SHENZHEN FURONG FIBER OPTIC CABLE CO.,LTD
We Provide Professional Fiber Optic Solution For You
SHENZHEN FURONG FIBER OPTIC CABLE CO.,LTD
We Provide Professional Fiber Optic Solution For You
Product Details:
Payment & Shipping Terms:
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CORES: | As Per Buyer's Request | OD: | As Per Buyer's Request |
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High Light: | distribution fiber optic cable,armoured fiber optic cable |
OPGW 144 Strand Outdoor Fiber Optic Cable Composite Overhead Ground Wire
Description
OPGW cable is the short form of Optical Fiber Composite Overhead Ground Wire.
OPGW cable is suit for installation on new power lines with double function of ground wire and communication,
especially for installation on normal voltage and extra high voltage power lines. OPGW can replace
conventional ground wire of old power lines with increasing fiber communications function.
OPGW cables conduct short circuit current and provide lighting resistance.
OPGW cables are usually two structures. The central tube OPGW cable can obtain maximum
optical fiber excess length in a smallest steel tube. The diameter of stainless steel tube is
bigger than that of ACSR wire and aluminum alloy wire. The stainless steel tube is placed in the
center of the stranded structure of the OPGW cable. Stranded OPGW cable can obtain secondary excess length;
the diameter of stainless steel tube is consistent with diameter of aluminum alloy wire.
Application:
the Optical fiber composite ground wire [OPGW] is suitable for installation on new power lines with double function of ground wire
and communication. Especially for installation on normal voitage and extra high voltage power lines. OPGW can replace conventional ground wire
of old power line with increasing fiber communication function. They conduct short circuit current and provide lightning resistance.
Features:
1. Up to 144 fibers
2. Cable diameter and weight approximate with another ground wire. Less additional load to tower, high tensile strength.
3. Excellent stainless steel tube stranding technology make the fibers have good secondary excess length and allow the fibers, free movement in the tube. Which keeps the fiber stress-free while the cable is subjected to longitudinal stress.
4. Optical fibers are protected by stainless steel tubes.
5. Excellent security, good bullet resist performance.
6. ACSW, AAW and SST stranded design provide wide range combination of electrical conductivity and mechanical tensile strength.
☆. bio-function of ground wire and communication cable, avoid a huge expenditure to re-erect and re-maintain;
☆. erect on top of power overhead line pole, need not to consider its best hanging point, electro-corrosion, and others.
☆. in the process of old line transformation, cable’s outer diameter and tension may be matched better than another ground wire;
☆. big transmission capacity, good and reliable communication;
excellent mechanical and electrical property;
Good security, long lifetime, and invulnerable to gun fire.
Central Optical Fiber SUS Tube Structure (Parts) |
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Structure Drawing |
Structure:central optical fiber SUS tube structure with single stranded layer |
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Order Type Model |
OPGW-1C1/36 (M48/R60-12) |
OPGW-1C1/40 (M58/R72-16) |
Max. fiber count |
36 |
40 |
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Tube size |
φ3.2 mm |
φ3.5mm |
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Cable diameter |
φ9.6 mm |
φ10.5 mm |
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Cross-section carry area |
48 mm2 |
58 mm2 |
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Cable weight |
338 kg/km |
400 kg/km |
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Rated Tensile Strength(RTS) |
59 kN |
71 kN |
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DC resistance at 20℃ |
1.782 Ω/km |
1.490 Ω/km |
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Short current capacity (40~200℃) |
11 kA2·s |
16 kA2·s |
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Linear expansion coefficient |
13.0×10-6/℃ |
13.0×10-6/℃ |
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Young’s modulus |
162.0 kN/mm2 |
162.0 kN/mm2 |
Structure Drawing |
Structure:central optical fiber SUS tube structure with double stranded layers |
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Order Type Model |
OPGW-2C1/30 (M127/R78-137) |
OPGW-2C1/40 |
Max. fiber count |
30 |
40 |
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Tube size |
φ3.0 mm |
φ3.4 mm |
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Cable diameter |
φ15.0 mm |
φ17.0 mm |
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Cross-section carry area |
127 mm2 |
163 mm2 |
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Cable weight |
529 kg/km |
673 kg/km |
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Rated Tensile Strength(RTS) |
77 kN |
99 kN |
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DC resistance at 20℃ |
0.329 Ω/km |
0.255 Ω/km |
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Short current capacity (40~200℃) |
137 kA2·s |
226 kA2·s |
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Linear expansion coefficient |
17.5×10-6/℃ |
17.5×10-6/℃ |
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Young’s modulus |
97.3 kN/mm2 |
97.3 kN/mm2 |
Typical Structure and Parameter of OPGW(L)
Some structures and characteristics of typical representative OPGW are shown in the below list, however, they do not represent the whole products of the company. If you have any requests, please contact local representative office or directly contact the company.
Central Optical Fiber Aluminum Clad SUS Tube Structure (Parts) |
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Structure Drawing |
Structure:central optical fiber aluminum clad SUS tube structure with single stranded layer |
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Order Type Model |
OPGW(L)-1S 12(M83/R99-38) |
OPGW(L)-1S 30(M104/R125-60) |
Max. fiber count |
12 |
30 |
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Tube size |
φ4.0 mm |
φ4.5 mm |
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Cable diameter |
φ12.0 mm |
φ13.5 mm |
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Cross-section carry area |
83 mm2 |
104 mm2 |
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Cable weight |
539 kg/km |
673 kg/km |
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Rated Tensile Strength(RTS) |
99 kN |
125 kN |
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DC resistance at 20℃ |
0.899 Ω/km |
0.724 Ω/km |
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Short current capacity (40~200℃) |
38.4 kA2·s |
59.8 kA2·s |
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Linear expansion coefficient |
13.4×10-6/℃ |
13.4×10-6/℃ |
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Young’s modulus |
153.1 kN/mm2 |
153.8 kN/mm2 |
Structure Drawing |
Structure:central optical fiber aluminum clad SUS tube structure with double stranded layers |
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Order Type Model |
OPGW(L)-1S 12(M234/R292-282) |
OPGW(L)-1S 30(M295/R370-448) |
Max. fiber count |
12 |
30 |
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Tube size |
φ4.0 mm |
φ4.5 mm |
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Cable diameter |
φ20.0 mm |
φ22.5 mm |
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Cross-section carry area |
234 mm2 |
295 mm2 |
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Cable weight |
1531 kg/km |
1930 kg/km |
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Rated Tensile Strength(RTS) |
292 kN |
370 kN |
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DC resistance at 20℃ |
0.350 Ω/km |
0.279 Ω/km |
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Short current capacity (40~200℃) |
282 kA2·s |
448 kA2·s |
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Linear expansion coefficient |
13.1×10-6/℃ |
13.1×10-6/℃ |
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Young’s modulus |
158.8 kN/mm2 |
159.1 kN/mm2 |
Stranded Optical Fiber SUS Tube Structure (Parts) |
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Structure Drawing |
Structure:stranded optical fiber SUS tube structure with double stranded layers |
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Order Type Model |
OPGW-2S1/30(M107/R66-97) |
OPGW-2S1/36(M128/R79-139) |
Max. fiber count |
30 |
36 |
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Tube size |
φ2.7 mm |
φ3.0 mm |
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Cable diameter |
φ13.85 mm |
φ15.2 mm |
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Cross-section carry area |
107 mm2 |
128 mm2 |
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Cable weight |
450 kg/km |
535 kg/km |
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Rated Tensile Strength(RTS) |
65.8 kN |
78.9 kN |
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DC resistance at 20℃ |
0.389Ω/km |
0.327Ω/km |
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Short current capacity (40~200℃) |
97 kA2·s |
138 kA2·s |
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Linear expansion coefficient |
17.4×10-6/℃ |
17.4×10-6/℃ |
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Young’s modulus |
97.6 kN/mm2 |
97.8 kN/mm2 |
Structure Drawing |
Structure:stranded optical fiber SUS tube structure with double stranded layers |
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Order Type Model |
OPGW-2S1/30(M107/R133-57) |
OPGW-2S1/36(M128/R159-81) |
Max. fiber count |
30 |
36 |
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Tube size |
φ2.7 mm |
φ3.0 mm |
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Cable diameter |
φ13.85 mm |
φ15.2 mm |
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Cross-section carry area |
107 mm2 |
128 mm2 |
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Cable weight |
727 kg/km |
865 kg/km |
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Rated Tensile Strength(RTS) |
133 kN |
159 kN |
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DC resistance at 20℃ |
0.803Ω/km |
0.673Ω/km |
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Short current capacity (40~200℃) |
57 kA2·s |
81 kA2·s |
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Linear expansion coefficient |
13.0×10-6/℃ |
13.0×10-6/℃ |
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Young’s modulus |
162.0 kN/mm2 |
162.0 kN/mm2 |
Stranded Optical Fiber SUS Tube Structure (Parts) |
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Structure Drawing |
Structure:stranded optical fiber SUS tube structure with three stranded layers |
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Order Type Model |
OPGW-3S1/36(M255/R116-590) |
Max. fiber count |
36 |
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Tube size |
φ3.0 mm |
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Cable diameter |
φ21.2 mm |
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Cross-section carry area |
255 mm2 |
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Cable weight |
879 kg/km |
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Rated Tensile Strength(RTS) |
116 kN |
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DC resistance at 20℃ |
0.145 Ω/km |
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Short current capacity (40~200℃) |
590 kA2·s |
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Linear expansion coefficient |
19.6×10-6/℃ |
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Young’s modulus |
81.5 kN/mm2 |
Structure Drawing |
Structure:stranded optical fiber SUS tube structure with three stranded layers |
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Order Type Model |
OPGW-3S1/48(M327/R407-530) |
Max. fiber count |
48 |
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Tube size |
φ3.4 mm |
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Cable diameter |
φ23.9 mm |
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Cross-section carry area |
327 mm2 |
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Cable weight |
2178 kg/km |
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Rated Tensile Strength(RTS) |
406 kN |
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DC resistance at 20℃ |
0.264 Ω/km |
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Short current capacity (40~200℃) |
530 kA2·s |
|
Linear expansion coefficient |
13.0×10-6/℃ |
|
Young’s modulus |
162.0 kN/mm2 |
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