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Book
On-Chip Power Delivery and Management
Authors: --- --- --- --- --- et al.
ISBN: 3319293931 3319293958 9783319293936 Year: 2016 Publisher: Cham : Springer International Publishing : Imprint: Springer,

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Abstract

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.

Keywords

Electrical Engineering --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Electric circuits. --- Circuits, Electric --- Electric lines --- Systems engineering. --- Electronics. --- Circuits and Systems. --- Electronics and Microelectronics, Instrumentation. --- Electrical engineering --- Physical sciences --- Engineering systems --- System engineering --- Engineering --- Industrial engineering --- System analysis --- Design and construction --- Electronic circuits. --- Microelectronics. --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Electronics --- Microtechnology --- Semiconductors --- Miniature electronic equipment --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Variable capacitors --- Very high speed integrated circuits --- VHSIC --- Integrated circuits --- Capacitors --- Power supply --- Very large scale integration --- NETWORKS ON A CHIP, NOC (MIKROELEKTRONIK) --- SYSTEM ON A CHIP, SOC (MIKROELEKTRONIK) --- SCHALTKREISENTWURF (MIKROELEKTRONIK) --- LEISTUNG (COMPUTERSYSTEME) --- FACHLICHE NACHSCHLAGEWERKE + FACHLEXIKA + HANDBÜCHER (DOKUMENTENTYP) --- NETWORKS ON A CHIP, NOC (MICROELECTRONICS) --- NETWORKS ON A CHIP, NOC (MICROÉLECTRONIQUE) --- SYSTEM ON A CHIP, SOC (MICROÉLECTRONIQUE) --- SYSTEM ON A CHIP, SOC (MICROELECTRONICS) --- DESSIN DES CIRCUITS IMPRIMÉS (MICROÉLECTRONIQUE) --- CIRCUIT DESIGN (MICROELECTRONICS) --- PERFORMANCE (COMPUTER SYSTEMS) --- PERFORMANCE (SYSTÈMES INFORMATIQUES) --- OUVRAGES DE RÉFÉRENCE SPÉCIALISÉS + ENCYCLOPÉDIES SPÉCIALISÉES + MANUELS (TYPE DE DOCUMENT) --- SPECIALIZED REFERENCE WORKS + SPECIALIZED ENCYCLOPAEDIAS + HANDBOOKS (DOCUMENT TYPE)


Digital
On-Chip Power Delivery and Management
Authors: --- --- --- --- --- et al.
ISBN: 9783319293950 Year: 2016 Publisher: Cham Springer International Publishing

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Bookmark

Abstract

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.

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