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Project | Parameter | Unit |
Cable model |
OPGW-2S 2×24B1(0/92.6-60)
|
|
Fiber optic number | 48 | B1 |
Wire 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 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/℃ |
Strain to weight ratio | 14.4 | km |
Outermost hinge direction | Right |
|
Static radius of curvature | 20D | mm |
Dynamic bending radio | 30D | mm |
Storage temperature | -60~85 | ℃ |
Installation temperature | -40~70 | ℃ |
Operating temperature | -60~70 | ℃ |
Fiber optic type | 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±0.3um | |
MFD 1550 nm | 10.0±0.3um | |
Liner diameter | 125.0±1.0um | |
Non-circularity of the coating | ≤1.0% | |
Core/cladding concentricity error | ≤0.8um | |
Liner diameter | 242±7 um | |
Core non-circularity | ≤6.0% | |
≤12.0um | ||
Liner/lining concentricity error | ≤1260 nm | |
cable cutting | 1312±10 nm | |
Zero Dispersion Wavelength | 0.092 ps/(nm2∙km) | |
Dispersion slope | ≤0.05ps/√km |
Optical ground wire, or OPGW, includes communication functions provided by embedded optical fibers in addition to the existing overhead ground wire that protects transmission cables from lightning and ensures current flow in the event of cable failures.
Minimized OPGW external diameter for optimized structure design (No. of optical fiber cores: maximum 144)
Maintains stable optical fiber performance in a wide temperature range (-40°C ~ +85°C)
Protects optical fibers from harsh environmental changes, such as lightning and short circuit currents.
The gelatin compound prevents water penetration into the optical fiber.
It is used for optical communications, to protect transmission lines from fault currents (inrush currents in the case of power system faults) and lightning. Find the product range as follows, according to the unit (tube) structure of the fiber optic assembly.
• Loose plastic tube type OPGW
• OPGW type stainless steel loose tube
Mr Herry
Phone/Wechat/Whatsapp:+8618123897029
Skype:sales09@aixton.com
Mr James
Phone/Wechat/Whatsapp:+8618566291592
Skype:aixton05