IP Library Granted Patent US 12693549
Granted Patent B2
US 12693549 · App. 18/829,329 · Granted Jul 28, 2026

Multifocal ophthalmic lenses and related methods

Inventors: Martin Webber (Southampton, GB); Percy Lazon de la Jara (San Ramon, CA)
Assignee: COOPERVISION INTERNATIONAL LIMITED
G02C7/06G02C7/044G02C7/066G02C2202/24
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Quick Facts
Patent No.
US 12693549
App. No.
18/829,329
Granted
Jul 28, 2026
Kind
B2
Abstract

A multifocal ophthalmic lens wherein a first surface of the lens is shaped to form a surface power map and a second surface of the lens is shaped to form a second surface power map. The first surface power map and the second surface power map together form a lens power map. The first surface power map, the second surface power map, or the lens power map comprises a spiral. The spiral has a variation across at least a portion of the lens. Methods of making and using such lenses are also provided.

Claims (33)

1 . A multifocal ophthalmic lens, wherein:

a first surface of the lens is shaped to form a first surface power map;

a second surface of the lens is shaped to form a second surface power map;

the first and second surface power maps together form a lens power map;

the first surface power map, the second surface power map, or the lens power map comprises a spiral, the spiral having a variation across at least a portion of the lens, wherein the spiral has a first periodic component with a period of greater than 100 microns in a radial direction extending outwards from the centre of the portion, and a second periodic component, in an azimuthal direction about the centre of the portion, and wherein the first and second periodic components vary smoothly as a sinusoid, a rounded square wave, or a square wave.

2 . The multifocal ophthalmic lens according to claim 1 , wherein the second periodic component has a period of greater than 6 degrees.

3 . The multifocal ophthalmic lens according to claim 1 , wherein the variation of the spiral comprises an offset in power, the offset changing according to a radial distance from the centre of the portion.

4 . The multifocal ophthalmic lens according to claim 1 , wherein a peak power of one or more arms of the spiral varies according to one or both of: a radial distance from the centre of the portion and an azimuthal position about the centre of the portion.

5 . The multifocal ophthalmic lens according to claim 1 , wherein:

a peak power of each arm of the spiral does not vary with radial distance from the centre of the portion; and

the peak power of at least one arm of the spiral differs from that of the other arms.

6 . The multifocal ophthalmic lens according to claim 1 , wherein each of the first surface power map and the second surface power map vary smoothly across the portion.

7 . The multifocal ophthalmic lens according to claim 1 , wherein:

the portion of the lens comprises a central region and an outer region, the outer region surrounding the central region;

the lens power map within the outer region comprises the spiral; and

the lens power map does not vary periodically within the central region.

8 . The multifocal ophthalmic lens according to claim 7 , wherein the central region has a diameter of less than 50% of that of the portion.

9 . The multifocal ophthalmic lens according to claim 7 , wherein:

the lens comprises a transition region, the transition region surrounding the central region and the outer region surrounding the transition region; and

the lens power map varies such that the transition region provides a smooth transition between the central zone and the outer zone.

10 . The multifocal ophthalmic lens according to claim 1 , wherein a twist rate of the spiral varies according to a radial distance from the centre of the portion.

11 . The multifocal ophthalmic lens according to claim 1 , wherein a width of one or more arms of the spiral differs from a corresponding width of the other arms of the spiral.

12 . The multifocal ophthalmic lens according to claim 11 , wherein, at a pre-determined radial distance from the centre of the portion, the spiral changes its direction of rotation.

13 . The multifocal ophthalmic lens according to claim 1 , wherein the ophthalmic lens is a contact lens, a spectacle lens, or an intraocular lens.

14 . A method of manufacturing a multifocal ophthalmic lens, the method comprising:

operating a lathe to shape a first surface of one of: a lens, a mould for a lens, or an insert for manufacturing a mould for a lens to form a first surface power map;

operating a lathe to shape a second surface of the lens, mould, or insert to form a second surface power map;

wherein:

the combination of the first and second surface power maps forms a lens power map;

the first surface power map, the second surface power map, or the lens power map comprises a spiral, the spiral having a variation across at least a portion of the lens, mould or insert, wherein the spiral has a first periodic component with a period of greater than 100 microns in a radial direction extending outwards from the centre of the portion, and a second periodic component, in an azimuthal direction about the centre of the portion, and wherein the first and second periodic components vary smoothly as a sinusoid, a rounded square wave, or a square wave.

15 . The multifocal ophthalmic lens according to claim 1 , in which the ophthalmic lens is a centre distance contact lens, or a centre near contact lens.

16 . The multifocal ophthalmic lens according to claim 7 , wherein the central region has an optical power corresponding to a distance vision correction.

17 . A multifocal ophthalmic lens according to claim 7 , wherein the central region has an optical power corresponding to a near vision correction.