IP Library Granted Patent US 12,436,409
Granted Patent B2
US 12,436,409 · App. 18/189,587 · Granted Oct 7, 2025

Lens element

Inventors: Matthieu Guillot (Issy les Moulienaux, FR); Samy Hamlaoui (Paris, FR); Guillaume Giraudet (Orleans, FR); David Rio (Gometz-le-Châtel, FR); Konogan Baranton (Montry, FR)
Assignee: Essilor International
G02C7/022A61F2/1618
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Quick Facts
Patent No.
US 12,436,409
App. No.
18/189,587
Granted
Oct 7, 2025
Kind
B2
Abstract

A lens element intended to be worn in front of an eye of a wearer including at least a first and a second set of optical elements providing respectively a first and a second optical function. When worn by a wearer, an optical element of the first set is located at a greater distance from the center of rotation of the eye than an optical element of the second set. At least some optical elements of the second set are disposed with respect to the optical elements of the first set of the lens element to provide according to a respective first and a second gaze direction on different zones of the retina of the eye of the wearer distinct cumulative optical effects.

Claims (18)

1. A lens element intended to be worn in front of an eye of a wearer comprising:

at least a first and a second set of optical elements providing respectively a first and a second optical function,

wherein when worn by a wearer, an optical element of the first set is located at a greater distance from the center of rotation of the eye than an optical element of the second set,

wherein at least some optical elements of the second set are disposed with respect to the optical elements of the first set of the lens element to provide according to a respective first and a second gaze direction on different zones of a retina of the eye of the wearer distinct cumulative optical effects,

contribution to a focus shift of transmitted light on peripheral zones of the retina of the eye of the wearer according to a first gaze direction, the first gaze direction presents a gaze angle comprised between +/−10° corresponding to far vision, and

at least partly or completely counter focus shift a focus shift induced by the first optical function of the optical elements of the first set in a central zone of the retina of the wearer according to a second gaze direction different from the first gaze direction, the second gaze direction presents a gaze angle comprised between −40° and −20° corresponding to near vision, positions of the second set of optical elements being determined with respect to the center of rotation of the eye of a wearer.

2. The lens element according to claim 1 , wherein the lens element comprises a front refraction area and a rear refraction area cooperating to achieve a refractive power based on a prescription for said eye of the wearer.

3. The lens element according to claim 1 , wherein the optical elements of the first set are disposed on a front face of the lens element.

4. The lens element according to claim 1 , wherein the optical elements of the second set are disposed on a rear face of the lens element.

5. The lens element according to claim 1 , wherein the optical elements of either the first or second set, or both are integrated in an intermediate layer of the lens element.

6. The lens element according to claim 5 , wherein the optical elements of the first set are in recess with regard to a front refraction area.

7. The lens element according to claim 5 , wherein the optical elements of the second set are in recess with regard to a rear refraction area.

8. The lens element according to claim 2 , wherein the optical elements of the first set are in protrusion with regard to the front refraction area.

9. The lens element according to claim 2 , wherein the optical elements of the second set are in protrusion with regard to the rear refraction area.

10. The lens element according to claim 1 , wherein the optical elements of the second set are ring shaped or shaped according an arc of a circle.

11. The lens element according to claim 1 , wherein at least some of the optical elements of the second set are configured to change a gradient law of associated optical elements of the first set in function of lens eccentricity.

12. A method for conceiving a lens element intended to be worn by a wearer the lens element including at least a first and a second set of optical elements providing respectively a first and a second optical function, wherein when worn by a wearer, an optical element of the first set is located at a greater distance from the center of rotation of an eye than an optical element of the second set, wherein at least some optical elements of the second set are disposed with respect to the optical elements of the first set of the lens element to provide according to a respective first and a second gaze direction on different zones of a retina of the eye of the wearer distinct cumulative optical effects, contribution to a focus shift of transmitted light on peripheral zones of the retina of the eye of the wearer according to a first gaze direction, the first gaze direction presents a gaze angle comprised between +/−10° corresponding to far vision, and at least partly or completely counter focus shift a focus shift induced by the first optical function of the optical elements of the first set in a central zone of the retina of the wearer according to a second gaze direction different from the first gaze direction, the second gaze direction presents a gaze angle comprised between −40° and −20° corresponding to near vision, positions of the second set of optical elements being determined with respect to the center of rotation of the eye of a wearer, the method comprising,

determining the positions of the second set of optical elements with respect to the center of rotation of the eye of a wearer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 6, 2023
From: GUILLOT, MATTHIEU; HAMLAOUI, SAMY; GIRAUDET, GUILLAUME; RIO, DAVID; BARANTON, KONOGAN
To: ESSILOR INTERNATIONAL
Reel/Frame 063869/0295 →
Priority Claims (1)
EP 22315074 · Mar 25, 2022 · regional
Continuity (1)
Related Publication 20230301776A1 · Sep 28, 2023
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