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GATE EE 2025
Numerical
+1
-0
In the circuit with ideal devices, the power MOSFET is operated with a duty cycle of 0.4 in a switching cycle with $I=10 \mathrm{~A}$ and $V=15 \mathrm{~V}$. The power delivered by the current source, in $W$, is ________ . (round off to the nearest integer) GATE EE 2025 Power Electronics - Choppers and Commutation Techniques Question 1 English
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2
GATE EE 2024
Numerical
+1
-0

A forced commutated thyristorized step-down chopper is shown in the figure. Neglect the ON-state drop across the power devices. Assume that the capacitor is initially charged to 50 V with the polarity shown in the figure. The load current ($I_L$) can be assumed to be constant at 10 A. Initially, ThM is ON and ThA is OFF. The turn-off time available to ThM in microseconds, when ThA is triggered, is________ (rounded off to the nearest integer).

GATE EE 2024 Power Electronics - Choppers and Commutation Techniques Question 4 English
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3
GATE EE 2023
MCQ (Single Correct Answer)
+1
-0.33

The chopper circuit shown in figure (i) feeds power to a 5 A DC constant current source. The switching frequency of the chopper is 100 kHz. All the components can be assumed to be ideal. The gate signals of switches S$$_1$$ and S$$_2$$ are shown in figure (ii). Average voltage across the 5 A current source is

GATE EE 2023 Power Electronics - Choppers and Commutation Techniques Question 5 English

A
10 V
B
6 V
C
12 V
D
20 V
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GATE EE 2016 Set 1
Numerical
+1
-0
A buck converter, as shown in Figure $$(a)$$ below, is working in steady state. The output voltage and the inductor current can be assumed to be ripple free. Figure $$(b)$$ shows the inductor voltage $${V_L}$$ during a complete switching interval. Assuming all devices are ideal, the duty cycle of the buck converter is ________. GATE EE 2016 Set 1 Power Electronics - Choppers and Commutation Techniques Question 38 English 1 GATE EE 2016 Set 1 Power Electronics - Choppers and Commutation Techniques Question 38 English 2
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