Certificate: Information Technologies Operations

Course Objective:
To provide learners with the fundamental theoretical knowledge and practical skills required to understand, assemble, test, troubleshoot, and design basic electronic circuits and systems.
Target Audience:
School leavers, electronics enthusiasts, technicians-in-training, and individuals seeking a foundation for a career in electronics repair, assembly, or further engineering study.
Outline
Module 1: Basic Electronics and Circuit Theory
- Fundamental Concepts:Â Atomic structure, charge, current, voltage, resistance, and power.
- Ohm’s Law and Power Law: Calculations and applications.
- Circuit Analysis:Â Series and parallel circuits; calculating total resistance, current, and voltage.
- DC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).
- Energy and Power:Â Understanding power dissipation and energy consumption in circuits.
- Introduction to Capacitance and Inductance:Â How capacitors and inductors work in DC circuits (charging/discharging).
Module 2: Components and Devices
- Passive Components:Â Resistors (types, color codes, values), Capacitors (types, values), Inductors.
- Semiconductor Fundamentals:Â Conductors, insulators, and semiconductors.
- Diodes:Â PN junction theory, rectifier diodes, LEDs, Zener diodes.
- Transistors:Â Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.
- Other Devices:Â Switches, relays, transformers, fuses, circuit breakers.
- Sensors and Actuators:Â Introduction to components like LDRs, thermistors, buzzers, and motors.
Module 3: Digital Electronics and Microcontrollers
- Digital Fundamentals:Â Difference between analog and digital signals; binary numbers.
- Logic Gates:Â AND, OR, NOT, NAND, NOR, XOR; truth tables and simple gate ICs.
- Introduction to Microcontrollers:Â Overview of a microcontroller unit (MCU) vs. a microprocessor.
- Programming Fundamentals:Â Basic coding concepts (variables, loops, conditional statements) for a specific platform (e.g., Arduino).
- Interfacing:Â Using a microcontroller to read inputs (e.g., from a button or sensor) and control outputs (e.g., LEDs, motors).
Module 4: Testing and Measurement Techniques
- Multimeters:Â Accurate measurement of voltage, current, and resistance; continuity testing.
- Oscilloscopes:Â Understanding waveforms, measuring amplitude, frequency, and period; troubleshooting signal issues.
- Power Supplies:Â Using bench power supplies to provide precise voltage and current to a circuit under test.
- Function Generators:Â Generating test signals (sine, square, triangle waves).
- Reading Schematics:Â Interpreting circuit diagrams and symbols to guide testing.
- Soldering and Desoldering Techniques:Â Through-hole and basic surface-mount soldering skills.
Module 5: Electronics System Design and Troubleshooting
- Design Process:Â Defining requirements, selecting components, simulating circuits (basic introduction to software like LTSpice), creating schematics.
- PCB Basics:Â Introduction to Printed Circuit Boards; following a layout to assemble a PCB.
- Troubleshooting Methodology:Â Developing a logical, systematic approach to fault-finding (e.g., half-split method, signal tracing).
- Identifying Faults:Â Diagnosing common problems like open circuits, short circuits, component failures, and poor solder joints.
- Safety Procedures:Â Working safely with mains electricity, high voltages, and electrostatic discharge (ESD) protection.
- Documentation:Â Creating clear documentation for designs and repair procedures.



