b Explanation: For L load, E = L di/dt I = E/L t Therefore, 0.100 = 200t/0.2 T = 100 μsec.
b
Explanation: For L load, E = L di/dt
I = E/L t
Therefore, 0.100 = 200t/0.2
T = 100 μsec.
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b Explanation: For L load, E = L di/dt I = E/L t Therefore, 0.100 = 200t/0.2 T = 100 μsec.
b
Explanation: For L load, E = L di/dt
I = E/L t
Therefore, 0.100 = 200t/0.2
T = 100 μsec.
b Explanation: For L load, E = L di/dt I = E/L t Therefore, 0.100 = 200t/0.2 T = 100 μsec.
b
Explanation: For L load, E = L di/dt
I = E/L t
Therefore, 0.100 = 200t/0.2
T = 100 μsec.
b Explanation: For L load, E = L di/dt I = E/L t Therefore, 0.100 = 200t/0.2 T = 100 μsec.
b
Explanation: For L load, E = L di/dt
I = E/L t
Therefore, 0.100 = 200t/0.2
T = 100 μsec.
b Explanation: For L load, E = L di/dt I = E/L t Therefore, 0.100 = 200t/0.2 T = 100 μsec.
b
Explanation: For L load, E = L di/dt
I = E/L t
Therefore, 0.100 = 200t/0.2
T = 100 μsec.
b Explanation: For L load, E = L di/dt I = E/L t Therefore, 0.100 = 200t/0.2 T = 100 μsec.
b
Explanation: For L load, E = L di/dt
I = E/L t
Therefore, 0.100 = 200t/0.2
T = 100 μsec.
Answer d
Answer d
See lessd Explanation: The drift layer which is a n– layer determines the voltage blocking capabilities.
d
Explanation: The drift layer which is a n–
layer determines the voltage blocking
capabilities.
b Explanation: For L load, E = L di/dt I = E/L t Therefore, 0.100 = 200t/0.2 T = 100 μsec.
b
See lessExplanation: For L load, E = L di/dt
I = E/L t
Therefore, 0.100 = 200t/0.2
T = 100 μsec.