Single-core silicone cable resistant to high temperatures SiD 1x0.5 mm² white 46305
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Sales unit dimensions and weight: 1 m
Single-core silicone cable resistant to high temperatures SiD 1x0.5 mm² white 46305
High-temperature silicone cable – reliability in extreme conditions
This single-core SiD silicone cable is a solution for demanding applications where standard cables fail. It is characterized by exceptional resistance to high and low temperatures, making it an ideal choice for industrial applications, as well as in aviation or metallurgy. Made of copper, coated with a layer of silicone, it provides flexibility and long-lasting reliability.
Construction and properties
This cable stands out with a construction adapted to work in difficult conditions. The copper core, with a cross-section of 0.5 mm², ensures good conductivity, and the silicone insulation guarantees resistance to extreme temperatures – from -60°C to +180°C (short-term up to +220°C). Additionally, the cable is halogen-free, which increases safety in the event of a fire and minimizes the emission of toxic substances. The outer diameter of the cable is approximately 2.2 mm.
Applications and benefits
The SiD cable finds wide application in industries requiring high thermal and chemical resistance:
- Metallurgical and cement industries: thanks to its resistance to high temperatures.
- Aviation: due to its flexibility and reliability in extreme conditions.
- Power plants: as an element of electrical installations requiring fire safety (halogen-free).
- Glass and ceramic industry: resistant to high temperatures and aggressive environments.
- General applications: everywhere where flexibility, thermal and chemical resistance are required.
It is worth emphasizing that this cable is also resistant to UV radiation and many chemical substances – oils, acids, alkalis and salt solutions – which expands the scope of its applications. The rated voltage U0/U is 300/500 V. This is a universal cable that will work well in both permanent installations and where high flexibility of connections is required.

