(C) VD and Vs- (d) VDs- 20. For the voltage-divider configuration of Fig. 6.84, determine: (a) Ipo and VGsg (b) VD and Vs. 24 V 22 v 2.2 k2 1,2 ka 10 MQ IDO VGSCTH) = 3 V ID(on) = 5 mA VGS(on) = 6 V Iog Vos ( -4V Varan -7V ID-5 mA I MA VGSQ Vpsg Voso 6.8 MQ 0.75 k2 0.51 ka Figure 6.84 Problem 20 Figure 6.83 Problem 19
(C) VD and Vs- (d) VDs- 20. For the voltage-divider configuration of Fig. 6.84, determine: (a) Ipo and VGsg (b) VD and Vs. 24 V 22 v 2.2 k2 1,2 ka 10 MQ IDO VGSCTH) = 3 V ID(on) = 5 mA VGS(on) = 6 V Iog Vos ( -4V Varan -7V ID-5 mA I MA VGSQ Vpsg Voso 6.8 MQ 0.75 k2 0.51 ka Figure 6.84 Problem 20 Figure 6.83 Problem 19
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Solve only number 20 with a complete handritten solution, pls. Thanks!

Transcribed Image Text:19. For the network of Fig. 6.83, determine:
(а) IDg
(b) VGS, and VDSQ.
(c) VD and Vs.
(d) VDs-
20. For the voltage-divider configuration of Fig. 6.84, determine:
(a) Ipo and VGSo
(b) VD and Vs.
24 V
Zz v
2.2 k2
1,2 ka
10 ΜΩ.
IDQ
VGSTH) = 3 V
ID(on) = 5 mA
VGS(on) = 6 V
Vos c-4 V
I MA
Vasan-7 V
Vpsg
ID-5 mA
6.8 MQ
0.75k2
0.51 ka
Figure 6.83 Problem 19
Figure 6.84 Problem 20
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