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Performance optimization for LDO regulator based on the differential evolution.

, , , , , and . ASICON, page 1-4. IEEE, (2019)

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High PSR output-capacitor-less LDO with double buffers technique., , , , , and . ICECS, page 1-4. IEEE, (2020)High-PSR and fast-transient LDO regulator with nested adaptive FVF structure., , , , and . ICTA, page 51-52. IEEE, (2020)Optimization of CMOS Voltage reference with Prediction based on Multi-group Hierarchical Collaborative Evolution and GBDT., , , , , , and . ISCAS, page 3562-3565. IEEE, (2022)A CAFVF-based output-capacitor-less LDO with PSRR improvement by feed forward and negative capacitance., , , , , and . Integr., (November 2023)A +0.35 °C / -0.22 °C Inaccuracy CMOS-Based Temperature Sensor for IoT Applications., , , and . MWSCAS, page 157-161. IEEE, (2023)A FVF based LDO with dynamic bias current for low power RFID chips., and . RFID-TA, page 61-64. IEEE, (2016)Performance optimization for LDO regulator based on the differential evolution., , , , , and . ASICON, page 1-4. IEEE, (2019)A $2.8μA, sub-$1μs Output-Capacitorless LDO with Transient Detecting Control Technique., , , , and . APCCAS, page 229-232. IEEE, (2021)PT controlled buck converter with adaptive PCCM using charge monitoring and NMOS current sensing., , , and . VLSI-SOC, page 176-180. IEEE, (2020)A 0.6-1.2V-Input and $10\mu-200mA$-Load LDO Based on Voltage-Difference-to-Time Converter with Adaptive-Power Transistors., , and . MWSCAS, page 865-869. IEEE, (2023)