レーザー技術の世界市場予測(~2024年)...市場調査レポートについてご紹介

【英文タイトル】Laser Technology Market by Type (Carbon Dioxide Laser, Fiber Laser, and Solid State Laser), Revenue (Laser Revenue and System Revenue), Application (Laser Processing and Optical Communications), End User, Geography – Global Forecast to 2024

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TABLE OF CONTENTS

1 INTRODUCTION 19
1.1 STUDY OBJECTIVES 19
1.2 DEFINITION 19
1.3 STUDY SCOPE 20
1.3.1 MARKETS COVERED 20
1.3.2 GEOGRAPHIC SCOPE 21
1.3.3 YEARS CONSIDERED 21
1.4 CURRENCY 22
1.5 LIMITATIONS 22
1.6 STAKEHOLDERS 22
2 RESEARCH METHODOLOGY 23
2.1 INTRODUCTION 23
2.1.1 SECONDARY AND PRIMARY RESEARCH 24
2.1.1.1 Key industry insights 25
2.1.2 SECONDARY DATA 25
2.1.2.1 List of major secondary sources 26
2.1.2.2 Secondary sources 26
2.1.3 PRIMARY DATA 27
2.1.3.1 Primary interviews with experts 27
2.1.3.2 Breakdown of primaries 27
2.1.3.3 Primary sources 28
2.2 MARKET SIZE ESTIMATION 29
2.2.1 BOTTOM-UP APPROACH 29
2.2.1.1 Approach for bottom-up analysis (demand side) 29
2.2.2 TOP-DOWN APPROACH 30
2.2.2.1 Approach for top-down analysis (supply side) 31
2.3 MARKET BREAKDOWN AND DATA TRIANGULATION 32
2.4 RESEARCH ASSUMPTIONS 33
3 EXECUTIVE SUMMARY 34
4 PREMIUM INSIGHTS 39
4.1 ATTRACTIVE OPPORTUNITIES IN LASER TECHNOLOGY MARKET 39
4.2 LASER TECHNOLOGY MARKET IN APAC, BY COUNTRY AND END USER 40
4.3 LASER TECHNOLOGY MARKET, BY REVENUE 41
4.4 LASER TECHNOLOGY MARKET, BY TYPE 41
4.5 LASER TECHNOLOGY MARKET, BY APPLICATION 42
4.6 LASER TECHNOLOGY MARKET, BY END USER 42
4.7 LASER TECHNOLOGY MARKET, BY COUNTRY 43
5 MARKET OVERVIEW 44
5.1 INTRODUCTION 44
5.2 MARKET DYNAMICS 44
5.2.1 DRIVERS 45
5.2.1.1 Increasing demand from healthcare vertical 45
5.2.1.2 Enhanced performance of lasers over traditional material
processing techniques 46
5.2.1.3 Shift toward production of nano and micro devices 46
5.2.2 RESTRAINTS 47
5.2.2.1 Regulatory compliance 47
5.2.3 OPPORTUNITIES 47
5.2.3.1 Adoption of laser technology in various verticals for quality check 47
5.2.3.2 Increasing use of lasers for optical communications 48
5.2.4 CHALLENGES 49
5.2.4.1 Requirement for low-cost solutions 49
5.3 VALUE CHAIN ANALYSIS 49
6 LASER TECHNOLOGY MARKET, BY TYPE 51
6.1 INTRODUCTION 52
6.2 CO2 LASER 53
6.2.1 WIDE RANGE OF COMMERCIAL, INDUSTRIAL, AND MILITARY APPLICATIONS DRIVES DEMAND FOR CO2 LASER 53
6.3 FIBER LASER 55
6.3.1 FEATURES SUCH AS HIGH OUTPUT POWER, FLEXIBLE FIBER LIGHT, COMPACT SIZE, AND HIGH OPTICAL QUALITY DRIVE DEMAND FOR FIBER LASER 55
6.4 SOLID STATE LASER 57
6.4.1 YAG LASER 59
6.4.1.1 High thermal conductivity makes YAG laser suitable for several applications 59
6.4.2 SEMICONDUCTOR LASER 59
6.4.2.1 Semiconductor laser is compact, making it suitable for several applications 59
6.4.3 THIN DISK LASER 59
6.4.3.1 Ability to generate high peak power in picosecond pulses boosts
this type’s demand 59
6.4.4 RUBY LASER 59
6.4.4.1 Applications such as pigmented lesions, hair, tattoo removal and melasma treatment boost its demand 59
6.5 OTHER LASER 60
6.5.1 X-RAY LASER 60
6.5.1.1 Applications such as in dense plasmas, X-ray microscopy,
medical imaging, aerospace & defense, and surface research
boost its demand 60
6.5.2 DYE LASER 60
6.5.2.1 Several applications in healthcare vertical support its growing demand 60
6.5.3 EXCIMER LASER 60
6.5.3.1 Ability of excimer laser to generate light pulses of various wavelengths drives its demand 60
6.5.4 ARGON LASER 61
6.5.4.1 Ability to generate discrete laser lines or wavelengths boosts
its demand 61
6.5.5 CHEMICAL LASER 61
6.5.5.1 Chemical lasers have significant applications in aerospace
& defense 61
6.5.6 HELIUM-NEON LASER 61
6.5.6.1 Ability to produce various wavelengths boosts its demand 61
7 LASER TECHNOLOGY MARKET, BY REVENUE 64
7.1 INTRODUCTION 65
7.2 SYSTEM REVENUE 66
7.2.1 APPLICATIONS IN SEVERAL VERTICALS, SUCH AS INDUSTRIAL, COMMERCIAL, AUTOMOTIVE, AND MEDICAL, TO DRIVE SYSTEM REVENUE 66
7.3 LASER REVENUE 67
7.3.1 REVENUE GENERATED FROM SALES OF SEVERAL TYPES OF LASERS DRIVES LASER REVENUE SEGMENT 67
8 LASER TECHNOLOGY MARKET, BY APPLICATION 68
8.1 INTRODUCTION 69
8.2 LASER PROCESSING 70
8.2.1 MACRO PROCESSING 70
8.2.1.1 Cutting 70
8.2.1.1.1 Fusion cutting 71
8.2.1.1.1.1 Metals and fusible materials cutting drives demand for laser for fusion cutting 71
8.2.1.1.2 Flame cutting 71
8.2.1.1.2.1 Suitability for cutting flat sheets, mild steel, and plates with high thickness drives demand for laser for flame cutting 71
8.2.1.1.3 Sublimation cutting 71
8.2.1.1.3.1 Ability to cut material with low melting point boosts demand of lasers for sublimation cutting 71
8.2.1.2 Drilling 71
8.2.1.2.1 Single pulse drilling 72
8.2.1.2.1.1 Ability to drill various sizes in 3D surface materials drives demand for lasers for single pulse drilling 72
8.2.1.2.2 Percussion drilling 72
8.2.1.2.2.1 Ability to drill shorter-diameter holes boots demand for lasers for percussion drilling 72
8.2.1.2.3 Trepanning drilling 72
8.2.1.2.3.1 Usage of trepanning drilling where the laser beam diameter is much smaller than the hole diameter drives its demand 72
8.2.1.2.4 Helical drilling 72
8.2.1.2.4.1 Usage of helical drilling for producing large and deep holes drives its demand 72
8.2.1.3 Welding 72
8.2.1.3.1 Benefits in terms of high processing welding speeds, thin and small weld seams, low thermal distortion, and no tool distortion drive demand for lasers for welding 72
8.2.1.4 Marking and engraving 73
8.2.1.4.1 Suitability for several applications, such as printing,
hot-branding, and laser bonding, boosts demand for
laser for marking and engraving 73
8.2.2 MICRO PROCESSING 73
8.2.2.1 Major applications of laser micro processing include printed circuit board (PCB) layouts, semiconductor lithography, and micromachining parts 73
8.2.3 ADVANCED PROCESSING 73
8.2.3.1 Use of laser for laser deposition technology drives demand for advanced processing 73
8.3 OPTICAL COMMUNICATIONS 73
8.3.1 LASER TECHNOLOGY DEVICES ARE EXTENSIVELY USED AS HIGH-SPEED TRANSMITTERS IN ANALOG AND DIGITAL FIBER NETWORKS 73
8.4 OTHERS 74
8.4.1 “OTHER LASER” HAS APPLICATIONS IN SEVERAL VERTICALS, INCLUDING COMMERCIAL, INDUSTRIAL, AEROSPACE & DEFENSE, AND AUTOMOTIVE 74
9 LASER TECHNOLOGY MARKET, BY END USER 76
9.1 INTRODUCTION 77
9.2 TELECOMMUNICATIONS 78
9.2.1 TELECOMMUNICATIONS VERTICAL ACCOUNTED FOR LARGEST MARKET SHARE IN 2017 78
9.3 INDUSTRIAL 82
9.3.1 EXPANDING APPLICATIONS IN MANUFACTURING EXPECTED TO DRIVE GROWTH OF INDUSTRIAL END-USER VERTICAL 82
9.4 SEMICONDUCTOR & ELECTRONICS 86
9.4.1 MEMORY 90
9.4.1.1 Light-based memory chips expected to drive demand for lasers in memory chips 90
9.4.2 MICROPROCESSORS 90
9.4.2.1 Tiny lasers fabricated on silicon will drive demand for lasers in microprocessors 90
9.4.3 INTEGRATED CIRCUIT 90
9.4.3.1 Photonic integrated circuits to boost demand for lasers in
integrated circuits 90
9.5 COMMERCIAL 90
9.5.1 SMARTCARD MARKING IS A MAJOR COMMERCIAL APPLICATION OF LASER TECHNOLOGY 90
9.6 AEROSPACE & DEFENSE 92
9.6.1 AEROSPACE INDUSTRY 94
9.6.1.1 Lasers find application in aircraft manufacturing for cutting engineered parts 94
9.6.2 MISSILE INDUSTRY 94
9.6.2.1 Lasers are used in semi-active laser homing missile technology 94
9.6.3 SPACE INDUSTRY 94
9.6.3.1 Ability to travel in space without any corruption drives laser’s demand 94
9.6.4 COMBAT VEHICLE INDUSTRY 95
9.6.4.1 Possible additional security features achievable through laser drive its demand 95
9.6.5 AMMUNITION & WEAPON INDUSTRY 95
9.6.5.1 Utilization in laser guns to boost its demand 95
9.7 AUTOMOTIVE 95
9.7.1 SOLID STATE LASER AND FIBER LASER ARE COMMONLY USED IN AUTOMOTIVE VERTICAL 95
9.8 MEDICAL 97
9.8.1 ACCURACY AND PRECISION ACHIEVABLE THROUGH LASER DRIVE ITS DEMAND IN MEDICAL END-USER VERTICAL 97
9.9 RESEARCH 99
9.9.1 SPECTROSCOPY, ATMOSPHERIC REMOTE SENSING, SEISMOLOGY, AND ATMOSPHERIC PHYSICS ARE SOME OF MAJOR APPLICATIONS OF LASER IN RESEARCH END-USER VERTICAL 99
9.10 OTHERS 101
9.10.1 OIL & GAS, IRON & STEEL, TOBACCO, GLASS, WOOD, RETAIL, AND PLASTIC END-USER VERTICALS COMPRISE OTHERS SEGMENT 101
10 GEOGRAPHIC ANALYSIS 103
10.1 INTRODUCTION 104
10.2 NORTH AMERICA 106
10.2.1 US 108
10.2.1.1 US held largest share of laser technology market in North America 108
10.2.2 CANADA 109
10.2.2.1 Laser technology market in Canada expected to witness highest CAGR in North America 109
10.2.3 MEXICO 109
10.2.3.1 Increasing adoption of laser technology in automotive vertical to drive demand 109
10.3 EUROPE 109
10.3.1 GERMANY 112
10.3.1.1 Germany held largest share of laser technology market in Europe
in 2017 112
10.3.2 FRANCE 113
10.3.2.1 Presence of prominent automotive, telecom, aerospace & defense, and medical companies to drive demand for laser technology 113
10.3.3 THE UK 113
10.3.3.1 Technological developments in electronics bringing significant changes in almost all verticals 113
10.3.4 REST OF EUROPE 113
10.3.4.1 Laser technology market in RoE expected to witness highest CAGR in Europe 113
10.4 ASIA PACIFIC 114
10.4.1 CHINA 116
10.4.1.1 China held largest share of laser technology market in APAC in 2017 116
10.4.2 JAPAN 117
10.4.2.1 Undergoing rapid industrialization and modernization expected to boost demand for laser in the country 117
10.4.3 INDIA 117
10.4.3.1 Laser technology market in India expected to witness highest CAGR in APAC 117
10.4.4 SOUTH KOREA 117
10.4.4.1 Electronics and automotive verticals to drive demand for laser technology in the country 117
10.4.5 REST OF APAC 118
10.4.5.1 Growth in manufacturing activities to drive demand for laser technology in the region 118
10.5 REST OF THE WORLD 118
10.5.1 MIDDLE EAST AND AFRICA (MEA) 120
10.5.1.1 MEA held larger share of laser technology market in RoW 120
10.5.2 SOUTH AMERICA 120
10.5.2.1 Laser technology market in South America expected to grow at higher CAGR in RoW 120
11 COMPETITIVE LANDSCAPE 121
11.1 INTRODUCTION 121
11.2 RANKING ANALYSIS OF LASER TECHNOLOGY MARKET PLAYERS 123
11.3 COMPETITIVE SCENARIO 126
11.3.1 CONTRACTS/PARTNERSHIPS/AGREEMENTS/COLLABORATION 126
11.3.2 EXPANSIONS 127
11.3.3 MERGERS/ACQUISITIONS 128
11.3.4 PRODUCT LAUNCHES 129

12 COMPANY PROFILES 132
12.1 KEY PLAYERS 132
(Business overview, Products offered, Recent developments, MNM view, SWOT analysis)*
12.1.1 COHERENT 132
12.1.2 IPG PHOTONICS 137
12.1.3 TRUMPF 141
12.1.4 LUMENTUM 145
12.1.5 JENOPTIK 148
12.1.6 NOVANTA 152
12.1.7 LUMIBIRD 154
12.1.8 LASERSTAR 157
12.1.9 EPILOG LASER 159
12.1.10 MKS INSTRUMENTS 161
12.2 OTHER COMPANIES 164
12.2.1 600 GROUP 164
12.2.2 HAN’S LASER TECHNOLOGY 165
12.2.3 EUROLASER 166
12.2.4 BYSTRONIC LASER 167
12.2.5 TOPTICA PHOTONICS 167
12.2.6 PHOTONICS INDUSTRIES 168
12.2.7 FOCUSLIGHT TECHNOLOGIES 169
12.2.8 CORNING INCORPORATED 169
12.2.9 ACCESS LASER 170
12.2.10 PRIMA INDUSTRIE 171
*Business overview, Products offered, Recent developments, MNM view, SWOT analysis might not be captured in case of unlisted companies.
13 APPENDIX 172
13.1 INSIGHTS OF INDUSTRY EXPERTS 172
13.3 KNOWLEDGE STORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 175
13.4 AVAILABLE CUSTOMIZATIONS 177
13.5 RELATED REPORTS 177
13.6 AUTHOR DETAILS 178


【レポート販売概要】

■ タイトル:レーザー技術の世界市場予測(~2024年)
■ 英文:Laser Technology Market by Type (Carbon Dioxide Laser, Fiber Laser, and Solid State Laser), Revenue (Laser Revenue and System Revenue), Application (Laser Processing and Optical Communications), End User, Geography – Global Forecast to 2024
■ 発行日:2018年12月18日
■ 調査会社:MarketsandMarkets
■ 商品コード:SE 2726
■ 調査対象地域:グローバル
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