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Novel MTJ-based shift register for non-volatile logic applications

机译:基于非易失性逻辑应用的新型基于MTJ的移位寄存器

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The increasing costs and leakage losses have become the major concerns for CMOS technology scaling. A possible way to address in particular the standby power problem is to introduce non-volatility into the devices and circuit blocks so that unused devices or even entire circuit blocks do not waste energy, and power is only spent, when information is read or written. Recently, we proposed a non-volatile magnetic flip flop which moves the information storage and processing from the CMOS domain to the magnetic domain. Here, we propose a way to extend the functionality of the device to a shift register; computing via spin wave superposition and passing information by spin torque transfer (STT). The presented shift register and its operation allows an extremely dense layout, is CMOS compatible, and non-volatile.
机译:不断增加的成本和泄漏损耗已成为CMOS技术扩展的主要关注点。专门解决备用电源问题的一种可能方法是将非易失性引入设备和电路块中,以使未使用的设备甚至整个电路块都不会浪费能量,仅在读取或写入信息时才消耗功率。近来,我们提出了一种非易失性磁性触发器,其将信息存储和处理从CMOS域移至磁性域。在这里,我们提出了一种将设备功能扩展到移位寄存器的方法。通过自旋波叠加进行计算,并通过自旋扭矩传递(STT)传递信息。所提供的移位寄存器及其操作允许非常密集的布局,CMOS兼容且非易失性。

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