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Unified Analog PUF and TRNG Based on Current-Steering DAC and VCO

机译:基于当前转向DAC和VCO的统一模拟PUF和TRNG

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This work presents a unified weak physical unclonable function (PUF) and a true random number generator (TRNG) based on the current-steering digital-to-analog converter (DAC) and ring voltage-controlled oscillator (VCO). Entropy source for the weak PUF is the mismatch between NMOS and PMOS transistors in a cascode current DAC as well as the mismatch between VCO quantizers, while entropy source for the TRNG is thermal noise in the DAC and VCO and clock jitter. Instead of using spatial entropy sources for the PUF, i.e., multiple unit PUF elements, the proposed architecture utilizes temporal entropy source by capturing the output of unit PUF element over multiple cycles, which reduces area significantly. A unified PUF/TRNG prototype is fabricated in 65-nm CMOS and consumes 0.36 pJ/bit at a throughput of 100 Mb/s. The PUF has a measured intra-HD of 0.0906 and inter-HD of 0.4859, while the raw TRNG bitstream has an entropy of 0.9991 and passes all the NIST statistical randomness tests.
机译:这项工作介绍了一种统一的弱物理不可渗透功能(PUF)和基于当前转向的数字到模拟转换器(DAC)和环形电压控制振荡器(VCO)的真正随机数发生器(TRNG)。弱PUF的熵源是Cascode电流DAC中的NMOS和PMOS晶体管之间的不匹配以及VCO量化器之间的不匹配,而TRNG的熵源是DAC和VCO和时钟抖动中的热噪声。代替使用PUF的空间熵源,即多个单元PUF元素,所提出的架构通过在多个周期上捕获单元PUF元素的输出来利用时间熵源,从而显着降低了区域。统一的PUF / TRNG原型由65-NM CMOS制造,并以100mb / s的吞吐量消耗0.36pj /位。 PUF具有0.0906的HD的测量HD和HD的间歇性,而原始Trng比特流具有0.9991的熵,并通过所有NIST统计随机性测试。

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