1. What is the output voltage that you would expect to observe across RL in the clamping circuit of figure B-1? Assume that RC is large enough to prevent significant capacitor discharge. +24 V 10 uF V ov R 10 kn IN4001 -24 V

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8:24
ull LTE 4
1. What is the output voltage that you would expect to observe across RL in the clamping
circuit of figure B-1? Assume that RC is large enough to prevent significant capacitor
discharge. [ .
+24 V
10 uF
V Ov
IN4001
10 k
-24 V
Figure B-1
2. What would you expect to see disnlaved on an oscilloscope connected across Ri, in the
circuit shown in Figure B-2? TI
100 n
+10 V-
V
Ov-
IN4001
1.0 kn
-10 V--
Add a caption...
> Pat
+
Transcribed Image Text:8:24 ull LTE 4 1. What is the output voltage that you would expect to observe across RL in the clamping circuit of figure B-1? Assume that RC is large enough to prevent significant capacitor discharge. [ . +24 V 10 uF V Ov IN4001 10 k -24 V Figure B-1 2. What would you expect to see disnlaved on an oscilloscope connected across Ri, in the circuit shown in Figure B-2? TI 100 n +10 V- V Ov- IN4001 1.0 kn -10 V-- Add a caption... > Pat +
8:23
ull LTE 4
4. The single-phase half wave rectifier shown in Fig B-3 is supplied from a 230-V, 50HZ
source through the step-down transformer with turns ratio n=10:1. The load resistance
RL is 10-ohms, Determine
a. The average output voltage
b. The average load current
c. The rms load voltage
d. The rms load current
e. The average diode current
f. The rms diode current
g. The peak inverse voltage of the diode
h. The output signal frequency
i. The average output power
j. The DC output power
n:1
Fig B-3
R
Vo
Primary
Secondary
Add a caption...
> Pat
+
Transcribed Image Text:8:23 ull LTE 4 4. The single-phase half wave rectifier shown in Fig B-3 is supplied from a 230-V, 50HZ source through the step-down transformer with turns ratio n=10:1. The load resistance RL is 10-ohms, Determine a. The average output voltage b. The average load current c. The rms load voltage d. The rms load current e. The average diode current f. The rms diode current g. The peak inverse voltage of the diode h. The output signal frequency i. The average output power j. The DC output power n:1 Fig B-3 R Vo Primary Secondary Add a caption... > Pat +
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