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Nano-Reconfigurable Cells With Hybrid Circuits of Single-Electron Transistors and MOSFETs

机译:具有单电子晶体管和MOSFET混合电路的纳米可重构单元

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摘要

We propose and numerically analyze three novel reconfigurable logic cells (reconfigurable nandor, nand/xnor, and xnor/xor cells) based on single-electron transistor (SET) and MOSFET hybrid circuits. These reconfigurable cells can work normally at room temperature with high flexibility and performance. Compared with pure MOSFET circuits, the cells proposed in this paper can flexibly realize many more functions with high performance at much lower costs of area and power. Additionally, compared with pure SET circuits, the hybrid SET/MOSFET circuits can achieve higher voltage swing. Finally, the reconfigurable logic cells consisting of SETs and MOSFETs are very useful for the very large scale integration based on SETs.
机译:我们提出并基于单电子晶体管(SET)和MOSFET混合电路,对三种新型可重构逻辑单元(可重构na​​nd / nor,nand / xnor和xnor / xor单元)进行了数值分析。这些可重新配置的单元可以在室温下以高灵活性和高性能正常工作。与纯MOSFET电路相比,本文提出的单元可以以更低的面积和功耗成本灵活地实现更多功能,并具有高性能。此外,与纯SET电路相比,混合SET / MOSFET电路可以实现更高的电压摆幅。最后,由SET和MOSFET组成的可重新配置逻辑单元对于基于SET的超大规模集成非常有用。

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