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Title On-chip power delivery and management [electronic resource] / Inna P. Vaisband, Renatas Jakushokas, Mikhail Popovich, Andrey V. Mezhiba, Selçuk Köse, Eby G. Friedman.

Published Cham : Springer, 2016.


Location Call No. Status
Edition 4th ed.
Physical description 1 online resource (xxxvii, 742 p.) : ill. (some col.)
Series Springer English/International eBooks 2016 - Full Set
Springer Engineering eBooks 2016 English+International
Contents From the Contents: Introduction -- Inductive Properties of Electric Circuits -- Properties of On-Chip Inductive Current Loops -- Electromigration -- Scaling Trends of On-Chip Power Distribution Noise -- High Performance Power Distribution Systems -- On-Chip Power Distribution Networks -- Computer-Aided Design and Analysis -- Closed Form Expressions for Fast IR Drop Analysis.
Summary This book describes methods for distributing power in high speed, high complexity integrated circuits with power levels exceeding many tens of watts and power supplies below a volt. It provides a broad and cohesive treatment of power delivery and management systems and related design problems, including both circuit network models and design techniques for on-chip decoupling capacitors, providing insight and intuition into the behavior and design of on-chip power distribution systems. Organized into subareas to provide a more intuitive flow to the reader, this fourth edition adds more than a hundred pages of new content, including inductance models for interdigitated structures, design strategies for multi-layer power grids, advanced methods for efficient power grid design and analysis, and methodologies for simultaneously placing on-chip multiple power supplies and decoupling capacitors. The emphasis of this additional material is on managing the complexity of on-chip power distribution networks.
Other author Vaisband, Inna P. author.
Jakushokas, Renatas. author.
Popovich, Mikhail. author.
Mezhiba, Andrey V. author.
Köse, Selçuk. author.
Friedman, Eby G. author.
SpringerLink issuing body.
Subject Electric circuits.
Electronic circuits.
Electronic books.
ISBN 9783319293950 electronic bk.
3319293958 electronic bk.
9783319293936 print
Standard Number 10.1007/978-3-319-29395-0