2008•IEEE Transactions on Circuits & Systems II Express BriefsRequires access

Fast Low-Cost Implementation of Single-Clock-Cycle Binary Comparator

Stefania Perri, Pasquale Corsonello

Open publisher page 50 citations

Abstract

This paper presents a new efficient architecture for the design of fast low-cost single-clock-cycle binary comparators. The proposed 64-bit circuit requires only 1051 transistors and, when implemented by using the ST 90-nm 1-V CMOS technology, it exhibits a running frequency higher than 4 GHz with an average power dissipation of only ~ 4 mW. Comparison with the fastest comparator known in the literature demonstrates that, at a parity of technology used, the novel architecture is ~ 12% faster and requires ~ 69% less transistors.

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What this paper is about

This paper presents a new efficient architecture for the design of fast low-cost single-clock-cycle binary comparators. The proposed 64-bit circuit requires only 1051 transistors and, when implemented by using the ST 90-nm 1-V CMOS technology, it exhibits a running frequency higher than 4 GHz with an average power dissipation of only ~ 4 mW. Comparison with the fastest comparator known in the literature demonstrates that, at a parity of technology used, the novel architecture is ~ 12% faster and requires ~ 69% less transistors.

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Available abstract

This paper presents a new efficient architecture for the design of fast low-cost single-clock-cycle binary comparators. The proposed 64-bit circuit requires only 1051 transistors and, when implemented by using the ST 90-nm 1-V CMOS technology, it exhibits a running frequency higher than 4 GHz with an average power dissipation of only ~ 4 mW. Comparison with the fastest comparator known in the literature demonstrates that, at a parity of technology used, the novel architecture is ~ 12% faster and requires ~ 69% less transistors.

Key concepts: Comparator, CMOS, Dissipation, Clock rate, Binary number, Computer science, Transistor, Electronic engineering

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