Solar Cable 10mm Black Tinned Copper 100 Meter Role
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Musaffah Industrial 11, Abu Dhabi
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AED 25 · Free over AED 1,000
Heavy-duty 10mm solar DC cable suitable for high-current photovoltaic systems, solar inverter connections, battery banks, and outdoor solar power installations. Built with flexible tinned copper conductor, UV-resistant insulation, and durable flame-retardant sheath.
980 Original price was: 980. 878Current price is: 878.
Description
The 10mm solar cable is specially designed for photovoltaic power systems where higher current capacity and long-term outdoor durability are required. It is suitable for solar panel wiring, inverter connections, battery connections, combiner boxes, and other DC solar applications.
The cable uses a fine wire tinned copper conductor to provide excellent conductivity, flexibility, and protection against corrosion. Its insulation and sheath are made from UV-resistant, halogen-free, flame-retardant, cross-linked material, making it suitable for harsh outdoor environments, industrial areas, agricultural applications, and covered underground installations.
This cable is suitable for fixed installations, free-hanging systems, and movable solar applications.
Key Features:
- Cable Size: 10mm²
- Conductor: Fine wire tinned copper
- Approx. Cable Diameter: 7.07mm
- Strong UV and weather resistance
- Halogen-free and flame-retardant insulation
- Suitable for indoor and outdoor solar systems
- Suitable for solar panels, batteries, inverters, and combiner boxes
- Flexible construction for easy installation
- Resistant to heat, cold, moisture, oil, acid, alkaline, and ammonia
- Minimum ambient temperature: -40°C
- Maximum ambient temperature: +90°C
- Maximum conductor operating temperature: +120°C
- Short-circuit temperature: 250°C for 5 seconds
- Voltage Rating: AC 0.6/1.0kV
- PV System Voltage: DC up to 2.0kV possible
- Current Carrying Capacity:
- Single cable free in air: 98A
- Single cable on surface: 93A
- Two loaded cables touching on surface: 79A
- Max. conductor resistance at 20°C: 1.95 Ω/km






