This application claims the priority benefit of Taiwan application serial no. 101135563, filed on Sep. 27, 2012. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
The invention relates to a touch panel, and more particularly, to a capacitive touch panel and a touch display panel, applied to a hovering operation.
In order for the current electronic devices developing gradually to be user-friendly and good-functional, infrared sensors are usually mounted on the display panel, so that the user is capable of performing operations of the touch panel without touching the touch panel (namely, hovering) while approaching to it, such as unhygienic hands or unwanted to be overly close to the display panel etc. However, the additional infrared sensors will not only increase extra manufacturing cost, the sensible height thereof will also only be between 4 millimeters and 5 millimeters that is unable to satisfy the usage requirement nowadays, and the current capacitive touch panels are also unable to have the hovering effect effectively.
The invention is directed to a touch panel and a touch display panel, which have hovering effect in usage through a capacitive touch panel.
The invention provides a touch panel including a substrate, a decoration layer and a first touch unit. The decoration layer is disposed on the substrate, wherein the decoration layer has a window, and the location of the decoration layer is defined as a periphery region. The first touch unit is at least disposed within the window, and the first touch unit has a plurality of electrode pairs. The electrode pairs are disposed on the substrate. Each of the electrode pairs includes a driving electrode and a sensing electrode. The driving electrode and the sensing electrode are separated by a distance, and the distance is between 300 micrometers and 900 micrometers.
The invention further provides a touch panel including a substrate, a decoration layer, a first touch unit and at least one second touch unit. The decoration layer is disposed on the substrate, wherein the decoration layer has a window, and the location of the decoration layer is defined as a periphery region. The first touch unit is at least disposed within the window. The second touch unit has a plurality of electrode pairs, and the electrode pairs are disposed on the substrate. Each of the electrode pairs includes a driving electrode and a sensing electrode, wherein the driving electrode and the sensing electrode are separated by a distance, and the distance is between 300 micrometers and 900 micrometers.
The invention further provides a touch display panel including the aforementioned touch panel, a display panel and an optical adhesive. The display panel is disposed below the touch panel, and the optical adhesive is disposed between the display panel and the touch panel.
According to the foregoing, the touch panel in the invention may detect the approaching object without adding infrared sensors through the layout design of the relative locations between the driving electrode and the sensing electrode in the electrode pair, that is, a distance between the driving electrode and the sensing electrode, and the distance is between 300 micrometers and 900 micrometers.
In order to make the features and advantages of the present invention more comprehensible, the present invention is further described in detail in the following with reference to the embodiments and the accompanying drawings.
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.
Referring to
The substrate 110a may a substrate constituted by a soft material or a rigid material, such as a glass substrate, a rigid cover lens, a plastic substrate, a flexible cover lens, a flexible plastic substrate, for example, a plastic film, a thin glass substrate (as glass film) or a substrate of the display. Herein, at least one side of the above-mentioned cover lens has a decoration layer (not shown), for example, disposed on a portion of the peripheral area or the entire region of the peripheral area. The above-mentioned substrate of the display may include a color filter substrate of a liquid crystal display or a package cover of an organic light-emitting display. Further, the above-mentioned substrate of the display can only be one of the substrate and the opposite substrate. The material of the decoration layer 140 is, for instance, an ink, a photoresist material, a ceramic material or a diamond-like carbon material. The material of the first touch unit and the second touch unit is, for instance, an indium tin oxide (ITO), an indium zinc oxide (IZO), a metal mesh material, a nano-scale metal material or a metal material etc.
Referring to
More specifically, as shown in
Preferably, the ratio of an area of the driving electrode 122a (or 122d, 122g) and an area of the sensing electrode 124a (or 124d, 124g) of each electrode pair 120a (or 120d, 120g) in the embodiment is, for instance, between 0.7 and 0.75. The distances D1, D4, D7 between the driving electrodes 122a, 122d, 122g and the corresponding sensing electrodes 124a, 124d, 124g are preferably between 600 micrometers and 900 micrometers, such that the touch sensitivity of the touch panel 100a may be enhance effectively.
Since the driving electrodes 122a, 122d, 122g and the corresponding sensing electrodes 124a, 124d, 124g are separated by the distances D1, D4, D7 in the embodiment, the distances D1, D4, D7 are between 300 micrometers and 900 micrometers, preferably, between 600 micrometers and 900 micrometers. Therefore, the range of electric field line distribution in the effective electric field may be increased, so that when the user (not shown) approaches to the touch panel 100a without touching (namely, hovering) that is, for instance, a vertical distance of 15 millimeters away from the touch panel 100a, the user may operate the touch panel 100a. Hence, the design of the touch panel 100a in the embodiment may be achieved without increasing the manufacturing cost and have greater touch sensitivity.
As shown in
In addition, referring to
Since the distance D7 between the driving electrode 122g and the sensing electrode 124g in each of the electrode pairs 120g located within the window W in the embodiment is less than the distance D1 (or D4) between the driving electrode 122a (or 122d) and the sensing electrode 124a (or 124d) in each of the electrode pairs 120a (or 120d) located within the periphery region P, the touch panel 100a may also have greater touch sensitivity and visual effect, other than the hovering effect on the touch panel 100a is achieved without increasing the manufacturing cost.
It should be noted that, the structural type of the electrode pairs in the embodiment is not limited thereto. Referring to
Certainly, the first touch unit of the embodiment is also not limited to the structural type of the electrode pairs 120g located within the window W of the substrate 110a. Referring to
Referring to
Herein, the display panel 210 is, for instance, a liquid crystal display panel, an organic light-emitting display panel, an electronic paper display panel, an electrophoretic display panel, an electro wetting display panel, a bistable display panel or a plasma display panel.
The following exemplary embodiments are provided to describe layer structure of the first touch unit of the touch panel, wherein the reference numerals and some contents of the aforementioned exemplary embodiments are also employed, and the same reference numerals are applied to denote the same or like elements in the following exemplary embodiments, and thus descriptions of the same technical contents are omitted. Moreover, the aforementioned exemplary embodiments may be referred for the omitted descriptions, so that the omitted parts are not further described in the following exemplary embodiments.
Firstly, referring to
Referring to
Herein, the opposite substrate 110d may a glass substrate, a plastic substrate, a flexible plastic substrate, for example, a plastic film, a thin glass substrate (as glass film) or a substrate of the display. The above-mentioned substrate of the display may include a color filter substrate of a liquid crystal display or a package cover of an organic light-emitting display. Further, the above-mentioned substrate of the display can only be one of the substrate and the opposite substrate.
Referring to
Herein, the opposite substrate 110e may a glass substrate, a plastic substrate, a flexible plastic substrate, for example, a plastic film, a thin glass substrate (as glass film) or a substrate of the display. The above-mentioned substrate of the display may include a color filter substrate of a liquid crystal display or a package cover of an organic light-emitting display. Further, the above-mentioned substrate of the display can only be one of the substrate and the opposite substrate.
The following exemplary examples are the simulations for various distances between the driving electrode and the sensing electrode and various ratios of the area of the driving electrode and the area of the sensing electrode, thereby obtaining the relationship between the aforementioned parameters and the capacitance variation.
Referring to Table 1 and
Referring to Table 1 and
To sum up, the electrode pairs having the hovering effect in the invention may be disposed on the first touch unit or the second touch unit, and may also be disposed simultaneously on the first touch unit and the second touch unit, where the driving electrodes and the corresponding sensing electrodes, having the hovering effect, are separated by a distance, and the distance is between 300 micrometers and 900 micrometers. Accordingly, the range of electric field line distribution in the effective electric field may be increased, so that when the user (not shown) approaches to the touch panel without touching that is, for instance, a vertical distance of 15 millimeters away from the touch panel, the user may operate the touch panel.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present 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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101135563 | Sep 2012 | TW | national |