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Extending standard cell library for aging mitigation., , , and . IET Comput. Digit. Tech., 9 (4): 206-212 (2015)Selective Flip-Flop Optimization for Reliable Digital Circuit Design., , , and . IEEE Trans. Comput. Aided Des. Integr. Circuits Syst., 39 (7): 1484-1497 (2020)Determination and Prioritization of Flexibility Types in the Context of Industry 4.0: A Use Case in Automotive Industry., , , , and . IEEM, page 1529-1535. IEEE, (2022)A Comprehensive Method for Measuring Flexibility at the Individual and Global Levels: A Case Study in the Automotive Industry., , , , and . CoDIT, page 1978-1983. IEEE, (2023)Highly-Linear InP/GaAsSb DHBTs with 18.2 dBm OIP3 at 45 GHz: Comparison of Common-Base and Common-Emitter Structures., , , , , , , and . BCICTS, page 108-111. IEEE, (2022)Temperature-aware Dynamic Voltage Scaling for Near-Threshold Computing., , and . ACM Great Lakes Symposium on VLSI, page 361-364. ACM, (2016)A mixed-model assembly line sequencing problem with parallel stations and walking workers: a case study in the automotive industry., , , , and . Int. J. Prod. Res., 61 (3): 993-1012 (February 2023)Thermal Characterization of InP/GaAsSb DHBTs: Effect of Emitter and Collector Layers., , , , , and . BCICTS, page 24-27. IEEE, (2023)Multi-Finger 250-nm InP/GaAsSb DHBTs with Record 37.3 % Class-A PAE at 94 GHz., , , , , , , and . BCICTS, page 145-148. IEEE, (2023)GaN polar transmitter design for base-station applications., , and . CCECE, page 1-4. IEEE, (2014)