Consider the configuration given in Figure 1 having input Q.1. voltage V= 50 mV. (a) a, b and c. Calculate the output voltage and plot the voltages at point (b) value changes from 6k2 to 20kQ. (c)...

Subject Electronics
Consider the configuration given in Figure 1 having input<br>Q.1.<br>voltage V= 50 mV.<br>(a)<br>a, b and c.<br>Calculate the output voltage and plot the voltages at point<br>(b)<br>value changes from 6k2 to 20kQ.<br>(c)<br>What happens to the output voltage if the load resistor<br>What happens to the voltage gain if R becomes short circuit<br>(d)<br>Draw the low and high frequency equivalent circuit and<br>explain the frequency response<br>frequencies.<br>for<br>low<br>and high<br>24 V<br>4.3 k2<br>560 k2<br>10 μF<br>b<br>V.<br>10 μF<br>a<br>B = 80<br>C<br>+<br>1 k2<br>RL 26 k2<br>

Extracted text: Consider the configuration given in Figure 1 having input Q.1. voltage V= 50 mV. (a) a, b and c. Calculate the output voltage and plot the voltages at point (b) value changes from 6k2 to 20kQ. (c) What happens to the output voltage if the load resistor What happens to the voltage gain if R becomes short circuit (d) Draw the low and high frequency equivalent circuit and explain the frequency response frequencies. for low and high 24 V 4.3 k2 560 k2 10 μF b V. 10 μF a B = 80 C + 1 k2 RL 26 k2

Jun 11, 2022
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