A charging mouse set

CN224816723UActive Publication Date: 2026-09-29WEIYU (SHENZHEN) TECH CO LTD
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Patent Information

Application Number
CN202521944611.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-09
Publication Date
2026-09-29
Estimated Expiration
2035-09-09

AI Technical Summary

Technical Problem

[0003]然而,无线鼠标的电池在使用一段时间后便需要更换或者充电,现有无线鼠标充电时仍需要通过充电接口与充电线配合,需要进行手动插线充电,无法完全摆脱连接线的束缚,不仅需持续负担额外的成本,也增加使用者额外的操作

Benefits of technology

[0022]当鼠标本体置于托板上时,第一连接件与第二连接件接触,此时第一连接件与第二连接件实现电连接,实现托板对鼠标本体供电;同时第一连接件与第二连接件接触以限制鼠标本体滑动使其与托板相对固定,从而使得鼠标本体置于托板上固定鼠标本体的同时对鼠标本体进行充电,避免了手动拔插充电线的繁琐动作,提升鼠标充电的便捷性,同时防止鼠标跌落以提升鼠标的使用寿命。在移动办公的场景中,不使用鼠标本体时将无线鼠标置于托板上完成鼠标本体收纳的同时对鼠标本体进行补电,增加续航能力。

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Abstract

The application discloses a charging mouse set, which comprises a mouse body and a supporting plate, the supporting plate is detachably connected with the mouse body, the supporting plate is provided with a power supply module, the power supply module is used for supplying power to the mouse body; one of the supporting plate and the mouse body is provided with two first connecting pieces, the other of the supporting plate and the mouse body is provided with two second connecting pieces, the two first connecting pieces or the two second connecting pieces are electrically connected with the power supply module, the first connecting pieces and the second connecting pieces are correspondingly arranged and electrically connected through contact, and meanwhile, the first connecting pieces and the second connecting pieces are contacted to limit the mouse body from being separated from the supporting plate in a horizontal direction. The application can improve the convenience of charging the mouse, and prevent the mouse from falling to prolong the service life of the mouse.
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Description

Technical Field

[0001] This application relates to the technical field of input devices, and more specifically, to a rechargeable mouse kit. Background Technology

[0002] A mouse is an external input device for computers, designed to make computer operation simpler and faster, replacing cumbersome keyboard commands. To improve the convenience and flexibility of mouse use, wireless mice are becoming increasingly widespread, communicating with computers wirelessly and eliminating the constraints of wires.

[0003] However, wireless mouse batteries need to be replaced or recharged after a period of use. Current wireless mice still require a charging cable and a charging port for charging, necessitating manual plugging and unplugging, thus not only incurring additional costs but also adding extra steps for the user. During charging, prolonged stretching of the charging cable can cause it to bulge, increasing friction on the desktop and resulting in a poor user experience. Furthermore, if the user accidentally moves the mouse out of the work area, places it at an angle during use, or experiences an impact, the mouse may become unbalanced, tip over, slide, or even fall off the desktop. This can damage internal mechanical components, shortening the mouse's lifespan and increasing replacement costs. Utility Model Content

[0004] This application provides a rechargeable mouse kit that improves the convenience of charging the mouse and prevents it from falling, thus extending its lifespan.

[0005] The rechargeable mouse kit provided in this application adopts the following technical solution:

[0006] A rechargeable mouse kit, comprising:

[0007] The mouse itself;

[0008] The tray is detachably connected to the mouse body, and the tray is equipped with a power supply module for supplying power to the mouse body.

[0009] One of the tray and the mouse body is provided with two first connectors, and the other of the tray and the mouse body is provided with two second connectors. The two first connectors or the two second connectors are electrically connected to the power supply module. The first connectors and the second connectors are correspondingly arranged and electrically connected by contact. At the same time, the first connectors and the second connectors contact each other to prevent the mouse body from detaching from the tray in the horizontal direction.

[0010] In some technical solutions, the first connector and the second connector are magnetically connected, and the first connector and the second connector respectively have conductive contacts to transmit power when the first connector and the second connector are in contact.

[0011] In some technical solutions, the tray or the mouse body with the first connector is provided with a receiving groove, the receiving groove is provided corresponding to the first connector, and the first connector is at least partially located in the receiving groove.

[0012] In some technical solutions, the first connector is slidably disposed on the tray in a vertical direction, the mouse body is provided with a limiting groove corresponding to the first connector, and the second connector is disposed in the limiting groove; when the mouse body is placed on the tray, the end of the first connector away from the tray is located in the limiting groove, and the first connector and the second connector are magnetically attracted and electrically connected.

[0013] Alternatively, the first connector can be slidably disposed on the mouse body in a vertical direction, and the tray can be provided with a limiting groove corresponding to the first connector, with the second connector disposed in the limiting groove; when the mouse body is placed on the tray, the end of the first connector away from the mouse body is located in the limiting groove, and the first connector and the second connector are magnetically attracted and electrically connected.

[0014] In some technical solutions, the first connector is rotatably disposed on the tray, and the second connector is disposed on the mouse body corresponding to the first connector; when the mouse body is placed on the tray, the mouse body drives the first connector to rotate so that the first connector and the second connector are magnetically attracted and electrically connected.

[0015] Alternatively, the first connector is rotatably disposed on the mouse body, and the second connector is disposed on the tray corresponding to the first connector; when the mouse body is placed on the tray, the tray drives the first connector to rotate so that the first connector and the second connector are magnetically attracted and electrically connected.

[0016] In some technical solutions, the power supply module can be a battery module or a charging module, with two first connectors and two second connectors configured in a one-to-one correspondence, and one of the first connectors configured as the positive electrode and the other first connector configured as the negative electrode.

[0017] In some technical solutions, the mouse set further includes a first limiting component and a second limiting component. The first limiting component is disposed at the front end of the mouse set, and the second limiting component is disposed at the rear end of the mouse set. The first limiting component and the second limiting component are used to restrict the mouse body from detaching from the tray in the vertical direction.

[0018] In some technical solutions, the first limiting component includes a first magnetic suction member and a second magnetic suction member, respectively. The first magnetic suction member is disposed on one of the tray or the mouse body, and the second magnetic suction member is disposed on the other of the tray or the mouse body. The first magnetic suction member and the second magnetic suction member are magnetically connected.

[0019] In some technical solutions, the second limiting component includes a third magnetic member and a fourth magnetic member. The third magnetic member is disposed on one of the tray or the mouse body, and the fourth magnetic member is disposed on the other of the tray or the mouse body. The third magnetic member and the fourth magnetic member are magnetically connected.

[0020] In some technical solutions, one of the mouse body and the tray is provided with a first trigger element, and the other is provided with a second trigger element; when the mouse body is placed on the tray, the first trigger element and the second trigger element are connected, so that the mouse body is in a power-off state; when the mouse body is removed from the tray, the first trigger element and the second trigger element are disconnected, so that the mouse body is in a power-on state.

[0021] As can be seen from the above technical solutions, the embodiments of this application have the following advantages:

[0022] When the mouse is placed on the tray, the first connector contacts the second connector, establishing an electrical connection so that the tray powers the mouse. Simultaneously, the contact between the first and second connectors restricts the mouse's movement, fixing it relative to the tray. This allows the mouse to be secured while simultaneously charging, eliminating the need for manually plugging and unplugging the charging cable, improving charging convenience, and preventing the mouse from falling and extending its lifespan. In mobile work scenarios, when not in use, placing the wireless mouse on the tray allows for both storage and recharging, increasing battery life. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments recorded in this application. For those skilled in the art, other drawings can be obtained based on these drawings.

[0024] Figure 1 This is a schematic diagram of the overall structure of a rechargeable mouse kit disclosed in this application;

[0025] Figure 2 This is a schematic diagram of the structure of a rechargeable mouse kit that highlights the mouse body, as disclosed in Embodiment 1 of this application;

[0026] Figure 3 This is a schematic diagram of the structure of the protruding tray of a charging mouse kit disclosed in Embodiment 1 of this application;

[0027] Figure 4 This is a cross-sectional view of a rechargeable mouse kit disclosed in Embodiment 1 of this application, highlighting the first connector and the second connector in state 1.

[0028] Figure 5 This is a cross-sectional view of a rechargeable mouse kit disclosed in Embodiment 1 of this application, highlighting the first connector and the second connector in state 2.

[0029] Figure 6 This is a schematic diagram of the structure of a rechargeable mouse kit that highlights the mouse body, as disclosed in Embodiment 2 of this application;

[0030] Figure 7 This is a schematic diagram of the structure of the protruding tray of a charging mouse kit disclosed in Embodiment 2 of this application;

[0031] Figure 8 This is a cross-sectional view of a rechargeable mouse kit disclosed in Embodiment 2 of this application, highlighting the first connector and the second connector in state 1.

[0032] Figure 9 This is a cross-sectional view of a rechargeable mouse kit disclosed in Embodiment 2 of this application, highlighting the first connector and the second connector in state 2.

[0033] Explanation of reference numerals in the attached figures:

[0034] 1. Mouse body; 2. Tray; 3. First connector; 31. Limiting ring; 4. Second connector; 5. Receiving groove; 51. Flange; 6. Limiting groove; 7. Rotating plate; 71. Connecting shaft; 8. First limiting component; 81. First magnetic component; 82. Second magnetic component; 9. Second limiting component; 91. Third magnetic component; 92. Fourth magnetic component. Detailed Implementation

[0035] The present application will be further described in detail below with reference to the accompanying drawings.

[0036] This application provides a charging mouse kit that avoids the tedious action of manually plugging and unplugging the charging cable, improves the convenience of charging the mouse, and prevents the mouse from falling, thereby extending the mouse's lifespan.

[0037] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present application, and not all of them. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of the present application. Furthermore, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by the present application.

[0038] Please see Figure 1 The present application discloses a rechargeable mouse kit, which includes a mouse body 1 and a tray 2. The mouse body 1 is used to electrically connect to a computer, and the tray 2 is disposed on the bottom surface of the mouse body 1. The mouse body 1 and the tray 2 are detachably connected. On the one hand, this facilitates the separation of the mouse body 1 from the tray 2 according to usage needs during use, allowing the mouse body 1 to move freely; on the other hand, when the mouse body 1 is not in use, it can be fixed relative to the tray 2.

[0039] Please see Figure 2 and Figure 3 Specifically, the tray 2 is equipped with a power supply module (not shown in the figure), which is used to supply power to the mouse body 1; one of the tray 2 and the mouse body 1 is equipped with two first connectors 3, and the other of the tray 2 and the mouse body 1 is equipped with two second connectors 4. The two first connectors 3 or the two second connectors 4 are electrically connected to the power supply module. The first connectors 3 and the second connectors 4 are correspondingly arranged and electrically connected by contact. At the same time, the first connectors 3 and the second connectors 4 are in contact to prevent the mouse body 1 from detaching from the tray 2 in the horizontal direction.

[0040] When the mouse body 1 is placed on the tray 2, the first connector 3 and the second connector 4 come into contact, establishing an electrical connection so that the tray 2 supplies power to the mouse body 1. Simultaneously, the contact between the first connector 3 and the second connector 4 restricts the mouse body 1 from sliding, fixing it relatively to the tray 2. This allows the mouse body 1 to be secured on the tray 2 while simultaneously charging it, avoiding the tedious manual plugging and unplugging of the charging cable, improving charging convenience, and preventing the mouse from falling and extending its lifespan. In mobile office scenarios, when the mouse body 1 is not in use, placing it on the tray 2 not only stores it but also recharges it, increasing battery life.

[0041] Furthermore, in an optional embodiment of the above embodiments, the first connector 3 and the second connector 4 are magnetically connected, and the first connector 3 and the second connector 4 each have conductive contacts to transmit power when the first connector 3 and the second connector 4 are in contact. Preferably, the conductive contacts can be pin points. In another optional embodiment of the above embodiments, the first connector 3 and the second connector 4 can be in contact by means of plugging, spring pressing, or magnetic levers.

[0042] In this embodiment, the power supply module can be a battery module or a charging module. Two first connectors 3 and two second connectors 4 are configured in a one-to-one correspondence, with one first connector 3 configured as the positive terminal and the other as the negative terminal. The second connector 4 is preferably a metal sheet. Those skilled in the art will understand that in some embodiments, the power supply module is a battery module, where the battery generates voltage via a voltage-generating chip. That is, the power is transmitted from inside the power supply module to the positive first connector 3, then via the second connector 4 corresponding to the positive first connector 3 to the mouse body 1, and then via the second connector 4 corresponding to the negative first connector 3 to the negative first connector 3, finally reaching the inside of the power supply module to form a closed loop. Current flows along this path, realizing energy transfer. In other embodiments, the power supply module is a charging module, connected to an external power source. The charging module contains an AC-DC or DC-DC converter and a charging cable. The converter converts external AC power / adapter energy into the required DC voltage for output. One end of the charging cable connects to the adapter's output power supply, and the other end connects to the first connector 3, thus powering the mouse body 1.

[0043] To ensure the mouse body 1 fits snugly on the tray 2, the tray 2 or the mouse body 1, which has a first connector 3, is provided with a receiving groove 5. The receiving groove 5 corresponds to the first connector 3, and the first connector 3 is at least partially located within the receiving groove 5. When the mouse body 1 is separated from the tray 2, the first connector 3 is located within the receiving groove 5 so that the mouse body 1 or the tray 2 can accommodate the first connector 3, making the bottom surface of the mouse body 1 or the top surface of the tray 2 flat; or, when the mouse body 1 is separated from the tray 2, the first connector 3 is at least partially located within the receiving groove 5 to accommodate part of the first connector 3, so that when the mouse body 1 is placed on the tray 2, the mouse body 1 fits snugly with the tray 2.

[0044] To achieve magnetic attraction and electrical connection between the first connector 3 and the second connector 4, in some embodiments, the first connector 3 is slidably disposed on the tray 2 in the vertical direction, and the mouse body 1 is provided with a limiting groove 6 corresponding to the first connector 3. The second connector 4 is disposed within the limiting groove 6. At this time, the first connector 3 and the second connector 4 are in state 1, such as... Figure 4 As shown. When the mouse body 1 is placed on the tray 2, the end of the first connector 3 away from the tray 2 is located in the limiting groove 6, and the first connector 3 and the second connector 4 are magnetically attracted and electrically connected. At this time, the first connector 3 and the second connector 4 are in state 2, as shown. Figure 5 As shown. That is, when the mouse body 1 is placed on the tray 2, since the first connector 3 and the second connector 4 correspond and are magnetically attracted, the first connector 3 slides relative to the limiting groove 6 to move towards the mouse body 1. The aim is to position the end of the first connector 3 away from the tray 2 within the limiting groove 6 and magnetically connect it with the second connector 4. Through the insertion and engagement of the first connector 3 and the limiting groove 6, the first connector 3 provides resistance to the mouse body 1, enhancing the positioning effect of the first connector 3 and limiting the movement tendency of the mouse body 1 in the horizontal and vertical directions. At the same time, the first connector 3 and the second connector 4 are magnetically connected to form a current loop to charge the mouse body 1. The cooperation between the first connector 3 and the limiting groove 6 makes the connection stability between the mouse body 1 and the tray 2 during charging higher.

[0045] In some other embodiments, the first connector 3 is slidably disposed on the mouse body 1 in a vertical direction, and the tray 2 is provided with a limiting groove 6 corresponding to the first connector 3, with the second connector 4 disposed within the limiting groove 6. When the mouse body 1 is placed on the tray 2, the end of the first connector 3 away from the mouse body 1 is located within the limiting groove 6, and the first connector 3 and the second connector 4 are magnetically attracted and electrically connected. That is, when the mouse body 1 is placed on the tray 2, because the first connector 3 and the second connector 4 correspond and are magnetically attracted, the first connector 3 slides relative to the limiting groove 6 under the action of gravity and magnetic force, moving towards the tray 2. This aims to ensure that the end of the first connector 3 away from the mouse body 1 is located within the limiting groove 6 and magnetically connected to the second connector 4, thereby limiting the mouse body 1 while charging the mouse body 1.

[0046] The first connector 3 is disposed on the tray 2, and the limiting groove 6 is disposed on the mouse body 1 corresponding to the first connector 3. The first connector 3 is disposed on the mouse body 1, and the limiting groove 6 is disposed on the tray 2 corresponding to the first connector 3. The first connector 3 and the limiting groove 6 are disposed on the tray 2, except that their positions are reversed, but their implementation principles are the same. Therefore, the following explanation will take the case of the first connector 3 being disposed on the tray 2 and the limiting groove 6 being disposed on the mouse body 1 as an example.

[0047] Please see Figure 5 To prevent the first connector 3 from sliding out of the receiving groove 5, a limiting ring 31 is provided on the outer peripheral wall of the first connector 3, and a flange 51 is provided at the opening of the receiving groove 5. When the first connector 3 and the second connector 4 are in contact and magnetically connected, the limiting ring 31 and the flange 51 press against each other. It can be understood that when the mouse body 1 is placed on the tray 2, the first connector 3 and the second connector 4 are magnetically connected. At this time, the first connector 3 slides along the receiving groove 5, that is, it slides and connects with the tray 2 in the vertical direction. The limiting ring 31 and the flange 51 press against each other, and the flange 51 restricts the limiting post from sliding out of the receiving groove 5. The sliding distance of the first connector 3 is the vertical distance of the second connector 4 from the opening of the limiting groove 6.

[0048] When it is necessary to remove the mouse body 1 from the tray 2, simply apply a vertically upward force to the mouse body 1 to separate the first connector 3 from the second connector 4, thereby releasing the magnetic attraction and electrical connection. After the first connector 3 and the second connector 4 are released from magnetic attraction, the first connector 3 slides vertically under the action of gravity to return to its original position towards the tray 2. This is state 1 of the first connector 3 and the second connector 4. Figure 4 As shown; when the first connector 3 and the second connector 4 are in state 1, the mouse body 1 separates from the tray 2, and the charging of the mouse body 1 is simultaneously deactivated.

[0049] Please see Figure 6 and Figure 7To achieve magnetic attraction and electrical connection between the first connector 3 and the second connector 4, in some optional embodiments, the first connector 3 is rotatably mounted on the tray 2, and the second connector 4 is mounted on the mouse body 1 corresponding to the first connector 3. When the mouse body 1 is placed on the tray 2, the mouse body 1 drives the first connector 3 to rotate so that the first connector 3 and the second connector 4 are magnetically attracted and electrically connected. In other optional embodiments, the first connector 3 is rotatably mounted on the mouse body 1, and the second connector 4 is mounted on the tray 2 corresponding to the first connector 3. When the mouse body 1 is placed on the tray 2, the tray 2 drives the first connector 3 to rotate so that the first connector 3 and the second connector 4 are magnetically attracted and electrically connected.

[0050] Since the two embodiments are based on the same principle, this application will describe the embodiment in which the first connector 3 and the receiving groove 5 are configured on the tray 2. The embodiment in which the first connector 3 and the receiving groove 5 are configured on the mouse body 1 will not be described again.

[0051] The depth of the receiving groove 5 on the tray 2 is sufficient to provide space for the rotation of the first connecting member 3. The first connecting member 3 achieves rotational engagement with the tray 2 through the rotating plate 7. The first connecting member 3 is located at one end of the rotating plate 7, and its upper surface is flush with the upper surface of the rotating plate 7. The rotating plate 7 achieves rotational engagement with the tray 2 through the connecting shaft 71. The connecting shaft 71 is located at the center point of the rotating plate 7. The distance between the two ends of the rotating plate 7 and the connecting shaft 71 is the same, so the torque between the two ends and the connecting shaft 71 is the same, the movement distance of the two ends is the same, and the movement directions of the two ends are opposite. The depth to which one end of the rotating plate 7 enters the receiving groove 5 is the same as the depth to which the other end of the rotating plate 7 extends out of the receiving groove 5, so that when the mouse body 1 is placed on the tray 2, the upper surface of the first connecting member 3 is flush with the upper surface of the tray 2.

[0052] When the mouse body 1 moves away from the tray 2, since the first connector 3 is located at one end of the rotating plate 7, the end of the rotating plate 7 with the first connector 3 is located within the receiving groove 5. Figure 8 As shown. When the mouse body 1 is placed on the tray 2, the mouse body 1 presses against one end of the rotating plate 7. Simultaneously, because the first connector 3 and the second connector 4 correspond and are magnetically attracted, the end of the rotating plate 7 with the first connector 3 moves towards the mouse body 1, aiming to magnetically attract and electrically connect the first connector 3 and the second connector 4, as shown. Figure 9 As shown. The magnetic attraction between the first connector 3 and the second connector 4 restricts the movement of the mouse body 1 in the horizontal and vertical directions, thus fixing the mouse body 1 relative to the tray 2. At the same time, the first connector 3 and the second connector 4 form a current loop to charge the mouse body 1.

[0053] Please see Figure 2 and Figure 3 To further enhance the magnetic stability between the mouse body 1 and the tray 2, the mouse set also includes a first limiting component 8 and a second limiting component 9. The first limiting component 8 is located at the front end of the mouse set, and the second limiting component 9 is located at the rear end of the mouse set. The first limiting component 8 and the second limiting component 9 are used to restrict the mouse body 1 from detaching from the tray 2 in the vertical direction, while also enabling the mouse body 1 and the tray 2 to quickly align, thereby improving the efficiency of the fast and accurate connection between the first connecting member 3 and the second connecting member 4.

[0054] Specifically, the first limiting component 8 includes a first magnetic 81 and a second magnetic 82. The first magnetic 81 is disposed on one of the tray 2 or the mouse body 1, and the second magnetic 82 is disposed on the other of the tray 2 or the mouse body 1. The first magnetic 81 and the second magnetic 82 are magnetically connected. In some embodiments, a first magnetic member 81 is disposed on the tray 2, and a second magnetic member 82 is disposed on the mouse body 1. The first magnetic member 81 and the second magnetic member 82 are magnetically connected to enhance the magnetic stability between the mouse body 1 and the tray 2. In other embodiments, the first magnetic member 81 is disposed on the mouse body 1, and the second magnetic member 82 is disposed on the tray 2. The first magnetic member 81 and the second magnetic member 82 are magnetically connected to enhance the magnetic stability between the mouse body 1 and the tray 2. No additional mechanical connecting parts are required; the first magnetic member 81 and the second magnetic member 82 only need to be aligned, making installation convenient. In other embodiments, a component for the first magnetic member 81 to magnetically attract can be provided inside the mouse body 1, thus omitting the second magnetic member 82, while still achieving the same magnetic connection between the first magnetic member 81 and the mouse body 1.

[0055] The second limiting component 9 includes a third magnetic member 91 and a fourth magnetic member 92. The third magnetic member 91 is disposed on either the tray 2 or the mouse body 1, and the fourth magnetic member 92 is disposed on the other of the tray 2 and the mouse body 1. The third magnetic member 91 and the fourth magnetic member 92 are magnetically connected. In some embodiments, the third magnetic member 91 is disposed on the tray 2, and the fourth magnetic member 92 is disposed on the mouse body 1. The magnetic connection between the third magnetic member 91 and the fourth magnetic member 92 enhances the magnetic stability between the mouse body 1 and the tray 2. In other embodiments, the third magnetic member 91 is disposed on the mouse body 1, and the fourth magnetic member 92 is disposed on the tray 2. The magnetic connection between the third magnetic member 91 and the fourth magnetic member 92 enhances the magnetic stability between the mouse body 1 and the tray 2.

[0056] In this embodiment, the first magnetic attractor 81 and the second magnetic attractor 82 are identical in shape and size, and the third magnetic attractor 91 and the fourth magnetic attractor 92 are matched in shape and size, and the third magnetic attractor 91 and the fourth magnetic attractor 92 are generally arranged in an arc shape. The first magnetic attractor 81, the second magnetic attractor 82, the third magnetic attractor 91 and the fourth magnetic attractor 92 are preferably magnets. Understandably, the first magnetic component 81 and the second magnetic component 82 cooperate to fix the front end of the mouse body 1 and the front end of the tray 2. There are two of each of the first magnetic component 81 and the second magnetic component 82. The two first magnetic components 81 and the two second magnetic components 82 are located on both sides of the central axis of the mouse body 1 and are symmetrically arranged. The third magnetic component 91 and the fourth magnetic component 92 cooperate to fix the rear end of the mouse body 1 and the rear end of the tray 2. The shapes of the third magnetic component 91 and the fourth magnetic component 92 are adapted to the shape of the rear end of the mouse body 1, which enhances the adsorption force between the rear end of the mouse body 1 and the rear end of the tray 2, so as to ensure that the mouse can be placed stably and accurately on the tray 2.

[0057] Since the mouse body 1 requires manual power-on during use, and manual power-off is necessary when powering off to save energy, the power-on / off operation of the mouse body 1 is further simplified. One of the mouse body 1 and the tray 2 is equipped with a first trigger element, and the other with a second trigger element. When the mouse body 1 is placed on the tray 2, the first and second trigger elements are connected, putting the mouse body 1 in a power-off state. When the mouse body 1 is removed from the tray 2, the first and second trigger elements are disconnected, putting the mouse body 1 in a power-on state. This design eliminates the mechanical switch, avoiding manual power-on / off operations and further improving user efficiency. Preferably, the first trigger element is a trigger-sensitive switch, and the second trigger element is a sensor switch.

[0058] In one possible implementation of the above embodiments, the first trigger element is disposed on the upper end surface of the tray 2, and the second trigger element is disposed on the lower end surface of the mouse body 1. When the mouse body 1 contacts the tray 2, the mouse body 1 is in a powered-off state, and the first connector 3 and the second connector 4 are magnetically connected to charge the mouse body 1; when the mouse body 1 is detached from the tray 2, the first connector 3 and the second connector 4 disengage, disconnecting the charging of the mouse body 1, and the mouse body 1 is in a powered-on state for easy use.

[0059] In another possible implementation of the above embodiments, the first triggering element is disposed on the first connector 3, and the second triggering element is disposed on the second connector 4. When the mouse body 1 contacts the tray 2, the first connector 3 and the second connector 4 are magnetically connected, so that the mouse body 1 is charged while the mouse body 1 is in a powered-off state; when the mouse body 1 is detached from the tray 2, the first connector 3 and the second connector 4 are detached, so that the charging of the mouse body 1 is disconnected while the mouse body 1 is in a powered-on state.

[0060] It should be noted that the addition of terms such as "first," "second," and "third" to some technical feature names in this application is merely to distinguish similar objects and is not intended to limit quantity, priority, or other limitations. It should be understood that such data can be interchanged where appropriate so that the embodiments described herein can be implemented in a sequence other than that illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that includes a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0061] The various embodiments in this specification are described in a progressive or parallel manner, with each embodiment focusing on its differences from other embodiments. Similar or undescribed parts between embodiments can be referred to interchangeably. The above description of the disclosed embodiments enables those skilled in the art to make or use this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A rechargeable mouse kit, characterized in that, include: The mouse itself; The tray is detachably connected to the mouse body, and the tray is equipped with a power supply module for supplying power to the mouse body. One of the tray and the mouse body is provided with two first connectors, and the other of the tray and the mouse body is provided with two second connectors. The two first connectors or the two second connectors are electrically connected to the power supply module. The first connectors and the second connectors are correspondingly arranged and electrically connected by contact. At the same time, the first connectors and the second connectors contact each other to prevent the mouse body from detaching from the tray in the horizontal direction.

2. The rechargeable mouse kit according to claim 1, characterized in that, The first connector and the second connector are magnetically connected, and the first connector and the second connector each have conductive contacts to transmit power when the first connector and the second connector are in contact.

3. The rechargeable mouse kit according to claim 2, characterized in that, The tray or the mouse body with the first connector is provided with a receiving groove, the receiving groove being provided with the first connector, and the first connector being at least partially located in the receiving groove.

4. The rechargeable mouse kit according to claim 2 or 3, characterized in that, The first connector is slidably disposed on the tray in a vertical direction. The mouse body is provided with a limiting groove corresponding to the first connector, and the second connector is disposed in the limiting groove. When the mouse body is placed on the tray, the end of the first connector away from the tray is located in the limiting groove, and the first connector and the second connector are magnetically attracted and electrically connected. Alternatively, the first connector can be slidably disposed on the mouse body in a vertical direction, and the tray can be provided with a limiting groove corresponding to the first connector, with the second connector disposed in the limiting groove; when the mouse body is placed on the tray, the end of the first connector away from the mouse body is located in the limiting groove, and the first connector and the second connector are magnetically attracted and electrically connected.

5. The rechargeable mouse kit according to claim 2 or 3, characterized in that, The first connector is rotatably disposed on the tray, and the second connector is disposed on the mouse body corresponding to the first connector; when the mouse body is placed on the tray, the mouse body drives the first connector to rotate so that the first connector and the second connector are magnetically attracted and electrically connected. Alternatively, the first connector is rotatably disposed on the mouse body, and the second connector is disposed on the tray corresponding to the first connector; when the mouse body is placed on the tray, the tray drives the first connector to rotate so that the first connector and the second connector are magnetically attracted and electrically connected.

6. The rechargeable mouse kit according to claim 1, characterized in that, The power supply module can be a battery module or a charging module. The two first connectors and the two second connectors are configured in a one-to-one correspondence, and one of the first connectors is configured as the positive electrode and the other first connector is configured as the negative electrode.

7. The rechargeable mouse kit according to claim 1, characterized in that, The mouse set also includes a first limiting component and a second limiting component. The first limiting component is disposed at the front end of the mouse set, and the second limiting component is disposed at the rear end of the mouse set. The first limiting component and the second limiting component are used to restrict the mouse body from detaching from the tray in the vertical direction.

8. The rechargeable mouse kit according to claim 7, characterized in that, The first limiting component includes a first magnetic suction member and a second magnetic suction member, which are respectively disposed on one of the tray or the mouse body, and the second magnetic suction member is disposed on the other of the tray or the mouse body. The first magnetic suction member and the second magnetic suction member are magnetically connected.

9. The rechargeable mouse kit according to claim 8, characterized in that, The second limiting component includes a third magnetic member and a fourth magnetic member. The third magnetic member is disposed on one of the tray or the mouse body, and the fourth magnetic member is disposed on the other of the tray or the mouse body. The third magnetic member and the fourth magnetic member are magnetically connected.

10. The rechargeable mouse kit according to claim 2, characterized in that, One of the mouse body and the tray is provided with a first trigger element, and the other is provided with a second trigger element; when the mouse body is placed on the tray, the first trigger element and the second trigger element are connected, so that the mouse body is in a power-off state; when the mouse body is removed from the tray, the first trigger element and the second trigger element are disconnected, so that the mouse body is in a power-on state.