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Reliability of Semiconductor Lasers and Optoelectronic Devices

Reliability of Semiconductor Lasers and Optoelectronic Devices
  • Author : Robert Herrick
  • Publsiher : Woodhead Publishing
  • Release : 06 March 2021
  • ISBN : 0128192550
  • Pages : 334 pages
  • Rating : 4/5 from 21 ratings
GET THIS BOOKReliability of Semiconductor Lasers and Optoelectronic Devices

Summary:
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. • Includes case studies and numerous examples showing best practices and common mistakes affecting optoelectronics reliability written by experts working in the industry • Features the first wide-ranging and comprehensive overview of fiber optics reliability engineering, covering all elements of the practice from building a reliability laboratory, qualifying new products, to improving reliability on mature products. • Provides a look at the reliability issues and failure mechanisms for silicon photonics, VCSELs, InGaN LEDs and lasers, AIGaN LEDs, and more.


Reliability of Semiconductor Lasers and Optoelectronic Devices

Reliability of Semiconductor Lasers and Optoelectronic Devices
  • Author : Robert Herrick,Osamu Ueda
  • Publisher : Woodhead Publishing
  • Release : 06 March 2021
GET THIS BOOKReliability of Semiconductor Lasers and Optoelectronic Devices

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.

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Advanced Laser Diode Reliability

Advanced Laser Diode Reliability
  • Author : Massimo Vanzi,Laurent Bechou,Mitsuo Fukuda,Giovanna Mura
  • Publisher : Elsevier
  • Release : 30 July 2021
GET THIS BOOKAdvanced Laser Diode Reliability

Advanced Laser Diode Reliability focuses on causes and effects of degradations of state-of-the-art semiconductor laser diodes. It aims to provide a tool for linking practical measurements to physical diagnostics. To this purpose, it reviews the current technologies, addressing their peculiar details that can promote specific failure mechanisms. Two sections will support this kernel: a) Failure Analysis techniques, procedures and examples; b) Device-oriented laser modelling and parameter extraction. Talk about Natural continuity with the most widespread existing textbooks, published by Mitsuo

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Semiconductor Laser Engineering, Reliability and Diagnostics

Semiconductor Laser Engineering, Reliability and Diagnostics
  • Author : Peter W. Epperlein
  • Publisher : John Wiley & Sons
  • Release : 25 January 2013
GET THIS BOOKSemiconductor Laser Engineering, Reliability and Diagnostics

This reference book provides a fully integrated novel approach to the development of high-power, single-transverse mode, edge-emitting diode lasers by addressing the complementary topics of device engineering, reliability engineering and device diagnostics in the same book, and thus closes the gap in the current book literature. Diode laser fundamentals are discussed, followed by an elaborate discussion of problem-oriented design guidelines and techniques, and by a systematic treatment of the origins of laser degradation and a thorough exploration of the engineering

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Optoelectronic Devices

Optoelectronic Devices
  • Author : Dutta Niloy K,Zhang Xiang
  • Publisher : World Scientific
  • Release : 30 September 2013
GET THIS BOOKOptoelectronic Devices

This book provides a comprehensive treatment of the design and applications of optoelectronic devices. Optoelectronic devices such as light emitting diodes (LEDs), semiconductor lasers, photodetectors, optical fibers, and solar cells, are important components for solid state lighting systems, optical communication systems, and power generation systems. Optical fiber amplifiers and fiber lasers are also important for high power industrial applications and sensors. The applications of optoelectronic devices were first studied in the 1970's. Since then, the diversity and scope of optoelectronic

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Reliability and Degradation of Semiconductor Lasers and LEDs

Reliability and Degradation of Semiconductor Lasers and LEDs
  • Author : Mitsuo Fukuda
  • Publisher : Artech House on Demand
  • Release : 01 January 1991
GET THIS BOOKReliability and Degradation of Semiconductor Lasers and LEDs

This comparative tutorial describes the reasons behind device failures and provides practical information on what can be done to minimize failure-prone designs and enhance device reliability. The text demonstrates how, with such advantages as smaller size, low-cost and simple operation, LEDs are well suited for a wide range of applications - especially in the field of optical fibre communication. This book should prove of interest to engineers and scientists in research, design, manufacturing and development of semiconductor lasers, LEDs and

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Reliability Characterisation of Electrical and Electronic Systems

Reliability Characterisation of Electrical and Electronic Systems
  • Author : Jonathan Swingler
  • Publisher : Elsevier
  • Release : 24 December 2014
GET THIS BOOKReliability Characterisation of Electrical and Electronic Systems

This book takes a holistic approach to reliability engineering for electrical and electronic systems by looking at the failure mechanisms, testing methods, failure analysis, characterisation techniques and prediction models that can be used to increase reliability for a range of devices. The text describes the reliability behavior of electrical and electronic systems. It takes an empirical scientific approach to reliability engineering to facilitate a greater understanding of operating conditions, failure mechanisms and the need for testing for a more realistic

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Packaging of High Power Semiconductor Lasers

Packaging of High Power Semiconductor Lasers
  • Author : Xingsheng Liu,Wei Zhao,Lingling Xiong,Hui Liu
  • Publisher : Springer
  • Release : 14 July 2014
GET THIS BOOKPackaging of High Power Semiconductor Lasers

This book introduces high power semiconductor laser packaging design. The challenges of the design and various packaging and testing techniques are detailed by the authors. New technologies and current applications are described in detail.

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Reliability of Electronic Components

Reliability of Electronic Components
  • Author : Titu I. Bajenescu,Marius I. Bazu
  • Publisher : Springer Science & Business Media
  • Release : 06 December 2012
GET THIS BOOKReliability of Electronic Components

This application-oriented professional book explains why components fail, addressing the needs of engineers who apply reliability principles in design, manufacture, testing and field service. A detailed index, a glossary, acronym lists, reliability dictionaries and a rich specific bibliography complete the book.

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Semiconductor Device Reliability

Semiconductor Device Reliability
  • Author : A. Christou,B.A. Unger
  • Publisher : Springer Science & Business Media
  • Release : 06 December 2012
GET THIS BOOKSemiconductor Device Reliability

This publication is a compilation of papers presented at the Semiconductor Device Reliabi lity Workshop sponsored by the NATO International Scientific Exchange Program. The Workshop was held in Crete, Greece from June 4 to June 9, 1989. The objective of the Workshop was to review and to further explore advances in the field of semiconductor reliability through invited paper presentations and discussions. The technical emphasis was on quality assurance and reliability of optoelectronic and high speed semiconductor devices. The primary support for the

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Materials and Reliability Handbook for Semiconductor Optical and Electron Devices

Materials and Reliability Handbook for Semiconductor Optical and Electron Devices
  • Author : Osamu Ueda,Stephen J. Pearton
  • Publisher : Springer Science & Business Media
  • Release : 22 September 2012
GET THIS BOOKMaterials and Reliability Handbook for Semiconductor Optical and Electron Devices

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.

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Microelectronics Failure Analysis

Microelectronics Failure Analysis
  • Author : Anonim
  • Publisher : ASM International
  • Release : 01 January 2004
GET THIS BOOKMicroelectronics Failure Analysis

For newcomers cast into the waters to sink or swim as well as seasoned professionals who want authoritative guidance desk-side, this hefty volume updates the previous (1999) edition. It contains the work of expert contributors who rallied to the job in response to a committee's call for help (the committee was assigned to the update by the Electron

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Assessment of Advanced Solid-State Lighting

Assessment of Advanced Solid-State Lighting
  • Author : National Research Council,Division on Engineering and Physical Sciences,Board on Energy and Environmental Systems,Committee on Assessment of Solid-State Lighting
  • Publisher : National Academies Press
  • Release : 27 April 2013
GET THIS BOOKAssessment of Advanced Solid-State Lighting

The standard incandescent light bulb, which still works mainly as Thomas Edison invented it, converts more than 90% of the consumed electricity into heat. Given the availability of newer lighting technologies that convert a greater percentage of electricity into useful light, there is potential to decrease the amount of energy used for lighting in both commercial and residential applications. Although technologies such as compact fluorescent lamps (CFLs) have emerged in the past few decades and will help achieve the goal of

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Nitride Semiconductor Technology

Nitride Semiconductor Technology
  • Author : Fabrizio Roccaforte,Michael Leszczynski
  • Publisher : John Wiley & Sons
  • Release : 30 July 2020
GET THIS BOOKNitride Semiconductor Technology

The book "Nitride Semiconductor Technology" provides an overview of nitride semiconductors and their uses in optoelectronics and power electronics devices. It explains the physical properties of those materials as well as their growth methods. Their applications in high electron mobility transistors, vertical power devices, LEDs, laser diodes, and vertical-cavity surface-emitting lasers are discussed in detail. The book further examines reliability issues in these materials and puts forward perspectives of integrating them with 2D materials for novel high-frequency and high-power devices.

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