High temperature resistant silicone cable H05SS-F 4G0.75 mm² black, conductor identification acc. to DIN VDE 0293-308 22292
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TECHNICAL DATA
Sales unit dimensions and weight: 1 m
High temperature resistant silicone cable H05SS-F 4G0.75 mm² black, conductor identification acc. to DIN VDE 0293-308 22292
Flexible cable H05SS-F – resistance to extreme temperatures
This black, four-core H05SS-F cable with a cross-section of 0.75 mm² is designed to operate in demanding conditions where standard cables fail. It is characterized by exceptional temperature resistance, reaching up to 180°C, making it an ideal choice for industrial and specialized applications. The construction with cross-linked rubber provides flexibility and durability, and the twisted copper cores ensure reliable conductivity.
Construction and properties for professionals
This cable stands out with a construction adapted to work in difficult conditions. Copper cores, made of tinned stranded wire (class 5), are insulated with cross-linked rubber EI2. The outer jacket made of cross-linked rubber EM9 provides additional protection against external factors. It is worth noting the permissible working temperature of the core – up to +180°C, which allows the cable to be used in direct proximity to heat sources. The minimum bending radius is 7.5x the cable diameter for flexible routing and 4x the diameter for fixed routing. Additionally, the cable exhibits radiation resistance up to 20x10⁶ cJ/kg (20 Mrad).
Applications and benefits
The H05SS-F cable is widely used in the internal wiring of lighting fixtures in industrial plants and wherever high thermal resistance is required. It is particularly recommended for applications with low mechanical stress, where standard cables could be damaged. Thanks to its construction and properties, this cable provides safe and reliable connections in extreme conditions. The rated voltage U is 500V, and the test voltage is 2000V. The minimum resistivity is 200 MOhm x km. The product meets the requirements of the Low Voltage Directive 2014/35/EU (CE marking).

