01: Answer three of the following: An amplifier with input resistance -5k, output resistance-1k2, and Bandwidth=50kHz, If a voltage-shunt feedback is applied with D-10, what are the new values of Rinf, Rof, and Baf. Given an active RC-integrator ( R-140 C-100nF), the input applied is

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Q1: Answer three of the following:
1- An amplifier with input resistance -5kn, output resistance=1k2, and
Bandwidth=50kHz, If a voltage-shunt feedback is applied with D-10, what are the
new values of Rinf, Rof, and Baf.
2- Given an active RC-integrator (R-1k2, C-100nF), the input applied is
V-2sin62821, calculate the output voltage and plot the input and output waveforms
on the same axes.
3- For the inverting amplifier in fig(1), assume ideal op-amp, what is the input
resistance and what is the type of feedback topology.
4- If the op-amp is biased from ±10v in fig(1), plot the input and output waveforms on
the same axes for a sinusoidal input signal when V-Ivolt, and when V₁-3volt.
fig(1)
Please send the solution
as soon as possible
Vs
Rins
R1
2kohm
10kohm
Transcribed Image Text:Q1: Answer three of the following: 1- An amplifier with input resistance -5kn, output resistance=1k2, and Bandwidth=50kHz, If a voltage-shunt feedback is applied with D-10, what are the new values of Rinf, Rof, and Baf. 2- Given an active RC-integrator (R-1k2, C-100nF), the input applied is V-2sin62821, calculate the output voltage and plot the input and output waveforms on the same axes. 3- For the inverting amplifier in fig(1), assume ideal op-amp, what is the input resistance and what is the type of feedback topology. 4- If the op-amp is biased from ±10v in fig(1), plot the input and output waveforms on the same axes for a sinusoidal input signal when V-Ivolt, and when V₁-3volt. fig(1) Please send the solution as soon as possible Vs Rins R1 2kohm 10kohm
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