(2-8) A zener diode has a de power dissipation of Iw and a zener voltage rating of 27v. What is the value of I, max for the device?

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Determine 1) the maximum load current. 2) the mean load current .3)the rms alternating load
current. 4) the DC power supplied to the load. 5) the input power to the anode circuit.
6) the rectification efficiency. 7) the percentage of regulation. 8) the ripple current.
R=10°0
Vi
R=10°n
AC
Figure (2-72) the circuit of problem (2-6).
(2-7) A full-wave bridge rectifier with a 120 Vrms sinusoidal input has a load resistance of Ikn.
Determine:-
1) The de voltage available at the load.
2) Find the maximum current through each diode during conduction.
3) What is the required power rating of each diode.
(2-8) A zener diode has a de power dissipation of Iw and a zener voltage rating of 27v. What
is the value of I, max for the device?
(2-9) Calculate and draw the output voltage for the circuit shown in Figure (2-74).
+100v
Vo
2.2kd4
2.2kQ
-100v
Figure (2-74) the circuit of problem (2-10).
Transcribed Image Text:Determine 1) the maximum load current. 2) the mean load current .3)the rms alternating load current. 4) the DC power supplied to the load. 5) the input power to the anode circuit. 6) the rectification efficiency. 7) the percentage of regulation. 8) the ripple current. R=10°0 Vi R=10°n AC Figure (2-72) the circuit of problem (2-6). (2-7) A full-wave bridge rectifier with a 120 Vrms sinusoidal input has a load resistance of Ikn. Determine:- 1) The de voltage available at the load. 2) Find the maximum current through each diode during conduction. 3) What is the required power rating of each diode. (2-8) A zener diode has a de power dissipation of Iw and a zener voltage rating of 27v. What is the value of I, max for the device? (2-9) Calculate and draw the output voltage for the circuit shown in Figure (2-74). +100v Vo 2.2kd4 2.2kQ -100v Figure (2-74) the circuit of problem (2-10).
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