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| Project | Parameter | Unit |
| Cable model | OPGW-2S 2×24B1(0/92.6-60)
|
|
| Fiber optic number | 48 | B1 |
| Cable diameter | 13.2 | mm |
| Cable weight | 560±5 | Kg/km |
| Central structural element | 1×Φ2.6/30AS | mm |
| Fiber optic unit | 2×Φ2.5/24B1 | mm |
| Interior structural element | 4×Φ2.5/30AS | mm |
| Exterior structural element | 11×Φ2.8/30AS | mm |
| Calculated cross-sectional area | 92.6 | mm2 |
| Nominal breaking strength | 75 | KN |
| DC Resistance | 0.6 | Ω/km |
| Short-circuit current capacity | 60 | THE2S |
| Modulus of elasticity | 132 | G Pa |
| Linear expansion coefficient | 13.8 | ×10-8/℃ |
| Tension-to-weight ratio | 14.4 | km |
| Direction of the outermost hinge | Right |
|
| Static radius of curvature | 20D | mm |
| Dynamic radius of curvature | 30D | mm |
| Storage temperature | -60~85 | ℃ |
| Installation temperature | -40~70 | ℃ |
| Operating temperature | -60~70 | ℃ |
| Type of optical fiber | G.652D | |
| Attenuation coefficient | @1310nm | ≤0.36 dB/km |
| @1383nm | ≤0.35 dB/km | |
| @1550nm | ≤0.22 dB/km | |
| @1625nm | ≤0.23 dB/km | |
| Effective group refractive index | @1310nm | 1.467 |
| @1550nm | 1.467 | |
| Polarization mode dispersion | ≤0.1 ps/√km | |
| MFD 1310 nm | 9.0±0.3 um | |
| MFD 1550 nm | 10.0±0.3 um | |
| Lining diameter | 125.0±1.0 um | |
| Non-circular coating | ≤1.0 % | |
| Core/cladding concentricity error | ≤0.8 um | |
| Lining diameter | 242±7 um | |
| Non-circular core | ≤6.0 % | |
| ≤12.0 um | ||
| Cladding/coating concentricity error | ≤1260 nm | |
| Cable cut | 1312±10 nm | |
| Zero dispersion wavelength | 0.092 ps/(nm2∙km) | |
| Slope of dispersion | ≤0.05ps/√km | |
The optical fiber composite overhead ground wire (OPGW) is an overhead ground wire containing optical fiber. It serves multiple functions, including grounding and optical communication. It is primarily used for 110kV, 220kV, 500kV, and 750kV communication lines and the new high-voltage overhead transmission system. It can also be used to replace existing ground lines in older high-voltage overhead transmission systems, add optical communication lines, transmit short-duration current, and provide lightning protection. Other structures can be customized upon request.
• Large diameter, large fiber capacity
• The structure is stable and reliability is high
• Excellent side short-circuit protection and excellent short-circuit current capacity
• The optimal braiding design can obtain the excess length of secondary optical fiber
• The number of strands can be designed in two or three layers.
• Match common ground wires
• Stainless steel tubes filled with hydrophobic gel provide protection and support to the optical fibers
• Good traction performance
• Small diameter, light weight, little additional load on the tower.
• Excess fiber length suitable for the optical unit is easy to manufacture.





Mr. Herry
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Skype: sales09@aixton.com
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