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In a CE amplifier, the phase difference between voltage across collector load RC and signal voltage is ___________

A. 180°

B. 270°

C. 90°

D.

Answer: Option D

Solution (By Examveda Team)

A Common Emitter (CE) amplifier is widely used for voltage amplification. The question asks about the phase difference between the input signal voltage and the voltage developed across the collector load resistor (RC), not the collector terminal voltage.

When the input signal voltage increases, the base current (IB) increases. This causes the collector current (IC) to increase because the collector current is directly proportional to the base current in the transistor's active region.

The voltage across the collector load resistor is given by VRC = IC × RC. Since the collector current increases, the voltage drop across RC also increases. Similarly, when the input signal decreases, the collector current and the voltage across RC also decrease.

Thus, the input signal voltage and the voltage across RC rise and fall together. They are therefore in phase, resulting in a phase difference of .

Why the Other Options are Incorrect:

180°: This phase difference exists between the input signal and the collector terminal (output) voltage, not between the input signal and the voltage across RC. The collector voltage is given by VC = VCC − VRC, so it decreases when VRC increases.

270°: A phase difference of 270° does not occur in the normal operation of a single-stage CE amplifier and has no significance in this context.

90°: A 90° phase shift is characteristic of purely reactive circuits containing inductors or capacitors. Since RC is a resistor, it does not introduce a 90° phase shift.

Key Point to Remember:

Voltage across RC is in phase (0°) with the input signal because both increase and decrease together.

Collector terminal (output) voltage is 180° out of phase with the input signal because it is equal to VCC − ICRC.

Therefore, the phase difference between the voltage across the collector load resistor (RC) and the input signal voltage is . Therefore, Option D is the correct answer.

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Comments (1)

  1. Sudheesh C.K
    Sudheesh C.K:
    1 month ago

    180 degree is correct answer

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