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Shop Our Products / Deluxe TCG 30 cal Arc Flash Rated Face Shield – HRC 2 / 2*

Deluxe TCG 30 cal Arc Flash Rated Face Shield – HRC 2 / 2*

  • Arc Thermal Protection Value: 30 cal/cm2
  • Shield Outer Surface: Silicote™-1 scratch-resistant coating
  • Shield Inner Surface: Permanent antifog coating
  • Hazard Risk Category (HRC): 2 / 2* when worn with a balaclava sock hood
  • Hazard Risk Category (HRC): 2
  • Complies with: CSA Z462-8 & NFPA 70E
  • Hard Hat: optional hard hat or adapter to fit hard hat slots

Oberon’s FaceFit® ArcShieldTM is designed to provide protection from low-level energy arc flash hazards. The shield, when worn with a balaclava sock hood, exceeds the requirements of CSA Z462-8 and NFPA 70E Hazard Risk Category 2* (HRC2*), up to 30 cal/cm2.

The FaceFit® ArcShield™ is manufactured by an injection moulding process with Oberon’s proprietary ArcX™ polycarbonate energy absorbing material. This high-tech material allows 100% true colour acuity. The ArcShieldTM arc rating (ATPV) is 30 cal/cm². The Arcshield comes standard with a slotted hard cap with Slot-Fit™ adaptors, upper and lower crown, plus side shield extenders. The upper and lower crown protects the forehead and chin. Side extenders give side head coverage beyond the ears. The deluxe version of the ArcShield comes with the outer surface coated with Oberon’s proprietary material Silicote™-1 scratch resistant coating (for longer product life) and a permanent antifog coating on the inner surface, for increased visibility.

Dimension: 14’x8’ vision area, 0.105 thickness, two 6’ side shield extenders, two 4’ crowns (upper and lower). A3 adapters fit most MSA slotted hard hats
/ A1 adapters fit most AO, Wilson, Jackson & Bullard slotted hard hats.

These shields are tested according to ASTM F-2178-02a and ANSI Z87.1-2003.

CSA Z462-8 and NFPA 70E requires that an employee working within the Flash Protection Boundary wears protective clothing and other personal protective
equipment.

Note: PPE should be chosen to meet or exceed the expected incident energy at the potential worksite.

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