Head KORE 100 Ti 2026

$ 799.00

Head KORE 100 Ti Skis 

KORE 100 Ti

The KORE 100 Ti is a true multitasker, providing a well-rounded experience for skiers who want to excel on groomed runs as well as off-piste trails. The Karuba-Beech wood core and dual layers of Titanal ensure a strong yet flexible construction that adapts to your skiing style. The hybrid top surface keeps scratches to a minimum and increases durability.Whether you’re cruising down a prepared slope or navigating through fresh powder, the KORE 100 Ti delivers fun and playfulness in every condition.

GRAPHENE Construction

The lightest, thinnest and strongest material in the world lives in HEAD equipment. Stronger than diamond and over 300 times stronger than steel and only the thickness of one atom, you can benefit from the most advanced material on the planet on the slopes with equipment that is lighter and stronger.

Developed from the most sophisticated materials known to man: the Super Light Sandwich Construction makes up one of the world’s lightest freeride skis by utilizing Graphene, two different carbonlayers, as well as replacing the surface with a polyester fleece. The ultimate construction for a high performing freeride ski.


Features

  • Multilayer-Carbon Sandwich Cap Construction
  • Karuba/Beech wood core in unisex models, and a tuned Poplar/PET core in the women's line 
  • Graphene
  • Structured UHM C Base
  • New Ti Construction: Two Titanal layers provide stiffness with optimal dampening characteristics
  • Tip-Tail Rocker
  • Hybrid Top Surface with coated flax edge 
  • Weight 861g/ski @ 184cm

Sidecut/Specs

Lengthcm Shovelmm Waistmm Tailsmm Radiusm
170 132 99 121 15.6
177 133 100 122 17.2
184 134 101 123 18.9
191 136 102 124 20.6



Rocker Profile:  Rocker Tail 20% - Camber 50% - Rocker Tip 30%

Technologies

  • GRAPHENE is the thinnest and lightest element ever discovered by mankind. GRAPHENE is also the strongest material on the planet, stronger than diamond and 300 times stronger than steel, all in the thickness of one atom.