1
GATE EE 2026
MCQ (Single Correct Answer)
+2
-0

Consider the boost converter circuit shown. Assume that the semiconductor devices are ideal. In steady state, the inductor current rises linearly from 0 A to 6 A in the first $10 \mu \mathrm{~s}$ and then falls linearly from 6 A to 0 A in the next $10 \mu \mathrm{~s}$ of every switching cycle as shown. The load resistance R is $10 \Omega$ and the capacitance C is $50010 \mu \mathrm{~F}$.GATE EE 2026 Power Electronics - Choppers and Commutation Techniques Question 1 English

Neglect the ripple in the output voltage. What is the input voltage $V_{d c}$ ?

A
10.0 V
B
15.0 V
C
7.5 V
D
12.5 V
2
GATE EE 2025
Numerical
+2
-0
The steady state capacitor current of a conventional DC-DC buck converter, working in CCM, is shown in one switching cycle. If the input voltage is 30 V , the value of the inductor sued, in mH , is _________ (round off to one decimal place). GATE EE 2025 Power Electronics - Choppers and Commutation Techniques Question 5 English
Your input ____
3
GATE EE 2024
Numerical
+2
-0

In the DC-DC converter shown in the figure, the current through the inductor is continuous. The switching frequency is 500 Hz. The voltage ($V_o$) across the load is assumed to be constant and ripple free. The peak inductor current in amperes is __________ (rounded off to the nearest integer).

GATE EE 2024 Power Electronics - Choppers and Commutation Techniques Question 6 English
Your input ____
4
GATE EE 2023
Numerical
+2
-0

The circuit shown in the figure has reached steady state with thyristor 'T' in OFF condition. Assume that the latching and holding currents of the thyristor are zero. The thyristor is turned ON at $$t=0$$ sec. The duration in microseconds for which the thyristor would conduct, before it turns off, is _________ (Round off to 2 decimal places).

GATE EE 2023 Power Electronics - Choppers and Commutation Techniques Question 9 English

Your input ____

GATE EE Subjects

Browse all chapters by subject