Featuring Thermic heated liners and a women-specific 100mm "medium" fit, the all-new PURE PRO HEAT delivers an incredible blend of power and precision in a customizable, boot-fitter friendly design. The heated liner with Merino Wool insulation features an integrated control panel on the upper cuff to select between four settings: off, moderate (17-19hrs), medium (8-9hrs), and high (4-5hrs); batteries can be recharged using the provided USB cable.
For whom: | Women's |
System used: | GripWalk |
Type of ski boots: | All mountain |
Type of skier: | Sports |
Ski boot flex index: | 70-100, 90-120 |
Funkce : | Heating |
Boot Width: | 100 |
The shell/cuff connection gives the wearer the option of adjusting the boot’s flex by changing the position of the screws.
GRIPWALK® soles feature a rubber tread and rockered toe for a more natural walking motion and increased traction.
MERINO WOOL: Merino wool is used in the lining of ski boots and provides supreme thermal comfort whatever the conditions.
More than a thermal insulator, Merino wool is a natural thermal regulator. Its main attributes include:
Women's-specific slim fit features a 100mm last for a strong balance of comfort and support.
This application allows you to very easily adjust the temperature setting. Two modes can be used to manage the batteries.
- ECO MODE allows you to choose a heating period - for example: 4 minutes heating followed by 2 minutes off.
- MOVEMENT MODE: heating starts each time the skier stops.
The DUAL CORE technology involves injecting materials with different hardness levels into the same mould, with three injection points in the shell and two injection points in the cuff. The result is a sandwich construction with an ultra-thin layer of hard materials on the outside encapsulating the softer materials inside. This technology can be used to accurately fine-tune the progressive flex, rear support and rebound, and also allows for highly effective lateral power transfer.
Generative Design Grid minimizes boot wall thickness for the most effective use of material to reduce weight and enhance power transfer.