IP Library Granted Patent US 7,852,324
Granted Patent B2
US 7,852,324 · App. 11/490,835 · Granted Dec 14, 2010

Process of integrating a digitizer input device in a display

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Quick Facts
Patent No.
US 7,852,324
App. No.
11/490,835
Granted
Dec 14, 2010
Kind
B2
Abstract

A process for integrating digitizer sensor array into flat panel displays. The sensor array is formed on the side of the display element (e.g., LC layer or OLED layer) where the pixel control switches (e.g., thin film transistors (TFTs)) of the display module are present, or on the other side of the display element where the pixel control switches are not present. In particular, the sensor array may be formed (a) before planarization layer of the pixel control switches, (b) after forming the planarization layer of the pixel control switches, (c) prior to forming the pixel control switches (e.g., formed on the substrate, before or after forming an electrode on the substrate), and/or (d) formed above or below a color filter layer, e.g., in the case of an LCD module, or above or below the encapsulating layer, e.g., in the case of an OLED display module.

Claims (38)

1. A process of forming a digitizer for user input with respect to a display module, comprising:

providing a display module having a display element, which comprises a first substrate and a second substrate at a distance from the first substrate, defining a space therebetween, in which the display element is supported;

providing the digitizer in the space defined by the first substrate and second substrate, between the display element and one of the first substrate and second substrate; and

forming an array of pixel control switches on the first substrate, wherein the digitizer is formed between the array of pixel control switches and one of (a) the display element, and (b) the first substrate.

2. A process as in claim 1 , wherein the digitizer comprises an electromagnetic digitizer.

3. A process as in claim 1 , wherein the digitizer comprises a sensor array that is formed using a semiconductor process.

4. A process as in claim 3 , wherein the semiconductor process includes a photolithography process.

5. A process as in claim 1 , further comprising disposing a planarization layer between the array of pixel control switches and the display element, wherein the digitizer is formed between the planarization layer and at least one of: (a) the display element, and (b) the array of pixel control switches.

6. A process as in claim 1 , wherein the array of pixel control switches comprises an array of thin film transistors (TFTs).

7. A process as in claim 6 , wherein the TFTs are of at least one of LPTS TFT type and a-Si TFT type.

8. A process of forming a display device, comprising:

providing a display module comprising a digitizer formed according to the process in claim 1 ; and

providing a controller operatively coupled to the display module including the digitizer, to synchronize operation of the display element and the digitizer.

9. A process of forming a display system, comprising:

providing a display device formed according to the process in claim 8 ; and

providing an interface controller coupled to the display device, exchanging image data and user input data from the digitizer with a controller in an electronic device.

10. A process of forming an electronic device, comprising:

providing a display system formed according to the process in claim 9 ; and

providing a controller operatively coupled to the interface controller of the display system, to exchange image data and user input data from the electromagnetic digitizer.

11. A process of forming a digitizer for user input with respect to a display module, comprising:

providing a display module having a display element, which comprises a first substrate and a second substrate at a distance from the first substrate, defining a space therebetween, in which the display element is supported;

providing the digitizer in the space defined by the first substrate and second substrate between the display element and one of the first substrate and second substrate

forming an array of pixel control switches on the first substrate, wherein the digitizer is formed between the display element and the second substrate; and

forming a color filter layer between the second substrate and the display element, wherein the digitizer is formed between the color filter layer and the display element.

12. A process as in claim 11 , wherein the display element comprises a liquid crystal display element.

13. A process as in claim 11 , further comprising forming an encapsulating layer between the second substrate and the display element, wherein the digitizer is formed between the encapsulating layer and the display element.

14. A process as in claim 13 , wherein the display element comprises an OLED display element.

15. A process for integrating a digitizer in a display module having a display element, comprising:

providing a first substrate;

positioning a second substrate at a distance from the first substrate, defining a space therebetween, in which the display element is supported;

providing the digitizer in the space defined by the first substrate and second substrate, between the display element and one of the first substrate and second substrate; and

forming an array of pixel control switches on the first substrate, wherein the digitizer is formed between the array of pixel control switches and one of (a) the display element, and (b) the first substrate.

16. A method of providing user input to an electronic device, comprising:

providing a display module having a display element, which comprises a first substrate, a second substrate positioned at a distance from the first substrate, defining a space therebetween, in which the display element is supported;

providing a digitizer in the space defined by the first substrate and second substrate, between the display element and one of the first substrate and second substrate; and

forming an array of pixel control switches on the first substrate, wherein the digitizer is formed between the array of pixel control switches and one of (a) the display element, and (b) the first substrate.

17. A method as in claim 16 , wherein the digitizer comprises an electromagnetic digitizer.

18. A method as in claim 17 , wherein operation of the digitizer is synchronized to an image displayed by the display module, such that a user can input using the digitizer in response to the image displayed.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 18, 2024
From: INNOLUX CORPORATION
To: RED OAK INNOVATIONS LIMITED
Reel/Frame 069206/0903 →
MERGER Recorded Apr 13, 2014
From: TPO DISPLAYS CORP.
To: CHIMEI INNOLUX CORPORATION
Reel/Frame 032672/0856 →
CHANGE OF NAME Recorded Apr 13, 2014
From: CHIMEI INNOLUX CORPORATION
To: INNOLUX CORPORATION
Reel/Frame 032672/0897 →