




Ski helmet - Unisex -
The Level MIPS Matte Slate is a ski/snowboard helmet from the brand Smithideal for pushing back your limits.
Safety is the key word. The hybrid construction makes this helmet both ultra-light and impact-resistant. Added to this are the two best protection systems in the world, technology MIPS® and Koroyd®. One reduces the impact of multidirectional shocks, while the other effectively absorbs energy during impact while ensuring good ventilation.
What's more, thanks to the customised adjustment system VaporFit™system Level MIPS offers complete comfort and ideal support! The Level MIPS is also compatible with the Aleck™ so you can listen to your favourite sounds as you hurtle down the slopes. Finally, for optimised, long-lasting comfort, the antimicrobial lining Ionic+™ limits odours caused by perspiration, while the removable ear pads Snapfit SL2 provide warmth when temperatures drop.
For all-mountain and thrill-seekers in resorts and off the beaten track looking for 24/7 protection, nothing beats the Level MIPS !


- Wheel adjustment system VaporFit Snow™ for 270° fit adjustment
- Climate control with regulator for simple, one-handed ventilation adjustment
- 20 ventilation points
- Ventilation AirEvac™ to prevent the mask screen from fogging up (not supplied)
- Antimicrobial lining Ionic+™ to combat unpleasant odours
- Removable ear pads Snapfit SL2 compatible with audio kit
- Compatible with the audio system Aleck™
- Carry bag included in kit
Certification: ASTM F 2040, CE EN 1077:2007 CLASS B
| KOROYD™ | The main purpose of Koroyd™ is to absorb energy in the event of impact and protect the user from serious injury. As well as being a leading energy absorber, Koroyd™ is also extremely breathable and ultra-light. |
| MIPS® | Multidirectional Impact System: the MIPS® is a revolutionary technology that mimics the brain's natural protection system. The MIPS® low-friction layer creates a sliding margin between helmet and head, offering enhanced protection against brain damage caused by violent rotation during oblique impacts. |