What is the results of this experiment ? Vcc=+12V Rc IkN R, 10KΩ BC107 Vc R2 VB 5.6k2 VE RE 1kQ 6. Measure the DC voltages Va, Vr, and Ve using digital multi-meters. Determine the quiescent point of the transistor as follows: VE IEQ %3D RE VCeo = Vc - VE

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What is the results of this experiment ?
Vcc =+12V
Rc
1kN
R,
10kΩ
Вс107
Vc
R2
VB
5.6k2
VE
RE
1kO
6. Measure the DC voltages VR, Vr, and Ve using digital multi-meters. Determine the
quiescent point of the transistor as follows:
VE
IcQ = lEQ =
RE
VCEQ = Vc - VE
VBEQ = VB – VE
9. Calculate the expected Q-point of the transistor. Tabulate your results as shown in
Table 2.
Table 2: Measured and Calculated Transistor Parameters for the Voltage-Divider
Bias Circuit
Quantity
Measured
Calculated
4.459 V
VB
Vc
VE
3-860Y
Y.459V
0:00351 A
V BEQ
IcQ
V CEQ
8-49
Transcribed Image Text:What is the results of this experiment ? Vcc =+12V Rc 1kN R, 10kΩ Вс107 Vc R2 VB 5.6k2 VE RE 1kO 6. Measure the DC voltages VR, Vr, and Ve using digital multi-meters. Determine the quiescent point of the transistor as follows: VE IcQ = lEQ = RE VCEQ = Vc - VE VBEQ = VB – VE 9. Calculate the expected Q-point of the transistor. Tabulate your results as shown in Table 2. Table 2: Measured and Calculated Transistor Parameters for the Voltage-Divider Bias Circuit Quantity Measured Calculated 4.459 V VB Vc VE 3-860Y Y.459V 0:00351 A V BEQ IcQ V CEQ 8-49
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