Q3 (а) An operational amplifier circuit with voltage series feedback configuration has the following parameters: A = 250, Af = 8, Z¿ = 10 kN, Zof = 2.2 kN Calculate both input impedance with feedback, Zif, and output impedance, Z,, of this circuit. Another operational amplifier with current shunt feedback configuration has similar parameters as in Q3(a), and its attenuation (ß) is 100 times larger than the circuit in Q3(a). Determine the input impedance ratio 4 and gain-bandwidth product with (b) feedback (A,BF) of this circuit.

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Q3
(а)
An operational amplifier circuit with voltage series feedback configuration has the
following parameters:
A = 250, Af = 8,Z¡ = 10 kN, Zof = 2.2 kN
Calculate both input impedance with feedback, Zif, and output impedance, Z,, of this
circuit.
(b)
Another operational amplifier with current shunt feedback configuration has similar
parameters as in Q3(a), and its attenuation (ß) is 100 times larger than the circuit in
Zif
Q3(a). Determine the input impedance ratio
4 and gain-bandwidth product with
feedback (A,BF) of this circuit.
Transcribed Image Text:Q3 (а) An operational amplifier circuit with voltage series feedback configuration has the following parameters: A = 250, Af = 8,Z¡ = 10 kN, Zof = 2.2 kN Calculate both input impedance with feedback, Zif, and output impedance, Z,, of this circuit. (b) Another operational amplifier with current shunt feedback configuration has similar parameters as in Q3(a), and its attenuation (ß) is 100 times larger than the circuit in Zif Q3(a). Determine the input impedance ratio 4 and gain-bandwidth product with feedback (A,BF) of this circuit.
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