IP Library Granted Patent US 12664921
Granted Patent B2
US 12664921 · App. 18/986,262 · Granted Jun 23, 2026

Display apparatus and driving method thereof

Inventor: Seong Ho Yun (Paju-si, KR)
Assignee: LG DISPLAY CO., LTD.
G09G3/006G09G3/3233G09G2300/0842G09G2310/0243G09G2310/0264G09G2310/0286G09G2310/08G09G2320/045G09G2330/12
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Quick Facts
Patent No.
US 12664921
App. No.
18/986,262
Granted
Jun 23, 2026
Kind
B2
Abstract

A display apparatus can include a display panel including a subpixel connected to a data line, a bias voltage output circuit configured to output a bias voltage, a switch circuit configured to apply the bias voltage output from the bias voltage output circuit to the data line, and a controller. Also, the controller is configured to receive degradation information about a driving transistor included in the subpixel, and generate a switch control signal for controlling the switch circuit based on the degradation information.

Claims (45)

1 . A display apparatus comprising:

a display panel including a subpixel connected to a data line;

a bias voltage output circuit configured to output a bias voltage;

a switch circuit configured to apply the bias voltage, output from the bias voltage output circuit, to the data line; and

a controller configured to:

receive degradation information about a driving transistor included in the subpixel, and

generate a switch control signal for controlling the switch circuit based on the degradation information,

wherein a turn-on time of the switch circuit varies based on an amount of threshold voltage shift of the driving transistor.

2 . The display apparatus of claim 1 , wherein the bias voltage is applied to a gate electrode of the driving transistor.

3 . The display apparatus of claim 1 , wherein the controller generates the switch control signal, based on a threshold voltage shift average value of the driving transistor calculated based on a total amount of subpixels in the display panel.

4 . The display apparatus of claim 3 , wherein the controller is further configured to:

generate the switch control signal having a switch off signal level for a subpixel of a color, which is less than a threshold voltage shift average value of the driving transistor, and

generate the switch control signal having a switch on signal level for a subpixel of a color, which is greater than the threshold voltage shift average value of the driving transistor.

5 . The display apparatus of claim 1 , wherein the switch circuit includes a plurality of switches, and

wherein each of the plurality of switches includes a first electrode connected to an output terminal of the bias voltage output circuit in common, a second electrode divisionally connected to a corresponding data line of the display panel, and a control electrode connected to a control signal line configured to receive the switch control signal.

6 . The display apparatus of claim 5 , wherein all of turn-on times of the plurality of switches are equal to one another, or at least one of the turn-on times of the plurality of switches is different.

7 . The display apparatus of claim 1 , wherein the switch circuit includes a plurality of switches respectively corresponding to data lines of red, green, white and blue subpixels included in the display panel.

8 . The display apparatus of claim 1 , wherein the controller is further configured to calculate the degradation information about the driving transistor based on a sensing value transferred from a driver configured to drive the display panel.

9 . A driving method of a display apparatus including a display panel, the driving method comprising:

driving the display panel;

generating a switch control signal for controlling a switch circuit disposed in the display panel when the display panel is in a non-driving state, based on degradation information about a driving transistor included in a subpixel of the display panel; and

controlling the switch circuit to apply a bias voltage, output from a bias voltage output circuit, to the subpixel through a data line of the display panel, based on the switch control signal,

wherein a turn-on time of the switch circuit varies based on an amount of threshold voltage shift of the driving transistor.

10 . The driving method of claim 9 , wherein the switch circuit includes a plurality of switches, and

wherein all of turn-on times of the plurality of switches are equal to one another, or at least one of the turn-on times of the plurality of switches is different.

11 . The driving method of claim 9 , wherein the bias voltage is applied to a gate electrode of the driving transistor.

12 . The driving method of claim 9 , wherein the switch control signal is generated based on a threshold voltage shift average value of the driving transistor calculated based on a total amount of subpixels in the display panel.

13 . The driving method of claim 12 , wherein the switch circuit includes a plurality of switches, and

wherein all of turn-on times of the plurality of switches are equal to one another, or at least one of the turn-on times of the plurality of switches is different.

14 . The driving method of claim 9 , wherein the switch control signal is generated as a switch off signal level for subpixel of a color being less than a threshold voltage shift average value of the driving transistor, and as a switch on signal level for subpixel of a color being greater than the threshold voltage shift average value of the driving transistor.

15 . A display apparatus comprising:

a display panel including a plurality of subpixels, a plurality of data lines and a plurality gate lines;

a data driver connected to the plurality of data lines;

a gate driver connected to the plurality of gate lines and connected to a bias voltage supply line;

a plurality of switches respectively connected between the plurality of data lines and the bias voltage supply line; and

a controller configured to:

receive degradation information corresponding to at least one of the plurality of subpixels, and

generate a switch control signal based on the degradation information, and supply the switch control signal to at least one of the plurality of switches to connect at least one of the plurality of data lines with the bias voltage supply line, and supply a bias voltage to the at least one of the plurality of subpixels from the gate driver via the bias voltage supply line.

16 . The display apparatus of claim 15 , wherein a first column of subpixels connected to a first data line among the plurality of data lines have a same first color,

wherein a second column of subpixels connected to a second data line among the plurality of data lines have a same second color different than the first color, and

wherein the controller is further configured to supply a first compensation amount to the first column of subpixels having the same first color and a second compensation amount to the second column of subpixels having the same second color, the first compensation amount being different than the second compensation amount.

17 . The display apparatus of claim 15 , wherein the controller is further configured to:

supply a switch control signal to the plurality switches for compensating one or more of the plurality of subpixels during a non-driving period of the display panel.

18 . The display apparatus of claim 15 , wherein the controller is further configured to:

vary pulse widths of switch control signals supplied to the plurality switches for providing different amounts of bias compensation to different columns of subpixels among the plurality of subpixels.