OPGW Optical Ground Wire Single Central Stainless Steel Tube

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Product Details

Product parameter

Application

OPGW Optical Ground Wire with a stainless steel central tube is preferred for its compact size and ability to house up to 72 fibers in a diameter starting at only 12mm.
The small profile of OPGW Optical Ground Wire offers an exceptional solution to the diameter and weight concerns on many of today’s overloaded transmission towers where an existing shield wire needs to be replaced with an OPGW cable.

Construction

OPGW Optical Ground Wire has two constructions:

1. Central loose tube type
The fibers are placed loosely in a sealed and water resistant central, aluminum tube filled with water blocking gel. This tube provides protection to the fiber during installation and operation under severe environmental conditions. The stainless steel tube may also be aluminum-clad steel depending on the engineering requirements. The stainless optical tube is located at the center of the cable protected by single or multiple layers of aluminum clad steel, aluminum alloy wires, or steel wires. The metallic wires provide mechanical strength to withstand severe installation and operating conditions, while achieving conductivity to control temperature rise during short circuit conditions.
Each optical fiber is clearly distinguishable utilizing a fiber identification system consisting of coloring and the number of ring marks on it. This compact design features high mechanical strength and fault current rating within a smaller diameter. The smaller diameter also results in excellent sag tension performance.

2. Multi loose tube type
The fibers is placed loosely in a sealed and water resistant stainless steel tube filled with water blocking gel. Two or three stainless steel optical tubes are helically stranded in the inner layer of a multiple-layer cable. The multi loose tube type is designed mostly for very high fiber count requirement over 48 with the maximum fiber count reaching 144. The multi loose tube type can meet the requirement of huge cross and large current capacity.
The optical fiber is made of high pure silica and germanium doped silica. UV curable acrylate material is applied over fiber cladding as optical fiber primary protective coating. The detail data of optical fiber performance are shown in the following table.
Optical fiber uses special spun device successfully controlled the value of PMD, and makes sure that it can keep stable in cabling

OPGW-Single-Central-Stainless-Steel-Tube-(2)

Standards

IEC 60793-1 Optical fiber Part 1: Generic specifications
IEC 60793-2 Optical fiber Part 2: Product specifications
ITU-T G.652 Characteristics of a single-mode optical fiber cable
ITU-T G.655 Characteristics of a non-zero dispersion-shifted single-mode optical fiber and Cable
EIA/TIA 598 Color code of fiber optic cables
IEC 60794-4-10 Aerial optical cables along electrical power lines – Family specification for OPGW
IEC 60794-1-2 Optical fiber cables-Part 1-2: Generic specification - Basic optical cable test procedures
IEEE1138-2009 IEEE Standard for testing and performance for optical ground wire (OPGW) for use on electric utility power lines
IEC 61232 Aluminum – clad steel wire for electrical purposes
IEC 60104 Aluminum magnesium-silicon alloy wire for overhead line conductors
IEC 61089 Round wire concentric lay overhead electrical stranded conductors
Fiber is Corning SMF-28e+ Optical Fiber

Options

Hardware for Installation

Notes

Reel lengths must be defined at time of purchase to assist client with reducing waste, and to reduce splicing required during installation.
Please contact AWG for full detailed technical specifications, including PLS CADD data or Stress Creep data.

OPGW Single Central Stainless Steel Tube Specifications

FIBERS FAULT
CURRENT
TOTAL
CONDUCTOR
AREA
TOTAL
CONDUCTOR
AREA
OVERALL
DIAMETER
OVERALL
DIAMETER
WEIGHT Weight RBS RBS
No. KA2sec in2 mm2 IN mm lb/ft kg/km lbs kb
24 51 0.1273 85.05 0.484 12.3 0.321 0.478 17390 7888
36 46 0.1202 80.34 0.484 12.3 0.313 0.466 16107 7306
24 97 0.1603 107.13 0.544 13.8 0.338 0.503 16984 7704
24 121 0.1722 115.05 0.563 14.3 0.328 0.488 15611 7081
96 147 0.2046 136.72 0.63 16 0.472 0.702 24048 10908
96 154 0.2046 136.72 0.63 16 0.45 0.67 22384 10153
96 186 0.2246 150.11 0.662 16.8 0.499 0.742 24183 10969
144 134 0.1926 128.68 0.63 16 0.449 0.668 21865 9918
144 134 0.1926 128.68 0.63 16 0.449 0.668 21934 9949
144 161 0.2114 141.29 0.662 16.8 0.499 0.743 23598 10704

Item # FIBERS FAULT CURRENT(KA2sec) TOTAL CONDUCTOR AREA(in2) TOTAL CONDUCTOR AREA(mm2) OVERALL DIAMETER(IN) OVERALL DIAMETER(mm) WEIGHT(lb/ft) Weight(kg/km) RBS(lbs) RBS(kb)
OPGW-2S 1/24 (M85/R77-51) 24 51 0.1273 85.05 0.484 12.3 0.321 0.478 17390 7888
OPGW-2S 2/18 (M80/R72-46) 36 46 0.1202 80.34 0.484 12.3 0.313 0.466 16107 7306
OPGW-2S 1/24 (M107/R76-97) 24 97 0.1603 107.13 0.544 13.8 0.338 0.503 16984 7704
OPGW-2S 1/24 (M115/R69-121) 24 121 0.1722 115.05 0.563 14.3 0.328 0.488 15611 7081
OPGW-2S 2/48 (M137/R107-147) 96 147 0.2046 136.72 0.63 16 0.472 0.702 24048 10908
OPGW-2S 2/48 (M137/R100-154) 96 154 0.2046 136.72 0.63 16 0.45 0.67 22384 10153
OPGW-2S 2/48 (M150/R107-186) 96 186 0.2246 150.11 0.662 16.8 0.499 0.742 24183 10969
OPGW-2S 3/48 (M129/R97-134) 144 134 0.1926 128.68 0.63 16 0.449 0.668 21865 9918
OPGW-2S 3/48 (M129/R98-134) 144 134 0.1926 128.68 0.63 16 0.449 0.668 21934 9949
OPGW-2S 3/48 (M141/R105-161) 144 161 0.2114 141.29 0.662 16.8 0.499 0.743 23598 10704

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