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Adder circuit design using quantum-dot cellular automata

机译:使用量子点元胞自动机的加法器电路设计

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In this discussion, we review quantum cellular automaton and base structures in QCA. We study full-adders having different number of gates performed until now. We also study QCA designer simulator with some design simulated using this software. Full-adders performed in QCA designer until now are of single and multi-layer types. In this research, we propose a one-bit one-layer full-adder with more efficiency in circuit performance. Through decreased number of cells, we managed to increase circuit performance velocity, and decrease space and expenses needed to produce it. The proposed circuit proved to have better efficiency. We conclude that the less number of cells we use in design of a full-adder, we obtain a full-adder with less delay, less space, less cost, more performance velocity, and on the whole, more efficiency.
机译:在此讨论中,我们回顾了QCA中的量子细胞自动机和基本结构。我们研究到现在为止具有不同门数的全加器。我们还将研究QCA设计器模拟器,并使用该软件模拟一些设计。到目前为止,在QCA Designer中执行的全加法器是单层和多层类型。在这项研究中,我们提出了一种具有更高电路性能效率的1位单层全加法器。通过减少单元数量,我们设法提高了电路性能速度,并减少了生产电路所需的空间和费用。所提出的电路被证明具有更好的效率。我们得出的结论是,我们在设计全加器时使用的单元数越少,我们获得的全加器具有更少的延迟,更少的空间,更少的成本,更高的性能速度以及总体上更高的效率。

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