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CMOS-based carbon nanotube pass-transistor logic integrated circuits

机译:基于CMOS的碳纳米管传输晶体管逻辑集成电路

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Field-effect transistors based on carbon nanotubes have been shown to be faster and less energy consuming than their silicon counterparts. However, ensuring these advantages are maintained for integrated circuits is a challenge. Here we demonstrate that a significant reduction in the use of field-effect transistors can be achieved by constructing carbon nanotube-based integrated circuits based on a pass-transistor logic configuration, rather than a complementary metal-oxide semiconductor configuration. Logic gates are constructed on individual carbon nanotubes via a doping-free approach and with a single power supply at voltages as low as 0.4?V. The pass-transistor logic configurarion provides a significant simplification of the carbon nanotube-based circuit design, a higher potential circuit speed and a significant reduction in power consumption. In particular, a full adder, which requires a total of 28 field-effect transistors to construct in the usual complementary metal-oxide semiconductor circuit, uses only three pairs of n- and p-field-effect transistors in the pass-transistor logic configuration.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:与碳纳米管相比,基于碳纳米管的场效应晶体管已经显示出更快,更少的能量消耗。然而,确保对于集成电路保持这些优势是一个挑战。在这里,我们证明,通过基于传输晶体管逻辑配置而不是互补金属氧化物半导体配置构建基于碳纳米管的集成电路,可以显着减少场效应晶体管的使用。逻辑门通过无掺杂方法在单个碳纳米管上构建,并采用低至0.4?V的单电源供电。通过晶体管的逻辑配置大大简化了基于碳纳米管的电路设计,提高了潜在的电路速度,并显着降低了功耗。特别是,一个完整的加法器需要在常规的互补金属氧化物半导体电路中构建总共28个场效应晶体管,而在通过晶体管逻辑配置中仅使用三对n和p场效应晶体管..? 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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