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ECE3161 Analogue Electronics - MUM S2 2025

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Q1. Find the output waveform

If the input to the ideal op-amp circuit below is A\text{sin}(\omega t)+ B\text{cos}(2 \omega t)A\text{sin}(\omega t)+ B\text{cos}(2 \omega t) where AA and BB are constants, and \omega\omega is the angular frequency, what is the output waveform?

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Q8. Find the small signal gain 

For the biased transistor below, find the small signal gain v_o/v_iv_o/v_i. The JFET has I_{\text{DSS}} = 15 I_{\text{DSS}} = 15 mA and V_{\text{GS(off)}}=-3V_{\text{GS(off)}}=-3V. Assume all three capacitors to be very large, so can be considered short circuited for signals. 

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Q10. Find the input and output impedance

For the biased transistor below, find the input impedance Z_iZ_i, and the output impedance Z_oZ_o.

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Q9. Find the output impedance of the biased NMOS

For the biased NMOS transistor below, find the output impedance, Z_oZ_o. The NMOS has V_t=2V_t=2V, and it carries drain current of 50mA when V_{GS} = 5V_{GS} = 5V. Assume all three capacitors to be very large, so can be considered short circuited for signals. 

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Q5. Find the small signal gain 

For the biased transistor below, find the small signal gain v_o/v_iv_o/v_i. The NMOS has V_t = 0.8V_t = 0.8V and  V_A = 20 V_A = 20V. Assume all three capacitors to be very large, so can be considered short circuited for signals. 

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Q6. Find the small signal gain 

For the biased transistor below, find the small signal gain v_o/v_iv_o/v_i. Assume all capacitors to be very large, so can be considered short circuited for signals. 

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Q4. Find the input impedance

For the two transistor circuit given below, find the input impedance Z_iZ_i.

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Q7. Find the small signal gain 

For the biased transistor below, find the small signal gain v_o/v_iv_o/v_i. Assume all three capacitors to be very large, so can be considered short circuited for signals. 

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Q2. Find the small signal gain and input impedance

For the biased transistor below, find the small signal gain v_o/v_iv_o/v_i and the input impedance Z_iZ_i. The NMOS has V_t = 0.4V_t = 0.4V and V_A = 10V_A = 10V. Assume all three capacitors to be very large, so can be considered short circuited for signals. 

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Q3. Find the small signal gain and input impedance

For the biased transistor below, find the small signal gain v_o/v_iv_o/v_i and the input impedance Z_iZ_i. Take VT=26mV.

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