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Average output polarization dataset for signifying the temperature influence for QCA designed reversible logic circuits.


ABSTRACT: Quantum-dot cellular automata (QCA) as nanotechnology is a pledging contestant that has incredible prospective to substitute complementary metal-oxide-semiconductor (CMOS) because of its superior structures such as intensely high device thickness, minimal power depletion with rapid operation momentum. In this study, the dataset of average output polarization (AOP) for fundamental reversible logic circuits is organized as presented in (Abdullah-Al-Shafi and Bahar, 2017; Bahar et al., 2016; Abdullah-Al-Shafi et al., 2015; Abdullah-Al-Shafi, 2016) [1-4]. QCADesigner version 2.0.3 has been utilized to survey the AOP of reversible circuits at separate temperature point in Kelvin (K) unit.

SUBMITTER: Abdullah-Al-Shafi M 

PROVIDER: S-EPMC5993001 | biostudies-literature | 2018 Aug

REPOSITORIES: biostudies-literature

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Average output polarization dataset for signifying the temperature influence for QCA designed reversible logic circuits.

Abdullah-Al-Shafi Md M   Bahar Ali Newaz AN   Bhuiyan Mohammad Maksudur Rahman MMR   Shamim S M SM   Ahmed Kawser K  

Data in brief 20180509


Quantum-dot cellular automata (QCA) as nanotechnology is a pledging contestant that has incredible prospective to substitute complementary metal-oxide-semiconductor (CMOS) because of its superior structures such as intensely high device thickness, minimal power depletion with rapid operation momentum. In this study, the dataset of average output polarization (AOP) for fundamental reversible logic circuits is organized as presented in (Abdullah-Al-Shafi and Bahar, 2017; Bahar et al., 2016; Abdull  ...[more]

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