Transistors
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365512 The gain of an amplifier without feedback is 90 and the feedback fraction \({\beta}\) is \({\dfrac{1}{10}}\). The gain of the amplifier if negative feedback is introduced is

1 89
2 9
3 8.9
4 900
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365513 Consider an \(pn\) transistor amplifier in common emitter configuration. The current gain of the transistor is 100 . If the collector current changes by \(1\,mA\), what will bet he change in emitter current?

1 \(1.1\,mA\)
2 \(1.01\,mA\)
3 \(0.01\,mA\)
4 \(10\,mA\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365514 If \(\alpha \)- current gain of a transistor is 0.98. What is the value of \(\beta \)- current gain of the transistor?

1 \(4.9\)
2 \(0.49\)
3 \(5\)
4 \(49\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365515 The \(a\) of a transistor is always

1 \( > 1\)
2 \( < 1\)
3 \( = 0\)
4 \({\rm{Negative}}\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365512 The gain of an amplifier without feedback is 90 and the feedback fraction \({\beta}\) is \({\dfrac{1}{10}}\). The gain of the amplifier if negative feedback is introduced is

1 89
2 9
3 8.9
4 900
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365513 Consider an \(pn\) transistor amplifier in common emitter configuration. The current gain of the transistor is 100 . If the collector current changes by \(1\,mA\), what will bet he change in emitter current?

1 \(1.1\,mA\)
2 \(1.01\,mA\)
3 \(0.01\,mA\)
4 \(10\,mA\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365514 If \(\alpha \)- current gain of a transistor is 0.98. What is the value of \(\beta \)- current gain of the transistor?

1 \(4.9\)
2 \(0.49\)
3 \(5\)
4 \(49\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365515 The \(a\) of a transistor is always

1 \( > 1\)
2 \( < 1\)
3 \( = 0\)
4 \({\rm{Negative}}\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365512 The gain of an amplifier without feedback is 90 and the feedback fraction \({\beta}\) is \({\dfrac{1}{10}}\). The gain of the amplifier if negative feedback is introduced is

1 89
2 9
3 8.9
4 900
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365513 Consider an \(pn\) transistor amplifier in common emitter configuration. The current gain of the transistor is 100 . If the collector current changes by \(1\,mA\), what will bet he change in emitter current?

1 \(1.1\,mA\)
2 \(1.01\,mA\)
3 \(0.01\,mA\)
4 \(10\,mA\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365514 If \(\alpha \)- current gain of a transistor is 0.98. What is the value of \(\beta \)- current gain of the transistor?

1 \(4.9\)
2 \(0.49\)
3 \(5\)
4 \(49\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365515 The \(a\) of a transistor is always

1 \( > 1\)
2 \( < 1\)
3 \( = 0\)
4 \({\rm{Negative}}\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365512 The gain of an amplifier without feedback is 90 and the feedback fraction \({\beta}\) is \({\dfrac{1}{10}}\). The gain of the amplifier if negative feedback is introduced is

1 89
2 9
3 8.9
4 900
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365513 Consider an \(pn\) transistor amplifier in common emitter configuration. The current gain of the transistor is 100 . If the collector current changes by \(1\,mA\), what will bet he change in emitter current?

1 \(1.1\,mA\)
2 \(1.01\,mA\)
3 \(0.01\,mA\)
4 \(10\,mA\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365514 If \(\alpha \)- current gain of a transistor is 0.98. What is the value of \(\beta \)- current gain of the transistor?

1 \(4.9\)
2 \(0.49\)
3 \(5\)
4 \(49\)
PHXII14:SEMICONDUCTOR ELECTRONICS- MATERIALS- DEVICES AND SIMPLE CIRCUITS

365515 The \(a\) of a transistor is always

1 \( > 1\)
2 \( < 1\)
3 \( = 0\)
4 \({\rm{Negative}}\)