IP Library Granted Patent US 9,299,295
Granted Patent B2
US 9,299,295 · App. 14/136,980 · Granted Mar 29, 2016

Display driving method

Inventors: Henricus Petronella Maria Derckx (Weert, NL); Jozef Elisabeth Aubert (Roermond, NL); Johannes Wilhelmus Hendrikus Mennen (Budel, NL)
Assignee: Amazon Technologies, Inc.
G09G3/348G09G3/2011G09G3/2014G09G2300/0452G09G2300/08G09G2310/0213G09G2310/0218G09G2310/0251G09G2310/0254G09G2320/106G09G2330/021G09G2340/0435G09G2360/16
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Quick Facts
Patent No.
US 9,299,295
App. No.
14/136,980
Granted
Mar 29, 2016
Kind
B2
Abstract

A method of driving an electrowetting display device having at least one display element for displaying a display effect. The method determines a change in the display effect. Depending on the change the display element may be DC driven or AC driven.

Claims (86)

1. A method of driving a display element of an electrowetting display device, the method comprising:

receiving data representing a display effect for display by the display element;

selecting a driving scheme for driving the display element to display the display effect, in dependence on a characteristic of the data and from at least:

a) a DC driving scheme in which all voltages applied to the display element which are indicative of the display effect have the same polarity; and

b) an AC driving scheme in which voltages applied to the display element which are indicative of the display effect comprise at least two voltages having different polarities; and

driving the display element using the driving scheme selected in dependence on the characteristic of the data.

2. A method according to claim 1 , in which the characteristic of the data represents a frame rate of driving the display element, the frame rate being indicative of a rate of consecutively addressing the display element to change the display effect of the display element.

3. A method according to claim 2 , comprising:

determining that the frame rate is lower than a predefined frame rate,

the selecting the driving scheme comprising selecting the DC driving scheme, and

the driving the display element comprising driving the display element using the DC driving scheme.

4. A method according to claim 1 , the receiving data comprising:

receiving first display effect data representing a first display effect for display by the display element; and

receiving second display effect data representing a second display effect for display by the display element subsequent to display of the first display effect,

the method further comprising:

comparing the first display effect data and the second display effect data to determine a difference value indicative of a change between the first display effect and the second display effect, the characteristic of the data representing the difference value.

5. A method according to claim 4 , in which the difference value represents a magnitude of the change between the first display effect and the second display effect.

6. A method according to claim 4 , in which the electrowetting display device has a plurality of display elements, the plurality of display elements comprising the display element, the difference value representing a number of display elements of the plurality of display elements with the change between the first display effect and the second display effect larger than a predefined change.

7. A method according to claim 4 , in which the electrowetting display device has a plurality of display elements, the plurality of display elements comprising the display element, the method further comprising:

arranging the changes between the first display effect and the second display effect for each display element of the plurality of display elements in a histogram; and

deriving the characteristic of the data from the histogram.

8. A method according to claim 1 , the driving the display element comprising driving the display element using the DC driving scheme, the method further comprising:

applying a reset pulse to the display element to reduce backflow in the display element.

9. A method according to claim 1 , the driving the display element comprising driving the display element using the AC driving scheme, the display effect being a display effect for display by the display element for a plurality of frames, the method further comprising:

applying a first voltage of the at least two voltages to the display element, the first voltage having a first polarity; and

in a subsequent frame of the plurality of frames, applying a second voltage of the at least two voltages to the display element, the second voltage having a second polarity opposite the first polarity.

10. A display controller for driving a display element of an electrowetting display device, the display controller comprising at least one processor, and at least one memory including computer program instructions,

the at least one memory and the computer program instructions being configured to, with the at least one processor, cause the display controller to perform a method of driving the electrowetting display device comprising:

receiving data representing a display effect for display by the display element;

selecting a driving scheme for driving the display element to display the display effect, in dependence on a characteristic of the data and from at least:

a) a DC driving scheme in which all voltages applied to the display element which are indicative of the display effect have the same polarity; and

b) an AC driving scheme in which voltages applied to the display element which are indicative of the display effect comprise at least two voltages having different polarities; and

driving the display element using the driving scheme selected in dependence on the characteristic of the data.

11. A display controller according to claim 10 , in which the characteristic of the data represents a frame rate of driving the display element, the frame rate being indicative of a rate of consecutively addressing the display element to change the display effect of the display element.

12. A display controller according to claim 11 , in which the method comprises:

determining that the frame rate is lower than a predefined frame rate,

the selecting the driving scheme comprising selecting the DC driving scheme, and

the driving the display element comprising driving the display element using the DC driving scheme.

13. A display controller according to claim 10 , receiving data comprising:

receiving first display effect data representing a first display effect for display by the display element; and

receiving second display effect data representing a second display effect for display by the display element subsequent to display of the first display effect, the method further comprising:

comparing the first display effect data and the second display effect data to determine a difference value indicative of a change between the first display effect and the second display effect, the characteristic of the data representing the difference value.

14. A display controller according to claim 13 , in which the difference value represents a magnitude of the change between the first display effect and the second display effect.

15. A display controller according to claim 13 , in which the electrowetting display device has a plurality of display elements, the plurality of display elements comprising the display element, the difference value representing a number of display elements of the plurality of display elements with the change between the first display effect and the second display effect larger than a predefined change.

16. A display controller according to claim 13 , in which the electrowetting display device has a plurality of display elements, the plurality of display elements comprising the display element, the method further comprising:

arranging the changes between the first display effect and the second display effect for each display element of the plurality of display elements in a histogram; and

deriving the characteristic of the data from the histogram.

17. A display controller according to claim 10 , configured to, with the driving the display element comprising driving the display element using the DC driving scheme:

apply a reset pulse to the display element to reduce backflow in the display element.

18. A display controller according to claim 10 , the display effect being a display effect for display by the display element for a plurality of frames, the display controller being configured to, with the driving the display element comprising driving the display element using the AC driving scheme:

apply a first voltage of the at least two voltages to the display element, the first voltage having a first polarity; and

in a subsequent frame of the plurality of frames, apply a second voltage of the at least two voltages to the display element, the second voltage having a second polarity opposite the first polarity.

19. A method according to claim 2 , comprising:

determining that the frame rate is equal to or higher than a predefined frame rate,

the selecting the driving scheme comprising selecting the AC driving scheme, and

the driving the display element comprising driving the display element using the AC driving scheme.

20. A display controller according to claim 11 , in which the method comprises:

determining that the frame rate is equal to or higher than a predefined frame rate,

the selecting the driving scheme comprising selecting the AC driving scheme, and

the driving the display element comprising driving the display element using the AC driving scheme.

21. An electrowetting display apparatus comprising:

an electrowetting display device comprising a plurality of display elements, the plurality of display elements comprising a display element having:

a first support plate,

a second support plate,

a first fluid and a second fluid immiscible with the first fluid, the first fluid and the second fluid located between the first support plate and the second support plate,

at least one electrode configured to apply a voltage to change a configuration of the first fluid and the second fluid;

a display driver connected to the at least one electrode and configured to output the voltage to change the configuration of the first fluid and the second fluid; and

a display controller comprising at least one processor, and at least one memory comprising computer program instructions, the at least one memory and the computer program instructions being configured to, with the at least one processor, cause the display controller to, using the display driver, perform a method of driving the display element comprising:

receiving data representing a display effect for display by the display element;

selecting a driving scheme for driving the display element to display the display effect, in dependence on a characteristic of the data and from at least:

a) a DC driving scheme in which all voltages applied to the display element which are indicative of the display effect have the same polarity; and

b) an AC driving scheme in which voltages applied to the display element which are indicative of the display effect comprise at least two voltages having different polarities; and

driving the display element using the driving scheme selected in dependence on the characteristic of the data.

22. An electrowetting display apparatus according to claim 21 , in which the characteristic of the data represents a frame rate of driving the display element, the frame rate being indicative of a rate of consecutively addressing the display element to change the display effect of the display element.

23. An electrowetting display apparatus according to claim 22 , in which the method comprises:

determining that the frame rate is lower than a predefined frame rate,

the selecting the driving scheme comprising selecting the DC driving scheme, and

the driving the display element comprising driving the display element using the DC driving scheme.

24. An electrowetting display apparatus according to claim 22 , in which the method comprises:

determining that the frame rate is equal to or higher than a predefined frame rate,

the selecting the driving scheme comprising selecting the AC driving scheme, and

the driving the display element comprising driving the display element using the AC driving scheme.

25. An electrowetting display apparatus according to claim 21 , the receiving data comprising:

receiving first display effect data representing a first display effect for display by the display element; and

receiving second display effect data representing a second display effect for display by the display element subsequent to display of the first display effect, the method further comprising:

comparing the first display effect data and the second display effect data to determine a difference value indicative of a change between the first display effect and the second display effect, the characteristic of the data representing the difference value.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2014
From: DERCKX, HENRICUS PETRONELLA MARIA; AUBERT, JOZEF ELISABETH; MENNEN, JOHANNES WILHELMUS HENDRIKUS
To: AMAZON TECHNOLOGIES, INC.
Reel/Frame 033571/0255 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2014
From: DERCKX, HENRICUS PETRONELLA MARIE; AUBERT, JOZEF ELISABETH; MENNEN, JOHANNES WILHELMUS HENDRIKUS
To: AMAZON TECHNOLOGIES, INC.
Reel/Frame 033457/0955 →
BILL OF SALE Recorded Jul 29, 2014
From: LIQUAVISTA B.V.
To: AMAZON TECHNOLOGIES, INC.
Reel/Frame 033792/0968 →
Continuity (1)
Related Publication 20150179097A1 · Jun 25, 2015