• Example 2 Example 1 For the circuit shown in Figure 1, find the diode current (Ip), the diode Reverse the diode in Figure 1 and repeat Example 1. voltage (VD), and the voltage across resistor (VR). Solution: The direction of current is now opposite to the arrow. The diode is off and Solution: can be replaced by an open switch. Since the current established by the source flows in the direction of the Current through the diode Ip -O A diode's arrow, the diode is on and can be replaced by a closed switch. Voltage across the resistor VR - Ip x R =ov Voltage across the diode Vo = o v Voltage across the diode Vo - Es- VR- 20 -0- 20 V Voltage across the resistor VR = Vs - Vp = 20 - 0 = 20 v + Vo - Es 20 v 100 ohm Figure 1

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I don't know what will be the figure of example 2. Please help. Thank you.

• Example 2
Example 1
For the circuit shown in Figure 1, find the diode current (Ip), the diode
Reverse the diode in Figure 1 and repeat Example 1.
voltage (Vp), and the voltage across resistor (VR).
Solution:
The direction of current is now opposite to the arrow. The diode is off and
Solution:
can be replaced by an open switch.
Since the current established by the source flows in the direction of the
Current through the diode
Ip = O A
diode's arrow, the diode is on and can be replaced by a closed switch.
Voltage across the resistor
VR = Ip x R = Ov
Voltage across the diode
VD = 0 v
Voltage across the diode
VD - Es- VR = 20 - 0 = 20 V
Voltage across the resistor
VR = Vs- VD = 20 - 0 = 20 V
+ V, -
Es
20 v
100 ohm SV
Figure 1
Transcribed Image Text:• Example 2 Example 1 For the circuit shown in Figure 1, find the diode current (Ip), the diode Reverse the diode in Figure 1 and repeat Example 1. voltage (Vp), and the voltage across resistor (VR). Solution: The direction of current is now opposite to the arrow. The diode is off and Solution: can be replaced by an open switch. Since the current established by the source flows in the direction of the Current through the diode Ip = O A diode's arrow, the diode is on and can be replaced by a closed switch. Voltage across the resistor VR = Ip x R = Ov Voltage across the diode VD = 0 v Voltage across the diode VD - Es- VR = 20 - 0 = 20 V Voltage across the resistor VR = Vs- VD = 20 - 0 = 20 V + V, - Es 20 v 100 ohm SV Figure 1
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