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首页> 外文期刊>AIP Advances >Design of high-throughput and low-power true random number generator utilizing perpendicularly magnetized voltage-controlled magnetic tunnel junction
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Design of high-throughput and low-power true random number generator utilizing perpendicularly magnetized voltage-controlled magnetic tunnel junction

机译:利用垂直磁化压控磁隧道结设计高通量,低功耗的真随机数发生器

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摘要

A true random number generator based on perpendicularly magnetized voltage-controlled magnetic tunnel junction devices (MRNG) is presented. Unlike MTJs used in memory applications where a stable bit is needed to store information, in this work, the MTJ is intentionally designed with small perpendicular magnetic anisotropy (PMA). This allows one to take advantage of the thermally activated fluctuations of its free layer as a stochastic noise source. Furthermore, we take advantage of the voltage dependence of anisotropy to temporarily change the MTJ state into an unstable state when a voltage is applied. Since the MTJ has two energetically stable states, the final state is randomly chosen by thermal fluctuation. The voltage controlled magnetic anisotropy (VCMA) effect is used to generate the metastable state of the MTJ by lowering its energy barrier. The proposed MRNG achieves a high throughput (32 Gbps) by implementing a 64 × 64 MTJ array into CMOS circuits and executing operations in a parallel manner. Furthermore, the circuit consumes very low energy to generate a random bit (31.5 fJ/bit) due to the high energy efficiency of the voltage-controlled MTJ switching.
机译:提出了一种基于垂直磁化压控磁隧道结器件(MRNG)的真随机数发生器。与需要稳定位来存储信息的存储应用中使用的MTJ不同,在这项工作中,MTJ的设计故意采用了较小的垂直磁各向异性(PMA)。这允许人们利用其自由层的热激活波动作为随机噪声源。此外,我们利用各向异性的电压依赖性,在施加电压时将MTJ状态暂时更改为不稳定状态。由于MTJ具有两个能量稳定状态,因此最终状态是通过热波动随机选择的。压控磁各向异性(VCMA)效应用于通过降低其能垒来生成MTJ的亚稳态。拟议的MRNG通过在CMOS电路中实现64×64 MTJ阵列并以并行方式执行操作来实现高吞吐量(32 Gbps)。此外,由于压控MTJ开关的高能量效率,该电路消耗非常低的能量来生成随机位(31.5 fJ /位)。

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