Stop Splicing on Your Knees in the Rack

GPX13 Ultra-High-Density Splice Panel — 576 fibers in 4RU with 1.5m slide-out splicing reach. Pull the tray to your workbench, not your back to the rack.

576 Fibers | 4RU | 1.5m Slide-Out Reach

Pull the Tray to Your Splicing Table

The integrated tray extends 1.5m to a dedicated splicing table, avoiding cramped in-rack work. A coiled service loop maintains insertion loss deviation below 0.2 dB during tray movement, enabling maintenance or expansion without disrupting active AI workloads.

Single-Fiber Control

GPX13-Single configuration houses 16 book-style stacked cassettes across two trays of eight. Manage up to 576 fibers (LC) or 288 fibers (SC) with granular, single-fiber re-splicing access. Ideal for precise re-working of existing plant and legacy infrastructure migration.

Ribbon Mass Fusion

GPX13-Ribbon configuration uses four flat cassettes with 24 ribbon splice holders each. Terminate high-count OSP ribbon cables at speed for new AI backbone builds. 288 fibers of mass-fusion capacity in a clean, organized layout.

OSP Armored, Rack Ready

Dedicated strain relief and guided routing secure armored outdoor cables at the building entry. Internal harness retention system with color-coded 12-fiber group identification keeps the transition from rugged outside to precision inside clean and manageable. Splices to SC/LC pigtails at <0.15 dB typical loss.

Two Builds. One Chassis.

Feature GPX13-Single GPX13-Ribbon
Max Capacity 576F (LC) / 288F (SC) 288F
Tray Style 16 book-style stacked cassettes (2 trays × 8) 4 flat cassettes (24 ribbon splice holders each)
Best Use Case Brownfield re-splicing, granular single-fiber control Greenfield AI backbones, high-count OSP ribbon cables
Fiber Type Single-fiber (LC or SC) Ribbon fiber

hree Steps to Rack-Side Splicing

Step 1: Roll Out Pull the integrated tray out from the 4RU chassis. The coiled service loop extends smoothly to 1.5m, maintaining optical stability throughout the movement.

Step 2: Splice Work at a proper splicing table in controlled conditions. Perform precision fusion on single fibers or mass ribbon splices without crouching in the rack aisle.

Step 3: Roll Back Reel the tray back into the chassis. The harness retention system secures the organized fiber groups. Close the tray. The active links were never disturbed.

Deployment Scenarios

Campus AI Interconnect

Your AI workload does not fit in one building. The GPX13 bridges the fiber gap between compute halls — handling the massive spine fiber counts needed for GPU-to-GPU communication across campus. Outdoor armored cable survives the trench; the GPX13 brings it into your indoor patching infrastructure at ultra-high density, leaving rack space for the compute that matters.

Carrier Handoff Point

Connecting to cloud gateways, IXPs, or DCI nodes requires high-fiber-count handoffs from outdoor carrier cables. In meet-me rooms where SC assemblies still dominate for consistent performance, the GPX13-SC configuration manages 288 fibers in 4RU — terminating carrier armored cables cleanly and leaving room for cross-connect growth.

hased Campus Upgrade

Your existing campus has legacy single-fiber cables, but your new AI wing needs ribbon efficiency. Deploy GPX13-Single cassettes for the existing plant re-splicing, and GPX13-Ribbon cassettes for the new high-count backbone — all in the same 4RU chassis. The 1.5m slide-out reach means you can add new fibers to the same tray without disturbing existing live links.

Standards & Compliance

IEC 61300-3-34 (Optical)
Telcordia GR-326 (Assemblies)
TIA-942 (Data Center)

Pull the Tray to Your Splicing Table, Not Your Back to the Rack

Request a GPX13 technical evaluation kit with sample cassettes, pigtail options, and cable management guidelines for your specific OSP armored cable type.