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Benefits of Joint Optimization of Tunable Wake-up Radio Architecture and Protocols., , , , , , , и . ICECS, стр. 789-792. IEEE, (2018)A 2.5μW 0.0067mm2 automatic back-biasing compensation unit achieving 50% leakage reduction in FDSOI 28nm over 0.35-to-1V VDD range., , , и . ISSCC, стр. 304-306. IEEE, (2018)A 0.021mm2 PVT-Aware Digital-Flow-Compatible Adaptive Back-Biasing Regulator with Scalable Drivers Achieving 450% Frequency Boosting and 30% Power Reduction in 22nm FDSOI Technology., , , , , , , , , и 3 other автор(ы). ISSCC, стр. 492-494. IEEE, (2021)32.2 Self-Tunable Phase-Shifted SECE Piezoelectric Energy-Harvesting IC with a 30nW MPPT Achieving 446% Energy-Bandwidth Improvement and 94% Efficiency., , , , , , и . ISSCC, стр. 488-490. IEEE, (2020)A sub-100nW power supply unit embedding untrimmed timing and voltage references for duty-cycled μW-range load in FDSOI 28nm., , и . ESSCIRC, стр. 279-282. IEEE, (2017)SamurAI: A 1.7MOPS-36GOPS Adaptive Versatile IoT Node with 15, 000× Peak-to-Idle Power Reduction, 207ns Wake-Up Time and 1.3TOPS/W ML Efficiency., , , , , , , , , и 11 other автор(ы). VLSI Circuits, стр. 1-2. IEEE, (2020)32.3 Electromagnetic Mechanical Energy-Harvester IC with No Off-Chip Component and One Switching Period MPPT Achieving up to 95.9% End-to-End Efficiency and 460% Energy-Extraction Gain., , , , и . ISSCC, стр. 490-492. IEEE, (2020)A 30nA quiescent 80nW-to-14mW power-range shock-optimized SECE-based piezoelectric harvesting interface with 420% harvested-energy improvement., , , , , и . ISSCC, стр. 150-152. IEEE, (2018)LDO-Assisted Voltage Selector Over 0.5-to-1V VDD Range for Fine Grained DVS in FDSOI 28nm with 200ns/V Controlled Transition., , , , и . ESSCIRC, стр. 202-205. IEEE, (2018)