Q.In half-wave rectification, what is the output frequency if the input frequency is ? What is the output frequency of a full-wave rectifier for the same input frequency?
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Start your 14-day free trial to unlock the full solution →In half-wave rectification, the output frequency equals the input frequency (50 Hz) because only one half of each input cycle is used. In full-wave rectification, the output frequency is double the input frequency (100 Hz) because both halves of each input cycle are converted to output pulses.
The Core Idea: What "Frequency" Means in Rectification
When we talk about frequency in a rectifier, we're asking: how many output pulses occur per second? The input is a sine wave at 50 Hz — that means 50 complete cycles per second, each cycle having a positive half and a negative half.
A rectifier doesn't change the number of cycles coming in; it simply flips or removes parts of the waveform to make the output unidirectional. The output frequency is determined by how many of those half-cycles actually appear as output pulses.
Step-by-Step Reasoning
1. Half-wave rectifier — one pulse per input cycle
A half-wave rectifier conducts only during the positive half of each input cycle. The negative half is blocked entirely. So for every one complete input cycle (one positive half + one negative half), you get exactly one output pulse.
If the input frequency is 50 Hz, that means 50 complete cycles per second. Each cycle gives one output pulse. Therefore:
- Output pulses per second = 50
- Output frequency = 50 Hz
A common mistake is to think half-wave rectification halves the frequency. It doesn't — it halves the power delivered, but the pulse rate stays the same as the input frequency because each input cycle still produces exactly one output pulse.
2. Full-wave rectifier — two pulses per input cycle
A full-wave rectifier (whether using a center-tap transformer with two diodes or a bridge rectifier with four diodes) converts both halves of the input cycle into output pulses. The negative half is inverted to become a positive pulse.
So for every one complete input cycle, you get two output pulses — one from the positive half and one from the inverted negative half. …
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