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Switching-Time Dependent PUF Using STT-MRAM

机译:使用STT-MRAM的与时间相关的PUF

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摘要

Physically Unclonable Function (PUF) has become an indispensable on-chip security primitive for hardware security. Area and power efficient PUFs are required to sustain the future security of IoT platforms. In particular, emerging magneto-resistive STT-MRAM based PUF circuits have gained much attention as an alternative to software/pure CMOS PUF owing to their area and power efficiency. In this work, we propose a novel PUF extraction architecture and methodology that exploits the probabilistic switching behavior of STT-MRAM devices. We exploit spatial (device to device) as well as temporal (cycle to cycle) switching stochasticity of STT-MRAM devices in an array of 1T-1MTJ cells. We performed all simulations using 90 nm CMOS technology node, and 32 nm (diameter) perpendicular anisotropic magnetic tunnel junction (PMA-MTJ). The proposed PUF exhibits 45.83 % inter-hamming distance and ~ 5.0 % intra-hamming distance without post processing of the extracted bit pattern.
机译:物理上不可克隆的功能(PUF)已成为硬件安全必不可少的片上安全原语。需要面积和功率高效的PUF来维持IoT平台的未来安全性。尤其是,新兴的基于磁阻STT-MRAM的PUF电路由于其面积和功率效率而成为软件/纯CMOS PUF的替代品,因此引起了广泛的关注。在这项工作中,我们提出了一种新颖的PUF提取架构和方法,该结构和方法利用了STT-MRAM设备的概率切换行为。我们在1T-1MTJ单元阵列中利用STT-MRAM设备的空间(设备到设备)和时间(周期到周期)切换随机性。我们使用90 nm CMOS技术节点和32 nm(直径)垂直各向异性磁隧道结(PMA-MTJ)进行了所有仿真。拟议的PUF表现出45.83%的汉明距离和〜5.0%的汉明距离,而无需对提取的位模式进行后处理。

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