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This project consists of two separate simulated circuits intended to demonstrate the operational principles of step-up and step-down transformers.
The design includes two transformers (designators T1 and T2):
T1 is a step-down transformer with a turns ratio of 0.5, a primary inductance of 4H, and a coupling coefficient of 0.99.
T2 is a step-up transformer with a turns ratio of 2, a primary inductance of 4H, and a coupling coefficient of 0.99.
There are also two AC voltage sources (designators V1 and V2) both producing a sine wave with a peak voltage of 5V, a frequency of 60Hz, and zero phase offset.
Everything is connected through specified nets:
Resistor R1 is connected across secondary of the step-down transformer T1.
Resistor R3 is connected across secondary of the step-up transformer T2.
Voltage source V1 is connected to the primary of the transformer T1.
Voltage source V2 is connected to the primary of the transformer T2.
Each resistor would show the resulting voltage after transformation (step-up for T2, step-down for T1) due to the operation of the transformer.
These transformations simulate the effect of increasing or decreasing voltage levels, a core functionality of real-world power distribution systems.
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2
R3
Resistance
1MΩ
T2
V2
R1
Resistance
1MΩ
T1
V1
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simulated1_thumbnail.png
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[Example] Simulation of Types of Transformers
Two separate simulated circuits which demonstrate how step up and step down transformers work.
Properties
Properties describe core aspects of the project.
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