{321} Full bridge topology explained, reference design

Описание к видео {321} Full bridge topology explained, reference design

in this video number {321} i discussed Full Bridge / H-Bridge Isolated Topology SMPS Circuit reference Design, Full-Bridge Converter A full-bridge converter is a transformer-isolated buck converter. The basic schematics and switching waveforms are shown in Figure 27. Since the shape of the converter looks like an H, a full-bridge converter is also known as an H-bridge converter. A full-bridge converter is a transformer-isolated buck converter. The basic schematics and switching waveforms are shown in Figure 27. Since the shape of the converter looks like an H, a full-bridge converter is also known as an H-bridge converter. voltage stress of the switch is twice the input voltage. This condition renders both topologies unfeasible for high power 500 watt applications. A full-bridge converter configuration retains the voltage properties of the half-bridge topology, and the current properties of push-pull topology. The diagonal switch pairs, Q1 Q2 and Q3 Q4, are switched alternately at the selected switching period. In the steady state of operation when the diagonal switch pair, Q1 Q2, is ON for a period of TON, the dot end of the winding becomes positive with respect to the non-dot end. The diode D4 become reverse-biased and diode D3 becomes forward-biased. The diode D3 carries the full load current through the secondary winding NS1. As the input voltage is applied across the transformer primary, the switch carries the reflected load current, plus the transformer primary magnetizing current. The flux density in the core changes from its initial value of B1 to B2, as shown in Figure 13. The difference of the primary reflected voltage to the secondary and the output voltage is applied across the inductor L in the forward direction.
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