用于下一代互连和逻辑设计的纳米磁计算

Sanghamitra Debroy, Santhosh Sivasubramani, S. G. Acharyya, A. Acharyya
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引用次数: 3

摘要

在本章中,对节能电路设计的整体方法进行了讨论。新型材料石墨烯具有非凡的机械、电学、热学和磁学性能,在取代铜用于纳米磁基电路时钟方面具有巨大的潜力,从而可以减少产生外部磁场所需的巨大电流。仿真结果也证实了上述结论。另一方面,本章也提供了对下一代互连和逻辑设计的纳米磁计算的见解。基于mqca的数字算术电路的作用及其影响也在本章中得到了很好的证明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanomagnetic computing for next generation interconnects and logic design
In this chapter a holistic approach towards the design of energy-efficient circuitry has been discussed. The novel material graphene with extraordinary mechanical, electrical, thermal and magnetic properties has been shown to have a huge potential in replacing copper for clocking the nanomagnetic-based circuits so that the huge current required for generating external magnetic field can be reduced. Through simulation results the above mentioned has also been established. This chapter on the other hand also provides an insight on nanomagnetic computing for next generation interconnects and logic design. The role of MQCA-based digital arithmetic circuits and their impact has also been well demonstrated in this chapter.
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