Design and construction of voltage inverter system with trickle charging system

 

Table Of Contents


  • <p> </p><p>Title Page</p><p>Approval Page</p><p>Dedication</p><p>Acknowledgment</p><p>Abstract</p><p>Table of Contents</p><p><b>

Chapter ONE

INTRODUCTION

  • </b></p><p>Introduction</p><p>Most Essential Circuit in the Device</p><p>Transformer </p><p>Oscillator </p><p>Pre – Amp</p><p>Automatic Control Unit</p><p>Charging System</p><p>General Aim and Objective of the Design </p><p><b>

Chapter TWO

LITERATURE REVIEW

  • </b></p><p>Diode</p><p>Capacitance</p><p>Transistor</p><p>Biasing</p><p>Transistor Configuration</p><p>Static Characteristics</p><p>Relation Current</p><p>D.C. Load Line</p><p>Transistor as an Amplifier</p><p>Transistor as a Switch</p><p><b>

Chapter THREE

RESEARCH METHODOLOGY

  • </b></p><p>Mosfets</p><p>De Mosfet</p><p>Depletion Mode of N- Channel De Mosfet</p><p>Enhancement Mode of N- Channel De Mosfet</p><p>E – Only Mosfet</p><p>Biasing e – Only Mosfet</p><p>De Mosfet Amplifiers</p><p>E – Only Moset Amplifier</p><p>Transformer</p><p><b>

Chapter FOUR

DATA PRESENTATION AND ANALYSIS

  • </b></p><p>Feature of the Device</p><p>Input Unit</p><p>Oscillating Unit</p><p>Pre- Amplification Unit </p><p>Step Up (Transformer) Unit</p><p>Switching Unit</p><p>&nbsp;Charging Unit</p><p>General Circuit Diagram</p><p>Operation of the Device</p><p><b>

Chapter FIVE

SUMMARY, CONCLUSION AND RECOMMENDATIONS

  • </b></p><p>Construction and Packaging </p><p>Packaging</p><p>Conclusion </p><p>Recommendation</p> <br><p></p>

Project Abstract

<p> </p><p>This project is he design and construction of a voltage inverter system with trickle charging system. This device is design to provide power supply for the need of offices, household etc. In absence of NEPA power supply.</p><p> It would also prevent harm to our appliances caused by power holding company LTD (NEPA) Random power outage .</p> <br><p></p>

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