Part3: Diode, A circuit as shown in figure below was set on MapleSIM. Ammeter A SiC Schottky diode operating at 25°C was used and I-Vresponse was simulated Resistor 1 Current (A) Voltage (V) 0.1 9.99 x 10-7 9.99 x 10-7 2.99 x 10-7 0.2 0.3 0.4 4.00 x 10-6 4.99 x 10-6 6.00 x 10-6 0.5 0.6 7.00 x 10-6 1.67 0.7 0.8 0.9 3.33 1.0 5.00 1.5 13.3 2.0 21.6 2.5 30.0 567 O5O5

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Please complete the table and graph
Part3: Diode.
A circuit as shown in figure below was set on MapleSIM.
Ammeter
A SiC Schottky diode operating at 25°C was used and I-Vresponse was simulated
Resistor 1
Voltage (V)
0.1
Current (A)
9.99 x 10-7
9.99 x 10-7
2.99 x 10-7
4.00 x 10-6
4.99 x 10-6
0.2
0.3
0.4
0.5
0.6
6.00 x 10-6
0.7
7.00 x 10-6
0.8
1.67
0.9
3.33
1.0
5.00
1.5
13.3
2.0
21.6
2.5
30.0
o90 O5
Transcribed Image Text:Part3: Diode. A circuit as shown in figure below was set on MapleSIM. Ammeter A SiC Schottky diode operating at 25°C was used and I-Vresponse was simulated Resistor 1 Voltage (V) 0.1 Current (A) 9.99 x 10-7 9.99 x 10-7 2.99 x 10-7 4.00 x 10-6 4.99 x 10-6 0.2 0.3 0.4 0.5 0.6 6.00 x 10-6 0.7 7.00 x 10-6 0.8 1.67 0.9 3.33 1.0 5.00 1.5 13.3 2.0 21.6 2.5 30.0 o90 O5
Instructions:
1. Using the table above, plot the I-Vresponse
a. Note: Since the voltage was varied, it is an independent variable (operator
controlled), it goes on the x-axis. If we plot the current (the depetdent variable) on
the y-axis.
2. Is this an Ohmic device:
Transcribed Image Text:Instructions: 1. Using the table above, plot the I-Vresponse a. Note: Since the voltage was varied, it is an independent variable (operator controlled), it goes on the x-axis. If we plot the current (the depetdent variable) on the y-axis. 2. Is this an Ohmic device:
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