For the network of figure below, if the mid- band voltage gain is (-2.47), answer the following: a. Draw the ac equivalant circuit. b. Calculate Ci and Co. d. Determine fH and fHo- e. determine the cutoff frequency. f. Sketch the frequency response for the high-frequency region using a Bode plot. 12 V Cyd = 8 pF 12 pF Cás = 3 pF Cw = 4 pF %3D Cw = 6 pF %3D gs 2.7 k2 10 µF Vo Rig Ipss = 10 mA Vp = -6 V 0.6 k2 10µF Z. RL24.7 kN 1 M2 0.51 k2 20 μF

Introductory Circuit Analysis (13th Edition)
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For the network of figure below, if the mid-
band voltage gain is (-2.47), answer the
following:
a. Draw the ac equivalant circuit.
b. Calculate Ci and Co.
d. Determine fHi and fHo:
e. determine the cutoff frequency.
f. Sketch the frequency response for the
high-frequency region using a Bode plot.
12 V
Cw;
Cgd = 8 pF
C = 12 pF
Cás = 3 pF
4 pF
%3D
Cw, = 6 pF
%3D
%3D
2.7 k2
10 uF
Rsig
Ips
= 10 mA
0.6 k2 10µF
Vp = -6 V
Z. RL
4.7 k2
1 M2
0.51 k2
20 µF
Transcribed Image Text:For the network of figure below, if the mid- band voltage gain is (-2.47), answer the following: a. Draw the ac equivalant circuit. b. Calculate Ci and Co. d. Determine fHi and fHo: e. determine the cutoff frequency. f. Sketch the frequency response for the high-frequency region using a Bode plot. 12 V Cw; Cgd = 8 pF C = 12 pF Cás = 3 pF 4 pF %3D Cw, = 6 pF %3D %3D 2.7 k2 10 uF Rsig Ips = 10 mA 0.6 k2 10µF Vp = -6 V Z. RL 4.7 k2 1 M2 0.51 k2 20 µF
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