IP Library Granted Patent US 11,436,962
Granted Patent B2
US 11,436,962 · App. 17/148,388 · Granted Sep 6, 2022

Device and method for driving a display panel

Inventors: Hirobumi Furihata (Tokyo, JP); Masao Orio (Tokyo, JP); Takashi Nose (Kanagawa, JP); Akio Sugiyama (Tokyo, JP)
Assignee: Synaptics Incorporated
G09G3/20G09G2310/027G09G2320/0276G09G2320/0285G09G2320/0626G09G2320/0673
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Quick Facts
Patent No.
US 11,436,962
App. No.
17/148,388
Granted
Sep 6, 2022
Kind
B2
Abstract

A display driver includes control circuitry and image processing circuitry. The control circuitry is configured to store first and second predetermined gamma curve defined for first and second regions of a display panel, respectively, the first region having a different pixel layout than the second region. The control circuitry is further configured to determine first and second modified gamma curves by scaling the first and second predetermined gamma curves with a common scale factor. The image processing circuitry is configured to apply a first gamma transformation based on the first modified gamma curve to a first graylevel defined for a first pixel circuit located in the first region to determine a first output voltage level and apply a second gamma transformation based on the second modified gamma curve to a second graylevel defined for a second pixel circuit located in the second region to determine a second output voltage level.

Claims (62)

1. A display driver, comprising:

control circuitry configured to:

store a first predetermined gamma curve defined for a first region of a display panel and a second predetermined gamma curve defined for a second region of the display panel, the first region having a different pixel layout than the second region,

determine a common scale factor based on a display brightness value (DBV),

determine a first modified gamma curve by scaling the first predetermined gamma curve with the common scale factor, and

determine a second modified gamma curve by scaling the second predetermined gamma curve with the common scale factor,

wherein the common scale factor for scaling the second predetermined gamma curve is the same as the common scale factor for scaling the first predetermined gamma curve; and

image processing circuitry configured to:

apply a first gamma transformation based on the first modified gamma curve to a first graylevel defined for a first pixel circuit located in the first region to determine a first output voltage level, and

apply a second gamma transformation based on the second modified gamma curve to a second graylevel defined for a second pixel circuit located in the second region to determine a second output voltage level.

2. The display driver of claim 1 , wherein the first predetermined gamma curve and the second predetermined gamma curve are scaled with the common scale factor along a first axis that represents graylevels.

3. The display driver of claim 2 , wherein the first predetermined gamma curve is defined with a set of first control points, and

wherein scaling the first predetermined gamma curve comprises moving the first control points along the first axis based on the common scale factor.

4. The display driver of claim 1 , further comprises data driver circuitry configured to:

update the first pixel circuit with the first output voltage level; and

update the second pixel circuit with the second output voltage level.

5. The display driver of claim 1 , wherein the control circuitry is further configured to:

determine a desired display brightness level of the display panel based on the DBV received from an entity external to the display driver; and

determine the common scale factor based on the desired display brightness level.

6. The display driver of claim 1 , the control circuitry is further configured to control a ratio of a number of pixel circuits that emit light to a total number of pixel circuits of the display panel; wherein controlling the ratio comprises: controlling the ratio based on the DBV in a first range of the DBV; and maintaining the ratio in a second range of the DBV, wherein the control circuitry is further configured to determine the common scale factor based on the DBV in both the first range and the second range.

7. The display driver of claim 6 , wherein the first predetermined gamma curve is defined with a set of first control points,

wherein determining the first modified gamma curve comprises modifying locations of the first control points along a second axis that represents output voltage levels.

8. The display driver of claim 7 , wherein the control circuitry comprises:

a first lookup table comprising the locations of the first control points along the second axis for a lower limit of the first range of the DBV; and

a second lookup table comprising the locations of the first control points along the second axis for an upper limit of the first range of the DBV, and

wherein determining the first modified gamma curve is based on the first lookup table and the second lookup table.

9. The display driver of claim 1 , the control circuitry is further configured to control a power source voltage supplied to the display panel,

wherein controlling the power source voltage comprises:

maintaining the power source voltage in a first range of the DBV,

controlling the power source voltage based on the DBV in a second range of the DBV, and

wherein the control circuitry is further configured to determine the common scale factor based on the DBV in both the first range and the second range.

10. The display driver of claim 9 , wherein the first predetermined gamma curve is defined with a set of first control points,

wherein determining the first modified gamma curve comprises modifying locations of the first control points along a second axis that represents output voltage levels.

11. The display driver of claim 10 , wherein the control circuitry comprises:

a first lookup table comprising the locations of the first control points for a lower limit of the second range of the DBV; and

a second lookup table comprising the locations of the first control points for an upper limit of the first range of the DBV, and

wherein determining the first modified gamma curve is based on the first lookup table and the second lookup table.

12. The display driver of claim 1 , wherein the second region has a lower pixel density than that of the first region.

13. The display driver of claim 1 , wherein the first region comprises a camera hole region under which a camera is disposed.

14. A display device, comprising:

a display panel comprising a first region and a second region, the first region having a different pixel layout than the second region; and

a display driver comprising:

control circuitry configured to:

store a first predetermined gamma curve defined for the first region and a second predetermined gamma curve defined for the second region,

determine a common scale factor based on a display brightness value (DBV);

determine a first modified gamma curve by scaling the first predetermined gamma curve with the common scale factor, and

determine a second modified gamma curve by scaling the second predetermined gamma curve with the common scale factor,

wherein the common scale factor for scaling the second predetermined gamma curve is the same as the common scale factor for scaling the first predetermined gamma curve; and

image processing circuitry configured to:

apply a first gamma transformation based on the first modified gamma curve to a first graylevel defined for a first pixel circuit located in the first region to determine a first output voltage level, and

apply a second gamma transformation based on the second modified gamma curve to a second graylevel defined for a second pixel circuit located in the second region to determine a second output voltage level; and

data driver circuitry configured to:

update the first pixel circuit with the first output voltage level, and

update the second pixel circuit with the second output voltage level.

15. The display device of claim 14 , wherein the first predetermined gamma curve and the second predetermined gamma curve are scaled with the common scale factor along a first axis that represents graylevels.

16. A method, comprising:

determining a common scale factor based on a display brightness value (DBV);

determining a first modified gamma curve by scaling a first predetermined gamma curve defined for a first region of a display panel with the common scale factor;

determining a second modified gamma curve by scaling a second predetermined gamma curve defined for a second region of the display panel with the common scale factor, the first region having a different pixel layout than the second region, wherein the common scale factor for scaling the second predetermined gamma curve is the same as the common scale factor for scaling the first predetermined gamma curve;

applying a first gamma transformation based on the first modified gamma curve to a first graylevel defined for a first pixel circuit located in the first region to determine a first output voltage level for the first pixel circuit; and

applying a second gamma transformation based on the second modified gamma curve to a second graylevel defined for a second pixel circuit located in the second region to determine a second output voltage level for the second pixel circuit.

17. The method of claim 16 , wherein, scaling the first predetermined gamma curve and the second predetermined gamma curve are scaled with the common scale factor along a first axis that represents graylevel.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2021
From: FURIHATA, HIROBUMI; ORIO, MASAO; NOSE, TAKASHI; SUGIYAMA, AKIO
To: SYNAPTICS INCORPORATED
Reel/Frame 056419/0582 →
SECURITY INTEREST Recorded Mar 12, 2021
From: SYNAPTICS INCORPORATED
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 055581/0737 →