Wireless mouse replaceable charging box

CN224653223UActive Publication Date: 2026-08-18DONGGUAN YIDIAN ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521986857.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-16
Publication Date
2026-08-18
Estimated Expiration
2035-09-16

AI Technical Summary

Technical Problem

此外,现有无线鼠标通常配备独立的接收器,而接收器的存放和取用也存在不便之处,容易因丢失或损坏而影响正常使用

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Abstract

The utility model discloses a wireless mouse replaceable charging box, it includes box body, charging port, L word shape battery connecting piece, receiver placing groove and magnetic block. Box body top is equipped with charging port and battery connecting piece, and inside storage module can charge through charging port, and L shape battery connecting piece adapts two different directions (horizontal and vertical direction) contact position of mouse carrier battery compartment and realizes stable electric connection, and battery box placing groove is used for depositing mouse receiver, and the access efficiency is optimized through the ejection hole or spare groove design, and the magnetic block is arranged in triangle, ensures that charging box and mouse magnetic attraction are steady. The application can conveniently replace, stable power supply and efficient access mouse receiver, has solved the inconvenient problem of wireless mouse because of built -in non -detachable battery, has improved the user experience significantly.
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Description

Technical Field

[0001] This utility model relates to the technical field of wireless mouse accessories, and in particular to a replaceable charging case for wireless mice. Background Technology

[0002] With the continuous development of wireless technology, wireless mice have become widely used in office and personal applications due to their convenience and flexibility. However, existing wireless mice generally use built-in, non-removable rechargeable batteries as their power source, a design that has certain limitations in practical use. When the mouse's battery runs out, users have to stop working to recharge it, or constantly monitor the remaining battery level to avoid affecting usage. This reliance on a single built-in power source not only reduces work efficiency but also causes inconvenience for users. To solve this problem, there is an urgent need for a solution that can quickly replace the power supply module and provide continuous power to the mouse. In addition, existing wireless mice are usually equipped with a separate receiver, and the storage and retrieval of the receiver are inconvenient, easily affected by loss or damage, thus impacting normal use. Therefore, developing a device that can quickly replace the power supply module and conveniently store and manage the mouse receiver has significant practical value and market potential. Utility Model Content

[0003] The purpose of this invention is to provide a replaceable charging case for wireless mice to overcome the shortcomings of existing technologies.

[0004] To achieve the above objectives, this utility model provides the following technical solution: A replaceable charging case for a wireless mouse is disclosed. The charging case utilizes an innovative structural design to achieve convenient replacement, stable power supply, and efficient access to the mouse receiver. The charging case includes a casing and multiple functional components disposed on the casing, the specific structure of which and their interactions are described in detail below.

[0005] This utility model provides a replaceable charging case for a wireless mouse, including a case body. The top of the case body has a charging port for electrical connection to an external power source to charge the internal power storage module. Further, the top of the case body has an L-shaped electrical connector that is embedded in the top of the case body and extends to the side of the case body. The design of the electrical connector adapts to the contact layout in different positions inside the wireless mouse, ensuring effective electrical connection regardless of whether the contacts are located on the bottom or side wall. Notably, the electrical connector and the case body are manufactured using an integrated molding process, ensuring the connector maintains structural stability during long-term use.

[0006] Furthermore, a placement slot is provided on one side of the box for storing the mouse receiver. The design of this placement slot optimizes the efficiency of storing and retrieving the mouse receiver. Two embodiments are disclosed in this invention. In the first embodiment, a push-out hole is provided in the placement slot, extending through one side of the box and into the placement slot. The user can push the mouse receiver through the push-out hole to pop it out of the placement slot. In the second embodiment, a retrieval slot is provided on one side of the placement slot, expanding and extending outwards. The user can directly access and retrieve the mouse receiver through the retrieval slot. Both designs achieve convenient storage and retrieval of the mouse receiver through physical means, avoiding the operational difficulties caused by limited space in traditional designs.

[0007] Specifically, a magnetic block is fixedly installed on one side wall of the charging case, preferably three magnetic blocks arranged in a triangular shape. This magnetic block design ensures that the charging case magnetically attaches to the internal magnetic components of the wireless mouse when it is inserted, preventing the charging case from loosening or falling during use. Furthermore, the magnetic blocks are made of neodymium iron boron permanent magnet material, and their magnetic strength has been precisely calculated to ensure both stable installation of the charging case and no interference with other electronic components inside the wireless mouse.

[0008] The technical solution of this utility model is achieved through the following steps: S1, the battery storage module is installed inside the box and charged by connecting it to an external power source through the charging port; S2, the electrical connector is embedded in the top of the box and extends to the side to ensure its connection with the internal contacts of the wireless mouse; S3, the placement slot design of the first embodiment or the second embodiment is selected as needed to complete the storage and retrieval operation of the mouse receiver; S4, the magnet is fixed to the side wall of the box to ensure that the charging box is aligned and magnetically attracted with the internal magnetic components of the mouse after it is inserted into the wireless mouse.

[0009] Compared with the prior art, the beneficial effects of this utility model are as follows: First, the charging case connects to an external power source via a charging port for charging, and simultaneously establishes a stable electrical connection with the internal contacts of the wireless mouse via an L-shaped electrical connector, adapting to various mouse design requirements. Second, the placement slot optimizes the storage and retrieval efficiency of the mouse receiver through a top-out hole or removable slot design, improving user convenience. Finally, the magnetic blocks are arranged in a triangular shape to ensure that the charging case aligns magnetically with the internal magnetic components of the mouse after it is inserted, preventing loosening or falling, thereby improving overall reliability.

[0010] In summary, this utility model, through its innovative box design, electrical connection plate structure, optimized placement slot, and magnetic block arrangement, solves the inconvenience caused by the built-in non-removable rechargeable battery in existing wireless mice, significantly improving the user experience and possessing high practicality and promotional value. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of the structure of the first embodiment of the present utility model; Figure 2 This is a usage diagram of the first embodiment of the present invention; Figure 3 This is a schematic diagram of the structure of the second embodiment of the present utility model; Figure 4 This diagram illustrates two charging methods: one for the mouse charging case and the other for the mouse carrier contacts.

[0012] Attached image annotations: 1. Electrical connector; 2. Mouse receiver; 3. Placement slot; 4. Magnetic block; 5. Charging port; 6. Ejection hole; 7. Parts retrieval slot. Detailed Implementation

[0013] This utility model provides a replaceable charging case for a wireless mouse, which achieves convenient replacement, stable power supply, and efficient storage and retrieval of the mouse receiver through an innovative structural design. (See attached diagram.) Figure 1 To be continued Figure 4 The following describes in detail the specific embodiments and operating principles of this utility model.

[0014] This utility model discloses a replaceable charging case for a wireless mouse, comprising a case body with a charging port 5 on the top for electrical connection to an external power source to charge the internal battery module. In practical operation, the user inserts a charging cable into the charging port 5, establishing a current path between the charging case and the external power source, thus completing the charging process for the battery module. The charging port 5 is designed to conform to universal charging interface standards, ensuring compatibility with various charging devices. Additionally, an electrical connecting piece 1, L-shaped in structure and embedded in the top of the case body, is also provided on the top of the case body. Figure 4 The L-shaped conductive metal connector shown has two different contact orientations for powering the mouse: one is the metal contact at the bottom of the mouse battery compartment, and the other is the metal contact on the side wall of the mouse battery compartment. Either orientation can be used to match different mouse types, ensuring effective power connection. (See attached image.) Figure 1 With appendix Figure 4 As shown: For example, when the charging case is inserted into the mouse, one end of the electrical connector 1 contacts the bottom contact of the mouse, while the other end fits against the side wall contact, thus ensuring the stability of the current transmission path. To enhance the durability of the electrical connector 1, it is manufactured using a one-piece molding process to avoid loosening or deformation caused by frequent plugging and unplugging during long-term use.

[0015] A placement slot 3 is provided on one side of the box for storing the mouse receiver 2. The design of the placement slot 3 optimizes the access efficiency of the mouse receiver 2, and two embodiments are disclosed for this purpose. In the first embodiment, the placement slot 3 is provided with an ejection hole 6, which penetrates one side of the box and extends into the interior of the placement slot 3, as shown in the attached figure. Figure 1 and attached Figure 2 As shown in the attached diagram. When the user needs to remove the mouse receiver 2, a thin object, such as a pen tip, can be inserted into the ejection hole 6 to push the mouse receiver 2 out of the placement slot 3. This design solves the problem of difficult operation caused by limited space in traditional storage methods, improving the user's ease of operation. In the second embodiment, a retrieval slot 7 is provided on one side of the placement slot 3. The retrieval slot 7 expands and extends outward, as shown in the attached diagram. Figure 3 As shown, the user can directly access and remove the mouse receiver 2 through the retrieval slot 7. The design of the retrieval slot 7 not only simplifies the retrieval process but also reduces reliance on additional tools, further improving the user experience.

[0016] Specifically, a magnetic block 4 is fixedly installed on one side wall of the box. Preferably, three magnetic blocks 4 are arranged in a triangular shape. (See attached image.) Figure 1 and attached Figure 3 As shown, the design of magnetic block 4 ensures that the charging case aligns magnetically with the internal magnetic components of the wireless mouse when inserted, preventing the charging case from loosening or falling during use. Magnetic block 4 is made of neodymium iron boron permanent magnet material, and its magnetic strength has been precisely calculated to ensure a stable installation of the charging case while avoiding interference with other electronic components inside the wireless mouse. Furthermore, the triangular arrangement of magnetic block 4 enhances the alignment accuracy between the charging case and the mouse, ensuring accurate installation even when quickly changing the charging case.

[0017] The technical solution of this utility model is achieved through the following steps: S1, the battery storage module is installed inside the box and charged by connecting it to an external power source via the charging port 5; S2, the electrical connector 1 is embedded in the top of the box and extends to the side, ensuring its connection with the internal contacts of the wireless mouse; S3, the placement slot 3 of either the first or second embodiment is selected as needed to complete the storage and retrieval operation of the mouse receiver 2; S4, the magnet 4 is fixed to the side wall of the box, ensuring that the charging box is aligned and magnetically attracted with the internal magnetic components of the mouse after it is inserted into the wireless mouse. In practical applications, the user first fully charges the charging box through the charging port 5, and then inserts the charging box into the wireless mouse. At this time, the electrical connector 1 automatically connects with the internal contacts of the mouse to achieve current transmission. When the mouse receiver 2 needs to be used, the user can choose to remove the receiver through the ejection hole 6 or the retrieval slot 7 according to the specific embodiment to complete the connection operation of the wireless mouse.

[0018] This invention achieves significant technical effects through the above-described technical solution. First, the charging case connects to an external power source via the charging port 5 for charging, and simultaneously establishes a stable electrical connection with the internal contacts of the wireless mouse via the L-shaped electrical connector 1, adapting to various mouse design requirements. Second, the placement slot 3 optimizes the access efficiency of the mouse receiver 2 through the design of the ejection hole 6 or the retrieval slot 7, improving user convenience. Finally, the magnetic blocks 4 are arranged in a triangular shape to ensure that the charging case aligns magnetically with the internal magnetic components of the mouse after the wireless mouse is inserted, preventing loosening or falling, thereby improving overall reliability.

[0019] The operating principle of this utility model will be further explained in conjunction with a specific application scenario. Assume a user is using a wireless mouse with a built-in charging slot. When the mouse battery is depleted, the user does not need to stop working to charge it; instead, they simply insert the pre-charged charging case into the mouse. At this time, the electrical connection piece 1 of the charging case automatically connects with the internal contacts of the mouse, enabling current transmission, and the mouse immediately returns to usability. If the user needs to remove the mouse receiver 2 to connect to other devices, the receiver can be easily removed through the ejection hole 6 or the removal slot 7, according to the selected embodiment. Furthermore, during the insertion of the charging case, the design of the magnetic block 4 ensures precise alignment between the charging case and the internal magnetic components of the mouse, avoiding loosening caused by shaking or collision. The entire operation is simple and quick, greatly improving the user experience.

[0020] In summary, this utility model, through its innovative box design, electrical connection piece 1 structure, optimized placement slot 3, and magnetic block 4 arrangement, solves the inconvenience caused by the built-in non-removable battery in existing wireless mice, significantly improves the user experience, and has high practicality and promotional value.

[0021] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as the combination of these technical features does not contradict each other, it should be considered within the scope of this specification. For those skilled in the art, several modifications and improvements can be made without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A wireless mouse interchangeable charging case, characterized in that: The box includes a charging port (5) on the top of the box, an L-shaped electrical connector (1) on the top of the box, the electrical connector (1) being embedded in the top of the box and extending to the side of the box, a placement slot (3) for storing a mouse receiver (2) on one side of the box, and at least one magnetic block (4) fixedly disposed on one side wall of the box.

2. The wireless mouse rechargeable charging case of claim 1, wherein: The placement slot (3) is provided with an ejection hole (6), which penetrates one side of the box and extends into the placement slot (3).

3. The wireless mouse rechargeable case of claim 1, wherein: A retrieval slot (7) is provided on one side of the placement slot (3), and the retrieval slot (7) expands and extends outward.

4. The wireless mouse rechargeable case of claim 1, wherein: The number of magnetic blocks (4) is three, and they are arranged in a triangular shape.

5. The wireless mouse rechargeable case of claim 4, wherein: The magnetic block (4) is made of neodymium iron boron permanent magnet material.