NANODEVICES WITH PROGRAMMABLE LOGIC

Authors

  • O. S. Melnyk Nation Aviation University, Kyiv
  • I. I. Yurchyk Nation Aviation University, Kyiv

DOI:

https://doi.org/10.18372/1990-5548.62.14383

Keywords:

Quantum cellular automata, majority logic, computer-aided design

Abstract

The paper describes the computer-aided design of nanoelectronic circuits with programmable logic on quantum majority components is implemented. The single-electronic component base has the greatest influence on such basic parameters of modern computer systems as performance exceeding 10 THz, power consumption less than 1 nW and submicron dimensions. Methods of constructing arithmeticological computing devices of combinational and sequential types, which realize almost complete system of logical functions both in majority and in Boolean bases, are offered. The design of reliable nanoelectronic circuits with programmable logic based on the technology of quantum automata has been described. While constructing majority circuits the interaction of Colomb forces using. The order of syntesis and programming of various types of arithmetic-logic nanodevices has been analyzed.

Author Biographies

O. S. Melnyk, Nation Aviation University, Kyiv

Faculty of Air Navigation, Electronics & Telecommunications

Candidate of Science (Engendering). Associate Professor

orcid.org/0000-0003-1072-5526

I. I. Yurchyk, Nation Aviation University, Kyiv

Faculty of Air Navigation, Electronics & Telecommunications

Student

References

N. I. Pakulov, V. F. Ukhanov, and P. N. Chernyshov, The majority principle of building reliable nodes and devices CVM. Moscow: Sov. radio, 1974, 184 p.

O. S. Melnyk and S. V. Tadavchyn, “Synthesis programmable nanoelectronik divaces,” Electronics and Control systems, vol. 1(35), pp. 89–94, 2013. https://doi.org/10.18372/1990-5548.35.5788.

K. Walus, “QCA Designer: A Rapid Design and Simulation Tool for QCA,” Internet journal of Nanotech. and appl., vol. 2, no. 1, pp. 1–7, 2005.

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Section

COMPUTER-AIDED DESIGN SYSTEMS