BOOK
Diode Laser Materials and Devices - A Worldwide Market and Technology Overview to 2005
(2001)
Additional Information
Book Details
Abstract
This report examines the development of the diode laser industry over a six-year period, 2000 to 2005, incorporating analysis of trends in markets, technologies and industry structure. It is designed to provide key information to users and manufacturers of substrates, epitaxial wafers (epiwafers) and devices. The coverage includes components, laser diodes, and the semiconducting (SC) wafers and epiwafers on which most of these devices are made.
The geographical coverage of the report includes North America, Japan and Europe, which together will account for over 90% of the production and consumption of diode laser materials and devices over the next five years.
However, many other countries have activities in this field including South-East Asia (Taiwan, South Korea, Singapore, Malaysia etc), China, India, Australia and Eastern Europe (Russia, Poland, Hungary, the Czech Republic) amongst others. Activities in these countries are commented on in the text where relevant, but are not quantified in the market data.
Chapter 1 is an introduction to the market study. Chapter 2 contains an executive summary. Chapter 3 overviews materials markets. The size, quality, and particularly the price, of substrates and wafers are key factors in determining the ability of companies to produce competitive laser products. Chapter 3 also examines trends in materials technologies for laser diodes, the impact of the device markets on wafer demand, and the main suppliers. This chapter introduces the semiconductor materials that are presently or will likely become important to the fabrication of diode laser devices. The principal distinguishing properties of these materials are explained with reference to their application. Chapter 4 chapter examines the basic application sectors for laser diode devices as well as the basic commercial opportunities, changes and forces acting within each sector. The chapter also examines the market for the basic types of device as well as the promising newer types. For each type of device, market data and forecasts are provided and future prospects described.
The application data are presented for the following industrial groups: • Automotive • Computers • Consumer • Industrial • Military and Aerospace • Telecommunications • Others A full 5-year forecast and analysis is provided by application and region. Chapter 5 is a technology overview. In this chapter a background and overview of developments in the principal technological R&D and production processes for devices is provided. The main focus is on the most important enabling technology for the production of the present and future generations of laser diodes and related devices.
This process is crystal growth and involves the following sequence: • Bulk growth of single crystals • Epitaxial growth of semiconductor single crystal layers • Ion implantation • Device fabrication, ie gate and contact formation, etc • Packaging & test Chapter 6 profiles substrate suppliers, epiwafers suppliers and merchant and captive producers of GaAs devices. Chapter 7 lists universities and selected industrial labs involved in the areas of diode laser research. Chapter 8 is a directory of suppliers. Chapter 9 provides acronyms and exchange rates. For a PDF version of the report please call Tina Enright on +44 (0) 1865 843008 for price details.
Table of Contents
Section Title | Page | Action | Price |
---|---|---|---|
Front Cover | Cover | ||
Diode laser Materials & Devices: A Worldwide Market & Technology Overview to 2005 | i | ||
Copyright Page | ii | ||
Contents | iii | ||
List of Tables | ix | ||
List of Figures | xiii | ||
Chapter 1. Introduction | 1 | ||
1.1 Report Structure | 1 | ||
1.2 Products | 2 | ||
1.3 Markets | 3 | ||
1.4 Regions | 3 | ||
1.5 Research Background | 3 | ||
Chapter 2. Executive Summary | 5 | ||
2.1 Introduction | 5 | ||
2.2 Diode Laser Substrate Markets | 8 | ||
2.3 Diode Laser Epitaxial Wafer Markets | 10 | ||
2.4 Diode Laser Device Market by Application | 13 | ||
2.5 Diode Laser Application Market Forecast | 16 | ||
2.6 Market by Application Sector | 19 | ||
Chapter 3. Diode Laser Materials Markets | 25 | ||
3.1 Forecast Summary | 25 | ||
3.2 Introduction | 25 | ||
3.3 The World Market For Substrates 2000–05 | 28 | ||
3.4 World Substrate Supplier Situation | 42 | ||
3.5 Merchant GaAs Epiwafer Markets | 43 | ||
Chapter 4. Application Market Overview | 67 | ||
4.1 Introduction | 67 | ||
4.2 Diode Lasers in the Total Laser Marketplace | 69 | ||
4.3 Worldwide Market for Diode Lasers | 69 | ||
4.4 The Worldwide Diode Laser Business | 71 | ||
4.5 Telecommunications Markets for Diode Lasers | 81 | ||
4.6 Consumer Markets for Diode Lasers | 104 | ||
4.7 Computer Markets for Diode Lasers | 115 | ||
4.8 Industrial Markets for Diode Lasers | 125 | ||
4.9 Military/Aerospace Markets for Devices | 140 | ||
4.10 Automotive Markets for Devices | 146 | ||
4.11 Other Markets for Diode Lasers | 153 | ||
Chapter 5. Technology Overview | 157 | ||
5.1 Introduction | 157 | ||
5.2 Crystal Growth | 159 | ||
5.3 Crystal Growth Technologies | 161 | ||
5.4 Substrates | 167 | ||
5.5 Epitaxial Growth | 173 | ||
5.6 In Situ Monitoring | 192 | ||
5.7 Device Processing | 196 | ||
Chapter 6. Company Profiles | 207 | ||
6.1 Introduction | 207 | ||
6.2 Agere Systems | 208 | ||
6.3 Agilent Technologies | 212 | ||
6.4 AIXTRON | 214 | ||
6.5 Alcatel Optronics | 218 | ||
6.6 Alfalight | 221 | ||
6.7 American Xtal Technology | 222 | ||
6.8 ATMI Epitaxial Services | 226 | ||
6.9 Coherent | 229 | ||
6.10 Cree Inc | 232 | ||
6.11 E20 Communications | 234 | ||
6.12 Eastman Kodak | 235 | ||
6.13 EMCORE | 236 | ||
6.14 Epichem | 239 | ||
6.15 Excelight | 241 | ||
6.16 Freiberger Compound Materials | 244 | ||
6.17 Fujitsu | 245 | ||
6.18 Furukawa | 248 | ||
6.19 Hamamatsu | 251 | ||
6.20 Hitachi | 253 | ||
6.21 Honeywell | 255 | ||
6.22 Infineon | 257 | ||
6.23 IQE | 260 | ||
6.24 Japan Energy | 263 | ||
6.25 JDS Uniphase | 264 | ||
6.26 Matsushita | 268 | ||
6.27 Mitsubishi | 272 | ||
6.28 NEC | 275 | ||
6.29 Nichia | 279 | ||
6.30 Nortel | 281 | ||
6.31 Oki | 284 | ||
6.32 PerkinElmer | 286 | ||
6.33 Picogiga | 288 | ||
6.34 Princeton Lightwave | 289 | ||
6.35 RIBER | 291 | ||
6.36 ROHM | 293 | ||
6.37 Sanyo | 297 | ||
6.38 Sharp | 300 | ||
6.39 Sony | 303 | ||
6.40 Spectra-Physics | 306 | ||
6.41 Thales Optics | 310 | ||
6.42 ThermoVG Semicon | 313 | ||
6.43 Toshiba | 315 | ||
6.44 Toyoda Gosei | 317 | ||
6.45 Xerox | 319 | ||
6.46 Zarlink Semiconductor | 321 | ||
Chapter 7. Geographical List of Universities and Selected Industrial Labs | 325 | ||
7.1 Introduction | 325 | ||
7.2 Australia | 326 | ||
7.3 Belgium | 328 | ||
7.4 Canada | 328 | ||
7.5 China | 330 | ||
7.6 Finland | 331 | ||
7.7 France | 332 | ||
7.8 Germany | 335 | ||
7.9 Greece | 342 | ||
7.10 India | 342 | ||
7.11 Ireland | 342 | ||
7.12 Italy | 343 | ||
7.13 Japan | 344 | ||
7.14 Korea | 354 | ||
7.15 The Netherlands | 357 | ||
7.16 Poland | 358 | ||
7.17 Russia | 359 | ||
7.18 Singapore | 360 | ||
7.19 South Africa | 361 | ||
7.20 Spain | 361 | ||
7.21 Sweden | 362 | ||
7.22 Switzerland | 363 | ||
7.23 Taiwan | 364 | ||
7.24 Tunisia | 366 | ||
7.25 UK | 366 | ||
7.26 USA | 375 | ||
Chapter 8. Directory of Leading Suppliers | 399 | ||
Chapter 9. Appendices | 511 | ||
9.1 Exchange Rates | 511 | ||
9.2 Mergers and Acquisitions | 512 | ||
9.3 Joint Ventures and Agreements | 514 | ||
9.4 Alphabetical List of Acronyms | 517 | ||
Erratum | 529 |