IP Library Patent Application 12423266
Patent Application
App. No. 12/423,266

Toric Contact Lenses Having Selected Spherical Aberration Characteristics

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Quick Facts
Patent No.
US None
App. No.
12/423,266
Abstract

A contact lens, comprising a first surface and a toric second surface. The toric surface has a first meridian and a second meridian, and the toric surface has a first aspheric component in the first meridian. At least one of the first surface and the second meridian of the second surface has a second aspheric component, such that spherical aberration in the first meridian is within 0.1 microns (um) of being equal to the spherical aberration in the second meridian.

Claims (15)

1 . A contact lens, comprising:

a first surface; and

a toric second surface having a first meridian and a second meridian, the toric surface having a first aspheric component in the first meridian, and at least one of the first surface and the second meridian of the second surface having a second aspheric component, such that spherical aberration in the first meridian is within 0.1 microns (um) of being equal to the spherical aberration in the second meridian.

2 . The contact lens of claim 1 , wherein the spherical aberration in the first meridian and the spherical aberration in the second meridian are both between −0.35 to +0.35 um for light having a wavelength of 555 nm for an aperture of 6.0 mm.

3 . The contact lens of claim 1 , wherein the spherical aberration in the first meridian and the spherical aberration in the second meridian are both between 0.00 to −0.30 um for light having a wavelength of 555 nm for an aperture of 6.0 mm.

4 . The contact lens of claim 1 , wherein the spherical aberration in the first meridian and the spherical aberration in the second meridian are both between −0.05 to −0.25 um for light having a wavelength of 555 nm for an aperture of 6.0 mm.

5 . The contact lens of claim 1 , wherein the spherical aberration in the first meridian and the spherical aberration are both negative for light having a wavelength of 555 nm for an aperture of 6.0 mm.

6 . The contact lens of claim 1 , wherein the first meridian is a sphere power meridian and the second meridian is the cylinder power meridian.

7 . The contact lens of claim 1 , wherein the second surface is conic in the first meridian and in the second meridian.

8 . The contact lens of claim 1 , wherein the first surface is an anterior surface of the lens.

8 . The contact lens of claim 1 , wherein the first meridian and the second meridian are separated by 90 degrees.

9 . The contact lens of claim 1 , wherein the second surface is aspheric in the first meridian and in the second meridian.

10 . The contact lens of claim 1 , wherein the second meridian of the second surface is aspheric and the first surface is spherical.

11 . The contact lens of claim 1 , wherein the second meridian of the second surface is spherical and the first surface is aspheric.

12 . The contact lens of claim 1 , wherein the first surface is axisymmetric.