
48 Core Fiber Optic Cable
GYTY53 direct burial optical fiber cable, Optical fibers are housed in loose tubes that made of high-modulus plastic and filled with tube filling compound. The tubes (and fillers) are stranded around a central strength member to form a cable core. The core is protected with water blocking tape ,a layer of inner PE sheath and corrugated steel tape. Then another layer outer PE sheath is extruded.
Description
Technical Parameters
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Features
- Proper design, precise control for fiber excess length and distinct stranding process render the cable excellent mechanical and environmental properties.
- Double-jacket structure make cable have nice properties of moisture resistance and crush resistance.
Environmental Characteristics
• Transport/storage temperature: -40℃ to +60℃
Delivery Length
• Standard reel length: 2km/drum; other lengths are also available.
Certificates
IS09001:2015, CE, China Radio and television equipment network access certification
own brand
Pack and ship
Tips
Aramid Yarn Reinforcement Weaving Process for ADSS Cable
Aramid yarn weaving reinforcement is the exclusive inner strengthening process during ADSS all-dielectric cable manufacturing. High-strength aramid fiber yarn has ultra-high tensile strength and insulation performance, replacing metal strength members. Automatic circular weaving machine arranges aramid yarn evenly and circumferentially outside loose tube cable core. Weaving density and yarn quantity are matched with cable design span: 100m-span ADSS adopts sparse weaving, while 300m-span long-span type needs dense multi-layer weaving. The weaving tension keeps uniform to avoid partial yarn stress concentration. This weaving process ensures ADSS cable self-supporting suspension capability, avoiding conductor induction current under high-voltage power corridors.
Aramid yarn (Kevlar) is the non-metallic tensile reinforcement material for indoor and drop optical cables. Wrapped around tight-buffered fiber core, it bears axial pulling force during cable laying. Its density is lower than steel wire, with high tensile strength and insulation performance. It will not generate induction current under high-voltage electromagnetic environment, so it can be laid parallel to high-voltage power lines. Matching non-metal sheath builds full-dielectric cable structure. This cable avoids lightning surge damage, widely used for power communication access, community user drop wiring and lightning-prone mountain area networking scenarios.
All-dielectric non-metallic optical cable cancels steel armor, aluminum sheath and metal strength members completely. It adopts glass fiber reinforced plastic rod as tension component. Without metal conductor inside, lightning electromagnetic induction cannot generate loop current inside the cable. It avoids lightning breakdown, induced voltage damage and ground potential surge harm. Its lightning protection level is far higher than metal armored cables. It is mandatory for laying beside high-voltage towers, plateau thunderstorm zones, substation peripheral communication links, solving seasonal lightning-caused optical link outage faults effectively.
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Technical Characteristics
|
Fiber Count |
12~144 core |
|
Loose Diameters |
2.1mm |
|
Loose Material |
PBT |
|
Central Strength Member |
Steel wire |
|
Water blocking material |
Water blocking tape |
|
Inter Jacket Material |
PE |
|
Armor |
Corrugated steel tape |
|
Outer Jacket Material |
PE |
|
Nominal Outer Dimensions |
11.0~17.0 mm (±0.3) |
|
Tension Strength (Short-Term / Long-Term) |
3000N/1000N |
|
Crush Resistance (Short-Term / Long-Term) |
3,000 N/100mm 1000 N/100mm |
|
Minimum Bend Radius (Static / Dynamic) |
10 x OD / 20 x OD |
*All above the cable size can be customized.
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