Anti-slip stage platform 1x0,5m 750kg/m² black without legs - CONTESTAGE HIT-H10602

CONTESTAGE

Anti-slip stage platform 1x0,5m 750kg/m² black without legs - CONTESTAGE HIT-H10602

In stock: 1New

SKU HIT-H10602EAN 3662009016764

Price for 1 unit

249,76 €

204,72 € + IVA

1 m x 0.5 m antiskip platform, 750 kg/m2, black

Description

1 x 0.5 m anti-slip stage platform, load capacity 750 kg/m2, black, compliant with NFE85-015 standard. Delivered without legs. The maximum height of 100 cm is allowed with two stacked risers. If the height is greater than 50 cm, a handrail must be installed. A ladder less than or equal to 120 cm must have at least one handrail. Fire resistance class Bfl-S1. Complies with European standard EN13501-1 + A1: 2010. N.B. Pay attention to the capacity of the ground; uneven ground can affect the safety of the installation. Please distribute the weights evenly over the entire surface of the platform.

Recommendations

In accordance with standard NF E85-015...

  • A maximum height of 150 cm is authorized
  • A handrail must be installed if the height to be climbed is greater than 50 cm

These provisions are not exhaustive. For other requirements, please obtain the standard mentioned above.

Pay attention to the ground capacity

  • A loose floor can be detrimental to the safety of the installation
  • Please distribute the loads evenly over the entire surface of the platform

About handrails and stairs

  • A handrail must be installed as soon as the fall height is over 50 cm
  • A staircase up to 120 cm wide must have at least one handrail

Fire resistance

  • Fire resistance class: Bfl-S1 (corresponds to French class M1)
  • It complies with the European standard EN13501-1+A1:2010

Water resistant

  • The top is made of birch multi-ply plywood with a film underneath and a non-slip coating on the top
  • It is designed to withstand water splashes, i.e. occasional rain
  • It should not be i mmersed and installed over a long period of time or stored outside as this may cause it to swell and reduce its load-bearing capacity

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