HELUSOUND® 600 FRNC
  • Halogen-free
  • UV-resistant
  • Length marking in metres
  • UKCA certification
  • Speaker cable
  • round
  • halogen-free
  • flame-retardant
  • low smoke development
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Items HELUSOUND® 600 FRNC

Item description
Part no.
AWG (approx.) Outer Ø mm (approx.) Cu factor per km Weight kg/km (approx.)
Technical Data

Technical Data

Speaker cable
Temperature range flexible -5°C to +70°C
fixed -40°C to +70°C
Test voltage core/core 1000 V
Minimum bending radius flexible 8x Outer-Ø
fixed 5x Outer-Ø
Details

Details

Cable Structure

      • Copper wire bare, finely stranded acc. to DIN VDE 0295 Class 5 / IEC 60228 Class 5
      • Core insulation: halogen-free, flame retardant compound (FRNC)
      • Core identification: colour coded
      • x = without protective conductor
      • Cores stranded with optimal lay lengths
      • Outer sheath: halogen-free, flame retardant compound (FRNC)
      • Sheath colour: black (RAL 9005)
      • Length marking: in metres

Properties

      • resistant to: UV radiation
      • halogen-free
      • flame-retardant, low smoke development

Tests

      • halogen-free acc. to DIN VDE 0482-754-1 / DIN EN 60754-1 / IEC 60754-1
      • corrosiveness of combustion gases acc. to DIN VDE 0482-754-2 / DIN EN 60754-2 / IEC 60754-2
      • flame-retardant acc. to DIN VDE 0482-332-1-2 / DIN EN 60332-1-2 / IEC 60332-1-2
      • bundle fire test acc. to DIN VDE 0482-332-3-22 / DIN EN 60332-3-22 / IEC 60332-3-22
      • smoke density acc. to DIN VDE 0482-1034-1+2 / DIN EN 61034-1+2 / IEC 61034-1+2

Notes

      • the conductor is metrically (mm²) constructed, AWG numbers are approximated, and are for reference only

Application

      • The HELUSOUND® 600 FRNC is the safe solution for higher safety requirements in the event of fire. This cable is used when halogen-free materials are required. The classic areas of application include Installations in public buildings, theaters, hospitals, schools, airports. The use of flame-retardant, halogen-free core and sheath material results in low smoke development, and there is no corrosion damage due to released gases and vapors and no fire propagation in the event of local flame exposure.
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