Mouse capable of regulating and controlling clicking force for triggering left key and right key

By setting the Hall component and micro switch in the mouse, the mouse switch is realized to switch between traditional and Hall modes, solving the click speed and wear problems, and improving the performance and service life of the mouse in high-speed applications.

CN223065724UActive Publication Date: 2025-07-04SHENZHEN LINGDIANLINGYI TECH CO LTD
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Patent Information

Application Number
CN202421822994.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-07-04
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The click speed and strength of existing mice are limited by the micro switch performance, resulting in limited performance in high-speed application scenarios, and frequent pressing leads to wear and affects service life and user experience.

Method used

The combination of Hall component and micro switch is adopted to realize the switch between the traditional mode and the Hall mode, and the distance between the button and the mouse body is monitored through the Hall element, and the click force and speed are flexibly controlled.

Benefits of technology

It improves the click speed of the mouse in high-speed application scenarios, reduces key wear, extends service life, and improves user experience and applicability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223065724U_ABST
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Abstract

The utility model discloses a mouse capable of regulating and controlling the clicking force of triggering a left key and a right key, which comprises a mouse main body, a key, a Hall component and a microswitch, the Hall component and the microswitch are both arranged in the mouse main body, the key is arranged on the mouse main body, the key and the Hall component are opposite up and down, the bottom of the key is attached to the microswitch, and the microswitch is arranged on the mouse main body. The Hall assembly is used for monitoring the change of the distance between the key and the mouse body. The Hall component and the microswitch are arranged in the mouse body, so that the mouse can be freely switched between a traditional mode and a Hall mode, a user can flexibly select according to actual requirements and use scenes, and applicability and user experience of the mouse are improved. In the Hall mode, the clicking function can be triggered by lightly touching the left and right keys of the mouse, so that the clicking speed is increased, and the mouse is suitable for high-speed application scenes such as E-sports games.
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Description

Technical Field

[0001] The utility model relates to the technical field of mice, in particular to a mouse capable of adjusting the clicking force of left and right buttons. Background Art

[0002] At present, most of the clicks of mice on the market adopt a mechanical triggering method, which drives the internal micro switch to act by pressing the left and right buttons to achieve the click function. However, this triggering method has several technical problems. First, the click speed and click force of the mouse are limited by the performance of the micro switch, which to a certain extent restricts the performance of the mouse in high-speed application scenarios such as e-sports games. Second, frequent pressing actions will cause wear of the contact points of the micro switch, which not only affects the service life of the mouse, but also may change the feel and affect the user experience. In addition, the pressing force for triggering left and right clicks of traditional mice is fixed, and the click response speed is limited by the micro switch, which restricts the flexibility and adaptability of the mouse. Summary of the Utility Model

[0003] The purpose of the utility model is to provide a mouse capable of adjusting the clicking force of left and right buttons to solve one or more of the technical problems in the above background art.

[0004] To achieve this purpose, the utility model adopts the following technical solutions:

[0005] A mouse capable of adjusting the clicking force of left and right buttons, comprising a mouse body, buttons, a Hall component and a micro switch. The Hall component and the micro switch are both arranged in the mouse body. The buttons are arranged on the mouse body. The buttons are vertically opposite to the Hall component, and the bottom of the buttons is in contact with the micro switch. The Hall component is used to monitor the distance change between the buttons and the mouse body.

[0006] Preferably, the mouse body includes a bottom case, a main board and a main case. The main board is fixed on the bottom case, and the main case covers the upper part of the bottom case. The Hall component includes a magnet and a Hall element. The Hall element and the micro switch are both fixed on the main board, and the magnet is arranged at the bottom of the buttons.

[0007] Preferably, an extension part is arranged at the bottom of the buttons. The extension part is vertically opposite to the Hall element, and the magnet is embedded at the bottom end of the extension part.

[0008] Preferably, a contact part is arranged at the bottom of the buttons. The contact part keeps in contact with the switch end of the micro switch.

[0009] Preferably, the main board is also provided with a function button A and a function button B, and the function button A and the function button B extend to the bottom of the mouse body. The function button A is used to select the input of the Hall element or the input of the micro switch, and the function button B is used to adjust the DPI of the mouse.

[0010] Preferably, the main board is also provided with a start switch, and the start switch extends to the bottom of the mouse body. The start switch is used to switch the wireless, wired or Bluetooth connection mode of the mouse.

[0011] Preferably, it further includes a front lamp cover, and the front lamp cover is fixed to the front side of the mouse body.

[0012] Preferably, it further includes foot pads, and the foot pads are pasted on the bottom of the mouse body.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows: By arranging a Hall component and a micro switch in the mouse body, the mouse of the present utility model can be freely switched between a traditional mode and a Hall mode, and users can flexibly select according to actual needs and usage scenarios, improving the applicability and user experience of the mouse. Among them, in the Hall mode, gently touching the left and right buttons of the mouse can trigger the click function, which not only improves the click speed, making it suitable for high-speed application scenarios such as e-sports games, helping users gain an advantage in games, but also significantly reduces the wear of the buttons by the way of touch trigger, thus effectively extending the service life of the mouse, reducing the maintenance cost, and further improving the overall satisfaction of users. Description of the Drawings

[0014] The drawings further illustrate the present utility model, but the content in the drawings does not constitute any limitation to the present utility model.

[0015] Figure 1 is the overall structure schematic diagram of one embodiment of the present utility model;

[0016] Figure 2 is the bottom structure schematic diagram of one embodiment of the present utility model;

[0017] Figure 3 is the internal structure schematic diagram of one embodiment of the present utility model;

[0018] Figure 4 is the connection schematic diagram of the bottom shell and the main board of one embodiment of the present utility model;

[0019] Figure 5 is the structure schematic diagram of the main board of one embodiment of the present utility model;

[0020] Figure 6It is a schematic structural diagram of a button in one embodiment of the present utility model.

[0021] Wherein: main housing 1, right button 2, left button 3, start switch 4, function button A 5, function button B 6, foot pad 7, magnet 8, Hall element 9, front lamp cover 10, main board 11, bottom case 12, micro switch 13, contact part 14, extension part 15. Specific embodiments

[0022] The technical solution of the present utility model will be further described below in conjunction with the drawings and through specific embodiments.

[0023] A mouse capable of adjusting and triggering the click force of the left and right buttons in this embodiment refers to the attached Figure 1 、 3 、5, including a mouse body, a left button 3, a right button 2, a Hall component and a micro switch 13. The Hall component and the micro switch 13 are both arranged in the mouse body. The left button 3 and the right button 2 are vertically opposite to the Hall component, and the bottoms of the left button 3 and the right button 2 are both in contact with the micro switch 13. The Hall component is used to respectively monitor the distance change between the left button 3 and the right button 2 and the mouse body.

[0024] In this embodiment, by arranging a Hall component and a micro switch 13 in the mouse body, the mouse of the present utility model can be freely switched between the traditional mode and the Hall mode. Users can flexibly select according to actual needs and usage scenarios, improving the applicability and user experience of the mouse. Among them, in the Hall mode, by adjusting the sensitivity of the Hall element 9, fine adjustment of the pressing force is achieved. Gently touching the left and right buttons of the mouse can cause the Hall component to detect the distance change between the left and right buttons and the mouse body, thereby triggering the click function. This not only improves the click speed, making it suitable for high-speed application scenarios such as e-sports games, helping users gain an advantage in games, but also significantly reduces the wear of the buttons due to the light-touch trigger method, effectively extending the service life of the mouse, reducing the maintenance cost, and further improving the overall satisfaction of users. The traditional mode, on the other hand, can be applied to occasions where strict requirements for click force and response speed are not required, or where users are more accustomed to the feel of traditional mechanical triggers. For example, in daily office work, graphic design, web browsing and other application scenarios, the traditional mode can provide a consistent and reliable user experience due to its fixed pressing force and relatively stable trigger mechanism.

[0025] Preferably, referring to the attached Figure 4 , the mouse body includes a bottom case 12, a main board 11 and a main housing 1. The main board 11 is fixed on the bottom case 12, and the main housing 1 is covered above the bottom case 12. The Hall component includes a magnet 8 and a Hall element 9. The Hall element 9 and the micro switch 13 are both fixed on the main board 11, and the magnet 8 is arranged at the bottoms of the left button 3 and the right button 2.

[0026] By setting the magnet 8 at the bottom of the left button 3 and the right button 2, and making it vertically opposite to the Hall element 9 fixed on the main board 11, high-precision monitoring of the distance changes between the left button 3 and the right button 2 and the mouse body is achieved. When the user presses the left and right buttons, the magnet 8 at the bottom of the button will move closer to the Hall element 9, causing a change in the magnetic field, which in turn triggers the Hall element 9 to generate a signal. Since the Hall element 9 is extremely sensitive to magnetic field changes, it can accurately detect the actions of the buttons. Whether it is a light touch or a hard hit, it can be accurately captured.

[0027] Furthermore, referring to the attached Figure 6 , an extension part 15 is provided at the bottom of the button. The extension part 15 is vertically opposite to the Hall element 9, and the magnet 8 is embedded at the bottom end of the extension part 15. By providing the extension part 15 at the bottom of the button, the distance between the magnet 8 fixed to the bottom of the button and the Hall element 9 is shortened, providing a more accurate monitoring position for the Hall element 9. And the magnet 8 is embedded at the bottom end of the extension part 15, that is, the magnet 8 has an interference fit with the opening at the bottom end of the extension part 15, ensuring a stable fit between the magnet 8 and the Hall element 9, and also improving the sensitivity of button triggering. When the user lightly touches the button, the slightest movement of the extension part 15 can be accurately sensed by the Hall element 9, thus achieving a rapid response to button operations.

[0028] Preferably, a contact part 14 is provided at the bottom of the button. The contact part 14 remains in contact with the switch end of the micro switch 13. By providing the downward-extending contact part 14 at the bottom of the button, the contact part 14 and the switch end of the micro switch 13 always remain in contact after the button is installed. Thus, when the user presses the button, the contact part 14 will directly act on the switch end of the micro switch 13, thereby triggering a click action. This improves the stability and reliability of button triggering in the traditional mode, and also ensures that the user can obtain a consistent triggering feel and response speed when using the traditional mode. At the same time, since the contact part 14 remains in contact with the switch end of the micro switch 13, it also reduces the problems of accidental touch or insensitive triggering caused by button loosening or offset, further improving the overall performance and user experience of the mouse.

[0029] Preferably, referring to the attached Figure 2 , a function button A5 and a function button B6 are also provided on the main board 11. The function button A5 and the function button B6 extend to the bottom of the mouse body. The function button A5 is used to select the input of the Hall element 9 or the input of the micro switch 13, and the function button B6 is used to adjust the DPI of the mouse. By setting the function button A5, the user can switch back and forth between the Hall mode and the traditional mode by simply clicking the function button A5 according to actual needs. And the function button B6 is used to adjust the DPI of the mouse, that is, to adjust the sensitivity and accuracy of the mouse. Thus, by setting the function button A5 and the function button B6, the diversification and personalization of mouse functions are achieved.

[0030] Preferably, a start switch 4 is also provided on the mainboard 11, and the start switch 4 extends to the bottom of the mouse body. The start switch 4 is used to switch the wireless, wired or Bluetooth connection mode of the mouse. Thus, the three modes of wireless, wired and Bluetooth can be switched by the start switch 4. This allows users to choose the most suitable connection method according to different usage scenarios and needs. For example, in scenarios that require high stability and low latency, users can choose a wired connection method; and in scenarios that require greater flexibility and portability, choose a wireless or Bluetooth connection method. The above-mentioned wireless, wired or Bluetooth connection methods and mouse DPI adjustment methods are all well-known technologies in the art, and their specific methods are not repeated in this embodiment.

[0031] Preferably, it also includes a front lamp cover 10, and the front side of the mouse body is fixed with the front lamp cover 10. LED lamp beads can be added to the main board 11, and the refraction of the front lamp cover 10 can be used to enhance the visual effect and attractiveness of the mouse.

[0032] Preferably, the mouse body further comprises a foot pad 7, which is attached to the bottom of the mouse body. By attaching the foot pad 7 to the bottom of the mouse body, the mouse can slide smoothly on the desktop or other surfaces, making the operation smoother and more accurate. Secondly, the foot pad 7 also helps to protect the surface of the bottom of the mouse, effectively preventing the bottom of the mouse from directly contacting the desktop or other surfaces, thereby reducing the possibility of wear and scratches.

[0033] The technical principle of the present invention is described above in combination with specific embodiments. These descriptions are only for explaining the principle of the present invention and cannot be interpreted as limiting the protection scope of the present invention in any way. Based on the explanations here, technicians in this field can think of other specific implementation methods of the present invention without creative work, and these methods will fall within the protection scope of the present invention.

Claims

1. A mouse capable of adjusting and triggering the clicking force of the left and right buttons, characterized in that, It includes a mouse body, buttons, a Hall component, and a microswitch. The Hall component and the microswitch are both arranged inside the mouse body. The buttons are arranged on the mouse body. The buttons are vertically opposite to the Hall component, and the bottom of the buttons is in contact with the microswitch. The Hall component is used to monitor the distance change between the buttons and the mouse body.

2. The mouse capable of adjusting the click force of the left and right keys according to claim 1, characterized in that, The mouse body includes a bottom shell, a main board, and a main shell. The main board is fixed on the bottom shell, and the main shell covers the upper part of the bottom shell. The Hall component includes a magnet and a Hall element. The Hall element and the microswitch are both fixed on the main board, and the magnet is arranged at the bottom of the buttons.

3. The mouse capable of adjusting the clicking force of the left and right keys according to claim 2, characterized in that, An extension part is arranged at the bottom of the buttons. The extension part is vertically opposite to the Hall element, and the magnet is embedded at the bottom end of the extension part.

4. A mouse capable of adjusting the click force of the left and right buttons according to claim 2, characterized in that, A contact part is arranged at the bottom of the buttons. The contact part remains in contact with the switch end of the microswitch.

5. The mouse capable of adjusting the click force of the left and right keys according to claim 2, wherein, Function button A and function button B are also arranged on the main board. Function button A and function button B extend to the bottom of the mouse body. Function button A is used to select the input of the Hall element or the input of the microswitch, and function button B is used to adjust the DPI of the mouse.

6. The mouse capable of adjusting and triggering the click force of the left and right keys according to claim 2, characterized in that, A start switch is also arranged on the main board. The start switch extends to the bottom of the mouse body. The start switch is used to switch the wireless, wired, or Bluetooth connection mode of the mouse.

7. A mouse capable of adjusting the click force of the left and right buttons according to claim 1, characterized in that, It further includes a front lamp cover, and the front lamp cover is fixed on the front side of the mouse body.

8. A mouse capable of adjusting the click force of the left and right buttons according to claim 1, characterized in that, It further includes foot pads, and the foot pads are pasted on the bottom of the mouse body.