


Ski/snowboard helmet - Unisex -
The helmet Method Mips Matte Glacier is a new product from the brand Smith. It's a unisex helmet for skiing and snowboarding.
A delicious blend of technologies and details for enhanced comfort, the Method Mips features innovative protection systems, combined with a lightweight, discreet construction In-Mold and discreet construction. The technology Koroyd® technology absorbs impact energy, while the MIPS®system protects against multidirectional impact for maximum safety.
When it comes to comfort, nothing has been left to chance. An adjustment system ensures a precise fit to the shape of your head. The ventilation system AirEvac™integrates perfectly with the glasses to prevent Smith to prevent fogging. Eight ventilation holes provide a constant flow of air. Finally, these headphones are compatible with audio systems Aleck™ and removable ear pads will keep you warm if the temperatures drop. A sober, elegant design tops it all off.
The Method Mips is the perfect ally for anyone looking for a thrill without neglecting comfort.


- Standards: ASTM F 2040, CE EN 1077:2007 CLASS B
- In-Mold shell
- Cover Koroyd®
-MIPS Brain protection system
- Personalised head shape adjustment system
- 8 Ventilation holes
- Removable Snapfit SL2 ear pads for extra warmth
- The AirEvac ventilation system is integrated into the glasses for anti-fog lenses
- Audio system compatible
- Compatible with cups
- Includes Smith helmet bag
- Weight: 400g (medium size)
Sizes:
| SMALL | 51-55cm |
| MEDIUM | 55-59cm |
| LARGE | 59-63cm |
| EXTRA LARGE | 63-67cm |
Technologies:
| KOROYD® | Offers superior impact absorption, design flexibility and ventilation compared to materials traditionally used in helmet construction. |
| MIPS® | Multidirectional Impact System: The Mips® is a revolutionary technology that mimics the brain's natural protection system. The low-friction layer of the Mips® creates a sliding margin between the helmet and the head, offering improved protection against brain damage caused by violent rotation during an impact. |