12v to 240v Inverter using Transformer in proteus

12v to 240v Inverter using Transformer in proteus

In this article we will learn how to make 12v to 240v Inverter using Transformer in proteus.
In the last post we will learn how to interface Light Intensity and LDR sensor in proteus. You can visit our website,
I hope you appreciate my work, let’s discuss about today’s project.

Components which we use in this project are listed below:

  1. Transformer
  2. 12v Battery
  3. Resistor 1k
  4. Resistor variable
  5. Lamp
  6. Jumper wires

Diagram of this project is below:

12v to 240v Inverter using Transformer in proteus
12v to 240v Inverter using Transformer in proteus

Construction of 12v to 240v Inverter, using Transformer in proteus

  • Connect one terminal of transformer with the collector point of RV 1 through the one side of resistor 1k
  • Connect the 2nd terminal of transformer with the collector point of RV 2 through the one side of 2nd resistor 1k
  • Connect the other sides of resistor 1k with the signal points of both RV 1&2
  • Connect the one side of battery with the ammeter points of both RV 1&2
  • Connect the other side of battery with the signal point of transformer

Working of 12v to 240v Inverter, using Transformer in proteus

A 12V to 240V inverter is a device that converts low-voltage DC (Direct Current) power from a 12-volt battery or other DC source into high-voltage AC (Alternating Current) power at 240 volts. This type of inverter is commonly used in applications like powering household appliances or small electronics from a car battery or a portable power source. The key component in such an inverter is a transformer along with other electronic components.

Applications of 12v to 240v Inverter, using Transformer in proteus

  1. Emergency Power Supply
  2. Off-Grid Solar Power Systems
  3. Car Power Inverter
  4. Mobile Medical Equipment
  5. Powering Home Appliances

Advantages of 12v to 240v Inverter, using Transformer in proteus

  1. Power Backup
  2. Ease of Installation
  3. Reliability
  4. Compatibility
  5. Stable Voltage