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Novel Adder Circuits Based on Quantum-Dot Cellular Automata (QCA)

机译:基于量子点自动机的新型加法器电路

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Quantum-dot cellular automaton (QCA) is a novel nanotechnology that provides a very different computation platform than traditional CMOS, in which polarization of electrons indicates the digital information. This paper demonstrates designing combinational circuits based on quantum-dot cellular automata (QCA) nanotechnology, which offers a way to implement logic and all interconnections with only one homogeneous layer of cells. In this paper, the authors have proposed a novel design of XOR gate. This model proves designing capabilities of combinational circuits that are compatible with QCA gates within nano-scale. Novel adder circuits such as half adders, full adders, which avoid the fore, mentioned noise paths, crossovers by careful clocking organization, have been proposed. Experiment results show that the performance of proposed designs is more efficient than conventional designs. The modular layouts are verified with the freely available QCADesigner tool.
机译:量子点细胞自动机(QCA)是一种新颖的纳米技术,提供了与传统CMOS截然不同的计算平台,传统的CMOS中电子的极化指示数字信息。本文演示了基于量子点细胞自动机(QCA)纳米技术的组合电路的设计,该电路提供了一种实现逻辑和所有互连的方法,而这种互连和互连只有一个同质层。在本文中,作者提出了一种新颖的XOR门设计。该模型证明了与纳米级QCA门兼容的组合电路的设计能力。已经提出了新颖的加法器电路,例如半加法器,全加法器,它们避免了前面提到的噪声路径,通过仔细的时钟组织而产生的交叉。实验结果表明,提出的设计比常规设计具有更高的性能。模块化布局已通过免费提供的QCADesigner工具进行了验证。

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