The operational amplifier in the circuit in the figure is ideal. 400 pF HE 1.6 nF 125 kfN HE 250 kN Vcc -Vcc Vo a) Find the numerical expression for the transfer function H(s) = Vo/Vg- b) Give the mumerical value of each zero and pole of H(s).
The operational amplifier in the circuit in the figure is ideal. 400 pF HE 1.6 nF 125 kfN HE 250 kN Vcc -Vcc Vo a) Find the numerical expression for the transfer function H(s) = Vo/Vg- b) Give the mumerical value of each zero and pole of H(s).
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Transcribed Image Text:The operational amplifier in the circuit in the figure is ideal.
400 pF
HE
1.6 nF
125 kn
250 kN
Vcc
-Vcc
a) Find the numerical expression for the transfer function H(s) = Vo/Vg-
b) Give the numerical value of each zero and pole of H(s).
-10 (8 + 5000)
s(8 + 2000)
a) H(s) =
b) zz - -5000 rad/s, p1-O rad/s, p2 - -25000 rad/s
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