1. For the circuit given in Figure 1, calculate the value of Radj that makes VCE equal to 5V. Then calculate VRB (voltage drop accross Rg). Vcc=10V Rc 2700 Radj=? 50ko RB B = 300 VBE(on)=0.7V trimpot 51kO RE 2700 Figure 1. Emitter stabilized bias circuit. 2. Explain the reason of choosing VCE equal to 5V.

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1. For the circuit given in
Figure 1, calculate the value
of Radi that makes VCE equal
to 5V. Then calculate VRB
(voltage drop accross Rg).
Vcc=10V
Rc
2700
Radj=?
50ko
RB
B = 300
VBE(on)=0.7V
trimpot
51 ΚΩ
RE
2700
Figure 1. Emitter stabilized bias circuit.
2. Explain the reason of choosing VCE equal to 5V.
Transcribed Image Text:1. For the circuit given in Figure 1, calculate the value of Radi that makes VCE equal to 5V. Then calculate VRB (voltage drop accross Rg). Vcc=10V Rc 2700 Radj=? 50ko RB B = 300 VBE(on)=0.7V trimpot 51 ΚΩ RE 2700 Figure 1. Emitter stabilized bias circuit. 2. Explain the reason of choosing VCE equal to 5V.
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