Forward converter: In a Forward converter, V = 30V, N₁ =10 turns, N₁ = 5 turns, and N₁ = 10 turns. The self-inductance of winding 1 is 150 μH, and the switching frequency f = 200 kHz. The Output voltage is regulated such that V = 5 V. The output filter inductance is 50 uH, and the self-inductance means Lm, the output load is 25 W. (Vin=Vs) D3 ++ + VD3 - Lm eeeeeee + VSW 1 3 + eeeeeee 10+ eeeeeee N3 (a) Figure for problem 3 Calculate and draw the waveform for V2,iLx,i1, and iLm + D₂vx + VLx Lx + R≤V

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Forward converter:
In a Forward converter, V = 30V, N₁ =10 turns, N₁ = 5 turns, and N₁ = 10 turns. The
self-inductance of winding 1 is 150 μH, and the switching frequency f = 200 kHz. The
Output voltage is regulated such that V = 5 V. The output filter inductance is 50 uH, and the
self-inductance means Lm, the output load is 25 W. (Vin=Vs)
D3
++
+ VD3 -
Lm
eeeeeee
+
VSW
1 3 +
eeeeeee
10+
eeeeeee
N3
(a)
Figure for problem 3
Calculate and draw the waveform for V2,iLx,i1, and iLm
+
D₂vx
+ VLx
Lx
+
R≤V
Transcribed Image Text:Forward converter: In a Forward converter, V = 30V, N₁ =10 turns, N₁ = 5 turns, and N₁ = 10 turns. The self-inductance of winding 1 is 150 μH, and the switching frequency f = 200 kHz. The Output voltage is regulated such that V = 5 V. The output filter inductance is 50 uH, and the self-inductance means Lm, the output load is 25 W. (Vin=Vs) D3 ++ + VD3 - Lm eeeeeee + VSW 1 3 + eeeeeee 10+ eeeeeee N3 (a) Figure for problem 3 Calculate and draw the waveform for V2,iLx,i1, and iLm + D₂vx + VLx Lx + R≤V
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