Versatile Options for Every Solar Setup
Tailored to diverse projects:
* Single-core (2.5–16mm²): Low-resistance tinned copper minimizes power loss in long runs (e.g.,
arrays ↔ inverters) for DC 1500Vlarge systems.
* Twin-core (same sizes): Streamlines panel-to-panel wiring (positive/negative in one sheath) to cut
clutter/time.
Works in all climates (freeze-thaw, tropical humidity) and integrates with standard solar components.
Quality You Can Trust
Rigorously tested (voltage, flame, flexibility) to meet global standards. Flexible core bends around obstacles; thick XLPO sheath resists physical wear. Bulk coiled rolls simplify large-project deployment. Built for 25+ years of reliable performance—matching solar panel lifespans.
Solar Cable Application
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Residential Solar Systems: Connect solar panels to inverters, charge controllers and energy storage devices, suitable for rooftop and ground-mounted residential solar installations.
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Commercial & Industrial Solar Projects: Used in large-scale solar farms, factory rooftop solar systems, and commercial building solar power generation, supporting long-distance power transmission between solar arrays.
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Off-Grid Solar Systems: Applicable to remote areas (such as rural areas, mountainous areas, islands) without grid coverage, connecting solar panels to off-grid inverters and energy storage batteries for independent power supply.
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Solar Street Lights & Small-Scale Solar Devices: Used for wiring of solar street lights, solar garden lights, portable solar chargers and other small solar products, ensuring stable power transmission in outdoor environments.
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Utility-Scale Solar Power Plants: Suitable for large-scale grid-connected solar power plants, withstanding outdoor harsh conditions (high temperature, UV radiation, rain and snow) to ensure long-term stable operation of the power generation system.

FAQ
Q: What is a solar cable?
A: Solar cable is a special DC cable designed for photovoltaic power systems to connect solar panels, inverters and combiner boxes.
Q: What are the main standards for solar cables?
A: Common standards are PV1‑F, H1Z2Z2‑K, IEC 62930, EN 50618 and UL 4703.
Q: What material is the conductor of solar cable?
A: Tinned copper, which is anti‑oxidation and corrosion‑resistant.
Q: What insulation and sheath materials are used?
A: Cross‑linked polyethylene (XLPE) or halogen‑free cross‑linked polyolefin.
Q: What temperature can solar cable withstand?
A: Operating temperature ranges from -40℃ to +120℃, short‑term up to 150℃.
Q: Is solar cable UV resistant?
A: Yes, it has strong UV resistance for long‑term outdoor use.
A: Solar cable is a special DC cable designed for photovoltaic power systems to connect solar panels, inverters and combiner boxes.
Q: What are the main standards for solar cables?
A: Common standards are PV1‑F, H1Z2Z2‑K, IEC 62930, EN 50618 and UL 4703.
Q: What material is the conductor of solar cable?
A: Tinned copper, which is anti‑oxidation and corrosion‑resistant.
Q: What insulation and sheath materials are used?
A: Cross‑linked polyethylene (XLPE) or halogen‑free cross‑linked polyolefin.
Q: What temperature can solar cable withstand?
A: Operating temperature ranges from -40℃ to +120℃, short‑term up to 150℃.
Q: Is solar cable UV resistant?
A: Yes, it has strong UV resistance for long‑term outdoor use.