GYTS 48 Cores Stranded Duct Outdoor Optical Fiber Cable
US$0.50 | 10,000 Meters (MOQ) |
Port:
Shanghai, China
Production Capacity:
3000 Kilometers Per Month
Payment Terms:
L/C, T/T, Western Union
Hangzhou Jinlong Optic-Electirc Co., Ltd.
Zhejiang, China
Last Login Date:
Jun 12, 2025
Business Type:
Manufacturer/Factory, Trading Company
Main Products:
Fiber Optic Cable, Optical Fiber Cable, Optical Cable, Fiber Optical Cable, Outdoor Cable, Fiber Optic, Indoor Optic Fiber Cable, FTTH Fiber Cable, Direct Buried Fiber Optic Cable, Underground Optic Fiber Cable
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Product Description
Company Info
Basic Info.
Model NO.
Application
Type
Multi-mode Fiber
Connection Structure
Joint Box
Material Shape
Allowed Lateral Pressure
>1000(N/100mm)
Allowed Tensile Strength
1000N<10000N
Core
Certification
CE, ISO9001
Brand
Sheath Material
PE
Delivery
21 Days
Trademark
jinlong
Transport Package
Packed on Fumigated Wooden Drum Suitable for Long
Specification
48 cores
Origin
China
HS Code
8544700000
Product Description
Packaging Details: | Packed on fumigated wooden Drum suitable for long distance shipment. |
---|---|
Delivery Detail: | Fifteen Days |
1.Structure:
Metal Strength member, Multiple tube type, gelly filled, corrugated steel tape armor and Polyethylene(PE) jacket, Outer door duct optical fiber cable for telecommunication
Technical Specifications for Optical Fiber Cable
2. General
2.1 This specification covers the requirements of the out door optical fiber cable to be supplied to customer for installation duct.
2.2 The optical fiber cable shall comply with the requirements of this specification and generally meet or better latest standards:
ITU-T G.650: Definitions and test methods for linear, deterministic attributes of single-mode fiber and cable ITU-T G.652.D: Characteristics of a single-mode optical fiber and cable
IEC 60793-2-50 B1.3: Sectional specification for class B single mode fibers
IEC 60794-3: Optical Fiber Cables, Part 3, Generic Specifications-Basic optical cable test procedures.
IEC 60794-3-11: Optical fiber cables - Part 3.11: Family specification for aerial and duct outdoor optical fiber cables.
3.Cable structure and parameter
| ||||||
GYTY53 | ||||||
Construction and Parameter Items | Descriptions | |||||
Cores number (G.652D fiber) | UP TO 144F | |||||
Cable nominal diameter(±0.2mm) | ||||||
Cable approx. weight (±10kg/km) | ||||||
Max. tensile strength | Short time | 1500/3000N | ||||
Max. crush resistance | Short time | 1000N/100mm | ||||
Minimum Bending radius | Dynamic | 25 times of cable diameter | ||||
Static | 12.5 times of cable diameter | |||||
Temperature range | Installation | -40ºC~+70ºC | ||||
Storage | -40ºC~+70ºC | |||||
Operation | -30ºC~+70ºC |
4.Fiber Properties
4.1 The properties of single mode optical fiber (ITU-T Rec. G.652D)
Characteristics | Conditions | Specified Values | Units |
Optical Characteristics | |||
Attenuation | 1310nm 1383nm 1550nm 1625nm | ≤0.34 ≤0.31 ≤0.21 ≤0.23 | dB/km dB/km dB/km dB/km |
Attenuation vs. Wavelength Max. α difference | 1282~1330nm 1525~1575nm | ≤0.03 ≤0.02 | dB/km dB/km |
Dispersion coefficient | 1285~1340nm 1550nm 1625nm | ≥-3.5 ≤3.5 ≤18 ≤22 | ps/(nm·km) ps/(nm·km) ps/(nm·km) |
Zero dispersion wavelength | 1312±12 | nm | |
Zero dispersion slope Typical value | ≤0.091 0.086 | ps/(nm2·km) ps/(nm2·km) | |
PMD Maximum Individual Fiber Link Design Value (M=20,Q=0.01%) Typical value | ≤0.2 ≤0.1 0.04 | ps/km ps/km ps/km | |
Cable cutoff wavelength | ≤1260 | nm | |
Mode field diameter (MFD) | 1310nm 1550nm | 9.2±0.4 10.4±0.5 | |
Effective group index of refraction | 1310nm 1550nm | 1.466 1.467 | |
Point discontinuities | 1310nm 1550nm | ≤0.05 ≤0.05 | dB dB |
Geometrical Characteristics | |||
Cladding diameter | 124.8±1 | um | |
Cladding non-circularity | ≤1.0 | % | |
Coating diameter | 245±7 | um | |
Coating-cladding concentricity error | ≤12.0 | um | |
Coating non-circularity | ≤6.0 | % | |
Core-cladding concentricity error | ≤0.6 | um | |
Curl (radius) | ≥4 | m | |
Environmental Characteristics | (1310nm, 1550nm & 1625nm) | ||
Temperature dependence Induced attenuation at | -60ºC to +85ºC | ≤0.05 | dB/km |
Temperature-humidity cycling Induced attenuation at | -10ºC to +85ºC, 98% RH | ≤0.05 | dB/km |
Watersoak dependence Induced attenuation at | 23ºC, for 30 days | ≤0.05 | dB/km |
Damp heat dependence Induced attenuation at | 85ºC and 85% RH, for 30 days | ≤0.05 | dB/km |
Dry heat aging at | 85ºC | ≤0.05 | dB/km |
Mechanical Specification | |||
Proof test | Off line | ≥9.0 ≥1.0 ≥100 | N % kpsi |
Macro-bend induced attenuation 1 turn around a mandrel of 32mm dia. 100 turns around a mandrel of 50 mm dia. 100 turns around a mandrel of 60 mm dia. | 1550nm 1310nm & 1550nm 1625nm | ≤0.05 ≤0.05 ≤0.05 | dB dB dB |
Coating strip force | Typical average force Peak force | 1.7 ≥1.3 ≤8.9 | N N |
Dynamic stress corrosion susceptibility parameter (typical) | ≥20 |
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