For the circuit, take VTN=0.8V, the conduction parameter Kn-1 mA/V2 and X-0. Calculate the Gate-Source voltage VGS and drain- source voltage VDS. Choose one of the answer choices that is closest to what you have found. +6V A B VGS-1.27V and VDS-10.32V VGS-2.3V and VDS-6.8V C) VGS-1.12V and VDS-8.44V Cc HE www R₁ = 85 k R₂ = 20 k -6V RD=8k 010 Rs = 1 k

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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B
VGS-1.27V and VDS=10.32V
F
VGS-2.3V and VDS=6.8V
VGS=1.12V and VDS=8.44V
D) VGS-2.39V and VDS-3.13V
VGS=1.42V and VDS-8.96V
VGS 1.89V and VDS=4.24V
G) VGS-3.5V and VDS-7.2V
H) VGS -3.6V and VDS-2.24V
VGS-1.66V and VDS-5.34V
-6V
Transcribed Image Text:B VGS-1.27V and VDS=10.32V F VGS-2.3V and VDS=6.8V VGS=1.12V and VDS=8.44V D) VGS-2.39V and VDS-3.13V VGS=1.42V and VDS-8.96V VGS 1.89V and VDS=4.24V G) VGS-3.5V and VDS-7.2V H) VGS -3.6V and VDS-2.24V VGS-1.66V and VDS-5.34V -6V
For the circuit, take VTN=0.8V, the conduction parameter Kn-1 mA/V2 and X-0. Calculate the Gate-Source voltage VGS and drain-
source voltage VDS. Choose one of the answer choices that is closest to what you have found.
+6V
A
B
VGS-1.27V and VDS-10.32V
VGS-2.3V and VDS-6.8V
C) VGS-1.12V and VDS-8.44V
Cc
HE
www
R₁ =
85 k
R₂ =
20 k
-6V
RD=8k
010
Rs = 1 k
Transcribed Image Text:For the circuit, take VTN=0.8V, the conduction parameter Kn-1 mA/V2 and X-0. Calculate the Gate-Source voltage VGS and drain- source voltage VDS. Choose one of the answer choices that is closest to what you have found. +6V A B VGS-1.27V and VDS-10.32V VGS-2.3V and VDS-6.8V C) VGS-1.12V and VDS-8.44V Cc HE www R₁ = 85 k R₂ = 20 k -6V RD=8k 010 Rs = 1 k
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