IP Library › Granted Patent US 11,030,965
Granted Patent B2
US 11,030,965 · App. 16/793,766 · Granted Jun 8, 2021

Drivers providing DC-balanced refresh sequences for color electrophoretic displays

Inventors: Stephen J. Telfer (Arlington, MA); Christopher L. Hoogeboom (Burlington, MA); Kenneth R. Crounse (Somerville, MA)
Assignee: E Ink Corporation
G09G3/344G09G2300/08G09G2310/0256G09G2310/061G09G2310/068G09G2320/0204
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,030,965
App. No.
16/793,766
Granted
Jun 8, 2021
Kind
B2
Abstract

A method for driving an electro-optic display having a front electrode, a backplane, and a display medium including at least three differently-colored particles, wherein the medium is positioned between the front electrode and the backplane. The method includes applying a reset phase and a color transition phase to the display such that the sum of all impulses results in an offset that maintains a DC-balance across the display medium. The invention additionally includes controllers for executing the method.

Claims (34)

1. A method for driving an electrophoretic display having a front electrode, a backplane, and a display medium positioned between the front electrode and the backplane, the display medium comprising three sets of differently-colored particles, the method comprising:

applying a reset phase and a color transition phase to the display, the reset phase comprising:

applying a first signal having a first polarity, a first amplitude as a function of time, and a first duration on the front electrode;

applying no signal during the first duration on the backplane;

applying a second signal having a second polarity opposite the first polarity, a second amplitude as a function of time, during a second duration on the front electrode; and

applying a third signal having the first polarity, and a third amplitude as a function of time, during the second duration on the backplane;

the color transition phase comprising:

applying a fourth signal having the first polarity, a fourth amplitude as a function of time, and a third duration preceded by the first and second durations on the front electrode; and

applying a fifth signal having the second polarity, a fifth amplitude as a function of time, and a fourth duration preceded by the first and second durations on the backplane;

wherein the sum of the first amplitude as a function of time integrated over the first duration, and the sum of the second and third amplitudes as a function of time integrated over the second duration, and the fourth amplitude as a function of time integrated over the third duration, and the fifth amplitude as a function of time integrated over the fourth duration produces an impulse offset designed to maintain a DC-balance on the display medium over the reset phase and the color transition phase.

2. The method of claim 1 , wherein the fourth duration occurs during the third duration.

3. The method of claim 2 , wherein the third duration and the fourth duration initiate at the same time.

4. The method of claim 1 , wherein the reset phase erases previous optical properties rendered on the display.

5. The method of claim 1 , wherein the color transition phase substantially changes the optical property displayed by the display.

6. The method of claim 1 , wherein the first polarity is a negative voltage.

7. The method of claim 1 , wherein the first polarity is a positive voltage.

8. The method of claim 1 , wherein the impulse offset is proportional to a kickback voltage experienced by the display medium.

9. A controller for an electrophoretic display comprising a front electrode, a backplane, and a display medium positioned between the front electrode and the backplane, the display medium comprising three sets of differently-colored particles, the controller being operatively coupled to the front electrode and the backplane, and configured to apply a reset phase and a color transition phase to the display,

the reset phase comprising:

applying a reset phase and a color transition phase to the display, the reset phase comprising:

applying a first signal having a first polarity, a first amplitude as a function of time, and a first duration on the front electrode;

applying no signal during the first duration on the backplane;

applying a second signal having a second polarity opposite the first polarity, a second amplitude as a function of time, during a second duration on the front electrode; and

applying a third signal having the first polarity, and a third amplitude as a function of time, during the second duration on the backplane;

the color transition phase comprising:

applying a fourth signal having the first polarity, a fourth amplitude as a function of time, and a third duration preceded by the first and second durations on the front electrode; and

applying a fifth signal having the second polarity, a fifth amplitude as a function of time, and a fourth duration preceded by the first and second durations on the backplane;

wherein the sum of the first amplitude as a function of time integrated over the first duration, and the sum of the second and third amplitudes as a function of time integrated over the second duration, and the fourth amplitude as a function of time integrated over the third duration, and the fifth amplitude as a function of time integrated over the fourth duration produces an impulse offset designed to maintain a DC-balance on the display medium over the reset phase and the color transition phase.

10. The controller of claim 9 , wherein the controller applies a different reset phase depending upon the color to be displayed by the electrophoretic display.

11. The controller of claim 9 , wherein the display medium comprises white, cyan, yellow, and magenta particles.

12. The controller of claim 9 , wherein the display medium comprises white, red, blue, and green particles.

13. The controller of claim 9 , wherein the reset phase erases previous optical properties rendered on the display.

14. The controller of claim 9 , wherein the color transition phase substantially changes the optical property displayed by the display.

15. The controller of claim 9 , wherein the impulse offset is proportional to a kickback voltage experienced by the display medium.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2020
From: TELFER, STEPHEN J.; HOOGEBOOM, CHRISTOPHER L.; CROUNSE, KENNETH R.
To: E INK CORPORATION
Reel/Frame 051918/0669 →
Continuity (5)
Division 15916449 · Mar 9, 2018
Continuation In Part 15454276 · Mar 9, 2017
Provisional Application 62509512 · May 22, 2017
Provisional Application 62305833 · Mar 9, 2016
Related Publication 20200184907A1 · Jun 11, 2020