Learning Path
Question & Answer1
Understand Question2
Review Options3
Learn Explanation4
Explore TopicChoose the Best Answer
A
A higher phase margin increases distortion
B
A lower phase margin reduces distortion
C
A higher phase margin reduces distortion
D
Phase margin has no effect on distortion
Understanding the Answer
Let's break down why this is correct
Answer
Phase margin is a measure of how much extra phase shift an op‑amp can tolerate before it starts to oscillate; a larger margin means the circuit is more stable. When the margin is high, the negative feedback keeps the output from overshooting, so the output waveform follows the input more cleanly and distortion is reduced. If the margin is low, the feedback loop can become unstable, causing ringing or overshoot that adds harmonic distortion, especially in the sharp transitions of a comparator. For example, an op‑amp with a 60° phase margin will produce a cleaner step response than one with only 20°, so the comparator’s output will have fewer spurious spikes. Thus, a higher phase margin in a negative‑feedback op‑amp generally lowers distortion in comparator applications.
Detailed Explanation
Higher phase margin means the amplifier loop is more stable. Other options are incorrect because The mistake is that more margin makes the amplifier work faster, causing more ringing; Thinking a lower margin reduces distortion comes from the idea that a tighter loop is quicker.
Key Concepts
Phase margin
Impact on distortion
Comparator circuits
Topic
Negative Feedback in Op-Amps
Difficulty
hard level question
Cognitive Level
understand
Practice Similar Questions
Test your understanding with related questions
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Question 1How does the phase margin in a negative feedback op-amp circuit influence the distortion levels when used in comparator circuits?
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Question 2In a negative feedback configuration using an op-amp, what is the primary effect on the output voltage when the input voltage increases?
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Question 3How does negative feedback in op-amps contribute to stability and performance in a circuit?
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Question 5In a negative feedback configuration using an op-amp, what is the primary effect on the output voltage when the input voltage increases?
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Question 6How does negative feedback in op-amps contribute to stability and performance in a circuit?
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Question 7How does the phase margin in a negative feedback op-amp circuit influence the distortion levels when used in comparator circuits?
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Question 8In a negative feedback configuration using an op-amp, what is the primary effect on the output voltage when the input voltage increases?
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Question 9How does negative feedback in op-amps contribute to stability and performance in a circuit?
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