A Simultaneous Input Vector Control and Circuit Modification Technique to Reduce Leakage with Zero Delay Penalty

Author:

Jayakumar Nikhil1,Khatri Sunil P.2

Affiliation:

1. Juniper Networks

2. Texas A&M University

Abstract

Leakage power currently comprises a large fraction of the total power consumption of an IC. Techniques to minimize leakage have been researched widely. However, most approaches to reducing leakage have an associated performance penalty. In this article, we present an approach which minimizes leakage by simultaneously modifying the circuit while deriving the input vector that minimizes leakage. In our approach, we selectively modify a gate so that its output (in sleep mode) is in a state which helps minimize the leakage of other gates in its transitive fanout. Gate replacement is performed in a slack-aware manner, to minimize the resulting delay penalty. One of the major advantages of our technique is that we achieve a significant reduction in leakage without increasing the delay of the circuit.

Publisher

Association for Computing Machinery (ACM)

Subject

Electrical and Electronic Engineering,Computer Graphics and Computer-Aided Design,Computer Science Applications

Reference27 articles.

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5. BSIM Research Group. 2001. BSIM3 Manual. The Device Group Department of EECS UC Berkeley. http://www-device.eecs.berkeley.edu/~bsim3/ftpv323/Mod_doc/BSIM3v323_manutar. BSIM Research Group . 2001. BSIM3 Manual . The Device Group Department of EECS UC Berkeley. http://www-device.eecs.berkeley.edu/~bsim3/ftpv323/Mod_doc/BSIM3v323_manutar.

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