+5 V Rc = 10 k2 R = 60 k2 Rp= 4 kQ Rg=20 k2 o Vc B = 75 K, =0.5 mA/V? R2 = 6ố k2 Vin = 1 V Rg=2 k2 v-=-2.5 V (B) (C) wwwH

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Verify the mode of operation with justification and draw the load line for each transistor shown below:

V* = +2.5 V
+5 V
K.-50 μΑ/ν
VDD =5 V
VIN = 1 V
Rc = 10 kQ
Rp=
4 k2
Rp = 30 ko
R1 =
60 k2
Rg=20 k2
V;= 5V, V2= OV
Rp
ww
B = 75
Kn =0.5 mA/V?
Vin = 1 V
Vo
R2 =
6ố k2
M2
Rg=2 kQ
V-=-2.5 V
(A)
(B)
(C)
+5 V
R 1
B = 125
VBE(on) = 0.7 V
VA = 200 V
B = 80
Rs = 1 k2 Cci!
Cc2
Rc= 2.3 k2
R = 20 k2
o vo
Rg=
10 k2
Rc =
Cc2
6.5 k2
RL =
5 k2
5 kQ
VEE =
20 V
Vcc=
R2 = 20 k£2
Rg =
5 k2
(D)
(E)
-5 V
ww
Hil
www
+ I>
ww.
ww
Transcribed Image Text:V* = +2.5 V +5 V K.-50 μΑ/ν VDD =5 V VIN = 1 V Rc = 10 kQ Rp= 4 k2 Rp = 30 ko R1 = 60 k2 Rg=20 k2 V;= 5V, V2= OV Rp ww B = 75 Kn =0.5 mA/V? Vin = 1 V Vo R2 = 6ố k2 M2 Rg=2 kQ V-=-2.5 V (A) (B) (C) +5 V R 1 B = 125 VBE(on) = 0.7 V VA = 200 V B = 80 Rs = 1 k2 Cci! Cc2 Rc= 2.3 k2 R = 20 k2 o vo Rg= 10 k2 Rc = Cc2 6.5 k2 RL = 5 k2 5 kQ VEE = 20 V Vcc= R2 = 20 k£2 Rg = 5 k2 (D) (E) -5 V ww Hil www + I> ww. ww
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