+ 8 V For the MOS transistor based circuit (where . ka = 6 mA/V? and Vth = 1V), you are expected to plot VGs Vs. Rs graph. I To do so, you are expected to find VGs values for Rs = 0, and Rs = 0. You are also expected to mark VGs and Rs values on your graph corresponding to the transition point between saturation and triode regions. VDD Ip Rp = 1 kn VD Ip Rs Vss = -8 V
+ 8 V For the MOS transistor based circuit (where . ka = 6 mA/V? and Vth = 1V), you are expected to plot VGs Vs. Rs graph. I To do so, you are expected to find VGs values for Rs = 0, and Rs = 0. You are also expected to mark VGs and Rs values on your graph corresponding to the transition point between saturation and triode regions. VDD Ip Rp = 1 kn VD Ip Rs Vss = -8 V
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:VDp = +8 V
a) For the MOS transistor based circuit (where. ka = 6 mA/V2
and Vth = 1V), you are expected to plot VGs vs. Rs graph. |
To do so, you are expected to find VGS values for Rs = 0,
and Rs = 0. You are also expected to mark VGs and Rs
values on your graph corresponding to the transition point
between saturation and triode regions.
Ip
Rp = 1 k2
VD
%3D
Ip
Rs
Vss = -8 V
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