How to choose industrial waterproof connector?

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How to choose industrial waterproof connector? Industrial connectors, as a component that is often in contact with electronic engineering technicians in the industrial field, act as a connection, and bridge the communication between the blocked or isolated circuits in the circuit to allow current to flow. The arrival of the intelligent industrial era has also brought spring to industrial connectors, especially in the fields of industrial automation, robotics and motor control. As connector products that are used in many industries, many users will face the problem of selecting industrial waterproof connectors. Industrial waterproof connectors 1. According to the choice of use environment Air humidity, temperature, etc. are determined by the environment in which the industrial waterproof connector is used, so we must consider the environmental impact of the location before selecting the model. And the industrial waterproof connector has the factors such as impact and vibration during use, we need to choose the connector that suits our use according to the location and environment. 2. The correct choice of industrial waterproof connector type Users must first understand the location of the industrial waterproof connector they choose to use, what to connect to, etc. These specific use requirements will determine the type of industrial waterproof connector. For example, the use of connectors in outdoor, indoor, humid, and corrosive environments will affect whether we need waterproof, sealed and other industrial waterproof connectors with protective functions. The type of connector determines the number of terminals we use and how many conductive terminals are arranged. 3. According to electrical requirements In our own use, the connector needs to meet the current and voltage, etc. Whether the connector can meet the current and voltage in actual use, we must advance considering. In addition to these common electrical requirements, there are resistance, millivolt drop, maximum current value, inrush current value, pull-out loss avoidance efficiency, allowable resistance change, and the like. 4. The choice of specific specifications Industrial waterproof connector manufacturers use approximately 20 test mechanisms as a source of some or all of their connector specifications. When choosing, we should consider the use requirements in some special cases (including whether the international is universal, etc.). 5. According to mechanical properties What kind of coverage area and volume is effective for industrial waterproof connectors? What size tolerance does the connector allow? What are the terminal pull-out and insertion force requirements?


How many times does the industrial waterproof connector allow for plugging (lifetime)? These various mechanical problems should be considered when we choose.

Why do connectors fail? Ideally, your connectors perform to their rated lifecycles. If you install a connector rated for 10,000 mating cycles, you expect it to go that distance. But if you’ve ever had a cell phone charger stop working correctly, you know that’s not always the case. And for industrial machinery, improper designs and other factors can cause connectors to fail prematurely, which can cause costly machine damage. Here’s a look at some common causes of failure and how to prevent them. Wear and tear —Repeated connection and disconnection of a connector can cause the metal on the contacts to wear and corrode if exposed to water, dust, dirt and other harsh elements. As a result, the mating pins may not properly engage when inserted into the connector shell. Always choose connectors rated for the required mating cycles you will need. Improper selection — Environments where there may be moisture ingress require special connectors. If a standard connector is used in place of one with an IP68 or IP69 rating or a hermetic design, water can cause the connector to fail. Choosing an undersized connector can also reduce efficiency, thus making the connector work harder to keep up with demand. This will decrease connector life. Extreme temperatures — If connectors are not rated for extremely high or low temperatures, they will eventually fail. If not rated for high temperatures, the insulation fails and conductivity will also spike. If operated at continued high temperatures, these spikes will add to the temperature elevation, which can cause corrosion and eventually, reduced contact force. This can impact the electrical signal traveling through the connector and cable assembly, which in turn can create an open circuit. While cold temperatures do not impact connectors as harshly as hot temperatures do, low-temperature designs should be considered if you know your application will require them. Exposure to continued low-temperatures can cause tin-plated connector materials to soften, which in turn increases contact resistance. In addition, cold temperatures can impact other parts of the connector, like making plastic shells go brittle. Improper design and installation — If an application will experience shock, vibration and other damaging motions, it is important to find secure designs that create a strong latch. If not securely mounted, the connector contacts, the mating shells and even the cable could suffer damage. In addition, connector and cable assemblies must have proper strain relief and installation routing — using guided troughs, cable carriers and cable glands help to ensure rated assembly life. Visit https://aic.in/industrial-connectors/ for cable tray, starters for motors, cat6 cable, patch cord, surge arrester, frls cable, cat6 cable price, shielded cable, motor starter single phase, siemens contactor, cat5e cable, flexible cable, control cable, pvc cable tray, siemens mcb, instrumentation cable, ethernet cable price, cat6 cable price 100 meter, cable gland single compression, submarine cable india, abb mcb, industrial switch, heat cable, siemens starter, fire resistant cable.


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