EP1995628A2

Method for Forming an Electronic Paper Display

Abstract

Methods form a multi-color electrophoretic display. The methods include providing microcapsules, wherein the microcapsules have an electrostatic charge, and wherein the microcapsules comprise, a shell that is transparent and a display medium within the shell, wherein the display medium is comprised of either (a) at least two sets of differently colored particles in a substantially clear fluid, or (b) at least one set of colored particles in a differently colored fluid. The methods include transferring the microcapsules to a substrate, wherein the electrostatic charge of the microcapsules attracts the microcapsules to the substrate, wherein a display layer of microcapsules is formed on the substrate. The methods include positioning a conductive substrate adjacent to the substrate, wherein the substrate is located between the display layer and the conductive substrate. In use, the conductive substrate applies an electric field to the display layer, and wherein the sets of particles within each microcapsule in the display layer are movable within the microcapsule by the electric field.

EP1995628A2, drawing sheet 1
Sheet 1 of 5

Term

1.7 yearsto projected expiry

Projected expiry 22 May 2028, counted from filing; an application has no term until it is granted.

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

15 claims: 5 independent, 10 dependent

  1. 1
    A method for forming a multi-color electrophoretic display, the method comprising:providing microcapsules, wherein the microcapsules have an electrostatic charge, and wherein the microcapsules comprise: a shell that is transparent;and a display medium within the shell, wherein the display medium is comprised of either (a) at least two sets of differently colored particles in a substantially clear fluid, or (b) at least one set of colored particles in a differently colored fluid;transferring the microcapsules to an electrostatically charged surface, wherein the electrostatic charge of the microcapsules attracts the microcapsules to the surface;forming on a substrate a display layer of microcapsules from the transferred microcapsules;and positioning a conductive substrate adjacent to the substrate, wherein the substrate is located between the display layer and the conductive substrate, wherein the conductive substrate is capable of applying an electric field to the display layer, and wherein the sets of particles of each microcapsule in the display layer are movable within the microcapsule by the electric field.
  2. 4
    The method according to any of claims 1 to 3, wherein at least one of the microcapsules have a surface charging control agent or a flow aid agent.
  3. 12
    The method according to any of claims 8 to 10, further comprising:forming a protective layer on the display layer wherein the display layer is located between the protective layer and the substrate.
  4. 13
    A multicolor electrophoretic display device comprising a display layer, a conductive layer and a substrate, wherein the display layer comprises microcapsules, wherein the microcapsules are electrostatically chargeable, and wherein the microcapsules comprise:a shell that is transparent;and a display medium within the shell, wherein the display medium is comprised of either (a) at least two sets of differently colored particles in a substantially clear fluid, or (b) at least one set of colored particles in a differently colored fluid, and wherein the particles are moveable in the display medium on application of electric field applied by the conductive substrate.
  5. 15
    A developer composition comprising electrostatically chargeable microcapsules and a carrier, wherein the microcapsules have an electrostatic charge, and wherein the microcapsules comprise:a shell that is transparent;and a display medium within the shell, wherein the display medium is comprised of either (a) at least two sets of differently colored particles in a substantially clear fluid, or (b) at least one set of colored particles in a differently colored fluid.