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首页> 外文期刊>Journal of Low Power Electronics >An Efficient Analog-to-Digital Converter Based on Carbon Nanotube FETs
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An Efficient Analog-to-Digital Converter Based on Carbon Nanotube FETs

机译:基于碳纳米管FET的高效模数转换器

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This study presents an efficient CNTFET-based flash analog to digital converter suitable for low-power nanoscale mixed-signal integrated circuits and embedded systems. The unique characteristics of carbon nanotube FET (CNTFET), such as the feasibility of obtaining the desired threshold voltages by altering the diameter of nanotubes, ultra-high-gain binary inverters and same carrier mobility for n-type and p-type devices, are substantially used in designing the proposed circuit. The proposed design is simulated, using HSPICE with 32 nm Stanford CNTFET model. The results indicate considerable improvements in terms of speed, power consumption and specifically the number of transistors as compared to the other state-of-the-art flash analog to digital converter previously presented in the literature.
机译:这项研究提出了一种基于CNTFET的高效闪存模数转换器,适用于低功率纳米级混合信号集成电路和嵌入式系统。碳纳米管FET(CNTFET)的独特特性包括:通过改变纳米管的直径来获得所需的阈值电压,超高增益二元逆变器以及对于n型和p型器件具有相同载流子迁移率的可行性。在设计所建议的电路时基本使用。使用具有32 nm Stanford CNTFET模型的HSPICE对提出的设计进行了仿真。结果表明,与先前文献中介绍的其他最新的闪存模数转换器相比,在速度,功耗以及晶体管数量方面有了显着改善。

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