Used for outdoor distribution box to the building's pipeline,overhead,buried.
Used in optical communication equipment room.
Used for tail fiber and jump in line.
Used for buildings surrounding into cable.
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Hybrid Cable for Outdoor
2023-12-18
Used for outdoor distribution box to the building's pipeline,overhead,buried.
Used in optical communication equipment room.
Used for tail fiber and jump in line.
Used for buildings surrounding into cable.
Optical fiber composite insulated power cable for low voltages (OPLC) is a new type of optical fiber composite cable for low-voltage power lines. It has the functions of ordinary low-voltage cables and communication optical cables. The OPLC structure integrates optical fibers. It is integrated with the copper wire of power transmission and distribution and adopts optical fiber composite low-voltage cable with passive optical network (PON) technology to realize fiber to the home. Carrying the information collection service of residential users' electricity consumption of the information intranet, the information extranet "multi-network integration" business that meets the needs of smart grid informatization, automation, and interaction.
◆ Composite optical fiber and power transmission and distribution cables avoid secondary wiring, which can effectively reduce construction and network construction costs.
◆ It is suitable for a variety of business types, with strong adaptability, strong scalability, and wide product adaptability.
◆ It has strong mechanical properties, such as good impact and crush resistance performance and strong environmental adaptability.
◆ Green and safety performance is superior.
◆ The optical unit is compatible with the long-term working temperature of the power cable.
◆ The cost of OPLC is less than 10% higher than that of the traditional low-voltage cable. The PFTTH scheme using OPLC reduces the overall cost of construction by about 40% compared to the traditional cable + optical cable line scheme.
Optical Characteristics
Items | Unit | Specification | |
G652D | |||
Mode Field Diameter | 1310nm | um | 9.2±0.4 |
1550nm | um | 10.4±0.5 | |
Cladding Diameter | um | 124.8±0.7 | |
Cladding Non-Circularity | % | ≤0.7 | |
Core-Cladding Concentricity Error | um | ≤0.5 | |
Coating Diameter | um | 245±5 | |
Coating Non-Circularity | % | ≤6.0 | |
Cladding-Coating Concentricity Error | um | ≤12 | |
Cable Cutoff Wavelength | nm | acc≤1260 | |
Attenuation(max.) | 1310nm | dB/km | ≤0.36 |
1550nm | dBkm | ≤0.22 |
Technical Parameters
Range of Temperature | -20c~ +60c | |||||||||
Riser | Type OFNR/OFN FT4 | |||||||||
Plenum | Type OFNR/OFN FT6 | |||||||||
Jacket | LSZH or PE | |||||||||
Code name | cable | Diameter | Copper Wire | Linear mass | Tensile | Crush | Bending radius | |||
Short Term | Long Term | Short Term | Long Term | Short Term | Long Term | |||||
OPLC-2*0.5 | 6~24 | 10 | 2*0.5 | 125 | 1500 | 600 | 1000 | 300 | 20D | 10D |
OPLC-4*0.5 | 6-~24 | 10 | 4*0.5 | 130 | 1500 | 600 | 1000 | 300 | 20D | 10D |
OPLC-2*0.75 | 6~24 | 10 | 2*0.75 | 128 | 1500 | 600 | 1000 | 300 | 20D | 10D |
OPLC-4*0.75 | 6~24 | 10 | 4*0.75 | 135 | 1500 | 600 | 1000 | 300 | 20D | 10D |
oPLC-2*1.0 | 6~24 | 10 | 2*1.0 | 130 | 1500 | 600 | 1000 | 300 | 20D | 10D |
OPLC-4*1.0 | 6-~24 | 12 | 4*1.0 | 150 | 1500 | 600 | 1000 | 300 | 20D | 10D |
OPLC-2*1.5 | 6~24 | 12 | 2*1.5 | 140 | 1500 | 600 | 1000 | 300 | 20D | 10D |
OPLC-4*1.5 | 6~24 | 12 | 4*1.5 | 160 | 1500 | 600 | 1000 | 300 | 20D | 10D |
OPLC-2*2.5 | 6~-24 | 12 | 2*2.5 | 150 | 1500 | 600 | 1000 | 300 | 20D | 10D |
OPLC-4*2.5 | 6-~24 | 14.5 | 4*2.5 | 180 | 1500 | 600 | 1000 | 300 | 20D | 10D |