2020
DOI: 10.1109/ojpel.2019.2962662
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Drain-Source Synchronous Rectifier Oscillation Mitigation in Light-Load Conditions

Abstract: The increasing usage of LLC-type dc-dc converters in utility, automotive, and power distribution applications has led to a push for a further increase in the converter's operating load range and efficiency. The secondary-side rectifier remains one of the lossiest areas in the converter, alluring designers to synchronous rectification (SR). One method is drain-source SR for cyclically adaptive, closed loop SR. However, when utilized, a severe current oscillation can be observed. An increase in SR duty cycle res… Show more

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Cited by 6 publications
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“…Here the Total Harmonic Distortion (THD) values were reduced to the prescribed limit in terms of inserting the LC filter along with the required output. Both the values of direct AC and converted AC have been compared and their THD values are calculated [13]. In order to achieve lower voltage level with regards to the DC-DC converter the synchronous converter stands out as a perfect option due to the lower conduction loss in the diode [14].…”
Section: Proposed Systemmentioning
confidence: 99%
“…Here the Total Harmonic Distortion (THD) values were reduced to the prescribed limit in terms of inserting the LC filter along with the required output. Both the values of direct AC and converted AC have been compared and their THD values are calculated [13]. In order to achieve lower voltage level with regards to the DC-DC converter the synchronous converter stands out as a perfect option due to the lower conduction loss in the diode [14].…”
Section: Proposed Systemmentioning
confidence: 99%