Power cable YnKY 0,6/1 kV 1x1.0 RE black 0680 060 05
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TECHNICAL DATA
Sales unit dimensions and weight: 1 m
Power cable YnKY 0,6/1 kV 1x1.0 RE black 0680 060 05
Single-core power cable – reliability and installation safety
The YnKY 0.6/1 kV single-core power cable with a 1.0 mm² cross-section is a robust solution for transmitting electrical energy in a wide range of applications. Designed for both indoor and outdoor installations, whether in cable ducts or directly buried in the ground, it performs reliably in industrial plants, power stations, and local distribution networks. Its black outer sheath made of rubberized PVC ensures not only mechanical durability but also resistance to environmental factors and enhanced flame retardancy—the cable complies with PN-EN 60332-3 for non-propagation of flame.
This cable is particularly recommended where reliability and safety are paramount. The construction using soft copper conductors of Class 1 (RE) guarantees flexibility and ease of installation. Insulation made of insulating PVC provides effective protection against electric shock. Importantly, this cable conforms to IEC 60502-1 and PN-93/E-90401 standards, confirming its high quality and safe operation.
Construction and application – for installers and users
The key feature of this cable is its construction: a copper conductor is surrounded by PVC insulation, then bundled into a core, and fully protected by an outer sheath of rubberized PVC. This design ensures not only mechanical durability but also resistance to weather conditions and physical damage. As a result, the cable can operate in a wide temperature range: from -30°C to +70°C during service, and from -5°C to +50°C during installation.
Additionally, this cable is suitable for specialized operating conditions. Available variants include YKYżo-O cables designed for environments exposed to petroleum-based substances (e.g., fuel stations), and halogen-free versions XnKXSżo/XnKXS that offer enhanced fire safety through reduced emission of smoke and corrosive gases during combustion. Armored versions further increase mechanical resistance in areas subject to external mechanical stress.
