(d) Two MOSFETs (M₁ and M₂) have the same gate length (L₁= L₂) but the width of M₁ is 3x of M₂ (W₁= 3 W2). Determine the ratio of intrinsic gain (G₁/G₂) of the two transistors if the two transistors are biased under the same drain current.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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5. (a) Briefly explain the frequency response of an amplifier. Plot the typical frequency
response of an amplifier, what is the main reason for such a characteristic?
(b) Determine the Thevenin equivalence of the circuit shown below. Use a load resistor
of 1 kn and find I and V to verify your result.
(c) What are the advantages/disadvantages of using more advanced MOS technology
to design amplifier? Name one of each and provide a brief explanation.
(d) Two MOSFETs (M₁ and M₂) have the same gate length (L₁= L₂) but the width of
M₁ is 3x of M₂ (W₁= 3 W₂). Determine the ratio of intrinsic gain (G₁/G₂) of the two
transistors if the two transistors are biased under the same drain current.
(b)
1 mA (†
2 ΚΩ
www
3 ΚΩ
www
5 ΚΩ
1kQ
Transcribed Image Text:5. (a) Briefly explain the frequency response of an amplifier. Plot the typical frequency response of an amplifier, what is the main reason for such a characteristic? (b) Determine the Thevenin equivalence of the circuit shown below. Use a load resistor of 1 kn and find I and V to verify your result. (c) What are the advantages/disadvantages of using more advanced MOS technology to design amplifier? Name one of each and provide a brief explanation. (d) Two MOSFETs (M₁ and M₂) have the same gate length (L₁= L₂) but the width of M₁ is 3x of M₂ (W₁= 3 W₂). Determine the ratio of intrinsic gain (G₁/G₂) of the two transistors if the two transistors are biased under the same drain current. (b) 1 mA († 2 ΚΩ www 3 ΚΩ www 5 ΚΩ 1kQ
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