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Low-power CMOS digital design

IEEE Journal of Solid-State Circuits · 1992 · Vol. 27(4) · pp. 473–484
Anantha P. ChandrakasanSamuel ShengR.W. Brodersen

Abstract

Motivated by emerging battery-operated applications that demand intensive computation in portable environments, techniques are investigated which reduce power consumption in CMOS digital circuits while maintaining computational throughput. Techniques for low-power operation are shown which use the lowest possible supply voltage coupled with architectural, logic style, circuit, and technology optimizations. An architecturally based scaling strategy is presented which indicates that the optimum voltage is much lower than that determined by other scaling considerations. This optimum is achieved by trading increased silicon area for reduced power consumption.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Low-power high-performance VLSI designAnalog and Mixed-Signal Circuit DesignParallel Computing and Optimization TechniquesCMOSComputer scienceElectronic engineeringDigital electronicsLow-power electronicsDynamic voltage scalingComputationPower (physics)VoltageScaling
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