Design and Improvement of a Reversible SISO Shift Register with Quantum dot Cellular Automata

Abstract Quantum dot cellular automata is one of the new nanotechnologies in computing systems having more potential for increasing speed, reducing the size and reducing power consumption in comparison with the current technology based on transistors. In this paper, we propose a novel reversible...

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Bibliographic Details
Main Authors: Israa Salmam, Ahmed Azeez
Format: Article
Language:English
Published: University of Misan College of Engineering 2024-12-01
Series:Misan Journal of Engineering Sciences
Subjects:
Online Access:https://uomisan.edu.iq/eng/mjes/index.php/eng/article/view/111
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Summary:Abstract Quantum dot cellular automata is one of the new nanotechnologies in computing systems having more potential for increasing speed, reducing the size and reducing power consumption in comparison with the current technology based on transistors. In this paper, we propose a novel reversible SISO shift register based on an optimized reversible D flip flop scheme in which the sequence of the flip flops is utilized to improve the evaluation criteria. The simulation results show that in comparison with previous works, the proposed reversible SISO shift circuits has been improved in terms of cell number, delay and area. In this design, the number of cells equals to 89, the area equals to 0.08 square micrometers, the delay is negligible, the number of inverter gates equals to three and the number of majority gates is eight.
ISSN:2957-4242
2957-4250