OPGW BROCHURE - Sterlite
OPGW BROCHURE - Sterlite
OPGW BROCHURE - Sterlite
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<strong>Sterlite</strong> AERIAL-LITE <strong>OPGW</strong> Cable Series<br />
Central Steel Tube Design<br />
PRODUCT DESCRIPTION<br />
PRODUCT FEATURES<br />
ACS Wire<br />
Steel Loose Tube<br />
Jelly Filled Fiber<br />
Optical Fiber<br />
<br />
<strong>Sterlite</strong> AERIAL-LITE <strong>OPGW</strong> cable with central steel tube is simple and offers a robust design with scope for up to 48 fiber counts, resulting in good<br />
protection to the fiber.<br />
Optical fibers are housed in a hermetically sealed, stainless steel tube filled with jelly.<br />
High RTS of the cable.<br />
Designed to have a larger stress-strain window, thereby ensuring longevity of performance over the years.<br />
The stranded wires can be customized in diameter, number of wires and conductivities or a combination of AA/AS wires is worked<br />
out to meet the individual customer requirements of electrical and mechanical properties.<br />
PRODUCT APPLICATION<br />
A perfect solution for easy installation, short hauls and basic layouts which need minimum design complications.<br />
PRODUCT OPTIONS<br />
Optical fiber options:<br />
ITU G 652 D < 0.35/0.21 dB/km @ 1310/1550 nm<br />
ITU G 655 < 0.23/0.25 dB/km @ 1550/1625 nm<br />
Identification options:<br />
EIA/TIA 598<br />
Black ring marking for >12 fibers in a tube.<br />
Or<br />
Bundle binders for each 12 fiber.<br />
Operating temperature range: -40° C to +85° C<br />
Installation temperature range: -20° C to +70° C<br />
TYPICAL PRODUCT SPECIFICATIONS<br />
Fiber<br />
Count<br />
12<br />
Product Code<br />
12B1-81 [64;40]<br />
Fault Current<br />
2<br />
(kA .sec)<br />
40<br />
Effective Area<br />
(mm )<br />
2<br />
81<br />
Overall Diameter<br />
(mm)<br />
12.3<br />
Weight<br />
(kg/km)<br />
490<br />
UTS (KN)<br />
64<br />
DC Resistance<br />
@ 20degC(ohm/km)<br />
24 24B1-81 [64;40] 40 81 12.3 490 64 0.72<br />
48 48B1-81 [64;40] 40 81 12.3 490 64 0.72<br />
0.72<br />
Issued: April 2012<br />
Supercedes: April<br />
2011