This application claims the priority benefit of Taiwan application serial no. 98145635, filed on Dec. 29, 2009. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
1. Field of the Invention
The invention relates to an active device array substrate and a touch display panel. More particularly, the invention relates to an active device array substrate with a simple structure and fabrication process, and a touch display panel having the same.
2. Description of Related Art
With booming development of electronic technology, and popularisation of wireless communications and networks, various electronic devices gradually become indispensable tools in people's daily life. However, a commonly used input/output (I/O) interface such as a keyboard or a mouse has a certain degree of operational difficulty. Comparatively, a touch panel is an intuitive and simple I/O interface. Therefore, the touch panel is generally used as a communication interface between a user and an electronic device to perform control.
Generally, the touch panels can be grouped into resistive touch panels, capacitive touch panels, optical touch panels, and acoustic touch panels, etc. A development trend of the electronic products is to integrate the touch panel with a display panel. Taking a commonly used resistive touch panel or a capacitive touch panel as an example, a design of the touch panel is to use two layers of electrode layers to perform scanning and sensing operations. Therefore, to integrate the touch panel to the display panel, at least two electrode layers are additionally fabricated on the display panel, which may complicate a fabrication process.
Moreover, the display panel is generally formed by two substrates. The two layers of electrode layers used for touch control have to be fabricated onto a substrate closed to the user for providing a good touch sensing effect. However, such design may increase a thickness of the display panel. Moreover, in the display panel, a control circuit is generally fabricated on another substrate apart from the user. Therefore, to integrate the touch panel to the display panel, additional conductive connection elements (for example, conductive spacers) have to be used to connect the two layers of electrode layers used for touch control to the control circuit on the other substrate. Therefore, such design may further complicate the fabrication process of the touch display panel.
The invention is directed to an active device array substrate, in which a sensing capacitance between an active device array and touch sensing electrodes may provide a touch sensing utilization.
The invention is directed to a touch display panel, which may have a touch sensing function and a display function under a simple fabrication process and structure design.
The invention provides an active device array substrate including an active device array and a plurality of touch sensing electrodes. The active device array is disposed on a substrate. The touch sensing electrodes are disposed on the substrate, and the touch sensing electrodes are insulated to the active device array, so as to form a sensing capacitance between the touch sensing electrodes and the active device array.
The invention provides a touch display panel including an active device array substrate, a counter substrate and a display medium layer. The active device array substrate includes an active device array and a plurality of touch sensing electrodes. The active device array is disposed on a substrate. The touch sensing electrodes are disposed on the substrate, and the touch sensing electrodes are insulated to the active device array, so as to form a sensing capacitance between the touch sensing electrodes and the active device array. The counter substrate has a counter electrode layer, and the display medium layer is located between the active device array and the counter electrode layer.
According to the above descriptions, the touch sensing electrodes are disposed on the active device array substrate and the active device array substrate is disposed at a side closed to a user. The touch display panel of the invention can achieve a touch sensing function and a display function without guiding touch sensing signals to another substrate through a conductive device. Therefore, the touch display panel and the active device array substrate of the invention have advantages of simple fabrication process and simple structure. Moreover, scan lines in the active device array can simultaneously serve as scan lines of a touch sensing operation, so as to further simplify a design of a touch sensing device.
In order to make the aforementioned and other features and advantages of the invention comprehensible, several exemplary embodiments accompanied with figures are described in detail below.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
The active device array substrate 110 includes a first substrate 102, an active device array 112, and a plurality of touch sensing electrodes 114 are respectively disposed at two sides of the first substrate 102, and a sensing capacitance C is formed between the touch sensing electrodes 114 and the active device array 112.
The counter substrate 120 includes a second substrate 104. A counter electrode layer 122 is disposed on a surface of the substrate 104. The display medium layer 140 is located between the active device array 112 and the counter electrode layer 122.
When a conductor object 130 approaches the first substrate 102, the conductor object 130 and the touch sensing electrodes 114 may form another capacitor, so that the sensing capacitance C is fluctuated. The touch display panel 100 may estimate a position of the conductor object 130 according to such fluctuating, so as to achieve both of a touch sensing function and a display function of the touch display panel 100. Herein, the conductor object 130 can be a user's finger, a metal piece, or a special stylus, etc.
The first substrate 102 is a transparent substrate, and the first substrate 102 has a display side 102A and a device side 102B opposite to the display side 102A, wherein the device side 102B is closed to the display medium layer 140. The active device array 112 is disposed at the device side 102B, and the touch sensing electrodes 114 are disposed at the display side 102A. A material of the display medium layer 140 can be a liquid crystal material, a plasma material, an organic light emitting diode, or an electrophoresis material. As shown in
The touch display panel 100 further includes a color filter layer 124, and the color filter layer 124 is disposed on the counter substrate 120, though in other embodiments, the color filter layer 124 can also be disposed on the active device array substrate 110.
Besides the devices required for displaying, only one layer of an electrode layer is additionally configured to the touch display panel 100 to form the touch sensing electrodes 114 to achieve both of the touch sensing function and the display function.
Accordingly, a design requirement of slimness is matched, and devices used for touch sensing are unnecessary to be electrically connected to another substrate though other conductive devices, such as conductive spacers, ACF (anisotropic conductive film), or the like. Therefore, a fabrication process of the touch display panel 100 is relatively easy, and a structure thereof is simple.
Structure designs and relationships of the active device array 112 and the touch sensing electrodes 114 of
When the active device array 112 is fabricated, the scan lines S are first fabricated on the substrate. Therefore, according to
Moreover, the touch sensing electrodes 114 can be coupled to an integrator I, so as to calculate a position of the conductor objector 130 according to a variation of the sensing capacitance C. Certainly, the number of the integrator I can be plural, and each integrator I is connected to one of the touch sensing electrodes 114 for calculation, so that the touch sensing electrodes 114 may synchronously perform the touch sensing.
In summary, in the invention, the touch sensing electrodes and the active device array are disposed on the same substrate. The scan lines in the active device array can serve as scan lines for touch sensing. Therefore, besides the devices of a generally display panel, only a layer of sensing electrodes is additionally configured to the touch display panel of the invention, so that a fabrication process of the touch display panel is greatly simplified. Moreover, the touch sensing electrodes of the invention may have a specific pattern design (for example, openings) to reduce the interference of the touch sensing signals caused by other conductor devices in the active device array. According to the invention, the dummy electrodes can be used to improve a sensing sensitivity of the touch sensing electrodes.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.
Number | Date | Country | Kind |
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98145635 | Dec 2009 | TW | national |