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2013 Photonics Research Review

  • December 2013
  • -
  • BCC Research
  • -
  • 98 pages

FOREWORD

Research Reviews from BCC Research provide market professionals with concise market coverage within a specific research category. These Research Reviews include portions of several market research reports that were published in 2013, and are an efficient way for market professionals to keep up with the general market developments of 2013.
Please note that page references in the text are to pages in the original, complete report, and do not reflect the actual page numbers in this Research Review.

This 2013 Photonics Research Review includes excerpts from the following reports:
• SMC090A Picoprojectors: Technologies and Global Markets.
• IAS079A Lasers for Industrial Applications: Global Markets.
• HLC097A Global Markets and Technologies for Optical Coherence Tomography (OCT).
• AVM059C Global Markets and Technologies for Photonic Crystals.
• IAS022D Remote Sensing Technologies and Global Markets.

REPORT HIGHLIGHTS

• The global market for picoprojectors was valued at $491.4 million in 2012. Total market value is expected to reach $776.1 million in 2013 and nearly $5 billion by 2018, after increasing at a five-year compound annual growth rate (CAGR) of 44.9%.
• Revenues for the global laser market reached nearly $2.4 billion in 2012 and are expected to reach nearly $2.6 billion in 2013. The market is expected to rise at a compound annual growth rate (CAGR) of 5.8% between 2013 and 2018 and reach $3.4 billion by 2018.
• The global market for optical coherence tomography (OCT) grew from $580.8 million in 2011 to $645.4 million in 2012 and is predicted to increase to nearly $1.1 billion by 2017, a CAGR of 10.4% from 2012 to 2017.

Table Of Contents

2013 Photonics Research Review
TABLE OF CONTENTS

CHAPTER 1 ABOUT BCC RESEARCH REVIEWS 2

FOREWORD 2

CHAPTER 2 PICOPROJECTORS: TECHNOLOGIES AND GLOBAL MARKETS (REPORT SMC090A) 4

INTRODUCTION 4
STUDY GOALS AND OBJECTIVES 4
REASONS FOR DOING THE STUDY 4
SCOPE AND FORMAT 4
INTENDED AUDIENCE 5
METHODOLOGY AND INFORMATION SOURCES 6
ANALYST CREDENTIALS 6
RELATED BCC RESEARCH REPORTS 6
SUMMARY 6
TABLE 1 GLOBAL MARKET FOR PICOPROJECTORS BY REGION, THROUGH 2018 ($
MILLIONS) 7
FIGURE 1 GLOBAL MARKET FOR PICOPROJECTORS BY REGION, 2012-2018 ($
MILLIONS) 7
OVERVIEW 8
IMPORTANCE OF THE INDUSTRY 9
PRODUCT LIFE CYCLE 10
GROWTH STAGE 10
TECHNOLOGY LIFE CYCLE 10
MARKET FORCES 11
DLP/LCOS/LBS 11
FUTURE DEVELOPMENTS 11
REGULATORY ISSUES 12

CHAPTER 3 LASERS FOR INDUSTRIAL APPLICATIONS: GLOBAL MARKETS (REPORT
IAS079A) 15

INTRODUCTION 15
STUDY GOALS AND OBJECTIVES 15
REASONS FOR DOING THE STUDY 15
SCOPE OF REPORT 16
INTENDED AUDIENCE 16
INFORMATION SOURCES 16
ANALYST CREDENTIALS 16
RELATED REPORTS 17
SUMMARY 17
UNMISTAKABLE TREND LINES 18
TABLE 2 REVENUE FOR LASER MARKET, THROUGH 2018 ($ MILLIONS) 18
FIGURE 2 REVENUE FOR LASER MARKET, 2012-2018 ($ MILLIONS) 18
OTHER INDUSTRY PARALLELS 20
HIGH-POWERED LASERS TO DOMINATE REVENUES 22
PREPARING FOR THE INDUSTRIAL LASER FUTURE 23
THE INDUSTRIAL LASER INDUSTRY 24
CONCEPTS IN THE INDUSTRY 25
IMPORTANCE OF THE INDUSTRY 26
THE DAY OF THE DESIGNER LASER IS HERE 26
CANNIBALIZING REARS ITS UGLY HEAD 27
PRODUCT LIFE CYCLE 27
TECHNOLOGY LIFE CYCLE 28
NO CLEAR WINNER FOR INDUSTRIAL LASER TYPE 28
TABLE 3 FIRST- AND SECOND-GENERATION INDUSTRIAL LASERS 29
HISTORY OF THE INDUSTRY 29
HIGHEST VOLUME OF INDUSTRIAL LASERS FOR MARKING, ENGRAVING 29
TABLE 4 FIRST COMMERCIAL USE OF INDUSTRIAL LASERS 30
CARBON DIOXIDE LASERS EMERGE AS EARLY WORKHORSE 30
FORESEEABLE FUTURE EVENTS 32
INTRA-LASER COMPETITION ENDS ERA OF GOOD FEELING 33
GOVERNMENT REGULATIONS 33
ANSI Z136.1-SAFE USE OF LASERS 34
ANSI Z136.3-SAFE USE OF LASERS IN HEALTH CARE 34
ANSI Z136.4-RECOMMENDED PRACTICE FOR LASER SAFETY
MEASUREMENTS FOR HAZARD EVALUATION 34
ANSI Z136.5—SAFE USE OF LASERS IN EDUCATIONAL INSTITUTIONS 34
ANSI Z136.6-SAFE USE OF LASERS OUTDOORS 34
ANSI Z136.7-TESTING AND LABELING OF LASER PROTECTIVE EQUIPMENT 34
LASER CLASSIFICATION 34
TABLE 5 PATHOLOGICAL EFFECT OF LASERS BY WAVELENGTH 36
CONCLUSIONS 37

CHAPTER 4 GLOBAL MARKETS AND TECHNOLOGIES FOR OPTICAL COHERENCE TOMOGRAPHY (OCT) (REPORT HLC097A) 39

INTRODUCTION 39
STUDY OBJECTIVES 39
REASONS FOR DOING THIS STUDY 39
CONTRIBUTIONS OF THE STUDY AND INTENDED AUDIENCE 40
SCOPE OF THE STUDY 40
METHODOLOGY 40
INFORMATION SOURCES 40
ABOUT THE AUTHOR 40
RELATED BCC RESEARCH REPORTS 41
SUMMARY 41
TABLE 6 GLOBAL REVENUE OF OCT MARKET, THROUGH 2017 ($ MILLIONS) 43
FIGURE 3 GLOBAL REVENUE OF OCT MARKET, 2010-2017 ($ MILLIONS) 43
OVERVIEW 44
TABLE 7 MAIN CHARACTERISTICS OF OCT 44
USES OF OPTICAL COHERENCE TOMOGRAPHY 45
TABLE 8 USES OF OPTICAL COHERENCE TOMOGRAPHY 45
COHERENCE TOMOGRAPHY 45
TABLE 9 ADVANTAGES AND DISADVANTAGES OF OPTICAL COHERENCE
TOMOGRAPHY 45
APPLICATIONS OF OPTICAL COHERENCE TOMOGRAPHY 46
TABLE 10 APPLICATIONS OF OPTICAL COHERENCE TOMOGRAPHY 46
HISTORY OF OPTICAL COHERENCE TOMOGRAPHY 46
TABLE 11 HISTORICAL DEVELOPMENTS IN OPTICAL COHERENCE TOMOGRAPHY 47
CLASSIFICATION 47
TABLE 12 TYPE OF TECHNOLOGIES USED IN OPTICAL COHERENCE TOMOGRAPHY 48
TABLE 13 MODES OF IMPLEMENTATION IN OPTICAL COHERENCE TOMOGRAPHY 48
TYPES OF TECHNOLOGY 48
TRADITIONAL (TIME DOMAIN) OCT 48
POLARIZATION SENSITIVE (PS)-OCT 49
FREQUENCY DOMAIN OCT 49
FOURIER OR SPECTRAL DOMAIN OCT 50
TIME-ENCODED FREQUENCY DOMAIN OCT 50
OTHERS 51
Full-Field Optical Coherence 51
Optical Delay Scanning 51
TABLE 14 COMPARISON OF DIFFERENT OCT TECHNOLOGY 52
MODE OF IMPLEMENTATION 52
OFFICE/TABLETOP OCT 52
CATHETER-BASED OCT 53
HANDHELD OCT DEVICES 53
OCT SPECTROMETERS 54
DOPPLER OPTICAL COHERENCE TOMOGRAPHY (OCT) SYSTEM 54

CHAPTER 5 GLOBAL MARKETS AND TECHNOLOGIES FOR PHOTONIC CRYSTALS (REPORT AVM059C): 56

INTRODUCTION 56
STUDY GOALS AND OBJECTIVES 56
REASONS FOR DOING THE STUDY 57
SCOPE OF THE REPORT 58
INTENDED AUDIENCE 59
METHODOLOGY AND INFORMATION SOURCES 60
ABOUT THE AUTHOR 60
EXECUTIVE SUMMARY 60
TABLE 15 GLOBAL COMPONENTS AND MODULES USING PHOTONIC CRYSTALS
MARKET, THROUGH 2017 ($ MILLIONS) 60
FIGURE 4 GLOBAL COMPONENTS AND MODULES USING PHOTONIC CRYSTALS
MARKET, 2010-2017 ($ MILLIONS) 61
OVERVIEW 62
PHOTONIC CRYSTAL BASICS 63
WHY ARE PHOTONIC CRYSTALS PROMISING? 63
LARGER CONTEXT 63
SPECIFIC ATTRIBUTES OF PHOTONIC CRYSTALS 64
TABLE 16 IMPORTANT BENEFITS OF THE PHOTONIC BAND GAP IN PHOTONIC
CRYSTAL STRUCTURES 65
TABLE 17 MARKETABLE FUNCTIONAL ATTRIBUTES OF PHOTONIC CRYSTALS 65
MARKET OVERVIEW 66
MARKETS 66
TABLE 18 COMPONENTS AND MODULES USING PHOTONIC CRYSTALS MARKET BY
INDUSTRY, THROUGH 2017 ($ MILLIONS) 66
PHOTONIC CRYSTAL DIMENSIONS 68
TABLE 19 COMPONENTS AND MODULES USING PHOTONIC CRYSTALS MARKET BY
CRYSTAL DIMENSION, THROUGH 2017 ($ MILLIONS) 68
GEOGRAPHIC REGIONS 69
TABLE 20 COMPONENTS AND MODULES MARKET USING PHOTONIC CRYSTALS BY
REGION, THROUGH 2017 ($ MILLIONS) 69
Americas 69
Europe, Middle East and Africa 69
Asia-Pacific 70
ANALOGY OF PHOTONICS WITH ELECTRONICS 70
THEORETICAL PREMISE 70
ELECTRON MOVEMENT IN SEMICONDUCTORS 71
WHERE DO PHOTONIC CRYSTALS FIT IN? 71
PRACTICAL RELEVANCE 72
EFFECT OF THE DIELECTRIC CONSTANT OF THE MEDIUM ON LIGHT 72
THEORETICAL PREMISE 72
RELATIONSHIP BETWEEN THE REFRACTIVE INDEX AND THE DIELECTRIC
CONSTANT 73
PRACTICAL RELEVANCE 73
DIFFRACTION 74
THEORETICAL PREMISE 74
PRACTICAL RELEVANCE 74
PHOTONIC BANDS AND BAND GAP 75
THEORETICAL PREMISE 75
PRACTICAL RELEVANCE 75
CRYSTAL MATERIAL 76
THEORETICAL PREMISE 76
PRACTICAL RELEVANCE 76
Silicon and the Carbon Family 76
Titanium Family 77
Boron Family 77
DIMENSIONAL ASPECT 77
THEORETICAL PREMISE 77
PRACTICAL RELEVANCE 77
TABLE 21 VALUE OF REMOTE SENSING PRODUCTS BY PLATFORM, THROUGH 2019
($ BILLIONS) 78
Three-Dimensional Photonic Crystals 78
FABRICATION AND ITS GENERATIONS 79
PHOTONIC CRYSTAL DEVELOPMENT HISTORY 79
PHOTONIC CRYSTAL FABRICATION MECHANICS 80
Designed Defects 80
Point Defects 80
Linear Defects 81
Superprism Effect 81
PHOTONIC CRYSTAL FIBER FABRICATION 81
ELECTRON BEAM LITHOGRAPHY 82
INNOVATIVE APPROACHES TO PHOTONIC CRYSTAL FABRICATION 83
NANOIMPRINT LITHOGRAPHY 83
Nanoimprint Lithography Solutions from Obducat 84
DIRECT THREE-DIMENSIONAL MOLDING 85
MULTIPLEX EXPOSURE HOLOGRAPHIC RECORDING 85
AUTOCLONING 85
SELF-ASSEMBLY 86

CHAPTER 6 REMOTE SENSING TECHNOLOGIES AND GLOBAL MARKETS (REPORT IAS022D) 88

INTRODUCTION 88
STUDY GOAL AND OBJECTIVES 89
REASONS FOR DOING THE STUDY 90
INTENDED AUDIENCE 91
SCOPE OF REPORT 91
METHODOLOGY 91
INFORMATION SOURCES 92
ANALYST'S CREDENTIALS 92
RELATED BCC RESEARCH WORK CREDENTIALS 92
SUMMARY 93
TABLE 22 GLOBAL DEMAND FOR REMOTE SENSING PRODUCTS, THROUGH 2019 ($
MILLIONS) 93
FIGURE 5 VALUE OF REMOTE SENSING PRODUCTS BY PLATFORM, 2013-2019 ($
BILLIONS) 94
OVERVIEW OF REMOTE SENSING TECHNOLOGIES AND GLOBAL MARKETS 95
NATIONAL MARKET FORECAST TO 2019 95
TABLE 23 U.S. GOVERNMENT AGENCY INVOLVEMENT IN COMMERCIAL REMOTE
SENSING PRODUCTS 96
GOVERNMENTS DRIVE SUPPLY AND DEMAND 97
TABLE 24 U.S. GOVERNMENT AGENCY INVOLVEMENT IN COMMERCIAL REMOTE
SENSING PRODUCTS 97
AN EVOLVING U.S. NATIONAL GEOSPATIAL STRATEGY 98
THE GPS-GIS CONVERGENCE 99
GPS 99
NAVSTAR 100
TABLE 25 NAVSTAR SATELLITES (DATE LAUNCHED) 100
Galileo 101
TABLE 26 GALILEO SATELLITES (DATE LAUNCHED) 101
GLONASS 102
TABLE 27 GLONASS SATELLITES (DATE LAUNCHED) 102
Compass/Beidou 103
TABLE 28 COMPASS/BEIDOU SATELLITES (DATE LAUNCHED) 103
TABLE 29 COMPASS BEIDOU 2 SATELLITES (DATE LAUNCHED) 103
Indian and Japanese Constellations 104
GIS 104



LIST OF TABLES

TABLE 1 GLOBAL MARKET FOR PICOPROJECTORS BY REGION, THROUGH 2018 ($
MILLIONS) 7
TABLE 2 REVENUE FOR LASER MARKET, THROUGH 2018 ($ MILLIONS) 18
TABLE 3 FIRST- AND SECOND-GENERATION INDUSTRIAL LASERS 29
TABLE 4 FIRST COMMERCIAL USE OF INDUSTRIAL LASERS 30
TABLE 5 PATHOLOGICAL EFFECT OF LASERS BY WAVELENGTH 36
TABLE 6 GLOBAL REVENUE OF OCT MARKET, THROUGH 2017 ($ MILLIONS) 43
TABLE 7 MAIN CHARACTERISTICS OF OCT 44
TABLE 8 USES OF OPTICAL COHERENCE TOMOGRAPHY 45
TABLE 9 ADVANTAGES AND DISADVANTAGES OF OPTICAL COHERENCE
TOMOGRAPHY 45
TABLE 10 APPLICATIONS OF OPTICAL COHERENCE TOMOGRAPHY 46
TABLE 11 HISTORICAL DEVELOPMENTS IN OPTICAL COHERENCE TOMOGRAPHY 47
TABLE 12 TYPE OF TECHNOLOGIES USED IN OPTICAL COHERENCE TOMOGRAPHY 48
TABLE 13 MODES OF IMPLEMENTATION IN OPTICAL COHERENCE TOMOGRAPHY 48
TABLE 14 COMPARISON OF DIFFERENT OCT TECHNOLOGY 52
TABLE 15 GLOBAL COMPONENTS AND MODULES USING PHOTONIC CRYSTALS
MARKET, THROUGH 2017 ($ MILLIONS) 60
TABLE 16 IMPORTANT BENEFITS OF THE PHOTONIC BAND GAP IN PHOTONIC
CRYSTAL STRUCTURES 65
TABLE 17 MARKETABLE FUNCTIONAL ATTRIBUTES OF PHOTONIC CRYSTALS 65
TABLE 18 COMPONENTS AND MODULES USING PHOTONIC CRYSTALS MARKET BY
INDUSTRY, THROUGH 2017 ($ MILLIONS) 66
TABLE 19 COMPONENTS AND MODULES USING PHOTONIC CRYSTALS MARKET BY
CRYSTAL DIMENSION, THROUGH 2017 ($ MILLIONS) 68
TABLE 20 COMPONENTS AND MODULES MARKET USING PHOTONIC CRYSTALS BY
REGION, THROUGH 2017 ($ MILLIONS) 69
TABLE 21 VALUE OF REMOTE SENSING PRODUCTS BY PLATFORM, THROUGH 2019 ($
BILLIONS) 78
TABLE 22 GLOBAL DEMAND FOR REMOTE SENSING PRODUCTS, THROUGH 2019 ($
MILLIONS) 93
TABLE 23 U.S. GOVERNMENT AGENCY INVOLVEMENT IN COMMERCIAL REMOTE
SENSING PRODUCTS 96
TABLE 24 U.S. GOVERNMENT AGENCY INVOLVEMENT IN COMMERCIAL REMOTE
SENSING PRODUCTS 97
TABLE 25 NAVSTAR SATELLITES (DATE LAUNCHED) 100
TABLE 26 GALILEO SATELLITES (DATE LAUNCHED) 101
TABLE 27 GLONASS SATELLITES (DATE LAUNCHED) 102
TABLE 28 COMPASS/BEIDOU SATELLITES (DATE LAUNCHED) 103
TABLE 29 COMPASS BEIDOU 2 SATELLITES (DATE LAUNCHED) 103



LIST OF FIGURES

FIGURE 1 GLOBAL MARKET FOR PICOPROJECTORS BY REGION, 2012-2018 ($
MILLIONS) 7
FIGURE 2 REVENUE FOR LASER MARKET, 2012-2018 ($ MILLIONS) 18
FIGURE 3 GLOBAL REVENUE OF OCT MARKET, 2010-2017 ($ MILLIONS) 43
FIGURE 4 GLOBAL COMPONENTS AND MODULES USING PHOTONIC CRYSTALS
MARKET, 2010-2017 ($ MILLIONS) 61
FIGURE 5 VALUE OF REMOTE SENSING PRODUCTS BY PLATFORM, 2013-2019 ($
BILLIONS) 94

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