Head - Faero Mips - Ski helmet
Material information & features
- Suitable for:
- Men, Women
- Recommended use:
- skiing, snowboard
- Design:
- in-mold technology
- Outer shell:
- polycarbonate shell
- Inner shell:
- MIPS Technology
- Padding:
- removable, washable
- Closure:
- adjustable chinstrap
- Venting:
- ventilation openings
- Head circumference:
- XS/S: 52-55 cm; M/L: 56-59 cm; XL/XXL: 60-63 cm
- Extras:
- detachable ear pads
- Misc:
- Sphere Fit System
- Item No.:
- 418-1301
Product description
Sturdy ski helmet with MIPS technology
The Faero MIPS from Head is a modern ski and snowboard helmet that combines safety and comfort at the highest levels. Thanks to its In-Mold construction, this helmet is particularly lightweight and sturdy at the same time - ideal for anyone who wants to move freely on the piste without compromising on protection. Plus, the Sphere Fit System with height adjustment ensures a customisable fit that adapts perfectly to the shape of your head without causing uncomfortable pressure points.
A key feature of the helmet is the MIPS Integra TX system, which provides an extra layer of protection against rotational forces in the event of lateral impacts. This technology reduces the risk of concussion without compromising comfort or adding weight.
Sophisticated design for long days of skiing
In addition, the ski helmet scores bonus points with its Tech-Liner, which reliably wicks away moisture and ensures a comfortable fit even on intensive descents. Meanwhile, the Surround Comfort construction encloses the head evenly and comfortably, providing a secure fit without constricting. Lastly, the integrated ventilation technology continuously regulates the climate by wicking away moisture as required and ensuring a constant flow of air inside the helmet.
The advantages at a glance:
- Lightweight In-Mold construction with high shock absorption and excellent freedom of movement
- Customisable Sphere Fit System offers a perfect fit without pressure points
- MIPS Integra TX effectively protects against rotational forces in the event of a fall
Ask our experts
Alpinetrek expert Hannes