2009Unpublished venueRequires access

Adder circuits with transistors using independently controlled gates

Marcus Weis, Andrzej Pfitzner, Dominik Kasprowicz, Rainer Emling, Wojciech P. Maly, Doris Schmitt‐Landsiedel

Open publisher page 15 citations

Abstract

Circuits with transistors using independently controlled gates have been proposed to reduce the number of transistors and to increase the logic density per area. So far only small building blocks have been presented. This paper investigates for the first time the use of independent double gate transistors in 16 bit ripple carry and parallel prefix adders. New adder circuits and the trade-off between area reduction, delay and power consumption are presented. Area and transistor count reduction by one third can be achieved.

About this research paper

What this paper is about

Circuits with transistors using independently controlled gates have been proposed to reduce the number of transistors and to increase the logic density per area. So far only small building blocks have been presented. This paper investigates for the first time the use of independent double gate transistors in 16 bit ripple carry and parallel prefix adders. New adder circuits and the trade-off between area reduction, delay and power consumption are presented. Area and transistor count reduction by one third can be achieved.

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OpenAlex reports 15 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

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Method / approach

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Available abstract

Circuits with transistors using independently controlled gates have been proposed to reduce the number of transistors and to increase the logic density per area. So far only small building blocks have been presented. This paper investigates for the first time the use of independent double gate transistors in 16 bit ripple carry and parallel prefix adders. New adder circuits and the trade-off between area reduction, delay and power consumption are presented. Area and transistor count reduction by one third can be achieved.

Key concepts: Adder, Transistor count, Transistor, Electronic circuit, Pass transistor logic, Logic gate, Computer science, Electronic engineering

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