Vcc = 20 V VpD Rp ' 4.7 k2 ► 220 k2 o Vp=12 V Vc HE Cc oV VB I pss=6 mA Vp=-3 V •S Cc 1 ΜΩ 56 k2 Rs ' 2.2 k2 Ce Fig. 1 Fig. 2 Apply the knowledge gained from the DC biasing of JFET to select appropriate values of RD and Rs of the circuit shown in Fig. 2, assuming VDD = 28.8 V, IDo = 3.45 mA. ww

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Vcc = 20 V
VpD
Rp
' 4.7 k2
► 220 k2
o Vp=12 V
Vc
HE
Cc
oV
VB
I pss=6 mA
Vp=-3 V
•S
Cc
1 ΜΩ
56 k2
Rs
' 2.2 k2
Ce
Fig. 1
Fig. 2
Apply the knowledge gained from the DC biasing of JFET to select appropriate values of RD and Rs of the
circuit shown in Fig. 2, assuming VDD = 28.8 V, IDo = 3.45 mA.
ww
Transcribed Image Text:Vcc = 20 V VpD Rp ' 4.7 k2 ► 220 k2 o Vp=12 V Vc HE Cc oV VB I pss=6 mA Vp=-3 V •S Cc 1 ΜΩ 56 k2 Rs ' 2.2 k2 Ce Fig. 1 Fig. 2 Apply the knowledge gained from the DC biasing of JFET to select appropriate values of RD and Rs of the circuit shown in Fig. 2, assuming VDD = 28.8 V, IDo = 3.45 mA. ww
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