LUPTON 2.0
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FrameMatte Crystal Light Brown
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LensPhD 2.0 Polarized Drivers Cat 2 to 3
Key Features
Lens
- Photochromic
- Polarized
- Spectral Control
Frame
DRIVERS® GOLD
Category 3 to 3 in mineral lens.
Category 2 to 3 in PhD™ 2.0 lens.
Very bright light conditions.
Ideal for Driving and Everyday use.
Available in polarized ultra-light mineral and PhD™ 2.0 lenses.
Absorbs 82% to 92% of the visible light, according to the lens.
Blocks 92% to 96% of the blue light, according to the lens.
This lens has all the benefits of our signature Drivers lens, along with a stylish gold-flash mirror. The amber-colored Drivers Gold mirrored lens provides an additional layer of protection, amplifying contrast, and definition to reveal vibrant colors in all environments.
PHD™ 2.0
THE PERFECT BALANCE OF VISUAL AND PHYSICAL PERFORMANCE.
As quality and perfection are key for us, we dedicated this remarkable lens to our Sport collection.
Built with NXT® technology and made from Trivex material, the PhD™ 2.0 lens is extremely light and thin, 75% lighter than glass, ultra-flexible, while being highly impact and temperature resistant.
In fact, to begin with, Trivex material was used by the US military for fighter jet canopies and helicopter windshields. It has required 12 years of development: 10 within the military and 2 years for adaptation to the optical sunglass lens market.
This lens also offers a high optical clarity and avoids any distortion.
The PhD™ 2.0 features hydro- and oleophobic front-side coatings, which help repel water, fingerprints and debris.
The highly durable backside anti-fog treatment enables perfect vision and performance whatever the activity.
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- Free Shipping for any order over 150€
- Easy Returns for 30 days
- 2-year warranty on all products
ECO-NYLON
MADE IN ITALY
Grilamid BTR XE 4010, the polymer’s scientific name, is a sustainable substitute for TR90. It is extracted from Castor Plant but offers the same characteristics as TR90 Nylon (durable, flexible, lightweight, can bend, less likely to break) without requiring the use of petrol.
The castor oil seeds contain a large share of oil which can be modified to create primary raw materials for various bio-polyamides.
With the partially bio-based material Grilamid BTR, an amorphous
transparent bio-polyamide, the reduction in CO2 emissions
compared to traditional transparent polymers, such as PMMA or PC, is more than 40%.