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An efficient Design of three-input XOR gate in QCA technology

机译:QCA技术三输入XOR门的高效设计

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Recently, Low power and reduced heat dissipation are an increasing demand for digital systems. Quantum Dot Cellular Automata (QCA) is a future generation solution based on nanotechnology for the digital systems. The QCA systems have advantages like the small size, ultralow power consumption and high switching frequency. The present research aims at introducing a novel three-input XOR gate containing 12 cells. The energy dissipation analysis of the proposed gate is verified using three different energy levels ($gamma= 0.5 E_{k}, gamma=1.0, E_{k}$ and $gamma=1.5 E_{k}$) at $T=2$ Kelvin temperature. The results obtained using the QCADesigner reliable simulation tool demonstrate the superiority of the presented structure over existing designs by taking the cell numbers used, the area occupied, the delay and energy dissipation as design metrics.
机译:最近,低功耗和减少的散热是对数字系统的越来越大。量子点蜂窝自动机(QCA)是基于数字系统纳米技术的未来发电解决方案。 QCA系统具有较小尺寸,超级功耗和高开关频率的优点。本研究旨在引入包含12个细胞的新型三输入XOR栅极。拟议门的能量耗散分析使用三种不同的能量水平来验证( $ gamma = 0.5 e_ {k}, gamma = 1.0, e_ {k} $ $ gamma = 1.5 e_ {k} $ ) 在 $ t = 2 $ 开尔文温度。使用QCaSeigner可靠的仿真工具获得的结果证明了通过采用所使用的细胞编号,占用的区域,延迟和能量耗散作为设计度量来证明所呈现的结构的优越性。

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