4. Vcc 3 V, R₁=100 2, R4=300 2, Rs=1.8 k, R6=400 2, RL=1 k, IE1=ID2=ID3=1 mA, ẞF=100, VBE=0.7 V, VA=10 V, VT=26 mV, kn2=kn3=50 mA/V2, V=0.6 V, λ=0.1 V-1 is given for the circuit shown below. All transistors are working in the correct operating region. a) Calculate R2, R3, and R7. Assume λ=0. b) Calculate vo / Us, Ri and Ro. Coo R1 Vs WH له R₁ R2 w -Vcc F ww www R5 M3 R3 Coo vo M2 RL RT R6 Coo Ro R4

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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4. Vcc 3 V, R₁=100 2, R4=300 2, Rs=1.8 k, R6=400 2, RL=1 k, IE1=ID2=ID3=1 mA, ẞF=100,
VBE=0.7 V, VA=10 V, VT=26 mV, kn2=kn3=50 mA/V2, V=0.6 V, λ=0.1 V-1 is given for the circuit
shown below. All transistors are working in the correct operating region.
a) Calculate R2, R3, and R7. Assume λ=0.
b) Calculate vo / Us, Ri and Ro.
Coo
R1
Vs WH
له
R₁
R2
w
-Vcc
F
ww
www
R5
M3
R3
Coo
vo
M2
RL
RT
R6
Coo
Ro
R4
Transcribed Image Text:4. Vcc 3 V, R₁=100 2, R4=300 2, Rs=1.8 k, R6=400 2, RL=1 k, IE1=ID2=ID3=1 mA, ẞF=100, VBE=0.7 V, VA=10 V, VT=26 mV, kn2=kn3=50 mA/V2, V=0.6 V, λ=0.1 V-1 is given for the circuit shown below. All transistors are working in the correct operating region. a) Calculate R2, R3, and R7. Assume λ=0. b) Calculate vo / Us, Ri and Ro. Coo R1 Vs WH له R₁ R2 w -Vcc F ww www R5 M3 R3 Coo vo M2 RL RT R6 Coo Ro R4
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