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For the class-B commutation circuit shown beiow, the initial voltage across capacitor is 230 volt. For a constant load current of 300 A, the conduction time for the auxiliary thyristor is approximately equal to
  • a)
    22.60 μs
  • b)
    16.16 μs
  • c)
    31.40 μs
  • d)
    28.80 μs
Correct answer is option 'C'. Can you explain this answer?
Verified Answer
For the class-B commutation circuit shown beiow, the initial voltage a...
Given, L = 5μH, C = 20μF
Resonant frequency,

∴ Conduction time for auxiliary thyristor
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For the class-B commutation circuit shown beiow, the initial voltage across capacitor is 230 volt. For a constant load current of 300 A, the conduction time for the auxiliary thyristor is approximately equal toa)22.60 μsb)16.16 μsc)31.40 μsd)28.80 μsCorrect answer is option 'C'. Can you explain this answer?
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For the class-B commutation circuit shown beiow, the initial voltage across capacitor is 230 volt. For a constant load current of 300 A, the conduction time for the auxiliary thyristor is approximately equal toa)22.60 μsb)16.16 μsc)31.40 μsd)28.80 μsCorrect answer is option 'C'. Can you explain this answer? for Electrical Engineering (EE) 2024 is part of Electrical Engineering (EE) preparation. The Question and answers have been prepared according to the Electrical Engineering (EE) exam syllabus. Information about For the class-B commutation circuit shown beiow, the initial voltage across capacitor is 230 volt. For a constant load current of 300 A, the conduction time for the auxiliary thyristor is approximately equal toa)22.60 μsb)16.16 μsc)31.40 μsd)28.80 μsCorrect answer is option 'C'. Can you explain this answer? covers all topics & solutions for Electrical Engineering (EE) 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for For the class-B commutation circuit shown beiow, the initial voltage across capacitor is 230 volt. For a constant load current of 300 A, the conduction time for the auxiliary thyristor is approximately equal toa)22.60 μsb)16.16 μsc)31.40 μsd)28.80 μsCorrect answer is option 'C'. Can you explain this answer?.
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