1. Referring to the figure shown,

Solution :
https://www.youtube.com/watch?v=twZcGRG_nlo
2. Of the four biasing circuits shown in figure, for a BJT, indicate the one which can have maximum bias stability

Solution :
https://www.youtube.com/watch?v=yvA3x-0ljUo
3. The feedback amplifier shown in figure has

a. Current – Series feedback with large input impedance and large output impedance
b. Voltage – Series feedback with large input impedance and low output impedance
c. Voltage – Shunt feedback with low input impedance and low output impedance
d. Current – Shunt feedback with low input impedance and low output impedance
Solution :
https://www.youtube.com/watch?v=K4UNqioWiXE
2. Of the four biasing circuits shown in figure, for a BJT, indicate the one which can have maximum bias stability
3. The feedback amplifier shown in figure has
a. Current – Series feedback with large input impedance and large output impedance
b. Voltage – Series feedback with large input impedance and low output impedance
c. Voltage – Shunt feedback with low input impedance and low output impedance
d. Current – Shunt feedback with low input impedance and low output impedance
No comments:
Post a Comment