4. Consider the circuit in Figure 3. D1 is Gallium arsenide and D2 is Silicon, each has a forward resistance of 500. Determine the following: a. The states of D1 and D2. Explain. b. Current 11 through R1 c. Current 12 through R2 d. Current 13 through R3 e. Voltage Vo R1 1092 V1 12V D1 R2 1592 V2 9V R3 10092 D2 Vo

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Figure 2
4. Consider the circuit in Figure 3. D1 is Gallium arsenide
and D2 is Silicon, each has a forward resistance of 500.
Determine the following:
a. The states of D1 and D2. Explain.
b. Current 11 through R1
c. Current 12 through R2
d. Current 13 through R3
e. Voltage Vo
Liv Hilt
R1
1092
V1
12V
(+2)
V1
D1
1V
50Hz
0°
1
D1
R2
1592
Figure 3
5. Do number 4 again, but this time reverse both the
positions of D1 and D2.
6. Consider the circuit in Figure 4.
a. Calculate the voltage across R3 during the positive
half cycle of the source voltage V1.
b. Calculate the voltage across R3 during the negative
half cycle of the source voltage V1.
c. Sketch the waveform of the voltage across R3.
R1
1kQ
V2
9V
D2
R3
10092
R2
1k92
D2
Vo
R3
1k92
Transcribed Image Text:Figure 2 4. Consider the circuit in Figure 3. D1 is Gallium arsenide and D2 is Silicon, each has a forward resistance of 500. Determine the following: a. The states of D1 and D2. Explain. b. Current 11 through R1 c. Current 12 through R2 d. Current 13 through R3 e. Voltage Vo Liv Hilt R1 1092 V1 12V (+2) V1 D1 1V 50Hz 0° 1 D1 R2 1592 Figure 3 5. Do number 4 again, but this time reverse both the positions of D1 and D2. 6. Consider the circuit in Figure 4. a. Calculate the voltage across R3 during the positive half cycle of the source voltage V1. b. Calculate the voltage across R3 during the negative half cycle of the source voltage V1. c. Sketch the waveform of the voltage across R3. R1 1kQ V2 9V D2 R3 10092 R2 1k92 D2 Vo R3 1k92
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