Tesla Hyperlight Eyewear, MILANO GRAY for Women (Outdoor)
Tesla Hyperlight Eyewear, MILANO GRAY for Women (Outdoor) has been reordered and will be shipped as soon as it is back in stock.
Tesla Hyperlight Eyewear MILANO GRAY for Women are outdoor glasses developed for women who want targeted protection against UV radiation, blue light and glare in a light frame. The model has CR39 lenses, fullerene layer, hydro- and oleophobic coating, dimensions 54 x 15 x 145 mm, net weight of 0.023 kg, production in Italy and 2-year warranty. Compared to regular sunglasses, this model has been developed to combine light filtering, visual comfort and precise optical clarity for extended stays outdoors.
- Filters UV radiation and blue light for better eye protection when used outdoors
- CR39 lenses with anti-reflection contribute to reduced glare and better contrast sensitivity
- Fullerene-based lens layer is developed to harmonize light and support visual comfort
- The hydro- and oleophobic surface makes the lenses more resistant to dirt, moisture and scratches
- Lightweight construction and dimensions of 54 x 15 x 145 mm provide a comfortable fit for daily use
- Made in Italy and delivered with a 2-year warranty
The glasses are made for situations where the eyes are exposed to strong daylight, reflections from the road, water or snow, and prolonged light exposure during driving, walking, outdoor dining or other outdoor activities. The gray frame gives a neutral and professional look, while the anti-reflective coating contributes to a calmer visual impression in changing light conditions. For many, this is experienced as useful for eye fatigue, visual discomfort and the need for more stable focus throughout the day.
Fullerene C60 is a central material in this model and is mentioned in optical research for its light-related properties. In this context, the fullerene layer is used as part of a lens construction that will filter and harmonize parts of the light spectrum. In combination with CR39 material, which is known for its low weight and good optical quality, this provides a technical structure that differs from simpler fashion or standard sunglasses without a corresponding layer structure.
The product is intended for outdoor use and is particularly suitable for women who want a combination of eye health, visual sharpness and modern design. It can be a relevant choice for people who spend a lot of time outside, use digital screens before or after spending time in daylight, or want glasses that support visual comfort without appearing heavy or bulky. In addition, the model is described as an alternative for those concerned with sleep and stress, because reduced exposure to certain wavelengths can be included in good lighting routines throughout the day.
The materials have been chosen with durability and daily use in mind. Hydro- and oleophobic coating makes the lenses easier to keep clean, and scratch-resistant properties contribute to a longer life in normal use. The gross weight is 0.272 kg including packaging, while the glasses themselves weigh 0.023 kg. Item code is HE-MILG. The model is not intended for indoor use, which makes it clearly positioned as a specialized outdoor goggle.
Disclaimer and Disclaimer: Hyperlight Eyewear is designed for general health and well-being and is not a substitute for professional medical advice. Use is at your own risk. Uno Vita AS does not make medical claims about the products, but refers to publicly available research in accordance with the right to freedom of expression. The information provided is intended for informational purposes only and not for diagnosis or treatment.
Scientific references: Büchner, A. M. (2018). "Impact of Blue Light on Eye Health." Journal of Ophthalmology. Nakamura, T. (2019). "Fullerene C60: Applications in Optics." Nanotechnology Today. Smith, K. et al. (2020). "Effects of Blue Light on Circadian Rhythm." Journal of Sleep Research. Park, J. et al. (2017). "Antireflective Coatings and Eye Comfort." Applied Optics. Lin, Y. (2020). "Blue Light and Its Effects on Cognitive Function." Neuroscience Letters. Patel, S. et al. (2021). "LED Light and Pediatric Eye Strain." American Journal of Pediatrics. Johnson, M.E. (2019). "Protective Layers in Modern Eyewear." Ocular Science Review. Tanaka, T. et al. (2021). "CR39 Lens Durability in Eyewear." Journal of Materials Science. Chen, R. (2020). "Role of EEG Signal Modulation in Cognitive Function." Neuroscience Letters. Hatanaka, H. (2022). "Ioncoat Technology in Eyewear." Optical Engineering. Kumar, P. (2019). "Biomolecular Impact of Blue Light Exposure." Cellular Biology. Zhang, X. (2021). "Hyperlight Technology in Pediatric Optics." Journal of Vision Research.


