弹性(材料科学)
电阻随机存取存储器
功率(物理)
超低功耗
非易失性存储器
计算机科学
电气工程
随机存取存储器
可靠性(半导体)
可靠性工程
电子工程
嵌入式系统
工程类
工程物理
材料科学
功率消耗
物理
电压
计算机硬件
复合材料
量子力学
作者
Jiang Li,Yijun Cui,Chenghua Wang,Chongyan Gu,Weiqiang Liu
标识
DOI:10.1109/tnano.2025.3569071
摘要
Emerging nano-device resistive random access memories (RRAMs) have become a promising primitive for PUF designs due to their non-volatility, high density, and low power, breaking through the physical limitations. A ring oscillator based physical unclonable function (RO PUF) is one of the most widely studied PUF designs due to its resilience against noise impacts and flexibility of implementation, but its reliability is susceptible to environmental variation and device aging. Present solutions to improve RO PUF reliability either require complicated RO selection algorithms or require discarding a large number of unstable challenge-response pairs (CRPs). This paper presents a highly reliable RRAM-based configurable RO PUF (RCRO-PUF). The proposed RCRO-PUF utilizes the intrinsic variations of RRAMs as the randomness source and applies the resistance variations of RRAMs to the frequency difference of current-starved (CS) ROs. By operating CS inverters in the subthreshold region, the RCRO-PUF achieves low power as well as high reliability. In addition, a reliability enhancement scheme is proposed to eliminate the effects of environmental variations and device aging. Based on Monte Carlo simulations of a 65 nm CMOS process, the proposed RCRO-PUF consumes only 16.18% of the hardware overhead for a regular RO PUF and has only 7.43$\mu W$per CRP generation. The reliability of the RCRO-PUF is 99.51% over a broad range of temperatures from -50$^{\circ }$C to 150$^{\circ }$C and$\pm$20% supply voltage variations. It is also 4.7× more resilient to aging than state-of-the-art aging-resilient RO PUF.
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