1. Field of the Invention
The present invention relates to a touch display device, and more particularly, relates to a touch display device capable of determining a touch pen operation mode or a finger operation mode.
2. Description of the Related Art
As the related technique keeps improving, there are more and more types of touch display devices, such as PDAs, mobile phones, and tablet PCs. Because a user can easily control the touch display device to input and select functions, the touch display devices become more popular in the related fields. The touch display device comprising a resistance touch panel is cheaper and easy to use; therefore, the resistance touch panels are widely used.
In the prior art, the touch display device having the resistance touch panel does not have a control module for determining a touch pen operation mode or a finger operation mode. The touch display device of the prior art has the same control effect between the touch pen operation mode and the finger operation mode. However, if a touch display device can identify different operation modes, the control methods and effects for the touch display device would be more varied.
Therefore, a new touch display device is required to solve problems of the prior art.
It is therefore an object of the present invention to provide a touch display device capable of being operated under a touch pen operation mode or a finger operation mode.
It is another object of the present invention to provide a method of determining touch mode for a touch display device.
To achieve the object mentioned above, the touch display device of the present invention comprises a resistance touch panel, and a control module. The resistance touch panel comprises a first conductive layer and a second conductive layer. The first conductive has a uniform electric field. The second conductive layer comprises a first measuring electrode and a second measuring electrode. The first conductive layer is capable of contacting the second conductive layer by pressing with an input object. The control module is electrically connected to the first measuring electrode and the second measuring electrode. The control module comprises a measuring element for measuring the voltage of the first measuring electrode and the second measuring electrode. Wherein when the first conductive layer contacts the second conductive layer, the measuring element obtains a first voltage value and a second voltage value by measuring voltage of the first measuring electrode and the second measuring electrode respectively. A touch pen operation mode is activated if a difference between the first voltage value and the second voltage value is smaller than a predicted error value. And a finger operation mode is activated if the difference between the first voltage value and the second voltage value is smaller than the predicted error value
The determining method of the present invention is suitable for the above touch display device. Either the first conductive layer or the second conductive layer has a uniform electric field. The method comprises: pressing the first conductive layer by an input object to contact the second conductive layer; measuring the voltage of the first measuring electrode and the second measuring electrode to obtain a first voltage value and a second voltage value respectively; determining whether a difference between the first voltage value and the second voltage value is smaller than a predicted error value; activating the touch pen operation mode if the difference between the first voltage value and the second voltage value is smaller than the predicted error value; and activating the finger operation mode if the difference between the first voltage value and the second voltage value is larger than the predicted error value.
Other objects, advantages, and novel features of the present invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
These and other objects and advantages of the present invention will become apparent from the following description of the accompanying drawings, which disclose several embodiments of the present invention. It is to be understood that the drawings are to be used for purposes of illustration only, and not as a definition of the invention.
In the drawings, wherein similar reference numerals denote similar elements throughout the several views:
Please refer to
The touch display device 10 of the present invention can be operated under a touch pen operation mode or a finger operation mode. As shown in
As shown in
An input object (not shown) such as a touch pen or a finger can press the first conductive layer 31 to contact the second conductive layer 32, and it will cause short circuit between the first conductive layer 31 and the second conductive layer 32 to make the voltage drop. The measuring element 22 can measure the voltage of the first measuring electrode 321 or the second measuring electrode 322 to determine whether the first conductive layer 31 contacts the second conductive layer 32. When the input object press the first conductive layer 31 to contact the second conductive layer 32, the measuring element can measure the voltage of the first measuring electrode 321 and the second measuring electrode 322 to obtain a first voltage value and a second voltage value respectively. If a difference between the first voltage value and the second voltage value is larger than a predicted error value, it means a finger is touching the resistance touch panel 30, therefore, a finger operation mode is activated. If the difference between the first voltage value and the second voltage value is smaller than the predicted error value, it means a touch pen is touching the resistance touch panel 30. Therefore, a touch pen operation mode is activated. The detail of the determining method will be described later.
As shown in
An input object (not shown) such as a touch pen or a finger can press the first conductive layer 31′ to contact the second conductive layer 32′, and it will cause short circuit between the first conductive layer 31′ and the second conductive layer 32′ to make the voltage drop. The measuring element 22 can measure the voltage of the sensing electrode 311′ to determine whether the first conductive layer 31′ contacts the second conductive layer 32′. When the first conductive layer 31′ contacts the second conductive layer 32′, the measuring element 22 can measure the voltage of the first measuring electrode 323′ and the second measuring electrode 324′ to obtain a first voltage value and a second voltage value respectively. If a difference between the first voltage value and the second voltage value is larger than a predicted error value, it means a finger is touching the resistance touch panel 30′, therefore, a finger operation mode is activated. If the difference between the first voltage value and the second voltage value is smaller than the predicted error value, it means a touch pen is touching the resistance touch panel 30′, therefore, a touch pen operation mode is activated. The detail of the determining method will be described later.
Please refer to
In step 201: pressing the first conductive layer with an input object to contact the second conductive layer.
In order to determine whether the first conductive layer 31 contacts the second conductive layer 32, the control module 21 controls one pair of the electrodes of the resistance touch panel 30 to connect the power source V and ground G respectively, and then measures the voltage of the other pair of the electrodes to sense any voltage drop. As shown in
The above method is just one of the examples of the present invention. The present invention also can connect the first electrodes 321 to the power source V and connect second measuring 322 to the ground G respectively, and then measures the voltage of the first electrode 311 to determine whether the first conductive layer 31 contacts the second conductive layer 32.
When the first conductive layer 31 contacts the second conductive layer 32, the method of the present invention goes to step 202: measuring the voltage of the first measuring electrode of the second conductive layer to obtain a first voltage value.
As shown in
In step 203: measuring the voltage of the second measuring electrode of the second conductive layer to obtain a second voltage value.
As shown in
In step 204: determining whether a difference between the first voltage value and the second voltage value is larger than a predicted error value.
The control module 21 can determine whether the difference between the first voltage value and the second voltage value is larger than a predicted error value. Wherein, the predicted error value can be set in advance by the control module 21.
If the voltage difference is smaller than the predicted error value, the method of the present invention goes to step 205: activating a touch pen operation mode.
When a touch pen touches the resistance touch panel 30, the contact area between the first conductive layer 31 and the second conductive layer 32 is small, and its equivalent circuit is shown in
If the voltage difference is larger than the predicted error value, the method of the present invention goes to step 206: activating a finger operation mode.
When a finger touches the resistance touch panel 30, the contact area between the first conductive layer 31 and the second conductive layer 32 is large, and its equivalent circuit is shown in
More particularly, to achieve the same result, the steps of the method of the present invention need not be in the exact order shown and need not be contiguous, that is, other steps can be intermediate.
In addition, the method of the present invention can also be applied to a 5-wire resistance touch panel as shown in
As shown in
According to the above method, the resistance touch panel 30′ can determine the touch mode between the touch pen operation mode and the finger operation mode.
Please refer to
The touch display device 10 according to the present invention can be installed in an electronic device 40. The electronic device 40 can be a tablet PC, mobile phone, and PDA. When a user touches the touch display device 10 by a touch pen or a finger, the touch display device 10 can switch the touch mode to the touch pen operation mode or the finger operation for different purposes. For example, the touch pen operation mode can draw a thinner line, and the finger operation mode can draw a thicker line. The electronic device 40 can have more control choices for the user.
Although the present invention has been explained in relation to its preferred embodiments, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
Number | Date | Country | Kind |
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096140769 | Oct 2007 | TW | national |