4 Determine the de level of In and Vc for the network of Fig. 4.42. 18 V 3.3 k2 10 μ 91 k2 110 k2 o Vo RF, : 10 μF RF. 10 μF B = 75 510 N 50 μF FIG. 4.42 Network for Example 4.14.
4 Determine the de level of In and Vc for the network of Fig. 4.42. 18 V 3.3 k2 10 μ 91 k2 110 k2 o Vo RF, : 10 μF RF. 10 μF B = 75 510 N 50 μF FIG. 4.42 Network for Example 4.14.
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![XAMPLE 4.14 Determine the de level of In and Vc for the network of Fig. 4.42.
18 V
3.3 k2
10 µF
91 k2
110 k2
RF2
10 μF
RF,
10 μF
B = 75
510 2
50 μF
FIG. 4.42
Network for Example 4.14.
Solution: In this case, the base resistance for the de analysis is composed of two resistors
with a capacitor connected from their junction to ground. For the de mode, the capacitor
equivalence, and RB
RF, + RF,](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F35cbe683-87f7-4245-8a00-f0405c276cfa%2Fde1f1784-bf80-43eb-9141-bfa4dba14be3%2F9xj9q3_processed.jpeg&w=3840&q=75)
Transcribed Image Text:XAMPLE 4.14 Determine the de level of In and Vc for the network of Fig. 4.42.
18 V
3.3 k2
10 µF
91 k2
110 k2
RF2
10 μF
RF,
10 μF
B = 75
510 2
50 μF
FIG. 4.42
Network for Example 4.14.
Solution: In this case, the base resistance for the de analysis is composed of two resistors
with a capacitor connected from their junction to ground. For the de mode, the capacitor
equivalence, and RB
RF, + RF,
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