Analyze the circuit in Figure Q2 at high frequency by calculating the fĦ fHo» fg and fr. Sketch the frequency response for the high-frequency region using a Bode Plot. Then determine the cutoff frequency and the gain-bandwidth product of the amplifier. Given: Rs = 0.82kN, R, = 68kN, R2 = 10kſN, Rc = 5.6kfN, Rg = 1.2kN, R̟ = 3.3kN Cs = 0.47µF, Cc = 0.47µF,Cg = 20µF ß = 120, r, = c∞ N, Vcc = 14 V Cw, = 5pF, Cw, = 8p, Cpe = 12pF, Cpe = 40pF, Cce = 8pF

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Analyze the circuit in Figure Q2 at high frequency by calculating the f#, fH,»fg and fr-
Sketch the frequency response for the high-frequency region using a Bode Plot. Then
determine the cutoff frequency and the gain-bandwidth product of the amplifier. Given:
Rs = 0.82kN, R, = 68kN, R2 = 10kN, Rc = 5.6kN, Rg = 1.2kN, R̟ = 3.3kN
Cs = 0.47µF,Cc = 0.47µF,Cg = 20µF
B = 120, r, = 0 N, Vcc = 14 V
%3D
Cw = 5pF, Cw, = 8pF, Cpc = 12PF, Cpe = 40pF, Cce = 8pF
%3D
Vcc
Rc
Cbc
Cc
Vo
Vi
C,
Cce
R,
Cwo
R2 Cwi
Cbe
RE «
Figure Q2
Transcribed Image Text:Analyze the circuit in Figure Q2 at high frequency by calculating the f#, fH,»fg and fr- Sketch the frequency response for the high-frequency region using a Bode Plot. Then determine the cutoff frequency and the gain-bandwidth product of the amplifier. Given: Rs = 0.82kN, R, = 68kN, R2 = 10kN, Rc = 5.6kN, Rg = 1.2kN, R̟ = 3.3kN Cs = 0.47µF,Cc = 0.47µF,Cg = 20µF B = 120, r, = 0 N, Vcc = 14 V %3D Cw = 5pF, Cw, = 8pF, Cpc = 12PF, Cpe = 40pF, Cce = 8pF %3D Vcc Rc Cbc Cc Vo Vi C, Cce R, Cwo R2 Cwi Cbe RE « Figure Q2
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