
Fiber Optic Technology Course
Master every stage of fibre optic technology, from the physics of light transmission to hands-on installation, testing, and network design. This course gives you the technical knowledge and practical skills employers demand in today's high-speed connectivity industry. Whether you're entering the field or leveling up your career, this is the training that gets you there.
What you will learn:
You'll build a solid foundation in fibre optic principles, covering light propagation, fibre types, signal loss, and dispersion. You'll learn to select the right cable and connector for any installation environment and perform terminations and fusion splices to professional standards. The course walks you through conduit, aerial, and direct-buried installation methods, along with all required safety practices. You'll operate test instruments including OTDRs and optical power meters to verify and certify fibre links. Network design, troubleshooting, and preventive maintenance are also covered in full detail.
How you study in practice Fiber Optic Technology Course
How you practise Fiber Optic Technology Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your company and its specific needs.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFundamentals of Light and Fibre Optics
Fundamentals of Light and Fibre Optics
Lesson 1 • Basic Fibre Optic Cable Structure
Identifies core, cladding, coating, and buffer layers and their respective roles. Connects material composition to optical and mechanical performance.
Lesson 2 • Refraction and Snell's Law
Explains how light bends at material boundaries using Snell's Law. Directly enables understanding of total internal reflection inside fibre cores.
Lesson 3 • Light Sources Used in Fibre Systems
Introduces LEDs and laser diodes as the primary optical transmitters in fibre systems. Compares coherence, bandwidth, and coupling efficiency of each source type.
Lesson 4 • Total Internal Reflection Principle
Demonstrates how light is trapped inside a fibre core when the critical angle is exceeded. This principle is the operational foundation of all fibre optic transmission.
Lesson 5 • Physics of Light Propagation
Covers wavelength, frequency, and the electromagnetic spectrum relevant to optical communications. Grounds all subsequent fibre behaviour in measurable physical properties.
Chapter 2HideHide detailsSee detailsFibre Types and Cable Configurations
Fibre Types and Cable Configurations
Lesson 1 • Multimode Fibre Variants
Covers step-index and graded-index multimode fibres and their modal dispersion profiles. Connects fibre geometry to bandwidth-distance limitations in enterprise networks.
Lesson 2 • Specialty Fibre Types
Introduces polarization-maintaining, photonic crystal, and bend-insensitive fibres for specialised applications. Expands the student's selection toolkit beyond standard fibre categories.
Lesson 3 • Cable Construction and Jacket Designs
Describes loose-tube, tight-buffered, ribbon, and armoured cable constructions. Links mechanical design choices to installation environment requirements.
Lesson 4 • Single-Mode Fibre Characteristics
Examines the small core diameter and single propagation path that enable long-distance, high-bandwidth transmission. Establishes when single-mode is the preferred choice.
Lesson 5 • Fibre and Cable Standards Overview
Surveys internationally recognised fibre geometry and performance standards that govern product interoperability. Enables students to read and apply specification sheets correctly.
Chapter 3HideHide detailsSee detailsOptical Signal Loss and Dispersion
Optical Signal Loss and Dispersion
Lesson 1 • Polarisation Mode Dispersion
Explains how birefringence in single-mode fibre causes pulse broadening at high bit rates. Addresses measurement and compensation approaches for high-speed links.
Lesson 2 • Optical Power and Decibel Maths
Teaches dBm, dB, and loss ratio calculations essential for link engineering. Students practise converting between linear power and logarithmic units.
Lesson 3 • Modal and Chromatic Dispersion
Distinguishes modal dispersion in multimode fibre from chromatic dispersion in single-mode fibre. Connects dispersion magnitude to achievable data rates and reach.
Lesson 4 • Link Loss Budget Calculation
Applies attenuation and connector loss values to determine whether a link meets power margin requirements. Students complete end-to-end budget worksheets for realistic scenarios.
Lesson 5 • Attenuation Mechanisms in Fibre
Analyses absorption, scattering, and bending losses that reduce signal power along the fibre. Provides the physical basis for loss budget calculations performed later.
Chapter 4HideHide detailsSee detailsConnectors, Splices, and Passive Components
Connectors, Splices, and Passive Components
Lesson 1 • Fibre Optic Connector Types
Surveys LC, SC, ST, FC, MPO, and other common connector styles and their keying and polish types. Matches connector selection to transceiver interfaces and panel designs.
Lesson 2 • Passive Optical Components
Introduces couplers, splitters, WDM filters, attenuators, and isolators used in optical networks. Explains insertion loss and isolation specs that govern component selection.
Lesson 3 • Mechanical and Fusion Splicing
Compares mechanical splice assemblies with fusion splicing for permanent low-loss joints. Covers arc fusion machine operation, splice protection, and quality verification.
Lesson 4 • Patch Panels and Distribution Frames
Covers fibre distribution hub design, labelling conventions, and cable management best practices. Connects physical infrastructure organisation to troubleshooting efficiency.
Lesson 5 • Fibre Termination Techniques
Demonstrates field-termination and pre-polished connector installation methods step by step. Emphasises cleanliness, cleave quality, and epoxy cure as loss determinants.
Chapter 5HideHide detailsSee detailsFibre Optic Installation and Safety
Fibre Optic Installation and Safety
Lesson 1 • Direct-Buried and Underground Installation
Details trenching depth, bedding material, warning tape placement, and armoured cable requirements. Ensures buried plant survives environmental and mechanical stress over its service life.
Lesson 2 • Fibre Handling and Bend Radius Control
Enforces minimum bend radius rules during pulling, routing, and storage to prevent microbend losses. Connects improper handling directly to measurable performance degradation.
Lesson 3 • Conduit and Innerduct Installation
Covers conduit fill calculations, pulling tension limits, and innerduct selection for protected fibre runs. Prevents cable damage caused by exceeding bend radius or tensile load.
Lesson 4 • Aerial Fibre Installation Methods
Explains lashing, self-supporting ADSS, and figure-eight cable deployment on utility poles. Addresses sag, tension, and clearance requirements for aerial plant safety.
Lesson 5 • Occupational Safety in Fibre Work
Identifies hazards including glass shards, laser radiation, and chemical exposure during fibre installation. Establishes personal protective equipment and safe work habits as non-negotiable baselines.
Chapter 6HideHide detailsSee detailsFibre Optic Testing and Measurement
Fibre Optic Testing and Measurement
Lesson 1 • OTDR Trace Interpretation
Trains students to identify connectors, splices, bends, and fibre ends on an OTDR trace. Quantifies event loss and reflectance values for pass/fail certification.
Lesson 2 • Visual Fault Locators and Continuity
Uses visible red-light sources to identify breaks, bends, and connector faults quickly. Establishes the first-pass inspection step before deploying precision instruments.
Lesson 3 • OTDR Principles and Setup
Explains how an OTDR uses backscattered light to locate and quantify events along a fibre. Covers pulse width, range, and dead zone settings for accurate measurements.
Lesson 4 • Optical Power Meter Measurements
Teaches insertion loss measurement using a calibrated light source and power meter pair. Students perform end-to-end loss tests and compare results to the loss budget.
Lesson 5 • Optical Spectrum and Advanced Instruments
Introduces optical spectrum analysers and optical time-domain reflectometers for WDM channel verification. Prepares students for advanced network commissioning tasks.
Chapter 7HideHide detailsSee detailsFibre Optic Network Design and Architecture
Fibre Optic Network Design and Architecture
Lesson 1 • Network Topology Fundamentals
Compares point-to-point, ring, star, and mesh fibre topologies for reliability and cost trade-offs. Provides the architectural vocabulary used throughout network design work.
Lesson 2 • Passive Optical Network Architecture
Explains PON splitter ratios, optical line terminal placement, and reach limits for fibre-to-the-premises deployments. Connects PON design to subscriber density and budget constraints.
Lesson 3 • Design Documentation and As-Built Records
Establishes standards for route maps, splice schedules, and test result documentation. Accurate records reduce troubleshooting time and support future network expansion.
Lesson 4 • Wavelength Division Multiplexing Design
Covers CWDM and DWDM channel plans, amplifier placement, and dispersion compensation in WDM links. Enables students to design multi-channel systems on a single fibre pair.
Lesson 5 • Structured Cabling for Fibre Networks
Applies horizontal, backbone, and campus cabling hierarchy standards to fibre infrastructure design. Ensures designs comply with recognised structured cabling frameworks.
Chapter 8HideHide detailsSee detailsTroubleshooting and Maintenance of Fibre Systems
Troubleshooting and Maintenance of Fibre Systems
Lesson 1 • Connector Inspection and Cleaning
Uses fibre inspection microscopes and cleaning tools to identify and remove contamination on end-faces. Contamination is the leading cause of elevated insertion loss in installed systems.
Lesson 2 • Systematic Fault Isolation Process
Introduces a structured divide-and-conquer troubleshooting methodology for fibre link faults. Reduces mean time to repair by eliminating guesswork and focusing on measurable symptoms.
Lesson 3 • Preventive Maintenance Programmes
Establishes inspection schedules, cleaning intervals, and performance trending to prevent unplanned outages. Proactive maintenance extends infrastructure life and reduces emergency repair costs.
Lesson 4 • Fibre Break Repair Procedures
Covers locating a break with OTDR, accessing the cable, re-splicing, and restoring the link to specification. Includes splice enclosure re-entry and re-sealing best practices.
Lesson 5 • Diagnosing High Loss and Reflectance
Correlates OTDR event data and power meter readings to specific fault types such as dirty connectors or failed splices. Guides students from measurement to root cause identification.
Your valid completion certificate
This course is for you:
Electricians: expanding into low-voltage and structured cabling fibre work.
IT support technicians: moving beyond copper into fibre infrastructure roles.
Network administrators: seeking hands-on skills to complement their systems knowledge.
Telecom field workers: formalizing practical experience with structured technical training.
Career changers: entering the connectivity industry from unrelated technical backgrounds.
Facilities managers: overseeing fibre infrastructure and needing fluency in contractor work.
What our students say
Your lessons are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of interest without needing to change platforms... I'm grateful for everything you do, I've already recommended you to other people...

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