Claims
- 1. A contact lens having a posterior side comprising a central zone and a peripheral zone surrounding the central zone, wherein said lens is characterized by the peripheral zone including a plurality of concentric surfaces wherein each concentric surface is defined by a sine or cosine function and are connected along common tangent points wherein the central and peripheral zones are connected along common points tangent to both zones, and wherein the sine and cosine functions are, respectively, represented by the formulae:
- y=A sin (x+B)+C (1)
- y=A cos (x+B)+C (2)
- wherein: x is a linear distance from the center of the lens, y is the sagital depth of the lens at a given x value, and A, B, and C are coefficients.
- 2. The contact lens of claim 1 wherein the peripheral zone includes five sequential concentric surfaces wherein each concentric surface is defined by a sine function.
- 3. The contact lens of claim 1 wherein the surface of the central zone is defined by an ellipse.
- 4. The contact lens of claim 1 wherein the surface of the central zone is defined by a sphere.
- 5. A system for making contact lenses comprising:
- (a) a data processing system comprising:
- an input means for receiving data representing lens design parameters, and
- means for defining the shape of a posterior side of a contact lens based upon the lens design parameters, wherein the shape comprises a central zone and a periphery zone surrounding the central zone, said peripheral zone having a surface defined by at least one of a sine or cosine function; and
- (b) a lathe connected to the data processing system for cutting a lens corresponding to the defined shape,
- wherein the sine and cosine functions are, respectively, represented by the formulae:
- y=A sin (x+B)+C (1)
- y=A cos (x+B)+C (2)
- wherein: x is a linear distance from the center of the lens, y is the sagital depth of the lens at a given x value, and A, B, and C are coefficients.
- 6. A method for making contact lenses comprising the steps of:
- (a) providing data representing lens design parameters;
- (b) defining a shape based upon the lens design parameters wherein the shape comprises a central zone and a periphery zone surrounding the central zone, said peripheral zone having a surface defined by at least one of a sine or cosine function; and
- (c) cutting a lens surface corresponding to the defined shape, wherein the sine and cosine functions are, respectively, represented by the formulae:
- y=A sin (x+B)+C (1)
- y=A cos (x+B)+C (2)
- wherein: x is a linear distance from the center of the lens, y is the sagital depth of the lens at a given x value, and A, B, and C are coefficients.
Parent Case Info
This application claims benefit of provisional application Ser. No. 60/021,069 filed Jul. 01, 1996.
US Referenced Citations (8)
Foreign Referenced Citations (1)
Number |
Date |
Country |
0742462A2 |
Nov 1996 |
EPX |