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RRAM based random bit generation for hardware security applications

机译:基于RRAM基于硬件安全应用程序的随机位生成

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Resistive random access memories (RRAMs) have arisen as a competitive candidate for non-volatile memories due to their scalability, simple structure, fast switching speed and compatibility with conventional back-end processes. The stochastic switching mechanism and intrinsic variability of RRAMs still poses challenges that must be overcome prior to their massive memory commercialization. However, these very same features open a wide range of potential applications for these devices in hardware security. In this context, this work proposes the generation of a random bit by means of simultaneous write operation of two parallel cells so that only one of them unpredictably switches its state. Electrical simulations confirm the strong stochastic behavior and stability of the proposed primitive. Exploiting this fact, a Physical Unclonable Function (PUF) like primitive is implemented based on modified 1 transistor - 1 resistor (1T1R) array structure.
机译:由于其可扩展性,简单的结构,快速开关速度和与传统后端过程的兼容性,电阻随机存取存储器(RRAMS)作为非易失性存储器的竞争候选者。随机切换机构和RRAM的内在变异性仍然造成挑战,必须在巨大内存商业化之前克服。然而,这些具有相同的功能在硬件安全中打开了这些设备的广泛潜在应用。在这种情况下,该工作通过两个并行小区的同时写入操作来提出一种随机比特,使得其中一个不可预测地切换其状态。电模拟确认了提出的原始的强烈随机行为和稳定性。利用这一事实,基于改进的1晶体管-1电阻(1T1R)阵列结构来实现像原始的物理不可渗透功能(PUF)。

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