the circuit shown below, calculate: - 1. The input impedances (Z,), (Zip). 2. the loaded output impedances (Z,). (Zor). 3. The total voltage gain with (A) and without (A,) feedback connection. 4. The output voltage (v.). 24 V 3 32 k0 2.4 kn 10 mV 24 kn V 1 Ma 1 MO 3 10 k 680 n 680 n 6 kn
the circuit shown below, calculate: - 1. The input impedances (Z,), (Zip). 2. the loaded output impedances (Z,). (Zor). 3. The total voltage gain with (A) and without (A,) feedback connection. 4. The output voltage (v.). 24 V 3 32 k0 2.4 kn 10 mV 24 kn V 1 Ma 1 MO 3 10 k 680 n 680 n 6 kn
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![For the circuit shown below, calculate: -
1. The input impedances (Z,), (Zif).
2. the loaded output impedances (Z,), (Zof).
3. The total voltage gain with (A,) and without (A,) feedback connection.
4. The output voltage (v,).
24 V
2.4 k
3.2 kn
Vo
10 mV
10 mA
24 kn
V 1 Ma
1 MO
10 k
680 n
680 0
6 kn](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff306839d-2b0c-4391-b07e-c2d291ed2c8c%2Fcc9fcb55-dc9f-4e1b-9a33-665acd33881d%2F9o2mk9_processed.jpeg&w=3840&q=75)
Transcribed Image Text:For the circuit shown below, calculate: -
1. The input impedances (Z,), (Zif).
2. the loaded output impedances (Z,), (Zof).
3. The total voltage gain with (A,) and without (A,) feedback connection.
4. The output voltage (v,).
24 V
2.4 k
3.2 kn
Vo
10 mV
10 mA
24 kn
V 1 Ma
1 MO
10 k
680 n
680 0
6 kn
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