State-of-art design: data selectors using quantum-dot cellular automata
Menda Sreevani (),
Vallabhuni Vijay (),
Kancharapu Chaitanya (),
Chelle Radhika (),
Nandi Manjula (),
D. Radha Krishna Koushik (),
B. Sai Venumadhav (),
T. Sai Jaideep (),
Chandra Shaker Pittala () and
Sadulla Shaik ()
Additional contact information
Menda Sreevani: Institute of Aeronautical Engineering
Vallabhuni Vijay: MLR Institute of Technology
Kancharapu Chaitanya: Vignan’s Institute of Information Technology (A)
Chelle Radhika: Institute of Aeronautical Engineering
Nandi Manjula: Institute of Aeronautical Engineering
D. Radha Krishna Koushik: Institute of Aeronautical Engineering
B. Sai Venumadhav: Institute of Aeronautical Engineering
T. Sai Jaideep: Institute of Aeronautical Engineering
Chandra Shaker Pittala: MLR Institute of Technology
Sadulla Shaik: KKR & KSR Institute of Technology and Sciences
International Journal of System Assurance Engineering and Management, 2024, vol. 15, issue 3, No 31, 1285-1293
Abstract:
Abstract The remedial and high-speed designs are implemented at the optimized performance through quantum-dot cellular automata (QCA). The prime reasons for using the QCA are its features and the adaptability of the software. Features of the QCA are speed, its less size, and power consumption, which is relatively more minor. Attracts the users and researchers to develop new technologies in CMOS. QCA comprises two most important blocks, which are helpful in Boolean functions and their designs. Furthermore, by implementing QCA, there is an easy option of importing gates and multiplexers for development purposes. QCA helps in the practical design of multiplexers through a quantum way of designing. In this designing process, cells and areas, latency are used. Moreover, these can also be seen in the output waveforms. Moreover, the QCA used multiplexer of 4:1 is built using the required specifications.
Keywords: Optimum multiplexer; Quantum-dot cellular automata; QCA (search for similar items in EconPapers)
Date: 2024
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DOI: 10.1007/s13198-023-02215-5
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