首页> 外文会议>Proceedings of the 2017 IEEE International Symposium on Hardware Oriented Security and Trust >A stochastic all-digital weak physically unclonable function for analog/mixed-signal applications
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A stochastic all-digital weak physically unclonable function for analog/mixed-signal applications

机译:用于模拟/混合信号应用的随机全数字弱物理不可克隆功能

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Physically Unclonable Functions (PUFs) are a promising security technique which utilize the random process variation in silicon fabrication in order to create unique identifiers and other security features that are impossible to recreate exactly. This paper builds upon and evaluates a weak PUF which employs dynamic latched comparators and their random input offset voltages to create a chip-specific identifier. The proposed PUF can be used in analog/mixed-signal (AMS) chips due to the analog characteristics of the comparators employed. Because comparators are a fundamental block in AMS applications, the proposed PUF can reuse comparators in an AMS chip to generate unique identifiers with minimal hardware overhead. Additionally, the comparators tested in this work can be created with digital components, making this PUF suitable for use in digital chips as well. The proposed PUF is fabricated using a 0.13 μm CMOS process. Measurements show that the PUF achieves a normalized intra-Hamming Distance (HD) of less than 0.15% and 0.96% across 0°C-80°C and 0.8V-1.4 V, respectively. The normalized inter-HD is 48.5% for a 64-bit PUF output key. The power consumption of the PUF is 1.5 nJ/bit with a throughput of 4Mb/s.
机译:物理上不可克隆的功能(PUF)是一种很有前途的安全技术,该技术利用硅制造过程中的随机过程变化来创建唯一的标识符和其他无法精确重建的安全特征。本文基于并评估了弱PUF,该PUF使用动态锁存比较器及其随机输入失调电压来创建特定于芯片的标识符。由于采用的比较器的模拟特性,建议的PUF可以用于模拟/混合信号(AMS)芯片。因为比较器是AMS应用程序中的基本模块,所以建议的PUF可以在AMS芯片中重用比较器以最小的硬件开销生成唯一的标识符。此外,可以使用数字组件创建在这项工作中测试的比较器,从而使该PUF也适用于数字芯片。拟议的PUF使用0.13μmCMOS工艺制造。测量表明,PUF在0°C-80°C和0.8V-1.4 V范围内分别实现小于0.15%和0.96%的归一化锤击距离。对于64位PUF输出密钥,归一化的HD间分辨率为48.5%。 PUF的功耗为1.5 nJ / bit,吞吐量为4Mb / s。

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