A Novel Enhanced-Majority-Voter Universal Gate in Quantum Dot Cellular Automata with Energy Dissipation Analysis

The Quantum effects instigate to dominate device recital when transistor geometries are abridged. Sometimes, transistors refrain to have the properties that mark them beneficial for computational designs. With the intention of keeping pace with Moore’s Law, diverse assessing elements must be develop...

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Main Authors: S. Umira, R. Qadri, Z.A. Bangi, M. Tariq Banday, G. Mohiuddin Bhat
Format: Article
Language:English
Published: Sumy State University 2017-06-01
Series:Журнал нано- та електронної фізики
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Online Access:http://jnep.sumdu.edu.ua:8080/download/numbers/2017/3/articles/jnep_V9_03034.pdf
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author S. Umira
R. Qadri
Z.A. Bangi
M. Tariq Banday
G. Mohiuddin Bhat
author_facet S. Umira
R. Qadri
Z.A. Bangi
M. Tariq Banday
G. Mohiuddin Bhat
author_sort S. Umira
collection DOAJ
description The Quantum effects instigate to dominate device recital when transistor geometries are abridged. Sometimes, transistors refrain to have the properties that mark them beneficial for computational designs. With the intention of keeping pace with Moore’s Law, diverse assessing elements must be developed. An alternative prototype to transistor-based logic is Quantum dot cellular automata. This technology has an enormous capability to provide ultra-high density and extremely low power dissipation. These features allow us to develop high-speed, small and high performance circuits for computation and integration. Architectures made in quantum dot cellular automata have been designed by exploiting either the inverter and the majority gate or universal gates like And-Or-Inverter, NAND-NOR-Inverter, FNZ and AIN. A new universal logic gate called as Enhanced Majority Voter Gate is presented in this paper which enjoys better performance with respect to previously announced universal gates. Design of several logic utilities via the proposed Enhanced Majority Voter Gate is also demonstrated. The functionality and power analysis of this universal gate is verified by the QCA Designer and QCA Pro simulation tool where a comprehensive comparison with the hitherto stated designs confirms the reliable performance of the proposed designs. The proposed Enhanced Majority Voter Gate helps us in framing various cryptographic and security based circuits in Quantum dot cellular automata.
format Article
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issn 2077-6772
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publisher Sumy State University
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series Журнал нано- та електронної фізики
spelling doaj-art-00a3dc3cd6544fb596a4682c62e911c12025-08-20T03:16:51ZengSumy State UniversityЖурнал нано- та електронної фізики2077-67722017-06-019303034-103034-710.21272/jnep.9(3).03034A Novel Enhanced-Majority-Voter Universal Gate in Quantum Dot Cellular Automata with Energy Dissipation AnalysisS. Umira0R. Qadri1Z.A. Bangi2M. Tariq Banday3G. Mohiuddin Bhat4Department of Electronics and IT, University of Kashmir, (J&K), India-190006Department of Electronics and IT, University of Kashmir, (J&K), India-190006Department of Electronics and IT, University of Kashmir, (J&K), India-190006Department of Electronics and IT, University of Kashmir, (J&K), India-190006Faculty of Applied Science and Technology, University of Kashmir, (J&K), India-190006The Quantum effects instigate to dominate device recital when transistor geometries are abridged. Sometimes, transistors refrain to have the properties that mark them beneficial for computational designs. With the intention of keeping pace with Moore’s Law, diverse assessing elements must be developed. An alternative prototype to transistor-based logic is Quantum dot cellular automata. This technology has an enormous capability to provide ultra-high density and extremely low power dissipation. These features allow us to develop high-speed, small and high performance circuits for computation and integration. Architectures made in quantum dot cellular automata have been designed by exploiting either the inverter and the majority gate or universal gates like And-Or-Inverter, NAND-NOR-Inverter, FNZ and AIN. A new universal logic gate called as Enhanced Majority Voter Gate is presented in this paper which enjoys better performance with respect to previously announced universal gates. Design of several logic utilities via the proposed Enhanced Majority Voter Gate is also demonstrated. The functionality and power analysis of this universal gate is verified by the QCA Designer and QCA Pro simulation tool where a comprehensive comparison with the hitherto stated designs confirms the reliable performance of the proposed designs. The proposed Enhanced Majority Voter Gate helps us in framing various cryptographic and security based circuits in Quantum dot cellular automata.http://jnep.sumdu.edu.ua:8080/download/numbers/2017/3/articles/jnep_V9_03034.pdfNanotechnologyNovelQuantum-dot Cellular AutomataUniversalPowe
spellingShingle S. Umira
R. Qadri
Z.A. Bangi
M. Tariq Banday
G. Mohiuddin Bhat
A Novel Enhanced-Majority-Voter Universal Gate in Quantum Dot Cellular Automata with Energy Dissipation Analysis
Журнал нано- та електронної фізики
Nanotechnology
Novel
Quantum-dot Cellular Automata
Universal
Powe
title A Novel Enhanced-Majority-Voter Universal Gate in Quantum Dot Cellular Automata with Energy Dissipation Analysis
title_full A Novel Enhanced-Majority-Voter Universal Gate in Quantum Dot Cellular Automata with Energy Dissipation Analysis
title_fullStr A Novel Enhanced-Majority-Voter Universal Gate in Quantum Dot Cellular Automata with Energy Dissipation Analysis
title_full_unstemmed A Novel Enhanced-Majority-Voter Universal Gate in Quantum Dot Cellular Automata with Energy Dissipation Analysis
title_short A Novel Enhanced-Majority-Voter Universal Gate in Quantum Dot Cellular Automata with Energy Dissipation Analysis
title_sort novel enhanced majority voter universal gate in quantum dot cellular automata with energy dissipation analysis
topic Nanotechnology
Novel
Quantum-dot Cellular Automata
Universal
Powe
url http://jnep.sumdu.edu.ua:8080/download/numbers/2017/3/articles/jnep_V9_03034.pdf
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