For the circuit shown in Fig.3, B = (100 + 3X), Rg (300 + Y + X)k, Rc = (5.2 + 0. YX)k, RE1 = (0.8 + 0.0X)k, RE2 = (1.1 + 0.0Y)k, Vcc = (6 +)v. VEE = - (6+)v.R, = 100k. %D %3D Consider that the BJT is operating in active region. i. Find gm, Tn, le- [le =' ii. Sketch the AC equivalent circuit and the simplify it.. . i. Sketch the small signal equivalent circuit replacing the BJT with one of the small signal -VEE-VBE Rp+(1+B)[RE1+RE2l models iv. Determine the expression for v and vo. v. Determine the expression for Rib, R, A, and their respective values V c Rc C vo R$ C RL Vs RB RE1 Fig.3 RE2 C R Rib V EE ww

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Here X=0, Y=2
For the circuit shown in Fig.3, B = (100 + 3X), R2 = (300 + Y + X)k, Rc =
(5.2 + 0. YX)k, REı = (0.8 + 0.0X)k, RE2 = (1.1 + 0.0Y)k, Vcc =
(6+)v, VEE = - (6+)V,R, = 100k.
%3D
Consider that the BJT is operating in active region.
i. Find gm, Tn, re-. [IB =
ii. Sketch the AC equivalent circuit and the simplify it..,
ii. Sketch the small signal equivalent circuit replacing the BJT with one of the small signal
-VEE-VBE
RB+(1+B)[RE1+RE2l
models
iv. Determine the expression for v; and vo.
v. Determine the expression for Rib, Ri, A, and their respective values
V cc
Rc
vo
Rs
C
vi
RL
vs
RB
3 RE1
Fig.3
{ REz
Rib VEE
ww
Transcribed Image Text:Here X=0, Y=2 For the circuit shown in Fig.3, B = (100 + 3X), R2 = (300 + Y + X)k, Rc = (5.2 + 0. YX)k, REı = (0.8 + 0.0X)k, RE2 = (1.1 + 0.0Y)k, Vcc = (6+)v, VEE = - (6+)V,R, = 100k. %3D Consider that the BJT is operating in active region. i. Find gm, Tn, re-. [IB = ii. Sketch the AC equivalent circuit and the simplify it.., ii. Sketch the small signal equivalent circuit replacing the BJT with one of the small signal -VEE-VBE RB+(1+B)[RE1+RE2l models iv. Determine the expression for v; and vo. v. Determine the expression for Rib, Ri, A, and their respective values V cc Rc vo Rs C vi RL vs RB 3 RE1 Fig.3 { REz Rib VEE ww
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