33. For the two-stage, capacitively coupled amplifier in Figure 6–58, find the following values: (a) voltage gain of each stage (b) overall voltage gain (c) Express the gains found in (a) and (b) in dB. Vcc +15 V R R3 3.3 kN C3 Rs 33 kN 33 kN 3.3 kN C5 out 10 μF 10 μF Q2 10 μF R2 8.2 kN R4 1.0 kN Rg 1.0 kN C4 100 μF 100 μF 8.2 kN Bac = BDc = 175
33. For the two-stage, capacitively coupled amplifier in Figure 6–58, find the following values: (a) voltage gain of each stage (b) overall voltage gain (c) Express the gains found in (a) and (b) in dB. Vcc +15 V R R3 3.3 kN C3 Rs 33 kN 33 kN 3.3 kN C5 out 10 μF 10 μF Q2 10 μF R2 8.2 kN R4 1.0 kN Rg 1.0 kN C4 100 μF 100 μF 8.2 kN Bac = BDc = 175
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Transcribed Image Text:33. For the two-stage, capacitively coupled amplifier in Figure 6–58, find the following values:
(a) voltage gain of each stage
(b) overall voltage gain
(c) Express the gains found in (a) and (b) in dB.
Vcc
+15 V
R1
33 kN
R3
3.3 kN
C3
R5
33 kN
3.3 kN
C5
out
10 μF
Q1
Q2
10 μF
10 μ
R2
8.2 kM
R4
1.0 kΩ
.C2
100 µF
R6
8.2 kM
Rg
1.0 kN
C4
100 μF
Bac = Bpc = 175
%3D
%3D
FIGURE 6-58
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