 6 0 x 2 5 E 2- 6 0 x 3 2 E 2- 6 0 x 4 0 E 2- 6 0 x 5 0
D 20 20 20 20 20 20 30 30 30 30 30 30 30 40 40 40 40 40 40 40 50 50 50 50 50 50 50 50 60 60 60 60 60 60 60 60
D1 8 10 12 16 20 25 8 10 12 16 20 25 32 10 12 16 20 25 32 40 10 12 16 20 25 32 40 50 10 12 16 20 25 32 40 50
D2 40 40 40 40 50 50 50 50 50 55 58 62 68 50 50 56 56 62 72 83 50 56 56 62 72 72 80 90 68 68 68 68 68 68 98 98
D3 50 50 50 50 50 50 68 68 68 68 68 68 68 83 83 83 83 83 83 83 98 98 98 98 98 98 98 98 123 123 123 123 123 123 123 123
H 28 28 28 28 28 28 28 3 2. 5 3 2. 5 3 2. 5 3 2. 5 3 2. 5 3 2. 5 3 2. 5 35 35 35 35 35 35 35 35 4 2. 5 4 2. 5 4 2. 5 4 2. 5 4 2. 5 4 2. 5 4 2. 5 4 2. 5
L1 50 50 50 50 50 60 60 60 60 60 60 60 75 75 75 75 75 75 75 85 90 90 90 90 90 90 90 95 90 90 90 90 90 90 90 95
L2 41 41 41 41 41 41 51 51 51 51 51 51 61 61 61 61 61 61 61 76 76 76 76 76 76 76 76 86 76 76 76 76 76 76 76 86
L3 18 18 18 18 22 22 22 22 22 22 22 22 22 22 22 22 30 30 30 30 30 30 30 30 35 35 35 35 35 35 35 35
St ati c H ol d er s
E 2- X 2 T Y P E
C O D E N O. 5 0 0 6- 2 8 2 5 0 0 6- 2 8 3 5 0 0 6- 2 8 4 5 0 0 6- 2 8 5 5 0 0 6- 2 8 6 5 0 0 6- 2 8 7 5 0 0 6- 2 8 8 5 0 0 6- 2 8 9 5 0 0 6- 2 9 0 5 0 0 6- 2 9 1 5 0 0 6- 2 9 2 5 0 0 6- 2 9 3 5 0 0 6- 2 9 4 5 0 0 6- 2 9 5 5 0 0 6- 2 9 6 5 0 0 6- 2 9 7 5 0 0 6- 2 9 8 5 0 0 6- 2 9 9 5 0 0 6- 3 0 0 5 0 0 6- 3 0 1 5 0 0 6- 3 0 2 5 0 0 6- 3 0 3 5 0 0 6- 3 0 4 5 0 0 6- 3 0 5 5 0 0 6- 3 0 6 5 0 0 6- 3 0 7 5 0 0 6- 3 0 8 5 0 0 6- 3 0 9 5 0 0 6- 3 1 0 5 0 0 6- 3 1 1 5 0 0 6- 3 1 2 5 0 0 6- 3 1 3 5 0 0 6- 3 1 4 5 0 0 6- 3 1 5 5 0 0 6- 3 1 6 5 0 0 6- 3 1 7
DI N 6 9 8 8 0
E xt er n al, i nt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D1
L1
L2
L3
L4
C O D E N O.
E 2- 3 0- 2 X 2 5- 3 5
30
25
65
60
35
5 6. 5
5 0 0 6- 3 1 8
E 2- 4 0- 2 X 4 0- 6 5
40
40
85
80
65
9 1. 5
5 0 0 6- 3 1 9
E57
L A T H E M A C HI N E A C C E S S O RI E S
St ati c H ol d er s
E3 E4 T Y P E
DI N 6 9 8 8 0
O R D E R M A D E, N O T R E F U N D A B L E.
F or C oll et DI N 6 3 8 8 E xt er n al C o ol a nt S u p pl y
E3 DI M E N SI O N S O R D E R N O.
D
D1
D2
D3
H
L1
L2
C O D E N O.
E 3- 3 0- O Z 2 5
30
2- 2 5
60
68
28
75
22
5 0 0 6- 3 2 0
E 3- 4 0- O Z 2 5
40
2- 2 5
60
83
3 2. 5
75
22
5 0 0 6- 3 2 1
E 3- 4 0- O Z 3 2
40
4- 3 2
78
83
3 2. 5
90
22
5 0 0 6- 3 2 2
E 3- 5 0- O Z 2 5
50
2- 2 5
60
98
35
75
30
5 0 0 6- 3 2 3
E 3- 5 0- O Z 3 2
50
4- 3 2
78
98
35
90
30
5 0 0 6- 3 2 4
L2
C O D E N O.
E xt er n al C o ol a nt S u p pl y F or C oll et DI N 6 4 9 9
E4 O R D E R N O.
D
D1
D2
D3
H
L1
E 4- 2 0- E R 2 5
20
1- 1 6
42
50
-
50
18
5 0 0 6- 3 2 5
E 4- 3 0- E R 2 5
30
1- 1 6
42
68
28
53
22
5 0 0 6- 3 2 6
E 4- 3 0- E R 3 2
30
2- 2 0
50
68
28
57
22
5 0 0 6- 3 2 7
E 4- 4 0- E R 3 2
40
2- 2 0
50
83
3 2. 5
62
22
5 0 0 6- 3 2 8
E 4- 4 0- E R 4 0
40
3- 2 6
63
83
3 2. 5
75
22
5 0 0 6- 3 2 9
E 4- 5 0- E R 4 0
50
3- 2 6
63
98
35
75
30
5 0 0 6- 3 3 0
E 4- 6 0- E R 4 0
60
3- 2 6
63
123
4 2. 5
75
30
5 0 0 6- 3 3 1
E 4- 6 0- E R 5 0
60
1 0- 3 4
78
123
4 2. 5
75
30
5 0 0 6- 3 3 2
St ati c H ol d er s
T A P P E R, C H U C K T Y P E
DI N 6 9 8 8 0
T A P P E R
E xt er n al C o ol a nt S u p pl y F or C oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
D
D1
D2
D3
H
L1
L2
C O D E N O.
T A P- 2 0- E R 2 0
20
1- 1 3
34
50
-
60
18
5 0 0 6- 3 3 3
T A P- 3 0- E R 2 5
30
1- 1 6
42
68
28
68
22
5 0 0 6- 3 3 4
T A P- 4 0- E R 2 5
40
1- 1 6
42
83
3 2. 5
73
22
5 0 0 6- 3 3 5
T A P- 5 0- E R 3 2
50
2- 2 0
50
98
35
83
30
5 0 0 6- 3 3 6
T A P- 6 0- E R 3 2
60
2- 2 0
50
123
4 2. 5
85
30
5 0 0 6- 3 3 7
K E Y L E S S D RI L L C H U C K E xt er n al C o ol a nt S u p pl y
DI M E N SI O N S O R D E R N O.
D
D1
D2
D3
H
L1
L2
C O D E N O.
C H U C K- 3 0- 1 3
30
1- 1 3
51
68
28
85
22
5 0 0 6- 3 3 8
C H U C K- 4 0- 1 3
40
1- 1 3
51
83
3 2. 5
85
22
5 0 0 6- 3 3 9
C H U C K- 4 0- 1 6
40
3- 1 6
58
83
3 2. 5
90
22
5 0 0 6- 3 4 0
C H U C K- 5 0- 1 3
50
1- 1 3
51
98
35
85
30
5 0 0 6- 3 4 1
C H U C K- 5 0- 1 6
50
3- 1 6
58
98
35
90
30
5 0 0 6- 3 4 2
L A T H E M A C HI N E A C C E S S O RI E S
E58
V DI
DI M E N SI O N S
St ati c H ol d er s
F TYPE
DI N 6 9 8 8 0
O R D E R M A D E, N O T R E F U N D A B L E.
T o ol h ol d er s wit h m or s e t a p er a c c or di n g DI N 2 2 8 E xt er n al C o ol a nt S u p pl y
DI M E N SI O N S O R D E R N O.
D
D1
D2
D3
F 2 0- M T 1
20
MT1
-
50
-
23
-
5 0 0 6- 3 4 3
F 3 0- M T 1
30
MT1
52
68
28
27
22
5 0 0 6 -3 4 4
F 3 0- M T 2
30
MT2
58
68
28
43
22
5 0 0 6 -3 4 5
F 3 0- M T 3
30
MT3
64
68
28
66
22
5 0 0 6 -3 4 6
F 4 0- M T 2
40
MT2
66
83
3 2. 5
43
22
5 0 0 6- 3 4 7
F 4 0- M T 3
40
MT3
72
83
3 2. 5
58
22
5 0 0 6- 3 4 8
F 4 0- M T 4
40
MT4
72
83
3 2. 5
78
22
5 0 0 6- 3 4 9
F 5 0- M T 2
50
MT2
55
98
35
36
30
5 0 0 6 -3 5 0
F 5 0- M T 3
50
MT3
60
98
35
44
30
5 0 0 6 -3 5 1
F 5 0- M T 4
50
MT4
70
98
35
71
30
5 0 0 6 -3 5 2
F 6 0- M T 3
60
MT3
58
123
4 2. 5
36
30
5 0 0 6- 3 5 3
F 6 0- M T 4
60
MT4
68
123
4 2. 5
50
30
5 0 0 6- 3 5 4
A xi al St ati c H ol d er s
H
L1
L2
T1 T Y P E
C O D E N O.
DI N 6 9 8 8 0
E xt er n al, i nt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
D
D1
H1
H2
H3
L1
L2
T 1- 3 0- 3 2- 6 5
30
32
65
52
62
65
90
5 0 0 6- 3 5 5
T 1- 3 0- 3 2- 8 5
30
32
65
52
62
85
108
5 0 0 6- 3 5 6
T 1- 3 0- 3 2- 1 0 0
30
32
65
52
62
100
123
5 0 0 6- 3 5 7
T 1- 3 0- 3 2- 1 2 0
30
32
65
52
62
120
143
5 0 0 6- 3 5 8
T 1- 4 0- 3 2- 8 5
40
32
80
65
85
85
11 2
5 0 0 6- 3 5 9
T 1- 4 0- 4 0- 8 5
40
40
80
65
85
85
11 2
5 0 0 6- 3 6 0
T 1- 4 0- 4 0- 1 0 0
40
40
80
65
85
100
127
5 0 0 6- 3 6 1
A xi al St ati c H ol d er s
T 1- X 3 T Y P E
C O D E N O.
DI N 6 9 8 8 0
E xt er n al c o ol a nt s u p pl y
DI M E N SI O N S
E59
O R D E R N O.
D
D1
H1
H2
H3
L1
L2
L3
L4
C O D E N O.
T 1- 3 0- 3 X 2 5
30
25
65
65
62
42
85
128
148
5 0 0 6- 3 6 2
L A T H E M A C HI N E A C C E S S O RI E S
R e d u ci n g Sl e e v e s
R S- W E xt er n al C o ol a nt S u p pl y F or B ori n g B ar H ol d er
O R D E R M A D E, N O T R E F U N D A B L E.
DI M E N SI O N S D1
20
25
32
40
50
R S F or B ori n g B ar H ol d er
L
45
55
60
75
85
O R D E R N O. D2
C O D E N O.
E 2 0- 6
5 0 0 6- 3 6 9
E 2 0- 8
5 0 0 6- 3 7 0
E 2 0- 1 0
5 0 0 6- 3 7 1
E 2 5- 6
5 0 0 6- 3 7 2
E 2 5- 8
5 0 0 6- 3 7 3
E 2 5- 1 0
5 0 0 6- 3 7 4
E 2 5- 1 2
5 0 0 6- 3 7 5
E 3 2- 6
5 0 0 6- 3 7 6
E 3 2- 8
5 0 0 6- 3 7 7
E 3 2- 1 0
5 0 0 6- 3 7 8
E 3 2- 1 2
5 0 0 6- 3 7 9
E 4 0- 6
5 0 0 6- 3 8 1
E 4 0- 8
5 0 0 6- 3 8 2
E 4 0- 1 0
5 0 0 6- 3 8 3
E 4 0- 1 2
5 0 0 6- 3 8 4
E 5 0- 8
5 0 0 6- 3 8 8
E 5 0- 1 0
5 0 0 6- 3 8 9
E 5 0- 1 2
5 0 0 6- 3 9 0
E 5 0- 1 6
5 0 0 6- 3 9 1
E 5 0- 2 0
5 0 0 6- 3 9 2
E 5 0- 2 5
5 0 0 6- 3 9 3
O R D E R N O. D2
C O D E N O.
E 2 0- 1 2- K
5 0 0 6- 3 9 9
E 2 0- 1 6- K
5 0 0 6- 4 0 0
E 2 5- 1 6- K
5 0 0 6- 4 0 1 A
E 2 5- 2 0- K
5 0 0 6- 4 0 1
E 3 2- 1 6- K
5 0 0 6- 4 0 2 A
E 3 2- 2 0- K
5 0 0 6- 4 0 2 B
E 3 2- 2 5- K
5 0 0 6- 4 0 2
E 4 0- 1 6- K
5 0 0 6- 4 0 3 A
E 4 0- 2 0- K
5 0 0 6- 4 0 3 B
E 4 0- 2 5- K
5 0 0 6- 4 0 3 C
E 4 0- 3 2- K
5 0 0 6- 4 0 3
E 5 0- 3 2- K
5 0 0 6- 4 0 4 A
E 5 0- 4 0- K
5 0 0 6- 4 0 4
V DI
R S- W, R S T Y P E
DI M E N SI O N S D1
L
20
50
25
50
32
40
50
60
75
85
L A T H E M A C HI N E A C C E S S O RI E S
E60
R e d u ci n g Sl e e v e s
R S- M T, T E T Y P E
O R D E R M A D E, N O T R E F U N D A B L E.
R S- M T T o ol h ol d er s wit h m or s e t a p er a c c or di n g t o DI N 2 2 8
DI M E N SI O N S D1
L
32
60
40
70
50
MT 1
85
2
3
4
E 3 2- M T 1
E 3 2- M T 2
E 3 2- M T 3
O R D E R N O.
5 0 0 6- 4 1 0
5 0 0 6- 4 1 1
5 0 0 6- 4 1 2
C O D E N O.
E 4 0- M T 1
E 4 0- M T 2
E 4 0- M T 3
E 4 0- M T 4
5 0 0 6- 4 1 4
5 0 0 6- 4 1 5
5 0 0 6- 4 1 6
5 0 0 6- 4 1 7
C O D E N O.
E 5 0- M T 1
E 5 0- M T 2
E 5 0- M T 3
E 5 0- M T 4
O R D E R N O.
5 0 0 6- 4 1 8
5 0 0 6- 4 1 9
5 0 0 6- 4 2 0
5 0 0 6- 4 2 1
C O D E N O.
O R D E R N O.
T E A ut o t a p er wit h c yli n dri c s h aft T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
D1
D2
D3
L1
L2
C O D E N O.
T E 2 5- E R 1 6
25
1- 1 0
M 3- M 1 2
E R16 32
7 0. 5
30
5 0 0 6- 4 3 0
T E 3 2- E R 2 0
32
2- 1 3
M 3- M 1 6
E R20 35
65
40
5 0 0 6- 4 3 1
T E 4 0- E R 2 5
40
2- 1 6
M 4- M 2 0
E R25 42
75
43
5 0 0 6- 4 3 2
T E 5 0- E R 3 2
50
3- 2 0
M 6- M 2 4
E R32 50
85
48
5 0 0 6- 4 3 3
T e st M a n dr el
T B1 T Y P E
DI M E N SI O N S
E61
DI N 6 9 8 8 0
O R D E R N O.
D DI N 6 9 8 8 0
D2
D3
L1
L2
C O D E N O.
T B 1- 3 0
30
30
68
11 5
15
5 0 0 6- 4 3 4
T B 1- 4 0
40
40
83
11 5
15
5 0 0 6- 4 3 5
T B 1- 5 0
50
50
98
11 5
15
5 0 0 6- 4 3 6
L A T H E M A C HI N E A C C E S S O RI E S
H T y p e Milli n g & Drilli n g H e a d
M A Z A K S U P E R Q UI C K T U R N T Y P E
F O R 1 S T S PI N D L E
E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
M
C O D E N O.
S Q T 1 0- H M D 2 5
S Q T 1 0 M- 1 2 D 1 5 M- 1 6 D S Q T 2 0 0 M- 1 6 D 2 5 0 M- 1 6 D
40
1- 1 6 E R25
42
5000
135
75
90
60
100
5 0 0 6- 4 4 0
1- 1 6 E R25
42
5000
165
80
92
60
130
5 0 0 6- 4 4 1
2- 2 0 E R32
50
5000
165
80
96
60
130
5 0 0 6- 4 4 2
S Q T 1 5/ 1 8- H M D 2 5 S Q T 1 5/ 1 8- H M D 3 2
S Q T 1 5 M- 1 2 D 1 8 M- 1 2 D S Q T 2 0 0 M- 1 2 D 2 5 0 M- 1 2 D
40
H T y p e T a p pi n g H e a d
O R D E R M A D E, N O T R E F U N D A B L E.
O R D E R N O.
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
M
C O D E N O.
S Q T 1 0- H T 1 6
S Q T 1 0 M- 1 2 D 1 5 M- 1 6 D S Q T 2 0 0 M- 1 6 D 2 5 0 M- 1 6 D
40
1- 1 0 E R16
30
3000
135
75
98
60
100
5 0 0 6- 4 4 3
S Q T 1 5/ 1 8- H T 2 0
S Q T 1 5 M- 1 2 D 1 8 M- 1 2 D S Q T 2 0 0 M- 1 2 D 2 5 0 M- 1 2 D
40
1- 1 3 E R20
35
3000
165
80
108
60
130
5 0 0 6- 4 4 4
V DI
DI M E N SI O N S
H T y p e B a c k Milli n g & Drilli n g H e a d
M A Z A K S U P E R Q UI C K T U R N T Y P E
F O R 2 N D S PI N D L E
E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
S Q T 1 0- H B M D 2 5 S Q T 1 5/ 1 8- H B M D 2 5 S Q T 1 5/ 1 8- H B M D 3 2
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
M
C O D E N O.
S Q T 1 0 M- 1 2 D 1 5 M- 1 6 D S Q T 2 0 0 M- 1 6 D 2 5 0 M- 1 6 D
40
1- 1 6 E R25
42
5000
135
76
43
14
100
5 0 0 6- 4 5 0
1- 1 6 E R25
42
5000
165
76
46
13
130
5 0 0 6- 4 5 1
2- 2 0 E R32
50
5000
165
76
48
13
130
5 0 0 6- 4 5 2
S Q T 1 5 M- 1 2 D 1 8 M- 1 2 D S Q T 2 0 0 M- 1 2 D 2 5 0 M- 1 2 D
40
H T y p e T a p pi n g H e a d DI M E N SI O N S M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
M
C O D E N O.
S Q T 1 0- H B T 1 6
S Q T 1 0 M- 1 2 D 1 5 M- 1 6 D S Q T 2 0 0 M- 1 6 D 2 5 0 M- 1 6 D
40
1- 1 0 E R16
30
3000
135
76
51
13
100
5 0 0 6- 4 5 4
S Q T 1 5/ 1 8- H B T 2 0
S Q T 1 5 M- 1 2 D 1 8 M- 1 2 D S Q T 2 0 0 M- 1 2 D 2 5 0 M- 1 2 D
40
1- 1 3 E R20
30
3000
165
76
79
13
130
5 0 0 6- 4 5 5
O R D E R N O.
L A T H E M A C HI N E A C C E S S O RI E S
E62
H T y p e Milli n g & Drilli n g H e a d
M A Z A K S U P E R Q UI C K T U R N T Y P E
F O R 1 S T A N D 2 N D S PI N D L E
E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
E1
M
C O D E N O.
S Q T 1 0- H M D 2 0 2 5
S Q T 1 0 M- 1 2 D 1 5 M- 1 6 D S Q T 2 0 0 M- 1 6 D 2 5 0 M- 1 6 D
40
1 st- E R 2 5 2 n d- E R 2 0
42 35
4000
135
75
9 6 7 7. 5 5 9
50
100
5 0 0 6- 4 5 6
S Q T 1 5/ 1 8- H M D 2 3 2
S Q T 1 5 M- 1 2 D 1 8 M- 1 2 D S Q T 2 0 0 M- 1 2 D 2 5 0 M- 1 2 D
40
2- 2 0 E R32
42
4000
167
80
128
19
130
5 0 0 6- 4 5 7
C1
58
89
V T y p e Milli n g & Drilli n g H e a d
M A Z A K S U P E R Q UI C K T U R N T Y P E
OFFSET
O R D E R M A D E, N O T R E F U N D A B L E.
E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
S Q T 1 0- V M D 2 5
1: 2 S p e e d b o o st
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
M
C O D E N O.
S Q T 1 0 M- 1 2 D 1 5 M- 1 6 D S Q T 2 0 0 M- 1 6 D 2 5 0 M- 1 6 D
40
1- 1 6 E R25
42
5000
88
75
120
82
50
5 0 0 6- 4 6 0
1- 1 6 E R25
42
5000
89
80
122
84
50
5 0 0 6- 4 6 1
1- 1 6 E R25
42
( 1: 2) 7000
89
75
11 8
84
50
2- 2 0 E R32
50
5000
89
80
1 2 5. 5
84
50
5 0 0 6- 4 6 3
S Q T 1 5/ 1 8- V M D 2 5 F S Q T 1 5/ 1 8- V M D 2 5 F- 1
※
S Q T 1 5 M- 1 2 D 1 8 M- 1 2 D S Q T 2 0 0 M- 1 2 D 2 5 0 M- 1 2 D
40
S Q T 1 5/ 1 8- V M D 3 2
※
5 0 0 6- 4 6 2
V T y p e T a p pi n g H e a d DI M E N SI O N S
E63
O R D E R N O.
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
M
C O D E N O.
S Q T 1 0- V T 1 6 F
S Q T 1 0 M- 1 2 D 1 5 M- 1 6 D S Q T 2 0 0 M- 1 6 D 2 5 0 M- 1 6 D
40
1- 1 0 E R16
30
4000
88
75
11 9
8 1. 5
50
5 0 0 6- 4 6 4
S Q T 1 5/ 1 8- V T 2 0 F
S Q T 1 5 M- 1 2 D 1 8 M- 1 2 D S Q T 2 0 0 M- 1 2 D 2 5 0 M- 1 2 D
40
1- 1 3 E R20
30
4000
89
80
123
84
50
5 0 0 6- 4 6 5
L A T H E M A C HI N E A C C E S S O RI E S
V T y p e Milli n g & Drilli n g H e a d
M A Z A K S U P E R Q UI C K T U R N T Y P E
D A- S E RI E S
E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
C O D E N O.
S Q T 1 0- V M D 2 5 D A
S Q T 1 0 M- 1 2 D 1 5 M- 1 6 D S Q T 2 0 0 M- 1 6 D 2 5 0 M- 1 6 D
40
1- 1 6 E R25
42
6000
93
75
6 2. 5
5 0 0 6- 4 6 6
S Q T 1 5/ 1 8- V M D 3 2 D A
S Q T 1 5 M- 1 2 D 1 8 M- 1 2 D S Q T 2 0 0 M- 1 2 D 2 5 0 M- 1 2 D
40
2- 2 0 E R32
50
6000
1 1 9. 5
80
8 2. 5
5 0 0 6- 4 6 7
V T y p e T a p pi n g H e a d DI M E N SI O N S
V DI
O R D E R N O.
O R D E R M A D E, N O T R E F U N D A B L E.
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
C O D E N O.
S Q T 1 0- V T 1 6 D A
S Q T 1 0 M- 1 2 D 1 5 M- 1 6 D S Q T 2 0 0 M- 1 6 D 2 5 0 M- 1 6 D
40
1- 1 0 E R16
30
4000
100
75
6 2. 5
5 0 0 6- 4 6 8
S Q T 1 5/ 1 8- V T 2 0 D A
S Q T 1 5 M- 1 2 D 1 8 M- 1 2 D S Q T 2 0 0 M- 1 2 D 2 5 0 M- 1 2 D
40
1- 1 3 E R20
35
4000
127
80
8 2. 5
5 0 0 6- 4 6 9
O R D E R N O.
V T y p e Milli n g & Drilli n g H e a d
M A Z A K S U P E R Q UI C K T U R N T Y P E
D A- S E RI E S, L O N G
E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
S Q T 1 5/ 1 8- V M D 3 2 L
S Q T 1 5 M- 1 2 D 1 8 M- 1 2 D S Q T 2 0 0 M- 1 2 D 2 5 0 M- 1 2 D
40
2- 2 0 E R32
50
6000
A
B
C
E
C O D E N O.
40
80
1 1 9. 5
8 2. 5
5 0 0 6- 4 7 0
40
80
1 3 3. 5
9 8. 5
5 0 0 6- 4 7 1
L A T H E M A C HI N E A C C E S S O RI E S
E64
V T y p e Milli n g & Drilli n g H e a d
M A Z A K M U L TI P L E X T Y P E
O R D E R M A D E, N O T R E F U N D A B L E.
E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S
※
1: 2 S p e e d b o o st
O R D E R N O.
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
M
C O D E N O.
M P 6 1 0- H M D 2 5
M P 4 1 0 N- 1 2 D 4 1 5 N- 1 2 D M P 6 1 0- 1 2 D 6 2 0 0- 1 6 D
40
1- 1 6 E R25
42
5000
150
75
8 0. 5
50
11 5
5 0 0 6- 4 7 5
1- 1 6 E R25
42
5000
165
80
8 0. 5
50
130
5 0 0 6- 4 7 6
2- 2 0 E R32
50
5000
165
80
8 2. 5
50
130
5 0 0 6- 4 7 7
2- 2 0 E R32
50
( 1: 2) 7000
169
88
103
68
130
M P 6 2 0- H M D 2 5 M P 6 2 0- H M D 3 2
M P 4 2 0 N- 1 2 D 6 2 0 N- 1 2 D M P 6 2 0- 1 2 D 6 2 0 0- 1 6 D
40
M P 6 2 0- H M D 3 2- 2
H T y p e T a p pi n g H e a d DI M E N SI O N S
※
5 0 0 6- 4 7 8
O R D E R N O.
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
M
C O D E N O.
M P 6 1 0- H T 1 6
M P 4 1 0 N- 1 2 D 4 1 5 N- 1 2 D M P 6 1 0- 1 2 D 6 2 0 0- 1 6 D
40
1- 1 0 E R16
30
3000
150
75
8 7. 5
50
11 5
5 0 0 6- 4 7 9
M P 6 2 0- H T 2 0
M P 4 2 0 N- 1 2 D 6 2 0 N- 1 2 D M P 6 2 0- 1 2 D 6 2 0 0- 1 6 D
40
1- 1 3 E R20
30
3000
165
80
1 1 5. 5
56
130
5 0 0 6- 4 8 0
V T y p e Milli n g & Drilli n g H e a d
M A Z A K M U L TI P L E X T Y P E
OFFSET
E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
M
C O D E N O.
M P 6 1 0- V M D 2 5 F
M P 4 1 0 N- 1 2 D 4 1 5 N- 1 2 D M P 6 1 0- 1 2 D 6 2 0 0- 1 6 D
40
1- 1 6 E R25
42
5000
89
75
122
84
50
5 0 0 6- 4 8 1
1- 1 6 E R25
42
5000
89
80
122
84
50
5 0 0 6- 4 8 2
2- 2 0 E R32
50
5000
89
80
1 2 5. 5
84
50
5 0 0 6- 4 8 3
M P 6 2 0- V M D 1 6 F M P 6 2 0- V M D 3 2 F
M P 4 2 0 N- 1 2 D 6 2 0 N- 1 2 D M P 6 2 0- 1 2 D 6 2 0 0- 1 6 D
40
V T y p e T a p pi n g H e a d DI M E N SI O N S
E65
O R D E R N O.
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
M
C O D E N O.
M P 6 1 0- V T 1 6 F
M P 4 1 0 N- 1 2 D 4 1 5 N- 1 2 D M P 6 1 0- 1 2 D 6 2 0 0- 1 6 D
40
1- 1 0 E R16
30
4000
89
75
122
8 2. 5
50
5 0 0 6- 4 8 4
M P 6 2 0- V T 2 0 F
M P 4 2 0 N- 1 2 D 6 2 0 N- 1 2 D M P 6 2 0- 1 2 D 6 2 0 0- 1 6 D
40
1- 1 3 E R20
35
4000
89
80
1 2 3. 5
84
50
5 0 0 6- 4 8 5
L A T H E M A C HI N E A C C E S S O RI E S
V T y p e Milli n g & Drilli n g H e a d
M A Z A K M U L TI P L E X T Y P E
D A- S E RI E S
E xt er n al c o ol a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
M a c hi n e T y p e
D
X C a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
C O D E N O.
M P 6 1 0- V M D 2 5 D A
M P 4 1 0 N- 1 2 D 4 1 5 N- 1 2 D M P 6 1 0- 1 2 D 6 2 0 0- 1 6 D
40
1- 1 6 E R25
42
6000
39
75
108
74
5 0 0 6- 4 8 6
1- 1 6 E R25
42
6000
40
80
11 9
8 2. 6
5 0 0 6- 4 8 7
2- 2 0 E R32
50
6000
40
80
120
8 2. 6
5 0 0 6- 4 8 8
M P 6 2 0- V M D 2 5 D A
40
V DI
M P 6 2 0- V M D 3 2 D A
M P 4 2 0 N- 1 2 D 6 2 0 N- 1 2 D M P 6 2 0- 1 2 D 6 2 0 0- 1 6 D
F or w ar d T ur ni n g H ol d er - R H
M A Z A K S U P E R Q UI C K T U R N & M U L TI P L E X T Y P E
O R D E R M A D E, N O T R E F U N D A B L E.
DI M E N SI O N S O R D E R N O.
S Q T 1 0 M/ 1 5 A M- F T R H- M S Q T 1 0 M/ 1 5 A M- F T R H-I S Q T 1 5 M/ 1 8 M- F T R H- M S Q T 1 5 M/ 1 8 M- F T R H-I
M a c hi n e T y p e
D
S Q T- 1 0 M/ 1 5 A M
40
S Q T- 1 5 M/ 1 8 M
40
M P 6 1 0 N/ 6 1 5 N- F T R H- M
M P- 6 1 0 N/ 6 1 5 N
M P 4 1 0 N/ 4 1 5 N- F T R H-I
M P- 4 1 0 N/ 4 1 5 N
M P 6 2 0 N/ 6 2 5 N- F T R H- M
M P- 6 2 0 N/ 6 2 5 N
M P 4 2 0 N- F T R H-I
M P- 4 2 0 N
40 40
X
A
B
C
C O D E N O.
m m
20
66
79
100
5 0 0 6- 4 9 0
inch
0. 7 5
2. 6
3. 1
3. 9 3 7
5 0 0 6- 4 9 1
m m
25
78
92
120
5 0 0 6- 4 9 2
inch
1
3. 0 7 1
3. 6 2 2
4. 7 2 4
5 0 0 6- 4 9 3
m m
20
85
76
100
5 0 0 6- 4 9 6
inch
0. 7 5
3. 3 4 7
3
3. 9 3 7
5 0 0 6- 4 9 7
m m
25
83
92
120
5 0 0 6- 4 9 8
inch
1
3. 2 6 8
3. 6 2 2
4. 7 2 4
5 0 0 6- 4 9 9
L A T H E M A C HI N E A C C E S S O RI E S
E66
R e v er s e T ur ni n g H ol d er - L H
M A Z A K S U P E R Q UI C K T U R N & M U L TI P L E X T Y P E
O R D E R M A D E, N O T R E F U N D A B L E.
DI M E N SI O N S O R D E R N O.
S Q T 1 0 M/ 1 5 A M- R T L H- M S Q T 1 0 M/ 1 5 A M- R T L H-I S Q T 1 5 M/ 1 8 M- R T L H- M S Q T 1 5 M/ 1 8 M- R T L H-I S Q T 2 8 M/ 3 0 M- R T L H- M S Q T 2 8 M/ 3 0 M- R T L H-I
※
M a c hi n e T y p e
D
S Q T- 1 0 M/ 1 5 A M
40
S Q T- 1 5 M/ 1 8 M
40
S Q T- 2 8 M/ 3 0 M
50
M P 6 1 0 N/ 6 1 5 N- R T L H- M
M P- 6 1 0 N/ 6 1 5 N
M P 4 1 0 N/ 4 1 5 N- R T L H-I
M P- 4 1 0 N/ 4 1 5 N
M P 6 2 0 N/ 6 2 5 N- R T L H- M
M P- 6 2 0 N/ 6 2 5 N
M P 4 2 0 N- R T L H-I
M P- 4 2 0 N
40 40
X
A
B
C
C O D E N O.
m m
20
66
76
100
5 0 0 6- 5 0 2
inch
0. 7 5
2. 6
3
3. 9 3 7
5 0 0 6- 5 0 3
m m
25
78
92
120
5 0 0 6- 5 0 4
inch
1
3. 0 7 1
3. 6 2 2
4. 7 2 4
5 0 0 6- 5 0 5
m m
25
80
94
160
5 0 0 6- 5 0 6
inch
1
3. 1 5
3. 7
6. 3
5 0 0 6- 5 0 7
m m
20
85
76
100
5 0 0 6- 5 0 8
inch
0. 7 5
3. 3 4 7
3
3. 9 3 7
5 0 0 6- 5 0 9
m m
25
83
92
120
5 0 0 6- 5 1 0
inch
1
3. 2 6 8
3. 6 2 2
4. 7 2 4
5 0 0 6- 5 1 1
O N RE Q UEST
D o u bl e T ur ni n g H ol d er
M A Z A K S U P E R Q UI C K T U R N T Y P E
DI M E N SI O N S O R D E R N O.
S Q T 1 0 M/ 1 5 A M- D T- M S Q T 1 0 M/ 1 5 A M- D T-I S Q T 1 5 M/ 1 8 M- D T- M S Q T 1 5 M/ 1 8 M- D T-I
E67
M a c hi n e T y p e
D
S Q T- 1 0 M/ 1 5 A M
40
S Q T- 1 5 M/ 1 8 M
40
L A T H E M A C HI N E A C C E S S O RI E S
X
A
B
C
E
C O D E N O.
m m
20
85
65
103
81
5 0 0 6- 5 1 4
inch
0. 7 5
3. 3 4 7
2. 5 5 9
4. 0 5 5
3. 1 8 9
5 0 0 6- 5 1 5
m m
25
88
78
136
100
5 0 0 6- 5 1 6
inch
1
3. 4 6 5
3. 0 7 1
5. 3 5 4
3. 9 3 7
5 0 0 6- 5 1 7
B ori n g B ar H ol d er
M A Z A K S U P E R Q UI C K T U R N T Y P E
O R D E R M A D E, N O T R E F U N D A B L E.
DI M E N SI O N S X
A
B
C
C O D E N O.
m m
32
5 5. 5
76
11 0
5 0 0 6- 5 2 0
inch
1. 2 5
2. 1 8 5
2. 9 9 2
4. 3 3 1
5 0 0 6- 5 2 1
m m
40
71
82
140
5 0 0 6- 5 2 2
inch
1. 5
2. 7 9 5
3. 2 2 8
5. 5 1 2
5 0 0 6- 5 2 3
m m
50
65
94
175
5 0 0 6- 5 2 4
inch
2
2. 5 5 9
3. 7
6. 8 9 0
5 0 0 6- 5 2 5
X
A
B
C
C O D E N O.
m m
25
5 5. 5
76
120
5 0 0 6- 5 2 6
inch
1
0. 1 9 7
2. 9 9 7
4. 7 2 4
5 0 0 6- 5 2 7
m m
32
10
76
120
5 0 0 6- 5 2 8
M P- 6 1 0 N- B- D
inch
1. 2 5
0. 3 9 4
2. 9 9 7
4. 7 2 4
5 0 0 6- 5 2 9
M P- 6 1 5 N- B- A
m m
25
10
76
130
5 0 0 6- 5 3 0
inch
1
0. 3 9 4
2. 9 9 7
5. 1 1 8
5 0 0 6- 5 3 1
m m
32
10
76
130
5 0 0 6- 5 3 2
M P- 6 1 5 N- B- D
inch
1. 2 5
0. 3 9 4
2. 9 9 7
5. 1 1 8
5 0 0 6- 5 3 3
M P- 6 2 0 N- B- A
m m
25
5
62
140
5 0 0 6- 5 3 4
inch
1
0. 1 9 7
3. 2 2 8
5. 5 1 2
5 0 0 6- 5 3 5
m m
40
10
82
140
5 0 0 6- 5 3 6
inch
1. 5
0. 3 9 4
3. 2 2 8
5. 5 1 2
5 0 0 6- 5 3 7
S Q T 1 0 M/ 1 5 A M- B- M S Q T 1 0 M/ 1 5 A M- B-I S Q T 1 5 M/ 1 8 M- B- M S Q T 1 5 M/ 1 8 M- B-I S Q T 2 8 M/ 3 0 M- B- M S Q T 2 8 M/ 3 0 A M- B-I
M a c hi n e T y p e
D
S Q T- 1 0 M/ 1 5 A M
40
S Q T- 1 5 M/ 1 8 M
40
S Q T- 2 8 M/ 3 0 M
50
V DI
O R D E R N O.
B ori n g B ar H ol d er
M A Z A K M U L TI P L E X T Y P E
DI M E N SI O N S O R D E R N O.
M a c hi n e T y p e
D
M P- 6 1 0 N- B- A M P- 6 1 0 N- B- B M P- 6 1 0 N- B- C
M P- 6 1 5 N- B- B M P- 6 1 5 N- B- C
M P- 6 2 0 N- B- B M P- 6 2 0 N- B- C M P- 6 2 0 N- B- D
M P- 6 1 0 N
M P- 6 1 5 N
M P- 6 2 0 N
40
40
40
L A T H E M A C HI N E A C C E S S O RI E S
E68
D o u bl e B ori n g B ar H ol d er
M A Z A K S U P E R Q UI C K T U R N T Y P E
O R D E R M A D E, N O T R E F U N D A B L E.
DI M E N SI O N S O R D E R N O.
S Q T 1 0 M/ 1 5 A M- D B- M S Q T 1 0 M/ 1 5 A M- D B-I S Q T 1 5 M/ 1 8 M- D B- M S Q T 1 5 M/ 1 8 M- D B-I S Q T 2 8 M/ 3 0 M- D B- M S Q T 2 8 M/ 3 0 M- D B-I
M a c hi n e T y p e
D
S Q T- 1 0 M/ 1 5 A M
40
S Q T- 1 5 M/ 1 8 M
40
S Q T- 2 8 M/ 3 0 M
50
X
A
B
C
E
C O D E N O.
m m
20
5 5. 5
76
11 0
1 4. 5
5 0 0 6- 5 4 0
inch
0. 7 5
2. 1 8 5
3
4. 3 3 1
0. 5 7
5 0 0 6- 5 4 1
m m
25
85
82
140
16
5 0 0 6- 5 4 2
inch
1
3. 3 4 6
3. 2 2 8
5. 5 1 2
0. 6 2 9
5 0 0 6- 5 4 3
m m
32
75
94
175
35
5 0 0 6- 5 4 4
inch
1. 2 5
2. 9 5 3
3. 5 4 3
7. 0 8 7
1. 3 7 8
5 0 0 6- 5 4 5
U Drill H ol d er
M A Z A K S U P E R Q UI C K T U R N T Y P E
E xt er n al, i nt er n al c o ol a nt s u p pl y
DI M E N SI O N S O R D E R N O.
S Q T 1 0 M/ 1 5 A M- U D- M S Q T 1 0 M/ 1 5 A M- U D-I S Q T 1 5 M/ 1 8 M- U D- M S Q T 1 5 M/ 1 8 M- U D-I
E69
M a c hi n e T y p e
D
S Q T- 1 0 M/ 1 5 A M
40
S Q T- 1 5 M/ 1 8 M
40
L A T H E M A C HI N E A C C E S S O RI E S
X
A
B
C
C O D E N O.
m m
32
48
76
11 0
5 0 0 6- 5 5 0
inch
1. 2 5
1. 8 9 0
2. 9 9 2
4. 3 3 1
5 0 0 6- 5 5 1
m m
40
63
82
140
5 0 0 6- 5 5 2
inch
1. 5
2. 4 8 0
3. 2 2 8
5. 5 1 2
5 0 0 6- 5 5 3
U Drill H ol d er
M A Z A K M U L TI P L E X T Y P E
O R D E R M A D E, N O T R E F U N D A B L E.
E xt er n al, i nt er n al c o ol a nt s u p pl y
DI M E N SI O N S M P- 6 1 0- U D- M M P- 6 1 0- U D-I M P- 6 2 0- U D- M M P- 6 2 0- U D-I
M a c hi n e T y p e
D
M P- 6 1 0
40
M P- 6 2 0
40
X
A
B
C
C O D E N O.
m m
25
10
76
120
5 0 0 6- 5 6 0
inch
-
0. 3 9 4
2. 9 9 2
4. 7 2 4
5 0 0 6- 5 6 1
m m
40
10
82
140
5 0 0 6- 5 6 2
inch
-
0. 3 9 4
3. 2 2 8
5. 5 1 2
5 0 0 6- 5 6 3
X
A
B
C
C O D E N O.
m m
20
65
76
11 0
5 0 0 6- 5 7 0
inch
0. 7 5
2. 5 5 9
2. 9 9 2
4. 3 3 1
5 0 0 6- 5 7 1
m m
25
60
82
143
5 0 0 6- 5 7 2
inch
1
2. 3 6 2
3. 2 2 8
5. 6 3 0
5 0 0 6- 5 7 3
m m
25
57
90
163
5 0 0 6- 5 7 4
inch
1
2. 2 4 4
3. 5 4 3
6. 4 1 7
5 0 0 6- 5 7 5
m m
20
65
76
11 0
5 0 0 6- 5 7 6
inch
0. 7 5
2. 5 5 9
2. 9 9 2
4. 3 3 1
5 0 0 6- 5 7 7
m m
25
55
82
143
5 0 0 6- 5 7 8
inch
1
2. 1 6 5
3. 2 2 8
5. 6 3 0
5 0 0 6- 5 7 9
V DI
O R D E R N O.
F a ci n g H ol d er - R H
M A Z A K S U P E R Q UI C K T U R N & M U L TI P L E X T Y P E
DI M E N SI O N S O R D E R N O.
S Q T 1 0 M/ 1 5 A M- F R H- M S Q T 1 0 M/ 1 5 A M- F R H-I S Q T 1 5 M/ 1 8 M- F R H- M S Q T 1 5 M/ 1 8 M- F R H-I S Q T 2 8 M/ 3 0 M- F R H- M S Q T 2 8 M/ 3 0 M- F R H-I
M a c hi n e T y p e
D
S Q T- 1 0 M/ 1 5 A M
40
S Q T- 1 5 M/ 1 8 M
40
S Q T- 2 8 M/ 3 0 M
50
M P 6 1 0 N/ 6 1 5 N- F R H- M
M P- 6 1 0 N/ 6 1 5 N
M P 4 1 0 N/ 4 1 5 N- F R H-I
M P- 4 1 0 N/ 4 1 5 N
M P 6 2 0 N/ 6 2 5 N- F R H- M
M P- 6 2 0 N/ 6 2 5 N
M P 4 2 0 N- F R H-I
M P- 4 2 0 N
40 40
L A T H E M A C HI N E A C C E S S O RI E S
E70
R a di al Drilli n g A n d Milli n g H e a d s
TYPE H A AS
1. E xt er n al c o ol a nt s u p pl y 2. T o b e u s e d f or c oll et DI N 6 4 9 9 3. C oll et i s n ot i n cl u d e d
DI M E N SI O N S O R D E R N O.
D
X c a p a cit y
S
V DI- 4 0- F L 4 0- 3 2- 1 0 4 V DI- 4 0- F L 4 0- 3 2- 1 1 7
40
2- 2 0 E R 3 2
50
M a ximu m R. P. M.
A
4000
106
B
80
C
G
85
M
34
70
E
M O DELS
C O D E N O.
1 0 4. 8 5
S L- 2 0/ T L- 1 5 S L- 3 0/ T L- 2 5 S L- 4 0 S L- 4 0
5 0 0 6- 6 0 0
1 1 7. 5 5
V DI- 4 0- F L 4 0- 3 2- 1 3 0
1 3 0. 3 5
A xi al Milli n g A n d Drilli n g H e a d s
5 0 0 6- 6 0 1 5 0 0 6- 6 0 2
O R D E R M A D E, N O T R E F U N D A B L E.
1. E xt er n al c o ol a nt s u p pl y 2. T o b e u s e d f or c oll et DI N 6 4 9 9 3. C oll et i s n ot i n cl u d e d
DI M E N SI O N S O R D E R N O.
D
X c a p a cit y
S
A
B
C
E
M O DELS
C O D E N O.
V DI- 4 0- D A 4 0- 3 2 1 0 4 V DI- 4 0- D A 4 0- 3 2 1 1 7 V DI- 4 0- D A 4 0- 3 2 1 3 0
M a xi m u m R. P. M.
40
2- 2 0 E R 3 2
50
6000
109
34
86
1 0 4. 8 5 1 1 7. 5 5 1 3 0. 2 5
S L- 2 0/ T L- 1 5 S L- 3 0/ T L- 2 5
5 0 0 6- 6 1 0 5 0 0 6- 6 1 1 5 0 0 6- 6 1 2
S L- 4 0
R e d u ci n g Sl e e v e s
R S- W, R S T Y P E DI M E N SI O N S
R S- W E xt er n al C o ol a nt S u p pl y F or B ori n g B ar H ol d er
D1
L
20
45
25
55
32
40
50
E71
60
75
85
L A T H E M A C HI N E A C C E S S O RI E S
O R D E R N O. D2 E 2 0- 6 E 2 0- 8 E 2 0- 1 0 E 2 5- 6 E 2 5- 8 E 2 5- 1 0 E 2 5- 1 2 E 3 2- 6 E 3 2- 8 E 3 2- 1 0 E 3 2- 1 2 E 4 0- 6 E 4 0- 8 E 4 0- 1 0 E 4 0- 1 2 E 5 0- 8 E 5 0- 1 0 E 5 0- 1 2 E 5 0- 1 6 E 5 0- 2 0 E 5 0- 2 5
C O D E N O. 5 0 0 6- 3 6 9 5 0 0 6- 3 7 0 5 0 0 6- 3 7 1 5 0 0 6- 3 7 2 5 0 0 6- 3 7 3 5 0 0 6- 3 7 4 5 0 0 6- 3 7 5 5 0 0 6- 3 7 6 5 0 0 6- 3 7 7 5 0 0 6- 3 7 8 5 0 0 6- 3 7 9 5 0 0 6- 3 8 1 5 0 0 6- 3 8 2 5 0 0 6- 3 8 3 5 0 0 6- 3 8 4 5 0 0 6- 3 8 8 5 0 0 6- 3 8 9 5 0 0 6- 3 9 0 5 0 0 6- 3 9 1 5 0 0 6- 3 9 2 5 0 0 6- 3 9 3
R S F or B ori n g B ar H ol d er
DI M E N SI O N S D1
L
20
50
25
50
32
60
40
75
50
85
O R D E R N O. D2 E 2 0- 1 2- K E 2 0- 1 6- K E 2 5- 1 6- K E 2 5- 2 0- K E 3 2- 1 6- K E 3 2- 2 0- K E 3 2- 2 5- K E 4 0- 1 6- K E 4 0- 2 0- K E 4 0- 2 5- K E 4 0- 3 2- K E 5 0- 3 2- K E 5 0- 4 0- K
C O D E N O. 5 0 0 6- 3 9 9 5 0 0 6- 4 0 0 5 0 0 6- 4 0 1 A 5 0 0 6- 4 0 1 5 0 0 6- 4 0 2 A 5 0 0 6- 4 0 2 B 5 0 0 6- 4 0 2 5 0 0 6- 4 0 3 A 5 0 0 6- 4 0 3 B 5 0 0 6- 4 0 3 C 5 0 0 6- 4 0 3 5 0 0 6- 4 0 4 A 5 0 0 6- 4 0 4
A n g ul ar H e a d s
TYPE H A AS 1. E xt er n al c o ol a nt s u p pl y 2. T o b e u s e d f or c oll et DI N 6 4 9 9 3. C oll et i s n ot i n cl u d e d
DI M E N SI O N S O R D E R N O.
D DI N 69880
X c a p a cit y
V DI- 4 0- D A 4 0- 2 5 B- 1 1 7 V DI- 4 0- D A 4 0- 3 2 B- 1 1 7
40
2- 1 6 E R 2 5 2- 2 0 E R 3 2
M a ximu m R. P. M. 4000
S
A
B
C
E
F
G
M
C O D E N O.
42 50
± 9 0°
76
6 5. 5 8 8. 5
38
65
2 9. 5 5 2. 5
70
5 0 0 6- 6 2 1 5 0 0 6- 6 2 2
A xi al Drilli n g A n d Milli n g H e a d s
O R D E R M A D E, N O T R E F U N D A B L E.
1. E xt er n al c o ol a nt a n d i nt er m e di at e ri n g s s u p pl y 2. T o b e u s e d f or c utt er ar b or a c c or di n g t o DI N 6 3 5 8
V DI- 4 0- T D A 4 0- 2 0- 1 0 4. 8 5
D DI N 69880 40
X c a p a cit y 1- 1 3 E R 2 0
M a xi m u m R. P. M. 3000
S
i
A
B
C
C O D E N O.
35
1: 1
1 1 4. 5
7 4. 5
86
5 0 0 6- 6 3 1
R e d u ci n g Sl e e v e s
R S- W, R S T Y P E
R S- M T
T o ol h ol d er s wit h m or s e t a p er a c c or di n g t o DI N 2 2 8
T E
DI M E N SI O N S D1
L
32
60
40
70
50
85
1
E 3 2- M T 1 5 0 0 6- 4 1 0 E 4 0- M T 1 5 0 0 6- 4 1 4 E 5 0- M T 1 5 0 0 6- 4 1 8
2
E 3 2- M T 2 5 0 0 6- 4 1 1 E 4 0- M T 2 5 0 0 6- 4 1 5 E 5 0- M T 2 5 0 0 6- 4 1 9
MT
3 E 3 2- M T 3 5 0 0 6- 4 1 2 E 4 0- M T 3 5 0 0 6- 4 1 6 E 5 0- M T 3 5 0 0 6- 4 2 0
4
O R D E R N O. C O D E N O. O R D E R N O. C O D E N O. O R D E R N O. C O D E N O.
E 4 0- M T 4 5 0 0 6- 4 1 7 E 5 0- M T 4 5 0 0 6- 4 2 1
DI M E N SI O N S
A ut o t a p er wit h c yli n dri c s h aft T o b e u s e d f or c oll et DI N 6 4 9 9
O R DE R N O.
D1
D2
T E 2 5- E R 1 6
25
1- 1 0
T E 3 2- E R 2 0
32
T E 4 0- E R 2 5 T E 5 0- E R 3 2
D3
L1
L2
C O D E N O.
M 3- M 1 2
E R16 32
7 0. 5
30
5 0 0 6- 4 3 0
2- 1 3
M 3- M 1 6
E R20 35
65
40
5 0 0 6- 4 3 1
40
2- 1 6
M 4- M 2 0
E R25 42
75
43
5 0 0 6- 4 3 2
50
3- 2 0
M 6- M 2 4
E R32 50
85
48
5 0 0 6- 4 3 3
T e st M a n dr el
T B1 T Y P E
DI N 6 9 8 8 0
DI M E N SI O N S O R D E R N O.
D DI N 6 9 8 8 0
D2
D3
L1
L2
C O D E N O.
T B 1- 3 0
30
30
68
11 5
15
5 0 0 6- 4 3 4
T B 1- 4 0
40
40
83
11 5
15
5 0 0 6- 4 3 5
T B 1- 5 0
50
50
98
11 5
15
5 0 0 6- 4 3 6
L A T H E M A C HI N E A C C E S S O RI E S
E72
V DI
O R D E R N O.
V DI
DI M E N SI O N S
R a di al Milli n g A n d Drilli n g H e a d
O K U M A TYPE
9 0°
E xt er n al C o ol a nt S u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
O K U M A TYPE
D
X c a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
F
C O D E N O.
O K M- F L 4 0- 3 2- 7 0
L300 M
40
2- 2 0 E R 3 2
50
5000
106
80
75
26
70
5 0 0 6- 6 5 0
A xi al Milli n g A n d Drilli n g H e a d 0° E xt er n al C o ol a nt S u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
O K U M A TYPE
D
X c a p a cit y
S
M a xi m u m R. P. M.
A
B
C
C O D E N O.
O K M- D A 3 0- E R 2 0
L200 M
30
1- 1 3 E R 2 0
35
6000
8 4. 5
57
68
5 0 0 6- 6 5 6
O K M- D A 3 0- E R 2 5
L200 M
30
1- 1 6 E R 2 5
42
6000
86
55
68
5 0 0 6- 6 5 7
O K M- D A 4 0- E R 3 2
L300 M
40
2- 2 0 E R 3 2
50
6000
106
74
86
5 0 0 6- 6 5 8
E73
L A T H E M A C HI N E A C C E S S O RI E S
R a di al Milli n g A n d Drilli n g H e a d O K U M A TYPE
9 0°
E xt er n al C o ol a nt S u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
O R D E R N O.
O K U M A TYPE
D
X c a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
F
C O D E N O.
O K M- B L 3 0- 2 0- 6 9- N
L200 M
30
1- 1 3 E R 2 0
35
5000
95
64
43
30
69
5 0 0 6- 6 6 5
O K M- B L 3 0- 2 5- 6 9- N
L200 M
30
1- 1 6 E R 2 5
42
5000
95
64
4 2. 5
30
69
5 0 0 6- 6 6 6
O K M- B L 4 0- 3 2- 9 0
L300 M
40
2- 2 0 E R 3 2
50
5000
124
80
4 2. 5
29
90
5 0 0 6- 6 6 7
A n g ul ar H e a d s E xt er n al C o ol a nt S u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
O K U M A TYPE
D
X c a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
F
G
H
C O D E N O.
O K M- D A 3 0- 2 0 B
L200 M
30
1- 1 3 E R 2 0
35
4000
± 9 0°
64
59
54
32
27
67
5 0 0 6- 6 7 1
O K M- D A 4 0- 2 5 B
L300 M
40
1- 1 6 E R 2 5
42
4000
± 9 0°
76
65
65
38
29
70
5 0 0 6- 6 7 2
L A T H E M A C HI N E A C C E S S O RI E S
E74
V DI
DI M E N SI O N S
R a di al Milli n g A n d Drilli n g H e a d O K U M A TYPE
9 0°
I nt er n al c oll a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
O K U M A TYPE
D
X c a p a cit y
S
M a xi m u m R. P. M.
A
B
C
E
F
C O D E N O.
O K M- C WB L 3 0- 2 5- 6 9
L200 M
30
1- 1 6 E R 2 5
42
5000
95
64
4 3. 5
31
69
5 0 0 6- 6 7 5
A xi al Milli n g A n d Drilli n g H e a d 0°
I nt er n al c oll a nt s u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
O K U M A TYPE
D
X c a p a cit y
S
M a xi m u m R. P. M.
A
B
C
C O D E N O.
O K M- C W- D A 3 0E R25
L200 M
30
1- 1 6 E R 2 5
42
6000
104
7 4. 5
68
5 0 0 6- 6 7 8
A n g ul ar H e a d s O K U M A TYPE
E xt er n al C o ol a nt S u p pl y C oll et i s n ot i n cl u d e d T o b e u s e d f or c oll et DI N 6 4 9 9
DI M E N SI O N S O R D E R N O.
O K U M A TYPE
D
X c a p a cit y
S
M a xi m u m R. P. M.
A
B
C
G
E
F
H
C O D E N O.
O K M- L T- D A 3 0- 2 0 B
L T 2 0 0- M Y
30
1- 1 3 E R 2 0
35
4000
± 9 0°
74
59
27
62
40
67
5 0 0 6- 6 8 2
E75
L A T H E M A C HI N E A C C E S S O RI E S
B ori n g B ar H ol d er O K U M A TYPE I nt er n al C o ol a nt s u p pl y
O R D E R N O.
O K U M A TYPE
D
X
A
B
C
E
C O D E N O.
O K M- 4 1 6 2- 2 7 0 7- 1 0
L200 M
30
3 2( M M)
70
5 6. 5
3 0. 5
3 0. 5
5 0 0 6- 6 8 6
40
1. 5 (I N C H)
75
65
3 4. 5
3 4. 5
5 0 0 6- 6 8 7
40
4 0( M M)
75
60
3 4. 5
3 4. 5
5 0 0 6- 6 8 8
O K M- 4 1 6 3- 2 7 8 5- 1 0 O K M- 4 1 6 3- 2 7 2 3- 1 0
L300 M
V DI
DI M E N SI O N S
B ori n g B ar H ol d er E xt er n al C o ol a nt S u p pl y
DI M E N SI O N S O R D E R N O.
O K U M A TYPE
O K M- 4 1 6 7- 2 6 1 0- 1 0
D
X
A
B
C
E
C O D E N O.
30
1. 2 5 (I N C H)
70
60
3 0. 5
3 0. 5
5 0 0 6- 6 9 2
30
3 2( M M)
70
60
3 0. 5
3 0. 5
5 0 0 6- 6 9 3
40
1. 5 (I N C H)
75
65
3 4. 5
3 4. 5
5 0 0 6- 6 9 4
40
4 0( M M)
75
60
3 4. 5
3 4. 5
5 0 0 6- 6 9 5
L200 M O K M- 4 1 6 7- 2 6 0 4- 1 0 O K M- 4 1 6 3- 2 7 6 9- 1 1 L300 M O K M- 4 1 6 3- 2 7 0 4- 1 2
L A T H E M A C HI N E A C C E S S O RI E S
E76
T ur ni n g H ol d er
O K U M A TYPE
DI M E N SI O N S O R D E R N O.
O K M- A 4 1 6 7- 2 6 0 7- 1 0 O K M- A 4 1 6 7- 2 6 0 1- 1 0 O K M- B 4 1 6 7- 2 6 0 8- 1 0 O K M- B 4 1 6 7- 2 6 0 2- 1 0 O K M- A 4 1 6 3- 2 7 6 6- 1 1 O K M- A 4 1 6 3- 2 7 0 1- 1 1 O K M- B 4 1 6 3- 2 6 7 6- 1 1 O K M- B 4 1 6 3- 2 7 0 2- 1 1
O K U M A TYPE L200 M L200 M L300 M L300 M
D
X
A
30
0. 7 5 (I N C H)
42
30
2 0 ( M M)
30
B
C
C O D E N O.
0. 7 5
25
5 0 0 6- 7 0 0
42
2 0 ( M M)
25
5 0 0 6- 7 0 1
0. 7 5 (I N C H)
42
0. 7 5
55
5 0 0 6- 7 0 2
30
2 0 ( M M)
42
2 0 ( M M)
55
5 0 0 6- 7 0 3
40
1 (I N C H)
47
1 (I N C H)
30
5 0 0 6- 7 0 4
40
2 5 ( M M)
47
2 5 ( M M)
30
5 0 0 6- 7 0 5
40
1
1
5 0 0 6- 7 0 6
40
25
2 5 ( M M)
5 0 0 6- 7 0 7
F a ci n g H ol d er
DI M E N SI O N S O R D E R N O.
O K M- C 4 1 6 7- 2 6 0 9- 1 0 O K M- C 4 1 6 7- 2 6 0 3- 1 0 O K M- C 4 1 6 3- 2 7 6 8- 1 1 O K M- C 4 1 6 3- 2 7 0 3- 1 1
E77
O K U M A TYPE L200 M L300 M
L A T H E M A C HI N E A C C E S S O RI E S
D
X
A
30
0. 7 5 (I N C H)
65
30
2 0 ( M M)
40 40
B
C
C O D E N O.
0. 7 5
45
5 0 0 6- 7 1 1
65
2 0 ( M M)
45
5 0 0 6- 7 1 2
1 (I N C H)
72
1
50
5 0 0 6- 7 1 3
2 5 ( M M)
72
2 5 ( M M)
50
5 0 0 6- 7 1 4
B ori n g B ar H ol d er O K U M A TYPE
E xt er n al C o ol a nt S u p pl y
O R D E R N O.
O K U M A TYPE
D
X
A
B
C
E
F
C O D E N O.
O K M- 4 1 6 7- 2 6 1 1- 1 0
L200 M
30
3 2 ( M M)
84
75
65
8
60
5 0 0 6- 7 2 0
40
1. 5
135
94
65
-10
11 0
5 0 0 6- 7 2 1
40
4 0 ( M M)
135
94
65
-10
11 0
5 0 0 6- 7 2 2
O K M- 4 1 7 6- 2 5 6 6- 1 0
V DI
DI M E N SI O N S
L300 M O K M- 4 1 6 3- 2 7 0 7- 1 0
B ori n g B ar H ol d er E xt er n al C o ol a nt S u p pl y
DI M E N SI O N S O R D E R N O.
O K U M A TYPE
D
X
A
B
C
E
F
C O D E N O.
O K M- 4 1 6 7- 2 6 1 2- 1 0
L200 M
30
25
92
75
38
8
74
5 0 0 6- 7 2 6
L A T H E M A C HI N E A C C E S S O RI E S
E78
Q ui c k C h a n g e T o ol P o st & H ol d er s-It ali a n St yl e
It ali a n St yl e
T h e m ai n bl o c k i s a s s e m bl e d wit h c a st- h ar d e n e d st e el, s e c ur e d ri gi dl y b y t h e l at c h c arri a g e m a c hi n e st e el b olt. T h e m ai n bl o c k h a s 4 sli d e o p e ni n g s f or i n s erti n g t h e pr o p er t o olh ol d er; t h e s e c a n b e s e c ur el y f a st e n e d b y a si m pl e a n d s af e e c c e ntri c d e vi c e, w hi c h al s o a dj u st s t h e h ei g ht f or e a c h t o ol h ol d er. T h e t o ol s h a n k i s s e c ur el y h el d b y 4 h ar d e n e d s cr e w s. T h e si m pli cit y a n d f a st t o ol c h a n gi n g i n cr e a s e t h e pr o d u cti o n of l at h e t ur ni n g. N o c h att er or vi br ati o n s. T hi s st yl e i s i nt er c h a n g e a bl e wit h R a pi d u e a n d S T M.
C o m pl et e s et i n cl u d e s: 1 pi e c e s T o ol p o st 3 pi e c e s of t ur ni n g h ol d er s 1 pi e c e of R o u n d s h a n k s St a n d ar d s p a n n er s
M AI N B O D Y DI M E N SI O N S B
D H7
V T P- M
L at h e s wi n g 1 8 0- 2 5 0
5 7. 7
18
Mi n 24
V T P- A R- A P
2 5 0- 3 0 0
6 4. 5
18
V T P- A
2 5 0- 3 5 0
8 2. 0
24
V T P- B R- B P
3 0 0- 3 8 0
9 1. 6
V T P- B
3 5 0- 5 0 0
1 0 0. 0
V T P- C
5 0 0- 6 5 0
1 1 5. 3
O R D E R N O.
H
V m a x Ø m a x M Nor O.s e 10 14 1
Max 34
C
E
T max
F
45
8
16
56
25
41
56
9
16
63
16
16
1
8
30
16
80
32
42
60
12
20
75
10
18
2
10
35
20
100
28
38
53
75
13
25
90
17
20
3
10
40
20
11 5
30
47
65
85
15
32
100
15
24
3
12
4 8. 2
25
127
38
51
72
94
19
32
108
24
26
4
14
5 8. 2
26
145
SET TYPE
E79
Ø D
G
H1
7
27
18
70
C O D E N O.
1 x F 0 1- M, 3 x F 0 2- M A N D 1 x F 0 3- M
G. W. kgs 3. 1
1 x F 0 1- A R- A P, 3 x F 0 2- A R- A P A N D 1 x F 0 3- A R- A P
4. 5
5 0 0 6- 8 9 1
O R D E R N O.
5- PI E C E S E T S E A C H S E T I N C L U D E S
V T P- M V T P- A R- A P V T P- A
1 x F 0 1- A, 3 x F 0 2- A A N D 1 x F 0 3- A
9. 3
5 0 0 6- 8 9 2
V T P- B R- B P
1 x F 0 1- B R- B P, 3 x F 0 2- B R- B P A N D 1 x F 0 3- B R- B P
1 3. 2
5 0 0 6- 8 9 3
V T P- B
1 x F 0 1- B, 3 x F 0 2- B A N D 1 x F 0 3- B
1 7. 5
5 0 0 6- 8 9 4
V T P- C
1 x F 0 1- C, 3 x F 0 2- C A N D 1 x F 0 3- C
2 3. 0
5 0 0 6- 8 9 5
L A T H E M A C HI N E A C C E S S O RI E S
5 0 0 6- 8 9 0
I n di vi d u all y Pi e c e It ali a n St yl e C e ntr e H ei g ht ( m m) 120
L at h e S wi n g ( m m) 240
C O D E N O.
V T P- F 0 1- A R- A P
140
280
5 0 0 6- 9 0 1
V T P- F 0 1- A
170
340
5 0 0 6- 9 0 2
V T P- F 0 1- B R- B P
200
400
5 0 0 6- 9 0 3
V T P- F 0 1- B
230
460
5 0 0 6- 9 0 4
V T P- F 0 1- C
280
560
5 0 0 6- 9 0 5
C e ntr e H ei g ht ( m m) 120
M a x. S q u ar e & R e ct a n g ul ar T o ol ( m m) 16
C O D E N O.
V T P- F 0 2- A R- A P
140
16
5 0 0 6- 9 0 7
V T P- F 0 2- A
170
20
5 0 0 6- 9 0 8
V T P- F 0 2- B R- B P
200
25
5 0 0 6- 9 0 9
V T P- F 0 2- B
230
32
5 0 0 6- 9 1 0
V T P- F 0 2- C
280
32
5 0 0 6- 9 1 1
C e ntr e H ei g ht ( m m) 120
M a x. H ol di n g Di a ( m m) 14
C O D E N O.
V T P- F 0 3- A R- A P
140
16
5 0 0 6- 9 1 3
V T P- F 0 3- A
170
18
5 0 0 6- 9 1 4
V T P- F 0 3- B R- B P
200
20
5 0 0 6- 9 1 5
V T P- F 0 3- B
230
24
5 0 0 6- 9 1 6
V T P- F 0 3- C
280
26
5 0 0 6- 9 1 7
C e ntr e H ei g ht ( m m) 120
M or s e T a p er H ol e
C O D E N O.
M T N o. 1
5 0 0 6- 9 1 8
V T P- F 0 4- A R- A P
140
M T N o. 2
5 0 0 6- 9 1 9
V T P- F 0 4- A
170
M T N o. 2
5 0 0 6- 9 2 0
V T P- F 0 4- B R- B P
200
M T N o. 3
5 0 0 6- 9 2 1
V T P- F 0 4- B
230
M T N o. 3
5 0 0 6- 9 2 2
V T P- F 0 4- C
280
M T N o. 4
5 0 0 6- 9 2 3
O R D E R N O.
V T P- F 0 1- M
T ur ni n g H ol d er O R D E R N O.
V T P- F 0 2- M
T ur ni n g H ol d er s
Round Shanks O R D E R N O.
V T P- F 0 3- M
Round Shanks
M or s e H ol d er O R D E R N O.
V T P- F 0 4- M
M or s e H ol d er
5 0 0 6- 9 0 0
5 0 0 6- 9 0 6
5 0 0 6- 9 1 2
L A T H E M A C HI N E A C C E S S O RI E S
E80
T O OL P OST
T o ol P o st
Q ui c k C h a n g e T o ol P o st & H ol d er s- 4 0 P o siti o ni n g E ur o p e a n St yl e E ur o p e a n St yl e
T o ol p o st a n d t o ol h ol d er s ar e pr e ci s el y gr o u n d e d wit h 4 0 t o ol- bit p o siti o n s. E a s y diff er e nt t o ol- h ol d er s. L o c ki n g a n d l o o s e ni n g of a n y t o ol- h ol d er s ar e p erf or m e d b y a si m pl e e c c e ntri c cl a m pi n g. T h e si m pli cit y a n d f a st t o ol c h a n gi n g i n cr e a s e s t h e l at h e t ur ni n g pr o d u cti o n. A h ei g ht a dj u st m e nt f or t o ol bit s i s c o ntr oll e d b y a k n url e d h e a d- s cr e w, wit h o ut t h e n e e d f or p a c ki n g pl at e s or s hi m s. T hi s st yl e i s i nt er c h a n g e a bl e wit h H a s s e.
C o m pl et e s et i n cl u d e s:
1 Pi e c e s T o ol p o st 3 pi e c e s T ur ni n g & F a ci n g H ol d er- D 1 pi e c e B ori n g B ar H ol d er- B
O R D E R N O.
5- PI E C E S E T S E A C H S E T I N C L U D E S ( 5 p c s/ s et)
G. W. kgs
C O D E N O.
V T P- V- A 0
1 x t o ol p o st F 4 0- 0( A 0), 2 x F 4 0- 0 1 0( A 0 D 1 2 x 5 0) a n d 1 x F 4 0- 0 2 0( A 0 B 1 2 x 5 0) a n d 1 x F 4 0- 0 4 0( A 0 A 2. 7 x 1 0 x 5 0)
1. 5
5 0 0 6- 9 5 5 A
V T P- V- A 1
1 x t o ol p o st F 4 0- 1( A 1), 2 x F 4 0- 1 1 1( A 1 D 1 6 x 7 5) a n d 1 x F 4 0- 1 4 0( A 1 A 2. 7 x 1 0 x 7 5) a n d 1 x F 4 0- 1 2 1( A 1 B 1 6 x 8 0)
4. 0
5 0 0 6- 9 5 6 A
V T P- V- E 5
1 x t o ol p o st F 4 0- 2( B 5), 2 x F 4 0- 2 1 1( E 5 D 2 0 x 1 0 0) a n d 1 x F 4 0- 2 2 0( E 5 B 3 0 x 1 0 0) a n d 1 x F 4 0- 2 4 0( E 5 A 2. 7 x 1 0 x 1 0 0)
8. 0
5 0 0 6- 9 5 7 A
V T P- B 2
1 x t o ol p o st F 4 0- 3( B 2), 3 x F 4 0- 3 1 1( B 2 D 2 5 x 1 2 0) a n d 1 x F 4 0- 3 2 0( B 2 B 3 2 x 1 3 0)
1 2. 3
5 0 0 6- 9 5 8
V T P- C 3
1 x t o ol p o st F 4 0- 4( C 3), 3 x F 4 0- 4 1 1( C 3 D 3 2 x 1 5 0) a n d 1 x F 4 0- 4 2 2( C 3 B 4 0 x 1 6 0)
2 4. 3
5 0 0 6- 9 5 9
S et St yl e F or L at h e
O R D E R V T P- F 4 0- 0 V T P- F 4 0- 1 V T P- F 4 0- 2 V T P- F 4 0- 3 V T P- F 4 0- 4 N O. D12 D16 D20 D20 D25 D25 D32 D32 D40 D45 PA R A METE R Dri vi n g P o w er ( k w) 1. 2 2 4. 5 7 13 L at h e S wi n g ( m m)
4 0 P o siti o n T o ol P o st B o d y
1 2 0- 2 2 0
2 0 0- 4 0 0
3 0 0- 5 0 0
4 0 0- 7 0 0
H mi n. ( m m)
1 8. 5
2 5. 5 2 9. 5
32
37
38
46
4 7. 5 5 5. 5 6 1
H m a x. ( m m)
2 6. 5
3 6. 5 4 0. 5
49
52
58
57
8 7. 5 9 1. 5 9 1
13
14
1 5. 5 1 5. 5 1 6
25
25
32
32
y ( m m)
6. 5
h ( m m)
12
16
M ( m m)
6. 8
104
132
150
192 201 202
L ( m m)
37
55
68
76
107
N ( m m)
34
52
66
73
93 102 103
ø d ( m m)
13
20
20
32
40
9. 5
12 20
20
O R D E R N O.
Ø D
L2
L1
V T P- F 4 0- 0
6
-
30
V T P- F 4 0- 1
10
12
V T P- F 4 0- 2
10
14
40
45
Ø A
Ø B
Ø C
37
-
-
-
-
45
5 5. 3
5. 6
6. 8
42
1 8º
57
6 7. 3
5. 6
6. 8
49
1 5º
V T P- F 4 0- 3
14
20
65
75
6. 9
9
64
3 0º
V T P- F 4 0- 4
2 4. 5
10
95
107
9. 5
11
88
1 8º
4 0 P o siti o n T o ol P o st
yl e O R D E R N O. L at h( e m s m)wi n g F orN St O.
E81
1 5 0- 3 0 0
V T P- F 4 0- 0
1 2 0- 2 2 0
V T P- A 0
H ei g ht of c utti n g e d g e r a n g e ( m m) D 1 2/ 1 8. 5 ~ 2 6. 5
V T P- F 4 0- 1
1 5 0- 3 0 0
V T P- A 1
D 1 6/ 2 5. 5 ~ 3 6. 5 or D 2 0/ 2 9. 5 ~ 4 0. 5
5 0 0 6- 9 3 1
V T P- F 4 0- 2
2 0 0- 4 0 0
V T P- E 5
D 2 0/ 3 2 ~ 4 9 or D 2 5/ 3 7 ~ 5 2
5 0 0 6- 9 3 2
V T P- F 4 0- 3
3 0 0- 5 0 0
V T P- B 2
D 2 5/ 3 8 ~ 5 8 or D 3 2/ 4 6 ~ 5 7
5 0 0 6- 9 3 3
V T P- F 4 0- 4
4 0 0- 7 0 0
V T P- C 3
D 3 2/ 4 7. 5 ~ 8 7. 5 or D 4 0/ 5 5. 5 ~ 9 1. 5 or D 4 5/ 6 1 ~ 9 1 5 0 0 6- 9 3 4
L A T H E M A C HI N E A C C E S S O RI E S
C O DE N O. 5 0 0 6- 9 3 0
Q ui c k C h a n g e T o ol P o st & H ol d er s- 4 0 P o siti o ni n g E ur o p e a n St yl e O R D E R N O.
S eri e s N O.
V T P- F 4 0- 0 1 0 V T P- F 4 0- 1 1 1 V T P- F 4 0- 1 1 2 V T P- F 4 0- 1 1 3 V T P- F 4 0- 1 1 4 V T P- F 4 0- 1 1 0 V T P- F 4 0- 1 1 5 V T P- F 4 0- 2 1 1 V T P- F 4 0- 2 1 2 V T P- F 4 0- 3 1 1 V T P- F 4 0- 3 1 2 V T P- F 4 0- 3 1 3 V T P- F 4 0- 3 1 4 V T P- F 4 0- 4 1 1 V T P- F 4 0- 4 1 2 V T P- F 4 0- 4 1 3 V T P- F 4 0- 4 1 4 V T P- F 4 0- 4 1 5
A0 D A1 D A1 D A1 D A1 D A1 D A1 D E5 D E5 D B2 D B2 D B2 D B2 D C3 D C3 D C3 D C3 D C3 D
B ori n g B ar H ol d er O R D E R N O.
S eri e s N O.
V T P- F 4 0- 0 2 0 V T P- F 4 0- 1 2 1 V T P- F 4 0- 1 2 0 V T P- F 4 0- 1 2 2 V T P- F 4 0- 2 2 0 V T P- F 4 0- 3 2 0 V T P- F 4 0- 4 2 1 V T P- F 4 0- 4 2 2
A0 B A1 B A1 B A1 B E5 B B2 B C3 B C3 B
Drilli n g & B ori n g B ar H ol d er O R D E R N O.
S eri e s N O.
V T P- F 4 0- 0 3 0 V T P- F 4 0- 1 3 0 V T P- F 4 0- 1 3 1 V T P- F 4 0- 2 3 1 V T P- F 4 0- 2 3 2 V T P- F 4 0- 3 3 0 V T P- F 4 0- 4 3 1 V T P- F 4 0- 4 3 2
A0 S A1 S A1 S E5 S E5 S B2 S C3 S C3 S
M a x. H ei g ht ( m m) 12 16 16 16 20 20 20 20 25 25 25 32 32 32 32 40 40 45
M a x. L e n gt h ( m m) 50 75 80 90 75 80 90 100 100 120 140 120 140 150 170 150 170 170
C O D E N O.
M a x. Di a ( m m) 12 16 18 20 30 32 32 40
L e n gt h ( m m) 50 80 80 90 100 130 160 160
C O D E N O.
M a x. Di a ( m m) 15 30 20 30 40 40 40 50
L e n gt h ( m m) 50 80 90 100 100 120 150 150
C O D E N O.
L e n gt h ( m m) 50 75 100 120 150
C O D E N O.
C ut- Off T o ol H ol d er O R D E R N O.
S eri e s N O.
Bl a d e- T x W
V T P- F 4 0- 0 4 0 V T P- F 4 0- 1 4 0 V T P- F 4 0- 2 4 0 V T P- F 4 0- 3 4 0 V T P- F 4 0- 4 4 0
A0 A A1 A E5 A B2 A C3 A
2. 7 x 1 0 2. 7 x 1 0 2. 7 x 1 0 4 x 16 5 x 1 8. 5
M or s e T a p er B u s hi n g
M O RSE
O R D E R N O.
S eri e s N O.
V T P- F 4 0- 1 5 1 V T P- F 4 0- 1 5 2 V T P- F 4 0- 2 5 1 V T P- F 4 0- 2 5 2 V T P- F 4 0- 3 5 0 V T P- F 4 0- 3 5 1 V T P- F 4 0- 4 5 1 V T P- F 4 0- 4 5 2 V T P- F 4 0- 4 5 3
A1L A1L E5L E5L E5L E5L C3L C3L C3L
Di a m et er ( m m) 30 30 30 40 40 40 40 40 50
L e n gt h ( m m) 80 90 96 11 4 120 120 140 150 150
5 0 0 6- 9 3 5 5 0 0 6- 9 3 6 5 0 0 6- 9 3 7 5 0 0 6- 9 3 8 5 0 0 6- 9 3 9 5 0 0 6- 9 4 0 5 0 0 6- 9 4 1 5 0 0 6- 9 4 2 5 0 0 6- 9 4 3 5 0 0 6- 9 4 4 5 0 0 6- 9 4 5 5 0 0 6- 9 4 6 5 0 0 6- 9 4 7 5 0 0 6- 9 4 8 5 0 0 6- 9 4 9 5 0 0 6- 9 5 0 5 0 0 6- 9 5 1 5 0 0 6- 9 5 2
5 0 0 6- 9 6 0 5 0 0 6- 9 6 1 5 0 0 6- 9 6 2 5 0 0 6- 9 6 3 5 0 0 6- 9 6 4 5 0 0 6- 9 6 5 5 0 0 6- 9 6 6 5 0 0 6- 9 6 7
5 0 0 6- 9 6 8 5 0 0 6- 9 6 9 5 0 0 6- 9 7 0 5 0 0 6- 9 7 1 5 0 0 6- 9 7 2 5 0 0 6- 9 7 3 5 0 0 6- 9 7 4 5 0 0 6- 9 7 5
5 0 0 6- 9 7 6 5 0 0 6- 9 7 7 5 0 0 6- 9 7 8 5 0 0 6- 9 7 9 5 0 0 6- 9 8 0
M or s e T a p er C O D E N O. N O. 1 N O. 2 N O. 2 N O. 3 N O. 2 N O. 3 N O. 3 N O. 4 N O. 4
5 0 0 6- 9 8 1 5 0 0 6- 9 8 2 5 0 0 6- 9 8 3 5 0 0 6- 9 8 4 5 0 0 6- 9 8 5 5 0 0 6- 9 8 6 5 0 0 6- 9 8 7 5 0 0 6- 9 8 8 5 0 0 6- 9 8 9
L A T H E M A C HI N E A C C E S S O RI E S
E82
T O OL P OST
T ur ni n g & F a ci n g H ol d er
F a c e Milli n g C utt er 4 5º
4 5º
O R DE R N O.
D
d Ø I N C H M E T RI C
S E 5 4 5- 3
80
S E 5 4 5- 4
100
S E 5 4 5- 5
125
S E 5 4 5- 6
160
S E 5 4 5- 8
200
2 5. 4 27 3 1. 7 5 32 3 8. 1 40 5 0. 8 40 4 7. 6 2 5 60 4 7. 6 2 5 60 4 7. 6 2 5 60 2 5. 4 27 3 1. 7 5 32 3 8. 1 40 5 0. 8 40 4 7. 6 2 5 60 4 7. 6 2 5 60 4 7. 6 2 5 60
S E 5 4 5- 1 0 2 5 0 S E 5 4 5- 1 2 3 0 0 S E 4 4 5- 3
80
S E 4 4 5- 4
100
S E 4 4 5- 5
125
S E 4 4 5- 6
160
S E 4 4 5- 8
200
S E 4 4 5- 1 0 2 5 0 S E 4 4 5- 1 2 3 0 0
PA RTS
H
B L A D E W EI G H T( k g) C O D E N O.
50
5
2. 1
55
5
3. 5
60
6
5. 1
60
8
7. 1
60
10
1 0. 4
60
12
1 6. 8
60
14
27
50
5
2. 1
55
5
3. 2
60
6
4. 7
60
8
7. 3
60
10
9. 6
60
12
1 6. 7
60
14
2 5. 8
I NSE RT 545 HEAVY D UTY
S C R- C L 5/ 1 6
C L- S
S C R- S T- S 4
S T- S
445 LI G H T D U T Y
S E K N- 1 5 0 4
W R N- M 4 T
6 0 0 1- 0 0 1 I 6 0 0 1- 0 0 1 M 6 0 0 1- 0 0 2 I 6 0 0 1- 0 0 2 M 6 0 0 1- 0 0 3 I 6 0 0 1- 0 0 3 M 6 0 0 1- 0 0 4 I 6 0 0 1- 0 0 4 M 6 0 0 1- 0 0 5 I 6 0 0 1- 0 0 5 M 6 0 0 1- 0 0 6 I 6 0 0 1- 0 0 6 M 6 0 0 1- 0 0 7 I 6 0 0 1- 0 0 7 M 6 0 0 1- 0 2 0 I 6 0 0 1- 0 2 0 M 6 0 0 1- 0 2 1 I 6 0 0 1- 0 2 1 M 6 0 0 1- 0 2 2 I 6 0 0 1- 0 2 2 M 6 0 0 1- 0 2 3 I 6 0 0 1- 0 2 3 M 6 0 0 1- 0 2 4 I 6 0 0 1- 0 2 4 M 6 0 0 1- 0 2 5 I 6 0 0 1- 0 2 5 M 6 0 0 1- 0 2 6 I 6 0 0 1- 0 2 6 M
3. 1 8
S E K N- 1 2 0 3
F a c e Milli n g C utt er 6 5º
6 5º
O R DE R N O.
D
S P 5 3 5- 3
80
S P 5 3 5- 4
100
S P 5 3 5- 5
125
S P 5 3 5- 6
160
S P 5 3 5- 8
200
S P 5 3 5- 1 0
250
S P 5 3 5- 1 2
300
S P 4 3 5- 3
80
S P 4 3 5- 4
100
S P 4 3 5- 5
125
S P 4 3 5- 6
160
S P 4 3 5- 8
200
S P 4 3 5- 1 0
250
S P 4 3 5- 1 2
300
PA RTS
I NSE RT
d Ø I N C H M E T RI C 2 5. 4 27 3 1. 7 5 32 3 8. 1 40 5 0. 8 40 4 7. 6 2 5 60 4 7. 6 2 5 60 4 7. 6 2 5 60 2 5. 4 27 3 1. 7 5 32 3 8. 1 40 5 0. 8 40 4 7. 6 2 5 60 4 7. 6 2 5 60 4 7. 6 2 5 60
535 HEAVY D UTY S C R- C L 5/ 1 6
F1
C L- S
C U T TI N G T O O L
S C R- S T- S 4
S T- S
W R N- M 4 T
S P K N- 1 5 0 4
H 50 55 60 60 60 60 60 50 55 60 60 60 60 60
B L A D E W EI G H T( k g) C O D E N O. 6 0 0 1- 0 4 0 I 5 2. 1 6 0 0 1- 0 4 0 M 6 0 0 1- 0 4 1 I 5 3. 3 6 0 0 1- 0 4 1 M 6 0 0 1- 0 4 2 I 6 5. 6 6 0 0 1- 0 4 2 M 6 0 0 1- 0 4 3 I 8 7. 4 6 0 0 1- 0 4 3 M 6 0 0 1- 0 4 4 I 10 1 0. 2 6 0 0 1- 0 4 4 M 6 0 0 1- 0 4 5 I 12 1 7. 5 6 0 0 1- 0 4 5 M 6 0 0 1- 0 4 6 I 14 6 0 0 1- 0 4 6 M 6 0 0 1- 0 7 0 I 5 2. 1 6 0 0 1- 0 7 0 M 6 0 0 1- 0 7 1 I 5 3. 3 6 0 0 1- 0 7 1 M 6 0 0 1- 0 7 2 I 6 5. 5 6 0 0 1- 0 7 2 M 6 0 0 1- 0 7 3 I 8 7. 8 6 0 0 1- 0 7 3 M 6 0 0 1- 0 7 4 I 10 1 0. 1 6 0 0 1- 0 7 4 M 6 0 0 1- 0 7 5 I 12 1 7. 5 6 0 0 1- 0 7 5 M 6 0 0 1- 0 7 6 I 14 2 6. 8 6 0 0 1- 0 7 6 M 435 LI G H T D U T Y S P K N- 1 2 0 4
F a c e Milli n g C utt er 7 5º
7 5º
O R DE R N O.
d ØI N C H M E T RI C 2 5. 4 80 F P- 3 27 3 1. 7 5 F P- 4 1 0 0 32 3 8. 1 F P- 5 1 2 5 40 5 0. 8 F P- 6 1 6 0 40 4 7. 6 2 5 F P- 8 2 0 0 60 4 7. 6 2 5 F P- 1 0 2 5 0 60 4 7. 6 2 5 F P- 1 2 3 0 0 60 D
I NSE RT
H B L A D E W EI G H T( k g) C O D E N O. 50
5
2
55
6
3. 1
60
8
5. 3
60
10
6. 5
60
12
9. 6
60
16
1 7. 1
60
20
2 9. 3
6 0 0 1- 0 9 0 I 6 0 0 1- 0 9 0 M 6 0 0 1- 0 9 1 I 6 0 0 1- 0 9 1 M 6 0 0 1- 0 9 2 I 6 0 0 1- 0 9 2 M 6 0 0 1- 0 9 3 I 6 0 0 1- 0 9 3 M 6 0 0 1- 0 9 4 I 6 0 0 1- 0 9 4 M 6 0 0 1- 0 9 5 I 6 0 0 1- 0 9 5 M 6 0 0 1- 0 9 6 I 6 0 0 1- 0 9 6 M
PA RTS
S P U N120308 S P K N- 1 2 0 3 1203 E D R S C RC L 5/ 1 6
C L- S
S C RS T- S 4
W R NM4T
S T- S
MI L LI N G C U T T E R
F a c e Milli n g C utt er 9 0º
9 0º
O R DE R N O.
D
T P- 6 3
63
T P- 8 0
80
T P- 1 0 0
100
T P- 1 2 5
125
T P- 1 6 0
160
T P- 2 0 0
200
T P- 2 5 0
250
T P- 3 0 0
300
d Ø
I N C H M E T RI C 2 5. 4 27 2 5. 4 27 3 1. 7 5 32 3 8. 1 40 5 0. 8 40 4 7. 6 2 5 60 4 7. 6 2 5 60 4 7. 6 2 5 60
H
a
50
22
3
0. 7
S T- T
S C R- W 5/ 1 6
W R N- M 5 T S C R- S T- T 4
50
22
4
1. 1
S T- T
S C R- W 5/ 1 6
W R N- M 5 T S C R- S T- T 4
55
22
5
1. 9
B L A D E W EI G H T( k g) I N S E R T
C O D E N O.
S T- T
S C R- W 5/ 1 6
W R N- M 5 T S C R- S T- T 4
S T- T
S C R- W 5/ 1 6
W R N- M 5 T S C R- S T- T 4
S T- T
S C R- W 5/ 1 6
W R N- M 5 T S C R- S T- T 4
60
22
6
3
TP M N 2204
60
22
7
4. 9
TPK N 2204 P P R
60
22
8
8. 1
S T- T
S C R- W 5/ 1 6
W R N- M 5 T S C R- S T- T 4
60
22
9
1 5. 9
S T- T
S C R- W 5/ 1 6
W R N- M 5 T S C R- S T- T 4
60
22
10
28
S T- T
S C R- W 5/ 1 6
W R N- M 5 T S C R- S T- T 4
6 0 0 1- 1 1 0 I 6 0 0 1- 1 1 0 M 6 0 0 1- 1 1 1 I 6 0 0 1- 1 1 1 M 6 0 0 1- 1 1 2 I 6 0 0 1- 1 1 2 M 6 0 0 1- 1 1 3 I 6 0 0 1- 1 1 3 M 6 0 0 1- 1 1 4 I 6 0 0 1- 1 1 4 M 6 0 0 1- 1 1 5 I 6 0 0 1- 1 1 5 M 6 0 0 1- 1 1 6 I 6 0 0 1- 1 1 6 M 6 0 0 1- 1 1 7 I 6 0 0 1- 1 1 7 M
C U T TI N G T O O L
F2
R o u n d I n s ert Milli n g C utt er
O R D E R N O.
D
R M- 5 R 5 0
50
R M- 5 R 6 3
63
R M- 8 R 5 0
50
R M- 8 R 6 3
63
d Ø
inch m etri c s 22 2 5. 4 22 22 2 5. 4 22
S C RE W F O R I NSE RT
FI XI N G U NI T CL A MP F O R CL A MP
H
BL A DE
R
HI T A C HI I NSE RT
45
4
5
R D MT10T3
S C R- C R S 4
50
5
5
R D MT10T3
S C R- C R S 4
45
3
8
R D MT1604
S C R- C R S 5
50
3, 4
8
R D MT1604
S C R- C R S 5
S C R- D M 3. 5
C O D E N O.
C L- 5 R
T15
6 0 0 1- 1 3 0 M
C L- 5 R
T15
6 0 0 1- 1 3 1 I 6 0 0 1- 1 3 1 M
T20
6 0 0 1- 1 3 3 M
T20
6 0 0 1- 1 3 4 I 6 0 0 1- 1 3 4 M
W EI G H T ( k g)
C O D E N O.
S C R- W 1/ 4 S
S h o ul d er E n d Mill s
F3
O R D E R N O.
D
d
L
BL A DE
I NSE RT
S A E- 2 0
20
20
11 0
2
T P M N 11 0 3 0 8
S C R- W 3/ 1 6
W R N- M 3 L
0. 4
6 0 0 1- 1 5 0
S A E- 2 5
25
20
11 0
2
T P M N 11 0 3 0 8
S C R- W 3/ 1 6
W R N- M 3 L
0. 3
6 0 0 1- 1 5 1
S A E- 3 0
30
20
130
2
T P M N160308
S C R- W 1/ 4
W R N- M 4 L
0. 5
6 0 0 1- 1 5 2
S A E- 3 5
35
20
130
2
T P M N160308
S C R- W 1/ 4
W R N- M 4 L
0. 4
6 0 0 1- 1 5 3
S A E- 4 0
40
20
130
3
T P M N160308
S C R- W 1/ 4
W R N- M 4 L
0. 5
6 0 0 1- 1 5 4
S A E- 4 5
45
20
130
3
T P M N160308
S C R- W 1/ 4
W R N- M 4 L
0. 6
6 0 0 1- 1 5 5
S A E- 5 0
50
20
130
3
T P M N160308
S C R- W 1/ 4
W R N- M 4 L
0. 7
6 0 0 1- 1 5 6
S A E- 6 3
63
32
150
4
T P M N160308
S C R- W 1/ 4
W R N- M 4 L
1. 5
6 0 0 1- 1 5 7
C U T TI N G T O O L
4 5º
M at eri al : S N C M 4 3 9
O R D E R N O.
D
D1
H C B- 5 0
50
60
H C B- 6 3
63
75
H C B- 8 0
80
96
H C B- 1 0 0
1 0 0 11 6
H C B- 1 2 5
125 141
H C B- 1 5 0
150 158
H C B- 2 0 0
200 212
d Ø
I N C H M E T RI C 22 2 5. 4 27 2 5. 4 27 3 1. 7 5 32 3 8. 1 40 5 0. 8 40 4 7. 6 2 5 60
H
BL A DE
W EI G H T( k g)
I NSE RT
FI XI N G U NI T
W RE N C H
C O D E N O.
45
4
0. 5 3
S E KT1204
S C R- S E 5
T20
6 0 0 1- 1 7 0 M
50
5
0. 8 3
S E KT1204
S C R- S E 5
T20
55
6
1. 2 4
S E KT1204
S C R- S E 5
T20
55
6
1. 8 3
S E KT1204
S C R- S E 5
T20
60
8
3. 0 9
S E KT1204
S C R- S E 5
T20
60
10
4. 0 6
S E KT1204
S C R- S E 5
T20
60
12
7. 6 8
S E KT1204
S C R- S E 5
T20
6 0 0 1- 1 7 1 I 6 0 0 1- 1 7 1 M 6 0 0 1- 1 7 2 I 6 0 0 1- 1 7 2 M 6 0 0 1- 1 7 3 I 6 0 0 1- 1 7 3 M 6 0 0 1- 1 7 4 I 6 0 0 1- 1 7 4 M 6 0 0 1- 1 7 5 I 6 0 0 1- 1 7 5 M 6 0 0 1- 1 7 6 I 6 0 0 1- 1 7 6 M
ZI N C C O A T E D
4 5º
M at eri al : S N C M 4 3 9
D
D1
H C N- 6 3
63 175
H C N- 8 0
80
H C N- 1 0 0
1 0 0 11 6
H C N- 1 2 5
125 141
H C N- 1 5 0
160 158
H C N- 2 0 0
200 212
d Ø
96
I N C H M E T RI C 2 5. 4 22 2 5. 4 27 3 1. 7 5 32 3 8. 1 40 5 0. 8 40 4 7. 6 2 5 60
H
BL A DE
W EI G H T( k g) IM EN TC RIH C
I NSE RT
FI XI N G U NI T
W RE N C H
50
5
0. 8 7
S E MT13T3
S C R- S E 4
T15
55
6
1. 2 4
S E MT13T3
S C R- S E 4
T15
55
6
1. 8 3
S E MT13T3
S C R- S E 4
T15
60
8
S E MT13T3
S C R- S E 4
T15
60
10
3. 8 2
S E MT13T3
S C R- S E 4
T15
60
12
7. 8 8
S E MT13T3
S C R- S E 4
T15
Hi g h- S p e e d F a c e Milli n g C utt er
C O D E N O. 6 0 0 1- 1 9 0 I 6 0 0 1- 1 9 0 M 6 0 0 1- 1 9 1 I 6 0 0 1- 1 9 1 M 6 0 0 1- 1 9 2 I 6 0 0 1- 1 9 2 M 6 0 0 1- 1 9 3 I 6 0 0 1- 1 9 3 M 6 0 0 1- 1 9 4 I 6 0 0 1- 1 9 4 M 6 0 0 1- 1 9 5 I 6 0 0 1- 1 9 5 M
MI L LI N G C U T T E R
O R D E R N O.
M at eri al : S N C M 4 3 9
O R D E R N O.
D
F M C- 5 0
50
F M C- 6 3
63
F M C- 8 0
80
F M C- 1 0 0
100
F M C- 1 2 5
125
F M C- 1 6 0
160
d Ø
I N C H M E T RI C 2 5. 4 22 2 5. 4 22 2 5. 4 27 3 1. 7 5 32 3 8. 1 40 3 8. 1 40
H
BL A DE
W EI G H T( k g)
I NSE RT
FI XI N G U NI T
W RE N C H
40
4
0. 3 4
A P MT1604
S C R- C A P 4
T15
40
5
0. 5 7
A P MT1604
S C R- C A P 4
T15
50
6
1. 1 5
A P MT1604
S C R- C A P 4
T15
50
7
1. 8 3
A P MT1604
S C R- C A P 4
T15
50
8
2. 9 9
A P MT1604
S C R- C A P 4
T15
50
10
5. 0 7
A P MT1604
S C R- C A P 4
T15
C O D E N O. 6 0 0 1- 2 0 0 I 6 0 0 1- 2 0 0 M 6 0 0 1- 2 0 1 I 6 0 0 1- 2 0 1 M 6 0 0 1- 2 0 2 I 6 0 0 1- 2 0 2 M 6 0 0 1- 2 0 3 I 6 0 0 1- 2 0 3 M 6 0 0 1- 2 0 4 I 6 0 0 1- 2 0 4 M 6 0 0 1- 2 0 5 I 6 0 0 1- 2 0 5 M
C U T TI N G T O O L
F4
R o u n d I n s ert E n d Mill s
-
FI XI N G U NI T F O R I NSE RT S C R- C R S 3
T8
6 0 0 2- 0 0 1
R D MT10T3
C L- 5 R
S C R- C R S 4
T15
6 0 0 2- 0 0 2
5
R D MT10T3
C L- 5 R
S C R- C R S 4
T15
6 0 0 2- 0 0 3
50
5
R D MT10T3
C L- 5 R
S C R- C R S 4
T15
6 0 0 2- 0 0 4
25
50
5
R D MT10T3
C L- 5 R
S C R- C R S 4
T15
6 0 0 2- 0 0 5
150
32
70
5
R D MT10T3
C L- 5 R
S C R- C R S 4
T15
6 0 0 2- 0 0 6
32
200
32
120
5
R D MT10T3
C L- 5 R
S C R- C R S 4
T15
6 0 0 2- 0 0 7
3
35
150
32
50
5
R D MT10T3
C L- 5 R
S C R- C R S 4
T15
6 0 0 2- 0 0 8
C 3 2- 5 R 3 5 X 2 0 0
3
35
200
32
50
5
R D MT10T3
C L- 5 R
S C R- C R S 4
T15
6 0 0 2- 0 0 9
C 3 2- 5 R 4 0 X 1 5 0
3
40
150
32
50
5
R D MT10T3
C L- 5 R
S C R- C R S 4
T15
6 0 0 2- 0 1 0
C 3 2- 5 R 4 0 X 2 0 0
3
40
200
32
50
5
R D MT10T3
C L- 5 R
S C R- C R S 4
T15
6 0 0 2- 0 1 1
O R D E R N O.
BL A DE
D
L
d
b
R
HI T A C HI I NSE RT
CL A MP
C 2 0- 4 R 2 0- 1 5 0
2
20
150
20
50
4
R D MT0802
C 2 5- 5 R 2 5- 1 5 0
2
25
150
25
60
5
C 2 5- 5 R 2 5- 2 0 0
2
25
200
25
120
C 2 5- 5 R 3 0- 1 5 0
2
30
150
25
C 2 5- 5 R 3 0- 2 0 0
2
30
200
C 3 2- 5 R 3 2- 1 5 0
3
32
C 3 2- 5 R 3 2- 2 0 0
3
C 3 2- 5 R 3 5 X 1 5 0
FI XI N G U NI T F O R CL A MP
S C R- D M 3. 5
Drilli n g & Milli n g C utt er
C O D E N O.
S P E CI A L T Y P E
O R D E R N O.
BL A DE
D
L
d
l
I n s ert S m all
I n s ert Bi g
C 1 6- D M 1 6- 1 2 0
2
16
120
16
30
C C MT060204
C P MT080204Z
S C R- C J U 2. 5
-
T8
6 0 0 2- 0 3 0
C 1 6- D M 1 6- 1 7 5
2
16
175
16
40
C C MT060204
C P MT080204Z
S C R- C J U 2. 5
-
T8
6 0 0 2- 0 3 1
C 2 0- D M 2 0- 1 3 0
2
20
130
20
30
C C MT060204
C P MT090204Z
S C R- C J U 2. 5
S C R- C J U 3. 5
T 8. T 1 5
6 0 0 2- 0 3 2
C 2 0- D M 2 0- 1 8 5
2
20
185
20
50
C C MT060204
C P MT090204Z
S C R- C J U 2. 5
S C R- C J U 3. 5
T 8. T 1 5
6 0 0 2- 0 3 3
C 2 5- D M 2 5- 1 3 0
2
25
130
25
40
C P MT090308
C P MT120308Z
S C R- C J U 4
-
T15
6 0 0 2- 0 3 4
C 2 5- D M 2 5- 2 2 0
2
25
220
25
70
C P MT090308
C P MT120308Z
S C R- C J U 4
-
T15
6 0 0 2- 0 3 5
C 3 2- D M 3 2- 1 7 0
2
32
170
32
50
C P MT120408
C P MT160408Z
S C R- C J U 5
-
T20
6 0 0 2- 0 3 6
C 3 2- D M 3 2- 2 5 0
2
32
250
32
80
C P MT120408
C P MT160408Z
S C R- C J U 5
-
T20
6 0 0 2- 0 3 7
F5
C U T TI N G T O O L
C O D E N O.
Hi g h S p e e d S h o ul d er Mill s
C 1 6- S S 1 6- 1 2 0 H
S H O U L D E R MI L L S
C 2 5- S S 2 5- 1 5 0 M
HI T A C HI / MI T S U BI S HI
O R D E R N O.
BL A DE
D
L
d
l
b
C 1 6- S S 1 6- 1 2 0 H
1
16
120
16
12
30
A P E T 1 2 0 2 0 4 HI T A C HI
S C R- C E X 3. 5
T15
6 0 0 2- 0 6 0
C 2 0- S S 2 0- 1 2 0 H
2
20
120
20
12
30
A P E T 1 2 0 2 0 4 HI T A C HI
S C R- C E X 3. 5
T15
6 0 0 2- 0 6 2
C 2 0- S S 2 0- 2 0 0 H
2
20
200
20
15
30
A P E T 1 2 0 2 0 4 HI T A C HI
S C R- C E X 4
T15
6 0 0 2- 0 6 3
C 2 5- S S 2 5- 1 3 0 H
2
25
130
25
15
35
A D E T 1 6 0 3 0 4 HI T A C HI
S C R- C E X 4
T15
6 0 0 2- 0 6 4
C 2 5- S S 2 5- 2 0 0 H
2
25
200
25
15
35
A D E T 1 6 0 3 0 4 HI T A C HI
S C R- C E X 4
T15
6 0 0 2- 0 6 5
C 3 2- S S 3 2- 1 5 0 H
3
32
150
32
15
45
A D E T 1 6 0 3 0 4 HI T A C HI
S C R- C E X 4
T15
6 0 0 2- 0 6 6
C 3 2- S S 3 2- 2 0 0 H
3
32
200
32
15
45
A D E T 1 6 0 3 0 4 HI T A C HI
S C R- C E X 4
T15
6 0 0 2- 0 6 7
C 2 5- S S 2 5- 1 5 0 M
2
25
150
25
14
35
S C R- C A P 4
T15
6 0 0 2- 0 6 9
C 2 5- S S 3 0- 1 5 0 M
2
30
150
25
14
45
S C R- C A P 4
T15
6 0 0 2- 0 7 0
C 3 2- S S 3 2- 1 5 0 M
3
32
150
32
14
45
S C R- C A P 4
T15
6 0 0 2- 0 8 0
C 3 2- S S 3 2- 2 5 0 M
3
32
250
32
-
60
S C R- C A P 4
T15
6 0 0 2- 0 8 1
C 3 2- S S 3 5- 1 5 0 M
3
35
150
32
14
45
S C R- C A P 4
T15
6 0 0 2- 0 8 2
C 3 2- S S 4 0- 1 5 0 M
4
40
150
32
14
45
S C R- C A P 4
T15
6 0 0 2- 0 8 3
C O D E N O.
C U T TI N G T O O L
F6
Hi g h- S p e e d R o u g h E n d Mill s
Mit s u bi s hi i n s ert s r e c o m m e n d e d
I NSE RT
FI XI N G U NI T
O R D E R N O.
BL A DE
D
d
L
L1
V A P X- 1 6 1 6
2
16
16
120
24
6 0 0 2- 1 5 0
V A P X- 1 7 1 6
2
17
16
150
24
6 0 0 2- 1 5 1
V A P X- 2 0 2 0
3
20
20
150
29
V A P X- 2 1 2 0
3
21
20
150
29
V A P X- 2 5 2 5
4
25
25
150
34
6 0 0 2- 1 5 4
V A P X- 2 6 2 5
4
26
25
200
34
6 0 0 2- 1 5 5
123608
S C RA P X 2. 5
W RE N C H
T8
C O D E N O.
6 0 0 2- 1 5 2 6 0 0 2- 1 5 3
Hi g h- S p e e d R o u g h E n d Mill s
F7
W EI G H T ( K G)
C O D E N O.
5
0. 0 7
6 0 0 2- 1 7 1
28
5
0. 0 7
6 0 0 2- 1 7 2
120
28
5
0. 1 1
6 0 0 2- 1 7 3
12
120
33
5
0. 1 1
6 0 0 2- 1 7 4
14
12
120
25
5
0. 1 1
6 0 0 2- 1 7 5
2
20
20
85
26
11
0. 3 4
6 0 0 2- 1 8 1
V H R E- 2 2 0 1 5
2
20
20
150
26
11
0. 3 6
6 0 0 2- 1 8 2
V H R E- 2 2 0 2 0
2
20
20
200
26
11
0. 4 9
6 0 0 2- 1 8 3
V H R E- 2 2 2 1 5
2
22
20
150
26
11
0. 3 7
6 0 0 2- 1 8 4
V H R E- 3 2 5 9 5
3
25
25
95
32
11
0. 3 4
6 0 0 2- 1 8 5
V H R E- 3 2 5 1 5
3
25
25
150
32
11
0. 5 4
6 0 0 2- 1 8 6
V H R E- 3 2 5 2 0
3
25
25
200
32
11
0. 7 5
6 0 0 2- 1 8 7
O R D E R N O.
BL A DE
D
d
L
L1
L2
V H R E- 2 1 0 1 0
2
10
10
100
28
V H R E- 2 1 1 1 0
2
11
10
100
V H R E- 2 1 2 1 2
2
12
12
V H R E- 2 1 3 1 2
2
13
V H R E- 3 1 4 1 2
3
V H R E- 2 2 0 8 5
C U T TI N G T O O L
W RE N C H
T6
T10
C R T R o u n d I n s ert E n d Mill s
Mit s u bi s hi i n s ert s r e c o m m e n d e d
C O D E N O.
C L- C R T
W EI G H T ( k g) 0. 9
C L- C R T
1. 3
6 0 0 3- 0 5 2
S C R- C R T 4
C L- C R T
1. 1
6 0 0 3- 0 5 3
S C R- C R T 4
C L- C R T
1. 3
6 0 0 3- 0 5 4
W EI G H T ( k g)
C O D E N O.
O R D E R N O.
D
d
R
L
BL A DE
C R T- 6 R 3 2 X 1 5 0
32
32
6
150
3
S C R- M 3. 5
S C R- C R T 4
C R T- 6 R 3 2 X 2 0 0
32
32
6
200
3
S C R- M 3. 5
S C R- C R T 4
C R T- 6 R 3 5 X 1 5 0
35
32
6
150
3
S C R- M 3. 5
C R T- 6 R 3 5 X 2 0 0
35
32
6
200
3
S C R- M 3. 5
I NSE RT
CL A MP
6 0 0 3- 0 5 1
O R D E R N O.
D
Da
d
L
L 1
BL A DE
I NSE RT
C- 3 2- S E 4 4 5- 5 0
50
62
32
150
45
3
S E K N1203
S C R- W 1/ 4 L
W R N- M 4 T
1. 2 5
6 0 0 3- 0 6 0
C- 3 2- S E 4 4 5- 6 3
63
74
32
150
45
4
S E K N1203
S C R- W 1/ 4 L
W R N- M 4 T
1. 3
6 0 0 3- 0 6 1
S h o ul d er F a c e Milli n g C utt er
H
a
BL A DE
I NSE RT
50
d M E T RI C 22
50
16
3
T P M N1603
S C R- W 1/ 4
W R N- M 4 L
6 0 0 3- 0 6 5
63
22
50
16
4
T P M N1603
S C R- W 1/ 4
W R N- M 4 L
6 0 0 3- 0 6 6
O R D E R N O.
D
T P S- 5 0 T P S- 6 3
C O D E N O.
C U T TI N G T O O L
F8
I N S E R T E N D MI L L S
F a c e E n d Mill s
4 5º C h a mf eri n g E n d Mill s
O R DE R N O.
C utt er Di a.
T C12 T C40
25ø 40ø
S h a n k Di a.
L e n gt h
12ø 12ø
C a p a cit y
11 0 100
FI XI N G U NI T
Wr e n c h
M4 M4
T15 T15
I NSE RT
W EI G H T ( k g)
C O D E N O.
T C MT16T304 T C MT16T304
0. 2 0. 3 4
6 0 0 4- 0 0 2 6 0 0 4- 0 0 3
4 5º C h a mf eri n g E n d Mill s
O R D E R N O.
Aº
D
Dr
d
L
BL A DE
V C E- 4 5 2 1 V C E- 4 5 3 1 V C E- 4 5 5 0 V C E- 4 5 3 2 V C E- 4 5 6 3
45 45 45 45 45
5 10 20 6 35
21 31 50 32 63
16 20 25 32 25
120 120 130 150 150
1 2 3 1 3
IS O C O DE
I NSE RT
FI XI N G U NI T
W RE N C H
T P U N1603
S C R- W 1/ 4
W R N- M 4 L
T P U N 2 2 0 4 S C R- W 5/ 1 6
W R N- M 5 L
T- Sl ot E n d Mill s
D
L1
d
d1
L2
L
BL A DE
I NSE RT
V T E- 2 4 1 1 V T E- 3 1 1 4 V T E- 3 9 1 8 V T E- 4 9 2 2
24 31 39 49
11 14 18 22
20 25 32 32
12 15 19 25
29 42 49 60
90 11 0 120 140
4 4 4 4
C C M T- 0 6 0 2 0 4 C P M T- 0 8 0 2 0 4 Z C P M T- 0 9 0 3 0 8 C P M T- 1 2 0 4 0 8
C U T TI N G T O O L
6 0 0 4- 0 0 5 6 0 0 4- 0 0 6 6 0 0 4- 0 0 7 6 0 0 4- 0 0 8 6 0 0 4- 0 0 9
IS O C O DE
O R D E R N O.
F9
C O D E N O.
FI XI N G U NI T
W RE N C H
S C R- T S 2. 5
T8
S C R- T S 4 S C R- T S 5
T15 T20
W EI G H T
C O D E N O.
0. 1 9 0. 3 6 0. 6 1 0. 8 2
6 0 0 4- 0 1 5 6 0 0 4- 0 1 6 6 0 0 4- 0 1 7 6 0 0 4- 0 1 8
C h a mf er T o ol
Hi g h S p e e d st e el 9 0º H. S. S.
D1 x D2
D1
D2 4 5º
• M at eri al: H. S. S.
L
D1 5. 0 6. 3 8. 3 1 0. 4 1 2. 4 1 3. 4 1 6. 5 2 0. 5 2 5. 0 3 1. 0
D2 1. 5 1. 5 2 2. 5 2. 8 2. 9 3. 2 3. 5 3. 8 4. 2
S H A N K Ød 4 5 6 6 8 8 10 10 10 12
L m m
40 45 50 50 56 56 60 63 67 71
C h a mf er T o ol 6 P c s Kit s
C O D E N O. 6 0 0 4- 0 4 1 6 0 0 4- 0 4 2 6 0 0 4- 0 4 3 6 0 0 4- 0 4 4 6 0 0 4- 0 4 5 6 0 0 4- 0 4 6 6 0 0 4- 0 4 7 6 0 0 4- 0 4 8 6 0 0 4- 0 4 9 6 0 0 4- 0 5 0
Hi g h s p e e d st e el 9 0º H. S. S.
4 5º
• M at eri al: H. S. S.
C T H - A I N C L U DI N G Ø 6. 3, 8. 3, 1 0. 4, 1 2. 4, 1 6. 5, 2 0. 5 M M
6 P C S/ S E T
O R D E R N O.
P C S/ S E T
W EI G H T( K G)
C O D E N O.
C T H- A
6 P CS
0. 5
6 0 0 4- 0 5 5
C U T TI N G T O O L
F10
C H A MFE R T O OL
O R D E R N O. C T H- 5 1 C T H- 6 1 C T H- 8 2 C T H- 1 0 2 C T H- 1 2 2 C T H- 1 3 2 C T H- 1 6 3 C T H- 2 0 3 C T H- 2 5 3 C T H- 3 1 4
Si d e Milli n g C utt er
O R D E R N O.
D
d
W
BL A DE
V S M- 1 0 1 6 V S M- 1 2 1 6 V S M- 1 5 1 6 V S M- 2 0 1 6
100
1
16
10
125
1
16
14
150
1
16
16
200
1
16
20
IS O C O DE
I NSE RT
CL A MP
FI XI N G U NI T
W RE N C H
C O D E N O. 6 0 0 4- 0 2 0
SP U N 120304
C L- S C L- S L
S C RC L 5/ 1 6
W R N- M 4 T
6 0 0 4- 0 2 1 6 0 0 4- 0 2 2 6 0 0 4- 0 2 3
T- Si d e Milli n g C utt er
O R D E R N O.
BL A DE
D
d
W
V T S C- 4 1 6 V T S C- 5 1 6 V T S C- 5 2 0 V T S C- 6 1 6 V T S C- 6 2 0 V T S C- 8 2 0 V T S C- 8 2 5
10 14 14 16 16 20 20
100 125 125 150 150 200 200
2 5. 4 3 1. 7 5 3 1. 7 5 3 1. 7 5 3 1. 7 5 3 1. 7 5 3 1. 7 5
16 16 20 16 20 20 25
CL A MP
W RE N C H
S P U N- 1 2 0 3 S P U N- 1 5 0 4 S P U N- 1 2 0 3
C L- S C L- S L
S C RC L 5/ 1 6
W R NM4T
S P U N- 1 5 0 4
W EI G H T ( k g s) 0. 8 4 1. 6 4 1. 7 3 2. 2 0 2. 4 8 4. 3 8 5. 2 3
C O D E N O.
W EI G H T ( k g s) 1. 8 5 1. 8 5
C O D E N O.
6 0 0 4- 1 6 1 6 0 0 4- 1 6 2 6 0 0 4- 1 6 3 6 0 0 4- 1 6 4 6 0 0 4- 1 6 5 6 0 0 4- 1 6 6 6 0 0 4- 1 6 7
S h ell- T y p e R o u g h Milli n g C utt er
O R D E R N O.
FL UTE
D
V S R C- 3 V S R C- 8 0
6
80
F 11
C U T TI N G T O O L
dø
I N C H H h 1 I NSE RT M E T RI C 3 1. 7 5 8 0 6 7 L1 P5 0M 4T 32
I NSE RT 3
SP MT 1204
W RE N C H 18
S C RR G H5
T20
6 0 0 4- 1 7 1I 6 0 0 4- 1 7 1 M
P o w er S u p er Drill 2 L
D 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35
d 25 25 25 25 25 25 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32
L1 30 32 34 36 38 40 42 44 46 48 50 52 54 56 58 60 62 64 66 68 70
I NSE RT
FI XI N G U NI T
W RE N C H
W C M X030208
S C R- E X D 2. 5
T8
W C M X040208
S C R- E X D 2. 5
T8
W C M X050308
S C R- E X D 3
T10
W C M X06T308
S C R- E X D 3. 5
T15
P o w er S u p er Drill 3 L
O R D E R N O. V S D- 1 4 X 3 V S D- 1 5 X 3 V S D- 1 6 X 3 V S D- 1 7 X 3 V S D- 1 8 X 3 V S D- 1 9 X 3 V S D- 2 0 X 3 V S D- 2 1 X 3 V S D- 2 2 X 3 V S D- 2 3 X 3 V S D- 2 4 X 3 V S D- 2 5 X 3 V S D- 2 6 X 3 V S D- 2 7 X 3 V S D- 2 8 X 3 V S D- 2 9 X 3 V S D- 3 0 X 3 V S D- 3 1 X 3 V S D- 3 2 X 3 V S D- 3 3 X 3 V S D- 3 4 X 3 V S D- 3 5 X 3 V S D- 3 6 X 3 V S D- 3 7 X 3
D 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37
d 25 25 25 25 25 25 25 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32
L1 42 45 48 51 54 57 60 63 66 69 72 75 78 81 84 87 90 93 96 99 102 105 108 111
C O D E N O. 6 0 0 4- 1 0 0 6 0 0 4- 1 0 1 6 0 0 4- 1 0 2 6 0 0 4- 1 0 3 6 0 0 4- 1 0 4 6 0 0 4- 1 0 5 6 0 0 4- 1 0 6 6 0 0 4- 1 0 7 6 0 0 4- 1 0 8 6 0 0 4- 1 0 9 6 0 0 4- 1 1 0 6 0 0 4- 1 1 1 6 0 0 4- 1 1 2 6 0 0 4- 1 1 3 6 0 0 4- 1 1 4 6 0 0 4- 1 1 5 6 0 0 4- 1 1 6 6 0 0 4- 1 1 7 6 0 0 4- 1 1 8 6 0 0 4- 1 1 9 6 0 0 4- 1 2 0
IS O C O DE
I NSE RT
FI XI N G U NI T
W RE N C H
W C M X030208
S C R- E X D 2. 5
T8
W C M X040208
S C R- E X D 2. 5
T8
W C M X050308
S C R- E X D 3
T10
W C M X06T308
S C R- E X D 3. 5
T15
C O D E N O. 6 0 0 4- 1 3 1 6 0 0 4- 1 3 2 6 0 0 4- 1 3 3 6 0 0 4- 1 3 4 6 0 0 4- 1 3 5 6 0 0 4- 1 3 6 6 0 0 4- 1 3 7 6 0 0 4- 1 3 8 6 0 0 4- 1 3 9 6 0 0 4- 1 4 0 6 0 0 4- 1 4 1 6 0 0 4- 1 4 2 6 0 0 4- 1 4 3 6 0 0 4- 1 4 4 6 0 0 4- 1 4 5 6 0 0 4- 1 4 6 6 0 0 4- 1 4 7 6 0 0 4- 1 4 8 6 0 0 4- 1 4 9 6 0 0 4- 1 5 0 6 0 0 4- 1 5 1 6 0 0 4- 1 5 2 6 0 0 4- 1 5 3 6 0 0 4- 1 5 4
C U T TI N G T O O L
F12
P O W E R S U P E R D RI L L
O R D E R N O. V S D- 1 5 X 2 V S D- 1 6 X 2 V S D- 1 7 X 2 V S D- 1 8 X 2 V S D- 1 9 X 2 V S D- 2 0 X 2 V S D- 2 1 X 2 V S D- 2 2 X 2 V S D- 2 3 X 2 V S D- 2 4 X 2 V S D- 2 5 X 2 V S D- 2 6 X 2 V S D- 2 7 X 2 V S D- 2 8 X 2 V S D- 2 9 X 2 V S D- 3 0 X 2 V S D- 3 1 X 2 V S D- 3 2 X 2 V S D- 3 3 X 2 V S D- 3 4 X 2 V S D- 3 5 X 2
IS O C O DE
C utti n g H ol d er
IS O C O DE EX A MPLE O R D E R N O.
C O D E N O.
N GT N3
6 0 0 4- 0 3 6
S L- 1
6 0 0 4- 0 3 7
S L- 1 3 m m O R D E R N O.
H
W O R KI N G M A X. DI A.
W
B
L
A
C GI H 2 6- 3
20
75
3
2. 4
100
2 5. 4
C GI H 3 2- 3
25
100
3
2. 4
150
3 1. 3
I NSE RT
W EI G H T( k g)
C O D E N O.
0. 1
6 0 0 4- 0 3 0
0. 2
6 0 0 4- 0 3 1
C utti n g H ol d er s
W EI G H T( k g)
C O D E N O.
C GI H 2 6- 3
0. 8
6 0 0 4- 0 6 0
1. 1
6 0 0 4- 0 6 1
1. 2
6 0 0 4- 0 6 2
N GT N3
C utti n g Bl o c k s
EX A MPLE
F13
O R D E R N O.
H
h 1
h2
h3
L
S B U 2 0- 2 6
20
20
10
45
80
S B U 2 0- 3 2
20
20
1 3. 5
50
100
S B U 2 5- 3 2
25
25
8. 5
50
11 0
C U T TI N G T O O L
Cl a m p
FI XI N G U NI T
Wr e n c h L H050
C GI H 3 2- 3
I n s ert T y p e B ori n g B ar
Or d er N O. B B A R- D 1 6
C O D E N O. 6 0 0 4- 0 7 1
8 P C S/ S E T
B O RI N G B A R F O R B O RI N G H E A D B O RI N G B A R
S H A N K D.
B R B 1 6 0 8- 3 2 B R B 1 6 1 0- 4 0 B R B 1 6 1 2- 5 3 B R B 1 6 1 6- 6 8 B R B 1 6 2 0- 8 3 B R B 1 6 2 5- 9 0 B R B 1 6 3 0- 9 0 B R B 1 6 4 0- 9 0
16 16 16 16 16 16 16 16
R A N GE d~d1 8- 1 1 1 0- 1 3 1 2- 1 5 1 6- 2 1 2 0- 2 6 2 5- 3 1 3 0- 3 6 4 0- 4 6
DEPT H m 32 40 53 68 83 90 90 90
L1 32 32 32 32 32 32 32 32
S H A N K L. L 80 80 85 100 11 5 122 122 122
I NSE RT
T P G H090204L
FI XI N G U NI T
W RE N C H
T S2001
T6
T S2504
T8
W EI G H T ( k g)
2 T P G H 11 0 3 0 4 L
T S3005
T10
I NSE RT
FI XI N G U NI T T S2001
W RE N C H
T P G H090204L
T S2504
T8
T P G H 11 0 3 0 4 L
T S3005
T10
I n s ert T y p e B ori n g B ar C O D E N O. 6 0 0 4- 0 7 2 A
4 P C S/ S E T
B O RI N G B A R F O R B O RI N G H E A D B O RI N G B A R
S H A N K D.
B R B 1 8 1 0- 4 0 B R B 1 8 1 2- 5 3 B R B 1 8 1 6- 6 8 B R B 1 8 2 0- 8 3
18 18 18 18
R A N GE d~d1 1 0- 1 3 1 2- 1 7 1 6- 2 1 2 0- 1 3 0
DEPT H m 40 53 68 83
L1 32 32 32 32
S H A N K L. L 80 88 104 11 8
T6
W EI G H T ( k g) 1. 0
I n s ert T y p e B ori n g B ar
Or d er N O. B B A R- D 2 0
C O D E N O. 6 0 0 4- 0 7 3
8 P C S/ S E T
B O RI N G B A R F O R B O RI N G H E A D B O RI N G B A R
S H A N K D.
B R B 2 0 0 8- 3 2 B R B 2 0 1 0- 4 0 B R B 2 0 1 2- 5 3 B R B 2 0 1 6- 6 8 B R B 2 0 2 0- 8 3 B R B 2 0 2 5- 9 6 B R B 2 0 3 0- 1 1 5 B R B 2 0 3 5- 9 7- L
20 20 20 20 20 20 20 20
R A N GE d~d1 8- 1 1 1 0- 1 3 1 2- 1 7 1 6- 2 1 2 0- 1 3 0 2 5- 1 3 5 3 0- 1 4 0 1 2 0- 2 8 0
DEPT H m 23 40 53 68 83 96 11 5 14
L1 32 32 32 32 32 32 32
S H A N K L. L 80 80 85 100 11 5 135 154 99
FI XI N G U NI T
W RE N C H
T S2001
T6
T P G H090204L
T S2504
T8
T P G H 11 0 3 0 4 L
T S3005
T10
I NSE RT
W EI G H T ( k g)
C U T TI N G T O O L
2. 6 5
F14
I N S E R T T Y P E B O RI N G B A R
Or d er N O. B B A R- D 1 8 A
T o ol H ol d er s
IS O C O DE
M CL N 9 5º O R D E R N O.
Ri g ht h a n d
I NSE RT
DI M E N SI O N S
L eft h a n d
A
C
PA RTS
W EI G H T ( k g)
C O D E N O.
E F
M C L N R- 1 6 1 6 H 1 2 M C L N L- 1 6 1 6 H 1 2 C N M G 1 2 0 4 0 8 1 6 1 6 1 0 0 3 0 2 0 S M C- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 2 4 0. 2 5 0. 2 5 6 0 0 5- 0 0 1 6 0 0 5- 1 0 1 M C L N R- 2 0 2 0 K 1 2 M C L N L- 2 0 2 0 K 1 2 C N M G 1 2 0 4 0 8 2 0 2 0 1 2 5 3 4 2 5 S M C- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 0. 4 5 0. 4 5 6 0 0 5- 0 0 2 6 0 0 5- 1 0 2 M C L N R- 2 5 2 5 M 1 2 M C L N L- 2 5 2 5 M 1 2 C N M G 1 2 0 4 0 8 2 5 2 5 1 5 0 3 4 3 2 S M C- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 0. 8 0 0. 8 0 6 0 0 5- 0 0 3 6 0 0 5- 1 0 3 M C L N R- 3 2 2 5 P 1 2 M C L N L- 3 2 2 5 P 1 2 C N M G 1 2 0 4 0 8 3 2 2 5 1 7 0 3 4 3 2 S M C- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 1. 2 0 1. 2 0 6 0 0 5- 0 0 4 6 0 0 5- 1 0 4
M C R N 7 5º O R D E R N O.
Ri g ht h a n d
I NSE RT
DI M E N SI O N S
L eft h a n d
A
C
PA RTS
W EI G H T ( k g)
C O D E N O.
E F
M C R N R- 2 0 2 0 K 1 2 M C R N L- 2 0 2 0 K 1 2 C N M G 1 2 0 4 0 8 2 0 2 0 1 2 5 3 7 2 5 S M C- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 0. 4 5 0. 4 5 6 0 0 5- 0 3 0 6 0 0 5- 1 3 0 M C R N R- 2 5 2 5 M 1 2 M C R N L- 2 5 2 5 M 1 2 C N M G 1 2 0 4 0 8 2 5 2 5 1 5 0 3 4 3 2 S M C- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 0. 8 0 0. 8 0 6 0 0 5- 0 3 1 6 0 0 5- 1 3 1 M C R N R- 3 2 2 5 P 1 2
-
C N M G 1 2 0 4 0 8 3 2 2 5 1 7 0 3 4 3 2 S M C- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 1. 2 0
-
6 0 0 5- 0 3 2
-
M TJ N 9 3º O R D E R N O.
Ri g ht h a n d
I NSE RT
DI M E N SI O N S
L eft h a n d
A
C
PA RTS
W EI G H T ( k g)
C O D E N O.
E F
M T J N R- 2 0 2 0 K 1 6 M T J N L- 2 0 2 0 K 1 6 T N M G 1 6 0 4 0 8 2 0 2 0 1 2 5 3 3 2 5 S M T- 3 2 2 L C S- 5 1 3 C P 5 0- 2 2 C S 7- 6 0 2 4 0. 4 5 0. 4 5 6 0 0 5- 0 6 0 6 0 0 5- 1 6 0 M T J N R- 2 5 2 5 M 1 6 M T J N L- 2 5 2 5 M 1 6 T N M G 1 6 0 4 0 8 2 5 2 5 1 5 0 3 5 3 2 S M T- 3 2 2 L C S- 5 1 3 C P 5 0- 2 2 C S 7- 6 0 3 0 0. 8 0 0. 8 0 6 0 0 5- 0 6 1 6 0 0 5- 1 6 1
MTE N 6 0º O R D E R N O.
I NSE RT
Ri g ht h a n d
DI M E N SI O N S A
PA RTS
C
E
F
W EI G H T ( k g)
C O D E N O.
M T E N N- 2 0 2 0 K 1 6
T N M G 16 04 08
20
20
125
38
10
S M T- 3 2 2 L C S- 5 1 3
C P 5 0- 2 2 C S 7- 6 0 3 0
0. 4 5
6 0 0 5- 0 9 0
M T E N N- 2 5 2 5 M 1 6
T N M G 16 04 08
25
25
150
40
1 2. 5
S M T- 3 2 2 L C S- 5 1 3
C P 5 0- 2 2 C S 7- 6 0 3 0
0. 8 0
6 0 0 5- 0 9 1
F15
C U T TI N G T O O L
T o ol H ol d er s
IS O C O DE
MS D 4 5º O R D E R N O.
I NSE RT
DI M E N SI O N S
Ri g ht h a n d
A
PA RTS
C
W EI G H T ( k g)
C O D E N O.
F
M S D N N- 2 0 2 0 K 1 2
S N
1204
20
20
125
10
S M S- 4 3 2 L C S- 6 1 7
C P 5 0- 2 2 C S 7- 6 0 3 0
0. 4 5
6 0 0 5- 1 2 0
M S D N N- 2 5 2 5 M 1 2
S N
1204
25
25
150
1 2. 5
S M S- 4 3 2 L C S- 6 1 7
C P 5 0- 2 2 C S 7- 6 0 3 0
0. 8 0
6 0 0 5- 1 2 1
M S D N N- 3 2 2 5 P 1 2
S N
1204
32
25
170
1 2. 5
S M S- 4 3 2 L C S- 6 1 7
C P 5 0- 2 2 C S 7- 6 0 3 0
1. 2 0
6 0 0 5- 1 2 2
W EI G H T ( k g)
C O D E N O.
MVV N 7 2º 3 2’ O R D E R N O.
I NSE RT
DI M E N SI O N S
Ri g ht h a n d
A
C
PA RTS
E
F
M V V N N- 2 0 2 0 K 1 6 K
V N M G 16 04 08
20 20 125 45
10
S M V- 3 2 2 L C S- 5 1 3
C P 5 0- 2 5 C S 7- 6 0 3 0
0. 4 5
6 0 0 5- 1 5 0
M V V N N- 2 5 2 5 M 1 6 K
V N M G 16 04 08
2 5 2 5 1 5 0 4 5 1 2. 5
S M V- 3 2 2 L C S- 5 1 3
C P 5 0- 2 5 C S 7- 6 0 3 0
0. 8 0
6 0 0 5- 1 5 1
M V V N N- 3 2 2 5 P 1 6 K
V N M G 16 04 08
3 2 2 5 1 7 0 4 5 1 2. 5
S M V- 3 2 2 L C S- 5 1 3
C P 5 0- 2 5 C S 7- 6 0 3 0
1. 2 0
6 0 0 5- 1 5 2
W EI G H T ( k g)
C O D E N O.
T O OL H OL DE RS
M DJ N 9 3º O R D E R N O.
Ri g ht h a n d
I NSE RT
L eft h a n d
DI M E N SI O N S A
C
PA RTS
E F
M D J N R- 2 0 2 0 K 1 5 M D J N L- 2 0 2 0 K 1 5 D N M G 1 5 0 4 0 8 2 0 2 0 1 2 5 3 7 2 5 S M D- 4 6 3 L C S- 6 1 9 C P 5 0- 2 4 C S 7- 6 0 3 0 0. 4 5 0. 4 5 6 0 0 5- 1 8 0 6 0 0 5- 2 8 0 M D J N R- 2 5 2 5 M 1 5 M D J N L- 2 5 2 5 M 1 5 D N M G 1 5 0 4 0 8 2 5 2 5 1 5 0 3 7 3 2 S M D- 4 6 3 L C S- 6 1 9 C P 5 0- 2 4 C S 7- 6 0 3 0 0. 8 0 0. 8 0 6 0 0 5- 1 8 1 6 0 0 5- 2 8 1 M D J N R- 3 2 2 5 P 1 5 M D J N L- 3 2 2 5 P 1 5 D N M G 1 5 0 4 0 8 3 2 2 5 1 7 0 4 2 3 2 S M D- 4 6 3 L C S- 6 1 9 C P 5 0- 2 4 C S 7- 6 0 3 0 1. 2 0 1. 2 0 6 0 0 5- 1 8 2 6 0 0 5- 2 8 2
M VJ N 9 3º O R D E R N O.
Ri g ht h a n d
L eft h a n d
I NSE RT
DI M E N SI O N S A
C
PA RTS
W EI G H T ( k g)
C O D E N O.
E F
M V J N R- 2 0 2 0 K 1 6 M V J N L- 2 0 2 0 K 1 6 V N M G 1 6 0 4 0 8 2 0 2 0 1 2 5 3 9 2 5 S M V- 3 2 2 L C S- 5 1 3 C P 5 0- 2 5 C S 7- 6 0 3 0 0. 4 5 0. 4 5 6 0 0 5- 2 1 0 6 0 0 5- 3 1 0 M V J N R- 2 5 2 5 M 1 6 M V J N L- 2 5 2 5 M 1 6 V N M G 1 6 0 4 0 8 2 5 2 5 1 5 0 4 4 3 2 S M V- 3 2 2 L C S- 5 1 3 C P 5 0- 2 5 C S 7- 6 0 3 0 0. 8 0 0. 8 0 6 0 0 5- 2 1 1 6 0 0 5- 3 1 1 M V J N R- 3 2 2 5 P 1 6 M V J N L- 3 2 2 5 P 1 6 V N M G 1 6 0 4 0 8 3 2 2 5 1 7 0 4 4 3 2 S M V- 3 2 2 L C S- 5 1 3 C P 5 0- 2 5 C S 7- 6 0 3 0 1. 2 0 1. 2 0 6 0 0 5- 2 1 2 6 0 0 5- 3 1 2
C U T TI N G T O O L
F16
T o ol H ol d er s W TJ N 9 3º O R D E R N O.
Ri g ht h a n d
I NSE RT
DI M E N SI O N S
L eft h a n d
A
C
PA RTS
W EI G H T( k g)
C O D E N O.
E F
W T J N R- 2 0 2 0 K 1 6 W T J N L- 2 0 2 0 K 1 6 T N M G 1 6 0 4 0 8 2 0 2 0 1 2 5 3 2 2 5 S M T- 3 2 2 W T J N R- 2 5 2 5 M 1 6 W T J N L- 2 5 2 5 M 1 6 T N M G 1 6 0 4 0 8 2 5 2 5 1 5 0 3 2 3 2 S M T- 3 2 2
L C S420 N L C S420 N
M W W- 3 0 C S 7 0- 2 4 L W 0 3 0
0. 4 5
0. 4 5
6 0 0 5- 2 4 0 6 0 0 5- 3 4 0
M W W- 3 0 C S 7 0- 2 4 L W 0 3 0
0. 8 0
0. 8 0
6 0 0 5- 2 4 1 6 0 0 5- 3 4 1
WTE N 6 0º O R D E R N O.
I NSE RT
Ri g ht h a n d
DI M E N SI O N S A
C
PA RTS
W EI G H T ( k g) C O D E N O.
E
F
W T E N N- 2 0 2 0 K 1 6
T N M G 16 04 08 20 20 125 32
10
S M T- 3 2 2 L C S- 4 2 0 N
M W W- 3 0 C S 7 0- 2 4 L W 0 3 0
0. 4 5
6 0 0 5- 2 7 0
W T E N N- 2 5 2 5 M 1 6
T N M G 1 6 0 4 0 8 2 5 2 5 1 5 0 3 8 1 2. 5 S M T- 3 2 2 L C S- 4 2 0 N
M W W- 3 0 C S 7 0- 2 4 L W 0 3 0
0. 8 0
6 0 0 5- 2 7 1
W EI G H T( k g)
C O D E N O.
WTX N
O R D E R N O.
Ri g ht h a n d
I NSE RT
L eft h a n d
DI M E N SI O N S A
C
PA RTS
E F
W T X N R- 2 0 2 0 K 1 6 W T X N L- 2 0 2 0 K 1 6 T N M G 1 6 0 4 0 8 2 0 2 0 1 2 5 3 2 2 5 S M T- 3 2 2 L C S- 4 2 0 N
M W W- 3 0 C S 7 0- 2 4 L W 0 3 0
0. 4 5
0. 4 5
6 0 0 5- 3 0 0 6 0 0 5- 4 0 0
W T X N R- 2 5 2 5 M 1 6 W T X N L- 2 5 2 5 M 1 6 T N M G 1 6 0 4 0 8 2 5 2 5 1 5 0 3 2 3 2 S M T- 3 2 2 L C S- 4 2 0 N
M W W- 3 0 C S 7 0- 2 4 L W 0 3 0
0. 8 0
0. 8 0
6 0 0 5- 3 0 1 6 0 0 5- 4 0 1
W WL N 9 5º O R D E R N O.
PA RTS
W EI G H T( k g)
W W L N R- 2 0 2 0 K 0 8 W W L N L- 2 0 2 0 K 0 8 W N M G 0 8 0 4 0 8 2 0 2 0 1 2 5 3 2 2 5 S M W- 4 3 3 L C S- 5 2 0 N
M M W- 4 0 C S 7 0- 2 5
0. 4 5
0. 4 5 6 0 0 5- 3 3 0 6 0 0 5- 4 3 0
W W L N R- 2 5 2 5 M 0 8 W W L N L- 2 5 2 5 M 0 8 W N M G 0 8 0 4 0 8 2 5 2 5 1 5 0 3 2 3 2 S M W- 4 3 3 L C S- 5 2 0 N
M M W- 4 0 C S 7 0- 2 5
0. 8 0
0. 8 0 6 0 0 5- 3 3 1 6 0 0 5- 4 3 1
W W L N R- 3 2 2 5 P 0 8 W W L N L- 3 2 2 5 P 0 8 W N M G 0 8 0 4 0 8 3 2 2 5 1 7 0 3 2 3 2 S M W- 4 3 3 L C S- 5 2 0 N
M M W- 4 0 C S 7 0- 2 5
1. 2 0
1. 2 0 6 0 0 5- 3 3 2 6 0 0 5- 4 3 2
Ri g ht h a n d
F17
L eft h a n d
C U T TI N G T O O L
I NSE RT
DI M E N SI O N S A
C
C O D E N O.
E F
T o ol H ol d er s S CL C O R D E R N O.
I NSE RT
DI M E N SI O N S
PA RTS
W EI G H T ( k g)
C O D E N O.
Ri g ht h a n d
L eft h a n d
S C L C R- 0 8 0 8 H 0 6
S C L C L- 0 8 0 8 H 0 6
C C
0602
8
8
100
10
C S2560
F T- 7
0. 0 6
0. 0 6
6 0 0 5- 3 6 0 6 0 0 5- 4 6 0
S C L C R- 1 0 1 0 H 0 6
S C L C L- 1 0 1 0 H 0 6
C C
0602
10
10
100
12
C S2560
F T- 7
0. 0 8
0. 0 8
6 0 0 5- 3 6 1 6 0 0 5- 4 6 1
S C L C R- 1 2 1 2 H 0 9
S C L C L- 1 2 1 2 H 0 9
C C
09T3
12
12
100
16
C S3590
F T- 1 5
0. 1 2
0. 1 2
6 0 0 5- 3 6 2 6 0 0 5- 4 6 2
S C L C R- 1 6 1 6 H 0 9
S C L C L- 1 6 1 6 H 0 9
C C
09T3
16
16
100
20
C S3590
F T- 1 5
0. 2 1
0. 2 1
6 0 0 5- 3 6 3 6 0 0 5- 4 6 3
A
C
F
S DJ C
O R D E R N O.
I NSE RT
DI M E N SI O N S
PA RTS
W EI G H T ( k g)
C O D E N O.
Ri g ht h a n d
L eft h a n d
S D J C R- 0 8 0 8 H 0 7
S D J C L- 0 8 0 8 H 0 7
DC
0702
8
8
100
10
C S2560
F T- 7
0. 0 6
0. 0 6
6 0 0 5- 3 9 0 6 0 0 5- 4 9 0
S D J C R- 1 0 1 0 H 0 7
S D J C L- 1 0 1 0 H 0 7
DC
0702
10
10
100
12
C S2560
F T- 7
0. 0 8
0. 0 8
6 0 0 5- 3 9 1 6 0 0 5- 4 9 1
S D J C R- 1 2 1 2 H 1 1
S D J C L- 1 2 1 2 H 1 1
DC
11 T 3
12
12
100
16
C S35095
F T- 1 5
0. 1 2
0. 1 2
6 0 0 5- 3 9 2 6 0 0 5- 4 9 2
S D J C R- 1 6 1 6 H 1 1
S D J C L- 1 6 1 6 H 1 1
DC
11 T 3
16
16
100
20
C S35095
F T- 1 5
0. 2 1
0. 2 1
6 0 0 5- 3 9 3 6 0 0 5- 4 9 3
W EI G H T ( k g)
C O D E N O.
C
F
T O OL H OL DE RS
A
S VJ C O R D E R N O.
I NSE RT
DI M E N SI O N S
PA RTS
Ri g ht h a n d
L eft h a n d
S V J C R- 1 0 1 0 H 1 1
S V J C L- 1 0 1 0 H 1 1
VC
11 0 3
1 0 1 0 1 0 0 1 0. 5
-
-
C S2560
F T- 7
0. 0 8 0. 0 8 6 0 0 5- 4 2 0 6 0 0 5- 5 2 0
S V J C R- 1 2 1 2 H 1 1
S V J C L- 1 2 1 2 H 1 1
VC
11 0 3
1 2 1 2 1 0 0 1 2. 5
-
-
C S2560
F T- 7
0. 1 2 0. 1 2 6 0 0 5- 4 2 1 6 0 0 5- 5 2 1
S V J C R- 1 6 1 6 H 1 1
S V J C L- 1 6 1 6 H 1 1
VC
11 0 3
1 6 1 6 1 0 0 1 6. 5
-
-
C S2560
F T- 7
0. 2 1 0. 2 1 6 0 0 5- 4 2 2 6 0 0 5- 5 2 2
S V J C R- 2 0 2 0 K 1 6
S V J C L- 2 0 2 0 K 1 6 V C
1604
20 20 125
25
S M V- 3 2 1 S N 5 3 5 C S 3 5 1 1 5 F T- 1 5 0. 4 0 0. 4 0 6 0 0 5- 4 2 3 6 0 0 5- 5 2 3
S V J C R- 2 5 2 5 M 1 6
S V J C L- 2 5 2 5 M 1 6 V C
1604
25 25 150
32
S M V- 3 2 1 S N 5 3 5 C S 3 5 1 1 5 F T- 1 5 0. 7 2 0. 7 2 6 0 0 5- 4 2 4 6 0 0 5- 5 2 4
A
C
F
SVV C O R D E R N O.
I NSE RT
DI M E N SI O N S A
C
F
PA RTS
W EI G H T ( k g)
C O D E N O.
S V V C N- 1 0 1 0 H 1 1
V C
11 0 3
10
10 100
5
-
-
C S2560
F T- 7
0. 0 8
0. 0 8
6 0 0 5- 4 5 0
S V V C N- 1 2 1 2 H 1 1
V C
11 0 3
12
12 100
6
-
-
C S2560
F T- 7
0. 1 2
0. 1 2
6 0 0 5- 4 5 1
-
-
S V V C N- 1 6 1 6 H 1 1
V C
11 0 3
16
16 100
8
C S2560
F T- 7
0. 2 1
0. 2 1
6 0 0 5- 4 5 2
S V V C N- 2 0 2 0 K 1 6
V C
1604
20
20 125
10
S M V- 3 2 1 S N 5 3 5 C S 3 5 1 1 5
F T- 1 5
0. 4 0
0. 4 0
6 0 0 5- 4 5 3
S V V C N- 2 5 2 5 M 1 6
V C
1604
25
2 5 1 5 0 1 2. 5 S M V- 3 2 1 S N 5 3 5 C S 3 5 1 1 5
F T- 1 5
0. 7 2
0. 7 2
6 0 0 5- 4 5 4
C U T TI N G T O O L
F18
B ori n g B ar s M WL N 9 5º
O R D E R N O.
Ri g ht h a n d
I NSE RT
L eft h a n d
DI M E N SI O N S D
F
I
PA RTS
W EI G H T ( k g)
C O D E N O.
Kº
S 2 0 R- M W L N R 0 8 S 2 0 R- M W L N L 0 8 W N M G 0 8 0 4
2 0 1 3 2 0 0 2 5 1 7º
-
L C S- 5 1 1 C P 5 0- 2 6 C S 7- 5 0 1 8 0. 5 0 0. 5 0 6 0 0 5- 4 8 0 6 0 0 5- 5 8 0
S 2 5 R- M W L N R 0 8 S 2 5 R- M W L N L 0 8 W N M G 0 8 0 4
2 5 1 7 2 0 0 3 2 1 4º
-
L C S- 5 1 1 C P 5 0- 2 2 C S 7- 6 0 2 4 0. 9 5 0. 9 5 6 0 0 5- 4 8 1 6 0 0 5- 5 8 1
S 3 2 S- M W L N R 0 8 S 3 2 S- M W L N L 0 8 W N M G 0 8 0 4
3 2 2 2 2 5 0 4 0 1 4º S M W- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 1. 6 0 1. 6 0 6 0 0 5- 4 8 2 6 0 0 5- 5 8 2
S 4 0 T- M W L N R 0 8 S 4 0 T- M W L N L 0 8 W N M G 0 8 0 4
4 0 2 7 3 0 0 5 0 1 2º S M W- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 2. 9 0 2. 9 0 6 0 0 5- 4 8 3 6 0 0 5- 5 8 3
S 5 0 U- M W L N R 0 8 S 5 0 U- M W L N L 0 8 W N M G 0 8 0 4
5 0 3 5 3 5 0 6 3 1 2º S M W- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 5. 9 0 5. 9 0 6 0 0 5- 4 8 4 6 0 0 5- 5 8 4
M CL N 9 5º
O R D E R N O.
Ri g ht h a n d
I NSE RT
L eft h a n d
DI M E N SI O N S D
F
I
PA RTS
W EI G H T ( k g)
C O D E N O.
Kº
S 2 0 R- M C L N R 1 2 S 2 0 R- M C L N L 1 2 C N M G 1 2 0 4 0 8 2 0 1 3 2 0 0 2 5 1 7º
-
L C S- 5 1 1 C P 5 0- 2 6 C S 7- 5 0 1 8 0. 5 0 0. 5 0 6 0 0 5- 5 1 0 6 0 0 5- 6 1 0
S 2 5 R- M C L N R 1 2 S 2 5 R- M C L N L 1 2 C N M G 1 2 0 4 0 8 2 5 1 7 2 0 0 3 2 1 4º
-
L C S- 5 1 1 C P 5 0- 2 2 C S 7- 6 0 2 4 0. 9 5 0. 9 5 6 0 0 5- 5 1 1 6 0 0 5- 6 1 1
S 3 2 S- M C L N R 1 2 S 3 2 S- M C L N L 1 2 C N M G 1 2 0 4 0 8 3 2 2 2 2 5 0 4 0 1 4º S M C- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 1. 6 0 1. 6 0 6 0 0 5- 5 1 2 6 0 0 5- 6 1 2 S 4 0 T- M C L N R 1 2 S 4 0 T- M C L N L 1 2 C N M G 1 2 0 4 0 8 4 0 2 7 3 0 0 5 0 1 2º S M C- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 2. 9 0 2. 9 0 6 0 0 5- 5 1 3 6 0 0 5- 6 1 3 S 5 0 U- M C L N R 1 2 S 5 0 U- M C L N L 1 2 C N M G 1 2 0 4 0 8 5 0 3 5 3 5 0 6 3 1 2º S M C- 4 3 2 L C S- 6 1 7 C P 5 0- 2 2 C S 7- 6 0 3 0 5. 9 0 5. 9 0 6 0 0 5- 5 1 4 6 0 0 5- 6 1 4
M D U N 9 3º
O R D E R N O.
Ri g ht h a n d
L eft h a n d
I NSE RT
DI M E N SI O N S D
F
I
PA RTS
W EI G H T ( k g)
C O D E N O.
Kº
S 2 5 R- M D U N R 1 5 S 2 5 R- M D U N L 1 5 D N M G 1 5 0 4 0 8 2 5 1 7 2 0 0 3 2 1 2º S M D- 4 4 3 L C S- 6 1 7 C S 5 0- 2 4 C S 7- 6 0 2 4 0. 9 5 0. 9 5 6 0 0 5- 5 4 0 6 0 0 5- 6 4 0 S 3 2 S- M D U N R 1 5 S 3 2 S- M D U N L 1 5 D N M G 1 5 0 4 0 8 3 2 2 2 2 5 0 4 0 1 0º S M D- 4 4 3 L C S- 6 1 7 C S 5 0- 2 4 C S 7- 6 0 2 4 1. 6 0 1. 6 0 6 0 0 5- 5 4 1 6 0 0 5- 6 4 1 S 4 0 T- M D U N R 1 5 S 4 0 T- M D U N L 1 5 D N M G 1 5 0 4 0 8 4 0 2 7 3 0 0 5 0 1 0º S M D- 4 4 3 L C S- 6 1 7 C S 5 0- 2 4 C S 7- 6 0 3 0 2. 9 0 2. 9 0 6 0 0 5- 5 4 2 6 0 0 5- 6 4 2 S 5 0 U- M D U N R 1 5 S 5 0 U- M D U N L 1 5 D N M G 1 5 0 4 0 8 5 0 3 5 3 5 0 6 3 1 0º S M D- 4 4 3 L C S- 6 1 7 C S 5 0- 2 4 C S 7- 6 0 3 0 5. 9 0 5. 9 0 6 0 0 5- 5 4 3 6 0 0 5- 6 4 3
F19
C U T TI N G T O O L
B ori n g B ar s
S M A L L SI Z E
Ri g ht h a n d
L eft h a n d
DI M E N SI O N S D
F
I
S 1 2 M- S D U C R 0 7 S 1 2 M- S D U C L 0 7 1 2 9 1 5 0 1 6 8º S 1 6 Q- S D U C R 0 7 S 1 6 Q- S D U C L 0 7 1 6 1 1 1 8 0 2 0 6º S 2 0 R- S D U C R 1 1 S 2 0 R- S D U C L 1 1 2 0 1 3 2 0 0 2 5 8º S 2 5 R- S D U C R 1 1 S 2 5 R- S D U C L 1 1 2 5 1 7 2 0 0 3 2 4º S 1 0 M- S D Q C R 0 7 S 1 0 M- S D Q C L 0 7 1 0 7 1 5 0 1 3 1 0º S 1 2 M- S D Q C R 0 7 S 1 2 M- S D Q C L 0 7 1 2 9 1 5 0 1 6 8º S 1 6 Q- S D Q C R 0 7 S 1 6 Q- S D Q C L 0 7 1 6 1 1 1 8 0 2 0 6º S 2 0 R- S D Q C R 1 1 S 2 0 R- S D Q C L 1 1 2 0 1 3 2 0 0 2 5 8º S 2 5 R- S D Q C R 1 1 S 2 5 R- S D Q C L 1 1 2 5 1 7 2 0 0 3 2 4º
O R D E R N O.
L eft h a n d
DI M E N SI O N S
D
F
I
B
S 1 2 M- S D Z C R 0 7 S 1 2 M- S D Z C L 0 7 1 2 1 0. 5 1 5 0 1 7 1 0º S 1 6 Q- S D Z C R 0 7 S 1 6 Q- S D Z C L 0 7 1 6 1 2. 5 1 8 0 2 1 9º S 2 0 R- S D Z C R 1 1 S 2 0 R- S D Z C L 1 1 2 0 1 5. 5 2 0 0 2 6 8º S 2 5 R- S D Z C R 1 1 S 2 5 R- S D Z C L 1 1 2 5
O R D E R N O.
Ri g ht h a n d
L eft h a n d
1 8 2 0 0 3 3 6º
DI M E N SI O N S D
F
I
PA RTS
W EI G H T ( k g)
C O D E N O.
Kº
S 1 0 M- S D U C R 0 7 S 1 0 M- S D U C L 0 7 1 0 7 1 5 0 1 3 1 0º
Ri g ht h a n d
I NSE RT
D C MT 0702
C S2560
D C MT 11 T 3
C S35095
D C MT 0702 D C MT 11 T 3
F T- 7
C S2560
F T- 7
C S35095
I NSE RT
F T- 1 5
F T- 1 5
0. 1 5
6 0 0 5- 5 7 0 6 0 0 5- 6 7 0
0. 1 8
0. 1 8
6 0 0 5- 5 7 1 6 0 0 5- 6 7 1
0. 2 8
0. 2 8
6 0 0 5- 5 7 2 6 0 0 5- 6 7 2
0. 4 5
0. 4 5
6 0 0 5- 5 7 3 6 0 0 5- 6 7 3
0. 6 0
0. 6 0
6 0 0 5- 5 7 4 6 0 0 5- 6 7 4
0. 1 5
0. 1 5
6 0 0 5- 6 0 0 6 0 0 5- 7 0 0
0. 1 8
0. 1 8
6 0 0 5- 6 0 1 6 0 0 5- 7 0 1
0. 2 8
0. 2 8
6 0 0 5- 6 0 2 6 0 0 5- 7 0 2
0. 4 5
0. 4 5
6 0 0 5- 6 0 3 6 0 0 5- 7 0 3
0. 6 0
0. 6 0
6 0 0 5- 6 0 4 6 0 0 5- 7 0 4
W EI G H T ( k g)
PA RTS
D C MT 0702
C S2560
F T- 7
D C MT 11 T 3
C S35095
F T- 1 5
I NSE RT
0. 1 5
PA RTS
C O D E N O.
0. 1 8
0. 1 8
6 0 0 5- 6 3 0 6 0 0 5- 7 3 0
0. 2 8
0. 2 8
6 0 0 5- 6 3 1 6 0 0 5- 7 3 1
0. 4 5
0. 4 5
6 0 0 5- 6 3 2 6 0 0 5- 7 3 2
0. 6 0
0. 6 0
6 0 0 5- 6 3 3 6 0 0 5- 7 3 3
W EI G H T ( k g)
C O D E N O.
Kº
S 1 6 Q- S V U C R 1 1 S 1 6 Q- S V U C L 1 1 1 6 1 3 1 8 0 2 2 7º S 2 0 R- S V U C R 1 1 S 2 0 R- S V U C L 1 1 2 0 1 5 2 0 0 2 7 6º
V C MT 11 0 3
C S2560
F T- 7
S 2 5 R- S V U C R 1 6 S 2 5 R- S V U C L 1 6 2 5 2 0. 5 2 0 0 3 3 4º
V C MT 1604
C S3590
F T- 1 5
S 1 6 Q- S V Q C R 1 1 S 1 6 Q- S V Q C L 1 1 1 6 1 3 1 8 0 2 2 7º S 2 0 R- S V Q C R 1 1 S 2 0 R- S V Q C L 1 1 2 0 1 5 2 0 0 2 7 6º
V C MT 11 0 3
C S2560
F T- 7
S 2 5 R- S V Q C R 1 6 S 2 5 R- S V Q C L 1 6 2 5 2 0. 5 2 0 0 3 3 4º
V C MT 1604
C S3590
F T- 1 5
0. 2 8
0. 2 8
6 0 0 5- 6 6 0 6 0 0 5- 7 6 0
0. 4 5
0. 4 5
6 0 0 5- 6 6 1 6 0 0 5- 7 6 1
0. 6 0
0. 6 0
6 0 0 5- 6 6 2 6 0 0 5- 7 6 2
0. 2 8
0. 2 8
6 0 0 5- 6 9 0 6 0 0 5- 7 9 0
0. 4 5
0. 4 5
6 0 0 5- 6 9 1 6 0 0 5- 7 9 1
0. 6 0
0. 6 0
6 0 0 5- 6 9 2 6 0 0 5- 7 9 2
C U T TI N G T O O L
F20
B O RI N G B A R
O R D E R N O.
T e c h ni c al D at a A
C
D
H
T
E
G
H
P
R
C
D
F
I
S
E
in in ± 0. 0 1 0 ± 0. 0 2 5 ± 0. 0 0 0 5 ± 0. 0 1 3 ± 0. 0 0 5 ± 0. 0 1 3 ± 0. 0 0 0 5 ± 0. 0 1 3 ± 0. 0 1 0 ± 0. 0 2 5 ± 0. 0 0 1 0 ± 0. 0 2 5 ± 0. 0 1 0 ± 0. 0 2 5 ± 0. 0 0 1 0 ± 0. 0 2 5
C H E G M U
M
N
T
R
Q
F
U
in ± 0. 0 0 1 ± 0. 0 0 1 ± 0. 0 0 1 ± 0. 0 0 5 ± 0. 0 0 5 ± 0. 0 0 5
± 0. 0 2 5 ± 0. 0 2 5 ± 0. 0 2 5 ± 0. 1 3 ± 0. 1 3 ± 0. 1 3
9
10
A V
L
A
inch ( m etri c)
K
C C
N N
M M
G G
1
2
3
4
p o siti o n
-
M
H
G
C
W
J
4 3 2 12 04 08 5
6
7
5 Si z e
8
I C in 1. 2 ( 5) 5/ 2 2 3. 9 7 1. 5 ( 6) 3/ 1 6 4. 7 6 1. 8 ( 7) 7/ 2 2 5. 5 6 - 0. 2 3 6 6. 0 0 2 1/ 4 6. 3 5 2. 5 5/ 1 6 7. 9 4 - 0. 3 1 5 8. 0 0 3 3/ 8 9. 5 2 - 0. 3 9 4 1 0. 0 0 3. 5 1/ 1 6 1 1. 1 1 - 0. 4 7 2 1 2. 0 0 4 1/ 2 1 2. 7 0 4. 5 9/ 1 6 1 4. 2 9 5 5/ 8 1 5. 8 8 - 0. 6 3 0 1 6. 0 0 5. 5 1 1/ 1 6 1 7. 4 6 6 3/ 4 1 9. 0 5 - 0. 7 8 7 2 0. 0 0 7 7/ 8 2 2. 2 2 - 0. 9 8 4 2 5. 0 0 8 1 2 5. 4 0 1 0 1- 1/ 4 3 1. 7 5 - 1. 2 6 0 3 2. 0 0
F21
C 04 05 06 08 09 11 12 14 16 17 19 22 25 32 -
D 04 05 06 07 09 11 13 15 17 19 21 23 27 31 38 -
C U T TI N G T O O L
R 03 04 05 06 06 07 08 09 10 11 12 12 14 15 16 17 19 20 22 25 25 31 32
S 03 04 05 06 07 09 11 12 14 15 17 19 22 25 31 -
T 06 08 09 11 13 16 19 22 24 27 30 33 38 3 44 54 -
V 08 09 11 13 16 19 22 24 27 30 33 38 44 54 -
W 03 04 05 06 07 08 09 10 11 13 15 17 21 -
in 1/ 3 2 0. 7 9 0. 5( 1) 1/ 1 6 1. 5 9 1( 2) 5/ 6 4 1. 9 8 1. 2 3/ 3 2 2. 3 8 1. 5( 3) 1/ 8 3. 1 8 2 5/ 2 2 3. 9 7 2. 5 3/ 1 6 4. 7 6 3 7/ 3 2 5. 5 6 3. 5 1/ 4 6. 3 5 4 5/ 1 6 7. 9 4 5 3/ 8 9. 5 2 6 7/ 1 6 1 1. 1 1 7 1/ 2 1 2. 7 0 8
01 T1 02 03 T3 04 05 06 07 09 11 12
in .004 .008 1/ 6 4 1/ 3 2 3/ 6 4 1/ 1 6 5/ 6 4 3/ 3 2 7/ 6 4 1/ 8
0. 1 0. 2 0. 4 0. 8 1. 2 1. 6 2. 0 2. 4 2. 8 3. 2
0 0. 5 1 2 3 4 5 6 7 8 -
01 02 04 08 12 16 20 24 28 32 00 M0
8
EX A MPLE
IS O C O DE
P o siti v e A xi al R a k e R a di al R a k e
P o siti v e A xi al R a k e R a di al R a k e
P o siti v e A xi al R a k e P o siti v e R a di al R a k e
P o siti v e A xi al R a k e R a di al R a k e
/8 x 3 /1 6 I n s ert S E C 53 S E C N 1504 S E K N 1504 F O R S E- 5 4 5
1
/2 x 1 /8 I n s ert S E C 42 S E C N 1203 S E K N 1203 F O R S E- 4 4 5
/8 x 3 /1 6 I n s ert S P U- 5 3, S P C N 1 5 0 4 S P G- 5 3, S P K N 1 5 0 4 F O R S P- T Y P E
1
5
5
/2 x 1 /8 I n s ert S P U- 4 2, S P K N 1 2 0 3 S P G- 4 2, S P M N 1 2 0 3 F O R F P- T Y P E
P o siti v e A xi al R a k e
P o siti v e A xi al R a k e
P o siti v e A xi al R a k e R a di al R a k e
1 /4 x 3 /3 2 I n s ert T P G- 2 1 T P M N 11 0 2 F O R S A E- T Y P E
3
/8 x 1 /8 I n s ert T P U- 3 2 T P G- 3 2 T P M N 1603 T P C N 1603 F O R S A E- T Y P E
1 /2 x 3 /1 6 I n s ert T P K- 4 3 T P K N 2204 T P M N 2204 F O R T P- T Y P E
C U T TI N G T O O L
MI L L C U T T E R
I n s ert F or F a c e Mill C utt er
F22
U ni v er s al E n d Mill s C A R BI D E
W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
H ar d e n e d st e el s < 48 H R C
V E A72
4 0- 1 2 0
3 0- 5 0
4 0- 8 0
1 0 0- 2 0 0
1 0 0- 4 5 0
1 5 0- 1 8 0
V E A82
2 5- 7 0
2 0- 5 0
2 5- 6 0
6 0- 1 2 0
6 0- 3 0 0
8 0- 1 2 0
V E A85
2 5- 7 0
2 0- 5 0
2 5- 6 0
6 0- 1 2 0
6 0- 3 0 0
8 0- 1 2 0
O R D E R N O.
St a n d ar d L e n gt h( Or d er N o. V E A 7 2- Di a) O R DE R N O.
Dc h10
Lc m m
Ir o n
U nit: m m
L m m
d h6
C O DE N O.
V E A 7 2- 0. 3
38
3
6 0 0 8- 0 0 1
V E A 7 2- 0. 5
38
3
6 0 0 8- 0 0 3
V E A 7 2- 0. 6
38
3
6 0 0 8- 0 0 4
V E A 7 2- 1. 0
38
3
6 0 0 8- 0 0 8
V E A 7 2- 1. 5
38
3
6 0 0 8- 0 0 9
V E A 7 2- 2. 0
38
3
6 0 0 8- 0 1 0
V E A 7 2- 2. 5
38
3
V E A 7 2- 3. 0
38
V E A 7 2- 4. 0
50
Al u mi ni u m
Pl a sti c s
L o n g L e n gt h( Or d er N o. V E A 8 2- Di a)
U nit: m m
O R DE R N O.
Dc h10
Lc m m
L m m
d h6
C O DE N O.
V E A 8 2- 3
3
20
57
3
6 0 0 8- 0 4 0
V E A 8 2- 4
4
20
57
4
6 0 0 8- 0 4 1
V E A 8 2- 5
5
25
63
5
6 0 0 8- 0 4 2
V E A 8 2- 6
6
28
75
6
6 0 0 8- 0 4 3
V E A 8 2- 8
8
30
75
8
6 0 0 8- 0 4 4
6 0 0 8- 0 1 1
V E A 8 2- 1 0
10
32
75
10
6 0 0 8- 0 4 5
3
6 0 0 8- 0 1 2
V E A 8 2- 1 2
12
50
100
12
6 0 0 8- 0 4 6
4
6 0 0 8- 0 1 4
E xtr a L o n g L e n gt h( Or d er N o. V E A 8 5- Di a)
U nit: m m
V E A 7 2- 5. 0
50
5
6 0 0 8- 0 1 6
O R DE R N O.
V E A 7 2- 5. 5
50
6
6 0 0 8- 0 1 7
V E A 8 5- 3
3
25
75
3
6 0 0 8- 0 5 0
V E A 7 2- 6. 0
63
6
6 0 0 8- 0 1 8
V E A 8 5- 4
4
28
75
4
6 0 0 8- 0 5 1
V E A 7 2- 7. 0
63
8
6 0 0 8- 0 1 9
V E A 8 5- 5
5
32
75
5
6 0 0 8- 0 5 2
V E A 7 2- 8. 0
63
8
6 0 0 8- 0 2 0
V E A 8 5- 6
6
38
100
6
6 0 0 8- 0 5 3
V E A 7 2- 9. 0
72
10
6 0 0 8- 0 2 1
V E A 8 5- 8
8
42
100
8
6 0 0 8- 0 5 4
V E A 8 5- 1 0
10
45
100
10
6 0 0 8- 0 5 5
V E A 7 2- 1 0. 0
72
10
6 0 0 8- 0 2 2
V E A 8 5- 1 2
12
75
150
12
6 0 0 8- 0 5 6
V E A 7 2- 1 2. 0
75
12
6 0 0 8- 0 2 4
V E A 8 5- 1 4
14
80
150
14
6 0 0 8- 0 5 7
V E A 7 2- 1 6. 0
89
16
6 0 0 8- 0 2 6
V E A 8 5- 1 6
16
80
150
16
6 0 0 8- 0 5 8
V E A 7 2- 2 0. 0
100
20
6 0 0 8- 0 2 8
V E A 8 5- 2 0
20
80
150
20
6 0 0 8- 0 5 9
F23
C U T TI N G T O O L
Dc h10
Lc m m
L m m
d h6
C O DE N O.
Fi ni s hi n g E n d Mill s C A R BI D E
W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
H ar d e n e d st e el s < 48 H R C
Ir o n
Tit a ni u m
Ni c k el
Al u mi ni u m
V E A74
4 0- 1 2 0
3 0- 5 0
4 0- 8 0
2 5- 8 0
2 0- 6 0
1 0 0- 2 0 0
1 0 0- 4 5 0
V E A84
2 5- 7 0
2 0- 3 0
2 5- 6 0
1 5- 5 0
1 5- 3 5
6 0- 1 2 0
6 0- 3 0 0
V E A86
2 5- 7 0
2 0- 3 0
2 5- 6 0
1 5- 5 0
1 5- 3 5
6 0- 1 2 0
6 0- 3 0 0
St a n d ar d L e n gt h( Or d er N o. V E A 7 4- Di a) O R DE R N O.
Dc h10
U nit: m m
Lc m m
L m m
d h6
C O DE N O.
V E A 7 4- 1. 0
3
38
3
V E A 7 4- 1. 5
5
38
V E A 7 4- 2. 0
6
V E A 7 4- 2. 5
L o n g L e n gt h( Or d er N o. V E A 8 4- Di a)
U nit: m m
O R DE R N O.
Dc h10
Lc m m
L m m
d h6
C O DE N O.
6 0 0 8- 0 6 0
V E A 8 4- 3
3
20
57
3
6 0 0 8- 0 9 0
3
6 0 0 8- 0 6 1
V E A 8 4- 4
4
20
57
4
6 0 0 8- 0 9 1
38
3
6 0 0 8- 0 6 2
V E A 8 4- 5
5
25
63
5
6 0 0 8- 0 9 2
7
38
3
6 0 0 8- 0 6 3
V E A 8 4- 6
6
28
75
6
6 0 0 8- 0 9 3
V E A 7 4- 3. 0
9
38
3
6 0 0 8- 0 6 4
V E A 8 4- 8
8
30
75
8
6 0 0 8- 0 9 4
V E A 7 4- 3. 5
12
50
4
6 0 0 8- 0 6 5
V E A 8 4- 1 0
10
32
75
10
6 0 0 8- 0 9 5
V E A 7 4- 4. 0
14
50
4
6 0 0 8- 0 6 6
V E A 8 4- 1 2
12
50
100
12
6 0 0 8- 0 9 6
V E A 7 4- 4. 5
14
50
5
6 0 0 8- 0 6 7
V E A 8 4- 1 6
16
57
127
16
6 0 0 8- 0 9 8
V E A 7 4- 5. 0
16
50
5
6 0 0 8- 0 6 8
V E A 8 4- 2 0
20
57
127
20
6 0 0 8- 0 9 9
V E A 7 4- 5. 5
16
50
6
6 0 0 8- 0 6 9
E xtr a L o n g L e n gt h( Or d er N o. V E A 8 6- Di a)
U nit: m m
V E A 7 4- 6. 0
20
63
6
6 0 0 8- 0 7 0
O R DE R N O.
Dc h10
Lc m m
L m m
d h6
C O DE N O.
V E A 7 4- 7. 0
20
63
8
6 0 0 8- 0 7 1
V E A 8 6- 3
3
25
75
3
6 0 0 8- 0 8 1
V E A 7 4- 8. 0
20
63
8
6 0 0 8- 0 7 2
V E A 8 6- 4
4
28
75
4
6 0 0 8- 0 8 2
V E A 7 4- 9. 0
22
72
10
6 0 0 8- 0 7 3
V E A 8 6- 5
5
32
75
5
6 0 0 8- 0 8 3
V E A 7 4- 1 0. 0
22
72
10
6 0 0 8- 0 7 4
V E A 8 6- 6
6
38
100
6
6 0 0 8- 0 8 4
V E A 7 4- 1 1. 0
26
75
12
6 0 0 8- 0 7 5
V E A 8 6- 8
8
42
100
8
6 0 0 8- 0 8 5
V E A 7 4- 1 2. 0
26
75
12
6 0 0 8- 0 7 6
V E A 8 6- 1 0
10
45
100
10
6 0 0 8- 0 8 6
V E A 7 4- 1 4. 0
32
89
14
6 0 0 8- 0 7 7
V E A 8 6- 1 2
12
75
150
12
6 0 0 8- 0 8 7
V E A 7 4- 1 6. 0
32
89
16
6 0 0 8- 0 7 8
V E A 8 6- 1 4
14
80
150
14
6 0 0 8- 0 8 8
V E A 7 4- 1 8. 0
38
100
18
6 0 0 8- 0 7 9
V E A 8 6- 1 6
16
80
150
16
6 0 0 8- 0 8 9
V E A 7 4- 2 0. 0
38
100
20
6 0 0 8- 0 8 0
V E A 8 6- 2 0
20
80
150
20
6 0 0 8- 0 8 9 A
C U T TI N G T O O L
F24
FI NI S HI N G E N D MI L L S
O R D E R N O.
S oli d C ar bi d e E n d Mill s F or < 4 8 H R C
Mi cr o Gr ai n 1 0 % C o Gr a d e 2 Fl ut e
IS O C O DE
C A R BI D E
W or k M at eri al / V el o cit y m/ mi n O R DE R N O.
N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
Ir o n
Tit a ni u m
Ni c k el
V E122F
6 0- 2 5 0
3 0- 1 0 0
6 0- 8 0
3 0- 1 5 0
3 0- 1 8 0
4 0- 1 2 0
1 0 0- 4 5 0
V E125F
6 0- 1 8 0
2 0- 8 0
4 0- 8 0
3 0- 1 3 0
3 0- 1 2 0
4 0- 1 0 0
1 0 0- 3 0 0
V E127F
6 0- 1 8 0
2 0- 8 0
4 0- 8 0
3 0- 1 3 0
3 0- 1 2 0
4 0- 1 0 0
1 0 0- 3 0 0
St a n d ar d L e n gt h( Or d er N o. V E 1 2 2 F- Di a) O R DE R N O.
all Di a of Mill S h a n k Di a Fl ut e L e n gt h OL ve er n gt h T ol h 1 0 m m m m m m
L o n g L e n gt h( Or d er N o. V E 1 2 5 F- Di a) C O DE N O.
O R DE R N O.
Di a of Mill S h a n k Di a Fl ut e L e n gt h T ol h 1 0 m m m m
U nit: m m
O v er all L e n gt h m m
C O DE N O.
V E 1 2 2- 1. 0
4
3
50
6 0 0 7- 0 2 0
V E 1 2 5- 3
3
4
12
80
6 0 0 7- 0 5 0
V E 1 2 2- 1. 5
4
5
50
6 0 0 7- 0 2 1
V E 1 2 5- 4
4
4
15
80
6 0 0 7- 0 5 1
V E 1 2 2- 2. 0
4
6
50
6 0 0 7- 0 2 2
V E 1 2 5- 5
5
6
20
100
6 0 0 7- 0 5 2
V E 1 2 2- 2. 5
4
8
50
6 0 0 7- 0 2 3
V E 1 2 5- 6
6
6
20
100
6 0 0 7- 0 5 3
V E 1 2 2- 3. 0
6
8
50
6 0 0 7- 0 2 4
V E 1 2 5- 8
8
8
25
130
6 0 0 7- 0 5 5
V E 1 2 2- 3. 5
6
10
50
6 0 0 7- 0 2 5
V E 1 2 5- 1 0
10
10
30
160
6 0 0 7- 0 5 7
V E 1 2 2- 4. 0
6
11
50
6 0 0 7- 0 2 6
V E 1 2 5- 1 2
12
12
40
180
6 0 0 7- 0 5 9
V E 1 2 2- 4. 5
6
11
50
6 0 0 7- 0 2 7
V E 1 2 5- 1 6
16
16
50
210
6 0 0 7- 0 6 0
V E 1 2 2- 5. 0
6
13
50
6 0 0 7- 0 2 8
V E 1 2 5- 2 0
20
20
60
210
6 0 0 7- 0 6 1
V E 1 2 2- 5. 5
6
13
50
6 0 0 7- 0 2 9
V E 1 2 2- 6. 0
6
16
50
6 0 0 7- 0 3 0
E xtr a L o n g L e n gt h( Or d er N o. V E 1 2 7 F- Di a)
U nit: m m
V E 1 2 2- 7. 0
8
20
60
6 0 0 7- 0 3 1
V E 1 2 2- 8. 0
8
20
60
V E 1 2 2- 9. 0
10
22
V E 1 2 2- 1 0. 0
10
V E 1 2 2- 1 1. 0
O R DE R N O.
Di a of Mill T ol h 1 0
Shank Di a m m
Fl ut e L e n gt h m m
O v er all L e n gt h m m
C O DE N O.
6 0 0 7- 0 3 2
V E 1 2 7- 3
3
4
12
80
6 0 0 7- 0 7 0
72
6 0 0 7- 0 3 3
V E 1 2 7- 4
4
4
15
80
6 0 0 7- 0 7 1
25
72
6 0 0 7- 0 3 4
V E 1 2 7- 5
5
6
20
100
6 0 0 7- 0 7 2
12
26
75
6 0 0 7- 0 3 5
V E 1 2 7- 6
6
6
20
100
6 0 0 7- 0 7 3
V E 1 2 2- 1 2. 0
12
30
75
6 0 0 7- 0 3 6
V E 1 2 7- 8
8
8
25
130
6 0 0 7- 0 7 4
V E 1 2 2- 1 4. 0
16
32
90
6 0 0 7- 0 3 7
V E 1 2 7- 1 0
10
10
30
160
6 0 0 7- 0 7 5
V E 1 2 2- 1 6. 0
16
40
100
6 0 0 7- 0 3 8
V E 1 2 7- 1 2
12
12
40
180
6 0 0 7- 0 7 6
V E 1 2 2- 1 8. 0
20
40
100
6 0 0 7- 0 3 9
V E 1 2 7- 1 6
16
16
50
210
6 0 0 7- 0 7 7
V E 1 2 2- 2 0. 0
20
40
100
6 0 0 7- 0 4 0
V E 1 2 7- 2 0
20
20
60
210
6 0 0 7- 0 7 8
F25
C U T TI N G T O O L
S oli d C ar bi d e E n d Mill s F or < 4 8 H R C
Mi cr o Gr ai n 1 0 % C o Gr a d e 4 Fl ut e C A R BI D E
O R DE R N O.
V E 1 2 4- 1. 0 V E 1 2 4- 1. 5 V E 1 2 4- 2. 0 V E 1 2 4- 2. 5 V E 1 2 4- 3. 0 V E 1 2 4- 3. 5 V E 1 2 4- 4. 0 V E 1 2 4- 4. 5 V E 1 2 4- 5. 0 V E 1 2 4- 5. 5 V E 1 2 4- 6. 0 V E 1 2 4- 7. 0 V E 1 2 4- 8. 0 V E 1 2 4- 9. 0 V E 1 2 4- 1 0. 0 V E 1 2 4- 1 1. 0 V E 1 2 4- 1 2. 0 V E 1 2 4- 1 4. 0 V E 1 2 4- 1 6. 0 V E 1 2 4- 1 8. 0 V E 1 2 4- 2 0. 0
Di a of Mill T ol h 1 0
Shank Di a m m 4 4 4 4 6 6 6 6 6 6 6 8 8 10 10 12 12 16 16 20 20
Fl ut e L e n gt h m m 3 5 6 8 8 10 11 11 13 13 16 20 20 22 25 26 30 32 38 38 38
O v er all L e n gt h m m 50 50 50 50 50 50 50 50 50 50 50 60 60 72 72 75 75 90 100 100 100
U nit: m m
C O DE N O. 6 0 0 7- 1 0 0 6 0 0 7- 1 0 1 6 0 0 7- 1 0 2 6 0 0 7- 1 0 3 6 0 0 7- 1 0 4 6 0 0 7- 1 0 5 6 0 0 7- 1 0 6 6 0 0 7- 1 0 7 6 0 0 7- 1 0 8 6 0 0 7- 1 0 9 6 0 0 7- 1 1 0 6 0 0 7- 1 1 1 6 0 0 7- 1 1 2 6 0 0 7- 1 1 3 6 0 0 7- 1 1 4 6 0 0 7- 1 1 5 6 0 0 7- 1 1 6 6 0 0 7- 1 1 7 6 0 0 7- 1 1 8 6 0 0 7- 1 1 9 6 0 0 7- 1 2 0
W or k M at eri al / V el o cit y m/ mi n O R DE R N O.
N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
V E124F
6 0- 2 5 0 3 0- 1 0 0
6 0- 8 0
3 0- 1 5 0 3 0- 1 8 0 4 0- 1 2 0 1 0 0- 4 5 0
V E126F
6 0- 1 8 0
4 0- 8 0
3 0- 1 3 0 3 0- 1 2 0 4 0- 1 0 0 1 0 0- 3 0 0
2 0- 8 0
Ir o n
Tit a ni u m
Ni c k el
L o n g L e n gt h( Or d er N o. V E 1 2 6 F- Di a) O R DE R N O.
V E 1 2 6- 3 V E 1 2 6- 4 V E 1 2 6- 5 V E 1 2 6- 6 V E 1 2 6- 8 V E 1 2 6- 1 0 V E 1 2 6- 1 2 V E 1 2 6- 1 6 V E 1 2 6- 2 0
Di a of Mill T ol h 1 0 3 4 5 6 8 10 12 16 20
Shank Di a m m 6 6 6 6 8 10 12 16 20
Fl ut e L e n gt h m m 12 15 20 20 25 30 40 50 60
O v er all L e n gt h m m 70 70 80 80 100 100 11 0 140 160
U nit: m m
C O DE N O. 6 0 0 7- 1 3 0 6 0 0 7- 1 3 1 6 0 0 7- 1 3 2 6 0 0 7- 1 3 3 6 0 0 7- 1 3 5 6 0 0 7- 1 3 7 6 0 0 7- 1 3 9 6 0 0 7- 1 4 1 6 0 0 7- 1 4 2
Fi ni s hi n g E n d Mill s < 5 6 H R C C A R BI D E
St a n d ar d L e n gt h( Or d er N o. V E 1 6 4 X- D c) O R DE R N O. V E 1 6 4- 1. 0 V E 1 6 4- 1. 5 V E 1 6 4- 2. 0 V E 1 6 4- 2. 5 V E 1 6 4- 3. 0 V E 1 6 4- 4. 0 V E 1 6 4- 5. 0 V E 1 6 4- 6. 0 V E 1 6 4- 8. 0 V E 1 6 4- 1 0. 0 V E 1 6 4- 1 2. 0 V E 1 6 4- 1 4. 0 V E 1 6 4- 1 6. 0 V E 1 6 4- 1 8. 0 V E 1 6 4- 2 0. 0
Dc h10
Lc m m 3 5 6 8 8 11 13 16 20 25 30 32 40 40 40
L m m 50 50 50 50 50 50 50 50 60 72 75 90 100 100 100
d h6 4 4 4 4 6 6 6 6 8 10 12 16 16 20 20
U nit: m m
C O DE N O. 6 0 0 7- 3 0 0 6 0 0 7- 3 0 1 6 0 0 7- 3 0 2 6 0 0 7- 3 0 3 6 0 0 7- 3 0 4 6 0 0 7- 3 0 6 6 0 0 7- 3 0 8 6 0 0 7- 3 1 0 6 0 0 7- 3 1 2 6 0 0 7- 3 1 4 6 0 0 7- 3 1 6 6 0 0 7- 3 1 7 6 0 0 7- 3 1 8 6 0 0 7- 3 1 9 6 0 0 7- 3 2 0
W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
H ar d e n e d st e el s 4 8- 5 6 H R C
Ir o n
Tit a ni u m
Ni c k el
6 0- 3 0 0
3 0- 1 2 0
6 0- 1 2 0
4 0- 1 0 0
4 0- 1 8 0
4 0- 1 2 0
4 0- 1 2 0
L o n g L e n gt h( Or d er N o. V E 1 6 5 X- D c) O R DE R N O. V E 1 6 5- 3 V E 1 6 5- 4 V E 1 6 5- 5 V E 1 6 5- 6 V E 1 6 5- 8 V E 1 6 5- 1 0 V E 1 6 5- 1 2 V E 1 6 5- 1 6 V E 1 6 5- 2 0
Dc h10 3 4 5 6 8 10 12 16 20
Lc m m 12 15 20 20 25 30 40 50 60
L m m 70 70 80 80 100 100 11 0 140 160
d h6 6 6 6 6 8 10 12 16 20
U nit: m m
C O DE N O. 6 0 0 7- 3 3 0 6 0 0 7- 3 3 1 6 0 0 7- 3 3 2 6 0 0 7- 3 3 3 6 0 0 7- 3 3 5 6 0 0 7- 3 3 7 6 0 0 7- 3 3 9 6 0 0 7- 3 4 1 6 0 0 7- 3 4 2
C U T TI N G T O O L
F26
E N D MI L L S
St a n d ar d L e n gt h( Or d er N o. V E 1 2 4 F- Di a)
IS O C O DE
S oli d C ar bi d e E n d Mill s F or < 6 8 H R C
Ultr a Mi cr o Gr ai n 1 2 % C o Gr a d e 6 Fl ut e
IS O C O DE
C A R BI D E
W or k M at eri al / V el o cit y m/ mi n
St a n d ar d L e n gt h( Or d er N o. V E 1 6 6 X- Di a) O R DE R N O.
V E 1 6 6- 3 V E 1 6 6- 4 V E 1 6 6- 5 V E 1 6 6- 6 V E 1 6 6- 8 V E 1 6 6- 1 0 V E 1 6 6- 1 2 V E 1 6 6- 1 6 V E 1 6 6- 2 0
Di a of Mill T ol h 1 0 3 4 5 6 8 10 12 16 20
Shank Di a m m 6 6 6 6 8 10 12 16 20
Fl ut e L e n gt h m m 8 11 13 16 20 22 26 38 38
O v er all L e n gt h m m 50 50 50 50 60 72 75 100 100
U nit: m m
H ar d e n e d st e el s < 48 H R C
H ar d e n e d st e el s 4 8- 5 6 H R C
H ar d e n e d st e el s 5 6- 6 8 H R C
Ir o n
1 0 0- 2 0 0
6 0- 1 5 0
2 0- 5 0
1 2 0- 3 0 0
L o n g L e n gt h( Or d er N o. V E 1 6 7 X- Di a) Shank Di a m m 6
Fl ut e L e n gt h m m 26
O v er all L e n gt h m m 80
C O DE N O.
O R DE R N O.
6 0 0 7- 2 4 0 6 0 0 7- 2 4 1 6 0 0 7- 2 4 2 6 0 0 7- 2 4 3 6 0 0 7- 2 4 4 6 0 0 7- 2 4 5 6 0 0 7- 2 4 6 6 0 0 7- 2 4 7 6 0 0 7- 2 4 8
V E 1 6 7- 6
6 0 0 7- 2 5 0
V E 1 6 7- 8
8
8
36
100
6 0 0 7- 2 5 1
V E 1 6 7- 1 0
10
10
46
100
6 0 0 7- 2 5 2
V E 1 6 7- 1 2
12
12
56
11 0
6 0 0 7- 2 5 3
V E 1 6 7- 1 6
16
16
66
140
6 0 0 7- 2 5 4
V E 1 6 7- 2 0
20
20
76
160
6 0 0 7- 2 5 5
S oli d C ar bi d e E n d Mill s F or < 4 8 H R C
Ultr a Mi cr o Gr ai n 1 2 % C o Gr a d e 4 Fl ut e
St a n d ar d L e n gt h ( Or d er N o. V E C 4 0- Di a = V E 1 4 4- Di a) O R DE R N O.
Dc h10
Lc m m
L m m
d h6
V E C 4 0- 1. 0
1
3
50
4
6 0 0 8- 1 8 0
5
50
4
6 0 0 8- 1 8 1
6
50
4
6 0 0 8- 1 8 2
8
50
4
6 0 0 8- 1 8 3
V E C 4 0- 1. 5 V E C 4 0- 2. 0
2
V E C 4 0- 2. 5
R E F. N O.
U nit: m m
Di a of Mill T ol h 1 0 6
C O DE N O.
V E C 4 0- 3. 0 A
8
50
4
6 0 0 8- 1 8 4
V E C 4 0- 4. 0 A
11
50
4
6 0 0 8- 1 8 5
C O DE N O.
IS O C O DE
W or k M at eri al / V el o cit y m/ mi n C ar b o n St e el s
L o w ~ all o y e d St e el ( ~ 2 4 H R C)
Hi ~ all o y e d St e el ( ~ 3 0 H R C)
H ar d e n e d st e el s 3 0- 3 8 H R C
H ar d e n e d St e el 3 8- 4 8 H R C
St ai nl e s s St e el
C a st Ir o n
120
80
65
60
65
120
120
V E C 4 0- 3. 0
3
8
50
6
6 0 0 8- 1 8 6
V E C 4 0- 4. 0
4
11
50
6
6 0 0 8- 1 8 7
V E C 4 0- 5. 0
5
13
50
6
6 0 0 8- 1 8 8
O R DE R N O.
Dc h10
Lc m m
L m m
d h6
R E F. N O.
C O DE N O.
V E C 4 0- 6. 0
6
16
50
6
6 0 0 8- 1 8 9
V E D 4 0- 3
3
15
55
6
V E 1 4 4- 5 X- 3
6 0 0 8- 2 0 0
V E C 4 0- 7. 0
7
20
60
8
6 0 0 8- 1 9 0
V E D 4 0- 4
4
20
60
6
V E 1 4 4- 5 X- 4
6 0 0 8- 2 0 1
V E C 4 0- 8. 0
8
20
60
8
6 0 0 8- 1 9 1
V E D 4 0- 5
5
25
65
6
V E 1 4 4- 5 X- 5
6 0 0 8- 2 0 2
V E C 4 0- 9. 0
9
25
72
10
6 0 0 8- 1 9 2
V E D 4 0- 6
6
30
75
6
V E 1 4 4- 5 X- 6
6 0 0 8- 2 0 3
V E C 4 0- 1 0. 0
10
25
72
10
6 0 0 8- 1 9 3
V E D 4 0- 8
8
40
90
8
V E 1 4 4- 5 X- 8
6 0 0 8- 2 0 4
V E C 4 0- 1 2. 0
12
30
75
12
6 0 0 8- 1 9 4
V E D 4 0- 1 0
10
50
100
10
V E 1 4 4- 5 X- 1 0 6 0 0 8- 2 0 5
V E C 4 0- 1 4. 0
14
40
100
16
6 0 0 8- 1 9 5
V E D 4 0- 1 2
12
60
11 0
12
V E 1 4 4- 5 X- 1 2 6 0 0 8- 2 0 6
V E C 4 0- 1 6. 0
16
45
100
16
6 0 0 8- 1 9 6
V E D 4 0- 1 6
16
80
160
16
V E 1 4 4- 5 X- 1 6 6 0 0 8- 2 0 8
V E C 4 0- 2 0. 0
20
50
11 0
20
6 0 0 8- 1 9 7
V E D 4 0- 2 0
20
100
200
20
V E 1 4 4- 5 X- 2 0 6 0 0 8- 2 0 9
F27
C U T TI N G T O O L
L o n g L e n gt h ( Or d er N o. V E D 4 0- Di a = V E 1 4 4- 5 X- Di a)
R o u g hi n g E n d Mill s C ar bi d e
W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
H ar d e n e d st e el s 4 8- 5 6 H R C
Ir o n
Tit a ni u m
Ni c k el
1 0 0- 1 8 0
4 0- 8 0
8 0- 1 4 0
6 0- 1 0 0
1 0 0- 1 8 0
2 0- 5 0
3 0- 5 0
St a n d ar d L e n gt h( Or d er N o. V F F 0 8- Di a) O R D E R N O. V F F 0 8- 6 V F F 0 8- 8 V F F 0 8- 1 0 V F F 0 8- 1 2 V F F 0 8- 1 4 V F F 0 8- 1 6 V F F 0 8- 1 8 V F F 0 8- 2 0
Dc h10 6 8 10 12 14 16 18 20
Lc m m 13 19 22 26 26 32 32 38
L m m 57 63 72 83 83 92 92 104
d h5 6 8 10 12 14 16 18 20
U nit: m m
C O D E N O. 6 0 0 8- 2 4 0 6 0 0 8- 2 4 1 6 0 0 8- 2 4 2 6 0 0 8- 2 4 3 6 0 0 8- 2 4 4 6 0 0 8- 2 4 5 6 0 0 8- 2 4 6 6 0 0 8- 2 4 7
V F F 0 8- 6, V F F 0 8- 8 V F F 0 9- 6, V F F 0 9- 8
L o n g L e n gt h( Or d er N o. V F F 0 9- Di a)
U nit: m m
O R D E R N O.
Dc h10
Lc m m
L m m
d h5
C O D E N O.
V F F 0 9- 6
6
19
63
6
6 0 0 8- 2 6 0
V F F 0 9- 8
8
28
72
8
6 0 0 8- 2 6 1
V F F 0 9- 1 0
10
34
84
10
6 0 0 8- 2 6 2
V F F 0 9- 1 2
12
40
97
12
6 0 0 8- 2 6 3
V F F 0 9- 1 6
16
48
108
16
6 0 0 8- 2 6 4
V F F 0 9- 2 0
20
56
122
20
6 0 0 8- 2 6 5
B all N o s e E n d Mill s
E N D MI L L S
C A R BI D E
W or k M at eri al / V el o cit y m/ mi n O R D E R N O. V B B12 V B B80
N o n all o y e d st e el s All o y e d St e el s
H ar d e n e d st e el s < 4 8 H R C
4 0- 1 2 0 2 5- 7 0
St a n d ar d L e n gt h( Or d er N o. V B B 1 2- Di a) O R DE R N O. V B B 1 2- 0. 3 V B B 1 2- 0. 5 V B B 1 2- 0. 8 V B B 1 2- 1. 0 V B B 1 2- 1. 5 V B B 1 2- 2. 0 V B B 1 2- 2. 5 V B B 1 2- 3. 0 V B B 1 2- 3. 5 V B B 1 2- 4. 0 V B B 1 2- 4. 5 V B B 1 2- 5. 0 V B B 1 2- 5. 5 V B B 1 2- 6. 0 V B B 1 2- 7. 0 V B B 1 2- 8. 0 V B B 1 2- 9. 0 V B B 1 2- 1 0. 0 V B B 1 2- 1 2. 0 V B B 1 2- 1 4. 0 V B B 1 2- 1 6. 0
Dc h10
R ± 0. 0 1
Lc m m
L m m 38 38 38 38 38 38 38 38 50 50 50 50 50 63 63 63 72 72 75 89 89
3 0- 5 0 2 0- 3 0
U nit: m m
d h6 3 3 3 3 3 3 3 3 4 4 5 5 6 6 8 8 10 10 12 14 16
C O DE N O. 6 0 0 8- 1 0 0 6 0 0 8- 1 0 2 6 0 0 8- 1 0 4 6 0 0 8- 1 0 7 6 0 0 8- 1 0 8 6 0 0 8- 1 0 9 6 0 0 8- 1 1 0 6 0 0 8- 1 1 1 6 0 0 8- 1 1 2 6 0 0 8- 1 1 3 6 0 0 8- 1 1 4 6 0 0 8- 1 1 5 6 0 0 8- 1 1 6 6 0 0 8- 1 1 7 6 0 0 8- 1 1 8 6 0 0 8- 1 1 9 6 0 0 8- 1 2 0 6 0 0 8- 1 2 1 6 0 0 8- 1 2 3 6 0 0 8- 1 2 4 6 0 0 8- 1 2 5
Ir o n
4 0- 8 0 2 5- 6 0
Al u mi ni u m
6 0- 1 2 0 6 0- 1 2 0
L o n g L e n gt h( Or d er N o. V B B 8 0- Di a) O R DE R N O. V B B 8 0- 3
Dc h10 3
V B B 8 0- 4
R ± 0. 0 1
Pl a sti c s
6 0- 3 0 0 6 0- 3 0 0
8 0- 1 2 0 8 0- 1 2 0 U nit: m m
Lc m m 20
L m m 57
d h6 3
C O DE N O. 6 0 0 8- 1 4 0
4
20
57
4
6 0 0 8- 1 4 1
V B B 8 0- 6
6
28
75
6
6 0 0 8- 1 4 3
V B B 8 0- 8
8
30
75
8
6 0 0 8- 1 4 4
V B B 8 0- 1 0
10
32
75
10
6 0 0 8- 1 4 5
V B B 8 0- 1 2
12
50
100
12
6 0 0 8- 1 4 6
E xtr a L o n g L e n gt h( Or d er N o. V B B 8 2- Di a) O R DE R N O. V B B 8 2- 3 V B B 8 2- 4 V B B 8 2- 5 V B B 8 2- 6 V B B 8 2- 8 V B B 8 2- 1 0 V B B 8 2- 1 2 V B B 8 2- 1 4 V B B 8 2- 1 6 V B B 8 2- 2 0
Dc h10 3 4 5 6 8 10 12 14 16 20
R ± 0. 0 1
Lc m m 25 28 32 38 42 45 75 80 80 80
L m m 75 75 75 100 100 100 150 150 150 150
d h6 3 4 5 6 8 10 12 14 16 20
U nit: m m
C O DE N O. 6 0 0 8- 1 3 0 6 0 0 8- 1 3 1 6 0 0 8- 1 3 2 6 0 0 8- 1 3 3 6 0 0 8- 1 3 4 6 0 0 8- 1 3 5 6 0 0 8- 1 3 6 6 0 0 8- 1 3 7 6 0 0 8- 1 3 8 6 0 0 8- 1 3 9
C U T TI N G T O O L
F28
S oli d C ar bi d e E n d Mill s F or < 4 8 H R C
Mi cr o Gr ai n 1 0 % C o Gr a d e 2 Fl ut e
IS O C O DE
C A R BI D E
V B242F
W or k M at eri al / V el o cit y m/ mi n O R DE R N O.
N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
Ir o n
Tit a ni u m
Ni c k el
V B222F
6 0- 2 5 0
3 0- 1 0 0
6 0- 8 0
3 0- 1 5 0
3 0- 1 8 0
4 0- 1 2 0
1 0 0- 4 5 0
V B232F
6 0- 1 8 0
2 0- 8 0
4 0- 8 0
3 0- 1 3 0
3 0- 1 2 0
4 0- 1 0 0
1 0 0- 3 0 0
V B242F
6 0- 1 8 0
2 0- 8 0
4 0- 8 0
3 0- 1 3 0
3 0- 1 2 0
4 0- 1 0 0
1 0 0- 3 0 0
St a n d ar d L e n gt h( Or d er N o. V B 2 2 2 F- Di a) O R DE R N O.
Di a of Mill T ol h 1 0
S h a n k Fl ut e L e n gt h Di a m m m m
U nit: m m
L o n g L e n gt h( Or d er N o. V B 2 3 2 F- Di a)
O v er all L e n gt h m m
C O DE N O.
O R DE R N O.
Di a of Mill T ol h 1 0
Shank Di a m m
U nit: m m
Fl ut e L e n gt h m m
O v er all L e n gt h m m
C O DE N O.
V B 2 2 2- 0. 3
4
50
6 0 0 7- 1 7 5
V B 2 3 2- 3
6
6
70
6 0 0 7- 2 1 0
V B 2 2 2- 0. 4
4
50
6 0 0 7- 1 7 6
V B 2 3 2- 4
6
8
70
6 0 0 7- 2 1 1
V B 2 2 2- 0. 5
4
50
6 0 0 7- 1 7 7
V B 2 3 2- 5
6
10
80
6 0 0 7- 2 1 2
V B 2 2 2- 0. 6
4
50
6 0 0 7- 1 7 8
V B 2 3 2- 6
6
12
80
6 0 0 7- 2 1 3
V B 2 2 2- 0. 8
4
50
6 0 0 7- 1 7 9
V B 2 3 2- 8
8
14
100
6 0 0 7- 2 1 5
V B 2 2 2- 1
4
2
50
6 0 0 7- 1 8 0
V B 2 3 2- 1 0
10
18
100
6 0 0 7- 2 1 7
V B 2 2 2- 1. 5
4
3
50
6 0 0 7- 1 8 1
V B 2 3 2- 1 2
12
22
11 0
6 0 0 7- 2 1 9
V B 2 2 2- 2
4
4
50
6 0 0 7- 1 8 2
V B 2 3 2- 1 6
16
30
140
6 0 0 7- 2 2 1
V B 2 2 2- 2. 5
4
5
50
6 0 0 7- 1 8 3
V B 2 3 2- 2 0
20
38
160
6 0 0 7- 2 2 2
V B 2 2 2- 3
6
6
50
6 0 0 7- 1 8 4
V B 2 2 2- 4
6
8
50
6 0 0 7- 1 8 6
E xtr a L o n g L e n gt h( Or d er N o. V B 2 4 2 F- Di a)
U nit: m m
1
Fl ut e L e n gt h m m
V B 2 4 2- 3
Shank Di a m m 6
V B 2 4 2- 4
O R DE R N O.
Di a of Mill T ol h 1 0
6
O v er all L e n gt h m m 80
6 0 0 7- 2 3 0
6
8
80
6 0 0 7- 2 3 1
C O DE N O.
V B 2 2 2- 5
6
10
50
6 0 0 7- 1 8 8
V B 2 2 2- 6
6
12
50
6 0 0 7- 1 9 0
V B 2 2 2- 7
8
14
60
6 0 0 7- 1 9 1
V B 2 2 2- 8
8
14
60
6 0 0 7- 1 9 2
V B 2 4 2- 5
6
10
100
6 0 0 7- 2 3 2
V B 2 2 2- 9
10
18
72
6 0 0 7- 1 9 3
V B 2 4 2- 6
6
12
100
6 0 0 7- 2 3 3
V B 2 2 2- 1 0
10
18
72
6 0 0 7- 1 9 4
V B 2 4 2- 8
8
14
130
6 0 0 7- 2 3 4
V B 2 2 2- 1 2
12
22
75
6 0 0 7- 1 9 6
V B 2 4 2- 1 0
10
18
160
6 0 0 7- 2 3 5
V B 2 2 2- 1 4
16
26
90
6 0 0 7- 1 9 7
V B 2 4 2- 1 2
12
22
180
6 0 0 7- 2 3 6
V B 2 2 2- 1 6
16
30
100
6 0 0 7- 1 9 8
V B 2 4 2- 1 6
16
30
210
6 0 0 7- 2 3 7
V B 2 2 2- 2 0
20
38
100
6 0 0 7- 2 0 0
V B 2 4 2- 2 0
20
38
210
6 0 0 7- 2 3 8
F29
C U T TI N G T O O L
B all N o s e E n d Mill s < 5 6 H R C C A R BI D E
O R DE R N O. V B 2 6 2- 0. 3 V B 2 6 2- 0. 4 V B 2 6 2- 0. 5 V B 2 6 2- 0. 6 V B 2 6 2- 0. 8 V B 2 6 2- 1. 0 V B 2 6 2- 1. 5 V B 2 6 2- 2. 0 V B 2 6 2- 2. 5 V B 2 6 2- 3. 0 V B 2 6 2- 4. 0 V B 2 6 2- 5. 0 V B 2 6 2- 6. 0 V B 2 6 2- 8. 0 V B 2 6 2- 1 0. 0 V B 2 6 2- 1 2. 0 V B 2 6 2- 1 4. 0 V B 2 6 2- 1 6. 0 V B 2 6 2- 2 0. 0
Dc h10
R ± 0. 0 1
L C m m
1
2 3 4 5 6 8 10 12 14 18 22 26 30 38
L m m 50 50 50 50 50 50 50 50 50 50 50 50 50 60 72 75 90 100 100
d h6 4 4 4 4 4 4 4 4 4 6 6 6 6 8 10 12 16 16 20
U nit: m m
C O DE N O. 6 0 0 7- 3 4 5 6 0 0 7- 3 4 6 6 0 0 7- 3 4 7 6 0 0 7- 3 4 8 6 0 0 7- 3 4 9 6 0 0 7- 3 5 0 6 0 0 7- 3 5 1 6 0 0 7- 3 5 2 6 0 0 7- 3 5 3 6 0 0 7- 3 5 4 6 0 0 7- 3 5 5 6 0 0 7- 3 5 6 6 0 0 7- 3 5 7 6 0 0 7- 3 5 9 6 0 0 7- 3 6 1 6 0 0 7- 3 6 2 6 0 0 7- 3 6 3 6 0 0 7- 3 6 4 6 0 0 7- 3 6 5
B all N o s e E n d Mill s
W or k M at eri al / V el o cit y m/ mi n O R DE R N O.
N o n all o y e d st e el s All o y e d St e el s
H ar d e n e d st e el s < 4 8 H R C
H ar d e n e d st e el s 4 8- 5 6 H R C
Ir o n
Tit a ni u m
Ni c k el
V B262 X
8 0- 3 5 0
6 0- 2 0 0
4 0- 1 5 0
5 0- 2 5 0
3 0- 1 8 0
4 0- 1 2 0
V B263 X
8 0- 2 5 0
6 0- 1 6 0
4 0- 1 2 0
5 0- 2 0 0
3 0- 1 5 0
4 0- 1 0 0
L o n g L e n gt h( Or d er N o. V B 2 6 3 X- D c) O R DE R N O.
Dc h10
V B 2 6 3- 3 V B 2 6 3- 4 V B 2 6 3- 5 V B 2 6 3- 6 V B 2 6 3- 8 V B 2 6 3- 1 0 V B 2 6 3- 1 2 V B 2 6 3- 1 6 V B 2 6 3- 2 0
3 4 5 6 8 10 12 16 20
R ± 0. 0 1
U nit: m m
L C m m
L m m
d h6
C O DE N O.
8 8 10 12 14 18 22 30 38
70 70 80 80 100 100 11 0 140 160
6 6 6 6 8 10 12 16 20
6 0 0 7- 3 7 4 6 0 0 7- 3 7 5 6 0 0 7- 3 7 6 6 0 0 7- 3 7 7 6 0 0 7- 3 7 9 6 0 0 7- 3 8 1 6 0 0 7- 3 8 2 6 0 0 7- 3 8 4 6 0 0 7- 3 8 5
C ar bi d e
W or k M at eri al / V el o cit y m/ mi n
L o n g L e n gt h( Or d er N o. V B B 6 1- Di a) O R DE R N O. V B B 6 1- 1. 0 V B B 6 1- 1. 5 V B B 6 1- 2. 0 V B B 6 1- 3. 0 V B B 6 1- 4. 0 V B B 6 1- 5. 0 V B B 6 1- 6. 0 V B B 6 1- 8. 0 V B B 6 1- 1 0. 0 V B B 6 1- 1 2. 0
Dc h10
R ± 0. 0 1
H ar d e n e d st e el s < 48 H R C
H ar d e n e d st e el s 4 8- 5 6 H R C
H ar d e n e d st e el s 5 6- 6 8 H R C
Ir o n
1 2 0- 3 5 0
1 0 0- 2 1 0
3 0- 1 2 0
8 0- 3 5 0
U nit: m m
Lc m m
L m m 50 50 60 70 70 80 80 100 100 11 0
d h6 4 4 6 6 6 6 6 8 10 12
L1 m m 2 3 4 6 8 10 12 16 20 24
C O DE N O. 6 0 0 8- 2 2 0 6 0 0 8- 2 2 1 6 0 0 8- 2 2 2 6 0 0 8- 2 2 3 6 0 0 8- 2 2 4 6 0 0 8- 2 2 5 6 0 0 8- 2 2 6 6 0 0 8- 2 2 7 6 0 0 8- 2 2 8 6 0 0 8- 2 2 9
C U T TI N G T O O L
F30
E N D MI L L S
St a n d ar d L e n gt h( Or d er N o. V B 2 6 2 X- D c)
E n d Mill s F or C h a mf eri n g
ST E EL < 48 H R C
2 FL UTE
W or k M at eri al / V el o cit y m/ mi n O R DE R N O.
C ar b o n St e el s
V B242F
L o w- all o y e d St e el
Hi- all o y e d St e el
H ar d e n e d St e el
H ar d e n e d St e el
4 8- 9 0
4 8- 9 0
4 0- 7 5
4 0- 7 5
4 8- 9 0
Al u mi ni u m
5 0- 1 2 0
St a n d ar d L e n gt h( Or d er N o. V E 1 0 7 X- Di a)
U nit: m m
O R D E R N O.
Dc h10
Lc m m
V E 1 0 7 X- 1. 0
1
V E 1 0 7 X- 1. 5 V E 1 0 7 X- 2. 0
2
V E 1 0 7 X- 2. 5
L m m
d h6
C O DE N O.
2
38
3
6 0 0 7- 6 0 1
3
38
3
6 0 0 7- 6 0 2
4
38
3
6 0 0 7- 6 0 3
5
38
3
6 0 0 7- 6 0 4
V E 1 0 7 X- 3. 0
3
6
50
3
6 0 0 7- 6 0 5
V E 1 0 7 X- 4. 0
4
8
50
4
6 0 0 7- 6 0 6
V E 1 0 7 X- 5. 0
5
12
50
6
6 0 0 7- 6 0 7
V E 1 0 7 X- 6. 0
6
12
50
6
6 0 0 7- 6 0 8
V E 1 0 7 X- 8. 0
8
16
60
8
6 0 0 7- 6 0 9
V E 1 0 7 X- 1 0
10
20
72
10
6 0 0 7- 6 1 0
V E 1 0 7 X- 1 2
12
24
75
12
6 0 0 7- 6 1 1
V E 1 0 7 X- 1 6
16
32
100
16
6 0 0 7- 6 1 2
V E 1 0 7 X- 2 0
20
40
100
20
6 0 0 7- 6 1 3
E N D Mill s f or St ai nl e s s
4 FL UTE
W or k M at eri al O R D E R N O.
St ai nl e s s St e el
Tit a ni u m
Ni c k el
H e at-r e si s St e el
VFF51 S X
St a n d ar d L e n gt h( Or d er N o. V F F 5 1 S X- Di a)
F31
U nit: m m
O R D E R N O.
Dc h10
Lc m m
L m m
d h6
C O D E N O.
V F F 5 1 S X- 3. 0 V F F 5 1 S X- 4. 0 V F F 5 1 S X- 5. 0 V F F 5 1 S X- 6. 0 V F F 5 1 S X- 8. 0 V F F 5 1 S X- 1 0 V F F 5 1 S X- 1 2 V F F 5 1 S X- 1 6 V F F 5 1 S X- 2 0
3 4 5 6 8 10 12 16 20
8 11 13 13 19 22 26 32 38
57 57 57 57 63 72 83 92 104
6 6 6 6 8 10 12 16 20
6 0 0 7- 6 3 1 6 0 0 7- 6 3 2 6 0 0 7- 6 3 3 6 0 0 7- 6 3 4 6 0 0 7- 6 3 5 6 0 0 7- 6 3 6 6 0 0 7- 6 3 7 6 0 0 7- 6 3 8 6 0 0 7- 6 3 9
C U T TI N G T O O L
E N D Mill s f or St ai nl e s s
4 FL UTE
W or k M at eri al O R D E R N O.
St ai nl e s s St e el
Tit a ni u m
Ni c k el
H e at-r e si s St e el
VFF52 S X
U nit: m m
St a n d ar d L e n gt h( Or d er N o. V F F 5 2 S X- Di a)
O R DE R N O.
Dc h10
R Lc ± 0. 0 1 m m
L m m
d h6
C O DE N O.
O R DE R N O.
Dc h10
V F F 5 2 S X- 3. 0* R 0. 2
3
8
57
6
6 0 0 7- 6 5 1
V F F 5 2 S X- 1 0* R 0. 5
V F F 5 2 S X- 3. 0* R 0. 5
3
8
57
6
6 0 0 7- 6 5 2
V F F 5 2 S X- 4. 0* R 0. 2
4
11
57
6
V F F 5 2 S X- 4. 0* R 0. 5
4
11
57
V F F 5 2 S X- 5. 0* R 0. 2
5
13
V F F 5 2 S X- 5. 0* R 0. 5
5
V F F 5 2 S X- 6. 0* R 0. 2
R ± 0. 0 1
U nit: m m
E N D MI L L S
St a n d ar d L e n gt h( Or d er N o. V F F 5 2 S X- Di a)
Lc m m
L m m
d h6
C O DE N O.
10
22
72
10
6 0 0 7- 6 6 6
V F F 5 2 S X- 1 0* R 1. 0
10
22
72
10
6 0 0 7- 6 6 7
6 0 0 7- 6 5 3
V F F 5 2 S X- 1 0* R 2. 0
10
22
72
10
6 0 0 7- 6 6 8
6
6 0 0 7- 6 5 4
V F F 5 2 S X- 1 2* R 0. 2
12
26
83
12
6 0 0 7- 6 6 9
57
6
6 0 0 7- 6 5 5
V F F 5 2 S X- 1 2* R 0. 5
12
26
83
12
6 0 0 7- 6 7 0
13
57
6
6 0 0 7- 6 5 6
V F F 5 2 S X- 1 2* R 1. 0
12
26
83
12
6 0 0 7- 6 7 1
6
13
57
6
6 0 0 7- 6 5 7
V F F 5 2 S X- 1 2* R 2. 0
12
26
83
12
6 0 0 7- 6 7 2
V F F 5 2 S X- 6. 0* R 0. 5
6
13
57
6
6 0 0 7- 6 5 8
V F F 5 2 S X- 1 6* R 0. 2
16
32
92
16
6 0 0 7- 6 7 3
V F F 5 2 S X- 6. 0* R 1. 0
6
13
57
6
6 0 0 7- 6 5 9
V F F 5 2 S X- 1 6* R 0. 5
16
32
92
16
6 0 0 7- 6 7 4
V F F 5 2 S X- 6. 0* R 2. 0
6
13
57
6
6 0 0 7- 6 6 0
V F F 5 2 S X- 1 6* R 1. 0
16
32
92
16
6 0 0 7- 6 7 5
V F F 5 2 S X- 8. 0* R 0. 2
8
19
63
8
6 0 0 7- 6 6 1
V F F 5 2 S X- 1 6* R 2. 0
16
32
92
16
6 0 0 7- 6 7 6
V F F 5 2 S X- 8. 0* R 0. 5
8
19
63
8
6 0 0 7- 6 6 2
V F F 5 2 S X- 2 0* R 0. 2
20
38
104
20
6 0 0 7- 6 7 7
V F F 5 2 S X- 8. 0* R 1. 0
8
19
63
8
6 0 0 7- 6 6 3
V F F 5 2 S X- 2 0* R 0. 5
20
38
104
20
6 0 0 7- 6 7 8
V F F 5 2 S X- 8. 0* R 2. 0
8
19
63
8
6 0 0 7- 6 6 4
V F F 5 2 S X- 2 0* R 1. 0
20
38
104
20
6 0 0 7- 6 7 9
V F F 5 2 S X- 1 0* R 0. 2
10
22
72
10
6 0 0 7- 6 6 5
V F F 5 2 S X- 2 0* R 2. 0
20
38
104
20
6 0 0 7- 6 8 0
C U T TI N G T O O L
F32
E n d Mill s F or Al u mi ni u m C A R BI D E
St a n d ar d L e n gt h( Or d er N o. V E A 9 2- Di a)
W or k M at eri al / V el o cit y m/ mi n O R DE R N O.
Al u mi ni u m
V E A92
1 0 0- 1 2 0 0
U nit: m m
O R DE R N O.
Dc h10
Lc m m
L m m
d h6
C O DE N O.
V E A 9 2- 3
3
9
38
3
6 0 0 8- 1 6 0
V E A 9 2- 4
4
14
50
4
6 0 0 8- 1 6 1
V E A 9 2- 5
5
16
50
5
6 0 0 8- 1 6 2
V E A 9 2- 6
6
20
63
6
6 0 0 8- 1 6 3
V E A 9 2- 8
8
22
63
8
6 0 0 8- 1 6 4
V E A 9 2- 1 0
10
30
72
10
6 0 0 8- 1 6 5
V E A 9 2- 1 2
12
30
75
12
6 0 0 8- 1 6 6
V E A 9 2- 1 6
16
40
100
16
6 0 0 8- 1 6 7
V E A 9 2- 2 0
20
45
100
20
6 0 0 8- 1 6 8
E n d Mill s F or Al u mi ni u m C A R BI D E
St a n d ar d L e n gt h( Or d er N o. V E A 9 3- Di a)
W or k M at eri al / V el o cit y m/ mi n
F33
O R DE R N O.
Al u mi ni u m
V E A93
200
C U T TI N G T O O L
U nit: m m
O R DE R N O.
Dc h10
Lc m m
L m m
d h6
C O DE N O.
V E A 9 3- 3
3
9
50
6
6 0 0 8- 1 7 1
V E A 9 3- 4
4
14
50
6
6 0 0 8- 1 7 2
V E A 9 3- 5
5
16
50
6
6 0 0 8- 1 7 3
V E A 9 3- 6
6
20
63
6
6 0 0 8- 1 7 4
V E A 9 3- 8
8
22
63
8
6 0 0 8- 1 7 5
V E A 9 3- 1 0
10
30
72
10
6 0 0 8- 1 7 6
V E A 9 3- 1 2
12
30
75
12
6 0 0 8- 1 7 7
V E A 9 3- 1 6
16
40
100
16
6 0 0 8- 1 7 8
V E A 9 3- 2 0
20
45
100
20
6 0 0 8- 1 7 9
U ni v er s al E n d Mill s
Pr of e s si o n al F or Al u mi ni u m, C o p p er, St e el s C A R BI D E
W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
H ar d e n e d st e el s < 48 H R C
Al u mi ni u m
Pl a sti c s
V E133
4 0- 1 2 0
3 0- 5 0
1 0 0- 2 0 0
1 0 0- 4 5 0
1 5 0- 2 0 0
V E135
2 5- 7 0
2 0- 3 0
6 0- 1 2 0
6 0- 3 0 0
8 0- 1 2 0
St a n d ar d L e n gt h( Or d er N o. V E 1 3 3- Di a) O R DE R N O.
Dc h10
U nit: m m
L o n g L e n gt h( Or d er N o. V E 1 3 5- Di a)
U nit: m m
Lc m m
L m m
d h6
C O DE N O.
O R DE R N O.
Dc h10
Lc m m
L m m
d h6
C O DE N O.
V E 1 3 3- 1. 0
3
38
3
6 0 0 7- 4 6 0
V E 1 3 5- 3
3
20
57
3
6 0 0 7- 4 8 0
V E 1 3 3- 1. 5
5
38
3
6 0 0 7- 4 6 1
V E 1 3 5- 4
4
20
57
4
6 0 0 7- 4 8 1
V E 1 3 5- 5
5
25
63
5
6 0 0 7- 4 8 2
V E 1 3 3- 2. 0
6
38
3
6 0 0 7- 4 6 2
V E 1 3 5- 6
6
28
75
6
6 0 0 7- 4 8 3
V E 1 3 3- 2. 5
7
38
3
6 0 0 7- 4 6 3
V E 1 3 5- 7
7
30
75
8
6 0 0 7- 4 8 4
V E 1 3 5- 8
8
30
75
8
6 0 0 7- 4 8 5
V E 1 3 3- 3. 0
9
38
3
6 0 0 7- 4 6 4
V E 1 3 5- 9
9
32
75
10
6 0 0 7- 4 8 6
V E 1 3 3- 4. 0
14
50
4
6 0 0 7- 4 6 5
V E 1 3 5- 1 0
10
32
75
10
6 0 0 7- 4 8 7
V E 1 3 3- 5. 0
16
50
5
6 0 0 7- 4 6 6
V E 1 3 5- 1 2
12
50
100
12
6 0 0 7- 4 8 8
V E 1 3 5- 1 4
14
57
127
14
6 0 0 7- 4 8 9
V E 1 3 5- 1 6
16
57
127
16
6 0 0 7- 4 9 0
V E 1 3 5- 2 0
20
57
127
20
6 0 0 7- 4 9 1
V E 1 3 3- 6. 0
20
63
6
6 0 0 7- 4 6 7
V E 1 3 3- 7. 0
20
63
8
6 0 0 7- 4 6 8
V E 1 3 3- 8. 0
20
63
8
6 0 0 7- 4 6 9
V E 1 3 3- 9. 0
22
72
10
6 0 0 7- 4 7 0
V E 1 3 3- 1 0. 0
22
72
10
6 0 0 7- 4 7 1
V E 1 3 3- 1 2. 0
26
75
12
6 0 0 7- 4 7 2
V E 1 3 3- 1 4. 0
30
89
14
V E 1 3 3- 1 6. 0
32
89
V E 1 3 3- 1 8. 0
38
V E 1 3 3- 2 0. 0
38
L o n g L e n gt h( Or d er N o. V E 1 3 6- Di a)
U nit: m m
O R DE R N O.
Dc h10
Lc m m
L m m
d h6
C O DE N O.
V E 1 3 6- 3
3
25
75
3
6 0 0 7- 4 9 2
V E 1 3 6- 4
4
28
75
4
6 0 0 7- 4 9 3
V E 1 3 6- 5
5
32
75
5
6 0 0 7- 4 9 4
V E 1 3 6- 6
6
38
100
6
6 0 0 7- 4 9 5
6 0 0 7- 4 7 3
V E 1 3 6- 8
8
42
100
8
6 0 0 7- 4 9 6
16
6 0 0 7- 4 7 4
V E 1 3 6- 1 0
10
45
100
10
6 0 0 7- 4 9 7
100
18
6 0 0 7- 4 7 5
V E 1 3 6- 1 2
12
75
150
12
6 0 0 7- 4 9 8
V E 1 3 6- 1 6
16
80
150
16
6 0 0 7- 4 9 9
100
20
6 0 0 7- 4 7 6
V E 1 3 6- 2 0
20
80
150
20
6 0 0 7- 5 0 0
C U T TI N G T O O L
F34
U NI V E R S A L E N D MI L L S
O R DE R N O.
B urr E n d C ut R o ut er s
C o m p o sit e M at eri al s
W or k M at eri al / V el o cit y m/ mi n O R D E R N O.
B urr E n d C ut O R D E R N O. V E 1 9 1- 6. 0 V E 1 9 1- 8. 0 V E 1 9 1- 1 0 V E 1 9 1- 1 2
V E191
Dc h10 6 8 10 12
Lc
m m 18 24 30 36
L
m m 70 75 80 80
188
d h6 6 8 10 12
U nit: m m
Z T 8 10 12 14
C O D E N O. 6 0 0 7- 7 0 1 6 0 0 7- 7 0 2 6 0 0 7- 7 0 3 6 0 0 7- 7 0 4
W or k M at eri al / V el o cit y m/ mi n O R D E R N O. V E197
B urr E n d C ut O R D E R N O. V E 1 9 7- 3. 0 V E 1 9 7- 4. 0 V E 1 9 7- 6. 0 V E 1 9 7- 8. 0 V E 1 9 7- 1 0 V E 1 9 7- 1 2
188 U nit: m m
Dc h10 3 4 6 8 10 12
Lc
m m 12 15 18 22 30 30
L
m m 38 50 50 60 72 75
d h6 3 4 6 8 10 12
E n d Mill s E n d C ut R o ut er s
C O D E N O. 6 0 0 7- 7 2 1 6 0 0 7- 7 2 2 6 0 0 7- 7 2 3 6 0 0 7- 7 2 4 6 0 0 7- 7 2 5 6 0 0 7- 7 2 6
C o m p o sit e M at eri al s
W or k M at eri al / V el o cit y m/ mi n O R D E R N O. V E198
E n d Mill s E n d C ut
188 U nit: m m
O R D E R N O.
Dc h10
V E 1 9 8- 3. 0 V E 1 9 8- 4. 0 V E 1 9 8- 6. 0 V E 1 9 8- 8. 0 V E 1 9 8- 1 0 V E 1 9 8- 1 2
3 4 6 8 10 12
Lc
m m
L
12 15 18 22 30 30
Drill P oi nt R o ut er s
m m
d h6
C O D E N O.
38 50 50 60 72 75
3 4 6 8 10 12
6 0 0 7- 7 4 1 6 0 0 7- 7 4 2 6 0 0 7- 7 4 3 6 0 0 7- 7 4 4 6 0 0 7- 7 4 5 6 0 0 7- 7 4 6
C o m p o sit e M at eri al s W or k M at eri al / V el o cit y m/ mi n O R D E R N O.
1 3 5°
1 3 5° Drill P oi nt
F35
Drill P oi nt
O R D E R N O.
Dc h10
V E 1 9 9- 3. 0 V E 1 9 9- 4. 0 V E 1 9 9- 6. 0 V E 1 9 9- 8. 0 V E 1 9 9- 1 0 V E 1 9 9- 1 2
3 4 6 8 10 12
C U T TI N G T O O L
Lc
m m 12 15 18 22 30 30
L
V E199
188 U nit: m m
m m
d h6
C O D E N O.
38 50 50 60 72 75
3 4 6 8 10 12
6 0 0 7- 7 6 1 6 0 0 7- 7 6 2 6 0 0 7- 7 6 3 6 0 0 7- 7 6 4 6 0 0 7- 7 6 5 6 0 0 7- 7 6 6
S oli d C ar bi d e N C/ C N C S p ot Drill s
Mi cr o Gr ai n 1 0 % C o Gr a d e C A R BI D E
W or k M at eri al / V el o cit y m/ mi n
St a n d ar d L e n gt h 9 0º A n gl e( Or d er N o. V D 9 0 3- Di a) O R DE R N O.
Di a of Mill T ol h 7
Shank Di a m m
V D 9 0 3- 3
3
V D 9 0 3- 4
U nit: m m
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
H ar d e n e d st e el s 4 8- 5 6 H R C
Ir o n
3 0- 8 0
2 0- 6 0
1 5- 2 5
1 0- 2 0
4 0- 1 0 0
Tit a ni u m
Ni c k el
2 0- 4 0
1 5- 4 0
Al u mi ni u m
6 0- 3 0 0
8 0- 4 0 0
St a n d ar d L e n gt h 1 2 0º A n gl e( Or d er N o. V D 9 1 3- Di a)
U nit: m m
Fl ut e L e n gt h m m
O v er all L e n gt h m m
C O DE N O.
O R DE R N O.
Di a of Mill T ol h 7
Shank Di a m m
Fl ut e L e n gt h m m
O v er all L e n gt h m m
C O DE N O.
3
10
38
6 0 0 7- 2 6 0
V D 9 1 3- 3
3
3
10
38
6 0 0 7- 2 7 0
4
4
12
50
6 0 0 7- 2 6 1
V D 9 1 3- 4
4
4
12
50
6 0 0 7- 2 7 1
V D 9 0 3- 5
5
5
15
50
6 0 0 7- 2 6 2
V D 9 1 3- 5
5
5
15
50
6 0 0 7- 2 7 2
V D 9 0 3- 6
6
6
20
60
6 0 0 7- 2 6 3
V D 9 1 3- 6
6
6
20
60
6 0 0 7- 2 7 3
V D 9 0 3- 8
8
8
25
60
6 0 0 7- 2 6 4
V D 9 1 3- 8
8
8
25
60
6 0 0 7- 2 7 4
V D 9 0 3- 1 0
10
10
25
72
6 0 0 7- 2 6 5
V D 9 1 3- 1 0
10
10
25
72
6 0 0 7- 2 7 5
V D 9 0 3- 1 2
12
12
30
75
6 0 0 7- 2 6 6
V D 9 1 3- 1 2
12
12
30
75
6 0 0 7- 2 7 6
V D 9 0 3- 1 6
16
16
35
100
6 0 0 7- 2 6 7
V D 9 1 3- 1 6
16
16
35
100
6 0 0 7- 2 7 7
V D 9 0 3- 2 0
20
20
40
100
6 0 0 7- 2 6 8
V D 9 1 3- 2 0
20
20
40
100
6 0 0 7- 2 7 8
L o n g L e n gt h 9 0º A n gl e( Or d er N o. V D 9 0 4- Di a) O R DE R N O.
Di a of Mill T ol h 7
Shank Di a m m
V D 9 0 4- 6
6
V D 9 0 4- 8
U nit: m m
Fl ut e L e n gt h m m
O v er all L e n gt h m m
C O DE N O.
6
20
100
8
8
25
V D 9 0 4- 1 0
10
10
V D 9 0 4- 1 2
12
V D 9 0 4- 1 6 V D 9 0 4- 2 0
L o n g L e n gt h 1 2 0º A n gl e( Or d er N o. V D 9 1 4- Di a) O R DE R N O.
Di a of Mill T ol h 7
Shank Di a m m
6 0 0 7- 2 8 0
V D 9 1 4- 6
6
125
6 0 0 7- 2 8 1
V D 9 1 4- 8
25
150
6 0 0 7- 2 8 2
12
30
150
16
16
35
20
20
40
U nit: m m
Fl ut e L e n gt h m m
O v er all L e n gt h m m
C O DE N O.
6
20
100
6 0 0 7- 2 9 0
8
8
25
125
6 0 0 7- 2 9 1
V D 9 1 4- 1 0
10
10
25
150
6 0 0 7- 2 9 2
6 0 0 7- 2 8 3
V D 9 1 4- 1 2
12
12
30
150
6 0 0 7- 2 9 3
150
6 0 0 7- 2 8 4
V D 9 1 4- 1 6
16
16
35
150
6 0 0 7- 2 9 4
150
6 0 0 7- 2 8 5
V D 9 1 4- 2 0
20
20
40
150
6 0 0 7- 2 9 5
C U T TI N G T O O L
F36
S P O T D RI L L S
C U T TI N G TI P W E L D T Y P E F O R V D 9 0 3, V D 9 0 4:
N o n all o y e d st e el s All o y e d St e el s
C o m bi n e d Drill A n d C o u nt er si n k
C ar bi d e
St a n d ar d L e n gt h( Or d er N o. V D T 0 8- Di a)
d
O R DE R N O.
Dc
Lc L W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
H ar d e n e d st e el s 4 8- 5 6 H R C
Ir o n
3 0- 8 0
2 0- 6 0
1 5- 2 5
1 0- 2 0
4 0- 1 0 0
Tit a ni u m
Ni c k el
2 0- 4 0
1 5- 4 0
Al u mi ni u m
6 0- 3 0 0
8 0- 4 0 0
Dc h7
Lc m m
U nit: m m
L m m
d h6
C O DE N O.
V D T 0 8- 0. 5 0
38
3
6 0 0 8- 8 0 0
V D T 0 8- 0. 8 0
38
3
6 0 0 8- 8 0 1
V D T 0 8- 1. 0 0
38
3
6 0 0 8- 8 0 2
V D T 0 8- 1. 2 5
38
3
6 0 0 8- 8 0 3
V D T 0 8- 1. 6 0
38
4
6 0 0 8- 8 0 4
V D T 0 8- 2. 0 0
50
5
6 0 0 8- 8 0 5
V D T 0 8- 2. 5 0
50
6
6 0 0 8- 8 0 6
V D T 0 8- 3. 1 5
63
8
6 0 0 8- 8 0 7
V D T 0 8- 4. 0 0
66
10
6 0 0 8- 8 0 8
V D T 0 8- 5. 0 0
73
12
6 0 0 8- 8 0 9
I N C H Si z e St a n d ar d L e n gt h( Or d er N o. V D T 0 8- Di a)
U nit: m m
C o m bi n e d Drill A n d C o u nt er si n k
C ar bi d e
Dc
d L
W or k M at eri al / V el o cit y m/ mi n
F37
N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
H ar d e n e d st e el s 4 8- 5 6 H R C
Ir o n
3 0- 8 0
2 0- 6 0
1 5- 2 5
1 0- 2 0
4 0- 1 0 0
Tit a ni u m
Ni c k el
2 0- 4 0
1 5- 4 0
C U T TI N G T O O L
Al u mi ni u m
6 0- 3 0 0
8 0- 4 0 0
O R DE R N O.
Si z e N O.
Dc h7
L I N C H
d h6
C O DE N O.
V D T 0 8- 1 /3 2
#0
1
/3 2
1- 1 /4
1
/8
6 0 0 8- 8 1 1
V D T 0 8- 3 /6 4
#1
3
/6 4
1- 1 /4
1
/8
6 0 0 8- 8 1 2
V D T 0 8- 5 /6 4
#2
5
/6 4
1- 7 /8
3
/1 6
6 0 0 8- 8 1 3
V D T 0 8- 7 /6 4
#3
7
/6 4
2
1
/4
6 0 0 8- 8 1 4
V D T 0 8- 1 /8
#4
1
/8
2- 1 /2
5
/1 6
6 0 0 8- 8 1 5
V D T 0 8- 3 /1 6
#5
3
/1 6
3
7
/1 6
6 0 0 8- 8 1 6
V D T 0 8- 7 /3 2
#6
7
/3 2
3
1
/2
6 0 0 8- 8 1 7
V D T 0 8- 1 /4
#7
1
/4
3- 1 /4
5
/8
6 0 0 8- 8 1 8
V D T 0 8- 5 /1 6
#8
5
/1 6
3- 1 /2
3
/4
6 0 0 8- 8 1 9
T wi st Drill s
C ar bi d e
d Lc
Str ai g ht S h a n k( Or d er N o. V D D 1 2- Di a) O R DE R N O. V D D 1 2- 1. 0 V D D 1 2- 1. 1 V D D 1 2- 1. 2 V D D 1 2- 1. 3 V D D 1 2- 1. 4 V D D 1 2- 1. 5 V D D 1 2- 1. 6 V D D 1 2- 1. 7 V D D 1 2- 1. 8 V D D 1 2- 1. 9 V D D 1 2- 2. 0 V D D 1 2- 2. 1 V D D 1 2- 2. 2 V D D 1 2- 2. 3 V D D 1 2- 2. 4 V D D 1 2- 2. 5 V D D 1 2- 2. 6 V D D 1 2- 2. 7 V D D 1 2- 2. 8 V D D 1 2- 2. 9 V D D 1 2- 3. 0 V D D 1 2- 3. 1 V D D 1 2- 3. 2 V D D 1 2- 3. 3 V D D 1 2- 3. 4 V D D 1 2- 3. 5 V D D 1 2- 3. 6 V D D 1 2- 3. 7 V D D 1 2- 3. 8 V D D 1 2- 3. 9 V D D 1 2- 4. 0 V D D 1 2- 4. 1 V D D 1 2- 4. 2 V D D 1 2- 4. 3 V D D 1 2- 4. 4 V D D 1 2- 4. 5 V D D 1 2- 4. 6 V D D 1 2- 4. 7 V D D 1 2- 4. 8 V D D 1 2- 4. 9 V D D 1 2- 5. 0 V D D 1 2- 5. 1 V D D 1 2- 5. 2 V D D 1 2- 5. 3 V D D 1 2- 5. 4 V D D 1 2- 5. 5 V D D 1 2- 5. 6 V D D 1 2- 5. 7 V D D 1 2- 5. 8 V D D 1 2- 5. 9
Dc h7
Lc m m 6 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 14 16 16 16 16 18 18 18 20 20 20 20 22 22 22 22 22 24 24 24 24 24 26 26 26 26 26 26 28 28 28 28 28 28
L m m 26 28 30 30 32 32 34 34 36 36 38 38 40 40 43 43 43 46 46 46 46 49 49 49 52 52 52 52 55 55 55 55 55 58 58 58 58 58 62 62 62 62 62 62 66 66 66 66 66 66
U nit: m m
d
m m
C O DE N O. 6 0 0 8- 2 8 0 6 0 0 8- 2 8 1 6 0 0 8- 2 8 2 6 0 0 8- 2 8 3 6 0 0 8- 2 8 4 6 0 0 8- 2 8 5 6 0 0 8- 2 8 6 6 0 0 8- 2 8 7 6 0 0 8- 2 8 8 6 0 0 8- 2 8 9 6 0 0 8- 2 9 0 6 0 0 8- 2 9 1 6 0 0 8- 2 9 2 6 0 0 8- 2 9 3 6 0 0 8- 2 9 4 6 0 0 8- 2 9 5 6 0 0 8- 2 9 6 6 0 0 8- 2 9 7 6 0 0 8- 2 9 8 6 0 0 8- 2 9 9 6 0 0 8- 3 0 0 6 0 0 8- 3 0 1 6 0 0 8- 3 0 2 6 0 0 8- 3 0 3 6 0 0 8- 3 0 4 6 0 0 8- 3 0 5 6 0 0 8- 3 0 6 6 0 0 8- 3 0 7 6 0 0 8- 3 0 8 6 0 0 8- 3 0 9 6 0 0 8- 3 1 0 6 0 0 8- 3 1 1 6 0 0 8- 3 1 2 6 0 0 8- 3 1 3 6 0 0 8- 3 1 4 6 0 0 8- 3 1 5 6 0 0 8- 3 1 6 6 0 0 8- 3 1 7 6 0 0 8- 3 1 8 6 0 0 8- 3 1 9 6 0 0 8- 3 2 0 6 0 0 8- 3 2 1 6 0 0 8- 3 2 2 6 0 0 8- 3 2 3 6 0 0 8- 3 2 4 6 0 0 8- 3 2 5 6 0 0 8- 3 2 6 6 0 0 8- 3 2 7 6 0 0 8- 3 2 8 6 0 0 8- 3 2 9
W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
Ir o n
5 0- 8 0
7 0- 1 0 0
O R DE R N O. V D D 1 2- 6. 0 V D D 1 2- 6. 1 V D D 1 2- 6. 2 V D D 1 2- 6. 3 V D D 1 2- 6. 4 V D D 1 2- 6. 5 V D D 1 2- 6. 6 V D D 1 2- 6. 7 V D D 1 2- 6. 8 V D D 1 2- 6. 9 V D D 1 2- 7. 0 V D D 1 2- 7. 1 V D D 1 2- 7. 2 V D D 1 2- 7. 3 V D D 1 2- 7. 4 V D D 1 2- 7. 5 V D D 1 2- 7. 6 V D D 1 2- 7. 7 V D D 1 2- 7. 8 V D D 1 2- 7. 9 V D D 1 2- 8. 0 V D D 1 2- 8. 1 V D D 1 2- 8. 2 V D D 1 2- 8. 3 V D D 1 2- 8. 4 V D D 1 2- 8. 5 V D D 1 2- 8. 6 V D D 1 2- 8. 7 V D D 1 2- 8. 8 V D D 1 2- 8. 9 V D D 1 2- 9. 0 V D D 1 2- 9. 1 V D D 1 2- 9. 2 V D D 1 2- 9. 3 V D D 1 2- 9. 4 V D D 1 2- 9. 5 V D D 1 2- 9. 6 V D D 1 2- 9. 7 V D D 1 2- 9. 8 V D D 1 2- 9. 9 V D D 1 2- 1 0. 0 V D D 1 2- 1 0. 2 V D D 1 2- 1 0. 5 V D D 1 2- 1 1. 0 V D D 1 2- 1 1. 5 V D D 1 2- 1 2. 0 V D D 1 2- 1 3. 0
Dc h7
1 0 0- 1 8 0
Lc m m 28 31 31 31 31 31 31 31 34 34 34 34 34 34 34 34 37 37 37 37 37 37 37 37 37 37 40 40 40 40 40 40 40 40 40 40 43 43 43 43 43 43 43 47 47 51 51
L m m 66 70 70 70 70 70 70 70 74 74 74 74 74 74 74 74 79 79 79 79 79 79 79 79 79 79 84 84 84 84 84 84 84 84 84 84 89 89 89 89 89 89 89 95 95 102 102
Al u mi ni u m
Pl a sti c s
1 0 0- 2 5 0
8 0- 2 0 0
d m m
C O DE N O. 6 0 0 8- 3 3 0 6 0 0 8- 3 3 1 6 0 0 8- 3 3 2 6 0 0 8- 3 3 3 6 0 0 8- 3 3 4 6 0 0 8- 3 3 5 6 0 0 8- 3 3 6 6 0 0 8- 3 3 7 6 0 0 8- 3 3 8 6 0 0 8- 3 3 9 6 0 0 8- 3 4 0 6 0 0 8- 3 4 1 6 0 0 8- 3 4 2 6 0 0 8- 3 4 3 6 0 0 8- 3 4 4 6 0 0 8- 3 4 5 6 0 0 8- 3 4 6 6 0 0 8- 3 4 7 6 0 0 8- 3 4 8 6 0 0 8- 3 4 9 6 0 0 8- 3 5 0 6 0 0 8- 3 5 1 6 0 0 8- 3 5 2 6 0 0 8- 3 5 3 6 0 0 8- 3 5 4 6 0 0 8- 3 5 5 6 0 0 8- 3 5 6 6 0 0 8- 3 5 7 6 0 0 8- 3 5 8 6 0 0 8- 3 5 9 6 0 0 8- 3 6 0 6 0 0 8- 3 6 1 6 0 0 8- 3 6 2 6 0 0 8- 3 6 3 6 0 0 8- 3 6 4 6 0 0 8- 3 6 5 6 0 0 8- 3 6 6 6 0 0 8- 3 6 7 6 0 0 8- 3 6 8 6 0 0 8- 3 6 9 6 0 0 8- 3 7 0 6 0 0 8- 3 7 1 6 0 0 8- 3 7 2 6 0 0 8- 3 7 3 6 0 0 8- 3 7 4 6 0 0 8- 3 7 5 6 0 0 8- 3 7 6
C U T TI N G T O O L
F38
T WI S T D RI L L S
L
T wi st Drill s
Str ai g ht S h a n k( Or d er N o. V D D 1 3- Di a) O R DE R N O. V D D 1 3- 1. 0 V D D 1 3- 1. 1 V D D 1 3- 1. 2 V D D 1 3- 1. 3 V D D 1 3- 1. 4 V D D 1 3- 1. 5 V D D 1 3- 1. 6 V D D 1 3- 1. 7 V D D 1 3- 1. 8 V D D 1 3- 1. 9 V D D 1 3- 2. 0 V D D 1 3- 2. 1 V D D 1 3- 2. 2 V D D 1 3- 2. 3 V D D 1 3- 2. 4 V D D 1 3- 2. 5 V D D 1 3- 2. 6 V D D 1 3- 2. 7 V D D 1 3- 2. 8 V D D 1 3- 2. 9 V D D 1 3- 3. 0 V D D 1 3- 3. 1 V D D 1 3- 3. 2 V D D 1 3- 3. 3 V D D 1 3- 3. 4 V D D 1 3- 3. 5 V D D 1 3- 3. 6 V D D 1 3- 3. 7 V D D 1 3- 3. 8 V D D 1 3- 3. 9 V D D 1 3- 4. 0 V D D 1 3- 4. 1 V D D 1 3- 4. 2 V D D 1 3- 4. 3 V D D 1 3- 4. 4 V D D 1 3- 4. 5 V D D 1 3- 4. 6 V D D 1 3- 4. 7 V D D 1 3- 4. 8 V D D 1 3- 4. 9 V D D 1 3- 5. 0 V D D 1 3- 5. 1 V D D 1 3- 5. 2 V D D 1 3- 5. 3 V D D 1 3- 5. 4 V D D 1 3- 5. 5 V D D 1 3- 5. 6 V D D 1 3- 5. 7 V D D 1 3- 5. 8 V D D 1 3- 5. 9
F39
Dc h7
C U T TI N G T O O L
Lc m m 12 14 16 16 18 18 20 20 22 22 24 24 27 27 30 30 30 33 33 33 33 36 36 36 39 39 39 39 43 43 43 43 43 47 47 47 47 47 52 52 52 52 52 52 57 57 57 57 57 57
L m m 34 36 38 38 40 40 43 43 46 46 49 49 53 53 57 57 57 61 61 61 61 65 65 65 70 70 70 70 75 75 75 75 75 80 80 80 80 80 86 86 86 86 86 86 93 93 93 93 93 93
C ar bi d e
U nit: m m
d
m m
C O DE N O. 6 0 0 8- 3 9 0 6 0 0 8- 3 9 1 6 0 0 8- 3 9 2 6 0 0 8- 3 9 3 6 0 0 8- 3 9 4 6 0 0 8- 3 9 5 6 0 0 8- 3 9 6 6 0 0 8- 3 9 7 6 0 0 8- 3 9 8 6 0 0 8- 3 9 9 6 0 0 8- 4 0 0 6 0 0 8- 4 0 1 6 0 0 8- 4 0 2 6 0 0 8- 4 0 3 6 0 0 8- 4 0 4 6 0 0 8- 4 0 5 6 0 0 8- 4 0 6 6 0 0 8- 4 0 7 6 0 0 8- 4 0 8 6 0 0 8- 4 0 9 6 0 0 8- 4 1 0 6 0 0 8- 4 1 1 6 0 0 8- 4 1 2 6 0 0 8- 4 1 3 6 0 0 8- 4 1 4 6 0 0 8- 4 1 5 6 0 0 8- 4 1 6 6 0 0 8- 4 1 7 6 0 0 8- 4 1 8 6 0 0 8- 4 1 9 6 0 0 8- 4 2 0 6 0 0 8- 4 2 1 6 0 0 8- 4 2 2 6 0 0 8- 4 2 3 6 0 0 8- 4 2 4 6 0 0 8- 4 2 5 6 0 0 8- 4 2 6 6 0 0 8- 4 2 7 6 0 0 8- 4 2 8 6 0 0 8- 4 2 9 6 0 0 8- 4 3 0 6 0 0 8- 4 3 1 6 0 0 8- 4 3 2 6 0 0 8- 4 3 3 6 0 0 8- 4 3 4 6 0 0 8- 4 3 5 6 0 0 8- 4 3 6 6 0 0 8- 4 3 7 6 0 0 8- 4 3 8 6 0 0 8- 4 3 9
W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
Ir o n
5 0- 8 0
7 0- 1 0 0
O R DE R N O. V D D 1 3- 6. 0 V D D 1 3- 6. 1 V D D 1 3- 6. 2 V D D 1 3- 6. 3 V D D 1 3- 6. 4 V D D 1 3- 6. 5 V D D 1 3- 6. 6 V D D 1 3- 6. 7 V D D 1 3- 6. 8 V D D 1 3- 6. 9 V D D 1 3- 7. 0 V D D 1 3- 7. 1 V D D 1 3- 7. 2 V D D 1 3- 7. 3 V D D 1 3- 7. 4 V D D 1 3- 7. 5 V D D 1 3- 7. 6 V D D 1 3- 7. 7 V D D 1 3- 7. 8 V D D 1 3- 7. 9 V D D 1 3- 8. 0 V D D 1 3- 8. 1 V D D 1 3- 8. 2 V D D 1 3- 8. 3 V D D 1 3- 8. 4 V D D 1 3- 8. 5 V D D 1 3- 8. 6 V D D 1 3- 8. 7 V D D 1 3- 8. 8 V D D 1 3- 8. 9 V D D 1 3- 9. 0 V D D 1 3- 9. 1 V D D 1 3- 9. 2 V D D 1 3- 9. 3 V D D 1 3- 9. 4 V D D 1 3- 9. 5 V D D 1 3- 9. 6 V D D 1 3- 9. 7 V D D 1 3- 9. 8 V D D 1 3- 9. 9 V D D 1 3- 1 0. 0 V D D 1 3- 1 0. 2 V D D 1 3- 1 0. 5 V D D 1 3- 1 1. 0 V D D 1 3- 1 1. 5 V D D 1 3- 1 2. 0 V D D 1 3- 1 3. 0
Dc h7
1 0 0- 1 8 0
Lc m m 57 63 63 63 63 63 63 63 69 69 69 69 69 69 69 69 75 75 75 75 75 75 75 75 75 75 81 81 81 81 81 81 81 81 81 81 87 87 87 87 87 87 87 94 94 101 101
L m m 93 101 101 101 101 101 101 101 109 109 109 109 109 109 109 109 11 7 11 7 11 7 11 7 11 7 11 7 11 7 11 7 11 7 11 7 125 125 125 125 125 125 125 125 125 125 133 133 133 133 133 133 133 142 142 151 151
Al u mi ni u m
Pl a sti c s
1 0 0- 2 5 0
8 0- 2 0 0
d m m
C O DE N O. 6 0 0 8- 4 4 0 6 0 0 8- 4 4 1 6 0 0 8- 4 4 2 6 0 0 8- 4 4 3 6 0 0 8- 4 4 4 6 0 0 8- 4 4 5 6 0 0 8- 4 4 6 6 0 0 8- 4 4 7 6 0 0 8- 4 4 8 6 0 0 8- 4 4 9 6 0 0 8- 4 5 0 6 0 0 8- 4 5 1 6 0 0 8- 4 5 2 6 0 0 8- 4 5 3 6 0 0 8- 4 5 4 6 0 0 8- 4 5 5 6 0 0 8- 4 5 6 6 0 0 8- 4 5 7 6 0 0 8- 4 5 8 6 0 0 8- 4 5 9 6 0 0 8- 4 6 0 6 0 0 8- 4 6 1 6 0 0 8- 4 6 2 6 0 0 8- 4 6 3 6 0 0 8- 4 6 4 6 0 0 8- 4 6 5 6 0 0 8- 4 6 6 6 0 0 8- 4 6 7 6 0 0 8- 4 6 8 6 0 0 8- 4 6 9 6 0 0 8- 4 7 0 6 0 0 8- 4 7 1 6 0 0 8- 4 7 2 6 0 0 8- 4 7 3 6 0 0 8- 4 7 4 6 0 0 8- 4 7 5 6 0 0 8- 4 7 6 6 0 0 8- 4 7 7 6 0 0 8- 4 7 8 6 0 0 8- 4 7 9 6 0 0 8- 4 8 0 6 0 0 8- 4 8 1 6 0 0 8- 4 8 2 6 0 0 8- 4 8 3 6 0 0 8- 4 8 4 6 0 0 8- 4 8 5 6 0 0 8- 4 8 6
Hi g h P erf or m a n c e Drill s
C ar bi d e
d
O R DE R N O. V D D 3 0- 2. 0 V D D 3 0- 2. 1 V D D 3 0- 2. 2 V D D 3 0- 2. 3 V D D 3 0- 2. 4 V D D 3 0- 2. 5 V D D 3 0- 2. 6 V D D 3 0- 2. 7 V D D 3 0- 2. 8 V D D 3 0- 2. 9 V D D 3 0- 3. 0 V D D 3 0- 3. 1 V D D 3 0- 3. 2 V D D 3 0- 3. 3 V D D 3 0- 3. 4 V D D 3 0- 3. 5 V D D 3 0- 3. 6 V D D 3 0- 3. 7 V D D 3 0- 3. 8 V D D 3 0- 3. 9 V D D 3 0- 4. 0 V D D 3 0- 4. 1 V D D 3 0- 4. 2 V D D 3 0- 4. 3 V D D 3 0- 4. 4 V D D 3 0- 4. 5 V D D 3 0- 4. 6 V D D 3 0- 4. 7 V D D 3 0- 4. 8 V D D 3 0- 4. 9 V D D 3 0- 5. 0 V D D 3 0- 5. 1 V D D 3 0- 5. 2 V D D 3 0- 5. 3 V D D 3 0- 5. 4 V D D 3 0- 5. 5 V D D 3 0- 5. 6 V D D 3 0- 5. 7 V D D 3 0- 5. 8 V D D 3 0- 5. 9 V D D 3 0- 6. 0 V D D 3 0- 6. 1 V D D 3 0- 6. 2 V D D 3 0- 6. 3 V D D 3 0- 6. 4 V D D 3 0- 6. 5 V D D 3 0- 6. 6 V D D 3 0- 6. 7 V D D 3 0- 6. 8 V D D 3 0- 6. 9
Dc h7
Lc m m 12 12 13 13 14 14 14 16 16 16 16 18 18 18 20 20 20 20 22 22 22 22 22 24 24 24 24 24 26 26 26 26 26 26 28 28 28 28 28 28 28 31 31 31 31 31 31 31 34 34
L m m 38 38 40 40 43 43 43 46 46 46 46 49 49 49 52 52 52 52 55 55 55 55 55 58 58 58 58 58 62 62 62 62 62 62 66 66 66 66 66 66 66 70 70 70 70 70 70 70 74 74
Lc
U nit: m m
d m m
C O DE N O. 6 0 0 8- 5 0 0 6 0 0 8- 5 0 1 6 0 0 8- 5 0 2 6 0 0 8- 5 0 3 6 0 0 8- 5 0 4 6 0 0 8- 5 0 5 6 0 0 8- 5 0 6 6 0 0 8- 5 0 7 6 0 0 8- 5 0 8 6 0 0 8- 5 0 9 6 0 0 8- 5 1 0 6 0 0 8- 5 1 1 6 0 0 8- 5 1 2 6 0 0 8- 5 1 3 6 0 0 8- 5 1 4 6 0 0 8- 5 1 5 6 0 0 8- 5 1 6 6 0 0 8- 5 1 7 6 0 0 8- 5 1 8 6 0 0 8- 5 1 9 6 0 0 8- 5 2 0 6 0 0 8- 5 2 1 6 0 0 8- 5 2 2 6 0 0 8- 5 2 3 6 0 0 8- 5 2 4 6 0 0 8- 5 2 5 6 0 0 8- 5 2 6 6 0 0 8- 5 2 7 6 0 0 8- 5 2 8 6 0 0 8- 5 2 9 6 0 0 8- 5 3 0 6 0 0 8- 5 3 1 6 0 0 8- 5 3 2 6 0 0 8- 5 3 3 6 0 0 8- 5 3 4 6 0 0 8- 5 3 5 6 0 0 8- 5 3 6 6 0 0 8- 5 3 7 6 0 0 8- 5 3 8 6 0 0 8- 5 3 9 6 0 0 8- 5 4 0 6 0 0 8- 5 4 1 6 0 0 8- 5 4 2 6 0 0 8- 5 4 3 6 0 0 8- 5 4 4 6 0 0 8- 5 4 5 6 0 0 8- 5 4 6 6 0 0 8- 5 4 7 6 0 0 8- 5 4 8 6 0 0 8- 5 4 9
L W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
H ar d e n e d st e el s 4 8- 5 6 H R C
Ir o n
7 0- 1 0 0
3 0- 5 0
2 0- 3 0
1 0- 2 0
9 0- 1 3 0
Tit a ni u m
Ni c k el
2 5- 4 5
2 0- 4 5
O R DE R N O. V D D 3 0- 7. 0 V D D 3 0- 7. 1 V D D 3 0- 7. 2 V D D 3 0- 7. 3 V D D 3 0- 7. 4 V D D 3 0- 7. 5 V D D 3 0- 7. 6 V D D 3 0- 7. 7 V D D 3 0- 7. 8 V D D 3 0- 7. 9 V D D 3 0- 8. 0 V D D 3 0- 8. 1 V D D 3 0- 8. 2 V D D 3 0- 8. 3 V D D 3 0- 8. 4 V D D 3 0- 8. 5 V D D 3 0- 8. 6 V D D 3 0- 8. 7 V D D 3 0- 8. 8 V D D 3 0- 8. 9 V D D 3 0- 9. 0 V D D 3 0- 9. 1 V D D 3 0- 9. 2 V D D 3 0- 9. 3 V D D 3 0- 9. 4 V D D 3 0- 9. 5 V D D 3 0- 9. 6 V D D 3 0- 9. 7 V D D 3 0- 9. 8 V D D 3 0- 9. 9 V D D 3 0- 1 0. 0 V D D 3 0- 1 0. 2 V D D 3 0- 1 0. 5 V D D 3 0- 1 0. 8 V D D 3 0- 1 1. 0 V D D 3 0- 1 1. 5 V D D 3 0- 1 2. 0 V D D 3 0- 1 2. 5 V D D 3 0- 1 3. 0
Dc h7
Al u mi ni u m
1 3 0- 2 3 0
Lc m m 34 34 34 34 34 34 37 37 37 37 37 37 37 37 37 37 40 40 40 40 40 40 40 40 40 40 43 43 43 43 43 43 43 47 47 47 51 51 51
1 3 0- 3 0 0
L m m 74 74 74 74 74 74 79 79 79 79 79 79 79 79 79 79 84 84 84 84 84 84 84 84 84 84 89 89 89 89 89 89 89 95 95 95 102 102 102
d m m
C O DE N O. 6 0 0 8- 5 5 0 6 0 0 8- 5 5 1 6 0 0 8- 5 5 2 6 0 0 8- 5 5 3 6 0 0 8- 5 5 4 6 0 0 8- 5 5 5 6 0 0 8- 5 5 6 6 0 0 8- 5 5 7 6 0 0 8- 5 5 8 6 0 0 8- 5 5 9 6 0 0 8- 5 6 0 6 0 0 8- 5 6 1 6 0 0 8- 5 6 2 6 0 0 8- 5 6 3 6 0 0 8- 5 6 4 6 0 0 8- 5 6 5 6 0 0 8- 5 6 6 6 0 0 8- 5 6 7 6 0 0 8- 5 6 8 6 0 0 8- 5 6 9 6 0 0 8- 5 7 0 6 0 0 8- 5 7 1 6 0 0 8- 5 7 2 6 0 0 8- 5 7 3 6 0 0 8- 5 7 4 6 0 0 8- 5 7 5 6 0 0 8- 5 7 6 6 0 0 8- 5 7 7 6 0 0 8- 5 7 8 6 0 0 8- 5 7 9 6 0 0 8- 5 8 0 6 0 0 8- 5 8 1 6 0 0 8- 5 8 2 6 0 0 8- 5 8 3 6 0 0 8- 5 8 4 6 0 0 8- 5 8 5 6 0 0 8- 5 8 6 6 0 0 8- 5 8 7 6 0 0 8- 5 8 8
C U T TI N G T O O L
F40
P E R F O R M A N C E D RI L L S
Str ai g ht S h a n k( Or d er N o. V D D 3 0- Di a)
Hi g h P erf or m a n c e Drill s
Str ai g ht S h a n k( Or d er N o. V D D 3 3- Di a) O R DE R N O. V D D 3 3- 2. 0 V D D 3 3- 2. 1 V D D 3 3- 2. 2 V D D 3 3- 2. 3 V D D 3 3- 2. 4 V D D 3 3- 2. 5 V D D 3 3- 2. 6 V D D 3 3- 2. 7 V D D 3 3- 2. 8 V D D 3 3- 2. 9 V D D 3 3- 3. 0 V D D 3 3- 3. 1 V D D 3 3- 3. 2 V D D 3 3- 3. 3 V D D 3 3- 3. 4 V D D 3 3- 3. 5 V D D 3 3- 3. 6 V D D 3 3- 3. 7 V D D 3 3- 3. 8 V D D 3 3- 3. 9 V D D 3 3- 4. 0 V D D 3 3- 4. 1 V D D 3 3- 4. 2 V D D 3 3- 4. 3 V D D 3 3- 4. 4 V D D 3 3- 4. 5 V D D 3 3- 4. 6 V D D 3 3- 4. 7 V D D 3 3- 4. 8 V D D 3 3- 4. 9 V D D 3 3- 5. 0 V D D 3 3- 5. 1 V D D 3 3- 5. 2 V D D 3 3- 5. 3 V D D 3 3- 5. 4 V D D 3 3- 5. 5 V D D 3 3- 5. 6 V D D 3 3- 5. 7 V D D 3 3- 5. 8 V D D 3 3- 5. 9 V D D 3 3- 6. 0 V D D 3 3- 6. 1 V D D 3 3- 6. 2 V D D 3 3- 6. 3 V D D 3 3- 6. 4 V D D 3 3- 6. 5 V D D 3 3- 6. 6 V D D 3 3- 6. 7 V D D 3 3- 6. 8 V D D 3 3- 6. 9
F41
Dc h7
C U T TI N G T O O L
Lc m m 24 24 27 27 30 30 30 33 33 33 33 36 36 36 39 39 39 39 43 43 43 43 43 47 47 47 47 47 52 52 52 52 52 52 57 57 57 57 57 57 57 63 63 63 63 63 63 63 69 69
L m m 49 49 53 53 57 57 57 61 61 61 61 65 65 65 70 70 70 70 75 75 75 75 75 80 80 80 80 80 86 86 86 86 86 86 93 93 93 93 93 93 93 101 101 101 101 101 101 101 109 109
U nit: m m
d
m m
C O DE N O. 6 0 0 8- 9 0 1 6 0 0 8- 9 0 2 6 0 0 8- 9 0 3 6 0 0 8- 9 0 4 6 0 0 8- 9 0 5 6 0 0 8- 9 0 6 6 0 0 8- 9 0 7 6 0 0 8- 9 0 8 6 0 0 8- 9 0 9 6 0 0 8- 9 1 0 6 0 0 8- 9 1 1 6 0 0 8- 9 1 2 6 0 0 8- 9 1 3 6 0 0 8- 9 1 4 6 0 0 8- 9 1 5 6 0 0 8- 9 1 6 6 0 0 8- 9 1 7 6 0 0 8- 9 1 8 6 0 0 8- 9 1 9 6 0 0 8- 9 2 0 6 0 0 8- 9 2 1 6 0 0 8- 9 2 2 6 0 0 8- 9 2 3 6 0 0 8- 9 2 4 6 0 0 8- 9 2 5 6 0 0 8- 9 2 6 6 0 0 8- 9 2 7 6 0 0 8- 9 2 8 6 0 0 8- 9 2 9 6 0 0 8- 9 3 0 6 0 0 8- 9 3 1 6 0 0 8- 9 3 2 6 0 0 8- 9 3 3 6 0 0 8- 9 3 4 6 0 0 8- 9 3 5 6 0 0 8- 9 3 6 6 0 0 8- 9 3 7 6 0 0 8- 9 3 8 6 0 0 8- 9 3 9 6 0 0 8- 9 4 0 6 0 0 8- 9 4 1 6 0 0 8- 9 4 2 6 0 0 8- 9 4 3 6 0 0 8- 9 4 4 6 0 0 8- 9 4 5 6 0 0 8- 9 4 6 6 0 0 8- 9 4 7 6 0 0 8- 9 4 8 6 0 0 8- 9 4 9 6 0 0 8- 9 5 0
W or k M at eri al / V el o cit y m/ mi n C ar b o n Sr e el s
L o w- all o y e d St e el (- 2 4 H R C)
Hi- all o y e d St e el (- 3 0 H R C)
H ar d e n e d st e el s ( 3 0- 3 8 H R C)
6 0- 1 0 0
6 0- 1 0 0
6 0- 1 0 0
4 0- 6 5
H ar d e n d St e el ( 3 8- 4 8 H R C)
C a st Ir o n
3 0- 4 5
6 0- 1 0 0
O R DE R N O. V D D 3 3- 7. 0 V D D 3 3- 7. 1 V D D 3 3- 7. 2 V D D 3 3- 7. 3 V D D 3 3- 7. 4 V D D 3 3- 7. 5 V D D 3 3- 7. 6 V D D 3 3- 7. 7 V D D 3 3- 7. 8 V D D 3 3- 7. 9 V D D 3 3- 8. 0 V D D 3 3- 8. 1 V D D 3 3- 8. 2 V D D 3 3- 8. 3 V D D 3 3- 8. 4 V D D 3 3- 8. 5 V D D 3 3- 8. 6 V D D 3 3- 8. 7 V D D 3 3- 8. 8 V D D 3 3- 8. 9 V D D 3 3- 9. 0 V D D 3 3- 9. 1 V D D 3 3- 9. 2 V D D 3 3- 9. 3 V D D 3 3- 9. 4 V D D 3 3- 9. 5 V D D 3 3- 9. 6 V D D 3 3- 9. 7 V D D 3 3- 9. 8 V D D 3 3- 9. 9 V D D 3 3- 1 0. 0 V D D 3 3- 1 0. 2 V D D 3 3- 1 0. 5 V D D 3 3- 1 0. 8 V D D 3 3- 1 1. 0 V D D 3 3- 1 1. 5 V D D 3 3- 1 2. 5 V D D 3 3- 1 2. 5 V D D 3 3- 1 3. 0
Dc h7
Lc m m 69 69 69 69 69 69 75 75 75 75 75 75 75 75 75 75 81 81 81 81 81 81 81 81 81 81 87 87 87 87 87 87 87 94 94 94 101 101 101
L m m 109 109 109 109 109 109 11 7 11 7 11 7 11 7 11 7 11 7 11 7 11 7 11 7 11 7 125 125 125 125 125 125 125 125 125 125 133 133 133 133 133 133 133 142 142 142 151 151 151
d m m
C O DE N O. 6 0 0 8- 9 5 1 6 0 0 8- 9 5 2 6 0 0 8- 9 5 3 6 0 0 8- 9 5 4 6 0 0 8- 9 5 5 6 0 0 8- 9 5 6 6 0 0 8- 9 5 7 6 0 0 8- 9 5 8 6 0 0 8- 9 5 9 6 0 0 8- 9 6 0 6 0 0 8- 9 6 1 6 0 0 8- 9 6 2 6 0 0 8- 9 6 3 6 0 0 8- 9 6 4 6 0 0 8- 9 6 5 6 0 0 8- 9 6 6 6 0 0 8- 9 6 7 6 0 0 8- 9 6 8 6 0 0 8- 9 6 9 6 0 0 8- 9 7 0 6 0 0 8- 9 7 1 6 0 0 8- 9 7 2 6 0 0 8- 9 7 3 6 0 0 8- 9 7 4 6 0 0 8- 9 7 5 6 0 0 8- 9 7 6 6 0 0 8- 9 7 7 6 0 0 8- 9 7 8 6 0 0 8- 9 7 9 6 0 0 8- 9 8 0 6 0 0 8- 9 8 1 6 0 0 8- 9 8 2 6 0 0 8- 9 8 3 6 0 0 8- 9 8 4 6 0 0 8- 9 8 5 6 0 0 8- 9 8 6 6 0 0 8- 9 8 7 6 0 0 8- 9 8 8 6 0 0 8- 9 8 9
Hi g h P erf or m a n c e Drill s
C ar bi d e d
O R DE R N O. V D D 3 1- 3. 0 V D D 3 1- 3. 1 V D D 3 1- 3. 2 V D D 3 1- 3. 3 V D D 3 1- 3. 4 V D D 3 1- 3. 5 V D D 3 1- 3. 6 V D D 3 1- 3. 7 V D D 3 1- 3. 8 V D D 3 1- 3. 9 V D D 3 1- 4. 0 V D D 3 1- 4. 1 V D D 3 1- 4. 2 V D D 3 1- 4. 3 V D D 3 1- 4. 4 V D D 3 1- 4. 5 V D D 3 1- 4. 6 V D D 3 1- 4. 7 V D D 3 1- 4. 8 V D D 3 1- 4. 9 V D D 3 1- 5. 0 V D D 3 1- 5. 1 V D D 3 1- 5. 2 V D D 3 1- 5. 3 V D D 3 1- 5. 4 V D D 3 1- 5. 5 V D D 3 1- 5. 6 V D D 3 1- 5. 7 V D D 3 1- 5. 8 V D D 3 1- 5. 9 V D D 3 1- 6. 0 V D D 3 1- 6. 1 V D D 3 1- 6. 2 V D D 3 1- 6. 3 V D D 3 1- 6. 4 V D D 3 1- 6. 5 V D D 3 1- 6. 6 V D D 3 1- 6. 7 V D D 3 1- 6. 8 V D D 3 1- 6. 9 V D D 3 1- 7. 0 V D D 3 1- 7. 1 V D D 3 1- 7. 2 V D D 3 1- 7. 3 V D D 3 1- 7. 4 V D D 3 1- 7. 5 V D D 3 1- 7. 6 V D D 3 1- 7. 7 V D D 3 1- 7. 8 V D D 3 1- 7. 9
Dc m7
Lc m m 20 20 20 20 20 20 20 20 24 24 24 24 24 24 24 24 24 24 28 28 28 28 28 28 28 28 28 28 28 28 28 34 34 34 34 34 34 34 34 34 34 41 41 41 41 41 41 41 41 41
L m m 62 62 62 62 62 62 62 62 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 79 79 79 79 79 79 79 79 79 79 79 79 79 79 79 79 79 79 79
d h6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8
Lc U nit: m m
Ld m m 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36
C O DE N O. 6 0 0 8- 6 0 0 6 0 0 8- 6 0 1 6 0 0 8- 6 0 2 6 0 0 8- 6 0 3 6 0 0 8- 6 0 4 6 0 0 8- 6 0 5 6 0 0 8- 6 0 6 6 0 0 8- 6 0 7 6 0 0 8- 6 0 8 6 0 0 8- 6 0 9 6 0 0 8- 6 1 0 6 0 0 8- 6 1 1 6 0 0 8- 6 1 2 6 0 0 8- 6 1 3 6 0 0 8- 6 1 4 6 0 0 8- 6 1 5 6 0 0 8- 6 1 6 6 0 0 8- 6 1 7 6 0 0 8- 6 1 8 6 0 0 8- 6 1 9 6 0 0 8- 6 2 0 6 0 0 8- 6 2 1 6 0 0 8- 6 2 2 6 0 0 8- 6 2 3 6 0 0 8- 6 2 4 6 0 0 8- 6 2 5 6 0 0 8- 6 2 6 6 0 0 8- 6 2 7 6 0 0 8- 6 2 8 6 0 0 8- 6 2 9 6 0 0 8- 6 3 0 6 0 0 8- 6 3 1 6 0 0 8- 6 3 2 6 0 0 8- 6 3 3 6 0 0 8- 6 3 4 6 0 0 8- 6 3 5 6 0 0 8- 6 3 6 6 0 0 8- 6 3 7 6 0 0 8- 6 3 8 6 0 0 8- 6 3 9 6 0 0 8- 6 4 0 6 0 0 8- 6 4 1 6 0 0 8- 6 4 2 6 0 0 8- 6 4 3 6 0 0 8- 6 4 4 6 0 0 8- 6 4 5 6 0 0 8- 6 4 6 6 0 0 8- 6 4 7 6 0 0 8- 6 4 8 6 0 0 8- 6 4 9
L W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
H ar d e n e d st e el s 4 8- 5 6 H R C
Ir o n
8 0- 1 8 0
4 5- 6 0
4 0- 6 0
1 5- 3 5
9 0- 1 3 0
Tit a ni u m
Ni c k el
3 5- 4 5
3 0- 4 5
O R DE R N O. V D D 3 1- 8. 0 V D D 3 1- 8. 1 V D D 3 1- 8. 2 V D D 3 1- 8. 3 V D D 3 1- 8. 4 V D D 3 1- 8. 5 V D D 3 1- 8. 6 V D D 3 1- 8. 7 V D D 3 1- 8. 8 V D D 3 1- 8. 9 V D D 3 1- 9. 0 V D D 3 1- 9. 1 V D D 3 1- 9. 2 V D D 3 1- 9. 3 V D D 3 1- 9. 4 V D D 3 1- 9. 5 V D D 3 1- 9. 6 V D D 3 1- 9. 7 V D D 3 1- 9. 8 V D D 3 1- 9. 9 V D D 3 1- 1 0. 0 V D D 3 1- 1 0. 2 V D D 3 1- 1 0. 5 V D D 3 1- 1 0. 8 V D D 3 1- 1 1. 0 V D D 3 1- 1 1. 5 V D D 3 1- 1 2. 0 V D D 3 1- 1 2. 5 V D D 3 1- 1 3. 0 V D D 3 1- 1 3. 5 V D D 3 1- 1 4. 0 V D D 3 1- 1 4. 5 V D D 3 1- 1 5. 0 V D D 3 1- 1 5. 5 V D D 3 1- 1 6. 0 V D D 3 1- 1 6. 5 V D D 3 1- 1 7. 0 V D D 3 1- 1 7. 5 V D D 3 1- 1 8. 0 V D D 3 1- 1 8. 5 V D D 3 1- 1 9. 0 V D D 3 1- 1 9. 5 V D D 3 1- 2 0. 0
Dc m7
Al u mi ni u m
1 3 0- 2 3 0
Lc m m 41 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 55 55 55 55 55 55 60 60 60 60 65 65 65 65 73 73 73 73 79 79 79 79
L m m 79 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 102 102 102 102 102 102 107 107 107 107 11 5 11 5 11 5 11 5 123 123 123 123 131 131 131 131
1 3 0- 3 0 0
d h6 8 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 12 12 12 12 12 12 14 14 14 14 16 16 16 16 18 18 18 18 20 20 20 20
Ld m m 36 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 45 45 45 45 45 45 45 45 45 45 48 48 48 48 48 48 48 48 50 50 50 50
C O DE N O. 6 0 0 8- 6 5 0 6 0 0 8- 6 5 1 6 0 0 8- 6 5 2 6 0 0 8- 6 5 3 6 0 0 8- 6 5 4 6 0 0 8- 6 5 5 6 0 0 8- 6 5 6 6 0 0 8- 6 5 7 6 0 0 8- 6 5 8 6 0 0 8- 6 5 9 6 0 0 8- 6 6 0 6 0 0 8- 6 6 1 6 0 0 8- 6 6 2 6 0 0 8- 6 6 3 6 0 0 8- 6 6 4 6 0 0 8- 6 6 5 6 0 0 8- 6 6 6 6 0 0 8- 6 6 7 6 0 0 8- 6 6 8 6 0 0 8- 6 6 9 6 0 0 8- 6 7 0 6 0 0 8- 6 7 1 6 0 0 8- 6 7 2 6 0 0 8- 6 7 3 6 0 0 8- 6 7 4 6 0 0 8- 6 7 5 6 0 0 8- 6 7 6 6 0 0 8- 6 7 7 6 0 0 8- 6 7 8 6 0 0 8- 6 7 9 6 0 0 8- 6 8 0 6 0 0 8- 6 8 1 6 0 0 8- 6 8 2 6 0 0 8- 6 8 3 6 0 0 8- 6 8 4 6 0 0 8- 6 8 5 6 0 0 8- 6 8 6 6 0 0 8- 6 8 7 6 0 0 8- 6 8 8 6 0 0 8- 6 8 9 6 0 0 8- 6 9 0 6 0 0 8- 6 9 1 6 0 0 8- 6 9 2
C U T TI N G T O O L
F42
P E R F O R M A N C E D RI L L S
St u d L e n gt h( Or d er N o. V D D 3 1- Di a)
Hi g h P erf or m a n c e Drill s
C ar bi d e
d
St a n d ar d L e n gt h( Or d er N o. V D D 3 2- Di a) O R DE R N O. V D D 3 2- 3. 0 V D D 3 2- 3. 1 V D D 3 2- 3. 2 V D D 3 2- 3. 3 V D D 3 2- 3. 4 V D D 3 2- 3. 5 V D D 3 2- 3. 6 V D D 3 2- 3. 7 V D D 3 2- 3. 8 V D D 3 2- 3. 9 V D D 3 2- 4. 0 V D D 3 2- 4. 1 V D D 3 2- 4. 2 V D D 3 2- 4. 3 V D D 3 2- 4. 4 V D D 3 2- 4. 5 V D D 3 2- 4. 6 V D D 3 2- 4. 7 V D D 3 2- 4. 8 V D D 3 2- 4. 9 V D D 3 2- 5. 0 V D D 3 2- 5. 1 V D D 3 2- 5. 2 V D D 3 2- 5. 3 V D D 3 2- 5. 4 V D D 3 2- 5. 5 V D D 3 2- 5. 6 V D D 3 2- 5. 7 V D D 3 2- 5. 8 V D D 3 2- 5. 9 V D D 3 2- 6. 0 V D D 3 2- 6. 1 V D D 3 2- 6. 2 V D D 3 2- 6. 3 V D D 3 1- 6. 4 V D D 3 2- 6. 5 V D D 3 2- 6. 6 V D D 3 2- 6. 7 V D D 3 2- 6. 8 V D D 3 2- 6. 9 V D D 3 2- 7. 0 V D D 3 2- 7. 1 V D D 3 2- 7. 2 V D D 3 2- 7. 3 V D D 3 2- 7. 4 V D D 3 2- 7. 5 V D D 3 2- 7. 6 V D D 3 2- 7. 7 V D D 3 2- 7. 8 V D D 3 2- 7. 9
F43
Dc m7
Lc m m 28 28 28 28 28 28 28 28 36 36 36 36 36 36 36 36 36 36 44 44 44 44 44 44 44 44 44 44 44 44 44 53 53 53 53 53 53 53 53 53 53 53 53 53 53 53 53 53 53 53
C U T TI N G T O O L
L m m 66 66 66 66 66 66 66 66 74 74 74 74 74 74 74 74 74 74 82 82 82 82 82 82 82 82 82 82 82 82 82 91 91 91 91 91 91 91 91 91 91 91 91 91 91 91 91 91 91 91
d h6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8
Ld m m 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36 36
U nit: m m
C O DE N O. 6 0 0 8- 7 0 0 6 0 0 8- 7 0 1 6 0 0 8- 7 0 2 6 0 0 8- 7 0 3 6 0 0 8- 7 0 4 6 0 0 8- 7 0 5 6 0 0 8- 7 0 6 6 0 0 8- 7 0 7 6 0 0 8- 7 0 8 6 0 0 8- 7 0 9 6 0 0 8- 7 1 0 6 0 0 8- 7 1 1 6 0 0 8- 7 1 2 6 0 0 8- 7 1 3 6 0 0 8- 7 1 4 6 0 0 8- 7 1 5 6 0 0 8- 7 1 6 6 0 0 8- 7 1 7 6 0 0 8- 7 1 8 6 0 0 8- 7 1 9 6 0 0 8- 7 2 0 6 0 0 8- 7 2 1 6 0 0 8- 7 2 2 6 0 0 8- 7 2 3 6 0 0 8- 7 2 4 6 0 0 8- 7 2 5 6 0 0 8- 7 2 6 6 0 0 8- 7 2 7 6 0 0 8- 7 2 8 6 0 0 8- 7 2 9 6 0 0 8- 7 3 0 6 0 0 8- 7 3 1 6 0 0 8- 7 3 2 6 0 0 8- 7 3 3 6 0 0 8- 7 3 4 6 0 0 8- 7 3 5 6 0 0 8- 7 3 6 6 0 0 8- 7 3 7 6 0 0 8- 7 3 8 6 0 0 8- 7 3 9 6 0 0 8- 7 4 0 6 0 0 8- 7 4 1 6 0 0 8- 7 4 2 6 0 0 8- 7 4 3 6 0 0 8- 7 4 4 6 0 0 8- 7 4 5 6 0 0 8- 7 4 6 6 0 0 8- 7 4 7 6 0 0 8- 7 4 8 6 0 0 8- 7 4 9
L W or k M at eri al / V el o cit y m/ mi n
Lc
N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
H ar d e n e d st e el s 4 8- 5 6 H R C
Ir o n
8 0- 1 8 0
4 5- 6 0
4 0- 6 0
1 5- 3 5
9 0- 1 3 0
Tit a ni u m
Ni c k el
3 5- 4 5
3 0- 4 5
O R DE R N O. V D D 3 2- 8. 0 V D D 3 2- 8. 1 V D D 3 2- 8. 2 V D D 3 2- 8. 3 V D D 3 2- 8. 4 V D D 3 2- 8. 5 V D D 3 2- 8. 6 V D D 3 2- 8. 7 V D D 3 2- 8. 8 V D D 3 2- 8. 9 V D D 3 2- 9. 0 V D D 3 2- 9. 1 V D D 3 2- 9. 2 V D D 3 2- 9. 3 V D D 3 2- 9. 4 V D D 3 2- 9. 5 V D D 3 2- 9. 6 V D D 3 2- 9. 7 V D D 3 2- 9. 8 V D D 3 2- 9. 9 V D D 3 2- 1 0. 0 V D D 3 2- 1 0. 2 V D D 3 2- 1 0. 5 V D D 3 2- 1 0. 8 V D D 3 2- 1 1. 0 V D D 3 2- 1 1. 5 V D D 3 2- 1 2. 0 V D D 3 2- 1 2. 5 V D D 3 2- 1 3. 0 V D D 3 2- 1 3. 5 V D D 3 2- 1 4. 0 V D D 3 2- 1 4. 5 V D D 3 2- 1 5. 0 V D D 3 2- 1 5. 5 V D D 3 2- 1 6. 0 V D D 3 2- 1 6. 5 V D D 3 2- 1 7. 0 V D D 3 2- 1 7. 5 V D D 3 2- 1 8. 0 V D D 3 2- 1 8. 5 V D D 3 2- 1 9. 0 V D D 3 2- 1 9. 5 V D D 3 2- 2 0. 0
Dc m7
Al u mi ni u m
1 3 0- 2 3 0
Lc m m 53 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 71 71 71 71 71 71 77 77 77 77 83 83 83 83 93 93 93 93 101 101 101 101
L m m 91 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 11 8 11 8 11 8 11 8 11 8 11 8 124 124 124 124 133 133 133 133 143 143 143 143 153 153 153 153
1 3 0- 3 0 0
d h6 8 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 12 12 12 12 12 12 14 14 14 14 16 16 16 16 18 18 18 18 20 20 20 20
Ld m m 36 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 40 45 45 45 45 45 45 45 45 45 45 48 48 48 48 48 48 48 48 50 50 50 50
C O DE N O. 6 0 0 8- 7 5 0 6 0 0 8- 7 5 1 6 0 0 8- 7 5 2 6 0 0 8- 7 5 3 6 0 0 8- 7 5 4 6 0 0 8- 7 5 5 6 0 0 8- 7 5 6 6 0 0 8- 7 5 7 6 0 0 8- 7 5 8 6 0 0 8- 7 5 9 6 0 0 8- 7 6 0 6 0 0 8- 7 6 1 6 0 0 8- 7 6 2 6 0 0 8- 7 6 3 6 0 0 8- 7 6 4 6 0 0 8- 7 6 5 6 0 0 8- 7 6 6 6 0 0 8- 7 6 7 6 0 0 8- 7 6 8 6 0 0 8- 7 6 9 6 0 0 8- 7 7 0 6 0 0 8- 7 7 1 6 0 0 8- 7 7 2 6 0 0 8- 7 7 3 6 0 0 8- 7 7 4 6 0 0 8- 7 7 5 6 0 0 8- 7 7 6 6 0 0 8- 7 7 7 6 0 0 8- 7 7 8 6 0 0 8- 7 7 9 6 0 0 8- 7 8 0 6 0 0 8- 7 8 1 6 0 0 8- 7 8 2 6 0 0 8- 7 8 3 6 0 0 8- 7 8 4 6 0 0 8- 7 8 5 6 0 0 8- 7 8 6 6 0 0 8- 7 8 7 6 0 0 8- 7 8 8 6 0 0 8- 7 8 9 6 0 0 8- 7 9 0 6 0 0 8- 7 9 1 6 0 0 8- 7 9 2
Oil- F e e d Hi g h P erf or m a n c e Drll s
O R DE R N O. V D D 3 5- 3. 0 V D D 3 5- 3. 1 V D D 3 5- 3. 2 V D D 3 5- 3. 3 V D D 3 5- 3. 4 V D D 3 5- 3. 5 V D D 3 5- 3. 6 V D D 3 5- 3. 7 V D D 3 5- 3. 8 V D D 3 5- 3. 9 V D D 3 5- 4. 0 V D D 3 5- 4. 1 V D D 3 5- 4. 2 V D D 3 5- 4. 3 V D D 3 5- 4. 4 V D D 3 5- 4. 5 V D D 3 5- 4. 6 V D D 3 5- 4. 7 V D D 3 5- 4. 8 V D D 3 5- 4. 9 V D D 3 5- 5. 0 V D D 3 5- 5. 1 V D D 3 5- 5. 2 V D D 3 5- 5. 3 V D D 3 5- 5. 4 V D D 3 5- 5. 5 V D D 3 5- 5. 6 V D D 3 5- 5. 7 V D D 3 5- 5. 8 V D D 3 5- 5. 9 V D D 3 5- 6. 0 V D D 3 5- 6. 1 V D D 3 5- 6. 2 V D D 3 5- 6. 3 V D D 3 5- 6. 4 V D D 3 5- 6. 5 V D D 3 5- 6. 6 V D D 3 5- 6. 7 V D D 3 5- 6. 8 V D D 3 5- 6. 9 V D D 3 5- 7. 0 V D D 3 5- 7. 1 V D D 3 5- 7. 2 V D D 3 5- 7. 3 V D D 3 5- 7. 4 V D D 3 5- 7. 5 V D D 3 5- 7. 6 V D D 3 5- 7. 7 V D D 3 5- 7. 8 V D D 3 5- 7. 9
Dc m7
Lc m m 20 20 20 20 20 20 20 20 24 24 24 24 24 24 24 24 24 24 28 28 28 28 28 28 28 28 28 28 28 28 28 34 34 34 34 34 34 34 34 34 34 41 41 41 41 41 41 41 41 41
L m m 62 62 62 62 62 62 62 62 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 66 79 79 79 79 79 79 79 79 79 79 79 79 79 79 79 79 79 79 79
U nit: m m
d h6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8
C O DE N O. 6 0 0 8- 1 0 0 1 6 0 0 8- 1 0 0 2 6 0 0 8- 1 0 0 3 6 0 0 8- 1 0 0 4 6 0 0 8- 1 0 0 5 6 0 0 8- 1 0 0 6 6 0 0 8- 1 0 0 7 6 0 0 8- 1 0 0 8 6 0 0 8- 1 0 0 9 6 0 0 8- 1 0 1 0 6 0 0 8- 1 0 1 1 6 0 0 8- 1 0 1 2 6 0 0 8- 1 0 1 3 6 0 0 8- 1 0 1 4 6 0 0 8- 1 0 1 5 6 0 0 8- 1 0 1 6 6 0 0 8- 1 0 1 7 6 0 0 8- 1 0 1 8 6 0 0 8- 1 0 1 9 6 0 0 8- 1 0 2 0 6 0 0 8- 1 0 2 1 6 0 0 8- 1 0 2 2 6 0 0 8- 1 0 2 3 6 0 0 8- 1 0 2 4 6 0 0 8- 1 0 2 5 6 0 0 8- 1 0 2 6 6 0 0 8- 1 0 2 7 6 0 0 8- 1 0 2 8 6 0 0 8- 1 0 2 9 6 0 0 8- 1 0 3 0 6 0 0 8- 1 0 3 1 6 0 0 8- 1 0 3 2 6 0 0 8- 1 0 3 3 6 0 0 8- 1 0 3 4 6 0 0 8- 1 0 3 5 6 0 0 8- 1 0 3 6 6 0 0 8- 1 0 3 7 6 0 0 8- 1 0 3 8 6 0 0 8- 1 0 3 9 6 0 0 8- 1 0 4 0 6 0 0 8- 1 0 4 1 6 0 0 8- 1 0 4 2 6 0 0 8- 1 0 4 3 6 0 0 8- 1 0 4 4 6 0 0 8- 1 0 4 5 6 0 0 8- 1 0 4 6 6 0 0 8- 1 0 4 7 6 0 0 8- 1 0 4 8 6 0 0 8- 1 0 4 9 6 0 0 8- 1 0 5 0
W or k M at eri al / V el o cit y m/ mi n C or bi n St e el s
L o w- all o y e d St e el (- 2 4 H R C)
Hi- all o y e d St e el (- 3 0 H R C)
H ar d e n e d st e el s ( 3 0- 3 8 H R C)
H ar d e n e d st e el s ( 3 8- 4 8 H R C)
8 0- 1 5 0
8 0- 1 5 0
8 0- 1 5 0
4 0- 7 0
3 2- 5 0
St ai nl e s s St e el
C a st Ir o n
5 0- 8 0
8 0- 1 5 0
O R DE R N O. V D D 3 5- 8. 0 V D D 3 5- 8. 1 V D D 3 5- 8. 2 V D D 3 5- 8. 3 V D D 3 5- 8. 4 V D D 3 5- 8. 5 V D D 3 5- 8. 6 V D D 3 5- 8. 7 V D D 3 5- 8. 8 V D D 3 5- 8. 9 V D D 3 5- 9. 0 V D D 3 5- 9. 1 V D D 3 5- 9. 2 V D D 3 5- 9. 3 V D D 3 5- 9. 4 V D D 3 5- 9. 5 V D D 3 5- 9. 6 V D D 3 5- 9. 7 V D D 3 5- 9. 8 V D D 3 5- 9. 9 V D D 3 5- 1 0. 0 V D D 3 5- 1 0. 2 V D D 3 5- 1 0. 5 V D D 3 5- 1 0. 8 V D D 3 5- 1 1. 0 V D D 3 5- 1 1. 5 V D D 3 5- 1 2. 0 V D D 3 5- 1 2. 5 V D D 3 5- 1 3. 0 V D D 3 5- 1 3. 5 V D D 3 5- 1 4. 0 V D D 3 5- 1 4. 5 V D D 3 5- 1 5. 0 V D D 3 5- 1 5. 5 V D D 3 5- 1 6. 0 V D D 3 5- 1 6. 5 V D D 3 5- 1 7. 0 V D D 3 5- 1 7. 5 V D D 3 5- 1 8. 0 V D D 3 5- 1 8. 5 V D D 3 5- 1 9. 0 V D D 3 5- 1 9. 5 V D D 3 5- 2 0. 0
Dc m7
Lc m m 41 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 47 55 55 55 55 55 55 60 60 60 60 65 65 65 65 73 73 73 73 79 79 79 79
L m m 79 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 89 102 102 102 102 102 102 107 107 107 107 11 5 11 5 11 5 11 5 123 123 123 123 131 131 131 131
d h6 8 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 12 12 12 12 12 12 14 14 14 14 16 16 16 16 18 18 18 18 20 20 20 20
C O DE N O. 6 0 0 8- 1 0 5 1 6 0 0 8- 1 0 5 2 6 0 0 8- 1 0 5 3 6 0 0 8- 1 0 5 4 6 0 0 8- 1 0 5 5 6 0 0 8- 1 0 5 6 6 0 0 8- 1 0 5 7 6 0 0 8- 1 0 5 8 6 0 0 8- 1 0 5 9 6 0 0 8- 1 0 6 0 6 0 0 8- 1 0 6 1 6 0 0 8- 1 0 6 2 6 0 0 8- 1 0 6 3 6 0 0 8- 1 0 6 4 6 0 0 8- 1 0 6 5 6 0 0 8- 1 0 6 6 6 0 0 8- 1 0 6 7 6 0 0 8- 1 0 6 8 6 0 0 8- 1 0 6 9 6 0 0 8- 1 0 7 0 6 0 0 8- 1 0 7 1 6 0 0 8- 1 0 7 2 6 0 0 8- 1 0 7 3 6 0 0 8- 1 0 7 4 6 0 0 8- 1 0 7 5 6 0 0 8- 1 0 7 6 6 0 0 8- 1 0 7 7 6 0 0 8- 1 0 7 8 6 0 0 8- 1 0 7 9 6 0 0 8- 1 0 8 0 6 0 0 8- 1 0 8 1 6 0 0 8- 1 0 8 2 6 0 0 8- 1 0 8 3 6 0 0 8- 1 0 8 4 6 0 0 8- 1 0 8 5 6 0 0 8- 1 0 8 6 6 0 0 8- 1 0 8 7 6 0 0 8- 1 0 8 8 6 0 0 8- 1 0 8 9 6 0 0 8- 1 0 9 0 6 0 0 8- 1 0 9 1 6 0 0 8- 1 0 9 2 6 0 0 8- 1 0 9 3
C U T TI N G T O O L
F44
P E R F O R M A N C E D RI L L S
Str ai g ht S h a n k( Or d er N o. V D D 3 5- Di a)
Oil- F e e d Hi g h P erf or m a n c e Drll s
Str ai g ht S h a n k ( Or d er N o. V D D 3 6- Di a) O R DE R N O. V D D 3 6- 3. 0 V D D 3 6- 3. 1 V D D 3 6- 3. 2 V D D 3 6- 3. 3 V D D 3 6- 3. 4 V D D 3 6- 3. 5 V D D 3 6- 3. 6 V D D 3 6- 3. 7 V D D 3 6- 3. 8 V D D 3 6- 3. 9 V D D 3 6- 4. 0 V D D 3 6- 4. 1 V D D 3 6- 4. 2 V D D 3 6- 4. 3 V D D 3 6- 4. 4 V D D 3 6- 4. 5 V D D 3 6- 4. 6 V D D 3 6- 4. 7 V D D 3 6- 4. 8 V D D 3 6- 4. 9 V D D 3 6- 5. 0 V D D 3 6- 5. 1 V D D 3 6- 5. 2 V D D 3 6- 5. 3 V D D 3 6- 5. 4 V D D 3 6- 5. 5 V D D 3 6- 5. 6 V D D 3 6- 5. 7 V D D 3 6- 5. 8 V D D 3 6- 5. 9 V D D 3 6- 6. 0 V D D 3 6- 6. 1 V D D 3 6- 6. 2 V D D 3 6- 6. 3 V D D 3 6- 6. 4 V D D 3 6- 6. 5 V D D 3 6- 6. 6 V D D 3 6- 6. 7 V D D 3 6- 6. 8 V D D 3 6- 6. 9 V D D 3 6- 7. 0 V D D 3 6- 7. 1 V D D 3 6- 7. 2 V D D 3 6- 7. 3 V D D 3 6- 7. 4 V D D 3 6- 7. 5 V D D 3 6- 7. 6 V D D 3 6- 7. 7 V D D 3 6- 7. 8 V D D 3 6- 7. 9
F45
Dc m7
C U T TI N G T O O L
Lc m m 28 28 28 28 28 28 28 28 36 36 36 36 36 36 36 36 36 36 44 44 44 44 44 44 44 44 44 44 44 44 44 53 53 53 53 53 53 53 53 53 53 53 53 53 53 53 53 53 53 53
L m m 66 66 66 66 66 66 66 66 74 74 74 74 74 74 74 74 74 74 82 82 82 82 82 82 82 82 82 82 82 82 82 91 91 91 91 91 91 91 91 91 91 91 91 91 91 91 91 91 91 53
U nit: m m
d h6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8
C O DE N O. 6 0 0 8- 1 1 0 1 6 0 0 8- 1 1 0 2 6 0 0 8- 1 1 0 3 6 0 0 8- 1 1 0 4 6 0 0 8- 1 1 0 5 6 0 0 8- 1 1 0 6 6 0 0 8- 1 1 0 7 6 0 0 8- 1 1 0 8 6 0 0 8- 1 1 0 9 6 0 0 8- 1 1 1 0 6 0 0 8- 1 1 1 1 6 0 0 8- 1 1 1 2 6 0 0 8- 1 1 1 3 6 0 0 8- 1 1 1 4 6 0 0 8- 1 1 1 5 6 0 0 8- 1 1 1 6 6 0 0 8- 1 1 1 7 6 0 0 8- 1 1 1 8 6 0 0 8- 1 1 1 9 6 0 0 8- 1 1 2 0 6 0 0 8- 1 1 2 1 6 0 0 8- 1 1 2 2 6 0 0 8- 1 1 2 3 6 0 0 8- 1 1 2 4 6 0 0 8- 1 1 2 5 6 0 0 8- 1 1 2 6 6 0 0 8- 1 1 2 7 6 0 0 8- 1 1 2 8 6 0 0 8- 1 1 2 9 6 0 0 8- 1 1 3 0 6 0 0 8- 1 1 3 1 6 0 0 8- 1 1 3 2 6 0 0 8- 1 1 3 3 6 0 0 8- 1 1 3 4 6 0 0 8- 1 1 3 5 6 0 0 8- 1 1 3 6 6 0 0 8- 1 1 3 7 6 0 0 8- 1 1 3 8 6 0 0 8- 1 1 3 9 6 0 0 8- 1 1 4 0 6 0 0 8- 1 1 4 1 6 0 0 8- 1 1 4 2 6 0 0 8- 1 1 4 3 6 0 0 8- 1 1 4 4 6 0 0 8- 1 1 4 5 6 0 0 8- 1 1 4 6 6 0 0 8- 1 1 4 7 6 0 0 8- 1 1 4 8 6 0 0 8- 1 1 4 9 6 0 0 8- 1 1 5 0
W or k M at eri al / V el o cit y m/ mi n C or bi n St e el
L o w- all o y e d St e el (- 2 4 H R C)
Hi- all o y e d St e el (- 3 0 H R C)
H ar d e n e d st e el s ( 3 0- 3 8 H R C)
H ar d e n e d st e el s ( 3 8- 4 8 H R C)
8 0- 1 5 0
8 0- 1 5 0
8 0- 1 5 0
4 0- 7 0
3 2- 5 0
St ai nl e s s St e el
C a st Ir o n
5 0- 8 0
8 0- 1 5 0
O R DE R N O. V D D 3 6- 8. 0 V D D 3 6- 8. 1 V D D 3 6- 8. 2 V D D 3 6- 8. 3 V D D 3 6- 8. 4 V D D 3 6- 8. 5 V D D 3 6- 8. 6 V D D 3 6- 8. 7 V D D 3 6- 8. 8 V D D 3 6- 8. 9 V D D 3 6- 9. 0 V D D 3 6- 9. 1 V D D 3 6- 9. 2 V D D 3 6- 9. 3 V D D 3 6- 9. 4 V D D 3 6- 9. 5 V D D 3 6- 9. 6 V D D 3 6- 9. 7 V D D 3 6- 9. 8 V D D 3 6- 9. 9 V D D 3 6- 1 0. 0 V D D 3 6- 1 0. 2 V D D 3 6- 1 0. 5 V D D 3 6- 1 0. 8 V D D 3 6- 1 1. 0 V D D 3 6- 1 1. 5 V D D 3 6- 1 2. 0 V D D 3 6- 1 2. 5 V D D 3 6- 1 3. 0 V D D 3 6- 1 3. 5 V D D 3 6- 1 4. 0 V D D 3 6- 1 4. 5 V D D 3 6- 1 5. 0 V D D 3 6- 1 5. 5 V D D 3 6- 1 6. 0 V D D 3 6- 1 6. 5 V D D 3 6- 1 7. 0 V D D 3 6- 1 7. 5 V D D 3 6- 1 8. 0 V D D 3 6- 1 8. 5 V D D 3 6- 1 9. 0 V D D 3 6- 1 9. 5 V D D 3 6- 2 0. 0
Dc m7
Lc m m 53 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 61 71 71 71 71 71 71 77 77 77 77 83 83 83 83 93 93 93 93 101 101 101 101
L m m 91 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 11 8 11 8 11 8 11 8 11 8 11 8 124 124 124 124 133 133 133 133 143 143 143 143 153 153 153 153
d h6 8 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 12 12 12 12 12 12 14 14 14 14 16 16 16 16 18 18 18 18 20 20 20 20
C O DE N O. 6 0 0 8- 1 1 5 1 6 0 0 8- 1 1 5 2 6 0 0 8- 1 1 5 3 6 0 0 8- 1 1 5 4 6 0 0 8- 1 1 5 5 6 0 0 8- 1 1 5 6 6 0 0 8- 1 1 5 7 6 0 0 8- 1 1 5 8 6 0 0 8- 1 1 5 9 6 0 0 8- 1 1 6 0 6 0 0 8- 1 1 6 1 6 0 0 8- 1 1 6 2 6 0 0 8- 1 1 6 3 6 0 0 8- 1 1 6 4 6 0 0 8- 1 1 6 5 6 0 0 8- 1 1 6 6 6 0 0 8- 1 1 6 7 6 0 0 8- 1 1 6 8 6 0 0 8- 1 1 6 9 6 0 0 8- 1 1 7 0 6 0 0 8- 1 1 7 1 6 0 0 8- 1 1 7 2 6 0 0 8- 1 1 7 3 6 0 0 8- 1 1 7 4 6 0 0 8- 1 1 7 5 6 0 0 8- 1 1 7 6 6 0 0 8- 1 1 7 7 6 0 0 8- 1 1 7 8 6 0 0 8- 1 1 7 9 6 0 0 8- 1 1 8 0 6 0 0 8- 1 1 8 1 6 0 0 8- 1 1 8 2 6 0 0 8- 1 1 8 3 6 0 0 8- 1 1 8 4 6 0 0 8- 1 1 8 5 6 0 0 8- 1 1 8 6 6 0 0 8- 1 1 8 7 6 0 0 8- 1 1 8 8 6 0 0 8- 1 1 8 9 6 0 0 8- 1 1 9 0 6 0 0 8- 1 1 9 1 6 0 0 8- 1 1 9 2 6 0 0 8- 1 1 9 3
Oil- F e e d Hi g h P erf or m a n c e Drll s
O R DE R N O. V D D 3 7- 3. 0 V D D 3 7- 3. 1 V D D 3 7- 3. 2 V D D 3 7- 3. 3 V D D 3 7- 3. 4 V D D 3 7- 3. 5 V D D 3 7- 3. 6 V D D 3 7- 3. 7 V D D 3 7- 3. 8 V D D 3 7- 3. 9 V D D 3 7- 4. 0 V D D 3 7- 4. 1 V D D 3 7- 4. 2 V D D 3 7- 4. 3 V D D 3 7- 4. 4 V D D 3 7- 4. 5 V D D 3 7- 4. 6 V D D 3 7- 4. 7 V D D 3 7- 4. 8 V D D 3 7- 4. 9 V D D 3 7- 5. 0 V D D 3 7- 5. 1 V D D 3 7- 5. 2 V D D 3 7- 5. 3 V D D 3 7- 5. 4 V D D 3 7- 5. 5 V D D 3 7- 5. 6 V D D 3 7- 5. 7 V D D 3 7- 5. 8 V D D 3 7- 5. 9 V D D 3 7- 6. 0 V D D 3 7- 6. 1 V D D 3 7- 6. 2 V D D 3 7- 6. 3 V D D 3 7- 6. 4 V D D 3 7- 6. 5 V D D 3 7- 6. 6 V D D 3 7- 6. 7 V D D 3 7- 6. 8 V D D 3 7- 6. 9 V D D 3 7- 7. 0 V D D 3 7- 7. 1 V D D 3 7- 7. 2 V D D 3 7- 7. 3 V D D 3 7- 7. 4 V D D 3 7- 7. 5 V D D 3 7- 7. 6 V D D 3 7- 7. 7 V D D 3 7- 7. 8 V D D 3 7- 7. 9
Dc m7
Lc m m 34 34 34 34 34 34 34 34 45 45 45 45 45 45 45 45 45 45 57 57 57 57 57 57 57 57 57 57 57 57 57 66 66 66 66 66 66 66 66 66 66 76 76 76 76 76 76 76 76 76
L m m 74 74 74 74 74 74 74 74 85 85 85 85 85 85 85 85 85 85 97 97 97 97 97 97 97 97 97 97 97 97 97 106 106 106 106 106 106 106 106 106 106 11 6 11 6 11 6 11 6 11 6 11 6 11 6 11 6 11 6
U nit: m m
d h6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8 8
C O DE N O. 6 0 0 8- 1 2 0 1 6 0 0 8- 1 2 0 2 6 0 0 8- 1 2 0 3 6 0 0 8- 1 2 0 4 6 0 0 8- 1 2 0 5 6 0 0 8- 1 2 0 6 6 0 0 8- 1 2 0 7 6 0 0 8- 1 2 0 8 6 0 0 8- 1 2 0 9 6 0 0 8- 1 2 1 0 6 0 0 8- 1 2 1 1 6 0 0 8- 1 2 1 2 6 0 0 8- 1 2 1 3 6 0 0 8- 1 2 1 4 6 0 0 8- 1 2 1 5 6 0 0 8- 1 2 1 6 6 0 0 8- 1 2 1 7 6 0 0 8- 1 2 1 8 6 0 0 8- 1 2 1 9 6 0 0 8- 1 2 2 0 6 0 0 8- 1 2 2 1 6 0 0 8- 1 2 2 2 6 0 0 8- 1 2 2 3 6 0 0 8- 1 2 2 4 6 0 0 8- 1 2 2 5 6 0 0 8- 1 2 2 6 6 0 0 8- 1 2 2 7 6 0 0 8- 1 2 2 8 6 0 0 8- 1 2 2 9 6 0 0 8- 1 2 3 0 6 0 0 8- 1 2 3 1 6 0 0 8- 1 2 3 2 6 0 0 8- 1 2 3 3 6 0 0 8- 1 2 3 4 6 0 0 8- 1 2 3 5 6 0 0 8- 1 2 3 6 6 0 0 8- 1 2 3 7 6 0 0 8- 1 2 3 8 6 0 0 8- 1 2 3 9 6 0 0 8- 1 2 4 0 6 0 0 8- 1 2 4 1 6 0 0 8- 1 2 4 2 6 0 0 8- 1 2 4 3 6 0 0 8- 1 2 4 4 6 0 0 8- 1 2 4 5 6 0 0 8- 1 2 4 6 6 0 0 8- 1 2 4 7 6 0 0 8- 1 2 4 8 6 0 0 8- 1 2 4 9 6 0 0 8- 1 2 5 0
W or k M at eri al / V el o cit y m/ mi n C or bi n St e el s
L o w- all o y e d St e el (- 2 4 H R C)
Hi- all o y e d St e el (- 3 0 H R C)
H ar d e n e d st e el s ( 3 0- 3 8 H R C)
H ar d e n e d st e el s ( 3 8- 4 8 H R C)
8 0- 1 5 0
8 0- 1 5 0
8 0- 1 5 0
4 0- 7 0
3 2- 5 0
St ai nl e s s St e el
C a st Ir o n
5 0- 8 0
8 0- 1 5 0
O R DE R N O. V D D 3 7- 8. 0 V D D 3 7- 8. 1 V D D 3 7- 8. 2 V D D 3 7- 8. 3 V D D 3 7- 8. 4 V D D 3 7- 8. 5 V D D 3 7- 8. 6 V D D 3 7- 8. 7 V D D 3 7- 8. 8 V D D 3 7- 8. 9 V D D 3 7- 9. 0 V D D 3 7- 9. 1 V D D 3 7- 9. 2 V D D 3 7- 9. 3 V D D 3 7- 9. 4 V D D 3 7- 9. 5 V D D 3 7- 9. 6 V D D 3 7- 9. 7 V D D 3 7- 9. 8 V D D 3 7- 9. 9 V D D 3 7- 1 0. 0 V D D 3 7- 1 0. 2 V D D 3 7- 1 0. 5 V D D 3 7- 1 0. 8 V D D 3 7- 1 1. 0 V D D 3 7- 1 1. 5 V D D 3 7- 1 2. 0 V D D 3 7- 1 2. 5 V D D 3 7- 1 3. 0 V D D 3 7- 1 3. 5 V D D 3 7- 1 4. 0 V D D 3 7- 1 4. 5 V D D 3 7- 1 5. 0 V D D 3 7- 1 5. 5 V D D 3 7- 1 6. 0 V D D 3 7- 1 6. 5 V D D 3 7- 1 7. 0 V D D 3 7- 1 7. 5 V D D 3 7- 1 8. 0 V D D 3 7- 1 8. 5 V D D 3 7- 1 9. 0 V D D 3 7- 1 9. 5 V D D 3 7- 2 0. 0
Dc m7
Lc m m 76 95 95 95 95 95 95 95 95 95 95 95 95 95 95 95 95 95 95 95 95 11 4 11 4 11 4 11 4 11 4 11 4 133 133 133 133 152 152 152 152 171 171 171 171 190 190 190 190
L m m 11 6 139 139 139 139 139 139 139 139 139 139 139 139 139 139 139 139 139 139 139 139 163 163 163 163 163 163 182 182 182 182 204 204 204 204 223 223 223 223 244 244 244 244
d h6 8 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 10 12 12 12 12 12 12 14 14 14 14 16 16 16 16 18 18 18 18 20 20 20 20
C O DE N O. 6 0 0 8- 1 2 5 1 6 0 0 8- 1 2 5 2 6 0 0 8- 1 2 5 3 6 0 0 8- 1 2 5 4 6 0 0 8- 1 2 5 5 6 0 0 8- 1 2 5 6 6 0 0 8- 1 2 5 7 6 0 0 8- 1 2 5 8 6 0 0 8- 1 2 5 9 6 0 0 8- 1 2 6 0 6 0 0 8- 1 2 6 1 6 0 0 8- 1 2 6 2 6 0 0 8- 1 2 6 3 6 0 0 8- 1 2 6 4 6 0 0 8- 1 2 6 5 6 0 0 8- 1 2 6 6 6 0 0 8- 1 2 6 7 6 0 0 8- 1 2 6 8 6 0 0 8- 1 2 6 9 6 0 0 8- 1 2 7 0 6 0 0 8- 1 2 7 1 6 0 0 8- 1 2 7 2 6 0 0 8- 1 2 7 3 6 0 0 8- 1 2 7 4 6 0 0 8- 1 2 7 5 6 0 0 8- 1 2 7 6 6 0 0 8- 1 2 7 7 6 0 0 8- 1 2 7 8 6 0 0 8- 1 2 7 9 6 0 0 8- 1 2 8 0 6 0 0 8- 1 2 8 1 6 0 0 8- 1 2 8 2 6 0 0 8- 1 2 8 3 6 0 0 8- 1 2 8 4 6 0 0 8- 1 2 8 5 6 0 0 8- 1 2 8 6 6 0 0 8- 1 2 8 7 6 0 0 8- 1 2 8 8 6 0 0 8- 1 2 8 9 6 0 0 8- 1 2 9 0 6 0 0 8- 1 2 9 1 6 0 0 8- 1 2 9 2 6 0 0 8- 1 2 9 3
C U T TI N G T O O L
F46
P E R F O R M A N C E D RI L L S
Str ai g ht S h a n k ( Or d er N o. V D D 3 7- Di a)
M a c hi n e R e a m er s
W or k M at eri al / V el o cit y m/ mi n C or bi n St e el
L o w- all o y e d St e el (- 2 4 H R C)
1 0- 2 0
Hi- all o y e d St e el (- 3 0 H R C)
1 0- 2 0
H ar d e n e d st e el s ( 3 0- 3 8 H R C)
8- 1 5
H ar d e n e d st e el s ( 3 8- 4 8 H R C)
5- 1 0
4- 1 0
St ai nl e s s St e el
C a st Ir o n
8- 1 5
Al u mi ni u m
8- 1 8
1 5- 3 0
1 0- 2 5
※ ※
Str ai g ht S h a n k ( Or d er N o. V R 3 0 0- Di a) O R DE R N O. V R 3 0 0- 3. 0 V R 3 0 0- 3. 5 V R 3 0 0- 4. 0 V R 3 0 0- 4. 5 V R 3 0 0- 5. 0 V R 3 0 0- 6. 0 V R 3 0 0- 7. 0 V R 3 0 0- 8. 0 V R 3 0 0- 9. 0 V R 3 0 0- 1 0. 0 V R 3 0 0- 1 1. 0
Dc H7
Lc m m 15 18 19 21 23 26 31 33 36 38 41
L m m 61 70 75 80 86 93 109 11 7 125 133 142
d
m m
U nit: m m
Z t e et h 4 4 4 4 6 6 6 6 6 6 6
C O DE N O. 6 0 0 7- 8 0 1 6 0 0 7- 8 0 2 6 0 0 7- 8 0 3 6 0 0 7- 8 0 4 6 0 0 7- 8 0 5 6 0 0 7- 8 0 6 6 0 0 7- 8 0 7 6 0 0 7- 8 0 8 6 0 0 7- 8 0 9 6 0 0 7- 8 1 0 6 0 0 7- 8 1 1
O R DE R N O. V R 3 0 0- 1 2. 0 V R 3 0 0- 1 3. 0 V R 3 0 0- 1 4. 0 V R 3 0 0- 1 5. 0 V R 3 0 0- 1 6. 0 V R 3 0 0- 1 8. 0 V R 3 0 0- 2 0. 0
Dc H7
Lc m m 44 44 47 50 52 56 60
L m m 151 151 160 162 170 182 195
d m m
M a c hi n e R e a m er s
Z t e et h 6 6 6 6 6 6 6
C O DE N O. 6 0 0 7- 8 1 2 6 0 0 7- 8 1 3 6 0 0 7- 8 1 4 6 0 0 7- 8 1 5 6 0 0 7- 8 1 6 6 0 0 7- 8 1 7 6 0 0 7- 8 1 8
C ar bi d e
I n St e p s of 0. 5 m m
W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s H ar d e n e d st e el s St ai nl e s s st e el s < 48 H R C
7- 2 5
7- 1 5
H ar d e n e d st e el s 4 8- 5 6 H R C
5- 1 0
5- 1 0
Str ai g ht S h a n k( Or d er N o. V R 3 0 1- D c) O R DE R N O. V R 3 0 1- 3. 0 V R 3 0 1- 3. 5 V R 3 0 1- 4. 0 V R 3 0 1- 4. 5 V R 3 0 1- 5. 0 V R 3 0 1- 5. 5 V R 3 0 1- 6. 0 V R 3 0 1- 7. 0 V R 3 0 1- 8. 0 V R 3 0 1- 9. 0 V R 3 0 1- 1 0. 0
F47
Dc H7
Lc m m 15 18 19 21 23 26 26 31 33 36 38
C U T TI N G T O O L
L m m 61 70 75 80 86 93 93 109 11 7 125 133
d
m m
Z t e et h 4 4 4 4 6 6 6 6 6 6 6
Ir o n
Tit a ni u m
Ni c k el
1 0- 2 2
1 0- 2 5
5- 2 0
U nit: m m
C O DE N O. 6 0 0 7- 3 9 2 6 0 0 7- 3 9 3 6 0 0 7- 3 9 4 6 0 0 7- 3 9 5 6 0 0 7- 3 9 6 6 0 0 7- 3 9 7 6 0 0 7- 3 9 8 6 0 0 7- 4 0 0 6 0 0 7- 4 0 2 6 0 0 7- 4 0 4 6 0 0 7- 4 0 6
O R DE R N O. V R 3 0 1- 1 1. 0 V R 3 0 1- 1 2. 0 V R 3 0 1- 1 3. 0 V R 3 0 1- 1 4. 0 V R 3 0 1- 1 5. 0 V R 3 0 1- 1 6. 0 V R 3 0 1- 1 7. 0 V R 3 0 1- 1 8. 0 V R 3 0 1- 1 9. 0 V R 3 0 1- 2 0. 0
Dc H7
Lc m m 41 44 44 47 50 52 54 56 58 60
Al u mi ni u m
3 0- 4 5
L m m 142 151 151 160 162 170 175 182 189 195
d m m
2 0- 5 0
Z t e et h 6 6 6 6 6 6 6 6 6 6
C O DE N O. 6 0 0 7- 4 0 8 6 0 0 7- 4 1 0 6 0 0 7- 4 1 2 6 0 0 7- 4 1 4 6 0 0 7- 4 1 6 6 0 0 7- 4 1 8 6 0 0 7- 4 1 9 6 0 0 7- 4 2 0 6 0 0 7- 4 2 1 6 0 0 7- 4 2 2
M a c hi n e R e a m er s L o n g L e n gt h
W or k M at eri al / V el o cit y m/ mi n C or bi n St e el
L o w- all o y e d St e el (- 2 4 H R C)
1 0- 2 0
Hi- all o y e d St e el (- 3 0 H R C)
1 0- 2 0
H ar d e n e d st e el s ( 3 0- 3 8 H R C)
8- 1 5
H ar d e n e d st e el s ( 3 8- 4 8 H R C)
5- 1 0
St ai nl e s s St e el
4- 1 0
C a st Ir o n
8- 1 5
Al u mi ni u m
8- 1 8
1 5- 3 0
1 0- 2 5
※ ※
L o n g L e n gt h ( Or d er N o. V R C 0 2- Di a = V R 3 0 2- Di a) O R DE R N O. V R C 0 2- 3. 0 V R C 0 2- 3. 5 V R C 0 2- 4. 0 V R C 0 2- 4. 5 V R C 0 2- 5. 0 V R C 0 2- 6. 0 V R C 0 2- 7. 0 V R C 0 2- 8. 0
Dc H7
Lc m m 15 18 19 21 23 26 31 33
L d m m m m 100 11 2 11 9 126 132 139 156 165
Z t e et h 4 4 4 4 6 6 6 6
R E F. N O.
U nit: m m
C O DE N O. 6 0 0 8- 8 2 0 6 0 0 8- 8 2 1 6 0 0 8- 8 2 2 6 0 0 8- 8 2 3 6 0 0 8- 8 2 4 6 0 0 8- 8 2 5 6 0 0 8- 8 2 6 6 0 0 8- 8 2 7
O R DE R N O. V R C 0 2- 9. 0 V R C 0 2- 1 0. 0 V R C 0 2- 1 2. 0 V R C 0 2- 1 4. 0 V R C 0 2- 1 6. 0 V R C 0 2- 1 8. 0 V R C 0 2- 2 0. 0
Dc H7
Lc m m 36 38 44 47 52 56 60
L d m m m m 175 184 205 214 227 241 14 254 16
Z t e et h 6 6 6 6 6 6 6
C O DE N O. 6 0 0 8- 8 2 8 6 0 0 8- 8 2 9 6 0 0 8- 8 3 0 6 0 0 8- 8 3 1 6 0 0 8- 8 3 2 6 0 0 8- 8 3 3 6 0 0 8- 8 3 4
R E F. N O.
M A C HI N E R E A M E R S
M a c hi n e R e a m er s C ar bi d e Ti p p e d
W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s H ar d e n e d st e el s St ai nl e s s st e el s < 48 H R C
7- 2 5
7- 1 5
H ar d e n e d st e el s 4 8- 5 6 H R C
5- 1 0
5- 1 0
T a p er S h a n k( Or d er N o. V R 3 0 3- D c) O R DE R N O. V R 3 0 3- 1 0. 0
Dc H7
Ir o n
Tit a ni u m
Ni c k el
1 0- 2 2
1 0- 2 5
5- 2 0
U nit: m m
Lc m m 38
L m m 168
d M T- # M T- 1
Z C O DE t e et h N O. 6 6 0 0 7- 4 3 0
V R 3 0 3- 1 1. 0
41
175
M T- 1
6
6 0 0 7- 4 3 1
V R 3 0 3- 1 2. 0
44
182
M T- 1
6
6 0 0 7- 4 3 2
V R 3 0 3- 1 3. 0
44
182
M T- 1
6
V R 3 0 3- 1 4. 0
47
189
M T- 1
6
V R 3 0 3- 1 5. 0
50
204
M T- 2
V R 3 0 3- 1 6. 0
52
210
V R 3 0 3- 1 7. 0
54
214
V R 3 0 3- 1 8. 0
56
V R 3 0 3- 1 9. 0
58
V R 3 0 3- 2 0. 0
60
O R DE R N O. V R 3 0 3- 2 2. 0
Dc H7
Al u mi ni u m
3 0- 4 5
2 0- 5 0
Z C O DE t e et h N O. 6 6 0 0 7- 4 4 1
Lc m m 64
L m m 237
d M T- # M T- 2
V R 3 0 3- 2 4. 0
68
268
M T- 3
8
6 0 0 7- 4 4 2
V R 3 0 3- 2 5. 0
68
268
M T- 3
8
6 0 0 7- 4 4 3
6 0 0 7- 4 3 3
V R 3 0 3- 2 6. 0
70
273
M T- 3
8
6 0 0 7- 4 4 4
6 0 0 7- 4 3 4
V R 3 0 3- 2 8. 0
71
277
M T- 3
8
6 0 0 7- 4 4 5
6
6 0 0 7- 4 3 5
V R 3 0 3- 3 0. 0
73
281
M T- 3
8
6 0 0 7- 4 4 6
M T- 2
6
6 0 0 7- 4 3 6
V R 3 0 3- 3 2. 0
77
317
M T- 4
8
6 0 0 7- 4 4 7
M T- 2
6
6 0 0 7- 4 3 7
V R 3 0 3- 3 5. 0
78
321
M T- 4
8
6 0 0 7- 4 4 8
219
M T- 2
6
6 0 0 7- 4 3 8
V R 3 0 3- 3 6. 0
79
325
M T- 4
8
6 0 0 7- 4 4 9
223
M T- 2
6
6 0 0 7- 4 3 9
V R 3 0 3- 3 8. 0
81
329
M T- 4
8
6 0 0 7- 4 5 0
228
M T- 2
6
6 0 0 7- 4 4 0
V R 3 0 3- 4 0. 0
81
329
M T- 4
8
6 0 0 7- 4 5 1
C U T TI N G T O O L
F48
M a c hi n e R e a m er s I n St e p s of 0. 1 m m
M a c hi n e R e a m er s ( Or d er N o. V R 0 3 0 8- Di a) O R DE R N O.
Dc H7
Lc m m
L m m
6 7 7 7 8 8 9 9 10 10 11 11 12 12 14 14 14 15 15 15 15 16 16 16 18 18 18 18 19 19 19 19 19 21 21 21 21 21 23 23 23 23 23 23 26 26 26 26 26 26 26 28 28 28 28 28 28 31 31 31
34 36 38 38 40 40 43 43 46 46 49 49 53 53 57 57 57 61 61 61 61 65 65 65 70 70 70 70 75 75 75 75 75 80 80 80 80 80 86 86 86 86 86 86 93 93 93 93 93 93 93 101 101 101 101 101 101 101 109 109
V R 3 0 8- 1. 0 V R 3 0 8- 1. 1 V R 3 0 8- 1. 2 V R 3 0 8- 1. 3 V R 3 0 8- 1. 4 V R 3 0 8- 1. 5 V R 3 0 8- 1. 6 V R 3 0 8- 1. 7 V R 3 0 8- 1. 8 V R 3 0 8- 1. 9 V R 3 0 8- 2. 0 V R 3 0 8- 2. 1 V R 3 0 8- 2. 2 V R 3 0 8- 2. 3 V R 3 0 8- 2. 4 V R 3 0 8- 2. 5 V R 3 0 8- 2. 6 V R 3 0 8- 2. 7 V R 3 0 8- 2. 8 V R 3 0 8- 2. 9 V R 3 0 8- 3. 0 V R 3 0 8- 3. 1 V R 3 0 8- 3. 2 V R 3 0 8- 3. 3 V R 3 0 8- 3. 4 V R 3 0 8- 3. 5 V R 3 0 8- 3. 6 V R 3 0 8- 3. 7 V R 3 0 8- 3. 8 V R 3 0 8- 3. 9 V R 3 0 8- 4. 0 V R 3 0 8- 4. 1 V R 3 0 8- 4. 2 V R 3 0 8- 4. 3 V R 3 0 8- 4. 4 V R 3 0 8- 4. 5 V R 3 0 8- 4. 6 V R 3 0 8- 4. 7 V R 3 0 8- 4. 8 V R 3 0 8- 4. 9 V R 3 0 8- 5. 0 V R 3 0 8- 5. 1 V R 3 0 8- 5. 2 V R 3 0 8- 5. 3 V R 3 0 8- 5. 4 V R 3 0 8- 5. 5 V R 3 0 8- 5. 6 V R 3 0 8- 5. 7 V R 3 0 8- 5. 8 V R 3 0 8- 5. 9 V R 3 0 8- 6. 0 V R 3 0 8- 6. 1 V R 3 0 8- 6. 2 V R 3 0 8- 6. 3 V R 3 0 8- 6. 4 V R 3 0 8- 6. 5 V R 3 0 8- 6. 6 V R 3 0 8- 6. 7 V R 3 0 8- 6. 8 V R 3 0 8- 6. 9
F49
C U T TI N G T O O L
d m m
U nit: m m
Z t e et h
C O DE N O.
4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 4 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6
6 0 0 7- 8 6 1 6 0 0 7- 8 6 2 6 0 0 7- 8 6 3 6 0 0 7- 8 6 4 6 0 0 7- 8 6 5 6 0 0 7- 8 6 6 6 0 0 7- 8 6 7 6 0 0 7- 8 6 8 6 0 0 7- 8 6 9 6 0 0 7- 8 7 0 6 0 0 7- 8 7 1 6 0 0 7- 8 7 2 6 0 0 7- 8 7 3 6 0 0 7- 8 7 4 6 0 0 7- 8 7 5 6 0 0 7- 8 7 6 6 0 0 7- 8 7 7 6 0 0 7- 8 7 8 6 0 0 7- 8 7 9 6 0 0 7- 8 8 0 6 0 0 7- 8 8 1 6 0 0 7- 8 8 2 6 0 0 7- 8 8 3 6 0 0 7- 8 8 4 6 0 0 7- 8 8 5 6 0 0 7- 8 8 6 6 0 0 7- 8 8 7 6 0 0 7- 8 8 8 6 0 0 7- 8 8 9 6 0 0 7- 8 9 0 6 0 0 7- 8 9 1 6 0 0 7- 8 9 2 6 0 0 7- 8 9 3 6 0 0 7- 8 9 4 6 0 0 7- 8 9 5 6 0 0 7- 8 9 6 6 0 0 7- 8 9 7 6 0 0 7- 8 9 8 6 0 0 7- 8 9 9 6 0 0 7- 9 0 0 6 0 0 7- 9 0 1 6 0 0 7- 9 0 2 6 0 0 7- 9 0 3 6 0 0 7- 9 0 4 6 0 0 7- 9 0 5 6 0 0 7- 9 0 6 6 0 0 7- 9 0 7 6 0 0 7- 9 0 8 6 0 0 7- 9 0 9 6 0 0 7- 9 1 0 6 0 0 7- 9 1 1 6 0 0 7- 9 1 2 6 0 0 7- 9 1 3 6 0 0 7- 9 1 4 6 0 0 7- 9 1 5 6 0 0 7- 9 1 6 6 0 0 7- 9 1 7 6 0 0 7- 9 1 8 6 0 0 7- 9 1 9 6 0 0 7- 9 2 0
W or k M at eri al / V el o cit y m/ mi n C or bi n St e el s
L o w- all o y e d St e el (- 2 4 H R C)
Hi- all o y e d St e el (- 3 0 H R C)
H ar d e n e d st e el s ( 3 0- 3 8 H R C)
H ar d e n e d st e el ( 3 8- 4 8 H R C)
1 0- 2 0
1 0- 2 0
8- 1 5
5- 1 0
4- 1 0
St ai nl e s s St e el
C a st Ir o n
Al u mi ni u m
8- 1 5
8- 1 8
1 5- 3 0
O R DE R N O.
Dc H7
V R 3 0 8- 7. 0 V R 3 0 8- 7. 1 V R 3 0 8- 7. 2 V R 3 0 8- 7. 3 V R 3 0 8- 7. 4 V R 3 0 8- 7. 5 V R 3 0 8- 7. 6 V R 3 0 8- 7. 7 V R 3 0 8- 7. 8 V R 3 0 8- 7. 9 V R 3 0 8- 8. 0 V R 3 0 8- 8. 1 V R 3 0 8- 8. 2 V R 3 0 8- 8. 3 V R 3 0 8- 8. 4 V R 3 0 8- 8. 5 V R 3 0 8- 8. 6 V R 3 0 8- 8. 7 V R 3 0 8- 8. 8 V R 3 0 8- 8. 9 V R 3 0 8- 9. 0 V R 3 0 8- 9. 1 V R 3 0 8- 9. 2 V R 3 0 8- 9. 3 V R 3 0 8- 9. 4 V R 3 0 8- 9. 5 V R 3 0 8- 9. 6 V R 3 0 8- 9. 7 V R 3 0 8- 9. 8 V R 3 0 8- 9. 9 V R 3 0 8- 1 0. 0 V R 3 0 8- 1 0. 1 V R 3 0 8- 1 0. 2 V R 3 0 8- 1 0. 3 V R 3 0 8- 1 0. 4 V R 3 0 8- 1 0. 5 V R 3 0 8- 1 0. 6 V R 3 0 8- 1 0. 7 V R 3 0 8- 1 0. 8 V R 3 0 8- 1 0. 9 V R 3 0 8- 1 1. 0 V R 3 0 8- 1 1. 1 V R 3 0 8- 1 1. 2 V R 3 0 8- 1 1. 3 V R 3 0 8- 1 1. 4 V R 3 0 8- 1 1. 5 V R 3 0 8- 1 1. 6 V R 3 0 8- 1 1. 7 V R 3 0 8- 1 1. 8 V R 3 0 8- 1 1. 9 V R 3 0 8- 1 2. 0
Lc m m
L m m
31 31 31 31 31 31 33 33 33 33 33 33 33 33 33 33 36 36 36 36 36 36 36 36 36 36 38 38 38 38 38 38 38 38 38 38 38 41 41 41 41 41 41 41 41 41 41 41 41 44 44
109 109 109 109 109 109 11 7 11 7 11 7 11 7 11 7 11 7 11 7 11 7 11 7 11 7 125 125 125 125 125 125 125 125 125 125 133 133 133 133 133 133 133 133 133 133 133 142 142 142 142 142 142 142 142 142 142 142 142 151 151
1 0- 2 5
d m m
Z t e et h
C O DE N O.
6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6 6
6 0 0 7- 9 2 1 6 0 0 7- 9 2 2 6 0 0 7- 9 2 3 6 0 0 7- 9 2 4 6 0 0 7- 9 2 5 6 0 0 7- 9 2 6 6 0 0 7- 9 2 7 6 0 0 7- 9 2 8 6 0 0 7- 9 2 9 6 0 0 7- 9 3 0 6 0 0 7- 9 3 1 6 0 0 7- 9 3 2 6 0 0 7- 9 3 3 6 0 0 7- 9 3 4 6 0 0 7- 9 3 5 6 0 0 7- 9 3 6 6 0 0 7- 9 3 7 6 0 0 7- 9 3 8 6 0 0 7- 9 3 9 6 0 0 7- 9 4 0 6 0 0 7- 9 4 1 6 0 0 7- 9 4 2 6 0 0 7- 9 4 3 6 0 0 7- 9 4 4 6 0 0 7- 9 4 5 6 0 0 7- 9 4 6 6 0 0 7- 9 4 7 6 0 0 7- 9 4 8 6 0 0 7- 9 4 9 6 0 0 7- 9 5 0 6 0 0 7- 9 5 1 6 0 0 7- 9 5 2 6 0 0 7- 9 5 3 6 0 0 7- 9 5 4 6 0 0 7- 9 5 5 6 0 0 7- 9 5 6 6 0 0 7- 9 5 7 6 0 0 7- 9 5 8 6 0 0 7- 9 5 9 6 0 0 7- 9 6 0 6 0 0 7- 9 6 1 6 0 0 7- 9 6 2 6 0 0 7- 9 6 3 6 0 0 7- 9 6 4 6 0 0 7- 9 6 5 6 0 0 7- 9 6 6 6 0 0 7- 9 6 7 6 0 0 7- 9 6 8 6 0 0 7- 9 6 9 6 0 0 7- 9 7 0 6 0 0 7- 9 7 1
S oi d C ar bi d e E n d Mill s F or < 4 8 H R C
2 Fl ut e Mi cr o Gr ai n 1 0 % C o Gr a d e
IS O C O DE
C A R BI D E
W or k M at eri al / V el o cit y m/ mi n
V E112 F V E127F
N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
6 0- 2 5 0 6 0- 1 8 0
H ar d e n e d st e el s < 48 H R C
3 0- 1 0 0 2 0- 8 0
6 0- 8 0 4 0- 8 0
St u b L e n gt h( Or d er N o. V E 1 1 2 F- Di a) O R DE R N O.
Di a of Mill T ol h 1 0
Tit a ni u m
3 0- 1 5 0 3 0- 1 3 0
Ni c k el
3 0- 1 8 0 3 0- 1 2 0
4 0- 1 2 0 4 0- 1 0 0
1 0 0- 4 5 0 1 0 0- 3 0 0 U nit: m m
S h a n k Di a m m
V E 1 1 2- 1. 0 V E 1 1 2- 1. 5 V E 1 1 2- 2. 0 V E 1 1 2- 2. 5 V E 1 1 2- 3. 0 V E 1 1 2- 3. 5 V E 1 1 2- 4. 5 V E 1 1 2- 5. 0 V E 1 1 2- 5. 5 V E 1 1 2- 6. 0
Ir o n
Fl ut e L e n gt h m m
O v er all L e n gt h m m
C O DE N O.
38 38 38 38 38 50 50 50 50 50
6 0 0 7- 0 0 1 6 0 0 7- 0 0 2 6 0 0 7- 0 0 3 6 0 0 7- 0 0 4 6 0 0 7- 0 0 5 6 0 0 7- 0 0 6 6 0 0 7- 0 0 8 6 0 0 7- 0 0 9 6 0 0 7- 0 1 0 6 0 0 7- 0 1 1
3 3 3 3 3 4 5 5 6 6
S oi d C ar bi d e E n d Mill s F or < 4 8 H R C
4 Fl ut e Mi cr o Gr ai n 1 0 % C o Gr a d e
IS O C O DE
C A R BI D E
W or k M at eri al / V el o cit y m/ mi n O R DE R N O. V E114 F
N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s St ai nl e s s st e el s
6 0- 2 5 0
H ar d e n e d st e el s < 48 H R C
3 0- 1 0 0
6 0- 8 0
Ir o n
Tit a ni u m
3 0- 1 5 0
Ni c k el
3 0- 1 8 0
4 0- 1 2 0
1 0 0- 4 5 0
St u b L e n gt h( Or d er N o. V E 1 1 4 F- Di a) O R DE R N O.
V E 1 1 4- 1. 0 V E 1 1 4- 1. 5 V E 1 1 4- 2. 0 V E 1 1 4- 2. 5 V E 1 1 4- 3. 0 V E 1 1 4- 3. 5 V E 1 1 4- 4. 5 V E 1 1 4- 5. 0 V E 1 1 4- 5. 5 V E 1 1 4- 6. 0
Di a of Mill T ol h 1 0
S h a n k Di a m m 3 3 3 3 3 4 5 5 6 6
Fl ut e L e n gt h m m
O v er all L e n gt h m m
C O DE N O.
38 38 38 38 38 50 50 50 50 50
6 0 0 7- 0 8 0 6 0 0 7- 0 8 1 6 0 0 7- 0 8 2 6 0 0 7- 0 8 3 6 0 0 7- 0 8 4 6 0 0 7- 0 8 5 6 0 0 7- 0 8 7 6 0 0 7- 0 8 8 6 0 0 7- 0 8 9 6 0 0 7- 0 9 0
C U T TI N G T O O L
F50
E N D MI L L S
O R DE R N O.
S oli d C ar bi d e E n d Mill s F or < 4 8 H R C
Mi cr o Gr ai n 1 0 % C o Gr a d e 2 Fl ut e
IS O C O DE
C A R BI D E
W or k M at eri al / V el o cit y m/ mi n O R DE R N O.
N o n all o y e d st e el s All o y e d St e el s
V B221F
6 0- 2 5 0
H e at r e si st a nt st e el s St ai nl e s s st e el s
H ar d e n e d st e el s < 48 H R C
3 0- 1 0 0
6 0- 8 0
Ir o n
Tit a ni u m
3 0- 1 5 0
Ni c k el
3 0- 1 8 0
4 0- 1 2 0
1 0 0- 4 5 0
St u b L e n gt h( Or d er N o. V B 2 2 1 F- Di a) O R DE R N O. V B 2 2 1- 1 V B 2 2 1- 1. 5 V B 2 2 1- 2 V B 2 2 1- 2. 5 V B 2 2 1- 3 V B 2 2 1- 3. 5 V B 2 2 1- 4 V B 2 2 1- 4. 5 V B 2 2 1- 5 V B 2 2 1- 5. 5 V B 2 2 1- 6
Di a of Mill T ol h 1 0
U nit: m m
S h a n k Di a m m 3 3 3 3 3 4 4 5 5 6 6
H. S. S. E N D MI L L S
F51
Dc
m m L
m m
d
C O D E N O.
V E S 2- 3. 0
10
55
6
6 0 0 9- 3 0 1
V E S 2- 4. 0
12
55
6
6 0 0 9- 3 0 3
V E S 2- 5. 0
15
60
6
6 0 0 9- 3 0 5
V E S 2- 6. 0
15
60
6
6 0 0 9- 3 0 7
V E S 2- 7. 0
20
70
8
6 0 0 9- 3 0 9
V E S 2- 8. 0
20
70
8
6 0 0 9- 3 1 1
V E S 2- 9. 0
25
80
10
6 0 0 9- 3 1 3
V E S 2- 1 0. 0
25
80
10
6 0 0 9- 3 1 5
V E S 2- 1 2. 0
30
90
12
6 0 0 9- 3 1 8
V E S 2- 1 4. 0
35
95
12
6 0 0 9- 3 2 0
V E S 2- 1 6. 0
40
105
16
6 0 0 9- 3 2 2
V E S 2- 1 8. 0
40
105
16
6 0 0 9- 3 2 4
V E S 2- 2 0. 0
45
11 5
20
6 0 0 9- 3 2 6
C U T TI N G T O O L
Lc
O v er all L e n gt h m m 38 38 38 38 38 50 50 50 50 50 50
C O DE N O. 6 0 0 7- 1 6 0 6 0 0 7- 1 6 1 6 0 0 7- 1 6 2 6 0 0 7- 1 6 3 6 0 0 7- 1 6 4 6 0 0 7- 1 6 5 6 0 0 7- 1 6 6 6 0 0 7- 1 6 7 6 0 0 7- 1 6 8 6 0 0 7- 1 6 9 6 0 0 7- 1 7 0
M A T E RI A L H. S. S. + C O
H. S. S. 4 F L U T E E N D MI L L
H. S. S. 2 F L U T E E N D MI L L O R D E R N O.
Fl ut e L e n gt h m m
O R D E R N O. V E S 4- 3. 0 V E S 4- 3. 5 V E S 4- 4. 0 V E S 4- 4. 5 V E S 4- 5. 0 V E S 4- 6. 0 V E S 4- 7. 0 V E S 4- 8. 0 V E S 4- 9. 0 V E S 4- 1 0. 0 V E S 4- 1 2. 0 V E S 4- 1 3. 0 V E S 4- 1 4. 0 V E S 4- 1 5. 0 V E S 4- 1 6. 0 V E S 4- 1 7. 0 V E S 4- 1 8. 0 V E S 4- 1 9. 0 V E S 4- 2 0. 0
Dc
Lc
m m L m m 10 55 12 60 12 60 15 60 15 60 15 60 20 70 20 70 25 80 25 80 30 90 35 95 35 95 40 105 40 105 40 105 40 105 45 11 5 45 11 5
d 6 8 8 8 8 8 8 8 10 10 12 12 12 16 16 16 16 20 20
C O D E N O. 6 0 0 9- 4 0 1 6 0 0 9- 4 0 2 6 0 0 9- 4 0 3 6 0 0 9- 4 0 4 6 0 0 9- 4 0 5 6 0 0 9- 4 0 7 6 0 0 9- 4 0 9 6 0 0 9- 4 1 1 6 0 0 9- 4 1 3 6 0 0 9- 4 1 5 6 0 0 9- 4 1 8 6 0 0 9- 4 1 9 6 0 0 9- 4 2 0 6 0 0 9- 4 2 1 6 0 0 9- 4 2 2 6 0 0 9- 4 2 3 6 0 0 9- 4 2 4 6 0 0 9- 4 2 5 6 0 0 9- 4 2 6
4 Fl ut e C ar bi d e E n d Mill S et V E 1 2 4- B 1 2 P C S/ S E T I n W o o d e n B o x
O R D E R N O. V E 1 2 4- B
C O D E N O. 6 0 0 7- 2 5 6
C A R BI D E
S E T I N C L U DI N G
4 Fl ut e C ar bi d e E n d Mill S et V E 1 2 4- A 1 8 P C S/ S E T I n W o o d e n B o x
O R D E R N O. V E 1 2 4- A
C O D E N O. 6 0 0 7- 2 5 7
S E T I N C L U DI N G
E N D MI L L S
C A R BI D E
2 Fl ut e C ar bi d e B all N o s e E n d Mill S et V B 2 2 2- A 9 P C S/ S E T I n W o o d e n B o x
O R D E R N O. V B 2 2 2- A
C O D E N O. 6 0 0 7- 2 5 8
C A R BI D E
S E T I N C L U DI N G V B 2 2 2- 4 X 3 P C S V B 2 2 2- 6 X 3 P C S V B 2 2 2- 8 X 3 P C S
C U T TI N G T O O L
F52
H a n d R e a m er s - H S S
H. S. S.
I D L
T ot al L e n gt h L 72
BL A DE I 40
BL A DE N 6
C O D E N O.
V H M- 0 3
BL A DE D 3
V H M- 0 4
4
80
40
6
6 0 0 9- 0 0 2
V H M- 0 5
5
90
45
6
6 0 0 9- 0 0 3
V H M- 0 6
6
100
50
6
6 0 0 9- 0 0 4
V H M- 0 7
7
105
55
6
6 0 0 9- 0 0 5
V H M- 0 8
8
11 5
60
6
6 0 0 9- 0 0 6
O R D E R N O.
6 0 0 9- 0 0 1
V H M- 0 9
9
125
65
6
6 0 0 9- 0 0 7
V H M- 1 0
10
130
70
6
6 0 0 9- 0 0 8
V H M- 1 1
11
140
75
6
6 0 0 9- 0 0 9
V H M- 1 2
12
150
75
6
6 0 0 9- 0 1 0
C o m bi n e d Drill A n d C o u nt er si n k
M at eri al: 6 5 4 2 A
HSS
DI N 3 3 3
d Dc
Lc L W or k M at eri al / V el o cit y m/ mi n N o n all o y e d st e el s All o y e d St e el s
H e at r e si st a nt st e el s H ar d e n e d st e el s St ai nl e s s st e el s < 48 H R C
3 0- 8 0
2 0- 6 0
O R D E R N O.
1 5- 2 5
Dc
V D S- 1. 6 V D S- 2. 0
1 0- 2 0
Lc
Ir o n
Tit a ni u m
Ni c k el
4 0- 1 0 0
2 0- 4 0
1 5- 4 0
L
2 2 0
40
Al u mi ni u m
6 0- 3 0 0
8 0- 4 0 0
d
C O D E N O.
4
6 0 0 8- 8 4 0
5
6 0 0 8- 8 4 1
V D S- 2. 5
45
V D S- 3. 1 5
50
8
6 0 0 8- 8 4 3
56
10
6 0 0 8- 8 4 4
V D S- 4. 0
F53
H ar d e n e d st e el s 4 8- 5 6 H R C
C U T TI N G T O O L
5
6 0 0 8- 8 4 2
A dj u st a bl e R e a m er s
U ni q u e Q u alit y, W orl d St a n d ar d
F e at ur e s A dj u st a bl e R e a m er s
O R D E R N O.
R a n g e of A dj u st m e nt ( m m)
O v er all L e n gt h ( m m)
Bl a d e L e n gt h ( m m)
W ei g ht ( k g s)
C O D E N O.
V A R- 6 3 5
6. 3 5 ~ 7. 1 5
83
35
0. 0 1 3
6 0 0 9- 0 2 1
V A R- 7 1 5
7. 1 5 ~ 7. 9 5
91
35
0. 0 1 7
6 0 0 9- 0 2 2
V A R- 7 9 5
7. 9 5 ~ 8. 7 0
107
38
0. 0 2 6
6 0 0 9- 0 2 3
V A R- 8 7 0
8. 7 0 ~ 9. 5 0
11 2
38
0. 0 3 0
6 0 0 9- 0 2 4
V A R- 1 6 7 5
1 6. 7 5 ~ 1 8. 2 5
172
56
0. 1 7 2
6 0 0 9- 0 3 1
V A R- 3 0 2 5
3 0. 2 5 ~ 3 4. 2 5
280
98
0. 9 4 5
6 0 0 9- 0 3 7
V A R- 7 0 0 0
70~85
509
135
9. 8 7
6 0 0 9- 0 4 2
O ut si d e R a di u s S h a p e E n d Mill s
M A T E RI A L: H. S. S.
S uit F or: Pl a sti c m ol d s a n d c utti n g r a di u s s h a p e w or k pi e c e.
O R D E R N O.
R
E n d D. A
O. D.
T ot al L
Shank d
Bl a d e N o. N
C O D E N O.
V C R- 0 1 0
1
6
8
55
10
3
6 0 0 9- 0 6 1
V C R- 0 2 0
2
6
10
60
12
3
6 0 0 9- 0 6 2
V C R- 0 3 0
3
6
12
60
12
3
6 0 0 9- 0 6 3
V C R- 0 4 0
4
6
14
65
12
3
6 0 0 9- 0 6 4
V C R- 0 5 0
5
7
17
70
16
4
6 0 0 9- 0 6 5
V C R- 0 6 0
6
8
20
75
16
4
6 0 0 9- 0 6 6
V C R- 0 7 0
7
8
22
75
16
4
6 0 0 9- 0 6 7
V C R- 0 8 0
8
9
25
85
20
4
6 0 0 9- 0 6 8
V C R- 0 9 0
9
9
27
85
20
4
6 0 0 9- 0 6 9
V C R- 1 0 0
10
10
30
95
25
4
6 0 0 9- 0 7 0
C U T TI N G T O O L
F54
A DJ U ST A BL E R E A M E R S
B e c a u s e of y o u c a n g et di a m et er a dj u st, o n e A dj u st a bl e r e a m er s f u n cti o n p o s si bl e a s d o z e n s of s oli d r e a m er s. T h e s p ar e bl a d e s s a v e y o u a l ot of e c o n o mi z ati o n
C o u nt er b or e E n d Mill s
M A T E RI A L: H. S. S.
G ui d e d
O R D E R N O.
Di m e n si o n m m
V C B- 0 3
G ui d e d
Bl a d e O. D.
Shank D
W ei g ht ( g)
C O D E N O.
3
6
18
6 0 0 9- 0 8 1
V C B- 0 4
4
6
6 0 0 9- 0 8 2
V C B- 0 5
5
6
6 0 0 9- 0 8 3
V C B- 0 6
6
8
6 0 0 9- 0 8 4
V C B- 0 8
8
10
61
6 0 0 9- 0 8 5
V C B- 1 0
10
12
88
6 0 0 9- 0 8 6
V C B- 1 2
12
12
120
6 0 0 9- 0 8 7
V C B- 1 4
14
24
12
165
6 0 0 9- 0 8 8
V C B- 1 6
16
26
12
186
6 0 0 9- 0 8 9
V C B- 1 8
18
28
12
195
6 0 0 9- 0 9 0
M et al Slitti n g S a w s
M A T E R A L: S K H- 9
I N SI D E DI A. 1” ( 2 5. 4 m m) O R D E R N O.
F55
T hi c k n e s s
Ø O. D.
C O D E N O.
O R D E R N O.
V S S- 7 5 0 5
75
6 0 0 9- 1 3 1
V S S- 7 5 0 8
75
V S S- 7 5 1 0
Ø O. D.
C O D E N O.
V S S- 1 0 0 5
100
6 0 0 9- 1 5 1
6 0 0 9- 1 3 2
V S S- 1 0 0 8
100
6 0 0 9- 1 5 2
75
6 0 0 9- 1 3 3
V S S- 1 0 1 0
100
6 0 0 9- 1 5 3
V S S- 7 5 1 2
75
6 0 0 9- 1 3 4
V S S- 1 0 1 2
100
6 0 0 9- 1 5 4
V S S- 7 5 1 5
75
6 0 0 9- 1 3 5
V S S- 1 0 1 5
100
6 0 0 9- 1 5 5
V S S- 7 5 1 8
75
6 0 0 9- 1 3 6
V S S- 1 0 1 8
100
6 0 0 9- 1 5 6
V S S- 7 5 2 0
75
6 0 0 9- 1 3 7
V S S- 1 0 2 0
100
6 0 0 9- 1 5 7
C U T TI N G T O O L
T hi c k n e s s
H. S. S. D RI L L
H S D- 1 0 Ø 1 ~ Ø 1 0 M M 1 9 P C S / S E T
H. S. S. D RI L L S
Wit h C o ati n g
H S D- 1 3 Ø 1 ~ Ø 1 3 M M 2 5 P C S / S E T
O R D E R N O.
P C S/ S ET
W EI G H T ( k g s)
C O D E N O.
H S D- 1 0
19 P C S
6 0 1 0- 0 0 1
H S D- 1 3
25 P C S
6 0 1 0- 0 0 2
C U T TI N G T O O L
F56
H a n d Ta p s
JI S S T A N D A R D
Ti s St a n d ar d
L
L1
D
6 H
JI S S Q UA RE
O R D E R N O.
SI Z E x PI T C H
V H T- H 3 V H T- H 4 V H T- H 5 V H T- H 6 V H T- H 8 V H T- H 1 0 V H T- H 1 2 V H T- H 1 4 V H T- H 1 6 V H T- H 2 0
Ø D
S
4 5
4
6 5 7 8 10 12
15
L
L1
46 52 60 62 70 75 82 88 95 105
18 20 22 24 30 32 38 42 45 50
S pir al Fl ut e d M a c hi n e T a p s
W EI G H T ( k g s)
C O D E N O. 6 0 1 1- 0 0 1 6 0 1 1- 0 0 2 6 0 1 1- 0 0 3 6 0 1 1- 0 0 4 6 0 1 1- 0 0 5 6 0 1 1- 0 0 6 6 0 1 1- 0 0 7 6 0 1 1- 0 0 8 6 0 1 1- 0 0 9 6 0 1 1- 0 1 0
L L1
D
6 H
JI S
S Q UA RE O R D E R N O. V M T- S 3 V M T- S 4 V M T- S 5 V M T- S 6 V M T- S 8 V M T- S 1 0 V M T- S 1 2 V M T- S 1 4 V M T- S 1 6 V M T- S 2 0
SI Z E x PI T C H
Ø D 4 5
S
L 46 52 60 62 70 75 82 88 95 105
4
6 5 7 8 10 12
15
L1 11 13 16 19 22 24 29 30 32 37
W EI G H T ( k g s)
C O D E N O. 6 0 1 1- 0 2 1 6 0 1 1- 0 2 2 6 0 1 1- 0 2 3 6 0 1 1- 0 2 4 6 0 1 1- 0 2 5 6 0 1 1- 0 2 6 6 0 1 1- 0 2 7 6 0 1 1- 0 2 8 6 0 1 1- 0 2 9 6 0 1 1- 0 3 0
S pir al Fl ut e d M a c hi n e T a p s L L1
D
6 H
JI S
S Q UA RE O R D E R N O. V M T- M 3 V M T- M 4 V M T- M 5 V M T- M 6 V M T- M 8 V M T- M 1 0 V M T- M 1 2 V M T- M 1 4 V M T- M 1 6 V M T- M 2 0
F57
SI Z E x PI T C H
C U T TI N G T O O L
Ø D 4 5
S 4
6 5 7
15
8 10 12
L 46 52 60 62 70 75 82 88 95 105
L1 11 13 16 19 22 24 29 30 32 37
W EI G H T ( k g s)
C O D E N O. 6 0 1 1- 0 4 1 6 0 1 1- 0 4 2 6 0 1 1- 0 4 3 6 0 1 1- 0 4 4 6 0 1 1- 0 4 5 6 0 1 1- 0 4 6 6 0 1 1- 0 4 7 6 0 1 1- 0 4 8 6 0 1 1- 0 4 9 6 0 1 1- 0 5 0
H a n d Ta p s
IS O STA N DA R D
L
L1
D
IS O
5 2 9/ 2 2 8 3
S Q UA RE O R D E R N O.
SI Z E x PI T C H
Ø D
S
V H T- H 3-I S O V H T- H 4-I S O V H T- H 5-I S O V H T- H 6-I S O V H T- H 8-I S O V H T- H 1 0-I S O V H T- H 1 2-I S O V H T- H 1 4-I S O V H T- H 1 6-I S O V H T- H 2 0-I S O
STA N D A R D I S O529 I S O529 I S O529 I S O529 I S O529 I S O529
M3 I S O529 2283 M4 I S O529 2283 M5 M6 I S O529 2283 M8 I S O529 2283 M10 I S O529 2283 I S O529 2283 I S O529 2283 I S O529 2283
M4 M5 M8 M10 M12 M14 M16 M20
L
L1
46 52 60 62 70 75 82 88 95 105
18 20 22 24 30 32 38 42 45 50
W EI G H T ( k g s)
C O D E N O. 6 0 1 1- 0 6 1 6 0 1 1- 0 6 2 6 0 1 1- 0 6 3 6 0 1 1- 0 6 4 6 0 1 1- 0 6 5 6 0 1 1- 0 6 6 6 0 1 1- 0 6 7 6 0 1 1- 0 6 8 6 0 1 1- 0 6 9 6 0 1 1- 0 7 0
S pir al Fl ut e d M a c hi n e T a p s L
IS O
L1
D
5 2 9/ 2 2 8 3
S Q UA RE SI Z E x PI T C H
Ø D
S
V M T- S 3-I S O V M T- S 4-I S O V M T- S 5-I S O V M T- S 6-I S O V M T- S 8-I S O V M T- S 1 0-I S O V M T- S 1 2-I S O V M T- S 1 4-I S O V M T- S 1 6-I S O V M T- S 2 0-I S O
STA N D A R D I S O529 I S O529 I S O529 I S O529 I S O529 I S O529
M3 I S O529 2283 M4 I S O529 2283 M5 M6 I S O529 2283 M8 I S O529 2283 M10 I S O529 2283 I S O529 2283 I S O529 2283 I S O529 2283
M4 M5 M8 M10 M12 M14 M16 M20
L
L1
46 52 60 62 70 75 82 88 95 105
11 13 16 19 22 24 29 30 32 37
W EI G H T ( k g s)
C O D E N O. 6 0 1 1- 0 8 1 6 0 1 1- 0 8 2 6 0 1 1- 0 8 3 6 0 1 1- 0 8 4 6 0 1 1- 0 8 5 6 0 1 1- 0 8 6 6 0 1 1- 0 8 7 6 0 1 1- 0 8 8 6 0 1 1- 0 8 9 6 0 1 1- 0 9 0
H E A N N D D MIT AL PL S
O R D E R N O.
S pir al Fl ut e d M a c hi n e T a p s L L1
D
IS O
5 2 9/ 2 2 8 3
S Q UA RE O R D E R N O.
V M T- M 3-I S O V M T- M 4-I S O V M T- M 5-I S O V M T- M 6-I S O V M T- M 8-I S O V M T- M 1 0-I S O V M T- M 1 2-I S O V M T- M 1 4-I S O V M T- M 1 6-I S O V M T- M 2 0-I S O
SI Z E x PI T C H
Ø D
S
STA N D A R D I S O529 I S O529 I S O529 I S O529 I S O529 I S O529
M3 I S O529 2283 M4 I S O529 2283 M5 M6 I S O529 2283 M8 I S O529 2283 M10 I S O529 2283 I S O529 2283 I S O529 2283 I S O529 2283
M4 M5 M8 M10 M12 M14 M16 M20
L
L1
46 52 60 62 70 75 82 88 95 105
11 13 16 19 22 24 29 30 32 37
W EI G H T ( k g s)
C O D E N O. 6 0 1 1- 1 0 1 6 0 1 1- 1 0 2 6 0 1 1- 1 0 3 6 0 1 1- 1 0 4 6 0 1 1- 1 0 5 6 0 1 1- 1 0 6 6 0 1 1- 1 0 7 6 0 1 1- 1 0 8 6 0 1 1- 1 0 9 6 0 1 1- 1 1 0
C U T TI N G T O O L
F58
T a p Wr e n c h e s Wit h R at c h et
C L A M PI N G R A N G E
U nit : m m
O R D E R N O.
SI Z E
M E T RI C
L
M A X.
MI N.
W EI G H T ( k g s)
V P W- 3 1 0
1
M3~ M10
85
6 0 1 1- 8 0 1
V P W- 5 1 2
2
M5~ M12
100
6 0 1 1- 8 0 2
T a p Wr e n c h e s Wit h R at c h et
C O D E N O.
C L A M PI N G R A N G E
B
A = x 1. 4 1 4
T A P SI Z E
B
U nit : m m
O R D E R N O.
SI Z E
F O R M E T RI C
V P W- 1 1 8
0
V P W- 1 1 0
A
M A X. B
MI N. B
W EI G H T ( k g s)
C O D E N O.
PI P E P T/ P F-
L
M1~ M8
P T- 1/ 1 6
125
6 0 1 1- 8 1 1
1
M1~ M10
P T- 1/ 1 6
180
6 0 1 1- 8 1 2
V P W- 1 1 2
1- 1/ 2
M1~ M12
P T- 1/ 8
200
6 0 1 1- 8 1 3
V P W- 4 1 2
2
M4~ M15
P T- 1/ 8
280
6 0 1 1- 8 1 4
V P W- 5 2 0
3
M5~ M20
P T- 3/ 8
375
6 0 1 1- 8 1 5
V P W- 9 2 7
4
M9~ M27
P F- 5/ 8
500
6 0 1 1- 8 1 6
V P W- 1 3 3 2
5
M13~ M27
P F- 5/ 8
750
6 0 1 1- 8 1 7
M a g n eti c T a p p er C O S T HI G H E R
M a g n eti c f or c e 8 0 k gf P ort a bl e
E X A M PL E
U nit : m m
F59
O R D E R N O.
A
B
C
D
H
I
L
M
N
O
V T M- 1 3
50
72
10
45
122
36
60
60
50
30
C U T TI N G T O O L
W EI G H T ( k g s)
C O D E N O. 2 0 1 5- 7 3 1
S h o c k A b s or b er S p e ci al F e at ur e s
STA N DA R D TYPE
Pr e v e nti n g s h o c k & r e d u ci n g n oi s e. l o w b e d d e si g n. E a s y i n st all ati o n. Si m pl e a dj u st m e nt. Hi g h d ur a bilit y.
A p pli c ati o n V ari o u s g e n er al w or ki n g m a c hi n e s, m et al w or k pi e c e pr o c e s si n g m a c hi n e, pr o d u cti o n m a c hi n e, s p e ci al m a c hi n e, m e a s uri n g e q ui p m e nt, t e sti n g m a c hi n e. El e ctri c al g e n er at or, air c o m pr e s s or, et c. A D J U S T A B L E R A N G E 6- 1 2 m m
D EL U X E T Y P E
U nit: m m
A D J U S TI N G
M AI N B O D Y A D J U S T E D C L A M PI N G P L A T E A DJ U S T E D N U T R UBBE R SE D
O R DE R N O.
A
B
T K- 9 0
90
5 0 3 2 1 2 M- 1 0 0 5 0 0 k g
5 m m
0. 8
7 0 0 1- 0 0 0
T K- 1 2 0 1 2 0 9 0 3 5 1 2 M- 1 0 0 1 0 0 0 k g
5 m m
1. 4
7 0 0 1- 0 0 1
T K- 1 6 0 1 6 0 1 3 0 3 8 1 6 M- 1 1 0 1 5 0 0 k g
6 m m
2. 8
7 0 0 1- 0 0 2
T K- 2 0 0 2 0 0 1 7 0 4 5 2 0 M- 1 2 0 3 5 0 0 k g
6 m m
4. 4
7 0 0 1- 0 0 3
C
L O A D A dj u st a bl e W EI G H T K GS H EI G H K GS
Ø DxL
C O DE N O.
F e at ur e s : E a s y t o o p er at e. s h o c k- a b s or b e nt, r e d u c e s m a c hi n e n oi s e i n cl u d e s a dj u st m e nt, a n d a s s ur e s pr o d uti o n a c c ur a c y. D EL U X E T Y P E U nit: m m
O R DE R N O.
D1
D2
H
Ø dxL
L O A D K GS
A dj u st a bl e H EI G H
N. W. K GS
C O DE N O.
S B- 4
100
90
60
12x50
500
25
2
7 0 0 1- 0 3 1
S B- 6
150 135
95
1 6x 11 0
1000
40
5
7 0 0 1- 0 3 2
S B- 8
200 180 100 20x120
2500
40
8
7 0 0 1- 0 3 3
S B- 1 0
250 230 125 24x180
4000
40
12
7 0 0 1- 0 3 4
S UI T A B L E F O R : m a c hi n e t o ol s, m ol di n g m a c hi n e, pri nti n g m a c hi n e, C N C l at h e, gri n di n g m a c hi n e s, drilli n g m a c hi n e s, milli n g m a c hi n e s. F C D45
HEAVY D UTY TYPE
U nit: m m
O R D E R N O.
A
B
C
L O A D K GS
A dj u st a bl e H EI G H
N. W. K GS
C O DE N O.
S C- 1
130
96
66
700
4 M M
4
7 0 0 1- 0 6 0
S C- 2
174 143
80
1500
5 M M
8. 8
7 0 0 1- 0 6 1
S C- 3
217 165 101
2500
6 M M
16
7 0 0 1- 0 6 2
S UI T A B L E F O R : C N C l at h e, milli n g m a c hi n e s, c utti n g m a c hi n e s, gri n di n g m a c hi n e s. F C D45
LI G H T D U T Y T Y P E
U nit: m m
O R D E R N O.
A
B
C
D
L O A D K GS
S Y- 8
M 8 X 1. 2 5 P
50
20
40
100
0. 1
7 0 0 1- 0 8 0
S Y- 1 2
M 1 2 X 1. 2 5 P
75
30
50
200
0. 2 8
7 0 0 1- 0 8 1
S Y- 1 6
M 1 6 X 2. 0 P
100
35
60
300
0. 4 8
7 0 0 1- 0 8 2
S S41 G1
S P E CI A L U S A G E M A C HI N E
N. W. K GS
C O D E N O.
Ar b or Pr e s s
STA N D A R D TYPE
All m ai n p art s m a d e of d u ctil e c a st ir o n. A dj u st a bl e h a n dl e gi v e s c o n v e ni e nt h a n dl e p o sti o ni n g. 4- 9 0 d e gr e e e q u all y di vi d e d sl ott e d r o u n d t a bl e. C ol or m a y v ar y. ( Gr e e n)
V A R- 0 V A R- 1 V A R- 2 V A R- 3 V A R- 5
Base L x W( m m) 235x102 m m 270x127 m m 400x170 m m 470x200 m m 680x250 m m
H ei g ht H( m m) 254 320 445 570 800
M A X W or k H ei g ht A( m m) Str o k e 11 4 140 215 317 470
S wi n g B 85 105 135 135 245
T a bl e Di a m et er D 90 11 0 170 170 250
R a m Di m e n si o n Rx R 19x19 2 5. 4 x 2 5. 4 3 1. 7 x 3 1. 7 3 8. 1 x 3 8. 1 5 0. 8 x 5 0. 8
W ei g ht ( k g s) 8. 5 12 29 47 140
C O D E N O. 7 0 0 2- 1 0 0 7 0 0 2- 1 0 1 7 0 0 2- 1 0 2 7 0 0 2- 1 0 3 7 0 0 2- 1 0 4
S P E CI A L U S A G E M A C HI N E
O R D E R N O.
R AT C H E T L E V E R S T Y P E T hi s ar b or pr e s s wit h all st a n d ar d’ s f e at ur e. B ut o p er at e d wit h a r at c h et d e vi c e t h at will all o w y o u t o u s e t h e l e v er i n t h e m o st c o n v e ni e nt p o siti o n, t h e l e v er h a s a c o u nt er w ei g ht f or q ui c k r et ur n aft er w hi c h t h e d o w n str o k e h a n d w h e el will r et ur n t h e r a m t o t h e w or k q ui c kl y. R at c h et T y p e Ar b or Pr e s s a v ail a bl e- N o. 3/ 5 o nl y. T h e si z e i s s a m e a s V A R- 3, 5 C ol or m a y b e v ari e d. ( Gr e e n) O R D E R N O.
V A R R- 3
V A R R- 5
G. W. K G S
65 kgs
162 kgs
C O D E N O.
7 0 0 2- 1 3 1
7 0 0 2- 1 3 2
S P E CI A L U S A G E M A C HI N E
G2
M at eri al : F C- 3 0 Pr e ci si o n : ± 0. 0 1 / 1 0 0 m m
S T- 7 5 S T- 1 0 0 S T- 1 2 5
M at eri al : F C- 3 0 Pr e ci si o n : ± 0. 0 1 / 1 0 0 m m F E A T U R E : T h e sli di n g s urf a c e s ar e tr e at e d b y h e at-tr e at m e nt & pr e ci si o n gr o u n d.
S T A- 1 6 0 S T A- 1 6 5 S T A- 2 0 0 S T A- 2 0 5 S T A- 3 0 0 S T A- 3 0 5
U nit: m m
O R D E R N O.
A x B
C x D
S T- 7 5 S T- 1 0 0 S T- 1 2 5 S T A- 1 6 0 S T A- 1 6 5 S T A- 2 0 0 S T A- 2 0 5 S T A- 3 0 0
75 x 180 100 x 235 125 x 300 160 x 200 160 x 200 200 x 300 200 x 300 300 x 350
105 x 157 140 x 160 165 x 255 160 x 300 160 x 400 200 x 400 200 x 600 300 x 500
75 100 125 100 200 100 300 150
60 70 80 90 90 120 120 188
W EI G H T
C O D E N O.
6. 5 9. 5 2 2. 9 20 2 3. 0 3 8. 0 5 0. 5 9 8. 0
7 0 0 2- 5 4 0 7 0 0 2- 5 4 1 7 0 0 2- 5 4 2 7 0 0 2- 5 4 3 7 0 0 2- 5 4 4 7 0 0 2- 5 4 5 7 0 0 2- 5 4 6 7 0 0 2- 5 4 7
2. 5 x 0. 0 2 2. 5 x 0. 0 2 4. 0 x 0. 0 2 4. 0 x 0. 0 2 4. 0 x 0. 0 2 4. 0 x 0. 0 2 4. 0 x 0. 0 2 4. 0 x 0. 0 2
M at eri al : F C- 3 0 Pr e ci si o n : ± 0. 0 1 / 1 0 0 m m F E A T U R E : T h e sli di n g s urf a c e s ar e tr e at e d b y h e at-tr e at m e nt & pr e ci si o n gr o u n d Di al gr a d u ati o n 4. 0 x 0. 0 2 m m
U nit: m m
O R DE R N O. S E- 1 0 0 S E- 1 5 0 S E- 2 0 0 S E- 2 5 0
G3
A
B
C
D
E
F
G
H
I
J
K
L
100 150 200 250
255 385 510 600
150 200 250 300
35 40 60 60
130 185 240 280
70 11 0 160 200
60 90 140 160
120 120 135 140
30 20 20 25
15 20 20 25
26 35 40 40
Ø10 x 4 Ø13 x 4 Ø17 x 4 Ø17 x 4
S P E CI A L U S A G E M A C HI N E
C O D E N O. 15 35 67 11 5
7 0 0 2- 5 6 0 7 0 0 2- 5 6 1 7 0 0 2- 5 6 2 7 0 0 2- 5 6 3
Pr e ci si o n B ori n g/ Milli n g S pi n dl e H e a d
U nit: m m
O R DE R N O.
T a p er
M A X. R. P. M.
A
B
S H03
MT3
7000
45
Ø42
S H04 S H30 S H40 S H50
MT4 NT30 NT40 NT50
2500 3000 2500 2000
70 55 70 85
C
D
E
F
G
H
I
80
70
Ø 9- 4
90
90 160 75
270 Ø25 35 16x5
8
Ø 1 5- 4 1 4 5 1 5 0 2 8 0 9 4 Ø 1 1- 4 1 1 4 1 1 4 2 0 0 7 2 Ø 1 5- 4 1 7 0 1 8 4 2 8 0 1 0 6 Ø 1 5- 4 1 7 0 1 8 4 3 4 0 1 0 6
427 Ø35 45 16x5 317 Ø30 40 16x5 427 Ø35 45 16x5 500 Ø50 60
36 18 39 75
Ø 8 8. 8 8 2 190 90 Ø 6 9. 8 3 2 Ø 5 4 M 1 0 x P 1. 5- 4 1 2 0 9 0 Ø 8 8. 8 8 2 Ø 6 6. 7 M 1 2 x P 1. 7 5- 4 1 9 0 1 5 0 Ø 1 2 8. 5 7 Ø 1 0 1. 6 M 1 6 X P 2. 0- 4 2 2 0 1 5 0
J
K
L
M
N
O
W ei g ht kgs
B e ari n g O. D. Ø62 Ø55 Ø90 Ø75 Ø90 Ø 11 5
C O DE N O. 7 0 0 2- 6 0 0 7 0 0 2- 6 0 1 7 0 0 2- 6 0 3 7 0 0 2- 6 0 5 7 0 0 2- 6 0 7
S P E CI A L U S A G E M A C HI N E
Pr e ci si o n B ori n g/ Milli n g S pi n dl e H e a d
U nit: m m
O R DE R N O. S H30 A S H30 B S H40 A S H40 B
T a p er NT30 NT30 NT40 NT40
M A X. R. P. M. A 3000 77 9000 77 2500 77 8000 77
B
C
Ø 6 9. 8 3 2 Ø 6 9. 8 3 2 Ø 8 8. 8 8 2 Ø 8 8. 8 8 2
Ø54 Ø54 Ø 6 6. 7 Ø 6 6. 7
D
E
F
M 1 0 x P 1. 5- 4 1 6 0 1 4 0 M 1 0 x P 1. 5- 4 1 6 0 1 4 0 M 1 2 x P 1. 7 5- 4 1 8 0 1 7 0 M 1 2 x P 1. 7 5- 4 1 8 0 1 7 0
G
H
I
J
K
L
M
N
O
Ø 1 1- 6 1 3 3 1 7 6 2 0 0 Ø 1 1- 6 1 3 3 1 7 6 2 0 0 Ø 1 1- 6 1 4 7 2 0 0 2 2 0 Ø 1 1- 6 1 4 7 2 0 0 2 2 0
72 72 94 94
317 317 367 367
Ø30 10 16x5 Ø30 10 16x5 Ø35 20 16x5 Ø35 20 16x5
W ei g ht kgs 22 22 45 45
B e ari n g O. D. Ø75 Ø75 Ø90 Ø90
C O DE N O. 7 0 0 2- 6 2 0 7 0 0 2- 6 2 1 7 0 0 2- 6 2 2 7 0 0 2- 6 2 3
S P E CI A L U S A G E M A C HI N E
G4
Fl at E n d M o v a bl e H a n dl e Fl at E n d M o v a bl e H a n dl e H a n dl e i s f o g g y pl ati n g tr e at e d. D et a c h a bl e n ut i s bl a c k e n e d. Fit t o c o m m o n m o v a bl e h a n d w h e el. R e a d y t o u s e. G o o d h a n di n g.
O R D E R N O.
D 1
D
L 1
L
C O D E N O.
V F E- 1 0
M 1 0 x 1. 5 P
22
16
95
7 0 0 3- 0 0 1
V F E- 8 3
3/ 8 x 1 6
22
16
99
7 0 0 3- 0 0 2
Elli p s e M o v a bl e H a n dl e Elli p s e M o v a bl e H a n dl e Brilli a nt or f o g g y pl ati n g s urf a c e. Fit t o c o m m o n m o v a bl e h a n d w h e el. E a s y t o i n st all S hi n e a n d g o o d l o o ki n g.
O R D E R N O.
D 1
D
L 1
L
C O D E N O.
V E M- 1 0
M 1 0 x 1. 5 P
26
13
95
7 0 0 3- 0 0 7
V E M- 8 3
3/ 8 x 1 6
25
13
95
7 0 0 3- 0 0 8
V E M- 8
M 8 x 1. 2 5 P
20
9
80
7 0 0 3- 0 0 9
V E M- 6
M 6 x 1. 0 P
16
7
60
7 0 0 3- 0 1 0
Na me
M at eri al
S urf a c e d pr o c e s s
Knob
B a k elit e ( K U)
Bl a c k
B all K n o b s
m m
O R D E R N O. ( K U)
G5
A
B
C O D E N O.
V K B- 6 A A
25
M 6 x 1. 0 P
7 0 0 3- 1 2 0 A
V K B- 8 A
25
M 8 x 1. 2 5 P
7 0 0 3- 1 2 1 A
V K B- 8 B A
38
M 8 x 1. 2 5 P
7 0 0 3- 1 2 3 A
V K B- 1 0 A
38
M 1 0 x 1. 5 P
7 0 0 3- 1 2 4 A
V K B- 1 2 A A
38
M 1 2 x 1. 7 5 P
7 0 0 3- 1 2 7 A
V K B- 1 2 B A
42
M 1 2 x 1. 7 5 P
7 0 0 3- 1 2 8 A
S P E CI A L U S A G E M A C HI N E
Hand Knobs
T H REA D
Na me
M at eri al
S urf a c e d pr o c e s s
Knob
( K T)
Bl a c k
S pi n dl e
St e el ( S T)
Zi n ci n g ( ZI)
O R D E R N O. ( K T)
T H RE A D
K N O B
C O D E N O.
V K B- 8 K
M 8 x 1. 2 5 P x 2 1 L
Ø40x65L
7 0 0 3- 1 3 3
V K B- 8 K L
M 8 x 1. 2 5 P x 6 3 L
Ø40x65L
7 0 0 3- 1 3 4 A
A dj u st a bl e H a n d L e v er s
Na me
M at eri al
S urf a c e d pr o c e s s
H a n dl e
Pl a sti c ( K T)
S pi n dl e
St e el ( S T)
Bl a c k ( B K) a n d bl a c k h a n dl e ( O B) m m
O R D E R N O. ( K T)
H A N DLE L
T H RE A D
V A H- 6
42
M6
14
7 0 0 3- 2 1 4 A
V A H- 8
72
M8
14
7 0 0 3- 2 1 6 A
V A H- 1 0
92
M10
16
7 0 0 3- 2 1 7 A
S P E CI A L U S A G E M A C HI N E
C O D E N O.
A dj u st a bl e H a n d L e v er s Na me H a n dl e S pi n dl e
M at eri al Pl a sti c ( K T) St e el ( S T)
S urf a c e d pr o c e s s Bl a c k K n o b m m
O R D E R N O. ( K T)
T H RE A D L
H A N DLE L
C O D E N O.
V A H- 6 2 0
M 6 x 1. 0 P x 2 0 L
43
7 0 0 3- 2 2 0 A
V A H- 6 3 0
M 6 x 1. 0 P x 3 0 L
43
7 0 0 3- 2 2 0 B
V A H- 6 4 0
M 6 x 1. 0 P x 4 5 L
43
7 0 0 3- 2 2 0 C
V A H- 6 5 0
M 6 x 1. 0 P x 2 0 L
63
7 0 0 3- 2 2 0 D
V A H- 6 X L
M 6 x 1. 0 P x 3 0 L
63
7 0 0 3- 2 2 0 E
V A H- 8 D
M 8 x 1. 2 5 P x 3 0 L
63
7 0 0 3- 2 2 2 A
V A H- 8 1 5
M 8 x 1. 2 5 P x 1 5 L
83
7 0 0 3- 2 2 2 B
V A H- 8 4 0
M 8 x 1. 2 5 P x 4 0 L
83
7 0 0 3- 2 2 2 D
V A H- 1 0 2 0
M 1 0 x 1. 5 P x 2 0 L
83
7 0 0 3- 2 2 3 A
S P E CI A L U S A G E M A C HI N E
G6
R e v ol vi n g H a n dl e s Na me H a n dl e S pi n dl e
M at eri al B a k elit e ( K U) St e el ( S T)
S urf a c e d pr o c e s s Bl a c k Zi n ci n g ( ZI)
m m
O R D E R N O.
A
B
C
T H RE A D L
C O D E N O.
V R L- 8 H
20
M 8 x 1. 2 5 P
56
13
14
7 0 0 3- 2 8 3 A
V R L- 8 H A
22
M 8 x 1. 2 5 P
76
13
14
7 0 0 3- 2 8 4 A
V R L- 1 0 H
20
M 1 0 x 1. 5 P
56
13
14
7 0 0 3- 2 8 5 A
V R L- 1 0 H A
22
M 1 0 x 1. 5 P
76
13
14
7 0 0 3- 2 8 7 A
V R L- 1 0 H B
25
M 1 0 x 1. 5 P
83
13
14
7 0 0 3- 2 8 8 A
3 6 0º S wi v elli n g L o c k H a n dl e 3 6 0º S wi v el H a n dl e W h e n p ull o ut, t hi s h a n dl e c a n s wi v el 3 6 0º fr e e. Al u mi ni u m h a n dl e, all w at er r e si st a n c e. T h e h a n dl e s h a p e f e at ur e s: c ur v e, b all, s q u ar e 3 t y p e s. O R D E R N O. A TYPE
B TYPE
SI Z E
C O D E N O.
V S A- 1
M 6 x 1. 0 P x 3 0 L
7 0 0 3- 3 0 0 A
V S A- 2
M 8 x 1. 2 5 P x 3 0 L
7 0 0 3- 3 0 1 A
V S A- 3
M 1 0 x 1. 5 P x 3 0 L
7 0 0 3- 3 0 2 A
V S A- 4
M 1 2 x 1. 7 5 P x 3 0 L
7 0 0 3- 3 0 2 B
V S B- 1
M 6 x 1. 0 P x 3 0 L
7 0 0 3- 3 0 3 A
V S B- 2
M 8 x 1. 2 5 P x 3 0 L
7 0 0 3- 3 0 4 A
V S B- 3
M 1 0 x 1. 5 P x 3 0 L
7 0 0 3- 3 0 5 A
V S B- 4
M 1 2 x 1. 7 5 P x 3 0 L
7 0 0 3- 3 0 5 B
Lifti n g E y e Ri n g E C
Ø D
B
G7
S P E CI A L U S A G E M A C HI N E
ØA
S S400I R O N O R D E R N O.
SI Z E
V L E- 6 A V L E- 8 A V L E- 1 0 A V L E- 1 2 A V L E- 1 4 A V L E- 1 6 A V L E- 1 8 A V L E- 2 0 A V L E- 2 2 A V L E- 2 4 A
M 6 x 1. 0 P M 8 x 1. 2 5 P M 1 0 x 1. 5 P M 1 2 x 1. 7 5 P M 1 4 x 2. 0 P M 1 6 x 2. 0 P M 1 8 x 2. 5 P M 2 0 x 2. 5 P M 2 2 x 2. 5 P M 2 4 x 3. 0 P
ALL O WE D L O A D ( k g) 60 80 128 187 255 383 535 535 808 808
A
B
C
D
C O D E N O.
33
20
15
17
7 0 0 3- 3 2 1 A
34
20
15
17
7 0 0 3- 3 2 2 A
41
25
18
20
7 0 0 3- 3 2 3 A
50
30
20
25
7 0 0 3- 3 2 4 A
60
34
27
29
7 0 0 3- 3 2 5 A
60
35
28
30
7 0 0 3- 3 2 6 A
71
40
31
34
7 0 0 3- 3 2 7 A
71
40
31
35
7 0 0 3- 3 2 8 A
90
48
38
47
7 0 0 3- 3 2 9 A
92
50
38
47
7 0 0 3- 3 3 0 A
S h o ul d er L o c ati n g U nit M O Q: 1 B O X = 1 2 P C S O R D E R N O.
ø
F or l at h e c h u c k
A ± 0. 0 5
V L S- 1 3 2 0 V L S- 1 3 2 5 V L S- 1 3 3 0 V L S- 1 3 3 5 V L S- 1 3 4 0 V L S- 1 6 2 0 V L S- 1 6 2 5 V L S- 1 6 3 0 V L S- 1 6 3 5 V L S- 1 6 4 0 V L S- 1 8 2 0 V L S- 1 8 2 5 V L S- 1 8 3 0 V L S- 1 8 3 5 V L S- 1 8 4 0
U nit : m m
B ± 0. 0 5
C
ø D
R
13
11
5. 5
4
M A X. 7. 9 5 1 MI N. 7. 9 8 7
13
7. 0
5
M A X. 9. 9 5 1 MI N. 9. 9 8 7
16
16
8. 0
6
M A X. 1 1. 9 4 1 MI N. 1 1. 9 8 4
18
L 20 25 30 35 40 20 25 30 35 40 20 25 30 35 40
W EI G H T K GS
d1
M6 X 1. 0 P
M8 X 1. 2 5 P
M10 X 1. 5 P
C O DE N O. 7 0 0 3- 3 3 5 7 0 0 3- 3 3 6 7 0 0 3- 3 3 7 7 0 0 3- 3 3 8 7 0 0 3- 3 3 9 7 0 0 3- 3 4 0 7 0 0 3- 3 4 1 7 0 0 3- 3 4 2 7 0 0 3- 3 4 3 7 0 0 3- 3 4 4 7 0 0 3- 3 4 5 7 0 0 3- 3 4 6 7 0 0 3- 3 4 7 7 0 0 3- 3 4 8 7 0 0 3- 3 4 9
Ri n g Pl at e M O Q: 1 B O X = 5 0 P C S
U nit : m m
SI Z E D x d x T
B OX
V L E- W 2 2 6
Ø 2 2 X Ø 6. 5 X 4
V L E- W 2 2 1 0
Ø 2 2 X Ø 1 0. 7 X 4
V L E- W 2 5 1 1
W EI G H T K GS
C O D E N O.
50 P C S
7 0 0 3- 3 5 3
T
50 P C S
7 0 0 3- 3 5 4
Ø 2 5 X Ø 1 1. 5 X 4
T
50 P C S
7 0 0 3- 3 5 5
V L E- W 2 5 1 2
Ø 2 5 X Ø 1 2. 8 X 4
T
50 P C S
7 0 0 3- 3 5 6
V L E- W 3 2 1 2
Ø 3 2 X Ø 1 2. 8 X 4
T
50 P C S
7 0 0 3- 3 5 7
V L E- W 3 2 1 5
Ø 3 2 X Ø 1 5. 9 X 4
T
50 P C S
7 0 0 3- 3 5 8
V L E- W 3 5 1 5
Ø 3 5 X Ø 1 5. 9 X 4
T
50 P C S
7 0 0 3- 3 5 9
T
Cr a n k H a n dl e m m
W ei g ht kgs
C O D E N O.
O R D E R N O.
A
L
V A H- 2 1
31
147
15
0. 4 9
7 0 0 3- 4 6 0
V A H- 2 2
41
183
1 6. 5
0. 6 4
7 0 0 3- 4 6 1
V A H- 2 3
54
231
21
1. 0 8
7 0 0 3- 4 6 2
m m
W ei g ht kgs
C O D E N O.
O R D E R N O.
A
L
V A H- 3 1
37
180
14
0. 4 8
7 0 0 3- 4 7 0
V A H- 3 2
37
250
14
0. 6 2
7 0 0 3- 4 7 1
S P E CI A L U S A G E M A C HI N E
G8
S P E CI A L U S A G E M A C HI N E
O R D E R N O.
B all Pl u g er S cr e w- S o c k et & Sl ott e d M at eri al : S C M 4 3 5 / 3 0 2 H Q H ar d n e s s : H R C 4 0º ± 3
I TYPE S C R E W D RI V E R S L
H TYPE H E X. S E T T Y P E
O R D E R N O.
D
pit c h
d
L
e
W
V B P- 0 3I
M3
0. 5
1. 5
7
1. 0
V B P- 0 4I
M4
0. 7
2. 5
9
V B P- 0 5I
M5
0. 8
3. 0
V B P- 0 6I
M6
1. 0
V B P- 0 8I
M8
V B P- 1 0I
G9
Li g ht
Heavy
C O D E N O.
mi n
Max
mi n
Max
1. 5
1. 0
2. 0
1. 5
2. 9
7 0 0 3- 4 0 0 A
1. 5
2. 0
2. 0
4. 9
3. 9
9. 8
7 0 0 3- 4 0 1 A
12
2. 0
2. 5
2. 9
9. 8
4. 9
1 9. 6
7 0 0 3- 4 0 2 A
3. 5
13
2. 5
3. 0
4. 9
1 4. 7
9. 8
2 9. 4
7 0 0 3- 4 0 3 A
1. 2 5
5. 0
15
2. 5
4. 0
6. 9
1 9. 6
1 2. 7
3 9. 2
7 0 0 3- 4 0 4 A
M10
1. 5
6. 0
16
3. 0
5. 0
8. 8
2 4. 5
1 8. 6
4 9. 0
7 0 0 3- 4 0 5 A
V B P- 1 2I
M12
1. 7 5
8. 0
22
3. 0
6. 0
9. 8
2 9. 4
1 9. 6
5 8. 8
7 0 0 3- 4 0 6 A
V B P- 1 6I
M16
2. 0
10
25
3. 0
8. 0
1 5. 7
4 9. 0
2 9. 4
9 8. 0
7 0 0 3- 4 0 7 A
V B P- 0 3 H
M3
0. 5
1. 5
7
1. 0
1. 5
1. 0
2. 0
1. 5
2. 9
7 0 0 3- 4 0 0 B
V B P- 0 4 H
M4
0. 7
2. 5
9
1. 5
2. 0
2. 0
4. 9
3. 9
9. 8
7 0 0 3- 4 0 1 B
V B P- 0 5 H
M5
0. 8
3. 0
12
2. 0
2. 5
2. 9
9. 8
4. 9
1 9. 6
7 0 0 3- 4 0 2 B
V B P- 0 6 H
M6
1. 0
3. 5
13
2. 5
3. 0
4. 9
1 4. 7
9. 8
2 9. 4
7 0 0 3- 4 0 3 B
V B P- 0 8 H
M8
1. 2 5
5. 0
15
2. 5
4. 0
6. 9
1 9. 6
1 2. 7
3 9. 2
7 0 0 3- 4 0 4 B
V B P- 1 0 H
M10
1. 5
6. 0
16
3. 0
5. 0
8. 8
2 4. 5
1 8. 6
4 9. 0
7 0 0 3- 4 0 5 B
V B P- 1 2 H
M12
1. 7 5
8. 0
22
3. 0
6. 0
9. 8
2 9. 4
1 9. 6
5 8. 8
7 0 0 3- 4 0 6 B
V B P- 1 6 H
M16
2. 0
10
25
3. 0
8. 0
1 5. 7
4 9. 0
2 9. 4
9 8. 0
7 0 0 3- 4 0 7 B
S P E CI A L U S A G E M A C HI N E
P U- H a m m er S eri e s
B A SI C: St e el str u ct ur e a n d i n cl u d e st e el s h ot. M A T E RI A L S: M ai n of t h e a nti- p oll uti o n P U-li q ui d. T h e h ol d er u s e s oft q u alit y T P R. F E A T U R E: P U n ot m a k e wit h h e a v y- m et al a n d di o xi n w h e n b ur ni n g. H A R D N E S S: H ar d n e s s of h a m m er ( 9 0 A ~ 9 5 A) C ol or m a y b e v ari e d.
m m
O R D E R N O.
A
B
C
D
W ei g ht ( g)
OZ
C O D E N O.
V H M- 3 8
38
100
249
287
490
18oz
7 0 0 3- 3 6 7
V H M- 4 6
46
100
260
306
690
24oz
7 0 0 3- 3 6 8
V H M- 5 0
50
11 0
290
340
930
33oz
7 0 0 3- 3 6 9
V H M- 5 6
56
120
297
353
11 6 0
41oz
7 0 0 3- 3 7 0
V H M- 6 0
60
130
308
368
1370
49oz
7 0 0 3- 3 7 1
Stri k e f a c e u s e s U P E m at eri al s. R e c y cl a bl e T P V h ol d er. Stri k e f a c e O R D E R N O. V H M- 2 5 P E V H M- 3 0 P E V H M- 3 5 P E V H M- 4 0 P E V H M- 4 5 P E V H M- 5 0 P E V H M- 5 5 P E V H M-- 6 0 P E
H a m m er H e a d
A 25 30 35 40 45 50 55 60
B 11 0 11 0 11 0 120 120 125 135 140
C 250 250 245 260 260 265 265 265
D 275 280 280 300 305 315 320 320 P A R T S: O R D E R N O. V H M- 2 5 H V H M- 3 0 H V H M- 3 5 H V H M- 4 0 H V H M- 4 5 H V H M- 5 0 H V H M- 5 5 H V H M-- 6 0 H
W ei g ht ( g) 450 480 590 850 990 111 0 1316 1650
OZ 15oz 16oz 20oz 29oz 38oz 42oz 46oz 55oz
m m
C O D E N O. 7 0 0 3- 3 8 0 7 0 0 3- 3 8 1 7 0 0 3- 3 8 2 7 0 0 3- 3 8 3 7 0 0 3- 3 8 4 7 0 0 3- 3 8 5 7 0 0 3- 3 8 6 7 0 0 3- 3 8 7 u nit : m m
PI P E 25 30 35 40 45 50 55 60
C O D E N O. 7 0 0 3- 3 9 0 7 0 0 3- 3 9 1 7 0 0 3- 3 9 2 7 0 0 3- 3 9 3 7 0 0 3- 3 9 4 7 0 0 3- 3 9 5 7 0 0 3- 3 9 6 7 0 0 3- 3 9 7
S P E CI A L U S A G E M A C HI N E
G10
S P E CI A L U S A G E M A C HI N E
H a m m er
U ni v er s al Drill & C utt er Gri n d er
O R D E R N O. V D G- 3 2 N
C O D E N O. 8 0 0 1- 0 1 0
F E AT U R E S Gri n di n g c a p a cit y: Ø 1. 5 ~ Ø 3 2 m m ( Str ai g ht s h a n k & t a p er s h a n k) d o u bl e w h e el s. It o nl y n e e d t o r ot at e t h e m ot or w h e n w a nt t o gri n d t h e t o ol of diff er e nt m at eri al. It c a n i n cr e a s e t h e s af et y & s a v e t h e ti m e f or c h a n gi n g & r e p airi n g t h e gri n di n g w h e el. T h e ki n d s of gri n di n g t o ol i n cl u d e: drill s, st e p drill s, t a p s, li p s of e n d mill s, r o u n d b ar s, et c. A d o pt s pr e ci si o n 4 6 j a w s s elf- c e nt eri n g c h u c k, cli p pi n g o n e ti m e. It c a n gri n d t h e bl a d e of drill s a n d d o t h e p ari n g of drill s a b d o m e n. T h e a n gl e of drill s b ot h si d e s a n d t h e l e n gt h of t h e bl a d e ar e t h e s a m e aft er gri n di n g. It c a n k e e p t h e a c c ur a c y of t h e c e nt er of drill s wit h o ut off c e nt er. G u ar a nt e e d f or 3 m o nt h s C ol or m a y v ar y
D o u bl e c a m s: T h e c a m of gri n di n g drill s & T h e c a m of gri n di n g t a p s.
L o n git u di n al tr a v el of t a bl e Cr o s s tr a v el of s a d dl e R ot ar y a n gl e of w h e el h e a d P oi nt a n gl e Si z e of w h e el S p e e d of w h e el M ot or N. W. / G. W. Si z e of p a c ki n g ( L x W x H)
120 m m 135 m m 3 6 0º 9 0º- 1 8 0º 1 2 5 x 5 0 x 3 1. 7 5 m m 3600 R P M 3/ 4 H P, 1 1 0 V/ 2 2 0 V/ 3 8 0 V 9 0 k g s/ 1 2 0 k g s 800x550x670 m m
H ori z o nt al B a n d S a w
O R D E R N O. H B S- 7
C O D E N O. 8 0 0 1- 0 3 0
Pl e a s e n otif y t h e v olt a g e & p h a s e w h e n y o u or d eri n g. C ol or m a y v ar y
S P E CI FI C A TI O N C a p a cit y
H ori z o nt al B a n d S a w
O R D E R N O. H B S- 7 C E
180 m m(7 )
180x300 m m (7 x12 )
Bl a d e si z e
1 9 x 0. 9 x 2 3 6 0 m m ( 3/ 4 x 0. 3 2 x 7 9 )
M ot or
1 H P 4 p ol e 5 0 H Z/ 1 4 3 0r p m; 6 0 H Z/ 1 7 2 0r p m
Bl a d e s p e e d
2 2, 3 3, 4 5, 6 5 m p m ( 8 6- 1 3 2- 1 7 8- 2 6 0f p m)
M a c hi n e di m
L1470x W430 m m (L58 x W17 ) H 9 9 0 m m ( 3 9 ) h ori z o nt al p o siti o n.
N. W.
1 3 0 k g s ( 2 8 6 L B S)
G. W.
1 5 0 k g s ( 3 4 1 L B S)
V olt a g e
2 2 0 V/ 3 P H , 3 8 0 V/ 3 P H
C O D E N O. 8 0 0 1- 0 3 0 C E CE STA N DA R D Pl e a s e n otif y t h e v olt a g e & p h a s e w h e n y o u or d eri n g. C ol or m a y v ar y
S P E CI FI C A TI O N
G 11
S P E CI A L U S A G E M A C HI N E
C a p a cit y
9 0º 4 5º
180 m m 11 0 m m
Bl a d e si z e
1 9 x 0. 9 x 2 3 6 0 m m
M ot or
1 H P 4 p ol e 5 0 H Z/ 1 4 3 0r p m; 6 0 H Z/ 1 7 2 0r p m
Bl a d e s p e e d
St e p p ull e y 2 2, 3 3, 4 5, 6 5 m p m
P a c ki n g M e a s ur e m e nt
1295x457x1028 m m
N. W. / G. W.
1 3 0 k g s/ 1 5 0 k g s
Ty p e
CE
V olt a g e
3 8 0 V/ 3 P H
St a n d ar d
1 8 0x 2 8 0 m m 1 8 0x 11 0 m m
6 5x 3 0 0 m m
S a w Bl a d e F O R V E R TI C A L G 1 4 & H B S- 7 B A N D S A W m m
O R D E R N O.
M A T E RI A L
T HI C K N E S S
W
L ( m m)
H B S- 1 0 6
C A R B O N ST E EL
0. 6 5
6
30000
14
H B S- 1 0 8
C A R B O N ST E EL
0. 6 5
8
30000
14
H B S- 1 1 0
C A R B O N ST E EL
0. 6 5
10
30000
14
Y- 3 1 0 Y- 3 6 0 Y- 4 0 0 Y- 5 0 0 ...... E T C.
O R D E R N O.
M A T E RI A L
T HI C K N E S S
W
T
M A C HI N E T Y P E
C O D E N O.
H B S- 1 2 6
HSS
0. 6 5
6
L ( m m) 15000
10/ 14
8 0 0 1- 7 1 0
H B S- 1 2 8
HSS
0. 6 5
10
15000
10/ 14
Y- 3 1 0 Y- 3 6 0 Y- 4 0 0 Y- 5 0 0 ...... E T C.
T
M A C HI N E T Y P E
C O D E N O.
1 0/ 1 4 4/ 6
U E- 1 0 0 S H B S- 9
8 0 0 1- 7 2 0 8 0 0 1- 7 2 1
O R D E R N O.
M A T E RI A L
T HI C K N E S S
W
H B S- 1 3 1 H B S- 1 3 2
HSS HSS
0. 6 5 0. 9
13 27
L ( m m) 1470 3035
T
M A C HI N E T Y P E
C O D E N O. 8 0 0 1- 7 0 0 8 0 0 1- 7 0 2
8 0 0 1- 7 0 1 m m
8 0 0 1- 7 1 1 m m
m m
O R D E R N O.
M A T E RI A L
T HI C K N E S S
W
H B S- 7- B L A D E- H S S H B S- 7- B L A D E- C A R BI D E
HSS C A R BI D E
0. 9 0. 9
19 19
L ( m m) 2365 2365
T
M A C HI N E T Y P E
C O D E N O.
5/ 8 P 8P
H B S- 7 H B S- 7
8 0 0 1- 7 3 0 8 0 0 1- 7 3 1
Air Di e T o ol S et s
C O D E N O. 8 0 0 1- 0 9 0 Cl e a n & Dr y Air N e e d e d. Fi x e d T y p e C oll et C h u c k: Ø 3. 0 m m I s St a n d ar d. 3/ 3 2 & 1/ 8 C oll et Ar e A v ail a bl e U p o n Y o ur R e q u e st. P ut Oil 1 0 C. C. I nt o T h e Air I nl et H ol e T wi c e D ail y. It’ s W ar m W h e n It’ s W or ki n g. R eli a bl e Q u alit y A n d E c o n o mi c Pri c e.
O R D E R N O. V A G- 4 0 7
C O D E N O. 8 0 0 1- 0 9 1
S P E CI FI C A TI O N C oll et Si z e
3 M M, 1/ 8”, 3/ 3 2”
Fr e e S p e e d
6 0, 0 0 0 R P M
O p er ati n g Air Pr e s s ur e
9 0 P SI, 6. 2 B A R
A v er a g e air c o n s u m pti o n
4. 6 C F M, 0. 1 3 M 3 / MI N
H o s e Si z e
1/ 4”, 6 M M
Air I nl et
1/ 4” P T, N P T
L e n gt h
1 3 5 M M, 5- 5/ 1 6”
N et W ei g ht
0. 4 K G, 0. 8 8 L B
Wr e n c h
2 Pcs
A br a si v e M o u nt P oi nt
10 Pcs
S P E CI FI C A TI O N C oll et Si z e
3 M M, 1/ 8”, 3/ 3 2”
Fr e e S p e e d
6 5, 0 0 0 R P M
O p er ati n g Air Pr e s s ur e
9 0 P SI, 6. 2 B A R
A v er a g e air c o n s u m pti o n
4. 7 C F M, 0. 4 M 3 / MI N
H o s e Si z e
1/ 4”, 6 M M
Air I nl et
1/ 4” P T, N P T
L e n gt h
1 3 5 M M, 5- 5/ 1 6”
N et W ei g ht
0. 4 K G, 0. 9 L B
Wr e n c h
2 Pcs
A br a si v e M o u nt P oi nt
10 Pcs
S P E CI A L U S A G E M A C HI N E
G12
S P E CI A L U S A G E M A C HI N E
O R D E R N O. V A G- 4 0 6
Air Di e T o ol
AI R I N L E T 1/ 4
DI Y t y p e E c o n o mi c t y p e
AI R P R E S S U R E 9 0 P SI
O R D E R N O. V A G- 5 0 0 O R D E R N O. V A G- 6 0 1 A
V A G- 5 0 0
V A G- 6 0 1 A
t ur bi n e oil # 6 0 G u ar a nt e e d f or 3 m o nt h s O R D E R N O. V A G- 5 0 0 V A G- 6 0 1 A
C O L L E T SI Z E 3 m m, 3/ 3 2 , 1/ 8 3 m m, 3/ 3 2 , 1/ 8
SPEE D 5 4, 0 0 0 R. P. M. 5 4, 0 0 0 R. P. M.
Cl e a n & Dr y Air N e e d e d. Fi x e d T y p e C oll et C h u c k: Ø 3. 0 m m I s St a n d ar d. 3/ 3 2 & 1/ 8 C oll et Ar e A v ail a bl e U p o n Y o ur R e q u e st. P ut Oil 1 0 C. C. I nt o T h e Air I nl et H ol e T wi c e D ail y. It’ s W ar m W h e n It’ s W or ki n g. R eli a bl e Q u alit y A n d E c o n o mi c Pri c e. O P TI O N A L O R D E R N O. V A G- 5 0 0- 3 M M V A G- 5 0 0- 3/ 3 2 V A G- 5 0 0- 1/ 8 V A G- 6 0 1 A- C O L L E T 3 M M V A G- 6 0 1 A- C O L L E T 3/ 3 2 V A G- 6 0 1 A- C O L L E T 1/ 8 W EI G H T ( g) 130 130
C OLLET 3 m m 3/ 3 2 1/ 8 3 m m 3/ 3 2 1/ 8
LE N GT H 150 m m 150 m m
C O D E N O. 8 0 0 1- 0 9 9 A 8 0 0 1- 0 9 9 B 8 0 0 1- 0 9 9 C 8 0 0 1- 1 0 0 A 8 0 0 1- 1 0 0 B 8 0 0 1- 1 0 0 C
C O D E N O. 8 0 0 1- 0 9 9 8 0 0 1- 1 0 0
R e pl a c e a bl e c oll et c h u c k: ø 3. 0 m m i s st a n d ar d. 3/ 3 2 a n d 1/ 8 c oll et ar e a v ail a bl e u p o n y o ur r e q u e st. Hi g h-t or q u e, q ui et-r u n ni n g a n d w ell b al a n c e.
Str o n g & sil e nt t y p e
O P TI O N A L O R D E R N O. V A G- 7 0 1- 3 M M V A G- 7 0 1- 3/ 3 2 V A G- 7 0 1- 1/ 8
t ur bi n e oil # 6 0 G u ar a nt e e d f or 3 m o nt h s
C OLLET 3 m m 3/ 3 2 1/ 8
C O D E N O. 8 0 0 1- 1 0 1 A 8 0 0 1- 1 0 1 B 8 0 0 1- 1 0 1 C
O R D E R N O.
C O L L E T SI Z E
SPEE D
W EI G H T ( g)
LE N GT H
C O D E N O.
V A G- 7 0 1
3 m m, 3/ 3 2 , 1/ 8
7 0, 0 0 0 R. P. M.
620
150 m m
8 0 0 1- 1 0 1
D u al c oll et c h u c k: ø 3. 0 m m a n d ø 6. 0 m m ar e st a n d ar d. 1/ 8 a n d 1/ 4 c oll et ar e a v ail a bl e u p o n y o ur r e q u e st. Hi g h t or q u e, h e a v y- d ut y, g e n er al- p ur p o s e a p pli c a bl e o n d e b urri n g, c h a mf eri n g, milli n g a n d
D u al- c oll et t y p e
O P TI O N A L O R D E R N O. V A G- 6 0 9- 3 M M V A G- 6 0 9- 6 M M V A G- 6 0 9- 1/ 4 V A G- 6 0 9- 1/ 8
t ur bi n e oil # 6 0 G u ar a nt e e d f or 3 m o nt h s O R D E R N O. V A G- 6 0 9
C O L L E T SI Z E 3 m m, 6 m m
SPEE D 3 5, 0 0 0 R. P. M.
W EI G H T ( g) 530
C OLLET 3 m m 6 m m 1/ 4 1/ 8 LE N GT H 175 m m
C O D E N O. 8 0 0 1- 1 1 5 A 8 0 0 1- 1 1 5 B 8 0 0 1- 1 1 5 C 8 0 0 1- 1 1 5 D C O D E N O. 8 0 0 1- 1 1 5
A n gl e 4 5º t y p e
t ur bi n e oil # 6 0 G u ar a nt e e d f or 3 m o nt h s
G13
O P TI O N A L O R D E R N O. M A T E RI A L PA D V A G- 8 2 4 1- W F- 3 0 P- P A D V A G- 8 2 4 1- W F- 3 0 S- S A N D- 4 0 G R A D E # 4 0, p c s/ 1 0 0/ B O X V A G- 8 2 4 1- W F- 3 0 S- S A N D- 6 0 G R A D E # 6 0, p c s/ 1 5 0/ B O X G R A D E #60 V A G- 8 2 4 1- W F- 3 0 C- W H E E L
C O D E N O. 8 0 0 1- 1 1 6 A 8 0 0 1- 1 1 6 B 8 0 0 1- 1 1 6 C 8 0 0 1- 1 1 6 D
O R D E R N O.
W H E E L SI Z E
SPEE D
W EI G H T ( g)
LE N GT H
C O D E N O.
V A G- 8 2 4 1
ø30 m m
2 3, 0 0 0 R. P. M.
300
160 m m
8 0 0 1- 1 1 6
S P E CI A L U S A G E M A C HI N E
Air Di e T o ol All air t o ol n e e d t o a d d air t o ol oil & m ai nt ai n c e e v er y 3 m o nt h s.
E c o n o mi c t y p e
Fi x e d t y p e c oll et c h u c k: ø 6. 0 m m i s st a n d ar d. 1/ 4 c oll et i s a v ail a bl e u p o n y o ur r e q u e st. R eli a bl e q u alit y a n d e c o n o mi c pri c e. O P TI O N A L
t ur bi n e oil # 6 0 G u ar a nt e e d f or 3 m o nt h s O R D E R N O.
C O L L E T SI Z E
SPEE D
O R D E R N O.
C OLLET
V A G- 6 0 4- 6 M M
6 m m
8 0 0 1- 1 1 7 A
V A G- 6 0 4- 1/ 4
1/ 4
8 0 0 1- 1 1 7 B
LE N GT H
C O D E N O.
W EI G H T ( g)
V A G- 6 0 4
C O D E N O.
8 0 0 1- 1 1 7
R e pl a c e a bl e c oll et c h u c k: ø 3 m m ø 6 m m ar e st a n d ar d. 1/ 4 c oll et i s a v ail a bl e u p o n y o ur r e q u e st. Hi g h-t or q u e, q uit e-r u n ni n g a n d w ell b al a n c e.
Str o n g & sil e nt t y p e
O P TI O N A L
t ur bi n e oil # 6 0 G u ar a nt e e d f or 3 m o nt h s
C OLLET
C O D E N O.
V A G- 6 0 5- 3 M M
3 m m
8 0 0 1- 1 1 8 A
V A G- 6 0 5- 6 M M
6 m m
8 0 0 1- 1 1 8 B
V A G- 6 0 5- 1/ 4
1/ 4
8 0 0 1- 1 1 8 C
O R D E R N O.
C O L L E T SI Z E
SPEE D
W EI G H T ( g)
LE N GT H
C O D E N O.
V A G- 6 0 5
6 m m, 3 m m
2 5, 0 0 0 R. P. M.
520
150 m m
8 0 0 1- 1 1 8
ø 1 1/ 2 or ø 2 r u b b er p a d wit h q ui c k c h a n g e a br a si v e ar e a d diti o n al o pti o n s. ( e xtr a c h ar g e) Hi g h t or q u e, h e a v y- d ut y, g e n er al- p ur p o s e a p pli c a bl e o n d e b urri n g, c h a mf eri n g, milli n g a n d
A n gl e 9 0º t y p e
2
w h e el i s st a n d ar d.
O P TI O N A L
ø2
ø 1 1/ 2
t ur bi n e oil # 6 0 G u ar a nt e e d f or 3 m o nt h s
O R D E R N O.
C OLLET
C O D E N O.
V A G- 8 2 4 2- P A D- 1- 1/ 2
1 1/ 2
8 0 0 1- 1 1 9 A
2
8 0 0 1- 1 1 9 B
V A G- 8 2 4 2- P A D- 2
O R D E R N O.
P A D SI Z E
SPEE D
W EI G H T ( g)
LE N GT H
C O D E N O.
V A G- 8 2 4 2
50 m m
1 6, 0 0 0 R. P. M.
520
175 m m
8 0 0 1- 1 1 9
O R D E R N O.
SI Z E
C O D E N O.
V A G- 9 3 2- W H E E L
4
8 0 0 1- 1 2 0 A
S P E CI A L U S A G E M A C HI N E
R u b b er Pad
4
O R D E R N O.
AI R T O O L
A n gl e t o ol
O P TI O N A L
t ur bi n e oil # 6 0 G u ar a nt e e d f or 3 m o nt h s O R D E R N O.
W H E E L SI Z E
SPEE D
W EI G H T ( g)
LE N GT H
C O D E N O.
V A G- 9 3 2
1 0 0 m m, ( 4 )
1 1, 0 0 0 R. P. M.
1350
175 m m
8 0 0 1- 1 2 0
S P E CI A L U S A G E M A C HI N E
G14
Air Di e T o ol All air t o ol n e e d t o a d d air t o ol oil & m ai nt ai n c e e v er y 3 m o nt h s. Al s o s uit a bl e f or s h o e s, m ol d s, a n d w o o d e n pr o c e s s e s. C a n gri n d m et al s. E s p e ci al s uit a bl e f or n arr o w p art s or gr o o v e b a s e s & si d e s. O P TI O N A L O R D E R N O.
Q U A N TI T Y
C O D E N O.
V A G- 3 1 8- FI L E S E T
4 p c s/ S E T
8 0 0 1- 1 2 1 A
t ur bi n e oil # 6 0 G u ar a nt e e d f or 3 m o nt h s O R D E R N O.
C O L L E T SI Z E
SPEE D
Str o k e
W EI G H T ( g)
LE N GT H
C O D E N O.
V A G- 3 1 8
6 m m
3, 7 0 0 c y cl e/ mi n
9 m m
1, 2 5 0
175 m m
8 0 0 1- 1 2 1
Fi n g er s a n d er
t h e c or n er s a n d c o m pli c at e d c ur v e s. C a n pr o vi d e t h e s m o ot h a n d hi g h- s p e e d e c c e ntri c r ot ati o n m o v e m e nt a n d e a s y r e pl a c e m e nt wit h o ut
O P TI O N A L O R D E R N O. V A G- F 3 0- P A D- T HI N V A G- F 3 0- VI S CI D- T HI C K V A G- F 3 0- VI S CI D- T HI N V A G- F 3 0- S T E E L- P L A T E
t ur bi n e oil # 6 0
G u ar a nt e e d f or 3 m o nt h s
M A T E RI A L T HI N T HI C K T HI N PL AT E
C O D E N O. 8 0 0 1- 1 2 2 A 8 0 0 1- 1 2 2 B 8 0 0 1- 1 2 2 C 8 0 0 1- 1 2 2 D
O R D E R N O.
SI Z E
SPEE D
W EI G H T ( g)
LE N GT H
C O D E N O.
V A G- F 3 0
A br a si v e: W 2 0 m m
1 3, 0 0 0 R. P. M.
830
200 m m
8 0 0 1- 1 2 2
B elt S a n d er F or r e m o vi n g s p ot w el di n g, s e mi & a ut o m ati c w el d s, a d h e si v e, p ai nt, a n d ot h er c o ati n g i n c o n c a v e pl a c e s. O P TI O N A L
t ur bi n e oil # 6 0 G u ar a nt e e d f or 3 m o nt h s
O R D E R N O.
G R A DE
C O D E N O.
V A G- 3 1 0- B E L T
#100
8 0 0 1- 1 2 3 A
O R D E R N O.
SI Z E
SPEE D
W EI G H T ( g)
LE N GT H
C O D E N O.
V A G- 3 1 0
10x330 m m
1 6, 0 0 0 R. P. M.
800
290 m m
8 0 0 1- 1 2 3
B elt S a n d er F or r e m o vi n g s p ot w el di n g, s e mi & a ut o m ati c w el d s, a d h e si v e, p ai nt, a n d ot h er c o ati n g i n c o n c a v e pl a c e s. O P TI O N A L
t ur bi n e oil # 6 0 G u ar a nt e e d f or 3 m o nt h s
G15
O R D E R N O.
G R A DE
C O D E N O.
V A G- 3 2 0- B E L T
#100
8 0 0 1- 1 2 4 A
O R D E R N O.
B E L T SI Z E
SPEE D
W EI G H T ( g)
LE N GT H
C O D E N O.
V A G- 3 2 0
20x520 m m
1 6, 0 0 0 R. P. M.
11 0 0
360 m m
8 0 0 1- 1 2 4
S P E CI A L U S A G E M A C HI N E
A br a si v e M o u nt e d P oi nt & W h e el F or Air T o ol
E m er y W h e el
A B R A SI V E M O U N T E D P OI N T S
F E LT B O B S
R U B B E RI Z E P OI N T S 1 2 0 G RI T
O R D E R N O.
W A- 3 0 3 A
W A- 3 0 4 A
W A- 3 0 5 A
Ø D C O D E N O.
3 m m 8 0 0 1- 1 3 1
4 m m 8 0 0 1- 1 3 2
5 m m 8 0 0 1- 1 3 3
O R D E R N O.
W A- 3 0 6 A
W A- 3 0 8 A
W A- 3 1 0 A
Ø D C O D E N O.
6 m m 8 0 0 1- 1 3 4
8 m m 8 0 0 1- 1 3 5
10 m m 8 0 0 1- 1 3 6
O R D E R N O.
W F- 3 0 4
W F- 3 0 5
W F- 3 0 6
Ø D C O D E N O.
4 m m 8 0 0 1- 1 3 7
5 m m 8 0 0 1- 1 3 8
6 m m 8 0 0 1- 1 3 9
O R D E R N O.
W F- 3 0 8
W F- 3 1 0
W F- 3 1 2
Ø D C O D E N O.
8 m m 8 0 0 1- 1 4 0
10 m m 8 0 0 1- 1 4 1
12 m m 8 0 0 1- 1 4 2
O R D E R N O.
W R- 3 0 4
W R- 3 0 5
Ø D C O D E N O.
4 m m 8 0 0 1- 1 4 4
5 m m 8 0 0 1- 1 4 5
O R D E R N O.
W R- 3 0 6
W R- 3 0 8
W R- 3 1 0
Ø D C O D E N O.
6 m m 8 0 0 1- 1 4 6
8 m m 8 0 0 1- 1 4 7
10 m m 8 0 0 1- 1 4 8
R E SI N OI D P OI N T S
O R D E R N O.
W E- 3 0 3
W E- 3 0 4
W E- 3 0 5
1 2 0 G RI T
Ø D C O D E N O.
3 m m 8 0 0 1- 1 4 9
4 m m 8 0 0 1- 1 5 0
5 m m 8 0 0 1- 1 5 1
O R D E R N O.
W E- 3 0 6
W E- 3 0 8
W E- 3 1 0
Ø D C O D E N O.
6 m m 8 0 0 1- 1 5 2
8 m m 8 0 0 1- 1 5 3
10 m m 8 0 0 1- 1 5 4
R U B B E RI P A D
P A P E R DI S C
C UP W HEEL
Ø30 m m
Ø30 m m G RI T 1 0 0 1 5 0 P C S/ B O X Packed
Ø30 m m G RI T 6 0 4 0 P C S/ B O X Packed
O R D E R N O. W F- 3 0 P C O D E N O. 8 0 0 1- 1 5 5
O R D E R N O. W F- 3 0 S C O D E N O. 8 0 0 1- 1 5 6
O R D E R N O. W F- 3 0 C C O D E N O. 8 0 0 1- 1 5 7
H a n d y S p o n g e S a n d er F e at ur e s:
V S S- 4 3 6
C o n v e ni e nt All p ur p o s e S q u ar e s h a p e : e a s y t o h a n dl e R e m o v e ir o n r u st or s cr at c h e s & unevenness G o o d f or r o u n d e d g e s a n d c or n er s
O R D E R N O.
V S S- 5 6 0
V S S- 4 3 6 V S S- 4 6 0 V S S- 4 1 0 0 V S S- 5 6 0 V S S- 5 1 0 0
Gr e at f or s a n di n g n arr o w s p a c e s & u n e v e n s urf a c e M O Q: 1 B O X=24 P C S
A v aili a bl e Grit DI M E N SI O N S ( m m) 3 6 c o ar s e 6 0 m e di m 100 x 70 x 25 36# 35 100 x 70 x 25 60# 35 100 x 70 x 25 100# 125 x 98 x 13 60# 35 125 x 98 x 13 36#
W EI G H T kgs 35 35
C O D E N O. 8 0 0 1- 2 2 0 8 0 0 1- 2 2 1 8 0 0 1- 2 2 2 8 0 0 1- 2 2 3 8 0 0 1- 2 2 4
S P E CI A L U S A G E M A C HI N E
G16
S P E CI A L U S A G E M A C HI N E
T h e s h a n k si z e i s ø 3. 0 T h e w h e el si z e i s ø D T h e mi ni m u m q u a ntit y i s 1 0 0 p c s / e a c h
Air Di e T o ol
AI R L A P P E R S F or Ø 3. 0 m m s h a n k. L o w n oi s e, l o w vi br ati o n a n d d ur a bl e t o ol lif e. Dr y air o nl y. T ur b o t y p e. Dri v e n b y t ur bi n e air m ot or.
G u ar a nt e e d f or 3 m o nt h s O R D E R N O. V A G- 0 3 0
ST R O KE 0. 3 m m
SPEE D 2 8, 0 0 0 r. p. m.
DI M E N SI O N S Ø28 x 200 m m
W EI G H( g) 220
C O D E N O. 8 0 0 1- 1 2 6
All c a s e b o x ar e n ot u n d er w arr a nt y.
Air Di e T o ol
AI R L A P P E R S F or Ø 3. 0 m m s h a n k.
Ultr a t y p e. Dr y air o nl y. G u ar a nt e e d f or 3 m o nt h s O R D E R N O. V A G- 0 5 0
ST R O KE 0. 5 m m
SPEE D 4 5, 0 0 0 r. p. m.
DI M E N SI O N S Ø23 x 185 m m
W EI G H( g) 220
C O D E N O. 8 0 0 1- 1 2 7
All c a s e b o x ar e n ot u n d er w arr a nt y.
Air Di e T o ol
AI R L A P P E R S F or Ø 3. 0 m m s h a n k. Si d e t o si d e str o k e.
Dr y air o nl y.
G u ar a nt e e d f or 3 m o nt h s O R D E R N O. V A G- 0 7 0
ST R O KE 0. 7 m m
SPEE D 1 5, 0 0 0 r. p. m.
DI M E N SI O N S Ø28 x 205 m m
W EI G H( g) 305
C O D E N O. 8 0 0 1- 1 2 8
All c a s e b o x ar e n ot u n d er w arr a nt y.
Air Di e T o ol
F or Ø 3. 0 m m s h a n k.
AI R L A P P E R S
pr o c e s s of m ol d a n d di e. L o w n oi s e, l o w vi br ati o n a n d d ur a bl e lif e. Dri v e n b y t ur bi n e air m ot or. T ur b o t y p e. Dr y air o nl y.
G u ar a nt e e d f or 3 m o nt h s O R D E R N O. V A G- 0 7 0 H
ST R O KE 0. 7 m m
SPEE D 2 8, 0 0 0 r. p. m.
DI M E N SI O N S Ø28 x 200 m m
W EI G H( g) 220
C O D E N O. 8 0 0 1- 1 2 9
All c a s e b o x ar e n ot u n d er w arr a nt y. G17
S P E CI A L U S A G E M A C HI N E
Di a m o n d T o ol s F or Air T o ol
O R D E R N O. W G- 3 0 D
C O D E N O. 8 0 0 1- 1 6 0
Di a m o n d m o u nt e d p oi nt s( 3. 0 s h a n k)
Grit si z e: ø 2. 0 ~ ø 5. 0 i s 1 2 0 # ø 1. 0 ~ ø 1. 5 i s 1 5 0 #, o n e s et i n cl u di n g all p oi nt e a c h o n e, t ot al i s 3 0 p c s/ s et
W G- 3 0 D: 3 0 P C S / s et ( s et i n ø 3. 0 m m s h a n k) W G- 3 0 D-I: 3 0 P C S / s et ( s et i n ø 1/ 8 s h a n k) W ei g ht: 0. 1 k g s S H A N K SI Z E
O R DE R N O. Ø D L C O DE N O.
O R DE R N O. Ø D L C O DE N O.
O R DE R N O. Ø D L C O DE N O.
U nit: m m
10 A
15 A
20 A
25 A
30 A
35 A
40 A
50 A
15 C
20 C
Ø1 8
Ø 1. 5 8
Ø2 8
Ø 2. 5 8
Ø3 10
Ø 3. 5 10
Ø4 10
Ø5 10
Ø 1. 5 8
Ø2 8
8 0 0 1- 1 6 1
8 0 0 1- 1 6 2
8 0 0 1- 1 6 3
8 0 0 1- 1 6 4
8 0 0 1- 1 6 5
8 0 0 1- 1 6 6
8 0 0 1- 1 6 7
8 0 0 1- 1 6 8
8 0 0 1- 1 6 9
8 0 0 1- 1 7 0
25 C
30 C
35 C
40 C
50 C
20 B
30 B
50 B
20T
30T
Ø 2. 5 8
Ø3 10
Ø 3. 5 10
Ø4 10
Ø5 10
Ø2 -
Ø3 -
Ø5 -
Ø2 10
Ø3 10
8 0 0 1- 1 7 1
8 0 0 1- 1 7 2
8 0 0 1- 1 7 3
8 0 0 1- 1 7 4
8 0 0 1- 1 7 5
8 0 0 1- 1 7 6
8 0 0 1- 1 7 7
8 0 0 1- 1 7 8
8 0 0 1- 1 7 9
8 0 0 1- 1 8 0
30 V
15 R
20 R
30 R
20 P
30 P
20F
30F
50F
30 S
Ø3 10
Ø 1. 5 10
Ø2 12
Ø3 14
Ø2 12
Ø3 15
Ø2 10
Ø3 10
Ø5 10
Ø3 6
8 0 0 1- 1 8 1
8 0 0 1- 1 8 2
8 0 0 1- 1 8 3
8 0 0 1- 1 8 4
8 0 0 1- 1 8 5
8 0 0 1- 1 8 6
8 0 0 1- 1 8 7
8 0 0 1- 1 8 8
8 0 0 1- 1 8 9
8 0 0 1- 1 9 0
S P E CI A L U S A G E M A C HI N E
G18
S P E CI A L U S A G E M A C HI N E
3 0 P C S A S S O R T M E N T S E T: C O N T AI N S O N E E A C H O F A B O V E P OI N T S.
C ar bi d e R ot ar y B urr s
C Y LI N D E R R O U N D N O S E
U nit : m m
O R D E R N O.
D
R
L
L1
d
W EI G H T( g)
C O D E N O.
V R B- C 6
6
3. 0 R
65
16
6
0. 0 2
8 0 0 1- 3 0 1
V R B- C 8
8
4. 0 R
65
20
6
0. 0 3
8 0 0 1- 3 0 2
V R B- C 1 0
10
5. 0 R
65
20
6
0. 0 3
8 0 0 1- 3 0 3
V R B- C 1 2
12
6. 0 R
65
25
6
0. 0 4
8 0 0 1- 3 0 4
C ar bi d e R ot ar y B urr s
SP HE RE
U nit : m m
O R D E R N O.
D
L
L1
d
W EI G H T( g)
C O D E N O.
V R B- S 6
6
55
5
6
0. 0 2
8 0 0 1- 3 1 1
V R B- S 8
8
65
7
6
0. 0 3
8 0 0 1- 3 1 2
V R B- S 1 0
10
65
9
6
0. 0 3
8 0 0 1- 3 1 3
V R B- S 1 2
12
65
10
6
0. 0 4
8 0 0 1- 3 1 4
C ar bi d e R ot ar y B urr s
A R C H R O U N D N OSE
U nit : m m
G19
O R D E R N O.
D
R
L
L1
d
W EI G H T( g)
C O D E N O.
V R B- A 6
6
1. 5 R
65
18
6
0. 0 2
8 0 0 1- 3 2 1
V R B- A 8
8
2 R
65
20
6
0. 0 3
8 0 0 1- 3 2 2
V R B- A 1 0
10
2. 5 R
65
20
6
0. 0 3
8 0 0 1- 3 2 3
V R B- A 1 2
12
3 R
65
25
6
0. 0 4
8 0 0 1- 3 2 4
S P E CI A L U S A G E M A C HI N E
C ar bi d e R ot ar y B urr s
A R C H P OI N T N O S E
U nit : m m
O R D E R N O.
D
R
L
L1
d
W EI G H T( g)
C O D E N O.
V R B- P 6
6
26 R
65
18
6
0. 0 2
8 0 0 1- 3 3 1
V R B- P 8
8
27 R
65
20
6
0. 0 3
8 0 0 1- 3 3 2
V R B- P 1 0
10
28 R
65
20
6
0. 0 3
8 0 0 1- 3 3 3
V R B- P 1 2
12
30 R
65
25
6
0. 0 4
8 0 0 1- 3 3 4
C ar bi d e R ot ar y B urr s
C O N E WI T H R O U N D N O S E
O R D E R N O.
D
R
L
L 1
d
W EI G H T( g)
C O D E N O.
V R B- C R 6
6
1. 2 R
65
16
6
0. 0 2
8 0 0 1- 3 4 1
V R B- C R 8
8
1. 4 R
65
22
6
0. 0 3
8 0 0 1- 3 4 2
V R B- C R 1 0
10
2. 2 R
65
25
6
0. 0 3
8 0 0 1- 3 4 3
V R B- C R 1 2
12
3. 0 R
80
28
6
0. 0 4
8 0 0 1- 3 4 4
C ar bi d e R ot ar y B urr s
C O N E WI T H R O U N D N O S E
U nit : m m
O R D E R N O.
D
L
L1
d
W EI G H T( g)
C O D E N O.
V R B- P C 6
6
65
18
6
0. 0 2
8 0 0 1- 3 5 1
V R B- P C 8
8
65
20
6
0. 0 3
8 0 0 1- 3 5 2
V R B- P C 1 0
10
65
20
6
0. 0 3
8 0 0 1- 3 5 3
V R B- P C 1 2
12
65
25
6
0. 0 4
8 0 0 1- 3 5 4
S P E CI A L U S A G E M A C HI N E
G20
S P E CI A L U S A G E M A C HI N E
U nit : m m
S cr e w dri v er Bl a d e s & Ti p s
C hr o m e- V a n a di u m St e el ( Cr- V St e el) H ar d n e s s : H R C 5 0- 5 2 T or q u e : m e et DI N st a n d ar d S 2 St e el H ar d n e s s : H R C 5 8- 6 0 T or q u e : U p 1 0 % fr o m Cr- M o C hr o m e- M ol y b d e n u m St e el ( Cr- M o St e el) V E R T E X st a n d ar d H ar d n e s s : H R C 5 4- 5 6 ( Sl ott e d H R C 5 2- 5 4) T or q u e : U p 3 0 % fr o m Cr- V
H a n dl e si z e Li st ( m m) M o d el VE RTEX Bl a d e Ø St a n d ar d Pr o c e s s f or Ti p : St u b b y
Di a m o n d H e a d (f or S 2 o nl y) V S. B all P oi nt Di a m o n d H e a d
B all P oi nt
H1
H A R D W A R D A C C E S S O RI E S
22 x 74 27 x 92 27 x 92 3 2 x 11 0 3 5 x 11 8 38 x 125 32 x 55
S cr e w dri v er Ø M at eri al : bl a d e : Cr- M o,( 4 m m u p st a m p e d m at eri al),
L M O Q: 1 Box = 12 P C S
SL OTTE D O R D E R N O.
B L A D E SI Z E ( ø m m x W x L )
G. W. kgs
Box
m m C O D E N O.
T S D- S 3
12 P C S
9 0 0 1- 0 0 1
T S D- S 4
12 P C S
9 0 0 1- 0 0 2
T S D- S 5
12 P C S
9 0 0 1- 0 0 3
T S D- S 6
12 P C S
9 0 0 1- 0 0 4
T S D- S 6 L
12 P C S
9 0 0 1- 0 0 5
T S D- S 8
12 P C S
9 0 0 1- 0 0 6
P HI L LI P S
G. W. kgs
m m
O R D E R N O.
B L A D E SI Z E ( ø m m x W x L )
Box
T S D- P 3
# 0( 3 m m) x 7 5
12 P C S
9 0 0 1- 0 2 1
T S D- P 6
# 2( 6 m m) x 3 8
12 P C S
9 0 0 1- 0 2 3
T S D- P 8
# 3( 8 m m) x 1 5 0
12 P C S
9 0 0 1- 0 2 5
S T A R T A M P E R R E SI S T A N T B L A D E SI Z E ( ø m m x W x L )
Box
G. W. kgs
C O D E N O.
m m
O R D E R N O.
Tr o x T y p e
C O D E N O.
T S P- T 9
T9
12 P C S
9 0 0 1- 0 6 1
T S P- T 1 0
T10
12 P C S
9 0 0 1- 0 6 2
T S P- T 1 5
T15
12 P C S
9 0 0 1- 0 6 3
I n s ul at e d M O Q: 1 Box = 12 P C S
SL OTTE D O R D E R N O.
B L A D E SI Z E ( ø m m x W x L )
Box
G. W. kgs
m m C O D E N O.
TI S- S 3
12 P C S
9 0 0 1- 0 8 1
TI S- S 4
12 P C S
9 0 0 1- 0 8 2
TI S- S 5
12 P C S
9 0 0 1- 0 8 3
TI S- S 6
12 P C S
9 0 0 1- 0 8 4
TI S- S 8
12 P C S
9 0 0 1- 0 8 5
P HI L LI P S O R D E R N O.
B L A D E SI Z E ( ø m m x W x L )
Box
G. W. kgs
m m C O D E N O.
TI S- P 3
# 0( 3 m m) x 7 5
12 P C S
9 0 0 1- 1 0 1
TI S- P 5
# 1( 5 m m) x 1 0 0
12 P C S
9 0 0 1- 1 0 2
TI S- P 6
# 2( 6 m m) x 1 0 0
12 P C S
9 0 0 1- 1 0 3
TI S- P 8
# 3( 8 m m) x 1 5 0
12 P C S
9 0 0 1- 1 0 4
H A R D W A R D A C C E S S O RI E S
H2
S C R E W D RI V E R
I n s ul at e d S cr e w dri v er
L T y p e K e y S et M at eri al : S 2 St e el Fi ni s h : C hr o m e Pl at e d S ati n Fi ni s h
M O Q: 1 Box = 12 S E T S O R D E R N O.
SI Z E
L e n g et h
T H B- 1
G. W. kgs
Box 12 S ET S
C O D E N O. 9 0 0 3- 0 0 1
9 P C S/ S ET
L T y p e K e y S et M at eri al: S 2 St e el St a n d ar d Fi ni s h: C hr o m e Pl at e d S ati n Fi ni s h M O Q: 1 Box = 12 S E T S
O R D E R N O.
SI Z E
L e n g et h
T H B- 1 1
G. W. kgs
Box 12 S ET S
C O D E N O. 9 0 0 3- 0 2 1
9 P C S/ S ET
Pli er s / I n s ul at e d Pli er s M at eri al: C hr o m e- V a n a di u m St e el H a n dl e M at eri al: T P R
L O N G N O S E P LI E R S
DI A G O N A L C U T TI N G P LI E R S
m m
O R D E R N O.
LE N GT H
T P L- D 1
160
G. W. kgs
m m
C O D E N O.
O R D E R N O.
LE N GT H
9 0 0 4- 0 0 1
T P L- L 1
200
C O M BI N A TI O N C U T TI N G P LI E R S
G. W. kgs
C O D E N O. 9 0 0 4- 0 1 0
C O M BI N A TI O N C U T TI N G P LI E R S
m m
H3
O R D E R N O.
LE N GT H
T P L- C 1
180
G. W. kgs
H A R D W A R D A C C E S S O RI E S
m m
C O D E N O.
O R D E R N O.
LE N GT H
9 0 0 4- 0 0 5
T PI-I C
180
G. W. kgs
C O D E N O. 9 0 0 4- 0 4 0
T- B ar S et
T B ar L K e y S et - P a c k e d Wit h M et al St a n d
9 p c s / s et
St a n d C ol or: Bl a c k Bl a d e: S 2 St e el M O Q: 1 Box = 12 S E T S
O R D E R N O.
H a n dl e C ol or s
SI Z E
Box
G. W. kgs
T H B- 5 1
C O DE N O. 9 0 0 3- 2 0 1
St ar T a m p er R e si st a nt
12 S ET S
: T 9, T 1 0, T 1 5, T 2 0,
T H B- 5 2
9 0 0 3- 2 0 2
T- B ar N ut dr w er S et
T - B ar N ut dri v er S et - P a c k e d Wit h M et al St a n d
N ut dri v er M at eri al : C R- V st e el M O Q: 1 Box = 10 S E T S
O R D E R N O.
T H B- 5 3
SI Z E
G. W. kgs
Box
S h ort S o c k et: 5, 6, 7 m m
C O D E N O.
10 S ET S
9 0 0 3- 2 1 1
P A T E N T D E SI G N
T- B A R S E T
H e x- T K e y Bl a d e: S 2 St e el St a n d ar d Fi ni s h: C hr o m e Pl at e d S ati n Fi ni s h M O Q: 1 Box = 12 P C S O R DE R N O. T H B- 1. 5 T H B- 2. 0 T H B- 2. 5 T H B- 3 T H B- 4 T H B- 5 T H B- 6 T H B- 8 T H B- 1 0
TI P SI Z E ( m m)
H A N DLE SI Z E ( m m)
11 2 × 6 8 11 2 × 6 8 11 2 × 6 8 11 2 × 6 8
A ( M M) LE N GT H 12 12 12 12 15 15 15 20 20
L ( M M) LE N GT H 75 75 75 75 80 100 100 150 150
B OX
12 P C S
G. W. K G S
C O D E N O. 9 0 0 3- 2 2 1 9 0 0 3- 2 2 2 9 0 0 3- 2 2 3 9 0 0 3- 2 2 4 9 0 0 3- 2 2 5 9 0 0 3- 2 2 6 9 0 0 3- 2 2 7 9 0 0 3- 2 2 8 9 0 0 3- 2 2 9
H A R D W A R D A C C E S S O RI E S
H4
J a w Cl a m p
STA N D A R D
E a s y t o u s e, m ulti p ur p o s e cl a m p All o y st e el : T h a n dl e
O R D E R N O.
S p a n x D e pt h Si z e ( m m)
H J C- V S 3 0
300 x 120
H J C- V S 4 0
400 x 120
H J C- V S 5 0
500 x 120
H J C- V S 6 0
600 x 120
9 1 0 1- 0 0 4
H J C- V S 8 0
800 x 120
9 1 0 1- 0 0 5
H J C- V S 1 0 0
1000 x 120
H J C- V S 1 2 5
1250 x 120
H J C- V S 1 5 0
1500 x 120
S pr e a di n g
W ei g ht ( k g s)
Cl a m pi n g F or c e ( k g s)
C O D E N O. 9 1 0 1- 0 0 1
750
1000
9 1 0 1- 0 0 2 9 1 0 1- 0 0 3
9 1 0 1- 0 0 6 9 1 0 1- 0 0 7 9 1 0 1- 0 0 8
J a w Cl a m p
HE AVY
E a s y t o u s e, m ulti p ur p o s e cl a m p All o y st e el : T h a n dl e
H5
O R D E R N O.
S p a n x D e pt h Si z e ( m m)
H J C- H 2 5
250 x 120
9 1 0 1- 1 2 1
H J C- H 3 0
300 x 140
9 1 0 1- 1 2 2
H J C- H 4 0
400 x 120
9 1 0 1- 1 2 3
H J C- H 5 0
500 x 140
9 1 0 1- 1 2 4
H J C- H 6 0
600 x 120
H J C- H 8 0
800 x 140
9 1 0 1- 1 2 6
H J C- H 1 0 0
1000 x 120
9 1 0 1- 1 2 7
H J C- H 1 2 5
1250 x 120
9 1 0 1- 1 2 8
H J C- H 1 5 0
1500 x 120
9 1 0 1- 1 2 9
H A R D W A R D A C C E S S O RI E S
S pr e a di n g
W ei g ht ( k g s)
Cl a m pi n g F or c e ( k g s)
1200
C O D E N O.
9 1 0 1- 1 2 5
C ar b o n St e el P u n c h e s N U M BE R P U N C HES
7
8
0
4
5
1
2
O R D E R N O.
P U N C H E S SI Z E
N. W. ( k g)
C O D E N O.
V N P- 3 0
7 0 0 5- 1 0 1
6
V N P- 4 0
7 0 0 5- 1 0 2
3
V N P- 5 0
7 0 0 5- 1 0 3
V N P- 6 0
7 0 0 5- 1 0 4
V N P- 8 0
7 0 0 5- 1 0 5
V N P- 1 0 0
7 0 0 5- 1 0 6
LETTE R P U N C HES
O R D E R N O.
T K B
U L C
V M D
W N E
X O F
Y P G
Z Q H
I
R
N. W. ( k g)
C O D E N O.
V L P- 3 0
7 0 0 5- 1 2 1
V L P- 4 0
7 0 0 5- 1 2 2
V L P- 5 0
7 0 0 5- 1 2 3
V L P- 6 0
7 0 0 5- 1 2 4
V L P- 8 0
7 0 0 5- 1 2 5
V L P- 1 0 0
7 0 0 5- 1 2 6
M U L TI- F U N C TI O N S E T S
S J A
P U N C H E S SI Z E
H A R D W A R D A C C E S S O RI E S
H6
P
F or Drill R e- s h ar p e ni n g
R e a s o n a bl e Pri c e
J1
S P E CI A L U S A G E M A C HI N E
S P E CI A L U S A G E M A C HI N E S P E CI A L U S A G E M A C HI N E
J2
.
J3
S P E CI A L U S A G E M A C HI N E
P
S P E CI A L U S A G E M A C HI N E
P
S P E CI A L U S A G E M A C HI N E
J4
SPEE D
31
S P E CI A L U S A G E M A C HI N E
6
S P E CI A L U S A G E M A C HI N E
2
S P E CI A L U S A G E M A C HI N E
J6
S P E CI A L U S A G E M A C HI N E
3
S P E CI A L U S A G E M A C HI N E
2
S P E CI A L U S A G E M A C HI N E
J9
S P E CI A L U S A G E M A C HI N E
S P E CI A L U S A G E M A C HI N E S P E CI A L U S A G E M A C HI N E
FA
S
A T E
S Y
6
SPEE D
1P H
J 11
S P E CI A L U S A G E M A C HI N E
S P E CI A L U S A G E M A C HI N E S P E CI A L U S A G E M A C HI N E
J12