For the Transistor circuit given below (VBE = 0.7V) a. Obtain the necessary equations for the solution of the circuit (DC). b. Find the voltages VC,VE, VB. (using the obtained equations) c. Find the currents I'BQ, I'E. (using the obtained equations)

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For the Transistor circuit given below (VBE = 0.7V)
a. Obtain the necessary equations for the solution of the circuit
(DC).
b. Find the voltages VC,VE, VB. (using the obtained equations)
c. Find the currents I'BQ, I'E. (using the obtained equations)
D. Compare the results you obtained from the simulation program
with the results you find by setting up the circuit with a program
that you will determine from the simulation programs given in the
"Things to consider when preparing a project" file.
to. Apply a 1kHz sinusoidal signal with 1mV amplitude to the input
of the circuit in the simulation program. The output of the circuit
(Vo) oscilloscope, etc. view it. (determine the capacitances in uF
yourself.)
24 V
12 V
3.3 ΚΩ
27 ΚΩ
Zo
B=70
ro = 60 ΚΩ
2.2 ΚΩ
Hovi
' 68 ΚΩ -Z₁
Transcribed Image Text:For the Transistor circuit given below (VBE = 0.7V) a. Obtain the necessary equations for the solution of the circuit (DC). b. Find the voltages VC,VE, VB. (using the obtained equations) c. Find the currents I'BQ, I'E. (using the obtained equations) D. Compare the results you obtained from the simulation program with the results you find by setting up the circuit with a program that you will determine from the simulation programs given in the "Things to consider when preparing a project" file. to. Apply a 1kHz sinusoidal signal with 1mV amplitude to the input of the circuit in the simulation program. The output of the circuit (Vo) oscilloscope, etc. view it. (determine the capacitances in uF yourself.) 24 V 12 V 3.3 ΚΩ 27 ΚΩ Zo B=70 ro = 60 ΚΩ 2.2 ΚΩ Hovi ' 68 ΚΩ -Z₁
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