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New conditional sampling sense-amplifier-based flip-flop for high-performance and low-power application
Book chapter

New conditional sampling sense-amplifier-based flip-flop for high-performance and low-power application

Yeo-Kiat Seng, Wang-Ling Goh, Hoe-Gee Lim, Wenle Zhang and Kiat Seng Yeo
ISIC, International Symposium on Integrated Circuits, 2007, pp.228-231
WTI-Frankfurt-digital GmbH
01/01/2007

Abstract

bistabile Kippschaltung CMOS-Technik Elektronik geringe Verlustleistung komplementäre MOS-Schaltung Verknüpfungsschaltung Verlustleistung
In this paper a new sense-amplifier based flip-flop is proposed for high-performance and low power application. The proposed new design employs conditional techniques to create conditional sampling windows to eliminate redundant internal transitions. The proposed single edge-triggered D flip-flop is based on charted semiconductor 0.18-micrometer CMOS process. The proposed design shows a great reduction in power dissipation especially at lower data activity rate, with 50% reduction at 50% data activity and 25% less power at 25% data activity. The proposed new design obtained a reduction of 21% for its data-to-output delay and an overall improvement of 30% in the power-delay-product (PDP) when compared to the recently published low-power high performance differential conditional data mapping flip-flops. It also has lesser transistor count.

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