EP1512045A2

Components and methods for forming and testing electro-optic displays

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 23 May 2023, 3.3 years ago.

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1 claim: 1 independent, 0 dependent

  1. 1
    Claims of equivalent WO 03104884 A2 Claims 1. An article comprising, in order:a light-transmissive electrically-conductive layer;a layer of a solid electro-optic medium in electrical contact with the electrically-conductive layer;an adhesive layer;and a release sheet. 2. An article according to claim 1 characterized in that the electrically-conductive layer comprises a metal oxide. 3. An article according to claim 2 characterized in that the electrically-conductive layer comprises indium tin oxide. 4. An article according to any one of the preceding claims characterized in that the electro-optic medium comprises a rotating bichromal member medium or an electrochromic medium. 5. An article according to any one of the preceding claims characterized in that the electro-optic medium is an electrophoretic medium. 6. An article according to claim 5 characterized in that the electrophoretic medium is an encapsulated electrophoretic medium. 7. An article according to any one of the preceding claims characterized by a connection area wherein the electrically-conductive layer is exposed free from the electro-optic medium and the adhesive layer. 8. An article according to claim 7 characterized in that the connection area is formed by an aperture extending through the electro-optic medium and the adhesive layer so that the connection area is sunounded by the electro-optic medium and the adhesive layer. 9. An article according to claim 7 or 8 characterized in that the release sheet does not extend across the connection area. 10. An article according to any one of claims 7 to 9 characterized by a contact pad of electrically-conductive material overlying the electrically-conductive layer in the connection area. 11. An article according to any one of the preceding claims characterized by a conductive via in electrical contact with the electrically- conductive layer and extending therefrom through or past the layer of electro-optic medium and the adhesive layer. 12. An article according to claim 11 characterized in that the end of the conductive via remote from the electrically-conductive layer is not covered by the release sheet. 13. An article according to claim 11 or 12 characterized in that the conductive via is formed from a deformable material. 14. An article according to claim 14 characterized in that the conductive via is formed from a material comprising conductive particles dispersed in a polymeric matrix. 15. An article accordmg to any one of claims 11 to 14 characterized by a contact pad of electrically-conductive material interposed between the electrically-conductive layer and the conductive via. 16. An article according to any one of the preceding claims characterized in that the release sheet is provided with a second electrically- conductive layer. 17. An article accordmg to any one of the preceding claims characterized by an auxiliary adhesive layer on the opposed side of the electrically- conductive layer from the electro-optic medium. 18. An article according to claim 17 characterized by an auxiliary release sheet covering the auxiliary adhesive layer. 19. An article comprising, in order: a light-transmissive electrically-conductive layer;a layer of a solid electro-optic medium in electrical contact with the electrically-conductive layer;and an adhesive layer, the article being characterized by a connection area wherein the electrically-conductive layer is exposed free from the electro-optic medium and the adhesive layer. 20. An article comprising, in order: a light-transmissive electrically-conductive layer;a layer of a solid electro-optic medium in electrical contact with the electrically-conductive layer;and an adhesive layer, the article being characterized by a conductive via in electrical contact with the electrically-conductive layer and extending therefrom through or past the layer of electro-optic medium and the adhesive layer. 21. An electro-optic display comprising, in order: a light-transmissive electrically-conductive layer;a layer of a solid electro-optic medium in electrical contact with the electrically-conductive layer;an adhesive layer;and a backplane having at least one pixel electrode, such that application of an electrical potential between the electrically-conductive layer and the pixel electrode can change the optical state of the electro-optic medium, the backplane further comprising at least one contact pad electrically isolated from the at least one pixel electrode, the display being characterized by at least one conductive via extending from the electrically-conductive layer through or past the electro-optic medium and the adhesive layer to the or one of the contact pads. 22. A process for producing a solid electro-optic display, the process comprising: providing an article of manufacture comprising, in order: a light-transmissive electrically-conductive layer;a layer of a solid electro-optic medium in electrical contact with the electrically-conductive layer;an adhesive layer;and a release sheet;providing a backplane comprising a plurality of pixel electrodes and drive means arranged to apply variable potentials to the pixel electrodes;removing the release sheet from the adhesive layer;and contacting the adhesive layer with the backplane under conditions effect to cause the adhesive layer to adhere to the backplane, thereby securing the adhesive layer, layer of electro-optic medium and electrically-conductive layer to the backplane. 23. A process for forming an electro-optic display, the process comprising: providing a front assembly comprising, in order, a light- transmissive electrically-conductive layer;a layer of a solid electro-optic medium in electrical contact with the electrically-conductive layer;and an adhesive layer;removing the electro-optic medium and the adhesive layer from a portion of the front assembly, thereby providing a connection area wherein the electrically-conductive layer is exposed free from the electro-optic medium and the adhesive layer;forming a conductive via on the connection area;providing a backplane comprising at least one pixel electrode and at least one contact pad electrically isolated from the at least one pixel electrode;and laminating the front assembly to the backplane so that the adhesive layer adheres to the backplane with the electro-optic medium disposed adjacent the at least one pixel electrode and the conductive via in electrical contact with the at least one contact pad, so that the electrically-conductive layer is electrically connected to the at least one contact pad via the conductive via. 24. A process for forming an electro-optic display, the process comprising: providing a substrate comprising a light-transmissive electrically- conductive layer;coating a solid electro-optic medium over part of the substrate, leaving a connection area of the substrate uncoated;coating an adhesive layer over the electro-optic medium, leaving the connection area uncoated, thereby forming a front assembly;providing a backplane comprising at least one pixel electrode and a contact pad electrically isolated from the at least one pixel electrode;and laminating the front assembly to the backplane so that the adhesive layer adheres to the backplane with the electro-optic medium disposed adjacent the at least one pixel electrode and with the electrically-conductive layer in the connection area in electrical contact with the contact pad. 25. An electro-optic display comprising: a backplane comprising at least one pixel electrode;a layer of a solid electro-optic medium disposed adjacent the pixel electrode;a light-transmissive electrode disposed on the opposed side of the electro-optic medium from the backplane;a protective and/or barrier layer disposed on the opposed side of the light-transmissive electrode from the electro-optic medium;and a sealing material for preventing ingress of material from the environment into the electro-optic medium, the sealing material being disposed along at least part of the periphery of the layer of electro-optic medium and extending from the backplane of the protective and/or barrier layer. 26. An electro-optic display comprising: a backplane comprising at least one pixel electrode;a layer of a solid electro-optic medium disposed adjacent the pixel electrode;a light-transmissive electrode disposed on the opposed side of the electro-optic medium from the backplane;an electrode support disposed on the opposed side of the light- transmissive electrode from the electro-optic medium, the light-transmissive electrode and electrode support being larger than the layer of electro-optic medium, measured parallel to the plane of the backplane;and a sealing material for preventing ingress of material from the environment into the electro-optic medium, the sealing material extending between the backplane and the peripheral portion of the light-transmissive electrode extending beyond the periphery of the layer of electro-optic medium. 27. A method of testing a solid electro-optic medium, the method comprising: providing an article of manufacture comprising, in order: a light-transmissive electrically-conductive layer;a layer of a solid electro-optic medium in electrical contact with the electrically-conductive layer;an adhesive layer;and a release sheet having a second electrically-conductive layer;applying a potential difference between the two electrically- conductive layers, thereby forming an image on the medium;and observing the image thus formed. 28. A method of testing a solid electro-optic medium, the method comprising: providing an article of manufacture comprising, in order: a light-transmissive electrically-conductive layer;a layer of a solid electro-optic medium in electrical contact with the electrically-conductive layer;an adhesive layer;and a release sheet;placing a electrostatic charge on the release sheet, thereby forming an image on the medium;and observing the image thus formed.