Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth

ABSTRACT

Cell phones need electric sources to charge their batteries in order to work, but there are people in developing and third world countries that find it hard to access electric sources. In an attempt to provide an alternative means of charging to those unfortunate areas in third world and developing countries, a solar powered cell phone charging booth is to be designed and constructed in this project.

The goal of this project is to create a multiple output solar cell phone chargers for Local areas that found it difficult to charge their phones. The charger takes an input of 12 volts from solar panel and reduces the voltage level to 5 volts output used to charge cell phones.

The design, construction and testing of the solar charger has been achieved and found to work satisfactorily. A cell phone charged at a rate similar to a conventional phone charger and the operation offers a reliable protection for cell phone batteries under charging.

TABLE OF CONTENTS

COVER PAGE
TITLE PAGE
APPROVAL PAGE
DEDICATION
ACKNOWELDGEMENT
ABSTRACT

CHAPTER ONE
1.0 INTRODUCTION
1.1 BACKGROUND OF THE PROJECT
1.2 PROBLEM STATEMENT
1.3 AIM AND OBJECTIVE OF THE PROJECT
1.4 SCOPE OF THE PROJECT
1.5 PURPOSE OF THE PROJECT
1.6 JUSTIFICATION OF THE PROJECT
1.7 APPLICATIONS OF THE PROJECT
1.8 PROJECT ORGANISATION

CHAPTER TWO
2.0 LITERATURE REVIEW OF SOLAR CHARGERS
2.1 HISTORIES OF SOLAR CELLS
2.2 EFFICIENCIES OF SOLAR PANEL
2.3 BENEFITS OF USING SOLAR CHARGERS

CHAPTER THREE
3.0 METHODOLOGY
3.1 CIRCUIT DIAGRAM OF CELL PHONE CHARGER
3.2 CIRCUIT OPERATION
3.4 CIRCUITS DESCRIPTION
3.6 SOLAR PANEL MOUNTING SYSTEM

CHAPTER FOUR
4.0 RESULT ANALYSIS
4.1 CONSTRUCTION PROCEDURE AND TESTING
4.2 CASING AND PACKAGING
4.3 ASSEMBLING OF SECTION
4.4 TESTING OF SYSTEM OPERATION
4.5 PROBLEMS ENCOUNTERED
4.6 COST ANALYSIS

CHAPTER FIVE
5.1 CONCLUSION
5.2 RECOMMENDATION
5.6 BIBLIOGRAPHY

APA

Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth. (n.d.). UniTopics. https://www.unitopics.com/project/material/design-and-construction-of-a-solar-powered-multiple-cell-phones-charging-booth/

MLA

“Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth.” UniTopics, https://www.unitopics.com/project/material/design-and-construction-of-a-solar-powered-multiple-cell-phones-charging-booth/. Accessed 20 September 2024.

Chicago

“Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth.” UniTopics, Accessed September 20, 2024. https://www.unitopics.com/project/material/design-and-construction-of-a-solar-powered-multiple-cell-phones-charging-booth/

WORK DETAILS

Chapters:
5
Pages:
40
Words:
5648

Here’s a typical structure for Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth research projects:

  • The title page of Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth should include the project title, your name, institution, and date.
  • The abstract of Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth should be a summary of around 150-250 words and should highlight the main objectives, methods, results, and conclusions.
  • The introduction of Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth should provide the background information, outline the research problem, and state the objectives and significance of the study.
  • Review existing research related to Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth, identifying gaps the study aims to fill.
  • The methodology section of Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth should describe the research design, data collection methods, and analytical techniques used.
  • Present the findings of the Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth research study using tables, charts, and graphs to illustrate key points.
  • Interpret Design And Construction Of A Solar Powered Multiple Cell Phones Charging Booth results, discussing their implications, limitations, and potential areas for future research.
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