2021 IEEE Energy Conversion Congress and Exposition (ECCE) 2021
DOI: 10.1109/ecce47101.2021.9595946
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A Real-Time Sinusoidal Voltage-Adjustment Power Supply System Based on Interleaved BUCK Converters With Enhanced Reference-Tracking Capability

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Cited by 2 publications
(1 citation statement)
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“…Synchronous rectifier circuit uses MOS tube with low on-state impedance to replace conventional continuous current diode, through the control circuit output 180° complementary PWM wave to drive the switching MOS tube and the continuous current MOS tube, eliminate the reverse peak current at the end of the continuation, reduce the loss of the rectifier circuit, improve the conversion efficiency of the power supply, and can meet the needs of large current applications [10][11] . At the same time, the voltage can be adjusted by using the control system, and the voltage feedback can control the accuracy of the output voltage [12][13][14][15] .The design based on the Buck synchronous rectifier circuit schematic diagram is shown in Figure 2.…”
Section: Fig1 Schematic Diagram Of Buck Synchronous Rectifier Circuitmentioning
confidence: 99%
“…Synchronous rectifier circuit uses MOS tube with low on-state impedance to replace conventional continuous current diode, through the control circuit output 180° complementary PWM wave to drive the switching MOS tube and the continuous current MOS tube, eliminate the reverse peak current at the end of the continuation, reduce the loss of the rectifier circuit, improve the conversion efficiency of the power supply, and can meet the needs of large current applications [10][11] . At the same time, the voltage can be adjusted by using the control system, and the voltage feedback can control the accuracy of the output voltage [12][13][14][15] .The design based on the Buck synchronous rectifier circuit schematic diagram is shown in Figure 2.…”
Section: Fig1 Schematic Diagram Of Buck Synchronous Rectifier Circuitmentioning
confidence: 99%