For the circuit shown, use R1=7MQ,R2=15M, Rs=2.9k 2, RD=5.9k, RL=1k , Rsig=1k and VDD=10V, K'n=0.55mA/v2, (W/L)=30, Vth=2V, gm-7.755mA/V For Saturation Region, ID=1.5mA: 1-Draw the DC equivalent circuit. 2-Find the required parameter for the AC small signal model. 3-Draw the small signal model 4-Find the input impedance. 5-Find the output impedance. 6-Calculate the gain. gm=7.755mA/V, VGS= 2.47V,Av=-6.63, Zin=4.77M, Zout=5.9k R₂ =

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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For the circuit shown, use R1=7M2,R2=15M2,
Rs=2.9k 2, RD=5.9kN, RL=1k , Rsig=1k and
VDD=10V, K'n=0.55mA/v2, (W/L)=30, Vth=2V,
gm=7.755mA/V
For Saturation Region, ID=1.5mA:
1-Draw the DC equivalent circuit.
2-Find the required parameter for the AC small
signal model.
3-Draw the small signal model
4-Find the input impedance.
5-Find the output impedance.
6-Calculate the gain.
gm=7.755mA/V, VGS= 2.47V,Av=-6.63, Zin=4.77M, Zout=5.9k
Caminight @ Amariean Calloan of the li
VOO
If
w
Hi
= =
L
5.
Hl
=
-0%
%
Transcribed Image Text:For the circuit shown, use R1=7M2,R2=15M2, Rs=2.9k 2, RD=5.9kN, RL=1k , Rsig=1k and VDD=10V, K'n=0.55mA/v2, (W/L)=30, Vth=2V, gm=7.755mA/V For Saturation Region, ID=1.5mA: 1-Draw the DC equivalent circuit. 2-Find the required parameter for the AC small signal model. 3-Draw the small signal model 4-Find the input impedance. 5-Find the output impedance. 6-Calculate the gain. gm=7.755mA/V, VGS= 2.47V,Av=-6.63, Zin=4.77M, Zout=5.9k Caminight @ Amariean Calloan of the li VOO If w Hi = = L 5. Hl = -0% %
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