Learning Path
Question & Answer1
Understand Question2
Review Options3
Learn Explanation4
Explore TopicChoose the Best Answer
A
Differential Amplifier Stage
B
Output Stage
C
Input Buffer Stage
D
Compensation Network
Understanding the Answer
Let's break down why this is correct
Answer
The high gain of an operational amplifier mainly comes from its first stage, the differential amplifier that uses a pair of transistors (or MOSFETs). This differential pair amplifies the small voltage difference between the two input terminals many times, creating a large output voltage. Because the transistors are biased in a region of high transconductance, even tiny input differences produce large output swings. For example, if the differential pair amplifies a 1 mV input by 10 000, the op‑amp can produce a 10 V output, showing the huge internal gain. This internal amplification is what gives the op‑amp its characteristic high gain.
Detailed Explanation
The differential amplifier is the first part of the op‑amp that sees the two input voltages. Other options are incorrect because Many think the output stage makes the op‑amp powerful because it delivers current; A student may think the input buffer gives a high gain because it matches impedances.
Key Concepts
Op-Amp Gain
Differential Amplifier Functionality
Stage Design in Circuits
Topic
Internal Components of Op-Amps
Difficulty
medium level question
Cognitive Level
understand
Practice Similar Questions
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Question 1What is the primary reason for the high input impedance of an operational amplifier?
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Question 2What is the primary characteristic of an operational amplifier (op-amp) in an open-loop configuration, specifically regarding its gain?
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Question 3Which internal component of an operational amplifier (op-amp) is primarily responsible for increasing the input signal's amplitude before it reaches the output stage?
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Question 4What is the primary reason for the high input impedance of an operational amplifier?
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Question 6Which internal component of an operational amplifier (op-amp) is primarily responsible for increasing the input signal's amplitude before it reaches the output stage?
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Question 7What is the primary reason for the high input impedance of an operational amplifier?
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Question 8What is the primary characteristic of an operational amplifier (op-amp) in an open-loop configuration, specifically regarding its gain?
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Question 9Which internal component of an operational amplifier (op-amp) is primarily responsible for increasing the input signal's amplitude before it reaches the output stage?
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Question 10Which of the following components is primarily responsible for the high gain characteristic of an operational amplifier?
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