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On-Chip Power Delivery and Management (Paperback, Softcover reprint of the original 4th ed. 2016): Inna P. Vaisband, Renatas... On-Chip Power Delivery and Management (Paperback, Softcover reprint of the original 4th ed. 2016)
Inna P. Vaisband, Renatas Jakushokas, Mikhail Popovich, Andrey V. Mezhiba, Selcuk Koese, …
R4,871 Discovery Miles 48 710 Ships in 10 - 15 working days

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.

On-Chip Power Delivery and Management (Hardcover, 4th ed. 2016): Inna P. Vaisband, Renatas Jakushokas, Mikhail Popovich, Andrey... On-Chip Power Delivery and Management (Hardcover, 4th ed. 2016)
Inna P. Vaisband, Renatas Jakushokas, Mikhail Popovich, Andrey V. Mezhiba, Selcuk Koese, …
R6,707 Discovery Miles 67 070 Ships in 10 - 15 working days

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.

Power Distribution Networks with On-Chip Decoupling Capacitors (Paperback, 2nd ed. 2011): Renatas Jakushokas, Mikhail Popovich,... Power Distribution Networks with On-Chip Decoupling Capacitors (Paperback, 2nd ed. 2011)
Renatas Jakushokas, Mikhail Popovich, Andrey V. Mezhiba, Selcuk Koese, Eby G. Friedman
R4,095 Discovery Miles 40 950 Ships in 10 - 15 working days

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 distribution 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 second 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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