TeraDuct microducts

New product in the TeraPlast portfolio. Made by extrusion of high-density polyethylene (HDPE), in compliance with SR EN 60794-5-10.

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TeraDuct Microducts are manufactured on state-of-the-art equipment. Both the production and the packaging line were designed to sustain high complexity projects.

CHARACTERISTICS

TeraDuct One

  • Made of high-density polyethylene (HDPE).
  • Dimensions range – External diameter: 7 mm ÷ 16 mm.
  • Pressure resistance: min 15 bar.
  • Impact resistant.
  • Ribbed inner coating made of silicone.
  • TeraDuct ONE meets the standards for pulling/blowing the optical fiber cables.
  • Available in opaque colors according to the IEC 60304 standard.
  • Extended range of colors (on request).
  • Detection wire (on request).
  • Antistatic interior layer that can reduce electrostatic charge accumulated during the blowing of the optical fiber (on request).

TeraDuct Line

  • Made of high-density polyethylene (HDPE).
  • Available configurations include 2 to 5 TeraDuct ONE microducts in a single beam.
  • Pressure resistance: min 15 bar.
  • Impact resistant.
  • Ribbed inner coating made of silicone.
  • TeraDuct LINE meets the standards for pulling/blowing the optical fiber cables.
  • Easy access to the microducts inside the beam
  • Easy branching through connectors.
  • Covered with an orange, UV-resistant coating.
  • Detection wire (on request).
  • Antistatic interior layer that can reduce electrostatic charge accumulated during the blowing of the optical fiber (on request).

TeraDuct Mix

  • Made of high-density polyethylene (HDPE).
  • Available in configurations from 3 to 12 TeraDuct ONE.
  • Pressure resistance: min 15 bar.
  • Impact resistant.
  • Ribbed-silicone inner coating.
  • TeraDuct MIX meets the standards for pulling/blowing the optical fiber cables.
  • Easy access to the individual microducts.
  • Easy branching through connectors.
  • Covered with an orange, UV-resistant coating.
  • Detection wire (on request).
  • Antistatic interior layer that can reduce electrostatic charge accumulated during the blowing of the optical fiber (on request).

TeraDuct Microducts are manufactured on state-of-the-art equipment. Both the production and the packaging line were designed to sustain high complexity projects.

CHARACTERISTICS

TeraDuct One

  • Made of high-density polyethylene (HDPE).
  • Dimensions range – External diameter: 7 mm ÷ 16 mm.
  • Pressure resistance: min 15 bar.
  • Impact resistant.
  • Ribbed inner coating made of silicone.
  • TeraDuct ONE meets the standards for pulling/blowing the optical fiber cables.
  • Available in opaque colors according to the IEC 60304 standard.
  • Extended range of colors (on request).
  • Detection wire (on request).
  • Antistatic interior layer that can reduce electrostatic charge accumulated during the blowing of the optical fiber (on request).

TeraDuct Line

  • Made of high-density polyethylene (HDPE).
  • Available configurations include 2 to 5 TeraDuct ONE microducts in a single beam.
  • Pressure resistance: min 15 bar.
  • Impact resistant.
  • Ribbed inner coating made of silicone.
  • TeraDuct LINE meets the standards for pulling/blowing the optical fiber cables.
  • Easy access to the microducts inside the beam
  • Easy branching through connectors.
  • Covered with an orange, UV-resistant coating.
  • Detection wire (on request).
  • Antistatic interior layer that can reduce electrostatic charge accumulated during the blowing of the optical fiber (on request).

TeraDuct Mix

  • Made of high-density polyethylene (HDPE).
  • Available in configurations from 3 to 12 TeraDuct ONE.
  • Pressure resistance: min 15 bar.
  • Impact resistant.
  • Ribbed-silicone inner coating.
  • TeraDuct MIX meets the standards for pulling/blowing the optical fiber cables.
  • Easy access to the individual microducts.
  • Easy branching through connectors.
  • Covered with an orange, UV-resistant coating.
  • Detection wire (on request).
  • Antistatic interior layer that can reduce electrostatic charge accumulated during the blowing of the optical fiber (on request).
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