3. For the two-stage, capacitively coupled amplitier in Figure 3. 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 ER R5 33 kN E R7 33 k2 3.3 kN C3 3.3 kN Cs C 10 μF 10 μF Vi o 10 μF R2 8.2 kN R6 8.2 ΚΩ Rg 1.0 kN C4 100 μF Figure 3 1.0 k 100 μF Ber = BDC = 175

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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3. For the two-stage, capacitively coupled amplitier in Figure 3. 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
R5
33 k2
33 k2
3.3 kN
C3
3.3 kN
Cs
oV out
C,
10 μF
10 μ
Q2
10 μF
R2
8.2 kN
C2
Rg
1.0 kN
C4
Figure 3
100 µF
8.2 kN
100 µF
1.0 k
Bar = BDc = 175
Transcribed Image Text:3. For the two-stage, capacitively coupled amplitier in Figure 3. 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 R5 33 k2 33 k2 3.3 kN C3 3.3 kN Cs oV out C, 10 μF 10 μ Q2 10 μF R2 8.2 kN C2 Rg 1.0 kN C4 Figure 3 100 µF 8.2 kN 100 µF 1.0 k Bar = BDc = 175
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