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Fiber optic cable 18 fiber cores

FOC-R-MDPE-BC+20*1520+2,0-FRP
Fiber optic cable 18 fiber cores as known as all-dielectric self-supporting cable is a type of optical fiber cable which is strong enough to support itself to be used during aerial outdoor FTTX line constructions.
Fiber optic cable 18 fiber cores
Features
    • Appropriate for outdoor or duct distribution networks
    • High connecting usability, easy access to the fiber core
    • Loose tube are filled with a water-resistant filling compound
    • Reinforced with ariamid yarn and loose tube, high tensile strength
    • HDPE cable jacket ,fire redundant protect and UV radiation protection
    • Single jacket design decrease the diameter and weight
    • G652D or G657A type core are available upon request
    • Can be applied near high-voltage power distribution line
    • Competitive price
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DESCRIPTION Specification Test
REVIEW

APPLICATION

Applied outdoor, for installation on the telecommunication supports, between the buildings and industrial constructions.

Applied indoor, for cable tray distribution networks of fiber optics. It is allowed to lay cable on the outdoor.

 

Technical specification

Item

Technology Parameters

Applications

Outdoor

Product code

FOC-R-MDPE-BC+20*1520+2,0-FRP+RC+1,8-PBT-Nx(fiber core type)-9.6

Loose tube material and diameter

PBT, 1.8(±0.05)mm

Fiber cores

18

Max fiber count/tube

6

No. Of Tubes / Fillers

6

FRP/Coating(mm)

2.0

W-Blocking Material

Water-blocking Tape/Water-blocking Yarn

Strength member

Ariamid yarn

Fiber core options

G.652.D, G.657A1, G.657A2

Cable jacket color

Black

Sheath thickness

Non. 1.65mm

Sheath material

HDPE

Cable dimension,mm

9.6 (±0.2)

MAT (N)

2000

N.weight (kg/km)

70

RCD Initial Sag

Up To 100m, Sag 1.0%

Worst Load Condition

Wind Velocity : 30m/s, Ice Thickness : 0mm

Certification

IEC-60794-1-2, ISO9001:2015

 

Drawing

    

 

TEST

Fiber optic core reflection test is proceed by Optical Time Domain Reflectometer (OTDR). Which is a device used to precisely detect faults in an optical fiber link of a communication networks. An OTDR generates a pulse inside a fiber to be tested for faults or defects. Different events within the fiber create a Rayleigh back scatter. Pulses are returned to the OTDR and their strengths are then measured and calculated as a function of time and plotted as a function of fiber stretch. The strength and returned signal tell about the location and intensity of the fault present. Not only maintenance, but also optical line installation services utilize OTDRs.

OTDR is useful for testing the integrity of fiber optic cables. It can verify splice loss, measure length and find faults. The OTDR is also commonly used to create a "picture" of fiber optic cable when it is newly installed. Later, comparisons can be made between the original trace and a second trace taken if problems arise. Analyzing the OTDR trace is always made easier by having documentation from the original trace that was created when the cable was installed. OTDR show you where the cables are terminated and confirm the quality of the fibers, connections and splices. OTDR traces are also used for troubleshooting, since they can show where breaks are in fiber when traces are compared to installation documentation.

Jera proceed test of FTTH drop cables on wavelengths (1310,1550 and 1625 nm). We use EXFO FTB-1 in this quality tests. Examining the quality of our cables to ensure ours customer could receive products which meet quality requirements.

 

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