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Outdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile Strength

    Buy cheap Outdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile Strength from wholesalers
     
    Buy cheap Outdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile Strength from wholesalers
    • Buy cheap Outdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile Strength from wholesalers
    • Buy cheap Outdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile Strength from wholesalers

    Outdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile Strength

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    Brand Name : Fiberplan
    Model Number : ADSS
    Certification : ISO 9001; TÜV certificate
    Price : Negotiation
    Payment Terms : L/C, D/A, D/P, T/T, Western Union, MoneyGram
    Supply Ability : 5000Km per month
    Delivery Time : 5-8 work days
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    Outdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile Strength

    Outdoor ADSS Cable for Aerial Fiber Optic Networks with Enhanced Tensile Strength


    Description

    The ADSS (All-Dielectric Self-Supporting) cable utilizes a robust construction methodology. The fibers are

    encased within high modulus plastic tubes, safeguarded further by a water-resistant compound. These tu-

    bes, along with their fillers, envelop a Fiber Reinforced Plastic (FRP) core, fortifying the cable's structural

    integrity into a compact circular arrangement. Once filled with additional compound for added protection, a

    thin Polyethylene (PE) inner sheath is applied to shield the cable core. Strengthening the assembly, a layer

    of aramid yarns is stranded over the inner sheath, enhancing tensile strength. The cable is finalized with an

    outer sheath, choosing between PE or Anti-Tracking (AT) material, offering comprehensive defense against

    environmental factors, ensuring durability and reliability in telecommunications networks.


    Application

    1 Voltage Specification: The design of ADSS cables accounts for the voltage levels of overhead power lines.

    For lines operating under 110kV, a Polyethylene (PE) outer sheath is chosen. This material offers suitable

    protection and insulation for lower voltage environments.

    2 High Voltage Compatibility: In cases where power lines are rated at or above 110kV, an Anti-Tracking (AT)

    outer sheath is applied in the ADSS cable design. The AT material is specifically chosen for its ability to provide

    enhanced insulation and withstand higher voltage environments effectively.

    3 Aramid Design Customization: The quantity and stranding process of aramid yarns within the ADSS cable are

    purposefully designed and tailored to accommodate different spans between poles or supports along the power

    lines. This customization ensures the cable's strength and resilience across various distances, meeting specific

    installation requirements.

    4 Performance Optimization: By considering the voltage, environmental factors, and installation conditions, the

    ADSS cable design optimizes performance and durability. This meticulous approach ensures that the cable

    meets the demands and challenges posed by different voltage levels and installation scenarios along overhead

    power lines.


    Characteristics

    1 Exceptional Mechanical and Temperature Performance: ADSS cables excel in both mechanical resilience

    and temperature resistance, ensuring reliability in harsh conditions.

    2 Hydrolysis-Resistant, High-Strength Loose Tube: The cable's loose tube, resistant to hydrolysis, maintains

    high strength, protecting the enclosed fibers from moisture-related damage.

    3 Specialized Tube Filling Compound: The use of a specialized filling compound within the tubes provides

    crucial protection to the fibers against environmental factors, enhancing their longevity and performance.

    4 Crush Resistance and Flexibility: Balancing crush resistance with flexibility ensures the cable can withstand

    pressure without compromising its ability to bend and adapt to installation needs.

    5 Tensile Strength Supported by Dual Parallel Steel Wires: Dual parallel steel wires enhance the cable's tensile

    strength, providing robust support and stability.

    6 Compact Size, Lightweight Build, and Easy Installation: These cables are designed to be compact, lightweight,

    and easy to install, offering convenience to users during deployment.


    Cable construction details

    Number of fiber24-144 core
    Filling rope2-0
    Moisture BarrierWater blocking system
    Central strength membermaterialFRP/FRP with PE
    size2.1mm
    Tube-fillingTube filling compoun
    fillerPP tube/ PVC tube
    Inner sheathmaterialPE
    Loose tubematerialPBT
    diameterФ2.2(outer/inner)
    Outer sheathmaterialPE/HDPE
    diameter1.7±0.2mm

    Fiber color

    Number of fiber 8

    cores per tube

    123456
    BlueOrangeGreenBrownGreyWhite
    789101112
    RedBlackYellowVioletPinkAqua
    Color 13~24 will be marked with a black tracer. For black color no need marked black tracer, will use nature color instead.

    Cable Mechanical characteristic

    coreCable diameterWeight
    2 core to 60core12±0.3mm140±3kg/km
    72core13±0.3mm190±3kg/km
    96core14.5±0.3mm220±3kg/km
    144core16.5±0.3mm240±5kg/km
    Rec.daily max working tension88kN
    Max. Allowable working tension32.7KN
    Modulus of elasticity37KN/mm2
    Min Bending Radius(mm)Operation240mm
    Installation390mm
    Extra loadExtra load 0.5% ~ 0.7%
    Ice5mm
    Wind speed35m/s

    Fiber characteristic

    Fiber styleUnitSM
    G652
    SM
    G652D
    MM
    50/125
    MM
    62.5/125
    MM
    OM3-300
    conditionnm1310/15501310/1550850/1300850/1300850/1300
    attenuationdB/km≤3.0/1.0≤3.0/1.0
    0.36/0.230.34/0.223.0/1.0--------
    Dispresion1550nmPs/(nm*km)----≤18--------Dispresion
    1625nmPs/(nm*km)----≤22-------- 
    Bandwith850nmMHZ.KM--------≧400≧160Bandwith
    1300nmMHZ.KM--------≧800≧500 
    Zero dispersion wavelengthnm1300-1324≧1302,
    ≤1322
    --------≧ 1295,
    ≤1320
    Zero dispresion slopenm≤0.092≤0.091------------
    PMD Maximum Individual Fibr ≤0.2≤0.2--------≤0.11
    PMD Design Link ValuePs(nm2*k
    m)
    ≤0.12≤0.08------------
    Fibre cutoff wavelength λcnm≧ 1180,
    ≤1330
    ≧1180,
    ≤1330
    ------------
    Cable sutoff
    wavelength λcc
    nm≤1260≤1260------------
    MFD1310nmum9.2+/-0.49.2+/-0.4------------
    1550nmum10.4+/-0.810.4+/-0.8------------
    Numerical
    Aperture(NA)
     --------0.200±0.0150.275±0.
    015
    0.200±0
    .015
    Step(mean of bidirectional
    measurement)
    dB≤0.05≤0.05≤0.10≤0.10≤0.10
    Irregularities over fiber
    length and point
    dB≤0.05≤0.05≤0.10≤0.10≤0.10
    Dicontinuity
    Difference backscatter
    coefficient
    dB/km≤0.05≤0.03≤0.08≤0.10≤0.08
    Attenuation uniformitydB/km≤0.01≤0.01   
    Core dimaterum  50±1.062.5±2.550±1.0
    Cladding diameterum125.0±0.1125.0±0.1125.0±0.1125.0±0.1125.0±0.1
    Cladding non-circularity%≤1.0≤1.0≤1.0≤1.0≤1.0
    Coating diameterum242±7242±7242±7242±7242±7
    Coating/chaffinch
    concentrically error
    um≤12.0≤12.0≤12.0≤12.0≤12.0
    Coating non circularity%≤6.0≤6.0≤6.0≤6.0≤6.0
    Core/cladding conentricity errorum≤0.6≤0.6≤1.5≤1.5≤1.5
    Curl(radius)um≤4≤4------------

    Outdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile StrengthOutdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile StrengthOutdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile StrengthOutdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile Strength

    Quality Outdoor ADSS Cable For Aerial Fiber Optic Networks With Enhanced Tensile Strength for sale
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