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Minority Gate Oriented Logic Design with Quantum-Dot Cellular Automata

机译:带有量子点元胞自动机的面向少数族裔门的逻辑设计

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This paper presents novel combinational logic designs with plus-shaped quantum-dot cellular automata (QCA) using minority gate as the fundamental building block. Present CMOS technology of VLSI design is fast approaching its fundamental limit, and researchers are looking for a nano-scale technology for future Ics in order to continue the pace of circuit miniaturization predicted by Moore's law even beyond 2016. QCA is considered to be a promising technology in this regard. This paper provides the fundamentals of QCA followed by the proposed QCA structure realizing a minority gate, given by the Boolean expression m (x_1 x_2, x_3) = x_1 .x_2 + x_2 .x_3 + x_3 .x_1. Universality of minority gate is established, and minority gate oriented design principles are provided. Minority gate oriented designs for XOR and full adder are presented. Simulation results show the effectiveness of the proposed designs.
机译:本文提出了新颖的组合逻辑设计,其中以少数族裔门为基本构建块的加号量子点元胞自动机(QCA)。当前VLSI设计的CMOS技术正快速接近其基本极限,研究人员正在寻找用于未来Ics的纳米级技术,以延续摩尔定律所预测的电路小型化的步伐,甚至在2016年以后。QCA被认为是有前途的在这方面的技术。本文提供了QCA的基础知识,随后提出了实现少数门的QCA结构,该结构由布尔表达式m(x_1 x_2,x_3)= x_1 .x_2 + x_2 .x_3 + x_3 .x_1给出。建立少数族裔门的通用性,并提供面向少数族裔门的设计原则。提出了面向异或门和全加法器的面向少数民族门的设计。仿真结果表明了所提出设计的有效性。

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