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ECE3161 Analogue Electronics - MUM S2 2025

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Q3. Find the closed loop gain

Consider the integrator shown below with finite loop gain A_0A_0 , and output resistance R_{out}R_{out} as shown below. Find the closed loop gain v_{out}/v_{in}v_{out}/v_{in}.

 

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Q2. Find the closed loop gain and input impedance

A non-inverting amplifier employs an op-amp with a finite loop gain A_0A_0 , and input resistance R_{in}R_{in} as shown below. Find the closed loop gain v_{out}/v_{in}v_{out}/v_{in} and input impedance.

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Q1. Find the closed loop gain and output impedance

A non-inverting amplifier employs an op-amp with a finite loop gain A_0A_0 , and output impedance R_{\text{out}}R_{\text{out}}, as shown below. Find the closed loop gain v_{out}/v_{in}v_{out}/v_{in} and output impedance.

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Q8. Find the output waveform

If the op-amp below has the following frequency response \frac{A_0}{(1+\frac{s}{\omega_0})}\frac{A_0}{(1+\frac{s}{\omega_0})} for its differential gain, determine the output waveform v_{out}(s)v_{out}(s). Here ss is the Laplace variable. 

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Q6.10: Are the load currents similar or significantly different when the load resistor was changed from 100Ω to 50 Ω (Yes/No)?

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