For the multi-stage amplifier shown below, given the following T1: K= 0.12 mA/V?, VGS(TH) = 5 V, IDo = 6.7 mA, VGSO = 12.5 V, RD1 = 2.9 kN, (Assume rd >> Rp) T2: Ipss = 6 mA, Vp = -3 V, Ipo = 2.9 mA, VGSQ = -0.95 V, RD2 = 2.4 k2. (Assume rd >> Rp) %3D T3: R1 = 48 kQ, R2 = 12 kQ, Rc = 2.2 kN. ro = 25 kQ, and B = 140 Calculate Ay1, Av2, Av3, and the overall voltage gain AyT 20 V RD2 Ri RC RDI T2 T3 0.1 F 22 M loss = 6 mA V -3 V TI D Beta 0.05 uF G 10 MO R: 330 n =100 uF 2.2 ka 100 uF 18 MQ 0.82 k2 100 uF

EBK ELECTRICAL WIRING RESIDENTIAL
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Chapter25: Television, Telephone, And Low-voltage Signal Systems
Section25.1: Television Circuit
Problem 5R: From a cost standpoint, which system is more economical to install: a master amplifier distribution...
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For the multi-stage amplifier shown below,
given the following
T1: K= 0.12 mA/V?, VGS(TH) = 5 V, IDo = 6.7
mA, VGSO = 12.5 V, RD1 = 2.9 kQ, (Assume
%3D
rd >> Rp)
T2: Ipss = 6 mA, Vp = -3 V, Ipo = 2.9 mA,
VGSQ = -0.95 V, Rp2 = 2.4 kQ. (Assume rd
>> RD)
%3D
T3: R1 = 48 kQ, R2 = 12 kQ, Rc = 2.2 kQ. ro
= 25 kQ, and B = 140
Calculate Ay1, Av2, Av3, and the overall
voltage gain AVT
20 V
RD2
R1
RC
0.1 uF
RD1
T2
T3
22 M2
0.1 uF
oss =6 mA
Ve = -3 V
T1 D
Beta
0.05 µF
10 MQ
R2
Vase
330 n
= 100 uF
2.2 ka 100 µF
18 MQ
0.82 k2
= 100 µF
in
Transcribed Image Text:For the multi-stage amplifier shown below, given the following T1: K= 0.12 mA/V?, VGS(TH) = 5 V, IDo = 6.7 mA, VGSO = 12.5 V, RD1 = 2.9 kQ, (Assume %3D rd >> Rp) T2: Ipss = 6 mA, Vp = -3 V, Ipo = 2.9 mA, VGSQ = -0.95 V, Rp2 = 2.4 kQ. (Assume rd >> RD) %3D T3: R1 = 48 kQ, R2 = 12 kQ, Rc = 2.2 kQ. ro = 25 kQ, and B = 140 Calculate Ay1, Av2, Av3, and the overall voltage gain AVT 20 V RD2 R1 RC 0.1 uF RD1 T2 T3 22 M2 0.1 uF oss =6 mA Ve = -3 V T1 D Beta 0.05 µF 10 MQ R2 Vase 330 n = 100 uF 2.2 ka 100 µF 18 MQ 0.82 k2 = 100 µF in
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