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2016 | OriginalPaper | Buchkapitel

Design of Ripple Carry Adder Using 2-Dimensional 2-Dot 1-Electron Quantum-Dot Cellular Automata

verfasst von : Kakali Datta, Debarka Mukhopadhyay, Paramartha Dutta

Erschienen in: Information Systems Design and Intelligent Applications

Verlag: Springer India

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Abstract

Quantum-Dot Cellular Automata or QCA is an important name among the emerging technologies in the nanotechnology domain as it overcomes the serious technical limitations of CMOS. In this article, we have first designed a full adder using two-dimensional two-dot one-electron QCA cells. Then we have used this full adder to design a ripple carry adder. Finally, we have discussed the issues related to energy and power needed to drive the proposed architecture.

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Literatur
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Zurück zum Zitat Debarka Mukhopadhyay, Sourav Dinda, Paramartha Dutta: Designing and Implementation of Quantum Cellular Automata 2:1 Multiplexer Circuit, International Journal of Computer Applications, 25, 1, 21–24, (2011). Debarka Mukhopadhyay, Sourav Dinda, Paramartha Dutta: Designing and Implementation of Quantum Cellular Automata 2:1 Multiplexer Circuit, International Journal of Computer Applications, 25, 1, 21–24, (2011).
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Zurück zum Zitat Paramartha Dutta, Debarka Mukhopadhyay: Quantum Cellular Automata based Novel unit Reversible Multiplexer, Advanced Scientific Publishers, Advanced Science Letters, 5, 163–168 (2012). Paramartha Dutta, Debarka Mukhopadhyay: Quantum Cellular Automata based Novel unit Reversible Multiplexer, Advanced Scientific Publishers, Advanced Science Letters, 5, 163–168 (2012).
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Zurück zum Zitat K. Datta, D. Mukhopadhyay, P. Dutta: Design of n-to-2n Decoder using 2-Dimensional 2-Dot 1-Electron Quantum Cellular Automata, National Conference on Computing, Communication and Information Processing. Excellent Publishing House, 2015, pp. 7791 (2015). K. Datta, D. Mukhopadhyay, P. Dutta: Design of n-to-2n Decoder using 2-Dimensional 2-Dot 1-Electron Quantum Cellular Automata, National Conference on Computing, Communication and Information Processing. Excellent Publishing House, 2015, pp. 7791 (2015).
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Zurück zum Zitat M. Ghosh, D. Mukhopadhyay, P. Dutta: A 2 dot 1 electron quantum cellular automata based parallel memory, Information Systems Design and Intelligent Applications, ser. Advances in Intelligent Systems and Computing. Springer India, 2015, vol. 339, pp. 627–636 (2015). M. Ghosh, D. Mukhopadhyay, P. Dutta: A 2 dot 1 electron quantum cellular automata based parallel memory, Information Systems Design and Intelligent Applications, ser. Advances in Intelligent Systems and Computing. Springer India, 2015, vol. 339, pp. 627–636 (2015).
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Zurück zum Zitat D. Mukhopadhyay, P. Dutta: A Study on Energy Optimized 4 Dot 2 Electron two dimensional Quantum Dot Cellular Automata Logical Reversible Flipflops, Microelectronics Journal, vol. 46, pp. 519–530 (2015). D. Mukhopadhyay, P. Dutta: A Study on Energy Optimized 4 Dot 2 Electron two dimensional Quantum Dot Cellular Automata Logical Reversible Flipflops, Microelectronics Journal, vol. 46, pp. 519–530 (2015).
Metadaten
Titel
Design of Ripple Carry Adder Using 2-Dimensional 2-Dot 1-Electron Quantum-Dot Cellular Automata
verfasst von
Kakali Datta
Debarka Mukhopadhyay
Paramartha Dutta
Copyright-Jahr
2016
Verlag
Springer India
DOI
https://doi.org/10.1007/978-81-322-2755-7_27

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