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A 5V Dynamic Class-C Paralleled Single-Stage Amplifier with Near-Zero Dead-Zone Control and Current-Redistributive Rail-to-Rail Gm-Boosting Technique.

, , , , and . ISSCC, page 86-88. IEEE, (2021)

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10.4 A hybrid inductor-based flying-capacitor-assisted step-up/step-down DC-DC converter with 96.56% efficiency., , , , , , , , and . ISSCC, page 184-185. IEEE, (2017)A 50.7-dB-DR Finger-Resistance Extracting Multi-Touch Sensor IC for Soft Classification of Fingers Contacted on 6.7-in Capacitive Touch Screen Panel., , , , and . IEEE J. Solid State Circuits, 56 (11): 3470-3485 (2021)A 5.6W-Power 96.6%-Efficiency Boost-Oriented SIDO Step-Up/Down DC-DC Converter Embedding Buck Conversion with an Energy-Balancing Capacitor., , , , and . VLSI Technology and Circuits, page 180-181. IEEE, (2022)11.8 A 96.8%-Efficiency Continuous Input/Output-Current Step-Up/Down Converter Powering Disposable IoTs with Reconfigurable Multi-Cell-Balanced Alkaline Batteries., , , , , , , , , and 2 other author(s). ISSCC, page 204-206. IEEE, (2020)An 8Ω 5.5W, 0.006% THD+N, 2×VBAT-Swing Switched-Mode Audio Amplifier with Fully-Differential Linear Buck-Boost Topology Achieving Total Efficiency of 87%., and . VLSI Circuits, page 1-2. IEEE, (2021)A 50.7dB-DR Finger-Resistance Extractable Multi-Touch Sensor IC Achieving Finger-Classification Accuracy of 97.7% on 6.7-Inch Capacitive Touch Screen Panel., , , , and . VLSI Circuits, page 1-2. IEEE, (2020)5.2 An 8Ω 10W 91%-power-efficiency 0.0023%-THD+N multi-level Class-D audio amplifier with folded PWM., , , , , , , , , and 3 other author(s). ISSCC, page 88-89. IEEE, (2017)Switched inductor capacitor buck converter with >85% power efficiency in 100uA-to-300mA loads using a bang-bang zero-current detector., , , , and . CICC, page 1-4. IEEE, (2018)A 5V Dynamic Class-C Paralleled Single-Stage Amplifier with Near-Zero Dead-Zone Control and Current-Redistributive Rail-to-Rail Gm-Boosting Technique., , , , and . ISSCC, page 86-88. IEEE, (2021)A 5.8W, 0.00086% THD+N, 118dB PSRR Class-D Audio Amplifier with Passive Output Common-Mode Compensation Technique for Wide Output Power Range., , , , , , and . VLSI Technology and Circuits, page 1-2. IEEE, (2024)