Design of an AC-AC Converter. The Circuit Below shows a single-phase AC voltage controller with a, a 20:1 step down transformer. The delay angle of thyristor is 45 degrees. The Load is chosen according to the Following: RL= (20 + 0.2 * 17) Q L1 = (50- 0.2 * 17) mH mH Calculate the Following: D2 D1 V1 L1 120Vrms C1 60HZ 0° RL

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a) The total Impedance of the Load
b) The Load Angle
c) Determine the extinction angle of the Thyristors.
d) Sketch the expected waveform of the output.
e) Calculate the Root Mean Squared Value of the Load Voltage
f)
Calculate the Power Factor at the Load
g) Design C1 such that it will reduce the Third Harmonic Current to 15% of the value without a filter Capacitor.
Transcribed Image Text:a) The total Impedance of the Load b) The Load Angle c) Determine the extinction angle of the Thyristors. d) Sketch the expected waveform of the output. e) Calculate the Root Mean Squared Value of the Load Voltage f) Calculate the Power Factor at the Load g) Design C1 such that it will reduce the Third Harmonic Current to 15% of the value without a filter Capacitor.
Design of an AC-AC Converter.
The Circuit Below shows a single-phase AC voltage controller with a, a 20:1 step down transformer. The delay angle of thyristor is 45
degrees. The Load is chosen according to the Following:
RL= (20 + 0.2 * 17) Q
Ω
L1 = (50- 0.2 * 17) mH
mH
%D
Calculate the Following:
D2
D1
V1
L1
120Vrms
C1
60HZ
0°
RL
Transcribed Image Text:Design of an AC-AC Converter. The Circuit Below shows a single-phase AC voltage controller with a, a 20:1 step down transformer. The delay angle of thyristor is 45 degrees. The Load is chosen according to the Following: RL= (20 + 0.2 * 17) Q Ω L1 = (50- 0.2 * 17) mH mH %D Calculate the Following: D2 D1 V1 L1 120Vrms C1 60HZ 0° RL
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