IP Library Granted Patent US 10,088,693
Granted Patent B2
US 10,088,693 · App. 15/012,241 · Granted Oct 2, 2018

Ophthalmic lens, in particular for sunglasses

Inventors: Sébastien Martins (Apremont, FR); Didier Clerc (Eloise, FR); Franck Ledien (Echallon, FR)
Assignee: BNL EUROLENS
G02C7/10G02C7/028G02C7/104G02C7/12G02C2202/10
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Quick Facts
Patent No.
US 10,088,693
App. No.
15/012,241
Granted
Oct 2, 2018
Kind
B2
Abstract

An ophthalmic lens comprising a substrate is provided with the lens having a transmission spectrum such that the mean transmission value in the wavelength range between 380 nm inclusive and 780 nm inclusive is less than 60%, the mean transmission value at wavelengths less than or equal to 400 nm is less than 1%, the mean transmission value at wavelengths greater than 400 nm inclusive and less than 500 nm inclusive is less than 30% with a transmission minimum of less than 10% between 425 nm and 445 nm inclusive and the mean transmission value in the wavelength range between 400 nm and 500 nm has a first transmission maximum located between 405 nm and 425 nm.

Claims (23)

1. Ophthalmic lens comprising a substrate, said ophthalmic lens having a transmission spectrum such that:

a mean transmission value in the wavelength range between 380 nm inclusive and 780 nm inclusive is less than 60%;

a mean transmission value at wavelengths less than or equal to 400 nm is less than 1%;

a mean transmission value at wavelengths greater than 400 nm inclusive and less than 500 nm inclusive is less than 30%, wherein a lowest transmission value for a range of wavelengths greater than 410 nm inclusive and less than 500 nm inclusive occurs between 425 nm and 445 nm inclusive, and wherein the lowest transmission value has a transmittance of less than or equal to 1%; and

a mean transmission value in the wavelength range between 400 nm and 500 nm has a first transmission maximum located between 405 nm and 425 nm.

2. Ophthalmic lens according to claim 1 , wherein the first maximum located between 405 nm and 425 nm is at least six times higher than the lowest transmission value.

3. Ophthalmic lens according to claim 1 , wherein the percentage of transmission of the first transmission maximum is at least two times higher than the percentage of transmission of the lowest transmission value, the percentage of transmission of the first transmission maximum having a percentage of transmission being at least the value of transmission of the lowest transmission value increased by a percentage value of 2%.

4. Ophthalmic lens according to claim 1 , wherein the lowest transmission value is located at 435 nm with an accuracy of ±5 nm.

5. Ophthalmic lens according to claim 1 , wherein the lowest transmission value is an absorption peak with a degree of absorption of greater than 95%.

6. Ophthalmic lens according to claim 5 , wherein the absorption peak has a quarter-height width of 50 nm or less, and a half-height width of 30 nm or less, and a width at two thirds of the height of the absorption peak of 20 nm or less.

7. Ophthalmic lens according to claim 1 , wherein the transmission at the first transmission maximum is greater than 1%.

8. Ophthalmic lens according to claim 1 , wherein the transmission in the wavelength range between 440 nm and 500 nm increases.

9. Ophthalmic lens according to claim 1 , wherein the mean transmission between 380 and 780 nm inclusive is less than 35%.

10. Ophthalmic lens according to claim 1 , wherein the mean transmission between 400 nm and 450 nm is less than the mean transmission between 450 nm and 650 nm and the mean transmission between 450 nm and 650 nm is less than the mean transmission between 650 nm and 780 nm.

11. Ophthalmic lens according to claim 1 , wherein it comprises a polarizing assembly.

12. Ophthalmic lens according to claim 1 , wherein the substrate comprises a thermoplastic material, in particular polycarbonate.

13. Ophthalmic lens according to claim 1 , wherein the first transmission maximum is in percentage at least 2% higher than the percentage of transmission of the lowest transmission value.

14. Ophthalmic lens according to claim 1 , wherein the lowest transmission value for the range of wavelengths greater than 410 nm inclusive and less than 500 nm inclusive occurs between 433 nm and 437 nm inclusive.

15. A process for optimizing a color of an ophthalmic lens comprising:

increasing a transmission value of ophthalmic lens in the range between 405 nm and 425 nm;

decreasing the transmission value of the ophthalmic lens in the range between 430 nm and 440 nm, such that in a range of wavelengths greater than 410 nm inclusive and less than 500 nm inclusive, there exists a lowest transmission value between 430 nm and 440 nm inclusive, and wherein the lowest transmission value has a transmittance of less than or equal to 1%; and

increasing the transmission value of the ophthalmic lens in the range between 440 nm and 450 nm.

16. The process of claim 15 , wherein the lowest transmission value for the range of wavelengths greater than 410 nm inclusive and less than 500 nm inclusive occurs between 433 nm and 437 nm inclusive.

Assignments (2)
CHANGE OF ADDRESS Recorded May 11, 2022
From: BNL EUROLENS
To: BNL EUROLENS
Reel/Frame 061034/0716 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2016
From: MARTINS, SÉBASTIEN; CLERC, DIDIER; LEDIEN, FRANCK
To: BNL EUROLENS
Reel/Frame 037692/0120 →
Priority Claims (1)
FR 15 50796 · Feb 2, 2015 · national
Continuity (1)
Related Publication 20160223838A1 · Aug 4, 2016