Description
Technical Parameters
Product Description
GY: Outdoor optical cables for communication; X: Central pipe structure; T: Filling type; Z: Flame retardant sheath; W: A steel strip containing steel wires.
1: Simply put, each individual core is called a fiber optic cable, and combining multi-core fibers into one cable is called an optical cable.
2: Fiber optic cables are mainly composed of optical fibers (glass fibers as thin as hair), plastic protective sleeves, and plastic sheaths. Fiber optic cable is a communication line in which a certain number of optical fibers are composed of cable cores in a certain way, wrapped with a sheath, and some even wrapped with an outer sheath, to achieve optical signal transmission. That is, a cable formed by a certain process of optical fiber (optical transmission carrier).
3: The basic structure of optical cables is generally composed of cable cores, reinforced steel wires, fillers, and sheaths, as well as components such as waterproof layers, buffer layers, and insulated metal wires as needed.
Fiber optic cable production process
Fiber selection area
Adopting Changfei, FiberHome, and Hengtong A-grade optical fiber G652D, B1.3 low water peak, high-quality optical fiber, fast transmission speed, stability, and low loss.
Fiber optic coloring area
Using imported ink colored optical fibers, the inspection process is repeatedly wiped with alcohol, without any curing defects, making fiber fusion more accurate and convenient for construction. Fiber optic chromatography: blue, orange, green, brown, gray, white, red, black, yellow, purple, pink, cyan green.
PBT/ loose casing area
As one of the key components of optical fiber protection in the cable, the loose tube needs to have good tensile resistance, bending resistance, impact resistance and hydrolysis resistance, so the selection of materials is very important, because the PBT material itself has good mechanical properties and good heat resistance.
Stratum quad
The tensile properties and environmental properties of laminar-stranded cable are closely related to the pitch of stranding, and the performance of lapping yarn in the production process will directly affect the pitch uniformity. Oufu adopts bidirectional layering, and reasonable stranding parameters play an absolute role in the stretching of the cable.
PE/ sheath area
POLYETHYLENE (PE) is a polymer made of ethylene polymerization. The imported production machine makes the outer diameter of the finished optical cable more uniform and bright, and extends the life of the optical cable for 30 years.
OTDR/ Finished product testing area
Oufu adopts advanced imported OTDR testing machine, the above process layer by layer detection, the attenuation of optical fiber, the outer diameter of the casing, the pitch of the SZ layer, the outer diameter of the sheath, the attenuation, the cable table is smooth and bright, the length of the finished product, the guarantee of sufficient meters, the printing meter label, and the strict detection, so that the product can make customers satisfied and secure.




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Overview
Quick Details
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Place of Origin: |
Shenzhen, China (Mainland) |
Brand Name: |
Innolead |
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Model Number: |
IN06403 |
Number of Conductors: |
1 |
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Cable Type: |
RG59 coaxial cable |
Application: |
CATV,CCTV,Telecommunication |
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Conductor: |
CCS. Copper |
Impedance: |
75 Ohm |
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Shield: |
Aluminum Foil ShieldedAl-foil+braid |
Jacket: |
PVC PE |
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Conductor Size: |
0.81mm/customized |
Insulation: |
Foam PE |
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Length: |
100m 305m 1000ft 500m |
business type: |
OEM & ODM |
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Certification: |
CE/ROHS/ISO9001 |
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Product parameters
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Outer skin material: |
environmentally friendly PE plastic sheath |
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Maximum allowable flattening force: |
1000N/10cm |
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Scope of application: |
Aerial or directly buried pipelines |
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Storage temperature: |
-40 ℃~85 ℃ |
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Reinforced steel wire: |
2 thick phosphated steel wires |
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Fiber core specifications: |
single-mode 9/125 multi-mode 50/125 |
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Core specifications: |
4/6/8/12 |
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Multimode 625/125 Gigabit Multimode OM3/OM4 |
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Technical features: |
Low loss and low dispersion structure, compact and good comprehensive mechanical performance |
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Laying method: |
direct burial of overhead pipelines |
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Permissible bending radius: |
20 times cable diameter during laying, 10 times cable diameter during operation |
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Permissible tensile force: |
long-term 800N; Short term 2500N |
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Permissible lateral tension (N/100mm): |
Long term 800; Short term 2500 |
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Impact resistance: |
800 3 times H=1m |
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