B Consider the circuit shown in Figure below with transistor parameters ß 120 and VA=00. (a) Determine the small-signal parameters gm, I, and I for both transistors. (b) Plot the dc and ac load lines for both transistors. (c) Determine the overall small-signal voltage gain Av = vo/vs. (d) Determine the input resistance R₁, and the output resistance R.. (e) Determine the maximum Vcc=+12 V undistorted swing in the output voltage.

EBK ELECTRICAL WIRING RESIDENTIAL
19th Edition
ISBN:9781337516549
Author:Simmons
Publisher:Simmons
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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Lecturer Karrar Al bayat
=
Consider the circuit shown in Figure below with transistor parameters ß
120 and VA =00. (a) Determine the small-signal parameters gm, I, and to for both
transistors. (b) Plot the dc and ac load lines for both transistors. (c) Determine the overall
small-signal voltage gain Av = vo/vs. (d) Determine the input resistance R₁, and the output
resistance R.. (e) Determine the maximum
Vcc=+12 V
undistorted swing in the output voltage.
< R₁ =
< 67.3 ΚΩ
R₂ =
Σ 15 ΚΩ
Ro
R₂ =
R₁=
12.7 K
345 ΚΩ
Ris Co
RC1 =
ΤΟ ΚΩ
"98
21
REL=
<2k2=CE
22
CC3
RE2=
RL=
1.6 kΩ < 250 Ω
-OU
Transcribed Image Text:Lecturer Karrar Al bayat = Consider the circuit shown in Figure below with transistor parameters ß 120 and VA =00. (a) Determine the small-signal parameters gm, I, and to for both transistors. (b) Plot the dc and ac load lines for both transistors. (c) Determine the overall small-signal voltage gain Av = vo/vs. (d) Determine the input resistance R₁, and the output resistance R.. (e) Determine the maximum Vcc=+12 V undistorted swing in the output voltage. < R₁ = < 67.3 ΚΩ R₂ = Σ 15 ΚΩ Ro R₂ = R₁= 12.7 K 345 ΚΩ Ris Co RC1 = ΤΟ ΚΩ "98 21 REL= <2k2=CE 22 CC3 RE2= RL= 1.6 kΩ < 250 Ω -OU
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ISBN:
9781337516549
Author:
Simmons
Publisher:
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