For the circuit shown below, find the total current and the voltage of the resistor R. vi=1020 R=100, C= 0.47 uF, frequency f = 1 kHz L= 300 mH L Vi 0 HH R
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- The value of Ai is . . NOTE: When the output is taken from the collector terminal of the transistor as shown in Figure O 85.613 O 78.613 65.613 81.613 89.613 71.613 The value of Zo is .. . ohm. . * 12.897 8.897 6.897 4.897 9.897 O 3.897 The value of Av is .. NOTE: When the output is taken from the collector terminal of the transistor as shown in Figure -17.597 -14.597 -19.597 -21.597 -8.597 -11.597 O O O O O O O O O OPlot the output voltage of the following circuit, explain your procedure step by step R1 01 1002 V1 D1 7Vrms |60HZ A@2v ref(a) An AC triangular waveform with peak values of ±2V is used as an input to a comparator. The outputs of the comparator are VOH=+5V, VOL=-5V 4 Draw a waveform of the output of the comparator when an inverting circuit in Figure 5 is used. (i) Vi - 20 Vo 20 60 Figure 5
- Q1) What type of signal does the circuit in Figure produce? Determine the frequency of the output. Show how to change the frequency of oscillation in Figure to 10 kHz? Choose the capacitor with value=1name's of zeros pF. C R1 22 ΚΩ oV out R2 56 kN R3 18 k2Calculate circuit values below. How does the total circuit impedence change as the frequency increases from 500 HZ to 50 Khz? How does the total current change as those frequencies increase?1.Using the simulator of your choice simulate and screenshot the output voltage wave form for each circuit. +50 V R +5 V Vin Vout R- 47 0 3.3 kN Vin V out -50 V -5 V B A