MOSFET Feedback Amplifier Gain: Why Not 10? | Analog IC Interview Question
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MOSFET Feedback Amplifier Gain: Why Not 10? | Analog IC Interview Question
115 просмотров · 2 дня назад
Uplevel Engineering
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115 просмотров · 2 дня назад
Solve a three-MOSFET feedback amplifier gain problem from an analog IC/RFIC interview: build the small-signal model, apply KCL, and see why the resistor ratio alone is not enough.
Try the free 10-question Analog IC/RFIC interview test:
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Work through the moving shared-source node, effective transconductance, first-stage gain, output-divider loading, and the loaded common-source second stage. Then close the negative-feedback loop and explain why the voltage gain is about +5, not +10.
The exact low-frequency result is Av = 1000/201, approximately +5 V/V. The familiar 1/beta feedback-gain approximation requires loop gain much greater than one; here the loop gain is only about one. A 1 mV example and a voltage-change sign check make the physical meaning clear.
Assumptions: all three gm values are 2 mS, the MOSFETs operate in saturation, and output resistances are infinite. Ignore body effect and transistor capacitances in this low-frequency calculation. The closing RF discussion distinguishes gain accuracy from frequency-dependent stability.
Chapters
0:00 MOSFET feedback gain: roadmap
0:17 Circuit, assumptions and interview question
1:00 Build the small-signal model
1:51 Shared-source KCL and effective transconductance
2:41 First-stage voltage gain
3:05 Feedback divider and output loading
3:52 Loaded common-source second stage
4:19 Close the loop and solve the exact gain
5:06 Why the gain is about 5, not 10
5:52 1 mV example and finite error voltage
6:17 Check the negative-feedback sign
6:50 Design lesson and RF stability caveat
7:24 Key takeaway and free interview test
Topics: MOSFET small-signal analysis, negative feedback, closed-loop voltage gain, loop gain, KCL, and analog IC interview preparation.
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