Aluminum Tape Fiber Cable

Aluminum Tape Fiber Cable

Aerial fibre optic cable self-supporting aluminum tape armored optical fiber cable GYTC8A
GYTC8A Aerial fibre optic cable are housed in loose tubes that aerial self-supporting aluminum tape armored optical fiber cable are made of high-modulus plastic and filled with jelly. The loose tubes around the central steel wire to form a cable core. The core is covered by Aluminum tape and PE sheath. Stranded steel wires are applied as the messenger. Finally,a figure-8 PE outer sheath is extruded.
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Description

Technical Parameters

our company

 

 

company
30+ years
Our factory was found in 1992, first start with coaxial cable which was one of the biggest manufacturers in lin'an city.In year of 2001 started focusing on the production of optical cables.
30+ countries
In year of 2008, set up international sales department and sale optical fiber cable to more than 30 countries and have 18 years` rich experience to export cables .

 

Features

 

Aerial Fibre Optic CableAerial Fibre Optic Cable

  • High strength loose tube that is hydrolysis resistant.
  • Special tube filling compound ensure a critical protection of fiber.
  • Crush resistance and flexibility.
  • Good mechanical and temperature performance.

 

Environmental Characteristics

 


• Transport/storage temperature: -40℃ to +60℃

 

Delivery Length

 


• Standard reel length: 2km/drum; other lengths are also available.

 

Do you provide test reports and certificates?

 

 

Yes, we can provide factory test report, attenuation test data, CE, ISO and other documents for customs clearance and project bidding.

 

own brand

 
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FTTH drop cable-Ink printing
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Flat cable-Plasma pringting
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Outdoor cable GYTC8S-Iron printing
Jumper cable- SC/UPC-SC/APC
Jumper cable- SC/UPC-SC/APC
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GYTC8S 24 core -wooden drum
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FTTH cable-1km drum
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FTTH cable-carton packing
Patch cords-Pallet package
Patch cords-Pallet package
 
 

 

Pack and ship

 
Patch cords in Pallet delivery
Patch cords in Pallet delivery
FTTH cable in cartons packing
FTTH cable in cartons packing
Flat cable in plywood drum package
Flat cable in plywood drum package
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Composite drum full loaded into contianer
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Solid wooden drum loading photo
 
 

 

Tips

Advantages of Multi‑core Parallel Optical Fibers Over Traditional 2‑core Fibers

1. Higher‑density bandwidth and stronger transmission capacity

Traditional dual‑core fiber merely meets basic bidirectional signal transmission for one‑way receiving‑and‑sending. Multi‑core parallel fiber (12‑core, 16‑core and other specifications) enables parallel transmission of multiple optical signals at the same time. It matches high‑speed‑rate optical‑module standards of 800 G and 1.6 T and satisfies the huge throughput requirement for GPU inter‑connection inside AI computing clusters.

2. Saved cabinet space and reduced wiring complexity

High‑density ports on leaf‑spine switches require massive fiber jumpers. One multi‑core cable can replace many separate 2‑core jumper cords. It cuts cable quantity, eases cable‑management pressure inside equipment cabinets, avoids messy wiring and improves the utilization rate of limited cabinet space.

3. Lower comprehensive deployment cost

Fewer jumpers mean fewer connectors, adapter panels and cable‑fixing accessories. Labor expenses for laying, sorting and later‑stage maintenance are greatly reduced. Multi‑core integrated cables also bring down the unit‑core‑kilometer cost of raw optical‑fiber materials.

4. Better adaptability to short‑range high‑speed interconnection in data centers

The leaf‑spine network architecture of AI data centers features frequent short‑distance interconnections between racks and switches. Multi‑core parallel fiber is tailor‑made for parallel‑optical‑module interconnection. It keeps crosstalk under effective control and delivers stable low‑latency data transmission among massive‑scale GPU chips.

5. Good expandability for future‑oriented upgrading

As network speed iterates toward 3.2 T and higher‑speed standards, multi‑core reserved channels can support bandwidth upgrade without large‑scale rewiring. By contrast, 2‑core fiber lacks spare optical‑core resources and needs full‑scale cable replacement when port‑side bandwidth gets upgraded.

Supplementary professional note

In most scenarios, two‑core fiber contains one transmitting core and one receiving core and works for simplex bidirectional links. Modern high‑speed parallel optical modules rely on multiple sending‑receiving optical channels, which can only be satisfied by multi‑core parallel fiber.

 

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Technical Characteristics

 

 

Fiber Count

12~288

Loose Diameters

2.1 mm

Loose Material

PBT (Polybutylene Terephthalate)

Central Strength Member

Steel wire

Armor

Aluminum tape

Messenger

7*1.2mm steel wires

Nominal Outer Dimensions

9.0mm*14.8mm (±0.3)

Outer Jacket Material

HDPE

Tension Strength

(Long-Term /Short-Term)

3000N/7000N

Crush Resistance

(Long-Term /Short-Term)

300 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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