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Sequential circuit design using quantum-dot cellular automata

机译:使用量子点蜂窝自动机的顺序电路设计

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Quantum-Dot Cellular Automata (QCA) as technology is a promising candidate that has tremendous potential to replace CMOS due to its outstanding features such as low-power, extremely high density, fast operation speed. This paper presents a comprehensive research for design of sequential circuits using QCA. The study comprehends portrayal of D-type FF device in QCA as an embedded binary wire. Distinctive constraints and requirements for timing of sequential circuits in QCA are explored. An algorithm based on stretching of paths that takes into account the topological sorted order of vertices of directed acyclic graph is presented for assigning proper clock zones and matching clock delays. The S27 circuit from the ISCAS89 sequential benchmark set is considered as case study for implementation in multilayer QCA using the proposed algorithm.
机译:Quantum-Dot Cellular Automata(QCA)作为技术是一个有希望的候选者,由于其出色的功能,诸如低功耗,极高密度,快速运行速度,具有巨大的候选者。本文介绍了使用QCA设计顺序电路的全面研究。该研究理解QCA中D型FF器件的描绘为嵌入式二进制线。探讨了QCA中顺序电路定时的独特约束和要求。基于考虑指向非循环图表的顶点的拓扑分类顺序的路径拉伸的算法用于分配适当的时钟区域和匹配时钟延迟。来自ISCAS89顺序基准集合的S27电路被认为是使用该算法在多层QCA中实现的案例研究。

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