The network in Figure 1 has following specifications: B = 150, Cbc = 2.1 pF, Cbe = 23.4 pF, Cce = 2 pF, Cwo= 8 pF, Cwi = 6pF. Assume the output ac resistance ro = o. a) Calculate the low cut-off frequency for each of the coupling (Cs, Cc) and bypass (CE) capacitor and identify the dominant cut-off frequency. b) Calculate the high cut-off frequencies, FHi and FHO and determine the dominant high cut-off frequency.

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+Vcc
오 10 V
10 ka 3.6 kN
Сс
2.2 uF
Vout
Cs
HE
RG
0.47 uF
600N
HE
2N39D4
10 k2
VG
·2.2 kΩ
CE
10 uF
1 k2
RE
Figure 1
The network in Figure 1 has following specifications: ß = 150, Cbc = 2.1 pF, Cbe = 23.4
pF, Cce = 2 pF, Cwo=8 pF, Cwi = 6pF. Assume the output ac resistance ro = co0.
a) Calculate the low cut-off frequency for each of the coupling (Cs, Cc) and bypass (CE)
capacitor and identify the dominant cut-off frequency.
b) Calculate the high cut-off frequencies, FHi and FHO and determine the dominant high
cut-off frequency.
Transcribed Image Text:+Vcc 오 10 V 10 ka 3.6 kN Сс 2.2 uF Vout Cs HE RG 0.47 uF 600N HE 2N39D4 10 k2 VG ·2.2 kΩ CE 10 uF 1 k2 RE Figure 1 The network in Figure 1 has following specifications: ß = 150, Cbc = 2.1 pF, Cbe = 23.4 pF, Cce = 2 pF, Cwo=8 pF, Cwi = 6pF. Assume the output ac resistance ro = co0. a) Calculate the low cut-off frequency for each of the coupling (Cs, Cc) and bypass (CE) capacitor and identify the dominant cut-off frequency. b) Calculate the high cut-off frequencies, FHi and FHO and determine the dominant high cut-off frequency.
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