Touch control device and method, and method for forming touch control device
09891751 ยท 2018-02-13
Assignee
Inventors
- Guo-Kiang Hung (Zhubei, TW)
- Chien-Chuan Chen (Zhubei, TW)
- Sheng-Shou Wang (Zhubei, TW)
- Chao-Yang Kuo (Zhubei, TW)
Cpc classification
Y10T29/49119
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
G06F2203/04107
PHYSICS
G06F3/0418
PHYSICS
G06F2203/04103
PHYSICS
International classification
Abstract
A touch control device capable of preventing false positives is provided. The touch control device includes: a conductive plate, electrically connected to a predetermined potential; a sensing region, located above the conductive plate, including a plurality of capacitive sensing units; and a conductive ring, located above the conductive plate, disposed at a periphery of the sensing region. When a touch scanning signal is provided to one on-duty capacitive touch sensing unit of the capacitive touch sensing units, the conductive ring synchronously receives a control signal associated with the touch scanning signal.
Claims
1. A touch control device, comprising: a conductive plate, electrically coupled to a predetermined potential; a sensing region, located above the conductive plate, comprising a plurality of capacitive sensing units; a conductive ring, located above the conductive plate, disposed at a periphery of the sensing region; wherein, when a touch scanning signal is provided to one on-duty capacitive sensing unit of the capacitive sensing units, the conductive ring synchronously receives a control signal associated with the touch scanning signal, and a circuit board, located above the conductive plate, disposed at a circuit board neighboring side of the sensing region, configured to provide the touch scanning signal and the control signal, wherein a width of the circuit board is smaller than a length of the circuit board neighboring side, wherein the conductive ring forms a conductive loop via the circuit board, and wherein the conductive ring forms the conductive loop via a plurality of conductive contact points of a first plane of the circuit board, a plurality of conductive through holes of the circuit board and a plurality of conductive contact points of a second plane of the circuit board, and the first plane and the second plane are different planes.
2. The touch control device according to claim 1, wherein a material of the conductive plate is metal, and the predetermined potential is a ground potential.
3. The touch control device according to claim 1, wherein the conductive ring prevents power lines of the on-duty capacitive sensing unit from forming an electrical connection with the conductive plate through an unexpected external object.
4. The touch control device according to claim 1, wherein the on-duty capacitive sensing unit comprises a triangular electrode plate.
5. The touch control device according to claim 1, wherein a distance between a border of the conductive plate and a border of the conductive ring is a first width, a width of the conductive ring is a second width, and the first width is smaller than the second width.
6. The touch control device according to claim 1, wherein the conductive ring surrounds at least a part of the circuit neighboring side and at least a part of the circuit board.
7. The touch control device according to claim 1, wherein a periphery of the circuit board comprises two circuit board sides, the two circuit board sides are perpendicular to the circuit board neighboring side or an included angle between the two is between a first angle and a second angle.
8. The touch control device according to claim 1, wherein the on-duty capacitive sensing unit is located at an edge of the sensing region.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(8) Technical terms of the application are based on the general definition in the technical field of the application. If the application describes or explains one or some terms, definitions of the terms are based on the description or explanation of the application.
(9) The present invention discloses a touch control device, a touch control method and a method for forming a touch control device capable of preventing false detecting results caused by water drops, other liquids or other non-normal touch objects. The present invention is applicable to a touch control module (e.g., a capacitive touch control module) or a touch control device (e.g., a fixed or handheld touch control device). In possible implementation, one skilled person in the art may choose equivalent devices or steps to implement the disclosure based on the disclosure of the application. That is, the implementation of the disclosure is not limited in the embodiments described in the disclosure. Further, a part of the elements included in the device of the disclosure may be individually known. Without affecting the full disclosure and possible implementation of the computing device, the known details are omitted. Further, the methods of the present invention may be implemented by the device of the disclosure or an equivalent device. In possible implementation, one skilled person in the art may selectively implement part or all technical features of any embodiment of the application or selectively combine part or all technical features of the embodiments of the application based on the disclosure of the present invention to enhance the implementation flexibility of the present invention.
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(11) As previously stated, in the embodiment, the conductive plate 110 may be made of a metal material, e.g., iron, and the method for manufacturing the conductive plate 110 may adopt known technologies. Further, the sensing region 120 includes a conductive material (e.g., indium tin oxide (ITO)) and an insulating material, and may similarly be made by known technologies. Further, the material of the conductive ring 130 may be the same as that of the electrode plate of the sensing region 120 to simplify associated manufacturing steps. However, one person implementing the present invention may select different materials and manufacturing steps to manufacture the conductive materials of the conductive ring 130 and the electrode plate of the sensing region 120. Further, depending on applications, the touch control device 100 may further include other known structural layers (e.g., a glass layer and an adhesive layer) and elements (e.g., independent touch sensing keys and associated circuits). Such details are generally known to one person skilled in the art and are unrelated to technical features of the present invention, and shall be omitted herein.
(12) Again referring to
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(14) Again referring to
(15) In addition to the above device, the present invention further discloses a touch control method to prevent a conductive plate (e.g., the conductive plate 110 in
(16) In step S410, a conductive ring is formed at the periphery of the sensing region.
(17) In step S420, a touch scanning signal is provided to one on-duty capacitive sensing unit of the capacitive sensing units.
(18) In step S430, a control signal identical to or associated with the touch scanning signal is provided to the conductive ring.
(19) One person having ordinary skill in the art can understand implementation details and variations of the method of the present invention based on the description associated with the foregoing device of the present invention. More specifically, the technical features of the foregoing device of the present invention may be reasonably applied to the method of the present invention. Therefore, without affecting the disclosure and implementation of the present invention, such details are omitted herein.
(20) In addition to the above touch control method, the present invention further discloses a method for forming a touch control device to form the touch control device of the present invention or an equivalent device. As shown in
(21) In step S510, a conductive plate is provided. The conductive plate is electrically coupled to a predetermined potential.
(22) In step S520, a sensing region is disposed above the conductive plate. The sensing region includes a plurality of capacitive sensing units.
(23) In step S530, a conductive ring is formed above the conductive plate and at a periphery of the sensing region. When a touch scanning signal is provided to one on-duty capacitive sensing unit of the capacitive sensing units, the conductive ring synchronously receives a control signal identical to or associated with the touch scanning signal.
(24) Similarly, the technical features of the abovementioned touch control device and touch control method may be reasonably applied to the method for forming a touch control device of the present invention. Without affecting the disclosure and implementation of the present invention, such details are omitted herein. It should be noted that, the term neighboring means that a distance between two objects is smaller than a predetermined value (e.g., 1 cm). Further, in the disclosure, the term above or similar space descriptive terms are relative instead of absolute. Further, shapes, sizes, ratios and sequences of the steps in the drawings are illustrative for one person skilled in the art to better understand the present invention, and are not to be construed as limitations to the present invention.
(25) In conclusion, in the touch control device and method and the method for forming a touch control device of the present invention, by disposing the conductive ring and controlling the potential change of the conductive ring, improper electrical connections between the conductive plate and the sensing region are eliminated to further prevent false positives and subsequent erroneous operations. Further, the conductive ring and the potential control of the conductive ring can be easily implemented, so as to provide a cost-effective advantage in addition to being capable of preventing false positives.
(26) While the invention has been described by way of example and in terms of the preferred embodiments, it is to be understood that the invention is not limited thereto. On the contrary, it is intended to cover various modifications and similar arrangements and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.