Analysis of the radiation behavior of digital devices by the method of scalar comparison indices within Brouwer automaton models
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Abstract
A new class of parameter-ditch logical models of radiation in digital integrated circuits (ICs), reflecting the nature of the work-ability violation by irradiation and the relative contribution of the individual elements that make up the test object
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References
R. Saleh and A. Newton, Mixed-mode Simulation, Kluwer: Academic Publisher, 1990, p. 248.
V. Melikyan, D. Grigoryan, A. Stepanyan, and N. Melikyan, “Fuzzy Brouwer automatonCombination digital devices withstatic and dynamic criterion parameters”, Bulletin of the State Engineering University of Armenia, vol. 2, no. 12, pp. 59–65, 2009.
J. Timothy, Fuzzy Logic with Engineering Applications, 2nd ed. Wiley, 2004, p. 114.
E. Astvatsaturyan, V. Belyaev, A. Gurariy, and I. Kolontai, Logical modeling of relaxation processes in digitaldevices, Moscow: Energoatomizdat, 1990, pp. 58–65.