Estimate the upper 3-dB cut-off frequency fH using the Miller's Theorem and Sum-of-Squares formula. Note that, all high frequency zeros are at infinity.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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| Voo
VoD=10 V Vss=-10 V
R=359 kn R2=350 kn
R3=291 kn R3=10 kn
Rsie=4 kn Rp=3 ko
R=20 ko C;=10 nF
C2=1 uF
C4=3.6 µF C=1 pF
R
Rp
C,
Vout
C,
M2
R2
C3=6.9 µF
Rsig
M,
M1
— М2 рarameters:
K=2.4 mA/V2
VTN=2 V
Cg=4 pF
R3
Vsig
Rs
A=0 V1
Cga=1 pF
Vss
For the multi-stage amplifier shown in the figure, vsig is an AC voltage
source.
Estimate the upper 3-dB cut-off frequency fy using the Miller's Theorem
and Sum-of-Squares formula. Note that, all high frequency zeros are at
infinity.
w
Transcribed Image Text:| Voo VoD=10 V Vss=-10 V R=359 kn R2=350 kn R3=291 kn R3=10 kn Rsie=4 kn Rp=3 ko R=20 ko C;=10 nF C2=1 uF C4=3.6 µF C=1 pF R Rp C, Vout C, M2 R2 C3=6.9 µF Rsig M, M1 — М2 рarameters: K=2.4 mA/V2 VTN=2 V Cg=4 pF R3 Vsig Rs A=0 V1 Cga=1 pF Vss For the multi-stage amplifier shown in the figure, vsig is an AC voltage source. Estimate the upper 3-dB cut-off frequency fy using the Miller's Theorem and Sum-of-Squares formula. Note that, all high frequency zeros are at infinity. w
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