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Multiply Constant-Weight Codes and the Reliability of Loop Physically Unclonable Functions., , , , , , , and . IEEE Trans. Inf. Theory, 60 (11): 7026-7034 (2014)Multiply Constant Weight Codes, , , , and . Information Theory Proceedings (ISIT), 2013 IEEE International Symposium on, page 306--310. IEEE, (July 2013)Combined Side-Channel Attacks., , , and . WISA, volume 6513 of Lecture Notes in Computer Science, page 175-190. Springer, (2010)Development of the Unified Security Requirements of PUFs During the Standardization Process., , , , , , , and . SecITC, volume 11359 of Lecture Notes in Computer Science, page 314-330. Springer, (2018)Updates on the potential of clock-less logics to strengthen cryptographic circuits against side-channel attacks., , , , , and . ICECS, page 351-354. IEEE, (2009)On the entropy of Physically Unclonable Functions., , , and . ISIT, page 2928-2932. IEEE, (2016)System-Level Methods to Prevent Reverse-Engineering, Cloning, and Trojan Insertion., , , and . ICISTM, volume 285 of Communications in Computer and Information Science, page 433-438. Springer, (2012)Fault Analysis Attack on an FPGA AES Implementation., , , , and . NTMS, page 1-5. IEEE, (2008)Generic Description and Synthesis of LDPC Decoders., , , and . IEEE Trans. Commun., 55 (11): 2084-2091 (2007)A formal study of two physical countermeasures against side channel attacks., , and . J. Cryptographic Engineering, 3 (3): 169-180 (2013)