IP Library › Granted Patent US 8,040,594
Granted Patent B2
US 8,040,594 · App. 12/725,997 · Granted Oct 18, 2011

Multi-color electrophoretic displays

Assignee: E Ink Corporation
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Quick Facts
Patent No.
US 8,040,594
App. No.
12/725,997
Granted
Oct 18, 2011
Kind
B2
Abstract

A multi-color electrophoretic medium contains first, second and third species of particles, the particles having substantially non-overlapping electrophoretic mobilities and bring of three different colors. The particles are dispersed in a fluid having a fourth color. A method for driving such a display is also described.

Claims (25)

1. A multi-color electrophoretic medium comprises first, second and third species of particles, the particles having substantially non-overlapping electrophoretic mobilities and first, second and third colors respectively, the first, second and third colors differing from each other, the particles being dispersed in a fluid having a fourth color different from the first, second and third colors.

2. An electrophoretic medium according to claim 1 wherein the first, second, third and fourth colors are cyan, magenta, yellow and white, in any order.

3. An electrophoretic medium according to claim 2 wherein one of the first, second and third types of particles has a white color.

4. An electrophoretic medium according to claim 3 wherein the two types of non-white particles are transmissive.

5. An electrophoretic medium according to claim 3 wherein the two types of non-white particles are reflective.

6. An electrophoretic medium according to claim 1 wherein one of the first, second and third types of particles bears a charge of one polarity and the other two types of particles bear charges of the opposite polarity.

7. An electrophoretic medium according to claim 6 wherein the one type of particle which bears a charge of one polarity is white in color.

8. An electrophoretic medium according to claim 1 wherein the fourth color is yellow.

9. An electrophoretic medium according to claim 1 wherein the first type of particles are white in color and bear a charge of one polarity, the second type of particles are cyan in color and bear a charge of polarity opposite to that of the white particles, the third type of particles are magenta in color and bear a charge of polarity opposite to that of the white particles, and the fluid is yellow in color.

10. An electrophoretic medium according to claim 1 further comprising a capsule wall within which the fluid and the particles are retained.

11. An electrophoretic medium according to claim 10 comprising a plurality of the capsules within which the fluid and the particles are retained, and a polymeric binder surrounding the capsules.

12. An electrophoretic medium according to claim 1 wherein the fluid and the particles are present as a plurality of discrete droplets dispersed in a continuous phase of a polymeric material.

13. An electrophoretic medium according to claim 1 wherein the fluid and the particles are retained within a plurality of cavities formed in a carrier medium.

14. An electrophoretic display comprising an electrophoretic medium according to claim 1 and at least one electrode disposed adjacent the electrophoretic medium and arranged to apply an electric field to the medium.

15. An electronic book reader, portable computer, tablet computer, cellular telephone, smart card, sign, watch, shelf label or flash drive incorporating a display according to claim 14 .

16. A method of driving a multi-color electrophoretic display containing at least first, second and third species of particles, the particles having substantially non-overlapping electrophoretic mobilities and first, second and third colors respectively, the first, second and third colors differing from each other, the particles being dispersed in a fluid having a fourth color different from the first, second and third colors, the display further comprising a first electrode forming a viewing surface of the display and a second electrode on the opposed side of the fluid from the first electrode, the method comprising:

bringing all three species of particles adjacent one of the first and second electrodes;

applying an electric field between the first and second electrodes to cause at least one species of particles to move away from said one electrode, thereby placing a desired one of the three species of particles adjacent the viewing surface; and

applying an electric field between the first and second electrodes to cause all three species of particles to move away from the first electrode, whereby the fourth color of the fluid is displayed at the viewing surface.

17. A method according to claim 16 wherein the first, second, third and fourth colors may be cyan, magenta, yellow and white, in any order.

18. A method according to claim 17 wherein one of the first, second and third types of particles has a white color.

19. A method according to claim 16 wherein one of the first, second and third types of particles bears a charge of one polarity and the other two types of particles bear charges of the opposite polarity.

20. A method according to claim 19 wherein the one type of particle which bears a charge of one polarity is white in color.

21. A method according to claim 16 wherein the fourth color is yellow.

22. A method according to claim 16 wherein the first type of particles are white in color and bear a charge of one polarity, the second type of particles are cyan in color and bear a charge of polarity opposite to that of the white particles, the third type of particles are magenta in color and bear a charge of polarity opposite to that of the white particles, and the fluid is yellow in color.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2011
From: PAOLINI, RICHARD J., JR.; HARRIS, GEORGE G.; ALBERT, JONATHAN D.; COMISKEY, BARRETT
To: E INK CORPORATION
Reel/Frame 026689/0865 →
Continuity (41)
Continuation In Part 12117974 · May 9, 2008
Continuation 11970811 · Jan 8, 2008
Continuation 10729044 · Dec 5, 2003
Continuation 09140860 · Aug 27, 1998
Provisional Application 60057122 · Aug 28, 1997
Provisional Application 60057798 · Aug 28, 1997
Provisional Application 60057799 · Aug 28, 1997
Provisional Application 60057163 · Aug 28, 1997
Provisional Application 60057118 · Aug 28, 1997
Provisional Application 60059358 · Sep 19, 1997
Provisional Application 60059543 · Sep 19, 1997
Provisional Application 60065529 · Nov 13, 1997
Provisional Application 60065630 · Nov 18, 1997
Provisional Application 60065605 · Nov 18, 1997
Provisional Application 60066147 · Nov 19, 1997
Provisional Application 60066245 · Nov 20, 1997
Provisional Application 60066246 · Nov 20, 1997
Provisional Application 60066115 · Nov 21, 1997
Provisional Application 60066334 · Nov 21, 1997
Provisional Application 60066418 · Nov 24, 1997
Provisional Application 60070940 · Jan 9, 1998
Provisional Application 60071371 · Jan 15, 1998
Provisional Application 60072390 · Jan 9, 1998
Provisional Application 60070939 · Jan 9, 1998
Provisional Application 60070935 · Jan 9, 1998
Provisional Application 60074454 · Feb 12, 1998
Provisional Application 60076955 · Mar 5, 1998
Provisional Application 60076959 · Mar 5, 1998
Provisional Application 60076957 · Mar 5, 1998
Provisional Application 60076978 · Mar 5, 1998
Provisional Application 60078363 · Mar 18, 1998
Provisional Application 60083252 · Apr 27, 1998
Provisional Application 60085096 · May 12, 1998
Provisional Application 60090223 · Jun 22, 1998
Provisional Application 60090232 · Jun 22, 1998
Provisional Application 60092046 · Jul 8, 1998
Provisional Application 60092050 · Jul 8, 1998
Provisional Application 60093689 · Jul 22, 1998
Provisional Application 60057133 · Aug 28, 1997
Provisional Application 60057716 · Aug 28, 1997
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