The present disclosure relates to touch-sensitive technology, and more particularly, to a touch pen and an electronic device employing the touch pen.
Many electronic devices, such as mobile phones, tablet computers, and multimedia players, employ touch-sensitive screens as input interfaces. When a user presses a virtual graphical button or icon displayed on a touch-sensitive screen, the graphical button or icon does not provide tactile feedback like a conventional keyboard, which has a travel distance for a keystroke when pressed.
Recently, touch pens are used as a substitute for fingers to perform touch operations on the touch-sensitive screens.
Implementations of the present technology will now be described, by way of example only, with reference to the attached figures.
It will be appreciated that for simplicity and clarity of illustration, where appropriate, reference numerals have been repeated among the different figures to indicate corresponding or analogous elements. In addition, numerous specific details are set forth in order to provide a thorough understanding of the embodiments described herein. However, it will be understood by those of ordinary skill in the art that the embodiments described herein can be practiced without these specific details. In other instances, methods, procedures, and components have not been described in detail so as not to obscure the related relevant feature being described. Also, the description is not to be considered as limiting the scope of the embodiments described herein. The drawings are not necessarily to scale and the proportions of certain parts may be exaggerated to better illustrate details and features of the present disclosure.
Several definitions that apply throughout this disclosure will now be presented.
The term “coupled” is defined as connected, whether directly or indirectly through intervening components, and is not necessarily limited to physical connections. The connection can be such that the objects are permanently connected or releasably connected. The term “substantially” is defined to be essentially conforming to the particular dimension, shape, or other feature that the term modifies, such that the component need not be exact. For example, substantially cylindrical means that the object resembles a cylinder, but can have one or more deviations from a true cylinder. The term “comprising,” when utilized, means “including, but not necessarily limited to”; it specifically indicates open-ended inclusion or membership in the so-described combination, group, series and the like.
In an alternative embodiment, the touch head 20 can be omitted, and an end of the pen core 30 directly protrudes out of the casing 10 via the opening to perform the touch operations on the touch-sensitive screen 200.
The touch pen 1 further includes at least one vibrating member 40 (shown in
The vibrating member 40 can be secured to an exterior surface or interior surface of the casing 10. The vibrating member 40 can be made of a material selected from a group consisting of electroactive polymer (EAP), magnetostrictive material, electrostrictive material, and any combination thereof.
The pressure sensor 50 is received in and secured to the casing 10, and is attached to an end of the pen core 30 away from the touch head 20. When the touch head 20 is pressed (for example, the touch pen 1 clicks on the touch-sensitive screen 200 via the touch head 20), the touch head 20 pushes the pressure sensor 50 via the pen core 30. Then, the pressure sensor 50 generates an electric signal after sensing the pressure delivered by the touch head 30.
The processor 60 is electrically coupled to the vibrating member 40, and converts the electric signal to a control command. The control command is used to control the vibrating member 40 to vibrate, thereby providing a tactile feedback to the user. In at least one embodiment, the processor 60 is arranged to an end of the pressure sensor 50 away from the pen core 30.
In at least one embodiment, the pressure sensor 50 is made of piezoelectric ceramic, and is able to generate an electric voltage proportional to the sensed pressure. In this embodiment, the processor 60 generates the control command according to the electric voltage. The control command includes vibrating data proportional to the sensed pressure which controls the vibrating member 40 to vibrate according to the vibrating data. The vibrating data can be the amplitude or frequency of the vibration. In at least one embodiment, the vibrating data is amplitude of the vibration. That is, the greater the pressure sensed by the pressure sensor 50 is, the stronger the vibration provided to the user is.
In at least one embodiment, the pressure sensor 50 detects a first pressure along the lengthwise direction of the pen core 30 and a second pressure perpendicular to the lengthwise direction of the pen core 30, and generates a first electric voltage and a second electric voltage respectively proportional to the first pressure and the second pressure. In this case, the processor 60 generates a first control command and a second control command respectively according to the first pressure and the second pressure. The first control command includes first vibrating data proportional to the first pressure which controls the vibrating member 40 to vibrate along the lengthwise direction of the pen core 30, and the second control command includes second vibrating data proportional to the second pressure which controls the vibrating member 40 to vibrate perpendicular to the lengthwise direction of the pen core 30.
In at least one embodiment, the touch pen 1 further includes a storage unit (not shown) for storing an electric voltage threshold. The processor 60 further compares the sensed electric voltage with the electric voltage threshold before converting the electric signal to the control command. If the sensed electric voltage is greater than the electric voltage threshold, the processor 60 converts the electric signal to the control command which controls the vibrating member 40 to vibrate.
It is to be understood, even though information and advantages of the present embodiments have been set forth in the foregoing description, together with details of the structures and functions of the present embodiments, the disclosure is illustrative only; changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the present embodiments to the full extent indicated by the plain meaning of the terms in which the appended claims are expressed.
| Number | Date | Country | Kind |
|---|---|---|---|
| 103136104 | Oct 2014 | TW | national |