IP Library Granted Patent US 11,835,799
Granted Patent B2
US 11,835,799 · App. 18/319,133 · Granted Dec 5, 2023

Spectacle lens design, spectacle lens kit and method of manufacturing a spectacle lens

Inventor: Dieter Braunger (Essingen, DE)
Assignee: Carl Zeiss Vision International GmbH
G02C7/022G02C7/16G02C2202/24
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Quick Facts
Patent No.
US 11,835,799
App. No.
18/319,133
Granted
Dec 5, 2023
Kind
B2
Abstract

A spectacle lens design includes a first zone which has a focal power that provides a focused image on the fovea and a given a height and width. A second zone at least partly surrounds the first zone and contains at least one of the following: (i) focusing structures providing a focal power resulting in a myopic defocus or (ii) diffusing structures, such as scattering centers, leading to a diffusion of light passing the second zone. The first zone is curved to follow the converging line of sight of the wearer upon reading and contains a nasal segment, a temporal segment, and a central segment located between the nasal segment and the temporal segment The nasal segment and the temporal segment are shifted downwards with respect to the central segment.

Claims (39)

1. A spectacle lens kit comprising:

a spectacle lens; and

instructions including a given as-worn position of the spectacle lens, wherein the spectacle lens includes:

a first zone which, when the spectacle lens is positioned according to the as-worn position, has a focal power that provides a focused image on a fovea, the first zone having a given height and a given width; and

at least one second zone, the at least one second zone at least partly surrounding the first zone, wherein the second zone includes at least one of the following:

(i) a plurality of focusing structures providing a focal power resulting in a myopic defocus when the spectacle lens is positioned according to the as-worn position; or

(ii) diffusing structures leading to a diffusion of light passing the at least one second zone,

wherein the given width of the first zone is at least four times the given height of the first zone and matches a width of the spectacle lens, and the at least one second zone includes two sub-zones which are separated from each other by the first zone, and which in case (i) each contain focusing structures from the plurality of focusing structures providing a focal power resulting in a myopic defocus when the spectacle lens is positioned according to the as-worn position, and

wherein the widths of the two sub-zones of the at least one second zone match the width of the spectacle lens.

2. The spectacle lens kit as claimed in claim 1 , wherein the given height of the first zone is such that the given height covers a vertical viewing angle of 0.8 to 1.5 degree when the spectacle lens is positioned according to the as-worn position.

3. A data set stored on a non-transitory computer-readable medium and comprising at least one kind of the following kinds of data: (i) a numerical representation of the spectacle lens according to the spectacle lens kit as claimed in claim 1 , where the numerical representation of the spectacle lens is configured to be used for a manufacture of the spectacle lens and (ii) data containing computer-readable instructions for controlling one or more manufacturing machines in order to produce the spectacle lens according to the spectacle lens kit as claimed in claim 1 .

4. A computer-implemented method of designing a spectacle lens for the purpose of a use of the design for a manufacture of the spectacle lens, the spectacle lens to be positioned relative to an eye of a wearer according to a given as-worn position, the method comprising the steps of:

providing a numerical representation of the spectacle lens with a focal power that provides a focused image on a fovea when the spectacle lens is positioned according to the as-worn position, and

designing in the numerical representation of the spectacle lens a zone with at least one of:

(i) a plurality of focusing structures providing a focal power resulting in a myopic defocus when the spectacle lens is positioned according to the as-worn position; or

(ii) diffusing structures leading to a diffusion of light, where the zone is designed such as to form a second zone, the second zone defining a first zone by at least partly surrounding the first zone, the first zone having a focal power that provides a focused image on a fovea when the spectacle lens is positioned according to the as-worn position,

wherein the second zone is designed with such dimensions that a width of the first zone defined by the at least partly surrounding second zone is at least four times a height of the first zone and matches a width of the spectacle lens,

wherein the second zone is designed such that the second zone contains two sub-zones which are separated from each other by the first zone, and which in case (i) each contain focusing structures from the plurality of focusing structures providing a focal power resulting in a myopic defocus when the spectacle lens is positioned according to the as-worn position, and

wherein the second zone is designed such that the widths of the two sub-zones of the second zone match the width of the spectacle lens.

5. The method as claimed in claim 4 , wherein the second zone is designed such that the first zone defined by the at least partly surrounding second zone has such dimensions as to cover a vertical viewing angle of 0.8 to 1.5 degree when the designed spectacle lens is positioned according to the as-worn position.

6. A method of manufacturing a spectacle lens to be positioned relative to an eye of a wearer according to a given as-worn position, the method comprising the steps of:

providing the spectacle lens with a focal power that provides a focused image on a fovea when the spectacle lens is positioned according to an as-worn position; and

forming in a zone of the spectacle lens at least one of:

(i) a plurality of focusing structures providing a focal power resulting in a myopic defocus when the spectacle lens is positioned according to the as-worn position; or

(ii) diffusing structures leading to a diffusion of light, wherein the zone is formed as a second zone that defines a first zone by at least partly surrounding the first zone, the first zone having the focal power that provides a focused image on the fovea when the spectacle lens is positioned according to an as-worn position,

wherein the second zone is formed with such dimensions that a width of the first zone defined by the at least partly surrounding second zone is at least four times a height of the first zone and matches a width of the spectacle lens,

wherein the second zone is formed such that the second zone contains two sub-zones which are separated from each other by the first zone, and which in case (i) each contain focusing structures from the plurality of focusing structures providing a focal power resulting in a myopic defocus when the spectacle lens is positioned according to the as-worn position, and

wherein the second zone is formed such that the widths of the two sub-zones of the second zone match the width of the spectacle lens.

7. The method as claimed in claim 6 , wherein the second zone is formed such that the first zone defined by the at least partly surrounding second zone has such dimensions as to cover a vertical viewing angle of 0.8 to 1.5 degree when the spectacle lens is positioned according to the as-worn position.

8. A computer program for designing a spectacle lens for the purpose of a use of a design for a manufacture of the spectacle lens, the spectacle lens to be positioned relative to an eye of a wearer according to a given as-worn position, the computer program comprising instructions that, when executed on a computer, prompt the computer to:

provide a numerical representation of the spectacle lens with a focal power that provides a focused image on a fovea when the spectacle lens is positioned according to the as-worn position, and

design in the numerical representation of the spectacle lens a zone with at least one of:

(i) a plurality of focusing structures providing a focal power resulting in a myopic defocus when the spectacle lens is positioned according to the as-worn position; or

(ii) diffusing structures leading to a diffusion of light,

wherein the zone is designed such as to form a second zone that defines a first zone by at least partly surrounding the first zone, the first zone having the focal power that provides the focused image on the fovea when the spectacle lens is positioned according to the as-worn position,

wherein the second zone is designed with such dimensions that a width of the first zone defined by the at least partly surrounding second zone is at least four times a height of the first zone and matches a width of the spectacle lens,

wherein the second zone is designed such that the second zone contains two sub-zones which are separated from each other by the first zone, and which in case (i) each comprise a plurality of focusing structures providing a focal power resulting in a myopic defocus when the spectacle lens is positioned according to the as-worn position, and

wherein the computer program includes instructions that, when executed on a computer, prompt the computer to design the second zone such that the widths of the two sub-zones of the second zone match the width of the spectacle lens.

9. The computer program as claimed in claim 8 , wherein the computer program comprises instructions that, when executed on the computer, prompt the computer to design the second zone such that the first zone defined by the at least partly surrounding second zone has such dimensions as to cover a vertical viewing angle of 0.8 to 1.5 degree when the designed spectacle lens is positioned according to the as-worn position.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 31, 2023
From: CARL ZEISS VISION GMBH
To: CARL ZEISS VISION INTERNATIONAL GMBH
Reel/Frame 064760/0048 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2023
From: BRAUNGER, DIETER
To: CARL ZEISS VISION GMBH
Reel/Frame 064731/0603 →
Priority Claims (1)
EP 20211634 · Nov 26, 2020 · regional
Continuity (2)
Continuation PCTEP2021083245 · Nov 26, 2021
Related Publication 20230288727A1 · Sep 14, 2023