Applies to:
The optical cable is designed for hanging on the supports of overhead communication lines, the contact network and automatic blocking of railways, power lines, lighting poles, power facilities, between buildings and structures; for laying in the ground, in the cable duct, in pipes (including the method of pneumatic laying), in blocks, in trays, in tunnels, in collectors, over bridges and overpasses, inside buildings and structures.
The cable is completely dielectric
Cable Structure:
The cable comprises a core of a modular design with a central power element of a dielectric rod around which optical modules with freely laid fibers are twisted. The free space in the optical modules and in the cable core is filled with a hydrophobic gel. An intermediate shell of medium density polyethylene is applied to the core. Aramid yarns are spirally superimposed on the intermediate shell. On top of the filaments, a medium density polyethylene jacket is applied.
-1. Outer sheath
-2. Aramid threads
-3. Polyethylene Intermediate Sheath
-4. Optical fiber
-5. Optical module
-6. Hydrophobic gel
-7. Central power element (fiberglass rod)
Construction details:
Number of OM in the cable |
Up to 48 |
Up to 72 |
Number of optical modules |
6 |
6 |
Number of fibers in the module |
8 |
12 |
Tensile force |
3,5 kH |
|
Diameter of cable, mm |
12,2 |
12,8 |
Cable weight, kg / km |
113,8 |
124,4 |
Tensile force |
6 kH |
|
Diameter of cable, mm |
12,2 |
12,8 |
Cable weight, kg / km |
113,8 |
124,4 |
Tensile force |
7 kH |
|
Diameter of cable, mm |
12,3 |
12,9 |
Cable weight, kg / km |
116,7 |
126,3 |
Number of OM in the cable |
Up to 48 |
Up to 72 |
|
Tensile force |
8 kH |
||
Diameter of cable, mm |
12,4 |
12,9 |
|
Cable weight, kg / km |
118,1 |
126,9 |
|
Tensile force |
10 kH |
||
Diameter of cable, mm |
12,5 |
13,0 |
|
Cable weight, kg / km |
120,7 |
129,5 |
|
Tensile force |
12 kH |
||
Diameter of cable, mm |
12,7 |
13,3 |
|
Cable weight, kg / km |
125,4 |
136,0 |
|
Tensile force |
15 kH |
||
Diameter of cable, mm |
13,0 |
13,6 |
|
Cable weight, kg / km |
133,5 |
144,0 |
Operating parameters:
Working temperature |
-60 С...+70 С |
Mounting temperature |
-30 С...+50 С |
Transport and storage temperature |
-60 С...+70 С |
Minimum bending radius |
not less than 20 cable diameters |
Life time |
25 years |
Maximum potential |
12 kV |
Features:
Applies to:
The optical cable is designed for hanging on the supports of overhead communication lines, power lines, lighting poles, between buildings and structures; in the cable duct, in pipes, in blocks, in tunnels, in collectors, over bridges and overpasses, inside buildings and structures.
Cable Structure:
The cable contains an optical module with freely laid fibers. The free space in the optical module is filled with a hydrophobic gel. As a suspension element, a steel cable is used. On the optical module and the suspension element, a medium density polyethylene shell is applied.
-1. Peripheral force element
-2. Polyethylene sheath
-3. Optical module
-4. Optical fiber
-5. Hydrophobic gel
Construction details:
Number of OM in the cable |
Up to 6 |
Up to 8 |
Up to 12 |
Diameter over the shell of the optical module, mm |
6,2 |
6,3 |
6,5 |
Diameter over the shell of the suspension element, mm |
5,0 |
||
Max overall cable size, mm |
12,2 |
12,3 |
12,5 |
Cable weight, kg / km |
70,6 |
71,4 |
73,2 |
Operating parameters:
Working temperature |
-60 С...+70 С |
Mounting temperature |
-30 С...+50 С |
Transport and storage temperature |
-60 С...+70 С |
Minimum bending radius |
not less than 20 cable diameters |
Life time |
25 years |
Features:
Applies to:
The optical cable is designed for hanging on the supports of overhead communication lines, power lines, lighting poles, between buildings and structures; in the cable duct, in pipes, in blocks, in tunnels, in collectors, over bridges and overpasses, inside buildings and structures.
Cable Structure:
The cable comprises a core of a modular design with a central power element of a dielectric rod around which optical modules with freely laid fibers are twisted. The free space in the optical modules and in the cable core is filled with a hydrophobic gel. As a suspension element, a steel cable is used. A medium density polyethylene jacket is applied to the core and the suspension element.
-1. Peripheral force element
-2. Polyethylene sheath
-3. Optical module
-4. Optical fiber
-5. Central power element (fiberglass rod)
-6. Hydrophobic gel
Construction details:
Number of OM in the cable |
Up to 16 |
Up to 32 |
Up to 48 |
Up to 64 |
Up to 72 |
Number of optical modules |
4 |
4 |
4 |
4 |
6 |
Number of fibers in the module |
4 |
8 |
12 |
16 |
12 |
Diameter over cable sheath, mm |
8,6 |
8,9 |
9,3 |
9,8 |
10,4 |
Diameter over the shell of the suspension element, mm |
|
5,8 |
|||
Max overall cable size, mm |
16,4 |
16,7 |
17,1 |
17,6 |
18,2 |
Cable weight, kg / km |
116,7 |
118,9 |
124,1 |
129,9 |
142,6 |
Operating parameters:
Working temperature |
-60 С...+70 С |
Mounting temperature |
-30 С...+50 С |
Transport and storage temperature |
-60 С...+70 С |
Minimum bending radius |
not less than 20 cable diameters |
Life time |
25 years |
Features:
Construction details:
The maximum number of OV in the cable |
Up to 16 |
Up to 32 |
Up to 48 |
Up to 64 |
Up to 72 |
Number of optical modules |
4 |
4 |
4 |
4 |
6 |
Number of fibers in the module |
4 |
8 |
12 |
16 |
12 |
Diameter over cable sheath, mm |
8,6 |
8,9 |
9,3 |
9,8 |
10,4 |
Diameter over the shell of the suspension element, mm |
|
||||
Max overall cable size, mm |
17,1 |
17,4 |
17,8 |
18,3 |
18,9 |
Cable weight, kg / km |
102,2 |
104,5 |
109,7 |
115,5 |
128,1 |
Operating parameters:
Working temperature |
-60 С...+70 С |
Mounting temperature |
-30 С...+50 С |
Transport and storage temperature |
-60 С...+70 С |
Minimum bending radius |
not less than 20 cable diameters |
Life time |
25 years |
Features: