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A new binary to gray code converter based on quantum-dot cellular automata nanotechnology

机译:基于量子点蜂窝自动机纳米技术的新型二叉码转换器

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摘要

Quantum-dot cellular automata (QCA) is one of the most prominent technologies in nanometer-scale with appreciable reduction of size and power consumption and high switching frequency to overcome the scaling limitations of complementary metal-oxide semiconductor. On the other hand, code converters play a key role in signal processing and efficient network designs. The researchers have focused on emerging nano-devices that can identify errors throughout information transfer. Therefore, in this research, a new QCA-based 4-bit binary to gray converter circuit employing the appropriate configuration of the XOR gate as a basic building block has been suggested. The layout has been generated using the QCADesigner simulation tool to test the functionality of the code converter. The performance results indicated that the proposed converter works properly and has optimum performance parameters such as latency, complexity, and consumed area as compared to the current schemes.
机译:量子点蜂窝自动机(QCA)是纳米规模最突出的技术之一,可明显降低尺寸和功耗和高开关频率,以克服互补金属氧化物半导体的缩放限制。另一方面,代码转换器在信号处理和高效网络设计中发挥关键作用。研究人员专注于新兴纳米器件,可以识别整个信息转移的误差。因此,在本研究中,已经提出了一种基于新的QCA的4位二进制到灰色转换器电路,其采用了作为基本构建块的适当配置的XOR门。已经使用QCadeigner仿真工具生成了布局来测试代码转换器的功能。绩效结果表明,与当前方案相比,所提出的转换器正常工作并具有诸如延迟,复杂性和消耗区域的最佳性能参数。

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