IEEE Transactions on Very Large Scale Integration (VLSI) Systems · 2002 · 188 citations · 14 references
Efficient UseEngineeringVlsi DesignComputer ArchitectureHardware SecurityCircuit SystemModest Leakage SavingsElectrical EngineeringState DependenceTransistor StacksBias Temperature InstabilityComputer EngineeringInsert Leakage-control TransistorsMicroelectronicsLow-power ElectronicsCircuit DesignVlsi ArchitectureStress-induced Leakage CurrentSingle Threshold CmosBeyond Cmos
The state dependence of leakage can be exploited to obtain modest leakage savings in complementary metal-oxide-semiconductor (CMOS) circuits. However, one can modify circuits considering state dependence and achieve larger savings. We identify a low-leakage state and insert leakage-control transistors only where needed. Leakage levels are on the order of 35% to 90% lower than those obtained by state dependence alone. Using a modified standard-cell-design flow, area overhead for combinational logic was found to be on the order of 18%. The proposed technique minimizes performance impact, does not require multiple-threshold voltages, and supports a standard-cell-design flow.
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V. J. Rayward‐Smith, Thomas H. Cormen, Charles E. Leiserson et al. · Journal of the Operational Research Society · 1991 · 16.9K citations
Tadahiro Kuroda, Takeshi Fujita, S. Mita et al. · IEEE Journal of Solid-State Circuits · 1996 · 470 citations
Low-power Electronics, Core Processor, Electrical Engineering +15