Question # 01: 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 A,. Given, B = (76 × 10) and ro = 76 kN. %3D VDD 16 V RD 4.7 kN 430 kΩ O Vp= 10 V Ipss= 12 mA Vp=-8 V 1 ΜΩ Rs 120 kN 1.2 kn Fig. 2 Fig. 1 Question # 02: Apply the knowledge gained from the DC biasing of JFET to select appropriate values of Rp and Rs of the circuit shown in Fig. 2, assuming VDD = (76 ÷ 5) +10 V, IDQ = 76 ÷ 20) mA.

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Question # 01: 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 Ay. Given, B = (76 × 10)
and ro = 76 kN.
16 V
VDD
RD
4.7 kN
430 kN
o Vp = 10 V
V, oHE
Ipss= 12 mA
Vp=-8 V
1 MQ
120 k2
1.2 kN
Rs
Fig. 1
Fig. 2
Question # 02: Apply the knowledge gained from the DC biasing of JFET to select appropriate
values of Rp and Rs of the circuit shown in Fig. 2, assuming VDD = (76 ÷ 5) +10 V, IDQ = 76
÷ 20) mA.
Transcribed Image Text:Question # 01: 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 Ay. Given, B = (76 × 10) and ro = 76 kN. 16 V VDD RD 4.7 kN 430 kN o Vp = 10 V V, oHE Ipss= 12 mA Vp=-8 V 1 MQ 120 k2 1.2 kN Rs Fig. 1 Fig. 2 Question # 02: Apply the knowledge gained from the DC biasing of JFET to select appropriate values of Rp and Rs of the circuit shown in Fig. 2, assuming VDD = (76 ÷ 5) +10 V, IDQ = 76 ÷ 20) mA.
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