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ABSTRACT

This project is titled the design and construction of a DC to AC inverter system. It is designed to meet up with the power demand in the offices and in homes in the absence of power supply from the national supply authority, NEPA. In order words the device / item serves as a substitute for NEPA which almost monopolises the power supply to people.
It is designed in such a way that it will take up 12v DC from battery and inverts it to an output of 220v, 50H2 AC. It makes no noise during operation and no hazardous carbon monoxide is generated in the surrounding.   
This is a feature that makes it safe to use any where when compared to generator. Also, the circuit is capable of charging the battery (i.e 12v source) when the power from the supply authority is on. This greatly reduces the cost of operation of the system.
This work is aimed at designing a 1KVA modified sine wave inverter that can be used to power appliances both in homes and industries.

TABLE OF CONTENTS
Title Page
Approval Page
Dedication
Acknowledgement
Abstract
Table of Content
CHAPTER ONE
1.0     Introduction
1.1     Objective of the study
1.2     Significance of the study
1.3     Inverter rating

1.4     Why choose a modified sine wave inverter?

1.5     types of inverter

 

CHAPTER TWO
2.0     Literature review
2.1     review of history of an inverter
2.2   review of how to choosing the right inverter
2.3      review of the difference between sine wave and modified sine wave   inverter.

2.4     review of inverter capacity

2.5     safety of inverter

CHAPTER THREE
3.0     Construction
3.1     basic designs of an inverter
3.2      block diagram of the system
3.3      modified sine wave inverter circuit using ic 3525,  with regulated output and low battery protection.
3.4     description of components used
3.5     parts list 
3.6      how to choose a right inverter and battery
3.7      how to choose the best inverter battery

CHAPTER FOUR
RESULT ANALYSIS
4.0     Construction Procedure and Testing
4.1     Casing and Packaging
4.2     Assembling of Sections
4.3     Testing of System Operation
4.4      Cost Analysis

CHAPTER FIVE     
5.0     Conclusion
5.1     Recommendation
5.2     References

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