IEEE Transactions on Circuits & Systems II Express Briefs · 2008 · 50 citations · 13 references
Low-power ElectronicsElectrical EngineeringEngineeringVlsi DesignCadence EnvironmentClock RecoveryPower Optimization (Eda)Computer EngineeringComputer ArchitectureLinear-feedback Shift RegistersDigital Circuit DesignPower ElectronicsGated-clock CircuitMicroelectronicsPower ConsumptionPower-aware Design
In this paper, we will present a method to reduce the power consumption of the popular linear feedback shift register. The proposed scheme is based on the gated clock design approach and it can offer a significant power reduction, depending on technological characteristics of the employed gates. Moreover, the analytical condition that must be satisfied to achieve a power reduction of the gated-clock circuit has been found. Theoretical analysis was validated through many transistor-level SPECTRE simulations in CADENCE environment by using the 0.35- mum digital standard cells technology supplied by AMS. Simulation results have shown a power reduction of about 10% with a mean error of about 3% with respect to theoretical derivations.
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