IP Library Granted Patent US 10,234,697
Granted Patent B2
US 10,234,697 · App. 15/381,865 · Granted Mar 19, 2019

Composite high index layers for anti reflective stacks

Inventors: Hélène Maury (Paris, FR); Xingzhao Ding (Singapore, SG)
Assignee: ESSILOR INTERNATIONAL
G02C7/022C23C14/24C23C14/3407C23C14/46C23C16/513G02B1/115G02B5/283G02C7/02C03C2217/734
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Quick Facts
Patent No.
US 10,234,697
App. No.
15/381,865
Granted
Mar 19, 2019
Kind
B2
Abstract

An ophthalmic lens comprising an antireflective stack which strongly reduces reflection in the UV range and in the visible range. The antireflective stack comprises composite high index layers comprising zirconium oxide and another metal oxide.

Claims (16)

1. An ophthalmic lens, comprising:

a substrate with a main face, said main face being coated with an antireflective stack comprising at least one composite layer comprising zirconium oxide and another metal oxide;

wherein the mean reflection factor Ruv on said main face, between 280 nm and 380 nm is lower than 7%, for an angle of incidence comprised in the range 30°-45°.

2. The ophthalmic lens of claim 1 , wherein the composite layer comprises more than 30% of zirconium oxide in weight as compared to the total weight of the composite layer.

3. The ophthalmic lens of claim 1 , wherein the composite layer has a refractive index higher than 1.6.

4. The ophthalmic lens of claim 1 , wherein the mean light reflection factor Rv on said main face is lower than 1.25%, for an angle of incidence comprised in the range 0°-20°.

5. The ophthalmic lens of claim 1 , wherein the mean reflection factor between 280 nm and 380 nm Ruv on said main face is lower than 5%, for an angle of incidence comprised in the range 30°-45°.

6. The ophthalmic lens of claim 1 , wherein the mean reflection factor between 280 nm and 380 nm Ruv on said main face is lower than 3%, for an angle of incidence comprised in the range 30°-45°.

7. The ophthalmic lens of claim 1 , wherein the mean reflection factor between 280 nm and 380 nm Ruv on said main face is lower than 2%, for an angle of incidence comprised in the range 30°-45°.

8. The ophthalmic lens of claim 1 , wherein the reflected light reflected by said main face has a chroma of less than 12 and a hue comprised in the range 120°-150°, for an angle of incidence comprised in the range 0°-20°.

9. The ophthalmic lens of claim 1 , characterized in that the reflected light reflected by said main face has a chroma of less than 12 and a hue comprised in the range 30°-60°, for an angle of incidence comprised in the range 0°-20°.

10. A method to prepare an ophthalmic lens of claim 1 , wherein zirconium oxide and another metal oxide are simultaneously evaporated in a vacuum deposition step.

11. The ophthalmic lens of claim 1 , wherein the antireflective stack comprises at least two composite layers comprising zirconium oxide and another metal oxide.

12. The ophthalmic lens of claim 11 , wherein the composite layers comprise zirconium oxide and less than 23% of niobium oxide in weight as compared to the total weight of the composite layer.

13. The ophthalmic lens of claim 11 , wherein the composite layers comprise zirconium oxide and tantalum oxide.

14. The ophthalmic lens of claim 13 , wherein the composite layers comprise zirconium oxide and less than 70% of tantalum oxide in weight as compared to the total weight of the composite layer.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2018
From: ESSILOR INTERNATIONAL (COMPAGNIE GÉNÉRALE D'OPTIQUE)
To: ESSILOR INTERNATIONAL
Reel/Frame 045853/0275 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 23, 2017
From: MAURY, HÉLÈNE; DING, XINGZHAO
To: ESSILOR INTERNATIONAL (COMPAGNIE GÉNÉRALE D'OPTIQUE)
Reel/Frame 041361/0077 →
Priority Claims (1)
EP 15307049 · Dec 18, 2015 · regional
Continuity (1)
Related Publication 20170299887A1 · Oct 19, 2017