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A Full Current-mode Sense Amplifier for Low-power SRAM Applications
Conference proceeding

A Full Current-mode Sense Amplifier for Low-power SRAM Applications

Anh-Tuan Do, Jeremy Low Yung Shern, Zhi-Hui Kong, Kiat-Seng Yeo, Joshua Low Yung Lih and IEEE
APCCAS 2008-2008 IEEE Asia Pacific Conference on Circuits and Systems, pp.1402-1405
01/01/2008

Abstract

Computer Science Computer Science, Hardware & Architecture Computer Science, Information Systems Engineering Engineering, Electrical & Electronic Science & Technology Technology
A full current-mode sense amplifier is presented. It extensively utilizes the cross-coupled inverters for both local and global sensing stages, hence achieving ultra low-power and ultra high-speed properties simultaneously. Its sensing delay and power consumption are almost independent of the bit- and data-line capacitances. Extensive pre-layout simulation results based on a 1.8 V/0.18 mu m CMOS technology from Chartered Semiconductor Manufacturing Ltd. (CHRT) have verified that the new SA outperforms the best published designs with 64% and 45% speed and power consumption improvements respectively. Furthermore, the new design can operate down to a supply voltage of 1 V. These attributes of the proposed SA make it judiciously appropriate for the use in the contemporary high-complexity systems, which continually crave for low-power and high-speed characteristics.

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