Methods and apparatus for electroactive variable aperture lenses
This invention discloses methods and apparatus for providing a variable aperture insert into a lens. A liquid crystal layer may be used to provide a variable aperture function and in some examples. In other examples, electrochromic, photochromic, liquid meniscus or electroactive elastomeric devices may form a light blocking element of a variable aperture insert. In some examples, an ophthalmic lens is cast-molded from a silicone hydrogel including a variable aperture insert.
1. A lens device comprising:
an electroactive light blocking element, wherein the electroactive light blocking element is configured to allow for the adjustment of the transmittance with the application of an electrical signal;
a lens body comprising the electroactive light blocking element;
an energization element;
a sensor configured to sense a location of the lens device on a surface of an eye; and
a controller, wherein the controller controls the electroactive light blocking element to: form at least one aperture positioned in an optic zone of the lens device; calculate a centration of the lens on the eye; and move the at least one aperture in space to maintain a static centered location; and
a plurality of light sources located at multiple locations of the lens device at the border between the iris and the sclera of the eye, wherein the sensor is capable of sensing different levels of light emitted by the light sources and reflected by the eye.
2. The lens device of claim 1 further comprising a plurality of transparent electrodes aligned across the top and bottom of the electroactive light blocking element.
3. The lens device of claim 1 wherein the plurality of transparent electrodes are formed of at least two interdigitated metal fingers.
4. The lens device of claim 1 further comprising an overmold that encapsulates the electroactive light blocking element, the energization element, and the controller.
5. The lens device of claim 1 wherein the at least one aperture comprises a plurality of apertures.
6. The lens device of claim 5 wherein the plurality of apertures are formed of at least two different shapes or sizes.
7. The lens device of claim 1 wherein the at least one aperture has a non-round shape.
8. The lens device of claim 1 , wherein the sensor comprises a cadmium sulfide (CdS) thin film having a resistance responsive to photo flux and wherein the controller measures resistivity at a plurality of locations at the periphery of the lens body.