Design considerations for low-power operations and robustness with respect to variations typically impose contradictory requirements. Low-power design techniques such as voltage scaling, dual-threshold assignment and gate sizing can have large negative impact on parametric yield under process variations. This book focuses on circuit/architectural design techniques for achieving low power operation under parameter variations. We consider both logic and memory design aspects and cover modeling and analysis, as well as design methodology to achieve simultaneously low power and variation tolerance, while minimizing design overhead. This book will discuss current industrial practices and emerging challenges at future technology nodes.
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Design considerations for low-power operations and robustness with respect to variations typically impose contradictory requirements. We consider both logic and memory design aspects and cover modeling and analysis, as well as design methodology to achieve simultaneously low power and variation tolerance, while minimizing design overhead.
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Introduction and Motivation.- Background on Power Dissipation.- Background on Parameter Variations.- Low power Logic Design under Variations.- Low Power Memory Design under Variations.- System and Architecture Level Design.- Emerging Challenges and Solution Approach.- Conclusion and Discussion.
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Low-Power Variation-Tolerant Design in Nanometer Silicon
Edited by:
Swarup Bhunia
Saibal Mukhopadhyay
Design considerations for low-power operations and robustness with respect to variations typically impose contradictory requirements. Low-power design techniques such as voltage scaling, dual-threshold assignment and gate sizing can have large negative impact on parametric yield under process variations. This book focuses on circuit/architectural design techniques for achieving low power operation under parameter variations. Coverage includes logic and memory design, modeling and analysis, as well as design methodology to achieve simultaneously low power and variation tolerance, while minimizing design overhead.
•Introduces readers to some of the most important challenges in low-power and variation-tolerant IC design in nanoscale technologies;
•Presents a holistic view of Low-Power Variation-Tolerant Design, at different levels of design abstraction, starting from device to circuit, architecture and system;
•Offers comprehensive coverage of modeling, analysis and design methodology for low power and variation-tolerant logic circuits, memory and systems, micro-architecture, DSP, mixed-signal and FPGAs, including current industrial practices, technology scaling trends, and emerging challenges;
•Describes in detail modeling and analysis of different variation effects (die-to-die and within-die, process and temporal) on low-power designs;
Includes coverage of ultra low-power and robust sub-threshold design.
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Presents important challenges in nanometer scale integrated circuit design Presents a holistic view of Low-Power Variation-Tolerant Design Covers modeling, analysis and design methodology for low power and variation-tolerant logic circuits, memory and systems
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Produktdetaljer
ISBN
9781441974174
Publisert
2010-11-24
Utgiver
Vendor
Springer-Verlag New York Inc.
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Research, P, 06
Språk
Product language
Engelsk
Format
Product format
Innbundet