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Global Markets and Technologies for Photonic Crystals Published on February 2013

Report Summary INTRODUCTION Photonic crystals are waiting to get their rightful due after spending almost a century in relative obscurity. A combination of technology and business factors has kept large-scale commercialization of photonic crystals in particular and photonic circuitry in general at bay. The principal reason for the lack of enthusiasm for embracing this technology is the unwillingness and apprehension involved in exploring alternatives to well-oiled and well-established fabrication processes. Most of these conventional processes, however, are facing the ends of their lives because they have reached their physical limits. Photonic crystal-driven sensing, which promises switching at speeds much higher than that which is delivered by present-day technologies, is therefore poised to gain greater acceptance in various industries. To be fair, the extent of risk involved in such migration without the technology having being developed to a foolproof state is cripplingly high, but photonic crystal stakeholders have no reason to lose heart, as there are multiple avenues for monetizing them through an array of components and modules. This report, which covers the market potential for such modules and components, does not claim to include an exhaustive list. It is indeed possible for photonic crystals to be employed in other areas. These modules and components have been selected because there are demonstrated instances of successful adoption of photoniccrystals in these applications. By charting the market potential for these modules and components, this report presents the full extent of the promise of photonic crystals through 2017. STUDY GOALS AND OBJECTIVES This study's goals and objectives are: ' To measure and forecast the market size for overall components and modules internalizingphotonic crystals in value terms for each individual component and module, as well as in volume terms wherever possible. ' To break down the overall photonic crystal market along individual components and modules, including: - Light-emitting devices or diodes (LEDs). - Solar and photovoltaic (PV) cells. - Displays. - Biosensors. - Image sensors. - Optical fibers. - Discrete and integrated optical components. - Lasers and supercontinuum sources. ' To break down the individual photonic crystal component and module market along businessmarkets, including: - Automotive. - Energy, utilities and lighting.

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>> Get this Report Now by email! - Medicine. - Telecom. - Industrial and scientific. - Defense, surveillance and aerospace. - Computing and consumer electronics. - White goods. - Office space. ' To break down the individual photonic crystal component and module market along photoniccrystal dimensions, including the three-dimensional market. ' To break down the individual photonic crystal component and module market along specific geographic regions: - Americas. - Europe, the Middle East and Africa (EMEA). - Asia-Pacific (APAC) ' To break down the individual photonic crystal components and modules market along the following countries in value and volume terms: - U.S. - Brazil. - Canada. - Mexico. - Germany. - U.K. - France. - Italy. - Spain. - Russia. - The Netherlands. - Turkey. - China. - Japan. - India. - Indonesia. - South Korea. ' To analyze the stakeholder landscape in the photonic crystal commercialization endeavors. ' To analyze the patenting activity involving photonic crystals. REASONS FOR DOING THE STUDY BCC Research published its earlier report on photonic crystals in the middle of 2011. The reason for the quick review is the rapid changes in the prospects of photonic crystal components over 2011 and 2012. To be sure, the fundamentals of photonic crystals remain unchanged, as does the list of key components that will be monetized earlier than others. There are certain significant changes in the prospects of the components themselves that have prompted a second look. An additional prompting factor has been the relative lack of breakthrough in fabrication techniques that can prompt large-scale integration of photonic crystals with these modules and components. The ongoing economic and political crises in the European Union (EU), as well as in the Middle East and the South China Sea, have also contributed to the recalibration of the forecast. The review reassesses the strategies of key stakeholders, and records and analyzes latest developments. A significant value addition facilitated by the review is the breakdown of individual photonic crystal components by key country markets. This breakdown provides an opportunity for analysis of the potential for photonic crystals to newer levels of refinement.

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>> Get this Report Now by email! In the larger context, the principal objective of this report is to chart the progress of a technology that is acquiring increasing surety and self-confidence across multiple domains. Photonic crystals have been the classic underachievers in that they have been full of promise and sound in theory but poor on implementation. BCC Research forecasts that photonic crystals will witness an upswing in industry interest across several domains and applications. Photonic crystals can indeed rival electrons in terms of sheer versatility. In this context, it is interesting to note the approach adopted by different stakeholders toward photonic crystals. The report will provide a quantitative roadmap that will unravel this approach. A dilemma that one faces with a technology such as photonic crystals is to accurately chart its scope. The simplicity of its technical premise opens doors to numerous integration possibilities. This report aims to sift out the most relevant and timely integration approaches by identifying specific components and modules that are most likely to emerge as the largest adopters of photonic crystals in near future. Thus, the reader can derive an accurate estimate of the market size of not just the overall picture, but also of specific components and modules in terms of business markets, geography to regions and dimensions of the photonic crystals employed. SCOPE OF THE REPORT The report forecasts the size of the market in current U.S. dollars for overall components and modules internalizingphotonic crystals in value terms for each individual component, as well as in module and volume terms wherever possible, from 2012 through 2017. The report forecasts the market size for: ' Photonic crystal-enabled components and modules such as LEDs, solar and PV cells, displays, biosensors, image sensors, optical fibers, discrete and integrated optical components, and lasers and supercontinuum sources. ' Forecasts are classified on the basis of end application market, photonic crystal dimension, geographic region and individual country markets. ' The Executive Summary provides a snapshot of key findings of the report. The chapter discussing the theoretical overview of photonic crystals provides an overview of the market size of components and modules internalizing photonic crystals from 2010 through 2017. It also lays down the theoretical ground for better appreciation of the technology and commercial promise of photonic crystals across applications and domains. The chapter on global markets for photonic crystal components and modules provides a detailed analysis of the present-day state of the art in photonic crystal applications. It also deals with individual components and modules in which photonic crystals are poised to make the most prominent marks. It discusses the market potential in terms ofmarkets, dimensions and geographic regions. It uncovers the basic theory behind the running of these modules, and then emphasizes the advantages ushered by photonic crystals over conventional methods and material. The chapter on regional analysis for the Americas presents an overview of the region and the overall market metrics, followed by analyses of individual countries such as the U.S., Brazil, Canada and Mexico. The chapter on regional analysis for Europe, the Middle East and Africa (EMEA) presents an overview of the region and the overall market metrics, followed by analyses of individual countries such as Germany, France, the U.K., Spain, Italy, Russia, the Netherlands and Turkey. The chapter on regional analysis for Asia-Pacific (APAC) presents an overview of the region and the overall market metrics, followed by analyses of individual countries such as China, Japan, India, South Korea and Indonesia. The chapter on vendor and stakeholder analysis lists and explains the major stakeholder classes engaged inphotonic crystal

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>> Get this Report Now by email! commercialization. It also analyzes the activities of key players in this domain. The U.S. Patent Analysis chapter highlights the patenting activity underway in the area of photonic crystals. The chapter classifies the patents awarded according to functional categories such as design innovations; energy applications of photonic crystals; fabrication and synthesis methodologies; integrated circuits and quantum dots; laser applications of photonic crystals; lighting applications of photonic crystals; photonic crystal fiber applications; sensor applications of photonic crystals and telecommunications applications of photonic crystals. INTENDED AUDIENCE This report will be relevant to: ' Photonic crystal technology experts to identify the key components and modules that hold greatest promise for their technology adoption. ' Experts and those involved with the development of components and modules to assess the benefits of employment of photonic crystals in their offerings and the market potential for such adoptions. ' End-application device vendors who can benefit from the superior material attributes ofphotonic crystals and enhance the value of their products. METHODOLOGY AND INFORMATION SOURCES Both primary and secondary research methodologies were used in this study. Industry experts were interviewed; secondary sources included industry consortia, individual company financial statements, published opinions and other published sources. ABOUT THE AUTHOR Kaustubha Parkhi has worked in a wide range of functional roles with leading telecommunications operators and service providers such as Reliance Infocomm, Ramco Systems and BPL Cellular. He has written on an array of telecommunications and electronics-related subjects based on his critical analysis of the underlying technology and its business impact. Kaustubha holds a Bachelor of Engineering (Equivalent of Bachelor of Science) in Electronics and Telecommunications, as well as an MBA in Systems. REPORT HIGHLIGHTS This report provides: ' Analyses of global market trends, with data from 2010 through 2012, and projections of compound annual growth rates (CAGRs) through 2017. ' Forecasts of the market sizes for the following: Photonic crystal-enabled components and modules such as LEDs, solar and PV cells, displays, biosensors, image sensors, optical fibers, discrete and integrated optical components as well as lasers and supercontinuum sources. ' Discussion of the technology and commercial promise of photonic crystals across applications and domains. ' Examination of the major stakeholder classes engaged in photonic crystal commercialization and the activities of key players in this domain. ' A breakdown of patent activity regarding design innovations, energy applications of photoniccrystals, fabrication and synthesis methodologies, integrated circuits and quantum dots, laser applications of photonic crystals, lighting applications, photonic crystal fiber applications, sensor applications, and telecommunications applications. ' Comprehensive company profiles of major players in the industry.

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Table of Content TABLE OF CONTENTS CHAPTER 1 INTRODUCTION 1 STUDY GOALS AND OBJECTIVES 1 REASONS FOR DOING THE STUDY 3 SCOPE OF THE REPORT 3 INTENDED AUDIENCE 5 METHODOLOGY AND INFORMATION SOURCES 5 ABOUT THE AUTHOR 5 RELATED REPORTS 5 BCC ON-LINE SERVICES 6 DISCLAIMER 6 CHAPTER 2 EXECUTIVE SUMMARY 8 SUMMARY TABLE GLOBAL COMPONENTS AND MODULES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 8 SUMMARY FIGURE GLOBAL COMPONENTS AND MODULES USING PHOTONIC CRYSTALS MARKET, 2010-2017 ($ MILLIONS) 8 CHAPTER 3 OVERVIEW 12 PHOTONIC CRYSTAL BASICS 12 WHY ARE PHOTONIC CRYSTALS PROMISING' 12 LARGER CONTEXT 12 SPECIFIC ATTRIBUTES OF PHOTONIC CRYSTALS 13 TABLE 1 IMPORTANT BENEFITS OF THE PHOTONIC BAND GAP IN PHOTONIC CRYSTAL STRUCTURES 14 TABLE 2 MARKETABLE FUNCTIONAL ATTRIBUTES OF PHOTONIC CRYSTALS 14 MARKET OVERVIEW 15 MARKETS 15 TABLE 3 COMPONENTS AND MODULES USING PHOTONIC CRYSTALS MARKET BY INDUSTRY, THROUGH 2017 ($ MILLIONS) 16 PHOTONIC CRYSTAL DIMENSIONS 17 TABLE 4 COMPONENTS AND MODULES USING PHOTONIC CRYSTALS MARKET BY CRYSTAL DIMENSION, THROUGH 2017 ($ MILLIONS) 18 GEOGRAPHIC REGIONS 18 TABLE 5 COMPONENTS AND MODULES MARKET USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 19 Americas 19 Europe, Middle East and Africa 19 Asia-Pacific 20 ANALOGY OF PHOTONICS WITH ELECTRONICS 20

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>> Get this Report Now by email! Overall Picture 39 TABLE 7 GLOBAL MARKET FOR LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS, THROUGH 2017 ($ MILLIONS/UNITS MILLIONS) 39 Market Breakdown 40 TABLE 8 LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS BY MARKET SEGMENT, THROUGH 2017 ($ MILLIONS) 40 TABLE 9 LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS SHIPMENT VOLUME BY MARKET SEGMENT, THROUGH 2017 (UNIT MILLIONS) 41 Dimension Breakdown 41 TABLE 10 MARKET FOR LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS BY CRYSTAL DIMENSION, THROUGH 2017 ($ MILLIONS) 42 TABLE 11 SHIPMENT VOLUME FOR LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS BY CRYSTAL DIMENSION, THROUGH 2017 (UNITS MILLIONS) 42 Regional Breakdown 42 TABLE 12 MARKET FOR LIGHT'EMITTING DEVICES USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 42 TABLE 13 SHIPMENT VOLUME FOR LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 (UNIT MILLIONS) 43 INTRODUCTION 44 Appealing Factors 44 Theory behind Light-Emitting Device Operations 44 Organic Light-Emitting Diodes 45 VALUE ADDED BY PHOTONIC CRYSTALS 46 Photonic Crystals as Diffraction Gratings 47 Photonic Band Gap-Based Filtering 48 Benefits of Applications of Photonic Crystals in Light-Emitting Devices 48 SOLAR AND PHOTOVOLTAIC CELLS 49 MARKET DYNAMICS 49 Overall Picture 49 TABLE 14 GLOBAL MARKET FOR SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 49 Market Breakdown 50 TABLE 15 SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS BY MARKET SEGMENT, THROUGH 2017 ($ MILLIONS) 50 TABLE 16 SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS SHIPMENT VOLUME BY MARKET SEGMENT, THROUGH 2017 (UNIT MILLIONS) 51 Dimension Breakdown 51 TABLE 17 MARKET FOR SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS BY CRYSTAL DIMENSION, THROUGH 2017 ($ MILLIONS) 52 TABLE 18 SHIPMENT VOLUME FOR SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS BY CRYSTAL DIMENSION, THROUGH 2017 (UNIT MILLIONS) 52 Regional Breakdown 52 TABLE 19 MARKET FOR SOLAR AND PHOTOVOLTAIC CELLS USING

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>> Get this Report Now by email! PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 53 TABLE 20 SHIPMENT VOLUME FOR SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 (UNIT MILLIONS) 53 INTRODUCTION 54 Traditional Solar Cells 54 Thin-Film Cells: The Path Toward Alternatives to Silicon 55 Organic Solar and Photovoltaic Cells 55 VALUE ADDED BY PHOTONIC CRYSTALS 56 Implications of Employment of Photonic Crystals in Solar Cells 57 DISPLAYS 57 MARKET DYNAMICS 57 Overall Picture 57 TABLE 21 GLOBAL MARKET FOR DISPLAY PANELS USING PHOTONIC CRYSTALS, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 57 Market Breakdown 58 TABLE 22 VALUE OF DISPLAY PANELS USING PHOTONIC CRYSTALS BY MARKET SEGMENT, THROUGH 2017 ($ MILLIONS) 59 TABLE 23 SHIPMENT VOLUME DISPLAY PANELS USING PHOTONIC CRYSTALS BY MARKET SEGMENT, THROUGH 2017 (UNIT MILLIONS) 60 Dimension Breakdown 60 TABLE 24 MARKET FOR DISPLAY PANELS USING PHOTONIC CRYSTALS BY CRYSTAL DIMENSION, THROUGH 2017 ($ MILLIONS) 61 TABLE 25 SHIPMENT VOLUME OF DISPLAY PANELS USING PHOTONIC CRYSTALS BY CRYSTAL DIMENSION, THROUGH 2017 (UNITS MILLIONS) 61 Regional Breakdown 61 TABLE 26 MARKET FOR DISPLAY PANELS USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 61 TABLE 27 SHIPMENT VOLUME OF DISPLAY PANELS USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 (UNIT MILLIONS) 62 INTRODUCTION 63 Liquid-Crystal Display 63 VALUE ADDED BY PHOTONIC CRYSTALS 65 Photonic Inks 65 Photonic Ink from Opalux 65 Electrical Activation 66 BIOSENSORS 66 MARKET DYNAMICS 66 Overall Picture 66 TABLE 28 GLOBAL MARKET FOR BIOSENSORS USING PHOTONIC CRYSTALS, THROUGH 2017 ($ MILLIONS) 66 Market Breakdown 67 TABLE 29 BIOSENSORS USING PHOTONIC CRYSTALS BY MARKET SEGMENT, THROUGH 2017 ($ MILLIONS) 68 Dimension Breakdown 68 TABLE 30 MARKET FOR BIOSENSORS USING PHOTONIC CRYSTALS BY CRYSTAL DIMENSION, THROUGH 2017 ($ MILLIONS) 69 Regional Breakdown 69 TABLE 31 MARKET FOR BIOSENSORS USING PHOTONIC CRYSTALS BY

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>> Get this Report Now by email! REGION, THROUGH 2017 ($ MILLIONS) 69 INTRODUCTION 70 VALUE ADDED BY PHOTONIC CRYSTALS 70 SRU Biosystems 71 University of Illinois 71 IMAGE SENSORS 72 MARKET DYNAMICS 72 Overall Picture 72 TABLE 32 GLOBAL MARKET FOR IMAGE SENSORS USING PHOTONIC CRYSTALS, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 72 Market Breakdown 73 TABLE 33 IMAGE SENSORS USING PHOTONIC CRYSTALS BY MARKET SEGMENT, THROUGH 2017 ($ MILLIONS) 73 TABLE 34 SHIPMENT VOLUME OF IMAGE SENSORS USING PHOTONIC CRYSTALS BY MARKET SEGMENT, THROUGH 2017 (UNIT MILLIONS) 74 Dimension Breakdown 74 TABLE 35 MARKET FOR IMAGE SENSORS USING PHOTONIC CRYSTALS BY CRYSTAL DIMENSION, THROUGH 2017 ($ MILLIONS) 75 TABLE 36 SHIPMENT VOLUME OF IMAGE SENSORS USING PHOTONIC CRYSTALS BY CRYSTAL DIMENSION, THROUGH 2017 (UNIT MILLIONS) 75 Regional Breakdown 75 TABLE 37 MARKET FOR IMAGE SENSORS USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 75 TABLE 38 SHIPMENT VOLUME OF IMAGE SENSORS USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 (UNIT MILLIONS) 76 INTRODUCTION 77 Lenses 77 Image Sensors 78 Charged Coupled Devices 78 Complimentary Metal-Oxide Semiconductor Sensors 79 Red Blue Green (RGB) Readout 80 VALUE ADDED BY PHOTONIC CRYSTALS 81 Limitations of Complimentary Metal-Oxide Semiconductor Sensors 81 Suitability of Photonic Crystal Sensors 81 Suitability of Photonic Crystal Lenses 82 Photonic Crystal-Image Sensor from Panasonic 82 Photonic Crystal Lens from Aptina 82 Autocloning Technology from Photonic Lattice 82 Ferroelectric Liquid Crystals from Micron 83 OPTICAL FIBERS 83 MARKET DYNAMICS 83 Overall Picture 83 TABLE 39 GLOBAL MARKET FOR OPTICAL FIBERS USING PHOTONIC CRYSTALS, THROUGH 2017 ($ MILLIONS/KM PAIR, MILLIONS) 84 Market Breakdown 84 TABLE 40 VALUE OF OPTICAL FIBERS USING PHOTONIC CRYSTALS BY MARKET SEGMENT, THROUGH 2017 ($ MILLIONS) 85 TABLE 41 SHIPMENT UNITS OF OPTICAL FIBERS USING PHOTONIC

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>> Get this Report Now by email! (UNIT MILLIONS) 99 INTRODUCTION 100 Photonic Integration Drivers 100 VALUE ADDED BY PHOTONIC CRYSTALS 101 Transceivers 101 Polarizers 101 Planar Polarizers 102 Fiber Polarizers 102 Multiplexers 102 Modulators 103 Photonic-Integrated Circuits from NeoPhotonics 103 LASERS AND SUPERCONTINUUM SOURCES 103 MARKET DYNAMICS 104 Overall Picture 104 TABLE 54 GLOBAL MARKET FOR LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS, THROUGH 2017 ($ MILLIONS) 104 Market Breakdown 104 TABLE 55 VALUE OF LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS BY BUSINESS MARKET SEGMENT, THROUGH 2017 ($ MILLIONS) 105 Dimension Breakdown 105 TABLE 56 MARKET FOR LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS BY CRYSTAL DIMENSION, THROUGH 2017 ($ MILLIONS) 106 Regional Breakdown 106 TABLE 57 MARKET FOR LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 106 INTRODUCTION 107 Laser Applications 107 Operating Principle 108 Continuous Wave and Pulsed Lasers 109 Lasers Types 109 VALUE ADDED BY PHOTONIC CRYSTALS 109 Fiber Lasers: The Template for Photonic Crystals to Penetrate into the Laser Domain 109 Fiber Laser Benefits 109 Fiber Laser Morphology 110 Double-Clad Optical Fibers: A Special Case for Fiber Lasers 110 Photonic Crystal Fiber in Fiber Laser Applications 111 Benefits of Photonic Crystal Fiber Lasers over Conventional Fiber Lasers 112 Photonic Crystal Fiber Lasers and Supercontinuum Generation 114 Self-Phase Modulation 115 Raman Scattering 115 Four-Wave Mixing 115 Photonic Crystal Fibers and Supercontinuum 115 NKT Photonics Photonic Crystal Fiber Portfolio for Powering Fiber Lasers and Supercontinuum 117

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>> Get this Report Now by email! CHAPTER 5 AMERICAS REGIONAL ANALYSIS 119 SNAPSHOT OF KEY COUNTRY MARKETS IN THE REGION 119 TABLE 58 AMERICAS COMPONENTS AND MODULES USING PHOTONIC CRYSTALS MARKET BY REGION, THROUGH 2017 ($ MILLIONS) 119 INDIVIDUAL COMPONENT PROSPECTS 120 TABLE 59 AMERICAS LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS MARKET BY REGION, THROUGH 2017 ($ MILLIONS) 120 TABLE 60 MARKET FOR AMERICAS SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 120 TABLE 61 MARKET FOR AMERICAS DISPLAYS USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 121 TABLE 62 MARKET FOR AMERICAS BIOSENSORS USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 122 TABLE 63 MARKET FOR AMERICAS IMAGE SENSORS USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 123 TABLE 64 MARKET FOR AMERICAS OPTICAL FIBERS USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 123 TABLE 65 MARKET FOR AMERICAS DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 124 TABLE 66 MARKET FOR AMERICAS LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS BY REGION, THROUGH 2017 ($ MILLIONS) 124 MAJOR COUNTRY PROFILES 125 U.S. 125 Macroeconomic Overview 125 Focus on Individual Components 125 TABLE 67 U.S. LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 126 TABLE 68 U.S. SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 126 TABLE 69 U.S. DISPLAYS USING PHOTONIC CRYSTALS SALES, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 127 TABLE 70 U.S. BIOSENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 127 TABLE 71 U.S. IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 128 TABLE 72 U.S. OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 128 TABLE 73 U.S. DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 129 TABLE 74 U.S. LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 129 BRAZIL 130 Macroeconomic Overview 130 Focus on Individual Components 130

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>> Get this Report Now by email! THROUGH 2017 ($ MILLIONS) 152 TABLE 112 GERMAN IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 153 TABLE 113 GERMAN OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 153 TABLE 114 GERMAN DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 154 TABLE 115 GERMAN LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 154 FRANCE 155 Macroeconomic Overview 155 Focus on Individual Components 155 TABLE 116 FRENCH LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 155 TABLE 117 FRENCH SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 156 TABLE 118 FRENCH DISPLAYS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 156 TABLE 119 FRENCH BIOSENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 157 TABLE 120 FRENCH IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 157 TABLE 121 FRENCH OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 158 TABLE 122 FRENCH DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 158 TABLE 123 FRENCH LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 159 U.K. 159 Macroeconomic Overview 159 Focus on Individual Components 159 TABLE 124 U.K. LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 160 TABLE 125 U.K. SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT VOLUME) 160 TABLE 126 U.K. DISPLAYS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 161 TABLE 127 U.K. BIOSENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 161 TABLE 128 U.K. IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 162 TABLE 129 U.K. OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 162 TABLE 130 U.K. DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 163

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>> Get this Report Now by email! TABLE 131 U.K LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 163 ITALY 163 Macroeconomic Overview 163 Focus on Individual Components 164 TABLE 132 ITALIAN LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 164 TABLE 133 ITALIAN SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 164 TABLE 134 ITALIAN DISPLAYS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 165 TABLE 135 ITALIAN BIOSENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 165 TABLE 136 ITALIAN IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 166 TABLE 137 ITALIAN OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 166 TABLE 138 ITALIAN DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 167 TABLE 139 ITALIAN LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 167 RUSSIA 167 Macroeconomic Overview 167 Focus on Individual Components 168 TABLE 140 RUSSIAN LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS, MARKET THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 168 TABLE 141 RUSSIAN SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 168 TABLE 142 RUSSIAN DISPLAYS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 169 TABLE 143 RUSSIAN BIOSENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 169 TABLE 144 RUSSIAN IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 170 TABLE 145 RUSSIAN OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 170 TABLE 146 RUSSIAN DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 171 TABLE 147 RUSSIAN LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 171 SPAIN 171 Macroeconomic Overview 171 Focus on Individual Components 172 TABLE 148 SPANISH LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 172 TABLE 149 SPANISH SOLAR AND PV CELLS USING PHOTONIC CRYSTALS

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>> Get this Report Now by email! MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 172 TABLE 150 SPANISH DISPLAYS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 173 TABLE 151 SPANISH BIOSENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 173 TABLE 152 SPANISH IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 174 TABLE 153 SPANISH OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 174 TABLE 154 SPANISH DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 175 TABLE 155 SPANISH LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 175 THE NETHERLANDS 175 Macroeconomic Overview 175 Focus on Individual Components 176 TABLE 156 THE NETHERLANDS LIGHT-MITTING DEVICES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 176 TABLE 157 THE NETHERLANDS SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 176 TABLE 158 THE NETHERLANDS DISPLAYS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 177 TABLE 159 THE NETHERLANDS BIOSENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 177 TABLE 160 THE NETHERLANDS IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 178 TABLE 161 THE NETHERLANDS OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 178 TABLE 162 THE NETHERLANDS DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 179 TABLE 163 THE NETHERLANDS LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 179 TURKEY 179 Macroeconomic Overview 179 Focus on Individual Components 180 TABLE 164 TURKISH LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 180 TABLE 165 TURKISH SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 180 TABLE 166 TURKISH DISPLAYS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 180 TABLE 167 TURKISH BIOSENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 181 TABLE 168 TURKISH IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 181

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>> Get this Report Now by email! TABLE 169 TURKISH OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 182 TABLE 170 TURKISH DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 182 TABLE 171 TURKISH LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 183 CHAPTER 7 ASIA-PACIFIC REGIONAL ANALYSIS 185 SNAPSHOT OF KEY ASIA-PACIFIC REGIONAL MARKETS 185 TABLE 172 ASIA-PACIFIC COMPONENTS AND MODULES USING PHOTONIC CRYSTALS MARKET BY REGION, THROUGH 2017 ($ MILLIONS) 185 TABLE 173 ASIA-PACIFIC LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS MARKET BY REGION, THROUGH 2017 ($ MILLIONS) 186 TABLE 174 ASIA-PACIFIC SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS MARKET BY REGION, THROUGH 2017 ($ MILLIONS) 187 TABLE 175 ASIA-PACIFIC DISPLAYS USING PHOTONIC CRYSTALS MARKET BY REGION, THROUGH 2017 ($ MILLIONS) 187 TABLE 176 ASIA-PACIFIC BIOSENSORS USING PHOTONIC CRYSTALS MARKET BY REGION, THROUGH 2017 ($ MILLIONS) 188 TABLE 177 ASIA-PACIFIC IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET BY REGION, THROUGH 2017 ($ MILLIONS) 189 TABLE 178 ASIA-PACIFIC OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET BY REGION, THROUGH 2017 ($ MILLIONS) 189 TABLE 179 ASIA-PACIFIC DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET BY REGION, THROUGH 2017 ($ MILLIONS) 190 TABLE 180 ASIA-PACIFIC LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET BY REGION, THROUGH 2017 ($ MILLIONS) 191 MAJOR COUNTRY PROFILES 191 CHINA 191 Macroeconomic Overview 191 Focus on Individual Components 192 TABLE 181 CHINESE LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 192 TABLE 182 CHINESE SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNITS MILLIONS) 193 TABLE 183 CHINESE DISPLAYS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 193 TABLE 184 CHINESE BIOSENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 194 TABLE 185 CHINESE IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNITS MILLIONS) 194 TABLE 186 CHINESE OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 195 TABLE 187 CHINESE DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT

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>> Get this Report Now by email! MILLIONS) 195 TABLE 188 CHINESE LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 196 JAPAN 196 Macroeconomic Overview 196 Focus on Individual Components 197 TABLE 189 JAPANESE LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 197 TABLE 190 JAPANESE SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 198 TABLE 191 JAPANESE DISPLAYS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 198 TABLE 192 JAPANESE BIOSENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 199 TABLE 193 JAPANESE IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 199 TABLE 194 JAPANESE OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 200 TABLE 195 JAPANESE DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 200 TABLE 196 JAPANESE LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 201 INDIA 201 Macroeconomic Overview 201 Focus on Individual Components 202 TABLE 197 INDIAN LIGHT-EMITTING DEVICES USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 202 TABLE 198 INDIAN SOLAR AND PHOTOVOLTAIC CELLS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 202 TABLE 199 INDIAN DISPLAYS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 203 TABLE 200 INDIAN BIOSENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS) 203 TABLE 201 INDIAN IMAGE SENSORS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 204 TABLE 202 INDIAN OPTICAL FIBERS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/KM PAIR MILLIONS) 204 TABLE 203 INDIAN DISCRETE AND INTEGRATED OPTICAL COMPONENTS USING PHOTONIC CRYSTALS MARKET, THROUGH 2017 ($ MILLIONS/UNIT MILLIONS) 205 TABLE 204 INDIAN LASERS AND SUPERCONTINUUM SOURCES USING PHOTONIC CRYS

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