Design for Excellence in Electronics Manufacturing 1st edition by Cheryl Tulkoff, Greg Caswell – Ebook PDF Instant Download/DeliveryISBN: 1119109396, 9781119109396
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Product details:
ISBN-10 : 1119109396
ISBN-13 : 9781119109396
Author : Cheryl Tulkoff, Greg Caswell
An authoritative guide to optimizing design for manufacturability and reliability from a team of experts Design for Excellence in Electronics Manufacturing is a comprehensive, state-of-the-art book that covers design and reliability of electronics. The authors—noted experts on the topic—explain how using the DfX concepts of design for reliability, design for manufacturability, design for environment, design for testability, and more, reduce research and development costs and decrease time to market and allow companies to confidently issue warranty coverage. By employing the concepts outlined in Design for Excellence in Electronics Manufacturing, engineers and managers can increase customer satisfaction, market share, and long-term profits. In addition, the authors describe the best practices regarding product design and show how the practices can be adapted for different manufacturing processes, suppliers, use environments, and reliability expectations. This important book: Contains a comprehensive review of the design and reliability of electronics Covers a range of topics: establishing a reliability program, design for the use environment, design for manufacturability, and more Includes technical information on electronic packaging, discrete components, and assembly processes Shows how aspects of electronics can fail under different environmental stresses Written for reliability engineers, electronics engineers, design engineers, component engineers, and others, Design for Excellence in Electronics Manufacturing is a comprehensive book that reveals how to get product design right the first time.
Design for Excellence in Electronics Manufacturing 1st Table of contents:
1 Introduction to Design for Excellence
1.1 Design for Excellence (DfX) in Electronics Manufacturing
1.2 Chapter 2: Establishing a Reliability Program
1.3 Chapter 3: Design for Reliability (DfR)
1.4 Chapter 4: Design for the Use Environment: Reliability Testing and Test Plan Development
1.5 Chapter 5: Design for Manufacturability (DfM)
1.6 Chapter 6: Design for Sustainability
1.7 Chapter 7: Root Cause Problem‐Solving, Failure Analysis, and Continual Improvement Techniques
2 Establishing a Reliability Program
2.1 Introduction
2.2 Best Practices and the Economics of a Reliability Program
2.3 Elements of a Reliability Program
2.4 Reliability Data
2.5 Analyzing Reliability Data: Commonly Used Probability and Statistics Concepts in Reliability
2.6 Reliability Analysis and Prediction Methods
2.7 Summary
References
3 Design for Reliability
3.1 Introduction
3.2 DfR and Physics of Failure
3.3 Specifications (Product and Environment Definitions and Concerns)
3.4 Reliability Physics Analysis
3.5 Surviving the Heat Wave
3.6 Redundancy
3.7 Plating Materials: Tin Whiskers
3.8 Derating and Uprating
3.9 Reliability of New Packaging Technologies
3.10 Printed Circuit Boards
3.11 Non‐Functional Pads
3.12 Wearout Mechanisms
3.13 Conformal Coating and Potting
References
4 Design for the Use Environment: Reliability Testing and Test Plan Development
4.1 Introduction
4.2 Standards and Measurements
4.3 Failure‐Inducing Stressors
4.4 Common Test Types
4.5 Test Plan Development
References
5 Design for Manufacturability
5.1 Introduction
5.2 Overview of Industry Standard Organizations
5.3 Overview of DfM Processes
5.4 Component Topics
5.5 Printed Circuit Board Topics
5.6 Process Materials
5.7 Summary: Implementing DfM
References
6 Design for Sustainability
6.1 Introduction
6.2 Obsolescence Management
6.3 Long‐Term Storage
6.4 Long‐Term Reliability Issues
6.5 Counterfeit Prevention and Detection Strategies
6.6 Supplier Selection
References
7 Root Cause Problem‐Solving, Failure Analysis, and Continual Improvement Techniques
7.1 Introduction
7.2 Root Cause Failure Analysis Methodology
7.3 Failure Reporting, Analysis, and Corrective Action System (FRACAS)
7.4 Failure Analysis
7.5 Continuing Education and Improvement Activities
7.6 Summary: Implementing Root Cause Methodology
References
8 Conclusion to Design for Excellence: Bringing It All Together
8.1 Design for Excellence (DfX) in Electronics Manufacturing
8.2 Chapter 2: Establishing a Reliability Program
8.3 Chapter 3: Design for Reliability (DfR)
8.4 Chapter 4: Design for the Use Environment: Reliability Testing and Test Plan Development
8.5 Chapter 5: Design for Manufacturability
8.6 Chapter 6: Design for Sustainability
8.7 Chapter 7: Root Cause Problem Solving, Failure Analysis, and Continual Improvement Techniques
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Tags: Design, Excellence, Electronics, Manufacturing, Cheryl Tulkoff, Greg Caswell