For the circuit shown, let Vcc = 3.3 V, RẸ = 500 Q, Rc = 4 kQ, R1 = 85 kO, R2 = 35 kQ, %3D %3D and ß = 150. Vcc RC Ico R1 V CEQ RE + 두

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For the circuit shown, let VCC = 3.3 V, RE = 500 Ω, RC = 4 kΩ, R1 = 85 kΩ, R2 = 35 kΩ, and β = 150.

Using approximation, determine the Q-point parameters: IBQ, ICQ, and VCEQ. Indicate the exact numerical values, following the given unit.

12:58
ul 65%
Quizzes
For the circuit shown, let Vcc = 3.3 V, RẸ =
85 kN, R2 = 35 kN,
500 Q, Rc = 4 kQ, R1 =
and B = 150.
%D
%3D
Vcc
Ice, Rc
R1
V CEQ
R2
RE
Using approximation, determine the Q-point
parameters: IBQ, Icq, and VCEQ- Indicate the
exact numerical values, following the given
unit.
Answers:
Ico =
HA
%D
VCEQ =
V (in 4 decimal
places)
Transcribed Image Text:12:58 ul 65% Quizzes For the circuit shown, let Vcc = 3.3 V, RẸ = 85 kN, R2 = 35 kN, 500 Q, Rc = 4 kQ, R1 = and B = 150. %D %3D Vcc Ice, Rc R1 V CEQ R2 RE Using approximation, determine the Q-point parameters: IBQ, Icq, and VCEQ- Indicate the exact numerical values, following the given unit. Answers: Ico = HA %D VCEQ = V (in 4 decimal places)
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