IP Library Granted Patent US 12,007,629
Granted Patent B2
US 12,007,629 · App. 17/819,272 · Granted Jun 11, 2024

UV and high energy visible absorbing ophthalmic lenses

Inventors: Steven Harold Nahm (Ramsey, MN); Richard Blacker (Ramsey, MN); David Kissel (Ramsey, MN); David Olund (Ramsey, MN)
Assignee: HOYA Optical Labs of America, Inc.
G02C7/108B29C35/0805B29D11/00009B32B7/12B32B27/08B32B27/18B32B27/365B32B27/40G02C7/10B29C2035/0827B29D11/00634B29D11/0073B29K2075/00B29K2105/0002B29K2105/0005B32B2250/02B32B2250/03B32B2250/24B32B2307/21B32B2307/40B32B2307/4026B32B2307/412B32B2307/42B32B2307/71B32B2307/73B32B2307/732B32B2551/00G02C2202/16
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Quick Facts
Patent No.
US 12,007,629
App. No.
17/819,272
Granted
Jun 11, 2024
Kind
B2
Abstract

An ophthalmic lens operable to protect the eye from harmful ultraviolet and high energy visible wavelengths of light and methods for producing the same.

Claims (35)

1. A laminate of an eye-glass lens comprising:

a light absorbing layer containing one or more light absorbers is disposed between a first optical film and a second optical film;

wherein a thickness of the laminate and a weight percent of the one or more light absorbers are configured to follow a non-linear relationship to achieve a transmittance of not more than 50 percent for wavelengths in a range of 280 to 443 nm.

2. The laminate of claim 1 , wherein the light absorbing layer containing one or more light absorbers comprises a polyurethane based adhesive layer.

3. The laminate of claim 2 , wherein the polyurethane based adhesive layer comprises an isocyanate prepolymer, a polyol and a crosslinker.

4. The laminate of claim 1 , wherein the first optical film and the second optical film comprise a polycarbonate optical film.

5. The laminate of claim 1 , wherein

1) the thickness is greater than 1 mm and the weight percent of the light absorbing compounds up to 1; or

2) the thickness is in a range of 0.1 mm to 1 mm and the weight percentage of the light absorbing compounds up to 3; or,

3) the thickness is in a range of 0.01 mm and 0.1 mm and the weight percentage of the light absorbing compounds up to 10.

6. The laminate of claim 1 , wherein the non-linear relationship between the thickness of the laminate and the weight percent of the one or more light absorbers comprises the weight percent of up to 10 of the one or more light absorbers and the thickness in a range of 0.01 mm and 0.1 mm of the laminate.

7. The laminate of claim 1 , wherein the non-linear relationship between the thickness of the laminate and the weight percent of the one or more light absorbers comprises the weight percent of up to 3 of the one or more light absorbers and the thickness in a range of 0.1 mm and 1 mm of the laminate.

8. The laminate of claim 1 , wherein the non-linear relationship between the thickness of the laminate and the weight percent of the one or more light absorbers comprises the weight percent of up to 1 of the one or more light absorbers and the thickness of greater than 1 mm of the laminate.

9. The laminate of claim 1 , wherein the non-linear relationship between the thickness of the laminate and the weight percent of the one or more light absorbers comprises the weight percent in a range of 6-8 of a light absorber and the thickness of 0.041 mm of the laminate to achieve the transmittance of not more than 50 percent for wavelengths in a range of 395 to 412 nm.

10. The laminate of claim 1 , wherein the non-linear relationship between the thickness of the laminate and the weight percent of the one or more light absorbers comprises the weight percent of 2 for each of said one or more light absorbers and the thickness of 0.041 mm of the laminate to achieve the transmittance of not more than 50 percent for wavelengths in a range of 395 to 414 nm.

11. The laminate of claim 1 , the light absorbing layer is an adhesive layer of the laminate.

12. An eyeglass lens comprising:

a laminate having a polyurethane based adhesive layer containing one or more light absorbers which is disposed between a first optical film and a second optical film to form a three-layer structure of the laminate;

wherein the three-layer structure of the laminate is configured to achieve a transmittance of not more than 50 percent for wavelengths in a range of 280 to 443 nm, when a non-linear relationship exists between a thickness of the laminate and a weight percent of the one or more light absorbers.

13. The eyeglass lens of claim 11 , wherein the eyeglass lens is configured to form through an injection molding of a molten thermoplastic on to the laminate.

14. The eyeglass lens of claim 11 , wherein the polyurethane based adhesive layer containing one or more light absorbers is a monolithic film.

15. The eyeglass lens of claim 11 , wherein

1) the thickness is greater than 1 mm and the weight percent of the light absorbing compounds up to 1; or

2) the thickness is in a range of 0.1 mm to 1 mm and the weight percentage of the light absorbing compounds up to 3; or,

3) the thickness is in a range of 0.01 mm and 0.1 mm and the weight percentage of the light absorbing compounds up to 10.

16. An eyeglass lens comprising:

a light absorbing layer having a non-linear relationship between an optical path length and a weight percentage of light absorbing compounds in the light absorbing layer; the light absorbing layer having a transmittance of not more than 50 percent for wavelengths in a range of 280 to 443 nm;

wherein:

1) the optical path length is greater than 1 mm and the weight percent of the light absorbing compounds up to 1; or

2) the optical path length is in a range of 0.1 mm to 1 mm and the weight percentage of the light absorbing compounds up to 3; or,

3) the optical path length is in a range of 0.01 mm and 0.1 mm and the weight percentage of the light absorbing compounds up to 10.

17. The eyeglass lens of claim 16 , wherein the non-linear relationship between the optical path length and the weight percent of the light absorbers comprises the weight percent in a range of 6-8 of the light absorbers and the optical path length of 0.041 mm to achieve the transmittance of not more than 50 percent for wavelengths in a range of 395 to 412 nm.

18. The eyeglass lens of claim 16 , wherein the non-linear relationship between the optical path length and the weight percent of the light absorbers comprises the weight percent of 2 for each of a light absorber and the optical path length of 0.041 mm to achieve the transmittance of not more than 50 percent for wavelengths in a range of 395 to 414 nm.

19. The eyeglass lens of claim 16 , wherein the light absorbing layer is a component of a composite ophthalmic lens.

20. The eyeglass lens of claim 16 , wherein the light absorbing layer comprises a curable composition.