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Novel Multi-logic gates using Quantum Dot Cellular Automata with energy dissipation analysis

机译:使用量子点元胞自动机进行能量耗散分析的新型多逻辑门

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Quantum dot Cellular Automata (QCA) poses novel computing paradigm to design Nano electronic circuits with favorable proximity intended towards high speed, energy efficient and compact devices. Hence this emerges as a viable beyond CMOS (complementary metal oxide semiconductor) Technology. Many literatures are based on 3 input-1 output majority gate logic, which primarily focuses to reduce the number of cells in single individual logic gates utilized. In this work we are extending our proposed multi-logic gates with different configurations to produce multiple logic functions with the same inputs of individual logic gates and also performing energy dissipation analysis. These gates are very useful since this enables the design of efficient smaller circuits. Proposed multi-logic design consumes less area than that of individual gates. The design is simulated in QCA Designer 2.0 and found in accordance with the logic. An analysis to explore the power dissipated by multi-logic gates is carried out by QCA Designer-E. The area and power efficiency of these multi-logic gates are compared with the previous best designed individual gates. Superior results are obtained and reported here.
机译:量子点元胞自动机(QCA)提出了新颖的计算范式,以设计具有良好接近度的纳米电子电路,旨在实现高速,节能和紧凑的设备。因此,这超越了CMOS(互补金属氧化物半导体)技术成为可行的方法。许多文献都基于3输入1输出多数门逻辑,其主要重点是减少所使用的单个逻辑门中的单元数。在这项工作中,我们将扩展我们提出的具有不同配置的多逻辑门,以利用单个逻辑门的相同输入产生多个逻辑功能,并执行能耗分析。这些门非常有用,因为这可以设计出效率更高的小型电路。拟议的多逻辑设计所消耗的面积比单个门所占用的面积小。该设计在QCA Designer 2.0中进行了仿真,并根据逻辑进行了发现。 QCA Designer-E进行了分析以探索多逻辑门耗散功率的分析。将这些多逻辑门的面积和功率效率与以前最佳设计的单个门进行了比较。获得了出色的结果,并在此处报告。

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