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Titlebook: Closing the Power Gap between ASIC & Custom; Tools and Techniques David Chinnery,Kurt Keutzer Book 2007 Springer-Verlag US 2007 ASIC.algori

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https://doi.org/10.1007/978-3-663-01928-2 of similar ASIC and custom designs, we estimate that the power consumption of typical ASICs may be 3 to 7× that of custom ICs fabricated in process technology of the same generation. We consider ways to augment and enhance an ASIC methodology to bridge this power gap between ASIC and custom.
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Psychotherapie schizophrener Patienten,, and changes to tools and standard cell libraries needed to reduce power. Using these methods, we believe that the power gap between ASICs and custom circuits can be closed to within 2.6× at a tight performance constraint for a typical ASIC design.
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https://doi.org/10.1007/978-3-7091-9089-0r power gating. The subsequent sections describe design issues, CoolPower automation methods including analysis and optimization techniques, and two different power gating application flows as well as results from using those flows. This chapter then concludes with a view to the future and likely new developments in power gating design.
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https://doi.org/10.1007/978-1-4899-0327-3iple thresholds to match the performance of critical regions to their timing constraints, and minimize the power everywhere else. We explore the trade-off between multiple supply voltages and multiple threshold voltages in the optimization of dynamic and static power.
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Introduction, of similar ASIC and custom designs, we estimate that the power consumption of typical ASICs may be 3 to 7× that of custom ICs fabricated in process technology of the same generation. We consider ways to augment and enhance an ASIC methodology to bridge this power gap between ASIC and custom.
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Overview of the Factors Affecting the Power Consumption,, and changes to tools and standard cell libraries needed to reduce power. Using these methods, we believe that the power gap between ASICs and custom circuits can be closed to within 2.6× at a tight performance constraint for a typical ASIC design.
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Power Gating Design Automation,r power gating. The subsequent sections describe design issues, CoolPower automation methods including analysis and optimization techniques, and two different power gating application flows as well as results from using those flows. This chapter then concludes with a view to the future and likely new developments in power gating design.
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Pushing ASIC Performance in a Power Envelope,iple thresholds to match the performance of critical regions to their timing constraints, and minimize the power everywhere else. We explore the trade-off between multiple supply voltages and multiple threshold voltages in the optimization of dynamic and static power.
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