IP Library Granted Patent US 6,929,366
Granted Patent B2
US 6,929,366 · App. 10/640,114 · Granted Aug 16, 2005

Multifocal contact lens

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 6,929,366
App. No.
10/640,114
Granted
Aug 16, 2005
Kind
B2
Abstract

A contact lens has front and rear surfaces, the rear surface having a base curve fits the eye of a wearer. The front surface has a central circular zone which is substantially spherical and which, together with the base curve, generates a central zone power selected so as to correct near vision of the wearer. The front surface also has an annular outer zone which is substantially spherical and which, together with the base curve, generates an outer zone power which is less than the central zone power. The front surface further includes an annular region, intermediate the central and outer zones, having one or more contiguous intermediate annular zones, each of which is substantially spherical. The one or more intermediate annular zones generate respective one or more intermediate zone refractive powers in a monotonic progression of decreasing refractive power from the central zone to the annular outer zone.

Claims (70)

1. A contact lens, comprising a transparent material having front and rear surfaces,

wherein the rear surface comprises a base curve which is adapted to fit an eye of a wearer of the lens, and

wherein the front surface comprises:

a central circular zone which is spherically curved and which, together with the base curve, is configured to generate a central zone refractive power selected so as to correct near vision of the wearer;

an annular outer zone which is spherically curved and which, together with the base curve, is configured to generate an outer zone refractive power which is less than the central zone power; and

an annular region, intermediate the central zone and the outer zone, comprising one or more contiguous intermediate annular zones, each of which is spherically curved, the one or more intermediate annular zones being configured, together with the base curve, to generate respective one or more intermediate zone refractive powers defining a monotonic progression of decreasing refractive power from the central zone to the annular outer zone,

wherein the outer zone refractive power is between approximately 1 diopter and approximately 2 diopters leass than the central zone refractive power and

wherein the one or more intermediate annular zones comprise two or more intermediate annular zones having differing powers, and wherein the two or more intermediate zones comprise approximately equal widths.

2. The contact lens according to claim 1 , wherein edges between the zones comprise substantially sharp radius transitions.

3. The contact lens according to claim 1 , wherein an acuity of the transitions is produced by applying a molding process to the lens.

4. The contact lens according to claim 1 , wherein the monotonic progression comprises a smooth progression defined by an algebraic function giving values of the two or more intermediate zone refractive powers in terms of the central zone refractive power and the outer zone refractive power.

5. The contact lens according to claim 1 , wherein the monotonic progression comprises a substantially linear progression.

6. The contact lens according to claim 1 ,

wherein the central circular zone comprises a diameter of approximately 2.5 mm.

7. The contact lens according to claim 1 , wherein the equal widths comprise a value of approximately 0.5 mm.

8. The contact lens according to claim 1 , wherein the outer zone refractive power is approximately 1.25 diopters less than the central zone refractive power.

9. The contact lens according to claim 1 ,

wherein the annular outer zone comprises an inner diameter of approximately 4.5 mm and an outer diameter of approximately 9 mm.

10. The contact lens according to claim 1 , wherein the base curve comprises a spherical curve having a single radius of curvature.

11. The contact lens according to claim 1 , wherein the base curve comprises a toric curve having two different radii of curvature.

12. A contact lens, comprising a transparent material having front and rear surfaces,

wherein the rear surface comprises a base curve which is adapted to fit an eye of a wearer of the lens, and

wherein the front surface comprises:

a central circular zone which is spherically curved and which, together with the base curve, is configured to generate a central zone refractive power selected so as to correct near vision of the wearer;

an annular outer zone which is spherically curved and which, together with the base curve, is configured to generate an outer zone refractive power which is less than the central zone power; and

an annular region, intermediate the central zone and the outer zone, comprising one or more contiguous intermediate annular zones, each of which is spherically curved, the one or more intermediate annular zones being configured, together with the base curve, to generate respective one or more intermediate zone refractive powers defining a monotonic progression of decreasing refractive power from the central zone to the annular outer zone,

wherein the outer zone refractive power is between approximately 1 diopter and approximately 2 diopters less than the central zone refractive power, and

wherein the monotonic progression comprises a progression chosen from a geometric progression and a logarithmic progression.

13. A method for forming a contact lens, comprising:

forming on a transparent material a rear surfaces comprising a base curve which is adapted to fit an eye of a wearer of the lens; and

forming on the transparent material a front surface comprising:

a central circular zone which is spherically curved and which, together with the base curve, generates a central zone refractive power selected so as to correct near vision of the wearer;

an annular outer zone which is spherically curved and which, together with the base curve, generates an outer zone refractive power which is less than the central zone power, and

an annular region, intermediate the central zone and the outer zone, comprising one or more contiguous intermediate annular zones, each of which is spherically curved, the one or more intermediate annular zones, together with the base curve, generating respective one or more intermediate zone refractive powers defining a monotonic progression of decreasing refractive power from the central zone to the annular outer zone,

wherein the outer zone refractive power is between approximately 1 diopter and approximately 2 diopters less than the central zone refractive power, and

wherein the one or more intermediate annular zones comprise two or more intermediate annular zones having differing powers, and wherein the two or more intermediate zones comprise approximately equal widths.

14. The method according to claim 13 , wherein forming the front surface comprises forming edges between the zones having substantially sharp radius transitions.

15. The method according to claim 14 , wherein an acuity of the transitions is produced by applying a molding process to the lens.

16. The method according to claim 13 , wherein the monotonic progression comprises a smooth progression defined by an algebraic function giving values of the two or more intermediate zone refractive powers in terms of the central zone refractive power and the outer zone refractive power.

17. The method according to claim 13 , wherein the monotonic progression comprises a substantially linear progression.

18. The method according to claim 13

wherein the central circular zone comprises a diameter of approximately 2.5 mm.

19. The method according to claim 13 , wherein the equal widths comprise a value of approximately 0.5 mm.

20. The method according to claim 13 , wherein the outer zone refractive power is approximately 1.25 diopters less than the central zone refractive power.

21. The method according to claim 13

wherein the annular outer zone comprises an inner diameter of approximately 4.5 mm and an outer diameter of approximately 9 mm.

22. The method according to claim 13 , wherein the base curve comprises a spherical curve having a single radius of curvature.

23. The method according to claim 13 , wherein the base curve comprises a toric curve having two different radii of curvature.

24. A method for forming a contact lens, comprising:

forming on a transparent material a rear surface comprising a base curve which is adapted to fit an eye of a wearer of the lens; and

forming on the transparent material a front surface comprising:

a central circular zone which is spherically curved and which, together with the base curve, generates a central zone refractive power selected so as to correct near vision of the wearer,

an annular outer zone which is spherically curved and which, together with the base curve, generates an outer zone refractive power which is less than the central zone power, and

an annular region, intermediate the central zone and the outer zone, comprising one or more contiguous intermediate annular zones, each of which is spherically curved, the one or more intermediate annular zones, together with the base curve, generating respective one or more intermediate zone refractive powers defining a monotonic progression of decreasing refractive power from the central zone to the annular outer zone,

wherein the outer zone refractive power is between approximately 1 diopter and approximately 2 diopters less than the central zone refractive power, and

wherein the monotonic progression comprises a progression chosen from a geometric progression and a logarithmic progression.

25. A contact lens, comprising a transparent material having front and rear surfaces,

wherein the rear surface comprises a base curve which is adapted to fit an eye of a wearer of the lens, and

wherein the front surface comprises:

a central circular zone which is spherically curved and which, together with the base curve, is configured to generate a central zone refractive power selected so as to correct near vision of the wearer;

an annular outer zone which is spherically curved and which, together with the base curve, is configured to generate an outer zone refractive power which is less than the central zone power; and

an annular region, intermediate the central zone and the outer zone, comprising two or more contiguous intermediate annular zones, each of which is spherically curved, the two or more intermediate annular zones being configured, together with the base curve, to generate respective one or more intermediate zone refractive powers having differing powers and defining a monotonic progression of decreasing refractive power from the central zone to the annular outer zone,

wherein the outer zone refractive power is between approximately 1 diopter and approximately 2 diopters less than the central zone refractive power.

26. A method for forming a contact lens, comprising:

forming on a transparent material a rear surface comprising a base curve which is adapted to fit an eye of a wearer of the lens; and

forming on the transparent material a front surface comprising:

a central circular zone which is spherically curved and which, together with the base curve, generates a central zone refractive power selected so as to correct near vision of the wearer,

an annular outer zone which is spherically curved and which, together with the base curve, generates an outer zone refractive power which is less than the central zone power, and

an annular region, intermediate the central zone and the outer zone, comprising two or more contiguous intermediate annular zones, each of which is spherically curved, the two or more intermediate annular zones, together with the base curve, generating respective one or more intermediate zone refractive powers having differing powers and defining a monotonic progression of decreasing refractive power from the central zone to the annular outer zone,

wherein the outer zone refractive power is between approximately 1 diopter and approximately 2 diopters less than the central zone refractive power.

Assignments (8)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2020
From: COOPERVISION INTERNATIONAL HOLDING COMPANY, LP
To: COOPERVISION INTERNATIONAL LIMITED
Reel/Frame 054370/0631 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 3, 2016
From: SOFLEX LTD.; CORNERWALD HOLDINGS INC.
To: COOPERVISION INTERNATIONAL HOLDING COMPANY, LP
Reel/Frame 037656/0475 →
CORRECTIVE ASSIGNMENT TO CORRECT THE 2ND ASSIGNEE'S NAME PREVIOUSLY RECORDED ON REEL 024776 FRAME 0979. ASSIGNOR(S) HEREBY CONFIRMS THE 2ND ASSIGNEE'S NAME SHOULD READ CORNERWALD HOLDINGS INC. Recorded Oct 26, 2015
From: J.B. ASSOCIATES BV
To: SOFLEX LTD.; CORNERWALD HOLDINGS INC.
Reel/Frame 036957/0481 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2010
From: J.B. ASSOCIATES BV
To: SOFLEX LTD.; CORNER HOLDINGS LTD.
Reel/Frame 024776/0979 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2006
From: MANOREX LIMITED
To: J.B. ASSOCIATES BV
Reel/Frame 017953/0601 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2006
From: PEREL, MAURICE; SCHMULEWITSCH, ALAIN
To: MANOREX LIMITED
Reel/Frame 017953/0607 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2006
From: S.I.B. INVESTMENTS L.L.C.
To: PEREL, MAURICE; SCHMULEWITSCH, ALAIN
Reel/Frame 017963/0241 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2003
From: PEREL, IVAN MAURICE; SCHMULEWITSCH, ALAIN
To: S.I.B. INVESTMENTS LLC
Reel/Frame 014689/0906 →