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Fibre Optic Solutions

Fibre Optic Installation & Splicing

Enterprise-grade single-mode and multi-mode fibre optic infrastructure - fusion-spliced, OTDR-tested, and engineered for 10G, 40G, and 100G networks across campuses, data centers, and high-rise buildings.

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Years
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Projects
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On-Time
Fibre optic cable installation and splicing by Cable Weave technicians
Experienced Team
Planned Delivery
Fast Turnaround
Clean Installations
Free Survey
No Obligation
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The Approach

The Backbone of High-Speed Connectivity

Fibre optic cabling is the gold standard for high-bandwidth, long-distance data transmission. Unlike copper, fibre uses pulses of light to carry data - delivering virtually unlimited bandwidth, complete immunity to electromagnetic interference (EMI), and the ability to span distances up to 80 km without signal degradation.

At Cable Weave Inc., our fibre installations follow commercial best practice from pathway engineering through final OTDR testing. We design fibre routes to maintain proper bend radius, ensure correct pull tensions, and protect splices with heat-shrink or mechanical protection. Every fusion splice is verified with an OTDR trace, and every connector is tested with an optical power meter and visual fault locator.

Whether you are building a new campus backbone, upgrading a data center interconnect, or extending fibre-to-the-desk for a trading floor, our experienced technicians deliver clean, tested installations with complete documentation - as-built drawings, splice loss budgets, OTDR traces, and port-by-port labeling schedules.

Fibre Quality & Process

All Cable Weave fibre installations follow commercial best practice. We use only UL-listed, OFNP/OFNR-rated cables appropriate to the pathway environment. Fusion splicing is performed with Fujikura and Sumitomo splicers calibrated to manufacturer specifications. Every span is OTDR-tested bidirectionally at 1310 nm and 1550 nm (single-mode) or 850 nm and 1300 nm (multi-mode) to verify splice loss, connector loss, and overall link attenuation.

What We Deliver

Fibre Types We Install

Talk to an Engineer

OM3 Multi-Mode

10 Gbps at 300 m, 40/100 Gbps at 100 m over 50/125 µm laser-optimized fibre. The standard choice for in-building backbone and data center runs under 300 meters.

OM4 Multi-Mode

10 Gbps at 550 m, 100 Gbps at 150 m with improved bandwidth over OM3. Ideal for data center spine-leaf architectures and high-density switch-to-switch connections.

OM5 Wideband

Supports shortwave wavelength division multiplexing (SWDM) for 40/100 Gbps over fewer fibres. The future-proof multi-mode choice for next-generation data center deployments.

OS2 Single-Mode

Virtually unlimited bandwidth over distances up to 80 km at 1310/1550 nm. Required for campus backbones, inter-building links, carrier connections, and long-haul fibre runs.

How It Works

Our 4-Step Process

STEP 01
STEP 02
STEP 03
STEP 04
STEP 05
STEP 06
STEP 07
01

Site Survey

Walk the space, identify pathways, obstructions, and fire-rated barriers, and confirm drop locations with the end-user - not just the floor plan.

02

Engineered Design

Drop schedule, rack elevations, pathway routing, TR/IDF layouts, bill of materials, and a drawing set your GC and electrician can build against.

03

Coordination

Align with electrical, mechanical, ceiling, and drywall trades so cable pulls happen in the right sequence - before ceilings close and after power is safe.

04

Rough-In

Pull, route, and support cable in open ceilings and walls. All cables bundled, fire-stopped at penetrations, J-hooks or cable tray - never on ceiling tile.

05

Termination & Dress

Punch down to patch panels and outlets, label clearly, dress racks, and lace cable bundles.

06

Test & Certify

Every link tested with Fluke DSX. Failures re-terminated or re-pulled until the entire plant passes.

07

As-Built Hand-Over

Floor plans with outlet IDs, rack elevations, test result PDFs, warranty registration, and a close-out package your IT team can actually use.

Our Work

Project Gallery

Real installations from our team across Canada.

01Fusion Splicing
02OTDR Testing
03Patch Panel Termination
04Cable Tray Installation
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System Warranty
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Fluke DSX Tested
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GTA Deployments
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On-Time Delivery
Why Cable Weave

Why Choose Cable Weave for Fibre Optic

Every project is designed for performance, documented for clarity, and installed to last.

01

OTDR-Tested Every Span

Bidirectional OTDR testing at dual wavelengths on every fibre span. You receive full trace files, splice loss tables, and pass/fail results with manufacturer-spec headroom.

02

Complete Documentation

As-built fibre route drawings, splice schedules, OTDR trace PDFs, link loss budgets, and rack elevation diagrams - delivered digitally at project handover.

03

Fusion Splicing Excellence

Sub-0.02 dB average splice loss using Fujikura and Sumitomo core-alignment splicers. Every splice is verified, protected, and documented in the splice tray map.

04

Pre-Terminated Solutions

MTP/MPO trunk assemblies, pre-connectorized cables, and plug-and-play cassettes for rapid data center deployment - reducing installation time by up to 70%.

05

Experienced Fibre Techs

Our fibre technicians bring extensive field experience in fusion splicing, OTDR analysis, and fibre pathway design.

06

Scalable Fibre Design

We design fibre pathways with spare capacity for future growth - extra innerduct, oversized splice enclosures, and documented pathway maps for fast, affordable expansion.

500+ Deployments
Plenum Rated
98% On-Time
CommScope SYSTIMAX
Panduit
Belden
Corning
Leviton
Siemon
500+ Deployments
Plenum Rated
98% On-Time
CommScope SYSTIMAX
Panduit
Belden
Corning
Leviton
Siemon
Ready When You Are

Need Fibre Optic for Your Next Project?

Contact us for a free on-site fibre survey, custom design, and no-obligation quote - typically delivered within 48 hours.