Apply the knowledge gained from the ac analysis of BJT to construct the AC equivalent model of the circuit shown in Fig. 1 and calculate Z, and Ar. Given, ß = ( 690) and re = 69 ko. Vcc = 20 V Rp 4.7 k2 220 k2 Ve O V½=12 V Cc V I pss=6 mA Cc Vp=-3 V 1 MQ 56 kQ Rs 2.2 k2 CE Tie HE

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Apply the knowledge gained from the ac analysis of BJT to construct the AC equivalent model of the circuit shown in Fig. 1 and calculate Zo and Av. Given, β = ( 690)  and ro = 69 kΩ

Apply the knowledge gained from the ac analysis of BJT to construct the AC equivalent model of the circuit
shown in Fig. 1 and calculate Za and Ar. Given, B = ( 690) and re = 69 ko.
Vcc = 20 V
VDD
RD
4.7 k2
220 k2
Vc
o V½= 12 V
Cc
I pss =6 mA
Vp=-3 V
Cc
1 MO
• 56 k2
R$
2.2 k2
CE
Fig. 2
Fig. 1
Transcribed Image Text:Apply the knowledge gained from the ac analysis of BJT to construct the AC equivalent model of the circuit shown in Fig. 1 and calculate Za and Ar. Given, B = ( 690) and re = 69 ko. Vcc = 20 V VDD RD 4.7 k2 220 k2 Vc o V½= 12 V Cc I pss =6 mA Vp=-3 V Cc 1 MO • 56 k2 R$ 2.2 k2 CE Fig. 2 Fig. 1
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