Vc. VGS-2.5 V. vp Up 13) The fixed-bias configuration of Fig. G had an operating point defined by Vaso - V and 10 mA) and P-8 V. The network is applied signal i The IDQ= 5.625 mA, with IDSS value of y os is provided as 40 mS a. Determine g m. yos b. Find r d. c, Determine Zi. d. Calculate Zo. e. Determine the voltage gain A v. f. Determine A v ignoring the effects of r d. ㅗ You 05 V₁ C₁ 15 G + RG 1 ΜΩ Rp 2V + FIG. G 20 V 2 2 ΚΩ D S S ID IDSS (V₂) HH Ipss- 10 mA Vp=-8 V + Z₂ V

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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-1³
05
Vc. VGS-2.5 V.
vp
Vp
13) The fixed-bias configuration of Fig. G had an operating point defined by VGSO-2 V and
IDQ = 5.625 mA, with IDSS = 10 mA) and VP = -8 V. The network is applied signal i. The
value of y os is provided as 40 mS
a.
Determine gm.
b. Find rd.
9₁
c. Determine Zi.
d. Calculate Zo
e. Determine the voltage gain A v.
f. Determine
O
ye
OS
A v ignoring the effects of r d.
C₁
HOM
Vi Z
RG
G
1 MQ
2 V
+
RD
ENGG EEE LECTURE NOTES 03 Feb2022 V1.2
FIG. G
2
9 20 V
2kQ
D
S
C₂
H
ID IDSS
\Vp)
IDSS= 10 mA
Vp=-8 V
Zo
Fig. 14 Fixed-bias configuration
+
V₂
V
Page 22 of 117
3. Floyd, T. L. (2010). Electron
NOTE: ...
XXXXX-
ENGG_EEE_LECTURE NOT
Transcribed Image Text:-1³ 05 Vc. VGS-2.5 V. vp Vp 13) The fixed-bias configuration of Fig. G had an operating point defined by VGSO-2 V and IDQ = 5.625 mA, with IDSS = 10 mA) and VP = -8 V. The network is applied signal i. The value of y os is provided as 40 mS a. Determine gm. b. Find rd. 9₁ c. Determine Zi. d. Calculate Zo e. Determine the voltage gain A v. f. Determine O ye OS A v ignoring the effects of r d. C₁ HOM Vi Z RG G 1 MQ 2 V + RD ENGG EEE LECTURE NOTES 03 Feb2022 V1.2 FIG. G 2 9 20 V 2kQ D S C₂ H ID IDSS \Vp) IDSS= 10 mA Vp=-8 V Zo Fig. 14 Fixed-bias configuration + V₂ V Page 22 of 117 3. Floyd, T. L. (2010). Electron NOTE: ... XXXXX- ENGG_EEE_LECTURE NOT
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