Dynamic Sleep Control for Finite-State-Machines to Reduce Active Leakage Power(Logic Synthesis)(<Special Section>VLSI Design and CAD Algorithms)
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概要
- 論文の詳細を見る
Leakage power is predicted to become dominant in the total operation power as the transistor technology gets advanced. Even in the current technology, dramatic increase of leakage power at elevated temperature is a big problem. Burn-in testing, which is typically performed at 125℃, is facing at difficulties such as throughput degradation or thermal runaway due to increase of leakage power. Reducing leakage power at operation time is essential to solve these problems. We propose a novel approach to make use of an enable signal of a gated-clock technique for reducing active leakage power. A sleep transistor is provided between combinational logic circuits and the ground, and is controlled by the enable signal. When state transitions do not occur in Finite-State-Machines (FSM's), the enable signal becomes low and the state flip-flops keep the data. At the same time, the sleep transistor is turned off so that combinational logic gates are electrically disconnected from the ground to reduce leakage. Simulation results have shown that the proposed scheme reduces active leakage power by 30-60% in 0.18μm technology. The total power was reduced by 20% at the maximum at 125℃. It was also found that performance degradation was tolerable for burn-in testing.
- 社団法人電子情報通信学会の論文
- 2004-12-01
著者
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YOSHIOKA Hiroshi
Department of Radiology, Institute of Clinical Medicine, University of Tsukuba
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Usami Kimiyoshi
Department Of Information Science And Engineering Shibaura Institute Of Technology
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Yoshioka Hiroshi
Department Of Clinical Pharmacology The University Of Tokushima Faculty Of Pharmaceutical Sciences
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Yoshioka Hiroshi
Department Of Information Science And Engineering Shibaura Institute Of Technology
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