EP0806286A2

Automated method and apparatus for hydrating soft contact lenses

Abstract

An automated means for hydrating a molded hydrophilic contact lens is provided in which a first robotic assembly removes a plurality of contact lens molds from a production line carrier, each of the lens molds having a contact lens adhered therein. The first robotic assembly transports the molds to a first staging area where the lens molds are sandwiched between a lens mold carrier and a top chamber plate to form a first hydration carrier. A first rotary transfer device then hands the first hydration carrier to a second robotic assembly which immerses the first hydration carrier in a hydration bath to hydrate the lens and to release the lens from the lens mold. While the lens is immersed in the hydration bath, each lens is transferred from its respective mold to a lens transfer means found within the top chamber plate. After a predetermined period of time, the second robotic assembly removes the first hydration carrier from the hydration bath and hands the hydration carrier off to a second rotary transfer device which rotates the first hydration carrier and aligns it for transfer to a third robotic assembly. The third robotic assembly then carries the top chamber plate and contact lenses through a series of steps in which the lens mold carrier and lens molds are removed from the top chamber plate. The lenses carried on the lens transfer means are then flushed and transported for assembly with a hydration base member to form a second hydration carrier for processing the lens in subsequent extraction stations. The second hydration carrier is then transported through a plurality of flushing or extraction stations wherein fresh deionized water is introduced into the hydration chambers at each hydration station to flush leachable substances from the hydration chamber. At each flushing station, fresh deionized water is introduced into the hydration chamber to remove previously extracted impurities and the products of hydrolysis. A final robotic dis-assembly device separates the top chamber plate and lens transfer means from the hydration base member, to provide fully hydrated lenses in a concave lens holding means ready for transfer to inspection and packaging stations.

EP0806286A2, drawing sheet 1
Sheet 1 of 38

Term

Term ended

Projected expiry passed 6 May 2017, 9.4 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

48 claims: 3 independent, 45 dependent

  1. 1
    An automated means for hydrating a molded hydrophilic contact lens, said automated means comprising:(a) a first robotic assembly for removing a plurality of contact lens molds from a carrier, each mold having a contact lens therein, and assembling said molds with a mold carrier and a plurality of lens transfer means to form a first hydration carrier;(b) a second robotic assembly for: immersing said first hydration carriers in a hydration bath to hydrate the lens and release said lens from said mold, and to allow said lens to transfer from said mold to said lens transfer means;said second robotic assembly removing said first hydration carriers from said bath after a predetermined time;(c) a transport for transporting said first hydration carrier through said hydration bath;(d) a third robotic assembly for removing said molds from said lens transfer means and transporting said lens transfer means and said lenses to a subsequent processing station.
  2. 30
    An automated apparatus for hydrating a hydrophilic lens, said apparatus comprising:(a) a plurality of carriers, each carrier having (i) a lens transfer plate, said lens transfer plate having a plurality of lens carrier elements, each carrier element having a convex lens attachment surface, and each lens attachment surface defining a fluid port therein for Introducing a fluid between said convex lens attachment surface and a contact lens carrier thereon;(ii) a hydration base, said hydration base defining a plurality of concave lens holding surface with a concave lens holding surface associated with a lens carrier element to define a hydration chamber therebetween, each concave lens holding surface also defining a fluid port therein for introducing a fluid between said concave holding surface and a contact lens carrier within said hydration chamber;(b) a plurality of automated extraction stations, each station having a discharge manifold, said discharge manifold cooperating with said carriers to provide a flow of fluid within each hydration chamber;(c) an index transport for conveying each of said hydration carrier means through each of said plurality of extraction stations;and(d) a controller for sequencing the flow of fluid at each station with the conveyance of each carrier means thereto.
  3. 42
    An automated apparatus for manipulating, transporting and dis-assembling a hydration carrier having a mold carrier plate, a plurality of contact lens molds with a plurality of contact lenses therein and a carrier having a plurality of lens transfer members for receivng said contact lenses, said apparatus including:(a) a rotary transport device for receiving a hydration carrier in a first orientation and rotating and transporting said carrier to a second location for dis-assembly;(b) a robotic device for receiving said carrier at said second location, said robotic device having a pair of registration pins which are extended through said hydration carrier at said second location;(c) a dis-assembly device for removing said mold carrier plate and said contact lens molds, said dis-assembly device having a pair of registration members for receiving said registration pins to thereby register the hydration carrier at the second location prior to removal of the mold carrier plate and the contact lens molds.