GYFTY 144-Core Hybrid Fiber Optic Copper Wire Composite Cables for FTTA
Description
The Loose Tube Single Jacket All Dielectric cables, which are intended for duct and aerial (lashed) installation, are lightweight with a small diameter. The cable core's center is made of glass fiber-reinforced plastic (FRP), around which the loose tube (and filler rope) is twisted to create a compact and circular cable core. Water-blocking fillers are used to fill the gaps in the cable core. The cable also features a layer of polyethylene on the inside.
Structure
The optical fiber, once coated, is protected by a loose tube.
This loose tube is twisted around the reinforcement, which is located in the center of the optical cable.
Features
The technology of "SZ" bidirectional layer twisting is adopted.
Water-blocking ointment is applied step by step to achieve full-section water blocking.
Steel (or aluminum) belts have reliable bonding, high strength, and do not crack when twisted.
Stable fiber length control is maintained.
After the cable is formed, the additional attenuation of the optical fiber is almost zero, and the dispersion value remains unchanged.
The cable boasts excellent environmental performance and is suitable for use within a temperature range of -10℃~+70℃.
This cable can support up to 288 fibers and features a loose tube gel-filled construction that provides superior fiber protection. Its all-dielectric structure and UV and moisture-resistant design ensure durability.
Applications
This cable is suitable for a variety of laying methods, including overhead, pipeline, and direct burial. It is appropriate for use in both backbones and access networks and can be installed in ducts or lashed/aerial configurations.
Applicable laying method
This cable is suitable for use in high-power overhead areas.
Overhead installations in high-power areas require a cable with specific characteristics.
This cable is entirely non-metallic.
It features a non-metallic center reinforcement around either glass fiber or aramid fiber.
The outer sheath is made of polyethylene.
Note: Different cable structures, such as GYFTA, GYFXTY, and GYFDTZA, can be designed to meet users' requirements for environmental performance and transmission capacity.
Performance characteristics
No metal structure, excellent anti-electromagnetic, lightning performance, anti-static
Scope of GYFTY optical cable
Optical Charateristics
Fiber Count | Nominal Diameter (mm) | Nominal Weight (kg/km) | Max Fiber Per Tube | Max No. of (Tubes+fillers) | Allowable Tensile Load (N) | Allowable Crush Resistance (N/100mm) | ||
Short Term | Long Term | Short Term | Long Term | |||||
2~36 | 10.2 | 85 | 6 | 6 | 1500 | 600 | 1000 | 300 |
38~72 | 11.1 | 100 | 12 | 6 | 1500 | 600 | 1000 | 300 |
74~96 | 12.6 | 130 | 12 | 8 | 1500 | 600 | 1000 | 300 |
98~120 | 14.1 | 162 | 12 | 10 | 1500 | 600 | 1000 | 300 |
122~144 | 15.9 | 204 | 12 | 12 | 1800 | 600 | 1000 | 300 |
146~216 | 15.9 | 205 | 12 | 18(2 layers) | 2200 | 600 | 1000 | 300 |
>144 | Available upon customer request |
Payment & Packing & Certification & FAQ