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A Self-Regulated and Reconfigurable CMOS Physically Unclonable Function Featuring Zero-Overhead Stabilization

机译:一种自调节和可重构的CMOS,具有零架空稳定的物理不可渗透功能

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This article presents a reconfigurable physically unclonable function (PUF) design fabricated using 65-nm CMOS technology. A subthreshold-inverter-based static PUF cell achieves native bit error rate (BER) at 0.062-fJ per bit core energy efficiency. A flexible, native transistor-based voltage regulation scheme achieves low-overhead supply regulation with 6-mV/V line sensitivity, making the PUF resistant against voltage variations. Additionally, the PUF cell is designed to be reconfigurable with no area overhead, which enables stabilization without redundancy on chip. Thanks to the highly stable and self-regulated PUF cell and the zero-overhead stabilization scheme, a 0.00182; native BER is obtained after reconfiguration. The proposed design shows 0.12; /0.1-V bit error across the military-grade temperature range from -55;C to 125 ;C and supply voltage variation from 0.7 to 1.4 V. The total energy per bit is 15.3 fJ. Furthermore, the unstable bits can be detected by sweeping the body bias instead of temperature during enrollment, thereby significantly reducing the testing costs. Last but not least, the prototype exhibits almost ideal uniqueness and randomness, with a mean inter-die Hamming distance (HD) of 0.4998 and a 1020 inter-/intra-die HD separation. It also passes both NIST 800-22 and 800-90B randomness tests.
机译:本文介绍了使用65nm CMOS技术制造的可重新配置的物理上不可渗透功能(PUF)设计。基于亚替代的逆变器的静态PUF小区实现了每位核心能量效率为0.062-FJ的本机误码率(BER)。一种灵活的基于晶体管的电压调节方案,实现了具有6-MV / V线灵敏度的低开销供应调节,使得免受电压变化的PUF。另外,PUF小区设计成可重新配置,没有区域开销,这使得能够在没有芯片上的冗余的情况下稳定化。由于高度稳定和自调节的PUF细胞和零架空稳定方案,0.00182;重新配置后获得本机BER。所提出的设计显示0.12; / 0.1-V误差跨军用级温度范围从-55; c至125; c和电源电压变化从0.7到1.4 V.每位的总能量为15.3 fj。此外,可以通过在注册期间扫描身体偏压而不是温度来检测不稳定的比特,从而显着降低了测试成本。最后但并非最不重要的是,原型表现出几乎理想的唯一性和随机性,平均模切锤距(HD)为0.4998和1020间/模内间高清分离。它还通过NIST 800-22和800-90B随机性测试。

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