Figure 1 shows the intemal circuitry for a digital watch prototype. You, the engineer, are required to do an electrical analysis of the circuit by hand to assess the operation of the charger on different loads. The two output terminals of this linear device are across the resistor, R5. R5 is not the load resistor. The load is not included in the circuit. Based on what you have leamt in this course, you decided to reduce the complex circuit to an equivalent circuit for easier analysis. 200 100 ww R3 RI 100 R2 5A 20V 100 200 R4 R5 SA 20V 100 200 R6 R7 Figure l a) Implement Norton's theorem to simplify the circuit for the device shown in Figure 1. Use Mesh Analysis as your method of analysis. b) Detemine the maximum power that can be transferred by the device to the load

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Figure 1 shows the intemal circuitry for a digital watch prototype. You, the engineer, are required
to do an electrical analysis of the circuit by hand to assess the operation of the charger on different
loads. The two output terminals of this linear device are across the resistor, RS.
R5 is not the load resistor. The load is not included in the circuit.
Based on what you have leamt in this course, you decided to reduce the complex circuit to an
equivalent circuit for easier analysis.
200
100
RI
R3
20V
100 R2
5A
100
200
R4
R5
(1)SA
20V
100
200
R6
R7
Figure 1
a) Implement Norton's theorem to simplify the circuit for the device shown in Figure 1.
Use Mesh Analysis as your method of analysis.
b) Determine the maximum power that can be transferred by the device to the load.
Transcribed Image Text:Figure 1 shows the intemal circuitry for a digital watch prototype. You, the engineer, are required to do an electrical analysis of the circuit by hand to assess the operation of the charger on different loads. The two output terminals of this linear device are across the resistor, RS. R5 is not the load resistor. The load is not included in the circuit. Based on what you have leamt in this course, you decided to reduce the complex circuit to an equivalent circuit for easier analysis. 200 100 RI R3 20V 100 R2 5A 100 200 R4 R5 (1)SA 20V 100 200 R6 R7 Figure 1 a) Implement Norton's theorem to simplify the circuit for the device shown in Figure 1. Use Mesh Analysis as your method of analysis. b) Determine the maximum power that can be transferred by the device to the load.
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