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[ACM Press the 2006 international symposium - Tegernsee, Bavaria, Germany (2006.10.04-2006.10.06)] Proceedings of the 2006 international symposium on Low power electronics and design - ISLPED '06 - Process variation aware cache leakage management

โœ Scribed by Meng, Ke; Joseph, Russ


Book ID
121313553
Publisher
ACM Press
Year
2006
Weight
510 KB
Category
Article
ISBN-13
9781595934628

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โœฆ Synopsis


In a few technology generations, limitations of fabrication processes will make accurate design time power estimates a daunting challenge. Static leakage current which comprises a significant fraction of total power due to large on-chip caches, is exponentially dependent on widely varying physical parameters such as gate length, gate oxide thickness, and dopant ion concentration. In large structures like onchip caches, this may mean that one portion of a cache may consume an order of magnitude larger static power than equivalently sized regions.Under this climate, egalitarian management of physical resources is clearly untenable. In this paper, we analyze the effects of within-die and die-to-die leakage variation for onchip caches. We then propose way prioritization, a manufacturing variation aware scheme that minimizes cache leakage energy. Our results show that significant average power reductions are possible without undue hardware complexity or performance compromise.


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