




Ski/Snowboard Helmet - Unisex -
20% OFF
*See conditionsThe Chase 2 Plus Rich Purple is a unisex ski helmet from the brand Scott.
Based on a polycarbonate In-Mold construction with an EPS liner, the Chase 2 Plus absorbs impacts and distributes them across the entire helmet for full protection and great lightness.
Thanks to the WRAS 2 dial adjustment system, the Chase 2 Plus will provide you with the comfort you need, while its active ventilation system makes it an ideal helmet for skiing both in severe cold and late season on spring snow.
This helmet is also equipped with MIPS® technology, which allows the helmet to slide on the layer in contact with the head, thus minimising rotational impact transmitted to the brain in the event of angled impacts.
Finally, the Chase 2 Plus features a Scott exclusive: the 360° Pure Sound technology. Thanks to the very specific shape of the ear pads, this improves your hearing capabilities and makes it easier to detect sounds, which represents an additional safety feature.
With a distinctly freeride design, the Chase 2 Plus will bring you protection and comfort on your most committed descents, along with an unmistakable style!


- WRAS 2 adjustment system
- Double active ventilation system
- Passive mask ventilation system
- 360° Pure Sound technology for enhanced auditory capabilities
- MIPS® impact minimisation technology
Composition : polycarbonate In-mold with EPS liner and lower polycarbonate shell
| 360° Pure Sound | This technology represents a spectacular new advancement in helmet safety. The ear pads incorporate a specially shaped piece, surrounded by acoustically transparent fabric, which not only improves your auditory capabilities but also makes it easier to locate sounds. |
| MIPS® | Multidirectional impact protection system: MIPS® is a revolutionary technology that mimics the brain's natural protective system. The low-friction MIPS® layer creates a sliding margin between the helmet and the head, offering enhanced protection against brain injuries caused by violent rotational forces during oblique impacts. |