Q1 (10 Marks) Electronics & Digital 🔥 Repeated 8x in exams
MET • Written Exam

Differentiate with the aid of simple sketches between the following types of electronic circuits (16)

(a) Rectifier circuit

(b) Amplifier circuit

(c) Oscillator circuit

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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