Design And Construction Of An Ac/Dc Voltage Power Supply Trainer Kit

A voltage power supply trainer kit is a versatile educational tool designed to facilitate learning and experimentation in electrical engineering and electronics. It serves as a comprehensive platform for understanding the principles and applications of both AC and DC voltage systems. Through hands-on construction and experimentation, users gain practical insights into circuit design, component selection, and power supply operation. The kit typically includes various components such as transformers, rectifiers, voltage regulators, and filtering circuits, allowing users to explore topics like voltage regulation, ripple minimization, and power efficiency. With its interactive design and instructional materials, the AC/DC voltage power supply trainer kit empowers learners to develop skills in circuit design, troubleshooting, and application-specific customization, making it an indispensable tool for students, hobbyists, and professionals alike in the field of electrical engineering and electronics.

ABSTRACT

This research work describes design and construction of an AC and DC voltage power supply trainer circuit prototyping system. The primary objective is to design an inexpensive, simple to use device that could be retained by students, so that they could undertake power supply experimentation.

This training device includes an ac auto transformer module and dc variable output power supply. Through this training kit students will become more familiar with an auto transformer taps and adjustable dc voltage that is generated from the lm741 variable power supply.

 TABLE OF CONTENTS

COVER PAGE

TITLE PAGE

APPROVAL PAGE

DEDICATION

ACKNOWLEDGEMENT

ABSTRACT

CHAPTER ONE

1.0      INTRODUCTION

  • BACKGROUND OF THE PROJECT
  • APPLICATION OF THE PROJECT
  • AIM OF THE PROJECT
  • OBJECTIVE OF THE PROJECT
  • SIGNIFICANCE OF THE PROJECT
  • LIMITATION OF THE PROJECT
  • METHODOLOGY
  • PROJECT ORGANIZATION

CHAPTER TWO

LITERATURE REVIEW

  • OVERVIEW OF THE STUDY
  • REVIEW OF VARIABLE POWER SUPPLY
  • REVIEW OF GENERAL APPLICATION OF POWER SUPPLY APPLICATIONS
  • REVIEW OF OTHER TYPES OF POWER SUPPLY
  • OVERVIEW OF AN AUTO TRANSFORMER
  • OPERATION OF AUTO TRANSFORMER
  • AUTO TRANSFORMER CONSTRUCTION

CHAPTER THREE

CHAPTER THREE

3.0 METHODOLOGY

  • SYSTEM BLOCK DIAGRAM
  • SYSTEM CIRCUIT DIAGRAM
  • SYSTEM OPERATION
  • WORKING PRINCIPLE
  • DESCRIPTION OF COMPONENTS USED

CHAPTER FOUR

  • CONSTRUCTION PROCEDURE AND TESTING
  • CASING AND PACKAGING
  • ASSEMBLING OF SECTIONS
  • TESTING OF SYSTEM OPERATION

CHAPTER FIVE

  • CONCLUSION
  • RECOMMENDATION
  • REFERENCES

 CHAPTER ONE

1.0                                          INTRODUCTION

1.1                                    BACKGROUND STUDY

Although certain electrical appliances operate with an unregulated AC, almost all basic household and laboratory electronic circuits need an unregulated AC to be converted to constant DC, in other to operate the electronic device. The AC supply from the mains is usually rectified to a DC, and the DC supply is regulated and limited in terms of voltage and current. But the supply provided from the mains may be fluctuating and could easily break down the electronic equipment if not properly limited. This work of converting an unregulated alternating current or voltage to a limited direct current or voltage to make output constant regardless of the fluctuations in inputs is achieved by regulated power supply trainer circuit.
Power supply trainer circuit board’s fundamental base is providing both unregulated AC power for AC operated devices and a Variable DC for operation of basic electronic devices as well as provide circuitry components for carrying out of certain electrical test, experiments and training in the laboratory.

1.2                           APPLICATION OF THE PROJECT

Some applications of power supply trainer are:

Supply of electric power for operation of laboratory appliances using AC;
Achieving dc supply of electrical power ranging from 0.2V to 24V;
For testing of components, which makes it easy to design prototypes and experiment with circuit designs.

The LM317 voltage regulator used has many electrical applications. Here are the few of the applications

  1. Energy harvesting
  2. Refrigerator
  • Power quality meter
  1. Power substation control
  2. HVAC (Heating Ventilation Air Conditioning)
  3. Signal and wave generation
  • Ethernet switch

1.3                                    AIM OF THE PROJECT

The aim of this project is to construct an AC-DC power Supply Trainer Board.

1.4                            OBJECTIVES OF THE PROJECT

To design and construct a trainer board which receives electrical AC power from the mains.

To design and construct a circuit with a set of diodes that rectifies the ac to a dc.
To design and construct a circuit that regulates the rectified dc voltage and varies the out with voltages ranging from 0.2V to 24V. To mount several electrical components such as meters, plug sockets, active and passive components like resistors, capacitors and inductors.

1.5                            LIMITATION OF THE PROJECT

Though the power supply trainer can be used for operating of several dc devices, it can also be used for laboratory purposes and is therefore for internal use only. The selection of ac taps is done manually, that is, by connecting from one tap to another.

1.6                          SIGNIFICANCE OF THE PROJECT

  1. It is a positive voltage regulator
  2. It provides multiple tap output
  • It has internal current limiting
  1. Thermal shutdown
  2. Safe area compensation
  3. The materials and components for this project are affordable and readily available in electronics stores.

1.7                                                        METHODOLOGY

To achieve the aim and objectives of this work, the following are the steps involved:

  1. Study of the previous work on the project so as to improve it efficiency.
  2. Draw a block diagram.
  • Test for continuity of components and devices,
  1. Design and calculation for the device was carried out.
  2. Studying of various component used in circuit.
  3. Construction of the circuit was carried out.
  • Finally, the whole device was cased and final test was carried out.

1.8                                                         PROJECT ORGANIZATION

The work is organized as follows: chapter one discuses the introductory part of the work,   chapter two presents the literature review of the study,  chapter three describes the methods applied, chapter four discusses the results of the work, chapter five summarizes the research outcomes and the recommendations.

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