Figure 3 shows the l-V characteristics of a BJT voltage-dividerſnetwork, Alc(mA) Vcc = 24 V %3! 80 u Rc = 3Rg %3D HA R1 E 50 µA- Ico = 5 mA VCEQ = 8 V

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Figure 3 shows the I-V characteristics of a BJT voltage-divider network,
(c(mA)
100 p.
10
90 µA
Vcc
= 24 V
60
Rc = 3Rg
R1
Ice
= 5 mA
6.
VCEO = 8 V
R2
3
RE
2
10 HA
10
15
20
25
30
Ver (V)
Figure 3
a)
Determine the resistors Rc and Rg .
b)
Determine the voltage Vg .
c)
Determine the voltage Vg .
d)
Determine R2 if R, = 30 kN assuming that BRĘ > 10R2
e)
Calculate ß at the operating point.
Transcribed Image Text:Figure 3 shows the I-V characteristics of a BJT voltage-divider network, (c(mA) 100 p. 10 90 µA Vcc = 24 V 60 Rc = 3Rg R1 Ice = 5 mA 6. VCEO = 8 V R2 3 RE 2 10 HA 10 15 20 25 30 Ver (V) Figure 3 a) Determine the resistors Rc and Rg . b) Determine the voltage Vg . c) Determine the voltage Vg . d) Determine R2 if R, = 30 kN assuming that BRĘ > 10R2 e) Calculate ß at the operating point.
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