A new milestone in the heritage of performance, Radar® EV takes breakthroughs of a revolutionary design even further with a taller lens that extends the upper field of view. From the comfort and protection of the O Matter® frame to the grip of its Unobtanium® components, this premium design builds on the legacy of Radar innovation and style.
FEATURES
• Contouring at the bottom makes Radar EV Path a good choice if performance-sized lenses sometimes touch your cheeks. The lens shape also enhances performance by extending the upper field of view.
• Engineered for maximized airflow for optimal ventilation to keep you cool
• Unobtanium® earsocks and nosepads keep glasses in place, increasing grip despite perspiration
• Interchangeable Lenses let you change lenses in seconds to optimize vision in any sport environment (substitute lenses are not included in the package)
• O-Matter™ stress-resistant frame material is both lightweight and durable for all-day comfort and protection
It is possible to mount prescription lenses on this model.
Integrated Technologies:
High Definition Optics® (HDO®) is a collection of patented technologies that allow Oakley eyewear to meet or exceed the testing standards of the American National Standards Institute for optical clarity, visual fidelity, and impact resistance.
Details:
Base Curve: Toric
Frame Color: Polished White
Lens Color: Fire Iridium
Lens Specifications
Light Transmission: 16%
Light Conditions: Bright
Light Contrast : Increased
Base Lens Color: Orange Frame
Specifications
Lens Width: 138 mm
Bridge Width: 0 mm
Lens Height: 50 mm
Temple Arm Length: 128 mm
What’s Included
Radar EV Path
Sport Soft Vault Case – Black
Microbag Large –White
Nosepad – Black
High Definition Optics HDO
Oakley High Definition Optics (HDO) lenses optimize safety and performance to meet the uncompromising demands of professional athletes who settle for nothing less than the clearest, sharpest, most accurate vision. It offers truer, more accurate vision versus conventional lenses that magnify images and make objects appear shifted from their true position.