Given the BJT transistor characteristics of Fig. 121: a. Draw a load line on the characteristics determined by E = 21 V and Rc = 3 kN for a fixed-bias configuration. b. Choose an operating point midway between cutoff and saturation. Determine the value of Rg to establish the resulting operating point. c. What are the resulting values of Ic, and VCE,? d. What is the value of B at the operating point? e. What is the value of a defined by the operating point? f. What is the saturation current (Ic) for the design? g. Sketch the resulting fixed-bias configuration. h. What is the de power dissipated by the device at the operating point? i. What is the power supplied by Vcc? j. Determine the power dissipated by the resistive elements by taking the difference between the results of parts (h) and (i).

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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Given the BJT transistor characteristics of Fig. 121:
a. Draw a load line on the characteristics determined by E = 21 V and Rc = 3 kn for a
fixed-bias configuration.
b. Choose an operating point midway between cutoff and saturation. Determine the value of
Rg to establish the resulting operating point.
c. What are the resulting values of Ic, and VCE,?
d. What is the value of B at the operating point?
e. What is the value of a defined by the operating point?
f. What is the saturation current (Ic) for the design?
g. Sketch the resulting fixed-bias configuration.
h. What is the de power dissipated by the device at the operating point?
i. What is the power supplied by Vcc?
j. Determine the power dissipated by the resistive elements by taking the difference between
the results of parts (h) and (i).
Transcribed Image Text:Given the BJT transistor characteristics of Fig. 121: a. Draw a load line on the characteristics determined by E = 21 V and Rc = 3 kn for a fixed-bias configuration. b. Choose an operating point midway between cutoff and saturation. Determine the value of Rg to establish the resulting operating point. c. What are the resulting values of Ic, and VCE,? d. What is the value of B at the operating point? e. What is the value of a defined by the operating point? f. What is the saturation current (Ic) for the design? g. Sketch the resulting fixed-bias configuration. h. What is the de power dissipated by the device at the operating point? i. What is the power supplied by Vcc? j. Determine the power dissipated by the resistive elements by taking the difference between the results of parts (h) and (i).
Ic(mA)
110 μ.
100 HA
10
80 juA
9.
70HA
60 uA
7
50 μΑ
40 μΑ.
30 A
20 µA
10 µA
15
20
25
30
VeE (V)
10
FIG. 121
2.
Transcribed Image Text:Ic(mA) 110 μ. 100 HA 10 80 juA 9. 70HA 60 uA 7 50 μΑ 40 μΑ. 30 A 20 µA 10 µA 15 20 25 30 VeE (V) 10 FIG. 121 2.
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