For the circuit shown below, calculate: - 1. The input impedance of the circuit 2. The output impedance with load 3. The total voltage gain 4. The total current gain 24 V +Vcc 22 k Ohm 8k Ohm 15 k Ohm 6k Ohm 3.3 M Ohm Darlington ß1=50 B2=50 ß1=100 1 uF B2 =80 3.3 k Ohm 1k Ohm 1.5 k Ohm 1.2 k Ohm 2k Ohm 470 Ohm
For the circuit shown below, calculate: - 1. The input impedance of the circuit 2. The output impedance with load 3. The total voltage gain 4. The total current gain 24 V +Vcc 22 k Ohm 8k Ohm 15 k Ohm 6k Ohm 3.3 M Ohm Darlington ß1=50 B2=50 ß1=100 1 uF B2 =80 3.3 k Ohm 1k Ohm 1.5 k Ohm 1.2 k Ohm 2k Ohm 470 Ohm
Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter3: Power Transformers
Section: Chapter Questions
Problem 3.30P: Reconsider Problem 3.29. If Va,VbandVc are a negative-sequence set, how would the voltage and...
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![Q1)
For the circuit shown below, calculate: -
1. The input impedance of the circuit
2. The output impedance with load
3. The total voltage gain
4. The total current gain
24 V
+Vcc
22 k Ohm
8k Ohm
15 k Ohm
6k Ohm
3.3 M Ohm
Darlington
ß1=50
B2=50
ß1=100
B2 =80
1 uF
3.3 k Ohm
1k Ohm
1.5 k Ohm
1.2 k Ohm
470 Ohm
2k Ohm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F693a0110-6d0e-4eeb-b162-acc17ba05dd2%2Fedbe2e69-0cc3-4449-b51c-1fa46bd848c3%2Fsbs5y1l_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q1)
For the circuit shown below, calculate: -
1. The input impedance of the circuit
2. The output impedance with load
3. The total voltage gain
4. The total current gain
24 V
+Vcc
22 k Ohm
8k Ohm
15 k Ohm
6k Ohm
3.3 M Ohm
Darlington
ß1=50
B2=50
ß1=100
B2 =80
1 uF
3.3 k Ohm
1k Ohm
1.5 k Ohm
1.2 k Ohm
470 Ohm
2k Ohm
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