A low power multiplexer based pass transistor logic full adder

In this paper, a high-speed low-power full adder design using multiplexer based pass transistor logic featuring full-swing output is proposed. The adder is designed and simulated using the industry standard 130 nm CMOS technology, at a supply voltage of 1.2 V. The obtained Power Delay Product (PDP)...

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Main Authors: Kamsani, Noor Ain, Thangasamy, Veeraiyah, Hashim, Shaiful Jahari, Yusoff, Zubaida, Bukhori, Muhammad Faiz, Hamidon, Mohd Nizar
Format: Conference or Workshop Item
Language:English
Published: IEEE 2015
Online Access:http://psasir.upm.edu.my/id/eprint/56112/1/A%20low%20power%20multiplexer%20based%20pass%20transistor%20logic%20full%20adder.pdf
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author Kamsani, Noor Ain
Thangasamy, Veeraiyah
Hashim, Shaiful Jahari
Yusoff, Zubaida
Bukhori, Muhammad Faiz
Hamidon, Mohd Nizar
author_facet Kamsani, Noor Ain
Thangasamy, Veeraiyah
Hashim, Shaiful Jahari
Yusoff, Zubaida
Bukhori, Muhammad Faiz
Hamidon, Mohd Nizar
author_sort Kamsani, Noor Ain
collection UPM
description In this paper, a high-speed low-power full adder design using multiplexer based pass transistor logic featuring full-swing output is proposed. The adder is designed and simulated using the industry standard 130 nm CMOS technology, at a supply voltage of 1.2 V. The obtained Power Delay Product (PDP) of its critical path is 29×10-18 J and its power consumption is 2.01μW. The proposed full adder is also capable to function at lower supply voltages of 0.4 V and 0.8 V without significant performance degradation. The proposed adder when cascaded in a 4-bit ripple carry adder configuration, its power, delay and PDP performance are better than the other adders making it suitable for larger arithmetic circuits.
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spelling upm.eprints-561122017-07-03T09:36:37Z http://psasir.upm.edu.my/id/eprint/56112/ A low power multiplexer based pass transistor logic full adder Kamsani, Noor Ain Thangasamy, Veeraiyah Hashim, Shaiful Jahari Yusoff, Zubaida Bukhori, Muhammad Faiz Hamidon, Mohd Nizar In this paper, a high-speed low-power full adder design using multiplexer based pass transistor logic featuring full-swing output is proposed. The adder is designed and simulated using the industry standard 130 nm CMOS technology, at a supply voltage of 1.2 V. The obtained Power Delay Product (PDP) of its critical path is 29×10-18 J and its power consumption is 2.01μW. The proposed full adder is also capable to function at lower supply voltages of 0.4 V and 0.8 V without significant performance degradation. The proposed adder when cascaded in a 4-bit ripple carry adder configuration, its power, delay and PDP performance are better than the other adders making it suitable for larger arithmetic circuits. IEEE 2015 Conference or Workshop Item PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/56112/1/A%20low%20power%20multiplexer%20based%20pass%20transistor%20logic%20full%20adder.pdf Kamsani, Noor Ain and Thangasamy, Veeraiyah and Hashim, Shaiful Jahari and Yusoff, Zubaida and Bukhori, Muhammad Faiz and Hamidon, Mohd Nizar (2015) A low power multiplexer based pass transistor logic full adder. In: 2015 IEEE Regional Symposium on Micro and Nano Electronics (RSM 2015), 19-21 Aug. 2015, Primula Beach Hotel, Kuala Terengganu. . 10.1109/RSM.2015.7354994
spellingShingle Kamsani, Noor Ain
Thangasamy, Veeraiyah
Hashim, Shaiful Jahari
Yusoff, Zubaida
Bukhori, Muhammad Faiz
Hamidon, Mohd Nizar
A low power multiplexer based pass transistor logic full adder
title A low power multiplexer based pass transistor logic full adder
title_full A low power multiplexer based pass transistor logic full adder
title_fullStr A low power multiplexer based pass transistor logic full adder
title_full_unstemmed A low power multiplexer based pass transistor logic full adder
title_short A low power multiplexer based pass transistor logic full adder
title_sort low power multiplexer based pass transistor logic full adder
url http://psasir.upm.edu.my/id/eprint/56112/1/A%20low%20power%20multiplexer%20based%20pass%20transistor%20logic%20full%20adder.pdf
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