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Reliability Analysis of FinFET-Based SRAM PUFs for 16nm, 14nm, and 7nm Technology Nodes., , , , , and . DATE, page 1189-1192. IEEE, (2022)Face Recognition with Renewable and Privacy Preserving Binary Templates., , , , and . AutoID, page 21-26. IEEE Computer Society, (2005)Robust and Secure Biometrics: Some Application Examples., , , , , and . ISSE, page 196-203. Vieweg, (2006)Evaluation of 90nm 6T-SRAM as Physical Unclonable Function for secure key generation in wireless sensor nodes., , , , , , , , and . ISCAS, page 567-570. IEEE, (2011)RESCURE: a security solution for IoT life cycle., , , , , , , and . ARES, page 95:1-95:10. ACM, (2020)Hardware intrinsic security from D flip-flops., , , and . STC@CCS, page 53-62. ACM, (2010)Improved constructions of secret sharing schemes by applying (lambda, omega)-decompositions., , , and . Inf. Process. Lett., 99 (4): 154-157 (2006)Read-Proof Hardware from Protective Coatings., , , , , and . CHES, volume 4249 of Lecture Notes in Computer Science, page 369-383. Springer, (2006)Face biometrics with renewable templates., , , , and . Security, Steganography, and Watermarking of Multimedia Contents, volume 6072 of SPIE Proceedings, page 60720J. SPIE, (2006)Modeling SRAM start-up behavior for Physical Unclonable Functions., , , and . DFT, page 1-6. IEEE Computer Society, (2012)