MTP®/MPO Cable Assemblies
Category Overview
NetSource MPO Cable assemblies deliver high-density fiber connectivity for data centers and enterprise networks with reliable pre-terminated MTP solutions.
NetSource’s MTP® Harness Breakout Cables, manufactured in the U.S., provide a high-density, pre-terminated solution for structured cabling systems in enterprise and data center environments. These assemblies transition MTP® trunk cables to LC, SC, or other connector types for integration with patch panels, cassettes, or direct equipment connections.
Assemblies support fiber counts from 8 to 288, offered with MT ferrules in 8F, 12F, 16F, or 24F configurations. They are available with 250 μm loose fiber or ribbon fiber construction, and indoor-rated cable with OFNP, OFNR, or LSZH jacket options. Breakout connectors are available with UPC or APC polish. The MTP® PRO connector enables tool-less polarity reversal between Type A and Type B, as well as pin (gender) changes. All assemblies are factory-terminated and tested to ensure low insertion loss and consistent, reliable performance.
NetSource’s MTP® Trunk and Patch Cord Assemblies, manufactured in the U.S., provide high-density, pre-terminated cabling solutions for structured cabling systems in enterprise and data center environments. Designed for backbone trunks and patching between cassettes, patch panels, and active equipment, these assemblies support efficient cable management, fast deployment, and modular scalability.
Each assembly features MTP® or MTP® PRO connectors, supporting fiber counts from 8 to 288 fibers, offered with MT ferrules in 8F, 12F, 16F, or 24F configurations. Assemblies are available with 250μm loose fiber or ribbon fiber construction, and indoor-rated cable with OFNP, OFNR, or LSZH jacket options. The MTP® PRO connector enables tool-less polarity reversal between Type A and Type B, as well as pin (gender) changes, simplifying installation and future upgrades. All assemblies are factory-terminated and tested for low insertion loss and consistent optical performance.