

Ski/snowboard helmet – Children’s –
The Freebird Girl Mips Helmet True Black is a women’s ski/snowboard helmet from the brand Roxy, designed to offer reliable protection and optimum comfort during your trips to the mountains.
This helmet features a robust construction made from ABS, an injection-moulded material renowned for its durability in terms of resistance to heavy impacts, dents and the effects of weather. MIPS®It is fitted with a multi-directional protection system, which reduces the rotational forces transmitted to the brain during oblique impacts, thereby improving your security.
It Freebird Girl Mips Helmet features integrated passive ventilation to ensure good air circulation, whilst still allowing a Beanie to be worn under the shell. Its detachable ear muffs and easy-to-use attachment system, integrated into the neckwarmer, ensure a precise and comfortable fit. The strap’s rear retention buckle ensures a perfect fit, ideal for demanding sessions on the slopes.
With its double CE EN 1077:2007 Class B and CE EN 1078 certification, this helmet combines security and functionality to support Outdoor sports enthusiasts on all their winter adventures.


- Ski/snowboard helmet
- Detachable ear muffs
- Easy-to-use attachment system integrated into the neckwarmer
- Compatible with wearing a Beanie under the shell
- Strap retention buckle (at the back)
- Passive ventilation
- Protection system MIPS®
- Double certification: CE EN 1077:2007 Class B / CE EN 1078
- Size: XS/S (51–55 cm)
Composition :
- Shell: ABS
| ABS | This construction is built around an injection-moulded shell ABS designed to withstand heavy impacts and offers unrivalled durability against the ravages of time, dents and knocks. |
| MIPS® | Multidirectional impact protection system: the MIPS® is a revolutionary technology that mimics the brain’s natural protection system. The low-friction layer of the helmet MIPS® creates a sliding margin between the helmet and the head, offering enhanced protection against brain injury caused by violent rotational forces during oblique impacts. |