Methods for formation of an ophthalmic lens precursor and lens
This invention discloses methods for generating one or both of an ophthalmic lens precursor with at least a portion of one surface free-formed from a Reactive Mixture. In some embodiments, an ophthalmic lens precursor is formed on a substrate with an arcuate optical quality surface via a source of actinic radiation controllable to cure a definable portion of a volume of Reactive Mixture.
1. An apparatus for forming an ophthalmic device, the apparatus comprising:
a free form processing male mold mandrel comprising a convex optical quality surface upon which said ophthalmic device may be formed by crosslinking a reactive mixture without shaping according to a cast mold, wherein at least a portion of the convex optical quality surface is part of a container suitable for holding a volume of a said reactive mixture and at least a portion of the convex optical quality surface protrudes into a space within the container, wherein a volume of said container is greater than a volume of the ophthalmic device to be formed therein, and wherein a shape of said container does not influence a shape of the ophthalmic device to be formed therein;
a light source including a plurality of beams of actinic radiation each directed through the male mold mandrel and the convex optical quality surface at a different, predetermined location, each of said plurality of beams being selectively controllable to thereby selectively cure portions of the reactive mixture through the male mold and convex optical quality surface.
2. The apparatus of claim 1 , wherein the volume of reactive mixture is greater than the volume of the formed ophthalmic device.
3. The apparatus of claim 1 , wherein the male mold mandrel can act as a lid to a reservoir thereby forming the container.
4. The apparatus of claim 1 , additionally comprising a focusing optical element.
5. The apparatus of claim 1 , additionally comprising a collimating optical element.
6. The apparatus of claim 1 , additionally comprising a pattern generator for splitting light from delivered by the light source.
7. The apparatus of claim 6 , wherein the pattern generator comprises a digital mirror device for selectively controlling the light source at said numerous discrete locations.
8. The apparatus of claim 6 , additionally comprising a processor in communication with the pattern generator.
9. The apparatus of claim 1 , wherein the male mold mandrel is of a rigid material at least partially transparent to beams of light in a spectrum of between 360 nM and 435 nM.