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Efficient QCA Exclusive-or and Multiplexer Circuits Based on a Nanoelectronic-Compatible Designing Approach

机译:基于纳米电子兼容设计方法的高效QCA异或多路复用器电路

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Quantum-dot cellular automata (QCA) are a transistorless computation approach which encodes binary information via configuration of charges among quantum dots. The fundamental QCA logic primitives are majority and inverter gates which can be utilized to design various QCA circuits. This study presents a novel approach to designing efficient QCA-based circuits based on Boolean expressions achieved from reconfiguration of five-input and three-input majority gates. Whereas the multiplexer and Exclusive-or are the most important fundamental logical circuits in digital systems, designing efficient and single layer structures without coplanar cross-over wiring is advantageous in QCA technology. In order to demonstrate the efficiency and usefulness of the proposed approach, simple and dense multiplexer and Exclusive-or structures are implemented. The proposed designs have significant improvement in terms of area, complexity, latency, and gate count in comparison to previous designs. The correct logical functionalities of presented structures have been authenticated using QCA designer tool.
机译:量子点元胞自动机(QCA)是一种无晶体管的计算方法,可通过量子点之间的电荷配置对二进制信息进行编码。 QCA基本逻辑原语是多数和反相器门,可用于设计各种QCA电路。这项研究提出了一种新的方法来设计基于QCA的高效电路,该电路基于从五输入和三输入多数门的重新配置获得的布尔表达式。尽管复用器和“异或”是数字系统中最重要的基本逻辑电路,但在QCA技术中,设计没有共面交叉布线的高效单层结构是有利的。为了证明所提出方法的效率和实用性,实现了简单密集的多路复用器和“异或”结构。与以前的设计相比,拟议的设计在面积,复杂性,等待时间和门数方面都有显着改善。所提供结构的正确逻辑功能已使用QCA设计器工具进行了身份验证。

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