US 12,111,520 B2
Method and system for determining a lens of customized color
William Trottier-Lapointe, Charenton-le-Pont (FR); Jinhhao Ng, Singapore (SG); Jean-Philippe Dumont, Charenton-le-Pont (FR); Haifeng Shan, Dallas, TX (US); Philip Chang, Charenton-le-Pont (FR); and Charlène Pousse, Charenton-le-Pont (FR)
Assigned to Essilor International, Charenton-le-pont (FR)
Appl. No. 17/262,874
Filed by ESSILOR INTERNATIONAL, Charenton-le-Pont (FR)
PCT Filed Jul. 30, 2019, PCT No. PCT/EP2019/070453
§ 371(c)(1), (2) Date Jan. 25, 2021,
PCT Pub. No. WO2020/025595, PCT Pub. Date Feb. 6, 2020.
Claims priority of application No. 18306033 (EP), filed on Jul. 31, 2018.
Prior Publication US 2021/0165248 A1, Jun. 3, 2021
Int. Cl. G02C 7/10 (2006.01)
CPC G02C 7/107 (2013.01) [G02C 7/104 (2013.01); G02C 7/108 (2013.01)] 18 Claims
OG exemplary drawing
 
1. A method for determining a lens of customized color comprising the steps of:
determining a target colorimetric data set;
providing access to a database comprising data representing colors, said data comprising colorimetric data corresponding to a plurality of multilayer stacks of determined layers composition and thicknesses and said data comprising reflection, transmission, absorption and/or scattering coefficients of a lens substrate and, respectively, of a plurality of dyes, over a range of wavelengths;
using a plurality of simulation modules to calculate, based on said data from the database, a plurality of simulated colorimetric data, wherein the plurality of simulation modules comprises a first simulation module adapted to calculate a first plurality of simulated colorimetric data for a multi-layer stack on said lens substrate as a function of determined layers composition and thicknesses and wherein the plurality of simulation modules comprises at least another simulation module adapted to calculate another plurality of simulated colorimetric data comprising a plurality of simulated reflection, transmission or absorption spectra of the lens substrate combined with a mixture of dyes as a function of varying determined dye(s) combination, composition and amount;
color matching the plurality of simulated colorimetric data with the target colorimetric data set so as to determine a plurality of combinations, said plurality of combinations comprising at least one combination of said lens substrate with a determined mixture of dyes and at least another combination of said lens substrate with a determined multilayer stack;
on a same display device, displaying rendered colors in reflection and transmission for each of said plurality of combination so as to enable their visual comparison in rendered colors.