Mining cable OnGc-G 0.6/1kV 3x6.0+4.0x6.0/4+6.0 GG1050
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TECHNICAL DATA
Sales unit dimensions and weight: 1 m
Mining cable OnGc-G 0.6/1kV 3x6.0+4.0x6.0/4+6.0 GG1050
Mining cable OnGc-G – reliability in harsh conditions
The OnGc-G cable is a mining cable designed to operate in the demanding conditions characteristic of mining and energy industries. Its multi-core construction, with insulation and rubber sheathing, provides high flexibility and resistance to mechanical damage. This cable is ideal for applications where reliability and safety of energy transmission are required.
Construction and properties
The construction of this cable has been designed with the specific needs of mining environments in mind. The rubber sheathing effectively protects the cores from moisture, abrasion and other external factors. The cable has eight cores – three main cores with a cross-section of 6.0 mm² and four auxiliary cores with a cross-section of 4.0 mm² and two additional 6.0 mm² – providing great flexibility in installation configuration. This allows for simultaneous powering of devices and transmission of control signals.
- Operating temperature: The maximum permissible operating temperature of the cable is 90°C, allowing it to be used at elevated ambient temperatures.
- Operating voltage: Designed to operate at a voltage of 0.6/1 kV.
- Test voltage: Working cores withstand a test voltage of 3.2 kV, and auxiliary cores 2 kV – a guarantee of safety and reliability.
- Flexibility: The minimum bending radius for fixed installation is 6 times the cable diameter, and for mobile receivers – 10 times the diameter. This ensures easy installation and adaptation to various installation configurations.
Applications
The OnGc-G cable is primarily used in:
- Mining: Powering mining machinery and equipment, ventilation and lighting systems.
- Energy industry: Power installations in places exposed to mechanical damage or weathering.
- Heavy industry: Powering equipment in harsh industrial conditions.
- Temporary installations: Where high flexibility and resistance to mechanical damage are required.

