Mouse
By designing detachable magnetic and mechanical switches in the mouse, combined with the button conversion unit and the control unit, the problem of insufficient sensitivity and accuracy of the mouse in special scenarios is solved, and flexible application and experience improvement is achieved.
Patent Information
- Application Number
- CN202422294431.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-19
AI Technical Summary
The existing mouse operation micro switch is single, which makes it difficult to meet the user's requirements in special application scenarios, affecting the comfort of use.
A mouse is designed in which the key switch unit is a detachable module, which supports switching between magnetic switches and mechanical switches. The key conversion unit and the control unit process different types of signals, thereby achieving flexible replacement of the key switch unit.
By switching the type of button switch unit, the sensitivity and accuracy requirements of different usage scenarios are met, and the user's operating experience is improved.
Smart Images

Figure CN223092397U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of mice, in particular to a mouse. Background Art
[0002] A mouse is a commonly used computer input device and one of the most important pointing input devices for a computer. The mouse can position the cursor on the current screen and operate on the screen elements at the positions passed by the cursor through buttons and roller devices, making the operation of the computer more convenient.
[0003] Mice in the prior art often have a single mechanical microswitch or magnetic microswitch. The mechanical microswitch can meet the daily operations of users, but in special application scenarios, such as gaming scenarios, the mouse may be frequently pressed and operated. A single mechanical microswitch is difficult to meet the requirements of sensitivity and multiple usage scenarios, affecting the comfort of use for the user. Summary of the Utility Model
[0004] The utility model provides a mouse to solve the problem that the single microswitch for mouse operation in the prior art makes it difficult to meet the requirements of sensitivity and precision of the mouse microswitch for users in special application scenarios, reducing the user experience.
[0005] According to a mouse provided by the utility model, it includes: a mouse body, a button module, and a button conversion unit;
[0006] The button conversion unit is arranged on the surface of the mouse body;
[0007] The button module includes a button switch unit and a control unit; the button switch unit is detachable;
[0008] The type of the button switch unit is a magnetic switch or a mechanical switch;
[0009] The control unit is used to receive and process digital signals based on the button conversion instruction of the button conversion unit and the trigger instruction of the mechanical switch;
[0010] The control unit is used to receive and process a first analog signal based on the button conversion instruction of the button conversion unit and the trigger instruction of the magnetic switch.
[0011] Optionally, the button switch unit includes a pressing component; the mouse further includes a connection component and a base; the connection component is communicatively connected to the control unit;
[0012] The base is used to fix the pressing component; the connection component is arranged in the base and is communicatively connected to the pressing component after the pressing component is connected to the base.
[0013] Optionally, the magnetic switch includes a magnetic component; the control unit includes a Hall sensor and a control subunit; the Hall sensor is communicatively connected to the control subunit;
[0014] The Hall sensor is configured to receive a magnetic field intensity signal and convert the magnetic field intensity signal into a first analog signal for input to the control subunit when the magnetic component moves along the pressing direction; the control subunit is configured to receive and process the first analog signal based on the key conversion instruction of the key conversion unit.
[0015] Optionally, the Hall sensor is further configured to receive different magnetic field intensity signals and convert them into different first analog signals for input to the control subunit according to different moving distances of the magnetic component along the pressing direction.
[0016] Optionally, the mouse further includes a circuit board; the control unit is disposed on the circuit board;
[0017] The circuit board includes a first hole position and a second hole position;
[0018] The mechanical switch is fixed to the circuit board through the first hole position; the magnetic switch is fixed to the circuit board through the second hole position.
[0019] Optionally, the control unit includes an analog-to-digital conversion unit and a processing unit;
[0020] The analog-to-digital conversion unit is configured to receive a digital signal and convert the digital signal into a second analog signal for input to the processing unit based on the trigger instruction of the mechanical switch; the processing unit is configured to receive and process the second analog signal based on the key conversion instruction of the key conversion unit;
[0021] The processing unit is further configured to receive and process the first analog signal based on the key conversion instruction of the key conversion unit and the trigger instruction of the magnetic switch.
[0022] Optionally, the mouse body includes an accommodation space, and the key module is disposed in the accommodation space; the mouse body includes a detachable key;
[0023] The key switch unit is detachably connected to the detachable key.
[0024] Optionally, the detachable key includes a first sub-key and a second sub-key;
[0025] The key switch unit includes a first sub-key switch and a second sub-key switch;
[0026] The first sub-key is detachably connected to the first sub-key switch; the second sub-key is detachably connected to the second sub-key switch.
[0027] Optionally, the mouse body includes a bottom surface and a top surface that are oppositely arranged;
[0028] The detachable button is arranged on the top surface; the button conversion unit is arranged on the bottom surface.
[0029] Optionally, the mouse further includes a scroll wheel and an encoder;
[0030] The scroll wheel is fixedly connected to the encoder, and the encoder is communicatively connected to the control unit.
[0031] In the technical solution of the present utility model, by setting the button switch unit in the mouse as a detachable module, the button switch unit can be disassembled and the type of the button switch unit can be replaced, thereby replacing the type of the microswitch of the mouse. After the replacement of the type of the button switch unit is completed, the button conversion unit is triggered to switch the working circuit of the switch of the mouse. The button switch unit works by the trigger demand of the user. Such a setting enables the mouse to be used as a mechanical microswitch mouse and can also be used as a magnetic microswitch mouse. Therefore, the user can switch the working mode of the button switch unit of the mouse according to different usage scenarios, ensuring the sensitivity and accuracy of the mouse during the use in some special scenarios and improving the user experience.
[0032] It should be understood that the content described in this part is not intended to identify the key or important features of the embodiments of the present utility model, nor is it used to limit the scope of the present utility model. Other features of the present utility model will become easily understood through the following description. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0034] Figure 1 is a schematic cross-sectional structure diagram of the first mouse provided according to an embodiment of the present utility model;
[0035] Figure 2 is a schematic electrical connection diagram of the first mouse provided according to an embodiment of the present utility model;
[0036] Figure 3 is a schematic circuit connection diagram of the mechanical switch provided according to an embodiment of the present utility model;
[0037] Figure 4 is a schematic cross-sectional structure diagram of the second mouse provided according to an embodiment of the present utility model;
[0038] Figure 5 is a schematic electrical connection diagram of the second mouse provided according to an embodiment of the present utility model;
[0039] Figure 6 is a schematic diagram of the circuit connection of the magnetic switch provided according to an embodiment of the present utility model;
[0040] Figure 7 is Figure 1 an enlarged schematic structural diagram of;
[0041] Figure 8 is Figure 4 an enlarged schematic structural diagram of. Specific embodiments
[0042] In order to enable those skilled in the art to better understand the solution of the present utility model, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0043] It should be noted that the terms "first", "second", etc. in the specification and claims of the present utility model and the above-mentioned drawings are used to distinguish similar objects, and do not necessarily need to be used to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances so that the embodiments of the present utility model described herein can be implemented in an order other than those illustrated or described herein.
[0044] Figure 1 is a schematic cross-sectional structure diagram of the first mouse provided according to an embodiment of the present utility model, Figure 2 is a schematic electrical connection diagram of the first mouse provided according to an embodiment of the present utility model, Figure 3 is a schematic circuit connection diagram of the mechanical switch provided according to an embodiment of the present utility model, Figure 4 is a schematic cross-sectional structure diagram of the second mouse provided according to an embodiment of the present utility model, Figure 5 is a schematic electrical connection diagram of the second mouse provided according to an embodiment of the present utility model, Figure 6 is a schematic circuit connection diagram of the magnetic switch provided according to an embodiment of the present utility model, as shown in Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 shown. The mouse includes: a mouse body 1, a button module 2, and a button conversion unit 3;
[0045] The button conversion unit 3 is disposed on the surface of the mouse body 1;
[0046] The button module 2 includes a button switch unit 21 and a control unit 22; the button switch unit 21 is detachable;
[0047] The type of the button switch unit 21 is a magnetic switch 211 or a mechanical switch 212;
[0048] The control unit 22 is configured to receive and process digital signals based on the button conversion instruction of the button conversion unit 3 and the trigger instruction of the mechanical switch 212;
[0049] The control unit 22 is configured to receive and process a first analog signal based on the button conversion instruction of the button conversion unit 3 and the trigger instruction of the magnetic switch 211.
[0050] Among them, the user can operate the mouse by triggering the button module 2, and then operate the terminal. The button module 2 is arranged inside the mouse body 1. The button module 2 includes a button switch unit 21 and a control unit 22. The user can trigger the button switch unit 21, so that the control unit 22 receives the signal that the button switch unit 21 is triggered, and then responds to the operation of the user. In the same mouse, the button switch unit 21 is a magnetic switch 211 or a mechanical switch 212, and the button switch unit 21 is detachable in the mouse. Therefore, the user can replace the button switch unit 21 from the magnetic switch 211 with the mechanical switch 212, or replace the mechanical switch 212 with the magnetic switch 211 according to needs. Since this operation is determined according to the user's needs, after the user replaces the type of the button switch unit 21, the button conversion unit 3 is triggered, so that the button conversion unit 3 inputs a button conversion instruction to the control unit 22.
[0051] Among them, the button conversion unit 3 is arranged on the surface of the mouse body 1 for easy triggering by the user. Since the working principles of the magnetic switch 211 and the mechanical switch 212 are different and the transmitted signals are also different, the button conversion unit 3 is required to enable the control unit 22 to continue to receive and respond to the transmitted signal source after the type of the button switch unit 21 changes.
[0052] Specifically, the magnetic switch 211 can be set based on the electromagnetic principle. After the magnetic switch 211 is triggered, the magnetic switch 211 will input the generated first analog signal into the control unit 22, causing the control unit 22 to process and respond. The mechanical switch 212 is a circuit switch set based on the mechanical principle. When the mechanical switch 212 is set on the surface of the mouse body 1, when the internal mechanical switch 212 is closed, it will conduct the loop with the control unit 22, and then input a digital signal into the control unit 22, causing the control unit 22 to process and respond. Since the signal source types received by the control unit 22 are different when the two work, the purpose of setting the key conversion unit 3 is to switch the type of signal received by the control unit 22, so that the mouse can be compatible with two working modes of the magnetic switch 211 and the mechanical switch 212, enabling the user to change the mouse into a mechanical microswitch mouse or a magnetic microswitch mouse in different application scenarios, meeting the user's usage requirements and improving the usage experience. It can be understood that the user can give a key conversion instruction to the key conversion unit 3, and the specific form can be pressing the key conversion unit 3 to switch the signal type received by the control unit 22.
[0053] Exemplarily, the specific operation can be as follows: First, replace the switch key unit inside the mouse body 1 with the mechanical switch 212. After installation, press the key conversion unit 3 to switch the signal source receiving circuit of the control unit 22 to be electrically connected to the mechanical switch 212. When the user presses the left button LB or the right button RB on the mouse, it will trigger the mechanical switch 212 to move in the pressing direction. After moving a certain distance, the mechanical switch 212 is triggered to close, conducting the loop between the control unit 22, the mechanical switch 212, and the grounding element, as Figure 3 shown. Then the control unit 22 receives the digital signal transmitted from the grounding element end, and the control unit 22 then responds and processes it. Another situation is that the switch key unit inside the mouse body 1 is replaced with the magnetic switch 211. After installation, press the key conversion unit 3 to switch the signal source receiving circuit of the control unit 22 to be electrically connected to the magnetic switch 211, as Figure 6 shown. When the user presses the left button LB or the right button RB on the mouse, it will trigger the magnetic switch 211 to move in the pressing direction. After moving a certain distance, the magnetic switch 211 will generate a first analog signal and transmit the first analog signal to the control unit 22, and then the control unit 22 responds and processes it.
[0054] In the technical solution of the embodiment of the present utility model, by setting the key switch unit in the mouse as a detachable module, the key switch unit can be disassembled and the type of the key switch unit can be replaced, and then the type of the microswitch of the mouse can be replaced. After the replacement of the type of the key switch unit is completed, the key conversion unit is triggered to switch the working circuit of the switch of the mouse. The key switch unit works by the trigger demand of the user. Such a setting enables the mouse to be used as a mechanical microswitch mouse and can also be used as a magnetic microswitch mouse. Therefore, the user can switch the working mode of the key switch unit 21 of the mouse according to different usage scenarios, ensuring the sensitivity and accuracy of the mouse during the use in some special scenarios and improving the user experience.
[0055] Optionally, Figure 7 is Figure 1 the enlarged structural schematic diagram of, in combination with Figure 1 and Figure 7 as shown, the key switch unit 21 includes a pressing component 210; the mouse further includes a connecting component and a base 4; the connecting component is communicatively connected to the control unit 22;
[0056] The base 4 is used to fix the pressing component 210; the connecting component is arranged in the base 4 and is communicatively connected to the pressing component 210 after the pressing component 210 is connected to the base 4.
[0057] Among them, the pressing component 210, the connecting component and the base 4 can all be arranged inside the mouse body 1. The base 4 is fixedly arranged inside the mouse body 1. The pressing component 210 and the base 4 can be assembled and fixedly connected. The connecting component is arranged in the base 4 and is communicatively connected to the control unit 22. When the pressing component 210 is fixedly connected to the base 4, the pressing component 210 realizes the purpose of being electrically connected to the connecting component, and further enables the pressing component 210 to be connected to the control unit 22.
[0058] Specifically, when the user presses the pressing component 210, the pressing component 210 is triggered to conduct the loop between the control unit 22 and the grounding element, and then the control unit 22 can receive digital signals.
[0059] In the technical solution of the embodiment of the present utility model, by setting a base and a connecting component in the mouse, while the pressing component is fixedly connected to the base, the electrical connection with the connecting component is realized, ensuring the installation and normal operation of the mechanical switch.
[0060] Optionally, Figure 8 is Figure 4 the enlarged structural schematic diagram of, according to Figure 8 , Figure 4 , Figure 5 and Figure 6As shown, the magnetic switch 211 includes a magnetic component 2100; the control unit 22 includes a Hall sensor 221 and a control subunit 222; the Hall sensor 221 is communicatively connected to the control subunit 222;
[0061] The Hall sensor 221 is configured to receive a magnetic field intensity signal and convert the magnetic field intensity signal into a first analog signal and input the first analog signal into the control subunit 222 when the magnetic component 2100 moves along the pressing direction; the control subunit 222 is configured to receive and process the first analog signal based on the key conversion instruction of the key conversion unit 3.
[0062] Among them, the magnetic component 2100 may include materials such as magnets, and the Hall sensor 221 can be used to detect the magnetic field intensity generated by the magnetic component 2100 and convert the magnetic field intensity signal into a first analog signal and input the first analog signal into the control subunit 222. Among them, the Hall sensor 221 and the control subunit 222 are arranged immovably in the mouse body 1, and the magnetic component 2100 is detachable. When the magnetic component 2100 is installed within the detection range of the Hall sensor 221, the Hall sensor 221 can detect the magnetic field change of the magnetic component 2100.
[0063] Specifically, when the user presses the left mouse button LB or the right mouse button RB, the magnetic component 2100 moves along the pressing direction, and the detection signal of the Hall sensor 221 also changes during the movement. The Hall sensor 221 transmits the generated first analog signal to the control unit 22. The control unit 22 receives and processes the first analog signal according to the key conversion instruction of the case conversion unit.
[0064] In some embodiments, the Hall sensor 221 is further configured to receive different magnetic field intensity signals and convert them into different first analog signals and input the different first analog signals into the control subunit 222 according to different moving distances of the magnetic component 2100 along the pressing direction. Among them, due to different magnetic field intensities corresponding to different moving distances of the magnetic component 2100 along the pressing direction, the first analog signals detected by the Hall sensor 221 are different, so that when the pressing force of the user changes, the corresponding control subunit 222 can have different responses, and different information can be displayed on the computer side. The specific response method can be set by itself, and the embodiments of the present invention do not limit this.
[0065] The technical solution of the embodiment of the present invention sets that the magnetic switch includes a magnetic component, and the control unit includes a Hall sensor and a control subunit, so that the Hall sensor can detect and generate a first analog signal during the pressing process of the magnetic switch, and transmit the first analog signal to the control subunit, thereby completing the normal operation of the magnetic switch and ensuring the normal operation performance of the magnetic microswitch.
[0066] Optionally, continue to refer to Figure 1 and Figure 3As shown, the mouse further includes a circuit board 5; the control unit 22 is disposed on the circuit board 5;
[0067] The circuit board 5 includes a first hole position and a second hole position; (not specifically shown in the figure)
[0068] The mechanical switch 212 is fixed on the circuit board 5 through the first hole position; the magnetic switch 211 is fixed on the circuit board 5 through the second hole position.
[0069] Wherein, the control unit 22 can be integrated on the circuit board 5, and the circuit board 5 is disposed in the mouse body 1. The circuit board 5 may include a first hole position and a second hole position. The mechanical switch 212 may be disposed in the first hole position, and the first hole position can play a role in fixing and connecting the mechanical switch 212 to the control unit 22; the magnetic switch 211 is disposed in the second hole position, and the second hole position can play a role in fixing the magnetic switch 211.
[0070] In some embodiments, a Hall sensor 211 may be disposed near the second hole position to ensure the detection accuracy of the Hall sensor 211.
[0071] In some embodiments, the base 4 may be disposed on one side of the circuit board 5 and on one side of the first hole position. The mechanical switch 212 may be disposed in the first hole position away from the base 4. The base 4 and the mechanical switch 212 can be fixed on the circuit board 5 through the first hole position, improving the reliability of the electrical connection in the mouse.
[0072] The technical solution of the embodiment of the present utility model, by setting a circuit board in the mouse and fixing and connecting the mechanical switch or the magnetic switch through the hole positions on the circuit board, ensures the normal operation of the mouse while improving the reliability of the electrical connection in the mouse and improving the user experience.
[0073] Optionally, continue to refer to Figure 3 and Figure 5 As shown, the control unit 22 includes a digital-to-analog conversion unit 223 and a processing unit 224;
[0074] The digital-to-analog conversion unit 223 is configured to receive a digital signal based on the trigger instruction of the mechanical switch 212 and convert the digital signal into a second analog signal and input it into the processing unit 224; the processing is configured to receive and process the second analog signal based on the key conversion instruction of the key conversion unit 3;
[0075] The processing unit 224 is further configured to receive and process the first analog signal based on the key conversion instruction of the key conversion unit 3 and the trigger instruction of the magnetic switch 211.
[0076] Wherein, the digital-to-analog conversion unit 223 can be configured to convert the digital signal into an analog signal for output, and the processing unit 224 receives and responds to the analog signal.
[0077] Specifically, after the mechanical switch 212 is triggered, the digital-to-analog conversion unit 223 receives the digital signal transmitted by the grounding component at the other end of the mechanical switch 212, and converts the digital signal into a second analog signal and inputs it into the processing unit 224. The processing unit 224 processes and responds. However, when the key switch unit 21 is a magnetic switch 211, since the processing unit 224 can directly receive the analog signal, there is no need for the processing of the digital-to-analog conversion unit 223, and the first analog signal can be directly input into the processing unit 224, or can also pass through the digital-to-analog conversion unit 223 but without conversion and input into the processing unit 224.
[0078] In the technical solution of the embodiment of the present utility model, by arranging a digital-to-analog conversion unit and a processing unit in the control unit, the digital-to-analog conversion unit and the processing unit have different working states under two different switch types of magnetic switches and mechanical switches, ensuring the normal operation of the mouse compatible with magnetic micro-switches and mechanical micro-switches.
[0079] Optionally, continue to refer to Figure 1 、 Figure 3 and Figure 6 As shown in, the mouse body 1 includes a receiving space, and the key module 2 is arranged in the receiving space; the mouse body 1 includes a detachable key 6;
[0080] The key switch unit 21 is detachably connected to the detachable key 6.
[0081] Among them, the mouse body 1 includes a receiving space, and the key module 2 is arranged in the receiving space. The detachable key 6 can be the left mouse button LB and the right mouse button RB that can be directly contacted by the user. By disassembling the detachable key 6, the corresponding key switch unit 21 in the receiving space can be installed or disassembled.
[0082] Specifically, it is set to replace the magnetic switch 211 with a mechanical switch 212. First, the detachable key 6 is disassembled and opened to expose the receiving space. There is a magnetic switch 211 in the receiving space. The magnetic switch 211 is taken out and a mechanical switch 212 is installed at the corresponding position. After the installation is completed, the detachable key 6 is assembled. After the above steps are completed, the user can operate the mouse normally to complete the replacement of the key switch unit 21.
[0083] In some embodiments, the detachable button 6 includes a first sub-button and a second sub-button; the button switch unit 21 includes a first sub-button switch and a second sub-button switch; the first sub-button is detachably connected to the first sub-button switch; the second sub-button is detachably connected to the second sub-button switch. (not shown in the figure) Among them, the first sub-button may be the left mouse button LB, the second sub-button may be the right mouse button RB, the first sub-button switch may be the button switch unit 21 corresponding to the left mouse button LB, and the second sub-button switch may be the button switch unit 21 corresponding to the right mouse button RB. When in use, the types of the first sub-button switch and the second sub-button switch corresponding to the first sub-button and the second sub-button can be replaced simultaneously, so that the left mouse button LB and the right mouse button RB of the mouse are of the same type of switch, thereby ensuring the user experience.
[0084] In the technical solution of the embodiment of the present utility model, by providing a detachable button in the mouse, the type of the button switch unit inside the mouse can be further replaced by detaching the detachable button, which is convenient for the user to operate and improves the user experience.
[0085] Optionally, continue to refer to Figure 1 、 Figure 3 and Figure 6 As shown, the mouse body 1 includes a bottom surface 11 and a top surface 12 arranged opposite to each other;
[0086] The detachable button is arranged on the top surface 12; the button conversion unit 3 is arranged on the bottom surface 11.
[0087] Among them, the top surface 12 may be the surface directly contacted by the user when in use. The top surface 12 is opposite to the bottom surface 11. In order to ensure the user experience, the top surface 12 can be set as an arc-shaped structure, and the bottom surface 11 can be set as a flat structure. By arranging the detachable button on the top surface 12, the user can trigger the button switch unit 21 by directly contacting the detachable button; similarly, the replacement of the button switch unit 21 can be completed by detaching the detachable button, improving the user experience.
[0088] Among them, in order not to affect the normal operation of the mouse by the user and reduce misoperation, the button conversion unit 3 is arranged on the bottom surface 11, so that the user will not accidentally touch the button conversion unit 3 during normal use, so as not to affect the normal operation of the mouse.
[0089] Optionally, continue to refer to Figure 1 As shown, the mouse further includes a scroll wheel 7 and an encoder 8;
[0090] The scroll wheel 7 is fixedly connected to the encoder 8, and the encoder 8 is communicatively connected to the control unit 22.
[0091] Among them, the roller 7 can be partially disposed in the accommodation space of the mouse body 1 and partially protrude from the surface of the mouse body 1, so that the user can manually operate to rotate the roller 7. The encoder 8 is fixedly connected to the roller 7. When the roller 7 rotates, the encoder 8 rotates accordingly. The encoder 8 can convert its rotation angle into a rotation digital signal and input it into the control unit 22. The control unit 22 then receives the rotation digital signal and responds to the rotation digital signal to realize the operation response to the roller 7.
[0092] In the technical solution of the embodiment of the present utility model, by setting the key switch unit in the mouse as a detachable module, the key switch unit can be disassembled and the type of the key switch unit can be replaced, and then the type of the micro switch of the mouse can be replaced. After the replacement of the type of the key switch unit is completed, the key conversion unit is triggered to switch the working circuit of the switch of the mouse. The key switch unit works by the trigger demand of the user. Such a setting enables the mouse to be used as a mechanical micro switch mouse and can also be used as a magnetic micro switch mouse. Therefore, the user can switch the working mode of the key switch unit of the mouse according to different usage scenarios, ensuring the sensitivity and accuracy of the mouse during the use process in some special scenarios and improving the user experience.
[0093] The above specific implementation manners do not constitute a limitation to the protection scope of the present utility model. Those skilled in the art should understand that various modifications, combinations, sub-combinations and substitutions can be made according to design requirements and other factors. Any modifications, equivalent substitutions and improvements made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A mouse, characterized in that, Comprising: A mouse body, a button module, and a button conversion unit; The button conversion unit is disposed on the surface of the mouse body; The button module includes a button switch unit and a control unit; the button switch unit is detachable; The type of the button switch unit is a magnetic switch or a mechanical switch; The control unit is configured to receive and process digital signals based on the button conversion instruction of the button conversion unit and the trigger instruction of the mechanical switch; The control unit is configured to receive and process a first analog signal based on the button conversion instruction of the button conversion unit and the trigger instruction of the magnetic switch.
2. The mouse according to claim 1, wherein The button switch unit includes a pressing component; the mouse further includes a connecting component and a base; the connecting component is communicatively connected to the control unit; The base is used to fix the pressing component; the connecting component is disposed in the base and is communicatively connected to the pressing component after the pressing component is connected to the base.
3. The mouse according to claim 1, characterized in that, The magnetic switch includes a magnetic component; the control unit includes a Hall sensor and a control subunit; the Hall sensor is communicatively connected to the control subunit; The Hall sensor is configured to receive a magnetic field intensity signal and convert the magnetic field intensity signal into a first analog signal and input the first analog signal into the control subunit when the magnetic component moves along the pressing direction; The control subunit is configured to receive and process the first analog signal based on the button conversion instruction of the button conversion unit.
4. The mouse according to claim 3, characterized in that, The Hall sensor is further configured to receive different magnetic field intensity signals and convert them into different first analog signals and input the different first analog signals into the control subunit according to different moving distances of the magnetic component along the pressing direction.
5. The mouse according to claim 1, characterized in that, The mouse further includes a circuit board; the control unit is disposed on the circuit board; The circuit board includes a first hole position and a second hole position; The mechanical switch is fixed on the circuit board through the first hole position; the magnetic switch is fixed on the circuit board through the second hole position.
6. The mouse according to claim 1, characterized in that, The control unit includes a digital-to-analog conversion unit and a processing unit; The digital-to-analog conversion unit is configured to receive the digital signal and convert the digital signal into a second analog signal and input the second analog signal into the processing unit based on the trigger instruction of the mechanical switch; the processing is configured to receive and process the second analog signal based on the button conversion instruction of the button conversion unit; The processing unit is further configured to receive and process the first analog signal based on the button conversion instruction of the button conversion unit and the trigger instruction of the magnetic switch.
7. The mouse according to claim 1, characterized in that, The mouse body includes an accommodation space, and the button module is disposed in the accommodation space; the mouse body includes a detachable button; The button switch unit is detachably connected to the detachable button.
8. The mouse according to claim 7, characterized in that, The detachable button includes a first sub-button and a second sub-button; The button switch unit includes a first sub-button switch and a second sub-button switch; The first sub-button is detachably connected to the first sub-button switch; the second sub-button is detachably connected to the second sub-button switch.
9. The mouse according to claim 7, characterized in that, The mouse body includes a bottom surface and a top surface that are oppositely disposed; The detachable button is arranged on the top surface; the button conversion unit is arranged on the bottom surface.
10. The mouse according to claim 1, characterized in that, The mouse further includes a scroll wheel and an encoder; The scroll wheel is fixedly connected to the encoder, and the encoder is communicatively connected to the control unit.