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Optical

20 Jan 2026

Discover multi award-winning B.I.G. EXACT® Sensitive lenses , now available for every age and lifestyle.

Rodenstock UK Stand: D40
  • Discover multi award-winning B.I.G. EXACT® Sensitive lenses , now available for every age and lifestyle.
  • Discover multi award-winning B.I.G. EXACT® Sensitive lenses , now available for every age and lifestyle.
  • Discover multi award-winning B.I.G. EXACT® Sensitive lenses , now available for every age and lifestyle.
Discover multi award-winning B.I.G. EXACT® Sensitive lenses , now available for every age and lifestyle. Discover multi award-winning B.I.G. EXACT® Sensitive lenses , now available for every age and lifestyle. Discover multi award-winning B.I.G. EXACT® Sensitive lenses , now available for every age and lifestyle.

Rodenstock recognises that every person and every eye is unique and different which is why at Rodenstock each individual lens is created from thousands of datapoints and multiple parameters to produce customised, biometric lenses for each individual eye. The researchers at Rodenstock went even further**** to address uniqueness, going beyond the eye to the brain to address individual visual sensitivity. The result is the creation of lenses that integrate advanced algorithms based on each patient’s exact biometric eye data to match their unique visual perception: B.I.G. EXACT® Sensitive - the first and only lens to combine the eyes’ precise biometry with how the brain perceives visual information.

Made like no other

Most lenses on the market are still based on a standard eye model, but every patient’s vision is unique and so is their entire visual system. B.I.G. EXACT® Sensitive are the first and only lenses that integrate advanced algorithms based on the spectacle wearer’s exact biometric eye data to match their unique visual perception. Each lens is engineered from more than 7,000 biometric data points and over 80 parameters, captured with Rodenstock’s groundbreaking DNEye® Technology. The result is an exact biometric model, the precise foundation for every B.I.G. EXACT® Sensitive lens. 

Unique as each wearer

Rodenstock now provides these innovative lenses across the full portfolio – for every age, every life stage and every lifestyle. B.I.G. EXACT® Sensitive are now available as single vision (Mono) lenses, offering sharp, natural vision and as single vision boost (Mono+) lenses which have an additional near vision reading support for digital lifestyles. They are also available as near vision (Ergo) lenses which are an ideal solution for the digital environment for closer distance indoor tasks. They are also offered as progressive lenses, providing seamless transitions between distance, near, and intermediate vision, with wide perceived field of view. These lenses ensure quick adaptation and reduced glare for improved vision at dusk and during the night. Each are available in three premium lens design variants, Cosmolit/Progressiv, Multigressiv® and Impression®With B.I.G. EXACT® Sensitive Rodenstock elevates biometric individualisation to the next level. The findings of an internal comparison confirmed that the B.I.G. EXACT® Sensitive lenses offer improved visual performance: B.I.G. EXACT® Sensitive lenses provide up to 42%* more aberration-free zones.

Interested in talking to a member of the Rodenstock Team?

Please book an appointment by emailing customer.services@rodenstock.co.uk. Or call +44 (1474) 325555

Visit Rodenstock @ Stand D40, 100% Optical, ExCel London, 29th February – 2nd March 2026

* Applies to the high sensitivity profile. Based on an internal comparison of the design of B.I.G. EXACT® Sensitive lenses with B.I.G. EXACT® lenses with a similar prescription.

** Results of an external wearer trial (n=47) conducted with the University of Applied Science in Munich, June 2024

*** Forkel, J. et al. Personalized Progressive Addition Lenses: Correlation between Performance and Design. Optom. Vis. Sci. 94, 208 (2017).

**** Esser, G. et al. Generalization of the Minkwitz theorem to nonumbilical lines of symmetrical

surfaces. JOSA A 34, 441–448 (2017).

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