The present invention relates to the technical field of touch feedback, and in particular, to a touch feedback device and an electronic device.
Electronic device manufacturers, especially portable electronic device manufacturers, are always trying to improve the user experience. Movement feedback (such as active force feedback and resistance feedback) and haptic feedback (such as vibration, thermal energy), are both referred to as “haptic feedback”, which can provide users with a stronger experience. Specifically, haptic effects, such as vibration effects and vibration haptic effects, provide realistic feedback to generate sensory sensations within a simulated or virtual environment.
Haptic feedback is being incorporated into devices such as mobile phones or personal digital assistants (PDAs), and a difference different from the mobile phone touch feedback solutions is the application of linear vibration motors in notebook computer and automotive module feedback solutions. In order to obtain a satisfactory vibration touch, the selection of a suspension structure between the touch panel and the whole machine is particularly important.
In the related art, the suspension structure is generally made of silica gel. Since silica gel is not a linear material and greatly affected by temperature, and at the same time, has a relatively high degree of plane freedom, a position of the linear vibration motor on the touch panel will also affect the acceleration distribution on the surface of the touch panel.
Therefore, it needs to provide a touch feedback device and an electronic device to solve the above problems.
An embodiment of the present invention provides a touch feedback device, including a touch panel; a linear vibration motor arranged on the touch panel and being able to drive the touch panel to vibrate; a mounting member; and a mounting base. The mounting member includes at least one fixing part and a body that is elastic. The touch panel is fixed to the body, and the at least one fixing part is configured to fix the body to the mounting base, in such a manner the touch panel is limited to vibrate along any direction in a horizontal direction.
As an improvement, the mounting member further includes at least one side wall connected to a side of the body, and the at least one fixing part is arranged at a side of the side wall away from the body.
As an improvement, the mounting member further includes at least one cross arm, the at least one cross arm is disposed at a side wall of the body, and the side wall is connected to the body through the at least one cross arm.
As an improvement, the touch feedback device further includes a double-side adhesive layer, the touch panel is fixed to at least one of the body or the at least one cross arm through the double-side adhesive layer.
As an improvement, the double-side adhesive layer includes a primary adhesive part, the primary adhesive part has a shape fitting a shape of the body in such a manner that the touch panel is fixed to the body through the primary adhesive part.
As an improvement, the double-side adhesive layer further includes at least one secondary adhesive part, the at least one secondary adhesive part is arranged at a side of the primary adhesive part, and the secondary adhesive part has a shape fitting a shape of the at least one cross arm in such a manner that the touch panel is fixed to the at least one cross arm through the secondary adhesive part.
As an improvement, the at least one cross arm includes a plurality of the cross arms, and the plurality of cross arms is arranged at intervals along a length direction of the side wall.
As an improvement, the at least one side wall includes two side walls respectively arranged at two opposite ends of the body, each of the two side walls is connected to a side of the body away from the touch panel, and each of the two side walls is provided with the at least one fixing part.
As an improvement, the body, the at least one side wall, and the at least one cross arm are all made of stainless steel.
Another embodiment of the present invention provides an electronic device, including a touch feedback device, including a touch panel; a linear vibration motor arranged on the touch panel and being able to drive the touch panel to vibrate; a mounting member; and a mounting base. The mounting member includes at least one fixing part and a body that is elastic. The touch panel is fixed to the body, and the at least one fixing part is configured to fix the body to the mounting base, in such a manner the touch panel is limited to vibrate along any direction in a horizontal direction.
100. Touch feedback device;
1. Mounting member;
11. Body;
111. Lightening hole;
12. Fixing part;
13. Side wall;
14. Cross arm;
2. Touch panel;
3. Mounting base;
4. Double-sided adhesive layer;
41. Primary adhesive part;
42. Secondary adhesive part.
The present invention will be described below with reference to the accompanying drawings and embodiments.
Some embodiments of the present invention provide a touch feedback device 100. As shown in
In order to better illustrate the spatial positional relationship and the motion relationship of each component/member, a three-dimensional spatial coordinate system XYZ is taken as a reference for the description below. As shown in
To sum up, compared with the related art, the touch feedback device 100 at least has the following beneficial effects.
The touch feedback device 100 takes the mounting member 1 as the suspension structure for supporting the touch panel 2. In this way, the body 11 of the mounting member 1 can have different shapes or thicknesses, and then the natural frequency of the touch feedback device can be effectively regulated through simulation. Meanwhile, the mounting member 1 is fixed to the mounting base 3, thereby limiting the touch panel 2 to vibrate along any direction in the horizontal direction, that is, effectively reducing the degree of freedom of the touch panel 2 in the horizontal direction when the touch panel vibrates, so that the linear vibration motor can be assembled at any position on the touch panel 2. In other words, assembling of the linear vibration motor at any position on the touch panel 2 does not have much effect on the distribution of the vibration amount of the touch panel 2, thereby effectively improving the vibration touch of the touch feedback device 100.
In some embodiments,
In some embodiments, as shown in
In some embodiments, as shown in
It can be understood that, since one side edge of the body 11 is connected to the fixing part 12 through the side wall 13 and the cross arm 14, in some embodiments, one side edge of the body 11 in the Y-axis direction is connected to the fixing part 12 through the side wall 13 and the cross arm 14. When the body 11 vibrates, the cross arm 14 will pull the side wall 13 to deform in the thickness direction of the side wall 13, i.e., in the Y-axis direction, so that the body 11 moves in this direction to limit the touch panel 2, which is fixed to the body 11, to move along the thickness direction of the side wall 13, i.e., along the Y-axis direction. In this way, the linear vibration motor can be assembled at any position on the touch panel 2, in other words, the linear vibration motor being assembled at any position on the touch panel 2 has little effect on the distribution of the vibration amount of the touch panel 2, thereby effectively improving the vibration touch of the touch feedback device 100.,
In some embodiments, as shown in
In some embodiments, as shown in
In some embodiments, as shown in
The side wall 13 can be connected to a side of the touch panel 2 away from the body 11. Each side wall 13 can be provided with a fixing part 12.
In some embodiments, as shown in
In some embodiments, the body 11 of the mounting member 1 can be configured according to the shape of the touch panel 2. For example, the body 11 has a shape of rectangle or circle, or an irregular shape.
In some embodiments, as shown in
In some embodiments, as shown in
In some embodiments, as shown in
It can be understood that the shape of the main adhesive part 41 fits the shape of the body 11, and the shape of the auxiliary adhesive part 42 fits the shape of the cross arm 14, so that a uniform force can be applied to each position on the touch panel 2 in contact with the mounting member 1, thereby ensuring that any position where the linear vibration motor is assembled to the touch panel 2 will not affect the distribution of the vibration amount of the touch panel 2.
In some embodiments, the mounting member 1 can be made of stainless steel, so that the performance of the mounting member 1 itself will not be affected by the temperature. For example, the body 11, the side wall 13, and the cross arm 14 can all be made of stainless steel.
In some embodiments, as shown in
In some embodiments, the fastener can be a screw, a bolt, or a stud.
In order to solve the above technical problems, some embodiments of the present invention further provide an electronic device including the above-described touch feedback device 100. The electronic device can be a tablet computer, a notebook computer, or a car module.
The above illustrates only some embodiments of the present invention. It should be pointed out that for those of ordinary skill in the art, improvements can be made without departing from the inventive concept of the present invention, and all these improvements shall fall within a scope of protection of the present invention.
Number | Date | Country | Kind |
---|---|---|---|
202122314060.9 | Sep 2021 | CN | national |