Description

Book Synopsis

Examining numerous examples of highly sensitive products, this book reviews basic reliability mathematics, describes robust design practices, and discusses the process of selecting suppliers and components. He focuses on the specific issues of thermal management, electrostatic discharge, electromagnetic compatibility, printed wiring assembly, environmental stress testing, and failure analysis. The book presents methods for meeting the reliability goals established for the manufacture of electronic product hardware and addresses the development of reliable software. The appendix provides example guidelines for the derating of electrical and electromechanical components.



Table of Contents
Preface, 1. Introduction to Reliability, 2. Basic Reliability Mathematics, 3. Robust Design Practices, 4. Component and Supplier Selection, Qualification, Testing and Management, 5. Thermal Management, 6. Electrostatic Discharge and Electromagnetic Compatibility, 7. Manufacturing/Production Practices, 8. Software, Appendix A: An Example of Part Derating Guidelines, Appendix B: FMEA Example for a Memory Module, Epilogue, Index

Practical Reliability Of Electronic Equipment And

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    A Hardback by Eugene R. Hnatek

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      Publisher: Taylor & Francis Inc
      Publication Date: 25/10/2002
      ISBN13: 9780824708320, 978-0824708320
      ISBN10: 0824708326

      Description

      Book Synopsis

      Examining numerous examples of highly sensitive products, this book reviews basic reliability mathematics, describes robust design practices, and discusses the process of selecting suppliers and components. He focuses on the specific issues of thermal management, electrostatic discharge, electromagnetic compatibility, printed wiring assembly, environmental stress testing, and failure analysis. The book presents methods for meeting the reliability goals established for the manufacture of electronic product hardware and addresses the development of reliable software. The appendix provides example guidelines for the derating of electrical and electromechanical components.



      Table of Contents
      Preface, 1. Introduction to Reliability, 2. Basic Reliability Mathematics, 3. Robust Design Practices, 4. Component and Supplier Selection, Qualification, Testing and Management, 5. Thermal Management, 6. Electrostatic Discharge and Electromagnetic Compatibility, 7. Manufacturing/Production Practices, 8. Software, Appendix A: An Example of Part Derating Guidelines, Appendix B: FMEA Example for a Memory Module, Epilogue, Index

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