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A novel design of quantum dot cellular automata 5-input majority gate with some physical proofs

机译:量子点元胞自动机5输入多数门的新颖设计及一些物理证明

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摘要

In a very fast growth of very large scale integration (VLSI) technology, it is the demand and necessity of time to achieve a reliable design with low power consumption. The quantum dot cellular automata (QCA), due to its small size, very high switching speed and ultra-low power consumption, can be an alternative for CMOS VLSI technology at nano-scale level. A novel 5-input majority gate for QCA is proposed in this paper which is suitable for designing QCA circuits in a simple and symmetric manner. Based on it, we have designed a full adder with some physical proofs provided for the functions of Boolean techniques to verify the functionality of the proposed devices properly. For computer simulations analysis, functionality of full adder has been checked using the QCA Designer tool. Both simulation results and physical proofs confirm the usefulness of our proposed gate design for designing any digital circuit.
机译:随着超大规模集成(VLSI)技术的飞速发展,实现具有低功耗的可靠设计是时间的需求和必要。量子点元胞自动机(QCA)由于其体积小,切换速度极高和超低功耗而成为纳米级CMOS VLSI技术的替代产品。本文提出了一种新颖的用于QCA的5输入多数门,适用于以简单和对称的方式设计QCA电路。基于此,我们设计了一个完整的加法器,并为布尔技术的功能提供了一些物理证明,以正确验证所提出设备的功能。对于计算机仿真分析,已使用QCA Designer工具检查了全加器的功能。仿真结果和物理证明均证实了我们提出的门设计对设计任何数字电路的有用性。

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