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A low-power static dual edge-triggered flip-flop using an output-controlled discharge configuration
Conference proceeding

A low-power static dual edge-triggered flip-flop using an output-controlled discharge configuration

M.W. Phyu, W.L. Goh, K.S. Yeo and IEEE
2005 IEEE International Symposium on Circuits and Systems (ISCAS), pp.2429-2432 Vol. 3
2005

Abstract

Buffer storage Circuit simulation Clocks CMOS technology Delay Energy consumption Flip-flops Frequency Latches Pulse generation
The performance of static CMOS circuits is superior in terms of power consumption and glitch reduction to dynamic circuits when the fan-in is small. We propose a new static dual edge-triggered flip-flop that incorporates no precharging and conditional discharging to reduce the switching activity at the internal node efficiently. Hence, the power dissipation is very much reduced. Based on simulation results derived from 0.18-/spl mu/m CMOS technology, our proposed flip-flop consumes the least power regardless of the input data activity.

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