Fundamentals of Power Integrity for Computer Platforms and Systems
(2014)

Nonfiction

eBook

Provider: hoopla

Details

PUBLISHED
[United States] : Wiley, 2014
Made available through hoopla
DESCRIPTION

1 online resource

ISBN/ISSN
9781118826348 MWT18095789, 1118826345 18095789
LANGUAGE
English
NOTES

An all-encompassing text that focuses on the fundamentals of power integrity Power integrity is the study of power distribution from the source to the load and the system level issues that can occur across it. For computer systems, these issues can range from inside the silicon to across the board and may egress into other parts of the platform, including thermal, EMI, and mechanical. With a focus on computer systems and silicon level power delivery, this book sheds light on the fundamentals of power integrity, utilizing the author's extensive background in the power integrity industry and unique experience in silicon power architecture, design, and development. Aimed at engineers interested in learning the essential and advanced topics of the field, this book offers important chapter coverage of fundamentals in power distribution, power integrity analysis basics, system-level power integrity considerations, power conversion in computer systems, chip-level power, and more. Fundamentals of Power Integrity for Computer Platforms and Systems: - Introduces readers to both the field of power integrity and to platform power conversion - Provides a unique focus on computer systems and silicon level power delivery unavailable elsewhere - Offers detailed analysis of common problems in the industry - Reviews electromagnetic field and circuit representation - Includes a detailed bibliography of references at the end of each chapter - Works out multiple example problems within each chapter Including additional appendixes of tables and formulas, Fundamentals of Power Integrity for Computer Platforms and Systems is an ideal introductory text for engineers of power integrity as well as those in the chip design industry, specifically physical design and packaging

Mode of access: World Wide Web

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