Q1. Define the following: Intrinsic Semiconductor, P-N Junction, Diode Rectifiers, PI

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engineering
Namc. DI Mayansa MAII
Date: 16/1/2022
Answer: Four Questions Only
Q1. Define the following: Intrinsic Semiconductor, P-N Junction, Diode Rectifiers, PIV
Q2. Find the current through the diode in the circuit shown in below. (a) Assume the
diode to be ideal. (b) shows Thevenin's equivalent circuit.
100 2
R,
V= 20V
202R,
B
Q3. (a) For ideal diodes, show the voltage waveforms across the secondary winding and
across when a 170 V rms sine wave is applied to the primary winding in Figure
below. (b) What minimum PIV rating must the diodes have?
Q4. For the clipping circuit shown, find the output waveform for the input voltage of
v = 10 sino.t. Consider the diode has the following characteristics (ra= 20 Q,
Va = 0.7 V, r, = 00).
Rs
2.2 kn
18
VREF
2 V
Q5. Determine and show vo for the circuit below for the input indicated.
f = 1000 Hz
C = 4HF
10
2.
R2 100 K2
-8 V
-20
Transcribed Image Text:engineering Namc. DI Mayansa MAII Date: 16/1/2022 Answer: Four Questions Only Q1. Define the following: Intrinsic Semiconductor, P-N Junction, Diode Rectifiers, PIV Q2. Find the current through the diode in the circuit shown in below. (a) Assume the diode to be ideal. (b) shows Thevenin's equivalent circuit. 100 2 R, V= 20V 202R, B Q3. (a) For ideal diodes, show the voltage waveforms across the secondary winding and across when a 170 V rms sine wave is applied to the primary winding in Figure below. (b) What minimum PIV rating must the diodes have? Q4. For the clipping circuit shown, find the output waveform for the input voltage of v = 10 sino.t. Consider the diode has the following characteristics (ra= 20 Q, Va = 0.7 V, r, = 00). Rs 2.2 kn 18 VREF 2 V Q5. Determine and show vo for the circuit below for the input indicated. f = 1000 Hz C = 4HF 10 2. R2 100 K2 -8 V -20
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