EP1535270A2

Liquid manufacturing processes for panel layer fabrication

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 23 July 2023, 3.2 years ago.

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27 claims: 3 independent, 24 dependent

  1. 1
    Claims of equivalent WO 2004015662 A2 CLAIMS What is claimed is:1. A method for manufacturing a light-emitting panel in a web configuration comprising: (a) providing a first substrate in a web form, the first substrate having a plurality of first conductors formed thereon;(b) disposing at least one micro-component of a plurality of micro-components at each of a plurality of first locations on the first substrate corresponding to the plurality of conductors, each micro-component adapted to emit radiation in response to electrical excitation;(c) depositing a liquid dielectric material onto the first substrate to electrically isolate the plurality of micro-components from each other;(d) curing the liquid dielectric material to form a dielectric layer;(e) depositing a conductive liquid on top of the dielectric layer at a plurality of second locations adapted to interact with the first conductors to excite one or more selected micro-components;(f) curing the conductive liquid to create a conductive film for providing second conductors;(g) applying a top layer over the dielectric layer and the second conductors.
  2. 15
    A method for forming a flexible light emitting panel comprising:(a) feeding a first dielectric substrate material from a payout reel in a web coating machine;(b) printing a first plurality of electrodes on the first dielectric material;(c) before or after printing the first plurality of electrodes, forming a plurality of sockets at a plurality of location in the first dielectric material;(d) disposing at least one micro-component in each socket of the plurality of sockets, wherein the at least one micro-component is adapted to emit light in response to electrical excitation;(e) applying a liquid dielectric material over the first dielectric material, the first plurality of electrodes, and at least a portion of each micro-component of the plurality of micro-components;(f) curing the liquid dielectric material to form a dielectric layer;(g) printing a second plurality of electrodes over the dielectric layer using a conductive ink;(h) curing the conductive ink;(i) applying a top layer over the dielectric layer, the second plurality of elecfrodes and the micro-components.
  3. 26
    A method for forming a flexible light emitting panel comprising:(a) feeding a first dielectric substrate material from a payout reel in a web coating machine;(b) printing a first plurality of electrodes on the first dielectric material;(c) before or after printing the first plurality of electrodes, forming a plurality of sockets at a plurality of location in the first dielectric material;(d) disposing at least one micro-component in each socket of the plurality of sockets, wherein the at least one micro-component is adapted to emit light in response to electrical excitation;(e) aligning a second sheet material having dielectric properties over the first dielectric substrate material and the first plurality of electrodes, wherein the second dielectric sheet material has a plurality of openings therethrough corresponding to the plurality of locations, the plurality of openings having diameters larger than an outer diameter of the micro-component;so that a gap is created between an inner diameter of each opening and the outer diameter of each micro-component;(f) applying a liquid dielectric material over at least a portion of the second sheet material so that the gap corresponding to each micro-component is filled, the liquid dielectric material having dielectric properties adapted for control of electric field and breakdown characteristics of the micro-component;(g) curing the liquid dielectric material;(h) printing a second plurality of electrodes over the second sheet material using a conductive ink;(i) curing the conductive ink;0 ' ) applying a top layer over the second sheet material, the second plurality of electrodes and the micro-components.