





Photochromic ski goggles -
The Sphere Otg Ls White Amp Ls Cinnamon Chrome S1-3 is a ski goggle from the brand Scott.
Highly efficient, the Sphere Otg Ls represents an excellent OTG ("over the glasses") solution to keep your glasses under the goggles. It also offers uncompromising visual comfort thanks to the optical technologies developed by Scott. Indeed, this version features a photochromic Light Sensitive lens covering categories 1 to 3, providing excellent vision in all weather and lighting conditions.
Thanks to its lens equipped with Amplifier technology and incorporating all the brand’s expertise, the Sphere Otg Ls optimally filters and transmits the different parts of the light spectrum. It is also effective against fogging thanks to the application of the NoFog™ lens treatment and the use of the RAM ventilation system, which promotes ideal airflow.
Finally, this model is designed for medium to large faces, while its triple-layer facial foam makes these goggles extremely comfortable.
If you are looking for high-performance goggles compatible with wearing glasses to hit the slopes on skis or snowboard in all conditions, the Sphere Otg Ls is made for you!



- Included microfiber pouch
Lens:
- Covered categories: from 1 to 3
- 100% UV protection
- Anti-fog treatment NoFog™
- Spherical lens
Frame:
- Triple-layer facial foam
- Integrated RAM ventilation system
- Extra-wide silicone grip strap
Dimensions:
- Lens width: 175 mm
- Lens height: 90 mm
| AMPLIFIER | The Amplifier Lens Technology works on the shape of the visible light transmission curve and optimises three specific wavelengths: blue, orange, and red. These light ranges are the most important for the human eye to enhance contrast and clarity. |
| LIGHT SENSITIVE | Light Sensitive SCOTT lenses utilise photochromic technology and automatically adapt to the intensity of sunlight to provide optimal vision regardless of lighting conditions on the slope. They react automatically to changes in brightness by darkening within seconds when light increases, or by lightening when sunlight decreases. |