2021Unpublished venueRequires access

Design and Analysis of 8-bit ripple Carry Adder using nine Transistor Full Adder

G. R. Padmini, O. Rajesh, K. Raghu, N. Megha Sree, C. Apurva, K. Saikumar

Open publisher page 54 citations

Abstract

This paper uses a nine-transistor full adder model to design an eight-bit ripple carry adder for less power consumption. The conventional full adder design consists of 28 transistors which constitute high power consumption. Decreasing the transistor count decreases the power consumption in the circuit. A single bit full adder using a nine-transistor is implemented and using this adder, an eight-bit ripple carries adder is designed. A conventional CMOS adder, both single bit and 8-bit ripple carry adder remain also designed to compare the power outputs. Microwind-2.6a and DSCH 2.6 are used to acquire the power outputs of each circuit. To conclude, power comparisons for both single and eight-bit adders using the 9-transistor and conventional CMOS models are made.

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What this paper is about

This paper uses a nine-transistor full adder model to design an eight-bit ripple carry adder for less power consumption. The conventional full adder design consists of 28 transistors which constitute high power consumption. Decreasing the transistor count decreases the power consumption in the circuit. A single bit full adder using a nine-transistor is implemented and using this adder, an eight-bit ripple carries adder is designed. A conventional CMOS adder, both single bit and 8-bit ripple carry adder remain also designed to compare the power outputs. Microwind-2.6a and DSCH 2.6 are used to acquire the power outputs of each circuit. To conclude, power comparisons for both single and eight-bit adders using the 9-transistor and conventional CMOS models are made.

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Available abstract

This paper uses a nine-transistor full adder model to design an eight-bit ripple carry adder for less power consumption. The conventional full adder design consists of 28 transistors which constitute high power consumption. Decreasing the transistor count decreases the power consumption in the circuit. A single bit full adder using a nine-transistor is implemented and using this adder, an eight-bit ripple carries adder is designed. A conventional CMOS adder, both single bit and 8-bit ripple carry adder remain also designed to compare the power outputs. Microwind-2.6a and DSCH 2.6 are used to acquire the power outputs of each circuit. To conclude, power comparisons for both single and eight-bit adders using the 9-transistor and conventional CMOS models are made.

Key concepts: Adder, Transistor count, Serial binary adder, Transistor, Carry-save adder, CMOS, Computer science, Electronic engineering

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Design and Analysis of 8-bit ripple Carry Adder using nine Transistor Full Adder — Research Paper | ScholarLens