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Evaluating the Impact of Environmental Factors on Physically Unclonable Functions (Abstract Only).

, , , , and . FPGA, page 279. ACM, (2016)

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Evaluating physically unclonable functions on a large set of FPGAs., , , , and . SAMOS, page 188-195. IEEE, (2016)Should Costing: A Holistic Approach from the Product Design to Procurement., , and . TE, volume 7 of Advances in Transdisciplinary Engineering, page 619-630. IOS Press, (2018)A 128 × 128 Single-Photon Image Sensor With Column-Level 10-Bit Time-to-Digital Converter Array., , , , and . IEEE J. Solid State Circuits, 43 (12): 2977-2989 (2008)Techniques for fully integrated intra-/inter-chip optical communication., and . DAC, page 343-344. ACM, (2008)CAD-integrated design for manufacturing and assembly in mechanical design., , , and . Int. J. Comput. Integr. Manuf., 35 (3): 282-325 (2022)Evaluating the Impact of Environmental Factors on Physically Unclonable Functions (Abstract Only)., , , , and . FPGA, page 279. ACM, (2016)Applying data mining technique to disassembly sequence planning: a method to assess effective disassembly time of industrial products., , , and . Int. J. Prod. Res., 57 (2): 599-623 (2019)Single-Photon Techniques for Standard CMOS Digital ICs.. EPFL, Switzerland, (2011)From gates to multi-processors learning systems hands-on with FPGA4U in a computer science programme., , , and . WESE@ESWEEK, page 56-63. ACM, (2009)A 128×128 Single-Photon Imager with on-Chip Column-Level 10b Time-to-Digital Converter Array Capable of 97ps Resolution., , , , and . ISSCC, page 44-45. IEEE, (2008)