Answer: a Explanation: The TRIAC is a bidirectional SCR.
Answer: a
Explanation: The TRIAC is a bidirectional SCR.
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Answer: a Explanation: The TRIAC is a bidirectional SCR.
Answer: a
Explanation: The TRIAC is a bidirectional SCR.
Answer: a Explanation: The TRIAC is a bidirectional SCR.
Answer: a
Explanation: The TRIAC is a bidirectional SCR.
Answer: a Explanation: The TRIAC is a bidirectional SCR.
Answer: a
Explanation: The TRIAC is a bidirectional SCR.
Answer: c Explanation: Unlike the other devices the SUS only turns-on for a fixed value of anode to cathode voltage.
Answer: c
Explanation: Unlike the other devices the SUS only turns-on for a fixed value of anode to cathode voltage.
Answer: b Explanation: The device only starts to conduct when the forward anode to cathode voltage exceeds the applied gate to cathode voltage.
Answer: b
Explanation: The device only starts to conduct when the forward anode to cathode voltage exceeds the applied gate to cathode voltage.
Answer: b Explanation: The total current would be I1+I2 & rated current is 2I1 String efficiency = (I1+I2)/2I1.
Answer: b
Explanation: The total current would be I1+I2 & rated current is 2I1
String efficiency = (I1+I2)/2I1.
Answer: c Explanation: In the press-pak type the device is pressed or clamped between two heat-sinks & external pressure is applied from both the sides.
Answer: c
Explanation: In the press-pak type the device is pressed or clamped between two heat-sinks & external pressure is applied from both the sides.
Answer: b Explanation: String Efficiency = Rating of the whole string/(rating of one SCR x number of SCRs)
Answer: b
Explanation: String Efficiency = Rating of the whole string/(rating of one SCR x number
of SCRs)
Answer: b Explanation: Number of devices connected in parallel can carry huge amounts of current.
Answer: b
Explanation: Number of devices connected in parallel can carry huge amounts of current.
Answer: a Explanation: The TRIAC is a bidirectional SCR.
Answer: a
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