Design a series resonant circuit with an input source voltage of 1020° V to have the following specifications: -Peak current of 800 mA at resonance -Bandwidth of 120 Hz -Resonant frequency of 8400 H ** After determining the values of the circuit elements theoretically, construct the circuit with the resistors, inductors and capacitors that are available practically. Calculate the Peak current at resonance, Bandwidth and Resonant frequency again considering the practical circuit.

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Practically available means, the elements that can be found actually in the market. For example, if in the theoretical calculation your resistor value comes 5K which is not available in the laboratories you have to adjust it with a reasonable one available and again do the calculation which is now the practical calculation.

Design a series resonant circuit with an input source voltage of 1020° V to have the following
specifications:
-Peak current of 800 mA at resonance
-Bandwidth of 120 Hz
-Resonant frequency of 8400 H
** After determining the values of the circuit elements theoretically, construct the circuit with the
resistors, inductors and capacitors that are available practically. Calculate the Peak current at
resonance, Bandwidth and Resonant frequency again considering the practical circuit.
Transcribed Image Text:Design a series resonant circuit with an input source voltage of 1020° V to have the following specifications: -Peak current of 800 mA at resonance -Bandwidth of 120 Hz -Resonant frequency of 8400 H ** After determining the values of the circuit elements theoretically, construct the circuit with the resistors, inductors and capacitors that are available practically. Calculate the Peak current at resonance, Bandwidth and Resonant frequency again considering the practical circuit.
Expert Solution
Step 1

Given:

Input source voltage, V=100°

Peak current, I=800mA

Bandwidth, B.W.=120Hz

Resonant frequency, fr=8400Hz

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