= 0.35 V and R₁ = 355 ks, Ex 3.3: The transistor in Figure 3.25(a) has parameters VTN K₁ = 25 μA/V². The circuit parameters are VDD = 2.2 V, R2245 ks, and RD = 100 k. Find ID, VGS, and VDs. (Ans. ID = 7.52 μA, VGS = 0.898 V, VDS = 1.45 V) VDD VG R1 R₂ + VGS (a) RD R₁ + VG= VDS = R₂
= 0.35 V and R₁ = 355 ks, Ex 3.3: The transistor in Figure 3.25(a) has parameters VTN K₁ = 25 μA/V². The circuit parameters are VDD = 2.2 V, R2245 ks, and RD = 100 k. Find ID, VGS, and VDs. (Ans. ID = 7.52 μA, VGS = 0.898 V, VDS = 1.45 V) VDD VG R1 R₂ + VGS (a) RD R₁ + VG= VDS = R₂
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Transcribed Image Text:= 0.35 V and
R₁ = 355 ks,
Ex 3.3: The transistor in Figure 3.25(a) has parameters VTN
K₁ = 25 μA/V². The circuit parameters are VDD = 2.2 V,
R2245 ks, and RD = 100 k. Find ID, VGS, and VDs. (Ans. ID = 7.52 μA,
VGS = 0.898 V, VDS = 1.45 V)

Transcribed Image Text:VDD
VG
R1
R₂
+
VGS
(a)
RD
R₁
+
VG=
VDS
=
R₂
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