For the circuit shown in Figure 6.17, calculate the following: (a) the frequency of oscillation (b) the value of R3 that will produce the purest sine wave output (c) the value of C that must be...


For the circuit shown in Figure 6.17, calculate the following:<br>(a) the frequency of oscillation<br>(b) the value of R3 that will produce the purest sine wave output<br>(c) the value of C that must be connected in series with the 0.08H inductor so<br>that the frequency of oscillation can be made equal to 10kHz<br>RF COIL<br>R2<br>+Vcc<br>0.05µF<br>R1<br>0.08H<br>R3<br>RCOIL = 1KA<br>re = 250<br>Q = 8<br>0.5µF<br>Figure 6.17<br>

Extracted text: For the circuit shown in Figure 6.17, calculate the following: (a) the frequency of oscillation (b) the value of R3 that will produce the purest sine wave output (c) the value of C that must be connected in series with the 0.08H inductor so that the frequency of oscillation can be made equal to 10kHz RF COIL R2 +Vcc 0.05µF R1 0.08H R3 RCOIL = 1KA re = 250 Q = 8 0.5µF Figure 6.17

Jun 11, 2022
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