Since Vcc 20 V, RS = 6.1 k2, RB = 380 kQ, RC = 1.2 kn, RE = 22 kO, RL = 848 N and B = 90 in the circuit in the figure, find the value of the output voltage (Vo). %3D NOTE-1: It is within the 1 kHz mid-band frequency and the capacitors are negligible at this frequency. NOTE-2: The output impedance of the transistor (ro) will be neglected.

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Since Vcc = 20 V, RS = 6.1 k, RB = 380 ko, RC = 1.2 ko, RE = 2.2 ko, RL = 848 Q and B = 90 in the circuit in the figure, find the value of the output voltage (Vo).
NOTE-1: It is within the 1 kHz mid-band frequency and the capacitors are negligible at this frequency.
NOTE-2: The output impedance of the transistor (r o) will be neglected.
Vcc
RC
RB
RS
Q1
NPN
ideal_opamp
C2
Vi
SINE(OV 50mV 1kHz)
Vo
RE
RL
O a. 24,65 mV
O b. 93,69 mv
O c 34,52 mv
O d. 83.82 mV
O e 64.10 my
O f. 49,31 mV
O g. 103,55 mv
O h. 73,96 mV
Transcribed Image Text:Since Vcc = 20 V, RS = 6.1 k, RB = 380 ko, RC = 1.2 ko, RE = 2.2 ko, RL = 848 Q and B = 90 in the circuit in the figure, find the value of the output voltage (Vo). NOTE-1: It is within the 1 kHz mid-band frequency and the capacitors are negligible at this frequency. NOTE-2: The output impedance of the transistor (r o) will be neglected. Vcc RC RB RS Q1 NPN ideal_opamp C2 Vi SINE(OV 50mV 1kHz) Vo RE RL O a. 24,65 mV O b. 93,69 mv O c 34,52 mv O d. 83.82 mV O e 64.10 my O f. 49,31 mV O g. 103,55 mv O h. 73,96 mV
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