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Fiber Optic Splicing Course
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Fiber Optic Splicing Course

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Master every step of fiber optic splicing, from cable preparation and fusion techniques to OTDR testing and project documentation. This course gives you the hands-on knowledge and technical skills employers demand in today's fiber-driven infrastructure industry. Whether you're entering the trade or sharpening your existing skills, you'll finish ready to deliver professional-grade splice work in the field.

Dedika for students

What your team will master:

You'll build a solid foundation in fiber optic principles, then move through every practical stage of splice work: stripping, cleaning, cleaving, and executing fusion and mechanical splices on both single-mode and multimode fiber. You'll learn to set up and calibrate fusion splicers, use OTDRs to verify splice quality, and organize completed splices into enclosures that meet bend radius and sealing requirements. The course also covers safety compliance, loss budget calculations, and how to assemble a complete project handover package. By the end, you'll have the technical knowledge and procedural confidence to perform splice work that meets industry standards.

How your team learns in practice Fiber Optic Splicing Course

How your team practices Fiber Optic Splicing Course

Professionals from these companies study at Dedika

ActemiumFR
Nunner LogisticsNL
GT Constructora GeotécnicaCR
Sydel StarBR
Metrô de São PauloBR
Aguas AndinasCL
DSMIN
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CDHCN

Course Content

8 Chapters • 41 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Fiber Optic Technology

  • Lesson 1 • Optical Signal Loss Fundamentals

    Introduces attenuation, insertion loss, and return loss concepts. Provides the measurement baseline students use to evaluate splice quality.

  • Lesson 2 • Single-Mode vs. Multimode Fiber

    Distinguishes fiber categories by core diameter, bandwidth, and application range. Prepares students to select correct splicing parameters for each type.

  • Lesson 3 • Principles of Light in Fiber

    Covers total internal reflection, refractive index, and numerical aperture. Establishes the physics that govern signal travel through fiber cores.

  • Lesson 4 • Industry Standards and Safety Overview

    Surveys fiber optic industry standards bodies and laser safety classifications. Ensures students understand compliance expectations before handling live fiber.

  • Lesson 5 • Fiber Optic Cable Construction

    Examines core, cladding, coating, and buffer layers. Connects structural knowledge to handling and preparation decisions made during splicing.

Chapter 2See details

Tools, Equipment, and Workspace Setup

  • Lesson 1 • Fiber Stripping Tools and Techniques

    Covers mechanical and thermal strippers, blade settings, and proper grip. Correct stripping is the first physical step toward a low-loss splice.

  • Lesson 2 • Fusion Splicers and Arc Welders

    Introduces fusion splicer components, arc calibration, and splice programs. Students learn to power up, configure, and maintain the primary splicing instrument.

  • Lesson 3 • Fiber Cleavers and Cleave Quality

    Explains cleaver mechanics, blade rotation, and angle measurement. Cleave quality directly determines splice loss, making this section critical to the chapter.

  • Lesson 4 • Optical Power Meters and Light Sources

    Teaches use of optical power meters and stabilized light sources for loss measurement. These instruments verify splice performance immediately after joining.

  • Lesson 5 • Workspace Organization and Safety

    Establishes cleanliness protocols, tool layout, and hazard controls for splicing environments. A properly organized workspace reduces errors and protects technician health.

Chapter 3See details

Cable Preparation and Fiber Handling

  • Lesson 1 • Buffer Tube and Ribbon Access

    Explains buffer tube slitting, gel removal, and ribbon fiber separation. Accessing individual fibers without stress or contamination sets up a clean splice.

  • Lesson 2 • Fiber Cleaning Procedures

    Details dry and wet cleaning methods using lint-free wipes and isopropyl alcohol. Contamination on the fiber surface is a leading cause of elevated splice loss.

  • Lesson 3 • Fiber Length and Slack Management

    Teaches calculating working length, managing excess fiber, and coiling without microbends. Adequate slack ensures re-splicing capability and long-term reliability.

  • Lesson 4 • Outer Jacket Removal Methods

    Covers longitudinal and circumferential jacket scoring, cable ringing, and pulling techniques. Jacket removal without nicking internal components is a foundational field skill.

  • Lesson 5 • Cleaving for Splice Readiness

    Applies cleaver skills to prepared fiber ends, targeting sub-one-degree cleave angles. This section bridges preparation and the splicing process covered in the next chapter.

Chapter 4See details

Fusion Splicing Techniques

  • Lesson 1 • Splice Loss Estimation and Verification

    Teaches reading splicer-estimated loss values and correlating them with OTDR measurements. Verification confirms whether a splice meets project specifications.

  • Lesson 2 • Fiber Alignment and Pre-Fusion Inspection

    Explains core alignment modes, end-face inspection on the splicer screen, and gap setting. Alignment accuracy is the primary determinant of splice loss.

  • Lesson 3 • Arc Fusion and Splice Execution

    Walks through the arc initiation, fiber push, and fusion completion sequence. Students practice the full splice cycle until consistent results are achieved.

  • Lesson 4 • Troubleshooting Poor Fusion Splices

    Identifies bubble, void, and high-loss splice causes and their corrective actions. Systematic diagnosis reduces rework time and material waste.

  • Lesson 5 • Fusion Splicer Setup and Calibration

    Covers arc test procedures, dust compensation, and environmental adjustments. Proper calibration before each session ensures repeatable, low-loss results.

  • Lesson 6 • Splice Protection with Heat-Shrink Sleeves

    Covers sleeve placement, oven heating parameters, and visual inspection of the finished protector. Protection prevents mechanical failure at the splice point.

Chapter 5See details

Mechanical Splicing Methods

  • Lesson 1 • Loss Testing Mechanical Splices

    Applies power meter and light source testing to verify mechanical splice performance. Results are compared against fusion splice benchmarks to guide method selection.

  • Lesson 2 • Mechanical Splice Principles

    Explains index-matching gel, fiber alignment channels, and clamping mechanisms. Understanding the physics of mechanical splices guides correct assembly and troubleshooting.

  • Lesson 3 • Mechanical Splice Assembly Procedure

    Provides step-by-step assembly: fiber preparation, insertion, and locking. Consistent procedure execution is essential for achieving repeatable low-loss results.

  • Lesson 4 • Field Applications and Limitations

    Discusses scenarios where mechanical splicing is preferred and its long-term reliability limits. Students make informed method choices based on project constraints.

  • Lesson 5 • Types of Mechanical Splice Devices

    Surveys ribbon, single-fiber, and field-installable connector splice types. Matching device type to application prevents performance and reliability problems.

Chapter 6See details

Splice Tray Organization and Enclosure Management

  • Lesson 1 • Splice Enclosure Types and Installation

    Surveys dome, wall-mount, and rack-mount enclosures and their installation requirements. Enclosure choice depends on environment, fiber count, and access frequency.

  • Lesson 2 • Cable Entry and Sealing

    Explains cable entry ports, gel seals, and mechanical sealing systems for outdoor enclosures. Proper sealing prevents moisture ingress that degrades splice performance over time.

  • Lesson 3 • Splice Tray Types and Capacity

    Covers single-fiber and ribbon tray designs, fiber counts, and stacking configurations. Tray selection determines how many splices an enclosure can safely accommodate.

  • Lesson 4 • Labeling and Documentation Inside Enclosures

    Covers fiber identification labels, splice records, and as-built documentation placed inside enclosures. Accurate records reduce troubleshooting time during future maintenance events.

  • Lesson 5 • Routing Fiber Within Trays

    Teaches coiling paths, bend radius compliance, and securing fiber without stress. Improper routing inside trays is a common source of long-term signal degradation.

Chapter 7See details

OTDR Testing and Splice Characterization

  • Lesson 1 • OTDR Operating Principles

    Explains Rayleigh backscatter, Fresnel reflection, and pulse propagation in OTDR measurement. Understanding the physics prevents misinterpretation of trace features.

  • Lesson 2 • OTDR Setup and Parameter Selection

    Covers wavelength selection, range, pulse width, and averaging time settings. Correct parameters reveal splice events without masking them in dead zones.

  • Lesson 3 • OTDR Trace Storage and Reporting

    Covers file naming conventions, trace export formats, and inclusion in project documentation. Stored traces serve as the baseline for future fault location and maintenance.

  • Lesson 4 • Bidirectional OTDR Testing

    Explains why splice loss appears different from each end and how to average bidirectional results. Bidirectional testing is required for accurate splice loss reporting.

  • Lesson 5 • Acquiring and Reading OTDR Traces

    Teaches trace acquisition, event table interpretation, and cursor placement for loss measurement. Students identify splice events, connectors, and fiber end reflections.

Chapter 8See details

Quality Assurance and Project Documentation

  • Lesson 1 • Non-Conformance and Rework Procedures

    Establishes processes for identifying, documenting, and correcting out-of-specification splices. Structured rework prevents recurring defects and maintains project timelines.

  • Lesson 2 • Final Project Handover Package

    Assembles all test reports, as-built drawings, and enclosure records into a client deliverable. A complete handover package supports long-term network maintenance and warranty claims.

  • Lesson 3 • End-to-End Link Testing

    Covers optical loss test set procedures for measuring total link attenuation. Link testing confirms that the entire installed span meets design specifications.

  • Lesson 4 • Splice Loss Acceptance Criteria

    Defines loss budgets, per-splice limits, and link-level pass/fail thresholds. Acceptance criteria are derived from system design specifications and industry standards.

  • Lesson 5 • Splice and Test Record Completion

    Teaches completing splice logs, OTDR reports, and power meter test sheets. Accurate records protect the technician and provide the client with verifiable deliverables.

Certification

Your valid completion certificate

This course is for you:

  • Telecom field technician ready to add fiber splicing to their skillset.

  • Electrician transitioning into structured cabling and fiber optic work.

  • Network installer who handles fiber runs but has never performed splicing.

  • Recent trade school graduate pursuing entry-level fiber technician positions.

  • IT infrastructure professional expanding into physical layer fiber work.

  • Career changer drawn to skilled trades with strong long-term job demand.

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