纳米电磁全加法器

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摘要

在本文中,我提出了纳米电磁全加法器的新思路。基于 SST.MTJ 方法的 Bonhemmi 方法和分析,对逆变器和多数投票器进行了仿真和设计。有了这个想法,我们就可以根据这个公式设计其他门控和器件,以实现微处理器和......自旋电子器件是基于电子的上旋或下旋,而不是像传统半导体电子器件那样基于电子或空穴。与基于晶体管的微处理器相比,使用自旋电子器件的磁处理器原则上速度更快,并具有非易失性、功耗更低和集成密度更高等潜在特点。全加法器是所有处理器算术/逻辑单元中最重要的基本单元之一。全加法器的设计决定了处理器的速度和芯片密度。本文提出了一种基于新型可编程自旋电子逻辑器件的新型自旋电子全加法器。这种全加法器的设计只需要七个磁隧道结元件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nano Electro Magnetic Full Adder
In this paper, I proposed new idea for a nano, electromagnetics Full adder. Simulation and design of inverter and majority voter is a work on Bonhemmi method and analysis that is based on SST.MTJ method. After this idea, we can design other gated and devices besed on this formula to implement Microprocessor and … Spintronics devices are based on the up or down spin of the electrons rather than on electrons or holes as in the traditional semiconductor electronics devices. Magnetic processors using spintronics devices in principle are much faster and with the potential features of nonvolatile, lower power consumption and higher integration density compared with transistor-based microprocessor. Full adder is one of the most important basic units of the arithmetic/logic unit for any processors. The design of the full adder determines the speed and chip-density of a processor. In this paper, a novel spintronics full adder is proposed based on novel programmable spintronics logic devices. Only seven magnetic tunnel junction elements are needed for this full adder design.
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