DISPLAY DEVICE HAVING A WATERMARK FORMED BY HALFTONE IMAGES
The present invention is directed to display devices comprising a plurality of microcells. The plurality of microcells comprises different types of microcells having different Fill Factors. The devices have a watermark being formed by halftone images from the different types of microcells. The watermark aims to protect against counterfeiting or to be used for decoration purposes.
1 . An electro-optic display device comprising an electro-optic material layer, the electro-optic material layer comprising a plurality of microcells, the plurality of microcells being separated from each other by partition walls, the partition walls of each microcell having a surface area, each microcell of the plurality of microcells having a microcell opening, the microcell opening having a surface area and a Fill Factor, each microcell of the plurality of microcells including electrophoretic medium, the electrophoretic medium comprising charged pigment particles in a non-polar fluid, the electro-optic display device having a viewing side, a side opposite to the viewing side, and a watermark being formed by halftone images from the plurality of microcells, the plurality of microcells comprising more than five types of microcells, each microcell of a type of microcells having a Fill Factor that is different from the Fill Factors of all microcells of other types of microcells, the Fill Factor of a microcell being determined by Equation 1,
Fill Factor= A 1 / (A 1 +A 2 ) Equation 1,
A 1 being the surface area of the microcell opening, and A 2 being the surface area of the partition walls that surround the microcell.
2 . The electro-optic display device of claim 1 , wherein the plurality of microcells comprises more than six types of microcells, each microcell of a type of microcells having a Fill Factor that is different from the Fill Factors of all microcells of other types of microcells.
3 . The electro-optic display device of claim 1 , wherein the electro-optic display device comprises microcells having the same Fill Factor, but different partition wall height.
4 . The electro-optic display device of claim 1 , wherein the electro-optic display device comprises microcells having the same Fill Factor, but different microcell shape.
5 . The electro-optic display device of claim 1 , wherein the partition walls are transparent.
6 . The electro-optic display device of claim 1 , wherein the partition walls are opaque.
7 . The electro-optic display device of claim 1 , wherein the electro-optic display device comprises at least two types of partition walls, a first type and a second type of partition walls, wherein the first type and the second type of partition walls have different colors.
8 . The electro-optic display device of claim 1 , further comprising a first light-transmissive electrode layer and a second electrode layer, wherein the electro-optic material layer is disposed between the first light-transmissive electrode layer and the second electrode layer.
9 . The electro-optic display device of claim 8 , wherein the second electrode layer is light-transmissive.
10 . The electro-optic display device of claim 8 , wherein the second electrode layer is colored.
11 . The electro-optic display device of claim 8 , further comprising a sealing layer, the sealing layer spanning the opening of each microcell of the plurality of microcells, the sealing layer being disposed between the electro-optic material layer and the second electrode layer.
12 . The electro-optic display device of claim 11 , wherein the sealing layer is transparent.
13 . The electro-optic display device of claim 11 , wherein the sealing layer is colored.
14 . The electro-optic display device of claim 11 , wherein the electro-optic display device further comprises an adhesive layer disposed between the sealing layer and the second electrode layer.
15 . The electro-optic display device of claim 14 , wherein the adhesive layer is transparent.
16 . The electro-optic display device of claim 14 , wherein the adhesive layer is colored.
17 . The electro-optic display device of claim 1 , further comprising a piezoelectric layer comprising piezoelectric material.
18 . The electro-optic display device of claim 17 , wherein the piezoelectric layer is located adjacent to the electro-optic material layer.
19 . The electro-optic display device of claim 7 , further comprising a photovoltaic layer.
20 . The electro-optic display device of claim 1 , wherein the electro-optic display device is used as part of a product, a document, or a currency bill for anti-counterfeiting purpose.