Optical Fiber Composite Overhead Phase Conductor(OPPC)
OPPC is a composite cable that combines optical fiber units with low-voltage power cables. Designed for use with a rated voltage of 0.4kV, it enables both power transmission and optical communication transmission capabilities.
- Insulation Material: Mineral insulation for high temperature resistance and long-term durability.
- Sheath Material: Metal-sheathed for added mechanical protection and excellent resistance to environmental damage.
- Flexibility: Offers flexibility, making it suitable for installations in tight spaces and areas requiring frequent bending.
- Fire Resistance: Specifically designed to maintain operation even in extreme fire conditions, providing critical protection to life-saving circuits.
- Voltage Rating: Typically used for low and medium voltage applications.
Model Examples and Detailed Explanations
- GD-VY23 0.6/1kV 3-240+1x120+G1-12B1
This includes a 12-core B1-type optical fiber non-metallic layer stranded optical cable unit, copper conductor, with PVC insulated, steel tape armored, polyethylene outer sheath. It is an optical fiber composite cable rated with a 0.6/1kV voltage and consists of 3 cores plus 1 core. The conductors have a nominal cross-section of 240 square millimeters (main) and 120 square millimeters.
- GD-YJY 0.6/1kV 2x10+G4-4B1
This includes a 4-core B1-type optical fiber butterfly optical cable unit, copper conductor with a cross-linked polyethylene insulation, polyethylene outer sheath. It is an optical fiber composite cable rated with a 0.6/1kV voltage and consists of 2 cores. The conductor has a nominal cross-section of 10 square millimeters.
Key Performance Features
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Continuous installation process without any interruptions
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The usage of the AT sheath to resist corrosion
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Lightweight, small cable diameter to reduce ice and wind impact, minimizing loads on towers and supports.
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Supports a large space, with a maximum span of over 1000 meters.
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Precisely controlled aramid armor technology to improve the tensile strength of optical cables.
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Precisely controlled fiber surplus length and cable continuation pitch.
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Excellent tensile properties and temperature characteristics for optimal performance.
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Guaranteed life expectancy of over 30 years.
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