Honeywell Miller MB9007 Twin Tails Energy Absorbing Lanyard
Honeywell Miller MB9007 Twin Tails Energy Absorbing Lanyard
Honeywell Miller MB9007 Twin Tails Energy Absorbing Lanyard
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Honeywell Miller MB9007 Twin Tails Energy Absorbing Lanyard

  • Manufacturer: HONEYWELL

  • Part Number: 9007/5/31

  • Condition:New with Original Package

  • Product Type: Proximity Sensors

  • Country of Origin: Sweden

  • Payment:T/T, Western Union

  • Shipping port: Xiamen

  • Warranty: 12 months

Honeywell MB9007 Miller Fall Protection Module

The Honeywell 9007/5/31, also cataloged as the MB9007 Twin-tail energy-absorbing lanyard, operates as a dedicated hardware component for mechanical energy dissipation within personnel arrest systems. Configured for structural arrest protection, the assembly provides direct physical deceleration of dynamic loads while enabling 100% mechanical tie-off continuity.

Hardware Specifications

Parameter Specification
Model 9007/5/31
Brand Honeywell
Base Model MB9007
Origin USA
Weight 1.83 kg
Dimensions 1.7-1.8 m length
Operating Temp -40 to +85 deg C
Power Consumption 0 W
Product Type Twin-tail energy-absorbing lanyard
Rope Construction 12 mm polyester, 3 strands twisted fiber
Energy Absorber 32 mm polyamide, double-layer tearing type
Maximum Arresting Force Less than 6 kN
Snap Hooks Forged steel, 52-53 mm opening, auto-locking
Carabiner Stamped steel, 17 mm opening, twist auto-locking
Static Strength (Rope) Greater than 22 kN
Static Strength (Hooks) Greater than 20 kN
Capacity 100 kg

Industrial Control & Drives Matrix

The Honeywell 9007/5/31 architecture integrates structural I/O density scaling via a twin-tail split loop topology, facilitating dual anchor point allocation without reducing primary loop load ratings. The core energy dissipation cell relies on a 32 mm polyamide tearing array that acts as a mechanical low-pass filter, limiting peak kinetic shock transfers below 6 kN. The line paths deploy a 12 mm, 3-strand twisted polyester architecture that maintains structural flash compatibility against sharp edges and abrasive surfaces. The locking endpoints incorporate forged steel scaffold terminations and auto-closing twist locks to ensure deterministic structural loop closure under severe tensile stress.

Frequently Asked Questions

Q: How does the internal polyamide tearing matrix manage high peak arrest loads?

A: The double-layer tearing assembly uncoils progressively under load, converting the dynamic kinetic energy of a descent into predictable mechanical deformation to prevent severe load propagation to the user anchors.

Q: Can the twin hooks be coupled simultaneously to a single structural attachment node?

A: To maintain proper force distribution, the dual-tail lines must track to separate structural members or run sequentially to allow a 100% tie-off migration across independent anchoring positions.

Field Installation Guidelines

  • Inspect the structural fibers for severe abrasion, thermal cutting, or chemical degradation before linking the termination loops to any active load anchor.
  • Snap the twist-locking carabiner directly into the designated rear structural D-ring of the safety harness, validating that the gate locks completely and remains aligned along the major axis.
  • Maintain strict clearance zoning beneath the elevated operational plane, checking that the total extension length plus deceleration distance does not exceed local spatial boundaries.
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