Tesla Hyperlight Eyewear TULUM SILVER for men
Tesla Hyperlight Eyewear TULUM SILVER for men has been reordered and will be shipped as soon as it is back in stock.
Hyperlight Optics® TULUM SILVER for men are glasses for indoor and outdoor use, developed to reduce stress from UV radiation and blue light. The model uses CR39 lenses with fullerene layers on both sides, measures 53x22x145 mm, is manufactured in Italy and comes with a 2-year warranty. For users who want visual comfort when working with screens, driving, bright daylight or changing light conditions, this model combines documentable material properties with a lightweight format.
SummaryHyperlight Optics® TULUM SILVER is an innovative choice for men who want advanced protection against harmful light both indoors and outdoors. Compared to regular sunglasses or standard blue light glasses, this model has been developed with special layers that will filter and harmonize parts of the light spectrum for a more pleasant viewing experience. The glasses combine a silver colored men's design with technological features that can support visual comfort, focus and circadian rhythm in everyday life.
Benefits and effects Hyperlight Optics® TULUM SILVER provides a number of benefits for eye health, cognitive function and general well-being:
- Reduces exposure to UV radiation and blue light from screens, LED lighting and sunlight
- Can provide better visual comfort by reducing glare and improving contrast and sharpness
- Suitable for working in front of a screen, driving, traveling and daily use indoors and outdoors
- Supports a more pleasant light experience which can be useful in case of stress, mental strain and long working days
- Can contribute to a better light balance in the evening hours, which is relevant for sleep, mood and circadian rhythm
- Protects the area around the eyes against parts of the light exposure associated with photoaging
Materials and technological properties Hyperlight Optics® TULUM SILVER is developed with advanced materials and technologies for performance and durability. The CR39 lenses have been chosen for optical clarity and light weight. Fullerene layers are placed on both sides of the lenses to support light filtering and harmonization. Hydro- and oleophobic coating makes the surface more resistant to grease, water and dirt, and simplifies cleaning in daily use. The Ioncoat K+ technology consists of eight layers of different materials and is stated to reduce light reflection to less than 1%, which is a concrete and quotable performance point. The Hard Coat layer also contributes to increased scratch resistance and a longer life for the anti-reflective coating.
Technical specifications Product name: Hyperlight Optics® TULUM SILVER for men, indoor/outdoor Item code: HE-TULS Dimensions: 53x22x145 mm Weight: Gross weight 0.275 kg; net weight 0.026 kg Material: CR39 lenses with fullerene technology Application: Suitable for both indoor and outdoor use Place of manufacture: Italy Warranty: 2 years
Disclaimer and disclaimer Hyperlight Optics® TULUM SILVER has been developed for general health and well-being. Use is at your own risk. Uno Vita AS does not claim medical effects, but refers to publicly available research in accordance with freedom of expression. The information provided is for informational purposes only and should not replace professional medical advice, diagnosis or treatment.
Scientific references Nakamura, T. (2019). Fullerene C60: Applications in Optics. Büchner, A. M. (2018). Impact of Blue Light on Eye Health. Smith, K. et al. (2020). Effects of Blue Light on Circadian Rhythm. Lin, Y. (2020). Blue Light and Its Effects on Cognitive Function. Park, J. et al. (2017). Antireflective Coatings and Eye Comfort. Johnson, M.E. (2019). Protective Layers in Modern Eyewear. Tanaka, T. et al. (2021). CR39 Lens Durability in Eyewear. Chen, R. (2020). Role of EEG Signal Modulation in Cognitive Function. Hatanaka, H. (2022). Ioncoat Technology in Eyewear. Kumar, P. (2019). Biomolecular Impact of Blue Light Exposure. Zhang, X. (2021). Hyperlight Technology in Pediatric Optics. Patel, S. et al. (2021). LED Light and Pediatric Eye Strain.


