
Fiber Technician Training
Get the hands-on fibre optic skills employers are actively hiring for right now. This training covers everything from cable preparation and splicing to OTDR testing and outside plant installation. Whether you're breaking into the telecom trades or levelling up your current skill set, this course gives you the technical foundation to work confidently in the field.
What you will learn:
You'll learn how fibre optic cables are built, how light carries data through them, and how to select the right fibre type for any job. The course walks you through proper cable handling, jacket removal, precision cleaving, and both fusion and mechanical splicing. You'll get detailed instruction on terminating and inspecting connectors, running optical loss tests, and reading OTDR traces to certify installations. Inside plant and outside plant environments are both covered, including aerial, direct-buried, conduit, and data centre work. You'll also study fault locating, troubleshooting workflows, and professional documentation practices that keep projects on track.
How you study practically Fiber Technician Training
How you practise Fiber Technician Training
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsIntroduction to Fibre Optic Technology
Introduction to Fibre Optic Technology
Lesson 1 • Industry Standards and Safety Basics
Introduces governing standards bodies and fundamental laser safety classifications. Ensures technicians work within recognised safety and compliance frameworks.
Lesson 2 • Fibre Optic Cable Construction
Describes core, cladding, buffer, and jacket layers and their protective functions. Connects material properties to performance and handling requirements.
Lesson 3 • History and Industry Overview
Traces fibre optic development from early light-pipe experiments to modern broadband networks. Establishes industry scope and career pathways for technicians.
Lesson 4 • Single-Mode vs. Multimode Fibre
Compares modal propagation, bandwidth, and distance capabilities of each fibre type. Guides technicians in selecting the correct fibre for a given application.
Lesson 5 • Physics of Light Transmission
Explains refraction, reflection, and total internal reflection as the basis for fibre operation. Links optical physics directly to signal propagation concepts.
Chapter 2HideHide detailsSee detailsTools, Equipment, and Workplace Safety
Tools, Equipment, and Workplace Safety
Lesson 1 • Fibre Fragment and Chemical Safety
Addresses disposal of glass fragments and safe use of index-matching gels and cleaning solvents. Prevents contamination of work areas and protects technician health.
Lesson 2 • Laser and Optical Radiation Safety
Details hazards of live fibre exposure and safe handling of optical sources. Technicians apply control measures to eliminate eye and skin injury risks.
Lesson 3 • Test and Measurement Equipment
Introduces optical power meters, light sources, visual fault locators, and OTDRs at a basic level. Familiarity with equipment prepares technicians for later testing chapters.
Lesson 4 • Worksite Organisation and Ergonomics
Establishes clean-workspace protocols and ergonomic practices for sustained field and lab work. Reduces errors caused by disorganisation and repetitive-strain injuries.
Lesson 5 • Hand Tools for Fibre Work
Identifies strippers, cleavers, scribes, and cable preparation tools and their correct uses. Proper tool selection prevents fibre damage and rework.
Chapter 3HideHide detailsSee detailsCable Handling and Preparation
Cable Handling and Preparation
Lesson 1 • Cable Routing and Bend Radius
Covers minimum bend radius rules, pulling tension limits, and conduit fill calculations. Correct routing prevents microbend losses and long-term cable degradation.
Lesson 2 • Fibre Cleaning Techniques
Details dry, wet-dry, and solvent cleaning methods for bare fibre and connector end-faces. Contamination-free surfaces are critical to achieving acceptable insertion loss.
Lesson 3 • Cable Identification and Documentation
Introduces labelling conventions, colour codes, and as-built documentation practices during preparation. Accurate records reduce troubleshooting time and support future maintenance.
Lesson 4 • Jacket and Buffer Removal
Teaches step-by-step jacket scoring, buffer stripping, and coating removal without nicking fibre. Clean preparation is the foundation of low-loss terminations.
Lesson 5 • Precision Fibre Cleaving
Explains cleaver calibration, blade rotation, and technique for producing flat, perpendicular end-faces. Cleave quality directly determines splice and connector performance.
Chapter 4HideHide detailsSee detailsFibre Optic Connectors and Termination
Fibre Optic Connectors and Termination
Lesson 1 • Connector Insertion Loss Testing
Applies the optical loss test set method to verify connector performance against loss budgets. Results are recorded and compared to project specifications.
Lesson 2 • Pre-Polished and Mechanical Connectors
Covers field-installable connectors with factory-polished stubs and mechanical splice elements. Technicians apply these for rapid deployment where polishing equipment is unavailable.
Lesson 3 • Connector Types and Applications
Surveys SC, LC, ST, FC, MPO, and other common connectors and their deployment contexts. Matching connector type to application prevents compatibility and performance issues.
Lesson 4 • Epoxy and Polish Termination Method
Walks through adhesive injection, fibre insertion, curing, and multi-stage polishing on a lapping film. This method produces the most consistent end-face geometry.
Lesson 5 • Connector End-Face Inspection
Teaches use of inspection microscopes and video probes to evaluate end-face quality per accepted criteria. Defect identification prevents installation of non-conforming connectors.
Chapter 5HideHide detailsSee detailsFibre Optic Splicing Techniques
Fibre Optic Splicing Techniques
Lesson 1 • Executing a Fusion Splice
Guides technicians through fibre preparation, loading, splicing, and estimated loss verification. Each step directly affects the mechanical and optical quality of the joint.
Lesson 2 • Fusion Splicer Operation
Covers splicer setup, electrode maintenance, alignment modes, and arc calibration procedures. Correct splicer operation is prerequisite to achieving low estimated splice loss.
Lesson 3 • Splice Protection and Storage
Details heat-shrink sleeve application, splice tray loading, and enclosure management. Proper protection prevents mechanical failure and moisture ingress at the splice point.
Lesson 4 • Mechanical Splicing Procedure
Demonstrates index-matching gel application, fibre alignment, and mechanical element actuation. Mechanical splices provide a fast field solution when fusion equipment is unavailable.
Lesson 5 • Splicing Fundamentals and Applications
Compares fusion and mechanical splicing in terms of loss, cost, and use cases. Establishes when each method is appropriate for outside plant and inside plant work.
Chapter 6HideHide detailsSee detailsOptical Testing and Measurement
Optical Testing and Measurement
Lesson 1 • Optical Loss Budget Fundamentals
Explains how to calculate allowable loss from transmitter power and receiver sensitivity. Loss budget analysis determines whether a link design is viable before installation.
Lesson 2 • OTDR Principles and Setup
Explains backscatter, Fresnel reflection, and how OTDRs build a distance-vs.-loss trace. Correct parameter setup ensures accurate event detection and distance measurement.
Lesson 3 • Optical Power Meter Testing
Covers reference cord setup, wavelength selection, and end-to-end insertion loss measurement. Power meter testing is the primary method for certifying installed link loss.
Lesson 4 • Certification and Test Documentation
Establishes procedures for compiling test reports, comparing results to specifications, and obtaining sign-off. Complete documentation protects technicians and satisfies project closeout requirements.
Lesson 5 • OTDR Trace Analysis
Teaches cursor placement, event identification, and loss measurement on OTDR traces. Accurate trace reading is essential for locating faults and certifying splice and connector loss.
Chapter 7HideHide detailsSee detailsOutside Plant Fibre Installation
Outside Plant Fibre Installation
Lesson 1 • Direct-Buried Cable Installation
Details trenching depth requirements, bedding material, warning tape placement, and backfill procedures. Correct burial protects cable from mechanical damage and environmental stress.
Lesson 2 • Underground and Conduit Installation
Covers conduit preparation, pulling lubricant use, tension monitoring, and innerduct installation. Proper technique prevents cable damage and ensures future access for maintenance.
Lesson 3 • OSP Splice Enclosures and Vaults
Covers dome, inline, and wall-mount enclosure types, sealing methods, and vault installation. Proper enclosure selection and sealing prevent moisture ingress and extend splice life.
Lesson 4 • OSP Cable Types and Selection
Compares loose-tube, ribbon, and armoured OSP cables and their environmental ratings. Correct cable selection ensures long-term performance in the target deployment environment.
Lesson 5 • Aerial Cable Installation
Explains lashing, figure-eight self-supporting, and all-dielectric self-supporting aerial methods. Sag, tension, and clearance calculations ensure safe and code-compliant aerial spans.
Chapter 8HideHide detailsSee detailsInside Plant Installation and Fibre Management
Inside Plant Installation and Fibre Management
Lesson 1 • Data Centre Fibre Infrastructure
Addresses structured cabling topology, trunk cable systems, and pre-terminated assemblies for data centres. High-density and low-latency requirements drive specific design and installation choices.
Lesson 2 • Fibre Distribution Units and Panels
Explains rack-mount and wall-mount fibre distribution units, adapter panels, and cassette modules. Correct panel selection and installation enable efficient patching and future scalability.
Lesson 3 • Fibre Management Best Practices
Establishes bend radius protection, slack management, and labelling standards within equipment rooms. Good fibre management reduces signal loss, simplifies troubleshooting, and extends cable life.
Lesson 4 • Inside Plant Cable Types
Distinguishes riser, plenum, LSZH, and distribution cable ratings and their code-required applications. Selecting the correct fire rating prevents code violations and life-safety hazards.
Lesson 5 • Pathway and Raceway Installation
Covers cable tray, conduit, J-hooks, and innerduct installation within buildings. Proper pathway design supports bend radius compliance and future cable additions.
Your valid completion certificate
This course is for you:
Aspiring telecom worker: wants structured training before pursuing first fibre job.
Electrician or low-voltage installer: ready to add fibre certification to existing credentials.
Military veteran: transitioning to civilian infrastructure work with transferable technical discipline.
Construction labourer: seeking a skilled trade with stronger long-term earning potential.
IT support technician: moving from network administration toward physical cabling and infrastructure.
Career changer: leaving an unrelated field and committing to a hands-on technical trade.
What our students say
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