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FallTech 727630LE Contractor 30’ Leading Edge Self-Retracting Device, Class B SRD

FallTech 727630LE Contractor 30’ Leading Edge Self-Retracting Device, Class B SRD 

The FallTech 30’ Contractor Leading Edge Self-Retracting Device offers the highest level of safety when working around unprotected sides and edges including Leading Edges. A Leading Edge SRD that provides functionality for those jobs that require a foot-level or elevated anchor point and a Leading Edge lifeline. The 30’ Contractor Leading Edge SRD offers a smooth cable payout and retraction reducing nuisance lock-up and allows workers to move effortlessly on the jobsite maximizing worker efficiencies. The Contractor’s internal braking system provides confidence of fast acting braking of the SRD in the event of a fall.

  • The housing is constructed with lightweight glass-filled polycarbonate and nylon that offers increased strength for durability with excellent wear resistance properties. 
  • A carrying handle is integrated to the SRD for easy transport around the job site. 
  • A dual energy absorber system - internal inertial brake and external shock pack - reduces the risk of cable failure when contacting an edge during a fall event
  • The SRD may be used as a traditional SRD for overhead anchorage options or in below harness D-ring anchorage conditions.
  •  A 7/32” Galvanized steel cable for added cut resistance. 
  • A swiveling, self-locking carabiner reduces cable twist and provides visual indication of a fall event.

Performance Specifications

  • Tensile Strength: 3,000 lbs. Minimum 
  • Maximum User Capacity: 310 lbs. 
  • Average Arrest Force: 1,125 lbs. or less 
  • Maximum Arrest Force: 1,800 lbs. Maximum Arrest Distance: 54” or less

Material Specifications

  • Housing: Glass-filled Polycarbonate
  • Nylon Cable: 7/32 ” Galvanized Steel Cable, 3,400 lbs. Minimum 
  • Connectors: Load-Indicating Swivel Carabiner and Anchorage Carabiner; 5,000 lbs. Tensile Strength and 3,600 lbs. Gate Strength



  • ANSI Z359.14-2014 LE 
  • OSHA CFR 1926.502, 1910.66