This Non-provisional application claims priority under 35 U.S.C. §119(a) on Patent Application No(s). 099139169 filed in Taiwan, Republic of China on Nov. 15, 2010, the entire contents of which are hereby incorporated by reference.
1. Field of Invention
The present invention relates to a touch apparatus and, in particular, to a touch apparatus that can provide a good tactile feedback and make sound.
2. Related Art
Most of the electronic devices, such as the mobile phones, PDAs, computers, and GPSs, are configured with an input interface, which can be the conventional buttons or the novel touch interface. Although the touch interface can provide a more convenient operating way, it does not have the tactile feedback as the conventional mechanical buttons. Thus, the user must look at the screen of the electronic device to realize whether the button is pushed or not. In addition, if the response for the touch input carried out on the touch interface is slow, the user may erroneously judge that the previous touch input is not success and may repeat the touch input operation again. Accordingly, the vibration function for tactile feedback as well as the sound and the changes of the displayed content is added to the touch panel, so that the tactile and sound feedbacks while operating the touch interface can be similar to the operation of the conventional buttons.
However, the mechanical rotary motor actuator 11 usually includes a rotor-unbalanced motor, which is driven by the driving signal, so the response speed thereof is slower. Thus, it can not properly simulate the tactile and sound feedbacks as the conventional mechanical buttons. In addition, the casing 15 is fixed to the touch panel 14 by the full thread screws, so that the touch panel 14 and the display panel 12 may not be fixed well if the screwing force is too weak. On the contrary, if the screwing force is too strong, the touch panel 14 may not provide good tactile and sound feedbacks.
In view of the foregoing, an objective of the present invention is to provide a touch apparatus that can provide a good tactile feedback and make sound.
To achieve the above objective, the present invention discloses a touch apparatus including a casing, a touch module and at least one non-rotary actuator. The touch module is disposed in the casing and has at least one touch panel. The non-rotary actuator is connected with the casing or the touch module.
In addition, the touch apparatus further includes at least one buffer supporting unit, which is used to connecting the touch module and the casing. The buffer supporting unit includes a support element and a buffer element. The support element includes at least a screw-thread portion and at least a non-screw-thread portion, and the buffer element is disposed around the non-screw-thread portion. The length of the non-screw-thread portion is greater than the thickness of the casing. The buffer element can be a rubber washer or a spring.
The non-rotary actuator is a linear actuator such as a voice coil motor, which is composed of a permanent magnet and a field-magnet winding. In addition, the touch apparatus further includes a control circuit electrically connected with the non-rotary actuator, the control circuit outputs a driving signal to control the operation of the non-rotary actuator. The non-rotary actuator operates according to the waveform, cycle, frequency and amplitude of the driving signal, and the driving signal includes sound information. Alternative, the control circuit may receive a touch signal outputted from the touch panel and output a driving signal. Moreover, the touch module further includes at least one display panel and a frame body. The touch panel and the display panel are disposed in the frame body, and the non-rotary actuator is connected with the display panel through a frame. Thus, the control circuit can control the non-rotary actuator to operate so as to cause a vibration of the display panel.
To achieve the above objective, the present invention also discloses a touch apparatus including a casing, a touch module and at least a non-rotary actuator. The touch module is disposed in the casing and has at least a touch panel, at least a display panel, and a frame body. The touch panel and the display panel are disposed in the frame body, and the frame body is connected with the casing. The non-rotary actuator is connected with the touch panel, the display panel or the frame body.
In addition, the touch apparatus further includes at least one buffer supporting unit, which is used to connect the touch module and the casing or connect the touch panel and the frame body. The buffer supporting unit includes a support element and a buffer element. The support element includes at least a screw-thread portion and at least a non-screw-thread portion, and the buffer element is disposed around the non-screw-thread portion. The length of the non-screw-thread portion is greater than the thickness of the casing. The buffer element can be a rubber washer or a spring.
The non-rotary actuator is a linear actuator such as a voice coil motor, which is composed of a permanent magnet and a field-magnet winding. In addition, the touch apparatus further includes a control circuit electrically connected with the non-rotary actuator, the control circuit outputs a driving signal to control the operation of the non-rotary actuator. The non-rotary actuator operates according to the waveform, cycle, frequency and amplitude of the driving signal, and the driving signal includes sound information. Alternative, the control circuit may receive a touch signal outputted from the touch panel and output a driving signal. Moreover, the non-rotary actuator is connected with the display panel through a frame. Thus, the control circuit can control the non-rotary actuator to operate so as to cause a vibration of the display panel.
As mentioned above, the present invention adopts the non-rotary actuator such as a linear actuator, which is superior to the mechanical rotary motor actuator in the response speed. This is because the mechanical rotary motor actuator achieves the vibration according to its eccentric motion, so the staring speed and stopping time thereof are both slower. Thus, the mechanical rotary motor actuator can not be immediately started and stopped. On the contrary, the motion of the mass of the linear actuator is a linear motion, and it can move forward and backward based on the applied force. When the applied force disappears, the mass stops moving. Thus, the stopping time of the linear actuator is much shorter than that of the mechanical rotary motor actuator.
Accordingly, the touch apparatus of the invention has the non-rotary actuator, which is connected with the touch module, the touch panel, the display panel, the frame body, or the casing. When the user incurs a touch event on the touch module to drive the non-rotary actuator to operate, the touch module, the touch panel, the display panel, the frame body, or the casing, which is connected with the non-rotary actuator, is moved accordingly. Thus, the good tactile feedback can be provided. In addition, the non-rotary actuator can also vibrate the touch module, the touch panel, the display panel, the frame body, or the casing, which serves as a vibration membrane to make sound. In summary, the touch apparatus of the present invention can provide a good tactile feedback and make sound. To be noted, the present invention uses the casing or the touch module as the vibration membrane for making sound, which is different from the general speaker, so the sound holes of the casing are not necessary. Without configuring these sound holes, the touch apparatus of the present invention can provide a better water-proof property.
The present invention will become more fully understood from the subsequent detailed description and accompanying drawings, which are given by way of illustration only, and thus are not limitative of the present invention, and wherein:
The present invention will be apparent from the following detailed description, which proceeds with reference to the accompanying drawings, wherein the same references relate to the same elements.
The touch module 22 is disposed in the casing 21, and the casing 21 can be integrally formed as one piece or be formed by assembling several parts. In this embodiment, the touch module 22 includes at least one touch panel 221, at least one display panel 222 and a frame body 223. The touch panel 221 and the display panel 222 are disposed in the frame body 223. As shown in
To be noted, in other aspects, the touch panel and the display panel can be integrated as a touch display panel. In order to make the touch apparatus 2 of the present invention more clear, the top part and bottom part of the casing 21 showing in the left of
The non-rotary actuator 23 can be a linear actuator such as a voice coil motor (VCM). The voice coil motor is a kind of linear actuator and is composed of a permanent magnet and a field magnet winding, and it has the properties of direct driving and constant stroke.
To be specified,
The structure of the support element 241 will be illustrated with reference to
Referring to
In addition, the touch apparatus 2 may further include a control circuit (not shown), which is electrically connected with the touch panel 221, the display panel 222 and the non-rotary actuator 23. Accordingly, when the user touches the touch panel 221 of the touch module 22, the control circuit can receive a touch signal outputted from the touch panel 221 and then output a driving signal to the non-rotary actuator 23 for driving the non-rotary actuator 23 to operate (e.g. to vibrate). Thus, the touch module 22, which connects with the non-rotary actuator 23, can be vibrated by the non-rotary actuator 23. Therefore, when a user operates the touch module 22, the touch apparatus 2 can provide a good tactile feedback to the user. Besides, the control circuit can control the non-rotary actuator 23 to operate according to the waveform, cycle, frequency and amplitude of the driving signal. The tactile feedback of the simulated vibration can be achieved by various designs and driving signal. In addition, the control circuit may not receive the signal from the touch module 22 and directly drive the non-rotary actuator 23 to operate.
Moreover, the driving signal may include voice information, which is generated based on the touch signal. For example, when the user clicks an icon, the driving signal is generated to drive the non-rotary actuator 23 to vibrate the touch module 22, the touch panel 221, the display panel 222, the frame body 223, or the casing 21. The vibration of the touch module 22, the touch panel 221, the display panel 222, the frame body 223, or the casing 21 can generate a “Bee” sound so as to achieve the desired sound feedback. Alternatively, the voice information may be not related to the touch signal. For example, the voice information of the communication can be pronounced by generating the driving signal to drive the non-rotary actuator 23 to vibrate the voice membrane such as the touch module 22, the touch panel 221, the display panel 222, the frame body 223, or the casing 21. Since the area of the touch module 22, the touch panel 221, the display panel 222, the frame body 223, or the casing 21 is sufficiently greater than that of the independent voice membrane of the prior art, the present invention has the advantages of clearer sound and longer transmission distance.
As mentioned above, the touch apparatus 2 can provide a good tactile feedback and a good sound feedback. Thus, when the user operates the touch apparatus 2, he/she can enjoy the effects of good tactile and sound feedbacks.
The technical features of other components of the touch apparatus 2a are the same as those of the above-mentioned touch apparatus 2, so the detailed descriptions thereof will be omitted.
In brief, the touch apparatus of the invention has the non-rotary actuator, which is connected with the touch module, the touch panel, the display panel, the frame body, or the casing. When the user incurs a touch event on the touch module to drive the non-rotary actuator to operate, the touch module, the touch panel, the display panel, the frame body, or the casing, which is connected with the non-rotary actuator, is moved accordingly. Thus, the good tactile feedback can be provided. In addition, the non-rotary actuator can also vibrate the touch module, the touch panel, the display panel, the frame body, or the casing, which serves as a vibration membrane to make sound. In summary, the touch apparatus of the present invention can provide a good tactile feedback and make sound. To be noted, the present invention uses the casing or the touch module as the vibration membrane for making sound, which is different from the general individual speaker, so the sound holes of the casing are not necessary. Without configuring these sound holes, the touch apparatus of the present invention can provide a better water-proof property.
Although the present invention has been described with reference to specific embodiments, this description is not meant to be construed in a limiting sense. Various modifications of the disclosed embodiments, as well as alternative embodiments, will be apparent to persons skilled in the art. It is, therefore, contemplated that the appended claims will cover all modifications that fall within the true scope of the present invention.
Number | Date | Country | Kind |
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099139169 | Nov 2010 | TW | national |