A common emitter amplifier as shown in Figure Q2 has the following parameters, B = 100, R1 = 33K, R2 = 10K, Rc = 3K3, RE = 1K, ro= o and VBE = 0.7 V. State all assumptions made. Check whether BRE>>10R2 is satisfied Use the appropriate approach of analysis to determine the Quiescent point; IBo, Ica and VCEQ. iii. i. ii. Draw the small signal equivalent circuit. Determine input impedance, Zin, output impedance, Zout, and the voltage gain, Av, if RL=20kQ. Vcc=18V R1 Rc Vo V, O C. Ci RL R2 СЕ RE Zin Zout Figure Q2

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A common emitter amplifier as shown in Figure Q2 has the following parameters, B= 100, R1
= 33K, R2 = 10K, Rc = 3K3, RE = 1K, ro= o and VBE = 0.7 V.
State all assumptions made.
i.
Check whether BRE>>10R2 is satisfied
ii.
Use the appropriate approach of analysis to determine the Quiescent point; IBQ,
Ico and VCEO.
iii.
Draw the small signal equivalent circuit. Determine input impedance, Zin, output
impedance, Zout, and the voltage gain, Av, if RL=20kN.
Vcc=18V
Ic
R1
Rc
Vo
V; O
Co
RL
R2
CE
RE
Zin
Zout
Figure Q2
Transcribed Image Text:A common emitter amplifier as shown in Figure Q2 has the following parameters, B= 100, R1 = 33K, R2 = 10K, Rc = 3K3, RE = 1K, ro= o and VBE = 0.7 V. State all assumptions made. i. Check whether BRE>>10R2 is satisfied ii. Use the appropriate approach of analysis to determine the Quiescent point; IBQ, Ico and VCEO. iii. Draw the small signal equivalent circuit. Determine input impedance, Zin, output impedance, Zout, and the voltage gain, Av, if RL=20kN. Vcc=18V Ic R1 Rc Vo V; O Co RL R2 CE RE Zin Zout Figure Q2
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