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Advanced Signal Integrity for High-Speed Digital Designs (IEEE Press)

Advanced Signal Integrity for High-Speed Digital Designs (IEEE Press)

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Advanced Signal Integrity for High-Speed Digital Designs (IEEE Press)

<b>A synergistic approach to signal integrity for high-speed digital design</b> <p>This book is designed to provide contemporary readers with an understanding of the emerging high-speed signal integrity issues that are creating roadblocks in digital design. Written by the foremost experts on the subject, it leverages concepts and techniques from non-related fields such as applied physics and microwave engineering and applies them to high-speed digital design—creating the optimal combination between theory and practical applications.</p> <p>Following an introduction to the importance of signal integrity, chapter coverage includes:</p> <ul> <li>Electromagnetic fundamentals for signal integrity</li> <li>Transmission line fundamentals</li> <li>Crosstalk</li> <li>Non-ideal conductor models, including surface roughness and frequency-dependent inductance</li> <li>Frequency-dependent properties of dielectrics</li> <li>Differential signaling</li> <li>Mathematical requirements of physical channels</li> <li>S-parameters for digital engineers</li> <li>Non-ideal return paths and via resonance</li> <li>I/O circuits and models</li> <li>Equalization</li> <li>Modeling and budgeting of timing jitter and noise</li> <li>System analysis using response surface modeling</li> </ul> <p>Each chapter includes many figures and numerous examples to help readers relate the concepts to everyday design and concludes with problems for readers to test their understanding of the material. <i>Advanced Signal Integrity for High-Speed Digital Designs</i> is suitable as a textbook for graduate-level courses on signal integrity, for programs taught in industry for professional engineers, and as a reference for the high-speed digital designer.</p>

Technical Specifications

Country
USA
Manufacturer
Wiley-IEEE Press
Binding
Kindle Edition
ReleaseDate
2011-09-21T00:00:00.000Z
Format
Kindle eBook

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