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KONG
Carabiner Ergo Wire Double Gate Body anodized

Rating 4,50/5 (Number of votes: 2)


Kong Carabiner Ergo Wire Double Gate Body anodized 907D003X3KK The Ergo wire uses an innovative locking mechanism to keep you more secure while climbing or installing rock climbing anchors. Alu alloy anodized 70g. 30kN.

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Not available for this geographic area: USA  
 
Model: Kong Carabiner Ergo Wire Double Gate Body anodized
Code: 907D003X3KK

Climbing gear gets better each year. Kong continues to innovate like no other carabiner company in the world. The Ergo wire uses an innovative locking mechanism to keep you more secure while climbing or installing rock climbing anchors.
Material: alu alloy. Breaking load: 30kN. Weight: 70g.
CE EN 12275/K - EN 362/B
 
Kong Moschettone Ergo Wire Double Gate Body


Instructions for using KONG connectors – DPI class III
Always make sure that connectors inserted in their anchorage are able to move freely and take up position in the right direction of load with gates always perfectly closed.
Fig. 1 - Position offering maximum resistance. Warning: connectors are less resistant when connected with wide items (fig. 2).
Important:
- Calculate effective loads that connectors will have to bear (fig. 3) before using them for suspension (double-cord descent); these loads must never exceed the load marked on the connector by more than a 1/4 (SWL 1:4),
- It is preferable to use models with automatic gate locking device the connector has to be opened and closed frequently.
Fig. 4 – Example of how to use the “half-anchor hitch” to dynamically secure the second person in the roped party.
Fig. 5 – Progession rope correctly inserted in the “Express”.
Fig. 6 – Incorrect and dangerous way to use the express:
- warning the connector gate could be opened against projecting rock or anchorage during the climb,
- warning the rope could accidentally slip out if you fall.
Fig. 7 – Using the “Express” helps the rope to slide through.
Examples of accidental opening:
- impact against rocks (fig.8),
- projecting rock opening the gate (fig. 9),
- vibrations caused by the rope whipping through during a fall (fig.10).
Examples of incorrect and dangerous positions:
- anchorage too large for the gate to close (fig. 11),
- positions causing side and/or transverse stress and/or twisting (fig. 12),
- the descender forcing the locknut (fig. 13).
Warning: never grip onto connectors as in figure 14 to help yourselves up
 
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