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Static hazard elimination for a logical circuit using quantum dot cellular automata

机译:使用量子点蜂窝自动机的逻辑电路消除静态危险消除

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摘要

Quantum dot cellular automata (QCA) is an upcoming nano-technology for its high speed and low power operation in the field of nano-science and nano-electronics. As QCA overcomes the drawbacks of CMOS technology, it has appreciable applications in quantum computation. There are thousands of designs of different logical circuits using QCA but there is no hazard free design of the logical circuits in the field of QCA. In a circuit, hazards always produce an unpredictable output which can be avoided. In this paper, both hazardous and hazard-free asynchronous sequential circuits are considered and compared in terms of kink energy. It is shown that hazard free asynchronous circuit performs better in terms of kink energy in the field of QCA.
机译:量子点蜂窝自动机(QCA)是即将到来的纳米科学和纳米电子技术高速和低功率运行的纳米技术。 随着QCA克服CMOS技术的缺点,它在量子计算中具有明显的应用。 使用QCA有数以千计的不同逻辑电路的设计,但QCA领域没有危险设计逻辑电路。 在电路中,危险总是产生不可预测的输出,可以避免。 在本文中,在扭结能量方面被考虑和比较了危险和危险的异步顺序电路。 结果表明,在QCA领域的扭结能量方面,危险自由异步电路更好地执行更好。

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