3) VDD=VSS=1.5 V, µpCox=250 µA/V2, µn=2.5-up, Vthn=0.5 V, Vthp=-0.5 V, λn λp=0.1 V-¹ is given for the circuit below. The differential amplifier biased using current mirrors will be designed to meet the following requirements: Adm=-70, IREF=150mA, Vov3-Vov4-Vov5-Vov6-Vov7-150 mV. a) Calculate the value of resistor R and the W/L values of the transistors. b) Calculate the value of CMRR
3) VDD=VSS=1.5 V, µpCox=250 µA/V2, µn=2.5-up, Vthn=0.5 V, Vthp=-0.5 V, λn λp=0.1 V-¹ is given for the circuit below. The differential amplifier biased using current mirrors will be designed to meet the following requirements: Adm=-70, IREF=150mA, Vov3-Vov4-Vov5-Vov6-Vov7-150 mV. a) Calculate the value of resistor R and the W/L values of the transistors. b) Calculate the value of CMRR
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Transcribed Image Text:3) VDD=VSS=1.5 V, μpCox=250 μA/V2, µn=2.5-µp, Vthn=0.5 V, Vthp=-0.5 V,
λn=λp=0.1 V-¹ is given for the circuit below. The differential amplifier biased
using current mirrors will be designed to meet the following requirements:
Adm=-70, IREF=150mA, Vov3-Vov4=Vov5-Vov6-Vov7-150 mV.
a) Calculate the value of resistor R and the W/L values of the transistors.
b) Calculate the value of CMRR
M6
REFR
M7
VDD
I
D
HM3
Vi1-M₁ M2V12
Vo1
HM4
-Vss
Vo2
M5
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