IP Library Granted Patent US 12,688,826
Granted Patent B2
US 12,688,826 · App. 18/740,082 · Granted Jul 21, 2026

Display device and operating method thereof

Inventors: Hakmo Choi (Yongin-si, KR); Seyun Kim (Yongin-si, KR); Huisu Kim (Yongin-si, KR); Hyungwoo Yim (Yongin-si, KR)
Assignee: SAMSUNG DISPLAY CO., LTD.
G09G3/3233G09G3/2007G09G3/2092G09G2300/0819G09G2300/0842G09G2300/0861G09G2320/0242G09G2330/028
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Quick Facts
Patent No.
US 12,688,826
App. No.
18/740,082
Granted
Jul 21, 2026
Kind
B2
Abstract

A display device includes: a display panel, which includes a pixel; a voltage generator, which generates a driving voltage for an operation of the display panel; and a driving controller, which receives an input image signal and outputs an output image signal obtained by compensating for the input image signal based on a characteristic of the display panel. The driving controller includes: a control unit, which outputs an error correction value corresponding to a voltage difference between a voltage level of the driving voltage provided from the voltage generator and a voltage level stored in advance in the control unit when the driving voltage is provided from the voltage generator; and an image correction unit. which converts the input image signal into the output image signal based on the error correction value.

Claims (50)

1 . A display device comprising:

a display panel including a pixel;

a voltage generator configured to generate a driving voltage for an operation of the display panel; and

a driving controller configured to receive an input image signal and to output an output image signal obtained by compensating for the input image signal based on a voltage difference between a voltage level of the driving voltage and a voltage level of a test driving voltage stored in advance,

wherein the driving controller includes:

a control unit configured to output a first error correction value and a second error correction value; and

an image correction unit configured to convert the input image signal into the output image signal based on the first error correction value and the second error correction value,

wherein the control unit configured to:

determine whether voltage information of the driving voltage provided from the voltage generator coincides with voltage information stored in advance when the voltage information of the driving voltage is provided from the voltage generator;

when the voltage information stored in advance does not coincide with the voltage information of the driving voltage provided from the voltage generator, determine whether a sensing compensation history exists; and

when the sensing compensation history does not exist, provide the first error correction value for error correction of sensing compensation and the second error correction value for error correction of optical compensation.

2 . The display device of claim 1 , wherein the test driving voltage stored in advance in the control unit is generated from a test-dedicated voltage generator used in a manufacturing process.

3 . The display device of claim 2 , wherein the sensing compensation is to compensate for a voltage difference between a voltage of a data signal provided to the pixel and a sensing voltage fed back from the pixel.

4 . The display device of claim 2 , further comprising:

a data driving circuit configured to convert the output image signal into a data signal based on the driving voltage and to provide the data signal to the pixel.

5 . The display device of claim 4 , wherein the optical compensation is to compensate for a color characteristic variance between grayscales of the data signal provided to the display panel.

6 . The display device of claim 1 , wherein the control unit further outputs a voltage control signal for changing the voltage level of the driving voltage.

7 . The display device of claim 6 , wherein the voltage generator changes the voltage level of the driving voltage in response to the voltage control signal.

8 . A display device comprising:

a display panel including a pixel;

a voltage generator configured to generate a driving voltage for an operation of the display panel; and

a driving controller configured to receive an input image signal and to output an output image signal obtained by compensating for the input image signal based on a voltage difference between a voltage level of the driving voltage and a voltage level of a test driving voltage stored in advance,

wherein the driving controller includes:

a control unit configured to output a first error correction value and a second error correction value;

an image correction unit configured to output an intermediate image signal obtained by compensating for the input image signal based on a characteristic of the display panel; and

a voltage difference compensation lookup table configured to convert the intermediate image signal into the output image signal based on the first error correction value and the second error correction value,

wherein the control unit configured to:

determine whether voltage information of the driving voltage provided from the voltage generator coincides with voltage information stored in advance when the voltage information of the driving voltage is provided from the voltage generator;

when the voltage information stored in advance does not coincide with the voltage information of the driving voltage provided from the voltage generator, determine whether a sensing compensation history exists; and

when the sensing compensation history does not exist, provide the first error correction value for error correction of sensing compensation and the second error correction value for error correction of optical compensation.

9 . The display device of claim 8 , wherein the test driving voltage stored in advance in the control unit is generated from a test-dedicated voltage generator used in a manufacturing process.

10 . The display device of claim 9 , wherein the sensing compensation is to compensate for a voltage difference between a voltage of a data signal provided to the pixel and a sensing voltage fed back from the pixel.

11 . The display device of claim 9 , further comprising:

a data driving circuit configured to convert the output image signal into a data signal based on the driving voltage and to provide the data signal to the pixel.

12 . The display device of claim 11 , wherein the optical compensation is to compensate for a color characteristic variance between grayscales of the data signal provided to the display panel.

13 . The display device of claim 8 , wherein the control unit further outputs a voltage control signal for changing the voltage level of the driving voltage.

14 . The display device of claim 13 , wherein the voltage generator changes the voltage level of the driving voltage in response to the voltage control signal.

15 . An operating method of a display device, the method comprising:

determining whether voltage information of a driving voltage provided from a voltage generator coincides with voltage information stored in advance when the voltage information of the driving voltage is provided from the voltage generator;

when the voltage information stored in advance does not coincide with the voltage information of the driving voltage provided from the voltage generator, determining whether a sensing compensation history exists;

when the sensing compensation history does not exist, providing a first error correction value for error correction of sensing compensation and a second error correction value for error correction of optical compensation; and

compensating for an input image signal based on the first error correction value and the second error correction value and proving an output image signal, which is obtained by compensating for the input image signal, to a display panel.

16 . The method of claim 15 , further comprising:

when it is determined that the sensing compensation history exists,

determining whether a difference value of the voltage information stored in advance and the voltage information of the driving voltage provided from the voltage generator is capable of being compensated for by the sensing compensation; and

when it is determined that the difference value of the voltage information stored in advance and the voltage information of the driving voltage provided from the voltage generator is capable of being compensated for by the sensing compensation, compensating for the input image signal based on the second error correction value and outputting the output image signal, which is obtained by compensating for the input image signal based on the second error correction value.

17 . The method of claim 16 , further comprising:

when it is determined that the difference value of the voltage information stored in advance and the voltage information of the driving voltage provided from the voltage generator is incapable of being compensated by the sensing compensation, compensating for the input image signal based on the first error correction value and the second error correction value and outputting the output image signal, which is obtained by compensating for the input image signal based on the first error correction value and the second error correction value.

18 . The method of claim 15 , wherein the sensing compensation is to compensate for a voltage difference between a voltage of a data signal provided to a pixel of the display panel and a sensing voltage fed back from the pixel, and

wherein the optical compensation is to compensate for a color characteristic variance between grayscales of the data signal provided to the display panel.