Q.2 For a BJT amplifier circuit shown in Figure C.2, given ß = 150, VBE = 0.7 V, Vr = 26 mV and VA= 0. Vcc =+ 12 V Rc R1 15 k2 2.2 ka Ice! 10 µF VCEQ RL 5 kn 100 µF Rs 1 kn R2 4.7 k2 Vi RE 1 k2 Z....


Q.2 For a BJT amplifier circuit shown in Figure C.2, given ß = 150, VBE = 0.7 V, Vr = 26<br>mV and VA= 0.<br>Vcc =+ 12 V<br>Rc<br>R1<br>15 k2<br>2.2 ka<br>Ice!<br>10 µF<br>VCEQ<br>RL<br>5 kn<br>100 µF<br>Rs<br>1 kn<br>R2<br>4.7 k2<br>Vi<br>RE<br>1 k2<br>Z.<br>Figure C.2<br>O Show that Icq = 2.1 mA and VcEQ = 5.3 V<br>

Extracted text: Q.2 For a BJT amplifier circuit shown in Figure C.2, given ß = 150, VBE = 0.7 V, Vr = 26 mV and VA= 0. Vcc =+ 12 V Rc R1 15 k2 2.2 ka Ice! 10 µF VCEQ RL 5 kn 100 µF Rs 1 kn R2 4.7 k2 Vi RE 1 k2 Z. Figure C.2 O Show that Icq = 2.1 mA and VcEQ = 5.3 V

Jun 11, 2022
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