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17.7 A 0.03mV/mA Low Crosstalk and 185nA Ultra-Low-Quiescent Single-Inductor Multiple-Output Converter Assisted by 5-Input Operational Amplifier for 94.3% Peak Efficiency and 3.0W Driving Capability.

, , , , , , , , и . ISSCC, стр. 267-269. IEEE, (2021)

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White Noise Tests and APT Economic Factor Syntheses Using Temporal Factor Analysis., и . JCIS, стр. 1111-1114. JCIS / Association for Intelligent Machinery, Inc., (2002)A Pre-Charge Tracking Technique in the 40 MHz High-Speed Switching 48-to-5 V GaN-Based DC-DC Buck Converter for Reducing Large Self-Commutation Loss and Achieving a High Efficiency of 95.4%., , , , , , и . IEEE J. Solid State Circuits, 57 (7): 2045-2053 (2022)17.7 A 0.03mV/mA Low Crosstalk and 185nA Ultra-Low-Quiescent Single-Inductor Multiple-Output Converter Assisted by 5-Input Operational Amplifier for 94.3% Peak Efficiency and 3.0W Driving Capability., , , , , , , , и . ISSCC, стр. 267-269. IEEE, (2021)Financial APT-Based Gaussian TFA Learning for Adaptive Portfolio Management., и . ICANN, том 2415 из Lecture Notes in Computer Science, стр. 1019-1024. Springer, (2002)Optimizing Financial Portfolios from the Perspective of Mining Temporal Structures of Stock Returns., и . MLDM, том 2734 из Lecture Notes in Computer Science, стр. 266-275. Springer, (2003)On generalized arbitrage pricing theory analysis: empirical investigation of the macroeconomics modulated independent state-space model., и . CIFEr, стр. 139-144. IEEE, (2003)Arbitrage pricing theory-based Gaussian temporal factor analysis for adaptive portfolio management., и . Decis. Support Syst., 37 (4): 485-500 (2004)A 94.3% Peak Efficiency Adaptive Switchable CCM and DCM Single-Inductor Multiple-Output Converter With 0.03 mV/mA Low Crosstalk and 185 nA Ultralow Quiescent., , , , , , , , и . IEEE J. Solid State Circuits, 57 (9): 2731-2740 (2022)Stock Price and Index Forecasting by Arbitrage Pricing Theory-Based Gaussian TFA Learning., и . IDEAL, том 2412 из Lecture Notes in Computer Science, стр. 366-371. Springer, (2002)A Pre-Charge Tracking Technique in the 40MHz High-switching 48-to-5V DC-DC Buck Converter with GaN Switches for Reducing Large Self-commutation Loss and Achieving a High Efficiency of 95.4%., , , , , , и . ESSCIRC, стр. 311-314. IEEE, (2021)