Petzl Swivel Open Carabiner & Micro Swivel

PETZL

  • $129.95
    Unit price per 
  • dd Save $30
Tax included.
P58-SO

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The SWIVEL OPEN gated swivel karabiner features a wide opening and thus can be attached to a range of products (pulleys, lanyards...). It reduces the bulk and weight of component systems and solves the twisting and tangling problems of ropes and lanyards. Sealed ball bearings offer excellent performance and reliability.

  • Can be attached to a wide range of products (pulleys, lanyards...) because of its large opening.
    Reduces bulk and weight of component systems.
  • Solves the twisting and tangling problems of ropes and lanyards in different situations:
    - hauling: prevents rope twist when the load turns on itself, thus reducing kinking
    - hauling: avoids the risk of friction between ropes, which improves efficiency
    - progression with a lanyard: avoids twisting and simplifies manipulations
  • Excellent performance and reliability due to maintenance-free sealed ball-bearings

Specifications

  • Weight: 130 g
  • Breaking strength: 23 kN
  • Certification(s): CE, NFPA 2500 Technical Use, UKCA, EAC
  • Material(s): aluminum, nylon
  • Color(s): yellow/black

 

Petzl MICRO SWIVEL

The compact, openable MICRO SWIVEL is designed for attachment to a locking carabiner. It helps prevent twisting of lanyards and allows correct positioning of devices. Its design without bearings allows it to turn freely when not loaded and to stop moving when loaded in order to maintain the devices in position.

Designed for attachment to a locking carabiner:
- attachment point for a locking carabiner. This point has a flexible ring that helps hold the carabiner in the major axis position
- wide opening for easy, semi-permanent installation on a lanyard or device

Easier handling:
- avoids twisting of lanyards and allows correct positioning of devices
- turns freely when not loaded and stops moving when loaded in order to maintain the devices in position
- compact, gated assembly reduces bulk and weight of component systems

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