* Consider following Circuit with following Component Values RE - Re = IkA, Rg = 100d, g- looms, B-loo. Vec RE Vout Q, a. ApPly Miller's theorem to the Circuit S. tbat R is Converted to shunt resistors . Obtain the Vottage gain, input impedance and output impedance assuming UA= B0, RE is large enough to allow the approximation Vout/Vx = - Jm Re. b. Assume that G = lo0 fF is added in parallel with RF. obtain input and autput pole treguencies in the unit of Hz. Ci.e. oltain fu C-Win/2x) and foot (- Wout /2x )

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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* Consider following Circuit with following Component Values : RE - Re = Ike, Ro = 100d, Jom = l00mS,
B - l00
Rc
RE
Vout
Re
Vin
Q.
a. Apply Miller's theorem to the Circuit S. tbat R is Converted to shunt resistors . Obtain the Vottage gain, input impedance
and output impedance assuming UA= D0, R# is large enough to allow the approximation Vout/vx = - Jm Re .
b. Assume that G = lo0 fF is added in parallel with RF. obtain input and output pole treguencies in the unit of Hz.
Ci.e. oltain fin (=- Din/2x ) and fout (- Wout /2n )
Transcribed Image Text:* Consider following Circuit with following Component Values : RE - Re = Ike, Ro = 100d, Jom = l00mS, B - l00 Rc RE Vout Re Vin Q. a. Apply Miller's theorem to the Circuit S. tbat R is Converted to shunt resistors . Obtain the Vottage gain, input impedance and output impedance assuming UA= D0, R# is large enough to allow the approximation Vout/vx = - Jm Re . b. Assume that G = lo0 fF is added in parallel with RF. obtain input and output pole treguencies in the unit of Hz. Ci.e. oltain fin (=- Din/2x ) and fout (- Wout /2n )
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