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首页> 外文期刊>Quality Control, Transactions >A 100% Stable Sense-Amplifier-Based Physically Unclonable Function With Individually Embedded Non-Volatile Memory
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A 100% Stable Sense-Amplifier-Based Physically Unclonable Function With Individually Embedded Non-Volatile Memory

机译:100%稳定的感测放大器的物理上不可渗透功能,具有单独嵌入的非易失性存储器

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In this paper is presented a sense-amplifier-based physically unclonable function (PUF) with individually embedded non-volatile memory (eNVM) that offers 100 & x0025; stable random bits. The proposed eNVM, which stores the initially generated random key, biases the sense-amplifier to reproduce always the same key as the initial value through a feedback path. In order to verify the performance of the proposed architecture, a 256-bit PUF with a core area of 0.160 mm(2) was implemented in a 180 nm standard CMOS process. The measurement results of the implemented PUF show an intra-chip Hamming Distance (HD) of 0 (100 & x0025; stability) and inter-chip HD of 0.5047.
机译:本文以单独的嵌入式非易失性存储器(ENVM)呈现了一种基于感测放大器的物理不可渗透功能(PUF),提供100&x0025;稳定的随机位。所提出的envm存储最初生成的随机键,偏置感测放大器以始终将始终与通过反馈路径的初始值相同的键。为了验证所提出的架构的性能,在180nm标准CMOS过程中实现了256位PUF,核心区域为0.160mm(2)。所实施的PUF的测量结果显示了0(100&x0025;稳定性)和芯片间HAM的内部汉明距离(HD)和0.5047的片间HD。

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