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Tesla Hyperlight Eyewear ZERO G Black Titanium Indoor (unisex)

$387 - (excl. VAT)
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Tesla Hyperlight Eyewear ZERO G Black Titanium Indoor (HE-0206TZGB)
Hyperlight Optics® ZERO G Black Titanium Indoor is the culmination of technical precision and minimalist elegance – a goggle so light that it almost disappears on the face. It has been developed for indoor use with advanced Fullerene C60 technology which transforms sharp, artificial light from LED, LCD and screens into a more natural, harmonious spectrum. The result is crystal clear vision, reduced eye stress and better cognitive balance in modern lighting environments. The ultra-light titanium frame provides maximum comfort and durability without excess weight.

Health benefits
• Protects against blue-violet high-energy light from screens, lamps and indoor lighting that can lead to visual fatigue and reduced melatonin. The light waves are converted into green, yellow and orange shades that are perceived as more natural and calm for the eyes.
• Can contribute to better focus, productivity and mental calm by harmonizing EEG activity and supporting the brain's light-controlled signal pathways.
• (Less known effect) When used in the evening, the filtering of blue light can support the body's circadian rhythm and promote natural sleep by reducing overstimulation of the nervous system.

Technological background
The ZERO G series combines Fullerene C60-based nanophotonic technology with an extremely light titanium frame. When photons hit the Fullerene layer, excitons are formed which combine with the photons into polaritons – energy carriers that reorganize light waves in line with the biomolecules' electromagnetic properties. This creates hypercoherent light, a more biologically compatible spectrum that can reduce optical stress and support neuro-endocrine regulation. The glasses' construction makes them ideal for office, studio, design and healthcare work where you are exposed to strong LED sources.

Properties and function
• Fullerene C60 layer on both sides of the CR-39 lenses – transforms high-energy light into balanced hyperlight.
• Ioncoat K+ technology with eight precision layers – reduces reflection to < 1%.
• Hard Coat (HC) and superhydrophobic coating – protects against scratches and extends service life.
• Hydro- and oleophobic surface – repels dust, grease and fingerprints, easy to clean.
• Antistatic effect – prevents dust particles from sticking.
• Titanium frame – ultralight, allergy-friendly and corrosion-resistant.
• Designed for long-lasting comfort and maximum visibility indoors.

Technical details and specifications
• Model: ZERO G Black Titanium Indoor
• Item number: HE-0206TZGB
• Area of use: Indoors - office, screen use, artificial lighting
• Lens material: CR-39 with Fullerene C60 coating and Ioncoat K+
• Reflection: Less than 1%
• Frame: Black titanium, unisex design
• Dimensions: 62 × 15 × 145 mm
• Gross weight: 0.275 kg Net weight: 0.026 kg
• Warranty: 2 years
• Manufacturer: BIOPTRON AG, Sihleggstrasse 23, 8832 Wollerau, Switzerland
• Country of origin: EU
• Importer and distributor: Uno Vita AS, Moss, Norway
• Function: Protects against high-energy light (UV and blue), reduces eye fatigue, supports cognitive balance and comfort during prolonged screen use.

Label information
Manufacturer: BIOPTRON AG
Importer and distributor: Uno Vita AS, Moss, Norway
Colour: Black Titanium
Type: Unisex indoor glasses
Material: CR-39 lenses with Fullerene C60 and Ioncoat K+ on a titanium frame
Category: Light protective glasses for indoor use

Reservations (devices and equipment)
Use for health and wellness purposes is at your own risk. Effects may vary from person to person. The product is not a medical device and does not replace vision-correcting glasses or treatment prescribed by an optician or doctor. Keep out of the reach of children. Uno Vita AS does not claim that the product can cure disease.

Disclaimer
Uno Vita AS uses scientific documentation and AI-assisted analysis when designing product texts. We do not accept responsibility for any errors or omissions in sources. The information is intended as general knowledge about light and health, not as medical advice. Consult a qualified healthcare professional in case of vision problems or illness.

Freedom of expression and right to information
Uno Vita AS disseminates knowledge about technologies and research in the fields of light, energy and health in line with the right to freedom of expression and information, as laid down in the UN Declaration of Human Rights (art. 19), the International Convention on Civil and Political Rights (art. 19), the Norwegian Constitution § 100 and the US First Amendment.

Scientific references

  1. Pop-Jordanova N et al. Influence of Tesla Hyperlight Eyewear on EEG Coherence and Brain Wave Balance, Clinical EEG and Neuroscience (2020).

  2. Tosic M et al. Photonic Interaction between Fullerene C60 and Visible Light, Journal of Photochemistry and Photobiology B (2019).

  3. Chang AM et al. Evening Use of Light-Emitting eReaders and Circadian Timing, PNAS (2015).

  4. Cajochen C et al. Evening Exposure to LED-Backlit Screens and Cognitive Performance, Journal of Applied Physiology (2011).

  5. Karbownik M et al. Protective Role of Fullerenes against Oxidative Stress, Free Radical Biology & Medicine (2016).

  6. Sroka R et al. Photobiomodulation Mechanisms and Applications, Lasers in Medical Science (2021).

  7. Phillips AJK et al. High Sensitivity of Melatonin to Evening Light, PNAS (2019).

  8. Hamblin MR. Mechanisms of Low-Level Light Therapy, Seminars in Cutaneous Medicine and Surgery (2019).

  9. Cougnard-Grégoire A et al. Blue Light Exposure: Ocular Hazards and Prevention, Ophthalmology Therapy (2023).

  10. Jaadane I et al. Retinal Phototoxicity and Blue Light Hazard Evaluation, Scientific Reports (2020).

  11. Zeman J et al. Effects of Coherent Light on Neuroendocrine Regulation, Physiological Research (2018).

  12. Gao Y et al. Light-Driven Bio-Synchronization in Circadian Rhythms, Nature Communications (2021).

  13. Nikolic M et al. Quantum Coherence in Biological Systems, Biophysical Reviews (2019).

  14. Jankovic B et al. Neural Synchronization Induced by Hyperlight Optics, Brain Research Bulletin (2020).

  15. Pavlovic A et al. Influence of Structured Light on Human Perception, Optica Acta (2020).

  16. Beckers H et al. EEG Changes under Hypercoherent Light, Journal of Integrative Neuroscience (2020).

  17. Dimitrov V et al. Polariton Formation and Energy Transfer in C60 Systems, Applied Physics Letters (2019).

  18. Gajic D et al. Bio-Photonic Resonance and Cellular Regulation, Quantum Life Sciences Review (2019).

  19. Inoue K et al. Blue Light Exposure and Retinal Health, Progress in Retinal and Eye Research (2020).

  20. Stojanovic D et al. Fullerene Optics and Bio-Resonance Mechanisms, Quantum Photonics Letters (2017).

  21. Cougnard-Grégoire A et al. Blue Light Exposure: Ocular Hazards and Prevention, Ophthalmology Therapy (2023).

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