The DC biasing circuit of a BJT amplifier circuit is shown in Fig. Q7. The BJT Qi has ß = 75 and the collector voltage is required to be Vc = 7 V. IA= 20 μA↓ VDD = 10 V R₁₁ = 4 ΚΩ Cin Vin R₂ = 640 ΚΩ Fig. Q7 Vout R3 = 17.5 ΚΩ (a) What mode of operation should the BJT Q₁ be in for the circuit to work as an amplifier? (b) Assuming the Early effect is negligible, calculate the base, collector, and emitter currents of the BJT Q₁. (c) Calculate the voltages at the base and emitter terminals of the BJT Q and show whether the BJT Qi is working in the desired operation mode.

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The DC biasing circuit of a BJT amplifier circuit is shown in Fig. Q7. The BJT Qi has
ß = 75 and the collector voltage is required to be Vc = 7 V.
IA=
20 μA↓
VDD = 10 V
R₁₁ =
4 ΚΩ
Cin
Vin
R₂ =
640 ΚΩ
Fig. Q7
Vout
R3 =
17.5 ΚΩ
(a) What mode of operation should the BJT Q₁ be in for the circuit to work as an
amplifier?
(b) Assuming the Early effect is negligible, calculate the base, collector, and emitter
currents of the BJT Q₁.
(c) Calculate the voltages at the base and emitter terminals of the BJT Q and show
whether the BJT Qi is working in the desired operation mode.
Transcribed Image Text:The DC biasing circuit of a BJT amplifier circuit is shown in Fig. Q7. The BJT Qi has ß = 75 and the collector voltage is required to be Vc = 7 V. IA= 20 μA↓ VDD = 10 V R₁₁ = 4 ΚΩ Cin Vin R₂ = 640 ΚΩ Fig. Q7 Vout R3 = 17.5 ΚΩ (a) What mode of operation should the BJT Q₁ be in for the circuit to work as an amplifier? (b) Assuming the Early effect is negligible, calculate the base, collector, and emitter currents of the BJT Q₁. (c) Calculate the voltages at the base and emitter terminals of the BJT Q and show whether the BJT Qi is working in the desired operation mode.
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