4. In a Full-bridge converter shown in Fig. 8-9, V=30V, f, = 200 kHz, and NIN₂ =4. The output voltage is regulated by PWM such that V=5V. The output power P = 250W and the peak-peak ripple in the output inductor current is 10 percent of its average value at full-load. Calculate the value of the filter-inductor L. Calculate and plot all the waveforms associated with this converter. Assume the transformer ideal and the flux waveform to be symmetric with the same positive and negative peak amplitudes. FULL-BRIDGE CONVERTERS + V In N₁ D₁ Ꭰ, Figure 8-9 Full-Bridge converter. iL +

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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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4.
In a Full-bridge converter shown in Fig. 8-9, V=30V, f, = 200 kHz, and
NIN₂ =4. The output voltage is regulated by PWM such that V=5V. The
output power P = 250W and the peak-peak ripple in the output inductor
current is 10 percent of its average value at full-load. Calculate the value
of the filter-inductor L. Calculate and plot all the waveforms associated with
this converter. Assume the transformer ideal and the flux waveform to be
symmetric with the same positive and negative peak amplitudes.
FULL-BRIDGE CONVERTERS
+
V
In
N₁
D₁
Ꭰ,
Figure 8-9 Full-Bridge converter.
iL
+
Transcribed Image Text:4. In a Full-bridge converter shown in Fig. 8-9, V=30V, f, = 200 kHz, and NIN₂ =4. The output voltage is regulated by PWM such that V=5V. The output power P = 250W and the peak-peak ripple in the output inductor current is 10 percent of its average value at full-load. Calculate the value of the filter-inductor L. Calculate and plot all the waveforms associated with this converter. Assume the transformer ideal and the flux waveform to be symmetric with the same positive and negative peak amplitudes. FULL-BRIDGE CONVERTERS + V In N₁ D₁ Ꭰ, Figure 8-9 Full-Bridge converter. iL +
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