IP Library Granted Patent US 10,324,354
Granted Patent B2
US 10,324,354 · App. 15/402,273 · Granted Jun 18, 2019

Electro-optic displays, and materials for use therein

Inventors: Richard J. Paolini, Jr. (Framingham, MA); Michael D. McCreary (Acton, MA); Charles Howie Honeyman (Toronto, CA); Bin Wu (Sharon, MA)
Assignee: E Ink Corporation
G02F1/167C08J7/16C09J175/04G02F1/01G02F1/133514G06F3/03545G02F1/061G02F1/13306G02F1/1676G02F1/1681G02F1/172G02F2001/133354G02F2001/1678G02F2202/022G02F2202/28
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Quick Facts
Patent No.
US 10,324,354
App. No.
15/402,273
Granted
Jun 18, 2019
Kind
B2
Abstract

A first electro-optic display comprises first and second substrates, and an adhesive layer and a layer of electro-optic material disposed between the first and second substrates, the adhesive layer comprising a mixture of a polymeric adhesive material and a hydroxyl containing polymer having a number average molecular weight not greater than about 5000. A second electro-optic display is similar to the first but has an adhesive layer comprising a thermally-activated cross-linking agent to reduce void growth when the display is subjected to temperature changes. A third electro-optic display, intended for writing with a stylus or similar instrument, is produced by forming a layer of an electro-optic material on an electrode; depositing a substantially solvent-free polymerizable liquid material over the electro-optic material; and polymerizing the polymerizable liquid material.

Claims (19)

1. An electro-optic display capable of being imaged by a stylus, the display comprising:

an electrode;

a layer of an electro-optic material containing encapsulated electrophoretic media disposed on the electrode, such that the surface of the layer of electro-optic material remote from the electrode is non-planar, the encapsulation of the electrophoretic media being selected from the group consisting of a plurality of microcells sealed with a sealing layer and a plurality of discrete droplets surrounded by a continuous phase comprising a polymeric material; and

a polymeric layer overlying the layer of electro-optic material,

the polymeric layer comprising the polymerization product of a substantially solvent-free polymerizable liquid material, the surface of the polymeric layer remote from the layer of electro-optic material being substantially planar and forming an exposed external surface of the display on which a stylus can be placed.

2. An electro-optic display according to claim 1 wherein the thickness of the polymeric layer is from about 6 to about 250 μm.

3. An electro-optic display according to claim 2 wherein the thickness of the polymeric layer is from about 8 to about 50 μm.

4. An electro-optic display according to claim 1 wherein the polymeric layer comprises an acrylate or a urethane acrylate blend or a silicone.

5. An electro-optic display according to claim 1 wherein the electrophoretic media comprises a plurality of electrically charged particles disposed in a fluid and capable of moving through the fluid under the influence of an electric field.

6. An electro-optic display according to claim 5 wherein the fluid is gaseous.

7. A process for the preparation of an electro-optic display, the process comprising:

forming a layer of an electro-optic material containing encapsulated electrophoretic media on an electrode, the surface of the layer of electro-optic material remote from the electrode being non-planar, the encapsulation of the electrophoretic media being selected from the group consisting of a plurality of microcells sealed with a sealing layer, a plurality of capsules, and a plurality of discrete droplets surrounded by a continuous phase comprising a polymeric material;

depositing a layer of a substantially solvent-free polymerizable liquid material over the layer of electro-optic material; and

exposing the polymerizable liquid material to conditions effective to cause polymerization of the material, thereby forming a polymeric layer overlying the layer of electro-optic material, the surface of the polymeric layer remote from the layer of electro-optic material being substantially planar and forming an exposed external surface of the display.

8. A process according to claim 7 wherein the thickness of the polymeric layer is from about 6 to about 250 μm.

9. A process according to claim 7 wherein the thickness of the polymeric layer is from about 8 to about 50 μm.

10. A process according to claim 7 wherein the polymeric layer comprises an acrylate or a urethane acrylate blend or a silicone.

11. A process according to claim 7 wherein the electrophoretic media comprises a plurality of electrically charged particles disposed in a fluid and capable of moving through the fluid under the influence of an electric field.

12. A process according to claim 11 wherein the fluid is gaseous.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2017
From: PAOLINI, RICHARD J., JR.; MCCREARY, MICHAEL D.; HONEYMAN, CHARLES HOWIE; WU, BIN
To: E INK CORPORATION
Reel/Frame 041202/0795 →
Continuity (10)
Continuation 14692822 · Apr 22, 2015
Continuation 12871155 · Aug 30, 2010
Continuation In Part PCTUS2009036756 · Mar 11, 2009
Continuation In Part 12046126 · Mar 11, 2008
Continuation In Part 11613259 · Dec 20, 2006
Division 10904351 · Nov 5, 2004
Provisional Application 60481787 · Dec 14, 2003
Provisional Application 60481605 · Nov 6, 2003
Provisional Application 60481600 · Nov 5, 2003
Related Publication 20170131612A1 · May 11, 2017