IP Library Granted Patent US 11,568,786
Granted Patent B2
US 11,568,786 · App. 17/334,751 · Granted Jan 31, 2023

Electro-optic displays, and methods for driving same

Inventor: Kenneth R. Crounse (Somerville, MA)
Assignee: E Ink Corporation
G09G3/2007G09G3/344G09G3/348G09G3/3453G09G3/38G09G2310/06G09G2320/029G09G2320/0257
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Quick Facts
Patent No.
US 11,568,786
App. No.
17/334,751
Granted
Jan 31, 2023
Kind
B2
Abstract

There are provided methods for driving an electro-optic display having a plurality of display pixels, a such method includes detecting a white-to-white graytone transition on a first pixel; and determining whether a threshold number of cardinal neighbors of the first pixel are not making a graytone transition from white to white, or if the first pixel is a color pixel, and apply a first waveform.

Claims (13)

1. A method for driving a color electrophoretic display including a color filter array between a viewer and an electrophoretic medium including black and white particles, the display having a plurality of display pixels, the method comprising:

comparing a first image and a second image;

detecting a same color transition between the first and second images for a first pixel, wherein the same color transition corresponds to a white-to-white graytone transition in the electrophoretic medium adjacent the color filter array for the first pixel;

determining whether a threshold number of cardinal neighbor pixels of the first pixel are not making a graytone transition from white to white between the first and second images; and

if the threshold is met, applying a first waveform to the first pixel, the first waveform comprising a first component configured to drive the electrophoretic medium of the first pixel to an optical black state and a second component configured to drive the electrophoretic medium of the first pixel to an optical white state.

2. The electro-optic display according to claim 1 wherein the electrically charged particles and the fluid are confined within a plurality of capsules or microcells.

3. The electro-optic display according to claim 1 wherein the electrically charged particles and the fluid are present as a plurality of discrete droplets surrounded by a continuous phase comprising a polymeric material.

4. A method for driving a color electrophoretic display including a color filter array between a viewer and an electrophoretic medium including black and white particles, the display having a plurality of display pixels, the method comprising:

comparing a first image and a second image;

detecting a same color transition between the first and second images for a first pixel, wherein the same color transition corresponds to a white-to-white graytone transition in the electrophoretic medium adjacent the color filter array for the first pixel;

determining whether all four cardinal neighbors of the first pixel have a next graytone of white and at least one cardinal neighbor of the first pixel has a current gray tone of not white, when comparing the first and second images; and

applying a first waveform including a twiddle pulse to the first pixel, wherein the twiddle pulse comprises repeating sets of one frame of a positive 15 volt pulse and one frame of a negative 15 volt pulse.

5. The method of claim 4 , wherein the first waveform additionally includes a top off pulse, wherein the top off pulse comprises a single additional frame of the negative 15 volt pulse.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2021
From: CROUNSE, KENNETH R.
To: E INK CORPORATION
Reel/Frame 056611/0554 →
Continuity (2)
Provisional Application 63032721 · May 31, 2020
Related Publication 20210375183A1 · Dec 2, 2021
Cited By (2)
US 12,548,529 US 12,718,778