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Materials and Reliability Handbook for Semiconductor Optical and Electron Devices (Hardcover, 2013 ed.): Osamu Ueda, Stephen J.... Materials and Reliability Handbook for Semiconductor Optical and Electron Devices (Hardcover, 2013 ed.)
Osamu Ueda, Stephen J. Pearton
R8,195 Discovery Miles 81 950 Ships in 10 - 15 working days

"Materials and Reliability Handbook for Semiconductor Optical and Electron Devices" provides comprehensive coverage of reliability procedures and approaches for electron and photonic devices. These include lasers and high speed electronics used in cell phones, satellites, data transmission systems and displays. Lifetime predictions for compound semiconductor devices are notoriously inaccurate due to the absence of standard protocols. Manufacturers have relied on extrapolation back to room temperature of accelerated testing at elevated temperature. This technique fails for scaled, high current density devices. Device failure is driven by electric field or current mechanisms or low activation energy processes that are masked by other mechanisms at high temperature.

The" Handbook "addresses reliability engineering for III-V devices, including materials and electrical characterization, reliability testing, and electronic characterization. These are used to develop new simulation technologies for device operation and reliability, which allow accurate prediction of reliability as well as the design specifically for improved reliability. The "Handbook" emphasizes physical mechanisms rather than an electrical definition of reliability. Accelerated aging is useful only if the failure mechanism is known. The Handbook also focuses on voltage and current acceleration stress mechanisms."

Reliability and Degradation of III-V Optical Devices (Hardcover): Osamu Ueda Reliability and Degradation of III-V Optical Devices (Hardcover)
Osamu Ueda
R3,574 Discovery Miles 35 740 Ships in 10 - 15 working days

Better understand the mechanism of degradation, and gain insight into the major degradation modes of optical devices fabricated from three different systems with this book. It explains the character of defects and imperfections induced during material growth and fabrication, presents techniques for failure analysis, and describes methods for elimination of defect-generating mechanisms.

Reliability of Semiconductor Lasers and Optoelectronic Devices (Paperback): Robert Herrick, Osamu Ueda Reliability of Semiconductor Lasers and Optoelectronic Devices (Paperback)
Robert Herrick, Osamu Ueda
R3,558 Discovery Miles 35 580 Ships in 12 - 17 working days

Reliability of Semiconductor Lasers and Optoelectronic Devices simplifies complex concepts of optoelectronics reliability with approachable introductory chapters and a focus on real-world applications. This book provides a brief look at the fundamentals of laser diodes, introduces reliability qualification, and then presents real-world case studies discussing the principles of reliability and what occurs when these rules are broken. Then this book comprehensively looks at optoelectronics devices and the defects that cause premature failure in them and how to control those defects. Key materials and devices are reviewed including silicon photonics, vertical-cavity surface-emitting lasers (VCSELs), InGaN LEDs and lasers, and AlGaN LEDs, covering the majority of optoelectronic devices that we use in our everyday lives, powering the Internet, telecommunication, solid-state lighting, illuminators, and many other applications. This book features contributions from experts in industry and academia working in these areas and includes numerous practical examples and case studies. This book is suitable for new entrants to the field of optoelectronics working in R&D.

Materials and Reliability Handbook for Semiconductor Optical and Electron Devices (Paperback, 2013 ed.): Osamu Ueda, Stephen J.... Materials and Reliability Handbook for Semiconductor Optical and Electron Devices (Paperback, 2013 ed.)
Osamu Ueda, Stephen J. Pearton
R9,829 Discovery Miles 98 290 Ships in 10 - 15 working days

Materials and Reliability Handbook for Semiconductor Optical and Electron Devices provides comprehensive coverage of reliability procedures and approaches for electron and photonic devices. These include lasers and high speed electronics used in cell phones, satellites, data transmission systems and displays. Lifetime predictions for compound semiconductor devices are notoriously inaccurate due to the absence of standard protocols. Manufacturers have relied on extrapolation back to room temperature of accelerated testing at elevated temperature. This technique fails for scaled, high current density devices. Device failure is driven by electric field or current mechanisms or low activation energy processes that are masked by other mechanisms at high temperature. The Handbook addresses reliability engineering for III-V devices, including materials and electrical characterization, reliability testing, and electronic characterization. These are used to develop new simulation technologies for device operation and reliability, which allow accurate prediction of reliability as well as the design specifically for improved reliability. The Handbook emphasizes physical mechanisms rather than an electrical definition of reliability. Accelerated aging is useful only if the failure mechanism is known. The Handbook also focuses on voltage and current acceleration stress mechanisms.

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