Driving display device and display driving method

TWI937924BActive Publication Date: 2026-09-01AU OPTRONICS CORP
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Patent Information

Application Number
TW114124478
Authority / Receiving Office
TW · TW
Patent Type
Patents
Current Assignee / Owner
Filing Date
2025-06-27
Publication Date
2026-09-01
Estimated Expiration
2045-06-26

Smart Images

  • Figure TWG2TB001908912_001
    Figure TWG2TB001908912_001
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    Figure TWG2TB001908912_002
  • Figure TWG2TB001908912_003
    Figure TWG2TB001908912_003
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Abstract

A display driving device includes a sensing electrode array, transmission lines, a light-emitting circuit, and a scan driver. The sensing electrode array includes first sensing electrodes arranged along a first direction. The number of transmission lines is first greater than a second number, whereby the second number is equal to the width of one of the first sensing electrodes divided by the spacing between the transmission lines. In a planar viewing angle, the transmission lines overlap with the sensing electrode array. The light-emitting circuit includes a light emitter and a switch coupled to the light emitter. The scan driver transmits a first scan signal from the scan signals via the transmission lines to the switch to turn it on, causing the light emitter to emit light in response to the first scan signal.
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Claims

1. A driving display device, comprising: A sensing electrode array includes: a plurality of first sensing electrodes arranged along a first direction; A plurality of transmission lines have a first number that overlap with the sensing electrode array in a planar view, wherein each of the first sensing electrodes overlaps with a second number of the transmission lines, the first number being greater than the second number, the second number being equal to a width of each of the first sensing electrodes divided by a spacing between the transmission lines; a light-emitting circuit includes: at least one light emitter; and at least one switch coupled to the at least one light emitter; and a scan driver for transmitting a first scan signal from a plurality of scan signals to the at least one switch via the transmission lines to turn on the at least one switch, such that the at least one light emitter emits light in response to the first scan signal.

2. The driving display device as described in claim 1, further comprising: A touch driver is used to output a plurality of touch driving signals to the sensing electrode array to detect a plurality of touch results.

3. The driving display device as claimed in claim 2, wherein the sensing electrode array outputs a plurality of sensing signals to the touch driver based on the touch results, and the touch driver generates a plurality of sensing result signals based on the sensing signals.

4. The driving display device as described in claim 3, further comprising: A signal converter is used to receive the sensing result signals and output a plurality of data signals to the light-emitting circuit based on the sensing result signals.

5. The driving display device as claimed in claim 1, wherein the sensing electrode array further comprises: A plurality of second sensing electrodes are arranged above the first sensing electrodes along a second direction; The first direction and the second direction are perpendicular to each other.

6. The driving display device as claimed in claim 1, wherein the at least one switch comprises a plurality of switches, and one of the switches is coupled to a corresponding one of the transmission lines.

7. The driving display device as claimed in claim 1, wherein the at least one switch comprises a plurality of switches, and the switches are coupled to one of the transmission lines.

8. The driving display device as claimed in claim 1, wherein the at least one emitter comprises a plurality of emitters, and the at least one switch comprises a plurality of switches, the emitters being coupled to a corresponding one of the switches; wherein, These emitters emit light in response to the first scan signal.

9. A display driving method, comprising: In a first period, a plurality of sensing signals are received from a sensing electrode array via a touch driver; a plurality of sensing result signals are output to a signal converter via the touch driver based on the sensing signals; a plurality of data signals are output to a light-emitting circuit via the signal converter based on the sensing result signals; and in a second period following the first period, a plurality of scan signals are transmitted to the light-emitting circuit via a plurality of transmission lines via a scan driver, so that at least one light emitter in the light-emitting circuit emits light according to the data signals; wherein the second period is greater than a ratio multiplied by a time unit, the ratio being equal to a width of one of the plurality of sensing electrodes in the sensing electrode array divided by a spacing between the transmission lines.

10. The display driving method as described in claim 9, further comprising: During the first period, the touch driver outputs a plurality of touch driving signals to the sensing electrode array to detect a plurality of touch results.

Citation Information

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