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首页> 外文期刊>Journal of Low Power Electronics >An Innovative Low Power Full Adder Design in Nano Technology Based Quantum Dot Cellular Automata
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An Innovative Low Power Full Adder Design in Nano Technology Based Quantum Dot Cellular Automata

机译:基于纳米技术的量子点元胞自动机的创新低功耗全加法器设计

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This paper presents a novel approach for designing a Full Adder in Quantum Dot Cellular Automata (QCA) technique at nano-scale level utilizing very less no. of QCA cells. It is a promising first design of its type which can be taken as a base design for building an ultra-low power information generating systems like microprocessors. Quantum Dot cells are an artificial nano scale molecules which can pass the information without the need of current to flow into them. Any digital circuit can be fully realized using QCA cells. Comparison of the proposed approach is done with the previous approaches and realized, evaluated and tested for correctness using a QCA Designer tool, a simulation tool for QCA circuits, Version 2.0.3, which shows some superiority of the proposed approach over the previous approaches with approx. 90% reduction in total area and 87% reduction in total no. of cell counts with utilizing only 4 clock phases in the design.
机译:本文提出了一种新颖的方法,用于设计量子点元胞自动机(QCA)技术的纳米级全加法器,其使用的No很少。 QCA细胞。这是该类型的有前途的第一个设计,可以用作构建超低功耗信息生成系统(如微处理器)的基础设计。量子点细胞是一种人造的纳米级分子,可以传递信息,而无需电流流入其中。使用QCA单元可以完全实现任何数字电路。与之前的方法进行了比较,并使用QCA Designer工具(版本2.0.3的QCA电路仿真工具)对它的正确性进行了实现,评估和测试,表明该方法相对于以前的方法具有一些优势大约总面积减少90%,总编号减少87%。在设计中仅利用4个时钟相位就可以计算单元数。

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