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X-WR-CALNAME:Excel Business Institute
X-ORIGINAL-URL:https://excelbi.co.za
X-WR-CALDESC:Events for Excel Business Institute
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DTSTART:20250101T000000
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BEGIN:VEVENT
DTSTART;TZID=UTC:20261109T090000
DTEND;TZID=UTC:20261113T130000
DTSTAMP:20260921T120433
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000762-1794214800-1794574800@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2026-11-09/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20270111T090000
DTEND;TZID=UTC:20270115T130000
DTSTAMP:20260921T120433
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000763-1799658000-1800018000@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2027-01-11/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20270308T090000
DTEND;TZID=UTC:20270312T130000
DTSTAMP:20260921T120433
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000764-1804496400-1804856400@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2027-03-08/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20270510T090000
DTEND;TZID=UTC:20270514T130000
DTSTAMP:20260921T120433
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000765-1809939600-1810299600@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2027-05-10/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20270712T090000
DTEND;TZID=UTC:20270716T130000
DTSTAMP:20260921T120433
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000766-1815382800-1815742800@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2027-07-12/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20270913T090000
DTEND;TZID=UTC:20270917T130000
DTSTAMP:20260921T120433
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000767-1820826000-1821186000@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2027-09-13/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20271108T090000
DTEND;TZID=UTC:20271112T130000
DTSTAMP:20260921T120433
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000768-1825664400-1826024400@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2027-11-08/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20280110T090000
DTEND;TZID=UTC:20280114T130000
DTSTAMP:20260921T120433
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000769-1831107600-1831467600@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2028-01-10/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20280313T090000
DTEND;TZID=UTC:20280317T130000
DTSTAMP:20260921T120433
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000770-1836550800-1836910800@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2028-03-13/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20280508T090000
DTEND;TZID=UTC:20280512T130000
DTSTAMP:20260921T120433
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000771-1841389200-1841749200@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2028-05-08/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20280710T090000
DTEND;TZID=UTC:20280714T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000772-1846832400-1847192400@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2028-07-10/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20280911T090000
DTEND;TZID=UTC:20280915T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000773-1852275600-1852635600@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2028-09-11/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20281113T090000
DTEND;TZID=UTC:20281117T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000774-1857718800-1858078800@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2028-11-13/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20290108T090000
DTEND;TZID=UTC:20290112T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000775-1862557200-1862917200@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2029-01-08/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20290312T090000
DTEND;TZID=UTC:20290316T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000776-1868000400-1868360400@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2029-03-12/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20290514T090000
DTEND;TZID=UTC:20290518T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000777-1873443600-1873803600@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2029-05-14/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20290709T090000
DTEND;TZID=UTC:20290713T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000778-1878282000-1878642000@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2029-07-09/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20290910T090000
DTEND;TZID=UTC:20290914T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000779-1883725200-1884085200@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2029-09-10/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20291112T090000
DTEND;TZID=UTC:20291116T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000780-1889168400-1889528400@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2029-11-12/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20300114T090000
DTEND;TZID=UTC:20300118T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000781-1894611600-1894971600@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2030-01-14/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20300311T090000
DTEND;TZID=UTC:20300315T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000782-1899450000-1899810000@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2030-03-11/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20300513T090000
DTEND;TZID=UTC:20300517T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000783-1904893200-1905253200@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2030-05-13/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20300708T090000
DTEND;TZID=UTC:20300712T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000784-1909731600-1910091600@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2030-07-08/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20300909T090000
DTEND;TZID=UTC:20300913T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000785-1915174800-1915534800@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2030-09-09/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20301111T090000
DTEND;TZID=UTC:20301115T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000786-1920618000-1920978000@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2030-11-11/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20310113T090000
DTEND;TZID=UTC:20310117T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000787-1926061200-1926421200@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2031-01-13/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=UTC:20310310T090000
DTEND;TZID=UTC:20310314T130000
DTSTAMP:20260921T120434
CREATED:20260416T070448Z
LAST-MODIFIED:20260416T071000Z
UID:10000788-1930899600-1931259600@excelbi.co.za
SUMMARY:Certificate: Information Technologies Operations
DESCRIPTION:Course Objective:\nTo provide learners with the fundamental theoretical knowledge and practical skills required to understand\, assemble\, test\, troubleshoot\, and design basic electronic circuits and systems. \nTarget Audience: \nSchool leavers\, electronics enthusiasts\, technicians-in-training\, and individuals seeking a foundation for a career in electronics repair\, assembly\, or further engineering study. \nOutline\nModule 1: Basic Electronics and Circuit Theory\n\nFundamental Concepts: Atomic structure\, charge\, current\, voltage\, resistance\, and power.\nOhm’s Law and Power Law: Calculations and applications.\nCircuit Analysis: Series and parallel circuits; calculating total resistance\, current\, and voltage.\nDC Circuit Principles: Kirchhoff’s Current Law (KCL) and Kirchhoff’s Voltage Law (KVL).\nEnergy and Power: Understanding power dissipation and energy consumption in circuits.\nIntroduction to Capacitance and Inductance: How capacitors and inductors work in DC circuits (charging/discharging).\n\nModule 2: Components and Devices\n\nPassive Components: Resistors (types\, color codes\, values)\, Capacitors (types\, values)\, Inductors.\nSemiconductor Fundamentals: Conductors\, insulators\, and semiconductors.\nDiodes: PN junction theory\, rectifier diodes\, LEDs\, Zener diodes.\nTransistors: Bipolar Junction Transistors (BJTs) as switches and amplifiers; introduction to MOSFETs.\nOther Devices: Switches\, relays\, transformers\, fuses\, circuit breakers.\nSensors and Actuators: Introduction to components like LDRs\, thermistors\, buzzers\, and motors.\n\nModule 3: Digital Electronics and Microcontrollers\n\nDigital Fundamentals: Difference between analog and digital signals; binary numbers.\nLogic Gates: AND\, OR\, NOT\, NAND\, NOR\, XOR; truth tables and simple gate ICs.\nIntroduction to Microcontrollers: Overview of a microcontroller unit (MCU) vs. a microprocessor.\nProgramming Fundamentals: Basic coding concepts (variables\, loops\, conditional statements) for a specific platform (e.g.\, Arduino).\nInterfacing: Using a microcontroller to read inputs (e.g.\, from a button or sensor) and control outputs (e.g.\, LEDs\, motors).\n\nModule 4: Testing and Measurement Techniques\n\nMultimeters: Accurate measurement of voltage\, current\, and resistance; continuity testing.\nOscilloscopes: Understanding waveforms\, measuring amplitude\, frequency\, and period; troubleshooting signal issues.\nPower Supplies: Using bench power supplies to provide precise voltage and current to a circuit under test.\nFunction Generators: Generating test signals (sine\, square\, triangle waves).\nReading Schematics: Interpreting circuit diagrams and symbols to guide testing.\nSoldering and Desoldering Techniques: Through-hole and basic surface-mount soldering skills.\n\nModule 5: Electronics System Design and Troubleshooting\n\nDesign Process: Defining requirements\, selecting components\, simulating circuits (basic introduction to software like LTSpice)\, creating schematics.\nPCB Basics: Introduction to Printed Circuit Boards; following a layout to assemble a PCB.\nTroubleshooting Methodology: Developing a logical\, systematic approach to fault-finding (e.g.\, half-split method\, signal tracing).\nIdentifying Faults: Diagnosing common problems like open circuits\, short circuits\, component failures\, and poor solder joints.\nSafety Procedures: Working safely with mains electricity\, high voltages\, and electrostatic discharge (ESD) protection.\nDocumentation: Creating clear documentation for designs and repair procedures.
URL:https://excelbi.co.za/event/certificate-information-technologies-operations/2031-03-10/
LOCATION:Excel BI\, 484 Hilda Street\, Hatfield\, Pretoria\, Gauteng\, 0083\, South Africa
CATEGORIES:Information Technology
ATTACH;FMTTYPE=image/jpeg:https://excelbi.co.za/wp-content/uploads/2026/04/IT-operations-1.jpg
ORGANIZER;CN="Excel BI":MAILTO:info@excelbi.co.za
END:VEVENT
END:VCALENDAR