In the circuit shown in the figure, Rs = 1.88Kohm, R1 = 1201.67Kohm, R2 = 5.72Kohm, R3 = 59.80Kohm, R4 = 15.44Kohm, R5 = 3.15Kohm, R6 = 1.05Kohm, Ry 94.19Kohm, VCC1 = 11.00V, VCC2 = 10.00V, Beta1= 126.00, Beta2= 248.00, VT = 25mV, VBE| = 0.7V and OPAMP is ideal, calculate the absolute value of the voltage gain (IVO/VS|) of the circuit relative to the source (The result will be positive).

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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VCC2
VCC1
Ry
SR5
R3
C4
VO
PR2
R1
C2
Q2
C5
Q1
Rs
C1
R4
vs
U1
R6
Transcribed Image Text:VCC2 VCC1 Ry SR5 R3 C4 VO PR2 R1 C2 Q2 C5 Q1 Rs C1 R4 vs U1 R6
In the circuit shown in the figure, Rs = 1.88Kohm, R1 = 1201.67Kohm, R2 = 5.72Kohm, R3 =
59.80Kohm, R4 = 15.44Kohm, R5 = 3.15Kohm, R6 = 1.05Kohm, Ry 94.19Kohm, VCC1 = 11.00V,
%3D
VCC2 = 10.00V, Beta1= 126.00, Beta2= 248.00, VT = 25mV, IVBE| = 0.7V and OPAMP is ideal,
calculate the absolute value of the voltage gain (IVO/VS|) of the circuit relative to the source (The
%3D
result will be positive).
Transcribed Image Text:In the circuit shown in the figure, Rs = 1.88Kohm, R1 = 1201.67Kohm, R2 = 5.72Kohm, R3 = 59.80Kohm, R4 = 15.44Kohm, R5 = 3.15Kohm, R6 = 1.05Kohm, Ry 94.19Kohm, VCC1 = 11.00V, %3D VCC2 = 10.00V, Beta1= 126.00, Beta2= 248.00, VT = 25mV, IVBE| = 0.7V and OPAMP is ideal, calculate the absolute value of the voltage gain (IVO/VS|) of the circuit relative to the source (The %3D result will be positive).
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