Q4 (16 Marks) Electronics & Digital 🔥 Repeated 8x in exams
MET • Written Exam

Differentiate with the aid of simple sketches between two of the following types of electronic circuits.

(a) Rectifier circuit (6)

(b) Amplifier circuit (5)

(c) Oscillator circuit (5)

Appeared In: Dec 2025Sep 2025Dec 2024Feb 2024Jul 2019Jan 2019Sep 2018Jul 2018

Verified Model Answer (Text Solution)

Structured for DG Shipping MEO Class II examination scoring criteria.

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(a) Rectifier Circuit

  • Converts AC (Alternating Current) into DC (Direct Current).
  • Input: AC signal.
  • Output: DC signal.
  • Operation: Conducts during the positive half cycle of the input signal (half-wave rectifier) or during both half cycles (full-wave rectifier).
  • Types: Half-wave, full-wave, bridge rectifier.
  • Feedback: No feedback involved.
  • Use Case: Used continuously for powering DC loads.

The sketch shows a simplified representation of an AC input waveform being converted into a pulsating DC waveform by a rectifier. A smoothing capacitor is added to reduce the pulsations and produce a more constant DC output.

(b) Amplifier Circuit

  • Amplifies the amplitude of a weak signal without altering its waveform.
  • Input: Weak signal to be amplified.
  • Output: Amplified version of the input signal.
  • Operation: Amplifies signals during both positive and negative cycles.
  • Types: Categorized by frequency (audio, RF), or by physical placement (voltage, current amplifiers).
  • Feedback: Uses negative feedback to stabilize gain.
  • Use Case: Repeatedly used in circuits to maintain signal strength.

This sketch illustrates a generic amplifier. The input signal is smaller than the output signal.

(c) Oscillator Circuit

  • Generates periodic, oscillating electronic signals such as sine waves or square waves.
  • Input: DC supply.
  • Output: AC signal.
  • Operation: Converts DC into AC using positive feedback.
  • Types: Linear (sine wave oscillators) and non-linear (square wave, sawtooth oscillators).
  • Feedback: Uses positive feedback to sustain oscillations.
  • Use Case: Used initially in circuits to provide a signal source.
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