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Performance estimation of conventional and reversible logic circuits using QCA implementation platform

机译:使用QCA实现平台的常规和可逆逻辑电路的性能评估

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The size of complementary metal oxide semiconductor (CMOS) transistor keep shrinking to increase the density on chip in accordance with Moore's Law [1]. The scaling affect the device performance due to constraints like heat dissipation and power consumption [3], further scaling would hit the physical limitation [16]. Effortshave been made to come up with the new device alternative to CMOS, to continually improve the development of electronic device. Quantum Dot Cellular Automata (QCA) technology is one such promising alternative, that can overcome the scaling issue and offer fast computation performance, high density, and low power consumption. Another emerging technology that can help in reducing heat dissipation is reversible logic. This paper proposes the idea of implementing reversible combinational circuits and square computation circuits using QCA architecture. The designs are captured and simulated using QCA Designer software, performance of each designs namely area and energy are compared for conventional and Reversible QCA design.
机译:根据摩尔定律[1],互补金属氧化物半导体(CMOS)晶体管的尺寸不断缩小,以增加芯片上的密度。由于散热和功耗等限制因素,缩放会影响设备性能[3],进一步的缩放会遇到物理限制[16]。已经做出了努力来提出可替代CMOS的新器件,以不断改进电子器件的开发。量子点元胞自动机(QCA)技术是一种很有前途的替代方法,它可以克服缩放问题,并提供快速的计算性能,高密度和低功耗。可帮助减少散热的另一项新兴技术是可逆逻辑。本文提出了使用QCA架构实现可逆组合电路和平方计算电路的想法。使用QCA Designer软件捕获和仿真设计,比较传统设计和可逆QCA设计的每种设计的性能,即面积和能量。

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