II. A converter is illustrated in figure. The inductor has winding resistance R₁ and the MOSFET has on-resistance RM, all the other losses can be ignored. (a) Derive the equivalent circuit model for this converter with dc transformers considering R₁ and RM (b) Derive expressions Vo/Vg and the efficiency of the converter. Please determine the duty cycle, efficiency and power loss when V, 12V, V = 18V, f. = 100khz, R = 60, R₂ = 0.10, R = 0.1502 L roo i₂(1) + v₂(1) - DT, T 2₁ D₁ ic(1) C

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2.
II. A converter is illustrated in figure. The inductor has winding resistance R₁ and the MOSFET
has on-resistance RM, all the other losses can be ignored.
(a) Derive the equivalent circuit model for this converter with dc transformers considering
R₁ and RM
(b) Derive expressions Vo/Vg and the efficiency of the converter. Please determine the duty
cycle, efficiency and power loss when
V₂ = 12V, V = 18V, f. = 100khz, R = 60, R₂ = 0.10, R₁ = 0.150
L
m
i₂(1) + V₂(1) -
HE
DT, T
2₁
D₁
ic(1)
C
R
Transcribed Image Text:2. II. A converter is illustrated in figure. The inductor has winding resistance R₁ and the MOSFET has on-resistance RM, all the other losses can be ignored. (a) Derive the equivalent circuit model for this converter with dc transformers considering R₁ and RM (b) Derive expressions Vo/Vg and the efficiency of the converter. Please determine the duty cycle, efficiency and power loss when V₂ = 12V, V = 18V, f. = 100khz, R = 60, R₂ = 0.10, R₁ = 0.150 L m i₂(1) + V₂(1) - HE DT, T 2₁ D₁ ic(1) C R
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