Color display device
First Claim
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1. An electrophoretic display, comprising:
- (a) a plurality of pixels; and
(b) an electrophoretic fluid comprising a first type of particles, a second type of particles, a third type of particles, and a fourth type of particles dispersed in a solvent or solvent mixture, wherein the first and second types of particles carry a high level of charge and are oppositely charged, the third and fourth types of particles carry a low level of charge and are oppositely charged, each of the pixels is capable of displaying at least five different color states, and the first and second type of particles are of the white and red colors, respectively.
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Abstract
The present invention provides a full color display device in which each pixel can display multiple high-quality color states. More specifically, an electrophoretic fluid is provided which comprises four types of particles, dispersed in a solvent or solvent mixture and each pixel can display at least five different color states.
215 Citations
19 Claims
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1. An electrophoretic display, comprising:
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(a) a plurality of pixels; and (b) an electrophoretic fluid comprising a first type of particles, a second type of particles, a third type of particles, and a fourth type of particles dispersed in a solvent or solvent mixture, wherein the first and second types of particles carry a high level of charge and are oppositely charged, the third and fourth types of particles carry a low level of charge and are oppositely charged, each of the pixels is capable of displaying at least five different color states, and the first and second type of particles are of the white and red colors, respectively. - View Dependent Claims (2, 3, 4, 5, 6, 7)
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8. An electrophoretic display, comprising:
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(a) a plurality of pixels; and (b) an electrophoretic fluid comprising a first type of particles, a second type of particles, a third type of particles, and a fourth type of particles dispersed in a solvent or solvent mixture, wherein the first and second types of particles carry a high level of charge and are oppositely charged, the third and fourth types of particles carry a low level of charge and are oppositely charged, each of the pixels is capable of displaying at least five different color states, and the four types of particles are red, green, blue and white particles, or the four types of particles are red, yellow, blue and white particles or the four types of particles are cyan, magenta, yellow and white particles. - View Dependent Claims (9, 10)
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11. An electrophoretic display, comprising:
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(a) a plurality of pixels; and (b) an electrophoretic fluid comprising a first type of particles, a second type of particles, a third type of particles, and a fourth type of particles dispersed in a solvent or solvent mixture, wherein the first and second types of particles carry a high level of charge and are oppositely charged, the third and fourth types of particles carry a low level of charge and are oppositely charged, each of the pixels is capable of displaying at least five different color states, and the electrophoretic fluid further comprises substantially uncharged neutral buoyancy particles. - View Dependent Claims (12)
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13. A display layer comprising an electrophoretic fluid and having first and second surfaces on opposed sides thereof, the electrophoretic fluid comprising high positive particles, high negative particles, low positive particles and low negative particles, all dispersed in a solvent or solvent mixture, the four type of particles having respectively optical characteristics differing from one another, such that:
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(a) application of an electric field which has the same polarity as the high positive particles will cause a first optical characteristic of the high positive particles to be displayed at the first surface;
or(b) application of an electric field which has the same polarity as high negative particles will cause a second optical characteristic of the high negative particles to be displayed at the first surface;
or(c) once the optical characteristic of the high positive particles is displayed at the first surface, application of an electric field which has the same polarity as low negative particles, which is not strong enough to overcome the attraction force between the high positive particles and the high negative particles, but sufficient to overcome the attraction forces between other oppositely charged particles, will cause a third optical characteristic of the low negative particles to be displayed at the first surface;
or(d) once the optical characteristic of the high negative particles is displayed at the first surface, application of an electric field which has the same polarity as the low positive particles, which is not strong enough to overcome the attraction force between the high positive particles and the high negative particles, but sufficient to overcome the attraction forces between other oppositely charged particles, will cause a forth optical characteristic of the low positive particles to be displayed at the first surface;
or(e) application of a shaking waveform will cause a fifth optical characteristic to be displayed at the first surface, wherein the four types of particles are (i) red, green, blue and white particles, or (ii) red, yellow, blue and white particles, or (iii) cyan, magenta, yellow and white particles. - View Dependent Claims (14, 15, 16, 17, 18, 19)
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Specification