2005Unpublished venueRequires access

Multiplexer-Based Architecture for High-Density, Low-Power Gate Arrays

R J Landers, S.S. Mahant-Shetti

Open publisher page 3 citations

Abstract

This paper presents a novel architecture that provides higher density and lower power dissipation than conventional basecells. The layout of transistors in this small basecell allows the efficient construction of multiplexers with minimal use of programmable layers. The multiplexer can be used to create any 2 input and some 3 input functions in one basecell. Internal fanout, rather than typical output load, defines the size of driver and multiplexer transistors, which can be independently tailored for the desired speed/area/power target. This basecell, which is well suited for implementing datapath elements, has been used to create a 16 × 16-b multiplier operating at 50 MHz in 314 500 μm 2 in 0.6 μm technology

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What this paper is about

This paper presents a novel architecture that provides higher density and lower power dissipation than conventional basecells. The layout of transistors in this small basecell allows the efficient construction of multiplexers with minimal use of programmable layers. The multiplexer can be used to create any 2 input and some 3 input functions in one basecell. Internal fanout, rather than typical output load, defines the size of driver and multiplexer transistors, which can be independently tailored for the desired speed/area/power target. This basecell, which is well suited for implementing datapath elements, has been used to create a 16 × 16-b multiplier operating at 50 MHz in 314 500 μm 2 in 0.6 μm technology

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Available abstract

This paper presents a novel architecture that provides higher density and lower power dissipation than conventional basecells. The layout of transistors in this small basecell allows the efficient construction of multiplexers with minimal use of programmable layers. The multiplexer can be used to create any 2 input and some 3 input functions in one basecell. Internal fanout, rather than typical output load, defines the size of driver and multiplexer transistors, which can be independently tailored for the desired speed/area/power target. This basecell, which is well suited for implementing datapath elements, has been used to create a 16 × 16-b multiplier operating at 50 MHz in 314 500 μm 2 in 0.6 μm technology

Key concepts: Multiplexer, Datapath, Dissipation, Multiplier (economics), Computer science, Transistor, Multiplexing, Electronic engineering

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