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Made from planished 10mm bar stock, the Clog 10mm straight and bent gate karabiners are compact and lightweight. The 'nose' is oriented to optimise easy clipping of equipment.
The bent gate guides ... »more info
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An excellent price for this quality 10cm quickdraw from Clog. It uses a pair of the Clog Super 10 karabiners. One straightgate and one bentgate (23kn).
These excellent quickdraw sets come complete ... »more info
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An excellent price for this quality 15cm quickdraw from Clog. It uses a pair of the Clog Super 10 karabiners. One straightgate and one bentgate (23kn).
These excellent quickdraw sets come complete ... »more info
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Made from planished 10mm bar stock, the Clog 10mm screwgate karabiner is compact and lightweight. The nose is orientated to optimise easy clipping of equipment.
Major axis strength:--- 23kn. (Gate ... »more info
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Clog karabiners are made in the UK's most up-to-date manufacturing facility where forging, machining, heat treatment, assembly and testing are carried out by the most sophisticated computer controlled... »more info
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The Clog 10mm Wiregate is based on the same ‘back’ as the standard 10mm karabiner but has a wire gate to give a neat alternative.
These Clog wiregates are distinguished by their distinctive anodis... »more info
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Made from round 12mm bar stock, this classic HMS design from Clog is equally at home belaying using traditional methods or with modern belay devices.
Major axis strength:--- 22kn. (Gate closed)
Mi... »more info
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Clog cams cover a wide range of cracks, from 10mm to 100mm in 9 sizes. All Clog cams use a 13.75 degree camming angle which gives the optimum expansion range and the highest pull out loads in low fri... »more info
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The Clog Centre harness was designed in consultation with outdoor professionals to give a highly featured 'activity' harness at the best possible value.
Features like different coloured leg loops,... »more info
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Clog Figure of 8 descenders are probably the strongest descending devices made. They are hot forged from 6082 T6 high strength aluminium, and the design maximises surface area for heat dissipation.
... »more info
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