Magnetic attraction type wireless charging module electrifying groove

By designing a magnetic wireless charging module power supply slot, the problem of pre-embedded installation of wireless charging modules is solved, realizing a wireless charging solution that is easy to install, flexible to adjust, and low-cost.

CN223912214UActive Publication Date: 2026-02-13SHENZHEN XIANNI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520125442.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2026-02-13
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Existing wireless charging modules are not easy to disassemble and assemble when pre-installed, have poor grooving precision, unpredictable problems before installation, are difficult to adjust later, and are costly.

Method used

The device employs a magnetic wireless charging module power supply slot, which includes a slot body, a module placement slot, a connecting magnet, a branch circuit board slot, and an FPC circuit slot. It can be mass-produced through injection molding, supports multiple installation methods, simplifies the installation process, and enables quick connection and disassembly of the wireless charging module through a magnetic adsorption and snap-fit ​​structure.

Benefits of technology

It enables easy installation and removal of the wireless charging module, avoids the problem of poor slotting precision, supports flexible position adjustment, reduces costs, and supports individual slot replacement without modifying the overall circuit structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electrifying grooves, and discloses a magnetic type wireless charging module electrifying groove, which comprises a groove body, a module placing groove position, a magnet, a module avoiding hole, a branch circuit board groove position, an FPC (Flexible Printed Circuit) circuit groove position, a branch circuit board clamping groove and a contact connecting hole. With the adoption of the structure, the wireless charging module can be simply mounted through the prefabricated groove body, and the dismounting and mounting structure is simple; the problem of poor grooving precision on a desktop is effectively avoided, the groove bodies can be formed in the corresponding positions according to specific needs, and therefore the problem that adjustment is difficult in the later period of direct grooving is avoided, and when a certain groove body goes wrong, the groove bodies can be directly replaced, and the whole circuit and the main body structure do not need to be modified; and the mode of prefabricating the groove body is adopted, so that the cost is low.
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Description

TECHNICAL FIELD

[0001] The utility model relates to power-on tank technical field, concretely is a magnetic formula wireless charging module power-on tank. BACKGROUND

[0002] In the era of the wide popularization of electronic equipment, the development of charging technology is crucial. With the emergence of wireless charging technology, the problem caused by cable is solved to a certain extent. The commonly used is to adopt the pre-embedded wireless charging mode for wireless charging. However, the existing wireless charging module is in the form of non-simple disassembly during pre-embedded installation, and the installation and disassembly are relatively difficult, and the main body is processed by cnc process of wooden material, the material leads to poor slotting accuracy, and the problems before installation cannot be measured due to different sizes of desktops. The design and layout of the pre-embedded groove of the wireless charging module need to be fully planned before installation, and any factor such as wire direction and power socket position that is not considered may affect the installation effect of the charging groove, leading to difficult adjustment in the later period. CONTENT OF THE UTILITY MODEL

[0003] The utility model mainly provides a magnetic formula wireless charging module power-on tank, solves the problem that the existing wireless charging module is in the form of non-simple disassembly during pre-embedded installation, has poor slotting accuracy, and the problems before installation cannot be predicted and adjusted in the later period.

[0004] In order to solve the above technical problem, the utility model adopts the following technical scheme:

[0005] The application discloses a magnetic wireless charging module power-on slot, which comprises a slot body, two module placing slots are symmetrically formed on the slot body, a connecting magnet for attracting a wireless charging module is arranged in the module placing slot, a module avoiding hole is formed on the slot body corresponding to the module placing slot, a branch line circuit board slot is arranged on the front side of the slot body corresponding to the module placing slot, and an FPC line slot is arranged on the outer side of the slot body corresponding to the module placing slot; a branch line circuit board clamping groove is arranged on the branch line circuit board slot corresponding to each module placing slot, and a contact connecting hole is formed on the slot body corresponding to the branch line circuit board clamping groove. The whole charging slot can be mass-produced by using an injection molding process. The slot body can be installed at a corresponding position by using any existing installation mode, such as a preset screw hole screw connection, adhesion and the like. In use, the slot body can be directly installed at a corresponding position, then the wireless charging module is installed in the corresponding module placing slot, the magnet in the module placing slot is used to attract the wireless charging module with the magnet, the coil magnet of the wireless charging module is matched with the module avoiding hole, the branch line circuit board is arranged on the branch line circuit board slot, the branch line circuit board is clamped in the branch line circuit board clamping groove, the positive and negative poles of the branch line circuit board are matched with the contact connecting hole, the FPC line is arranged on the FPC line slot, and the FPC line is connected with the branch line circuit board. In use, a plurality of slot bodies can be arranged side by side to form a plurality of positions capable of wireless charging. By using the structure, the wireless charging module can be simply installed by using the prefabricated slot body, and the disassembly and assembly structure is simple; the problem of poor slotting precision on a desktop is effectively avoided, the slot body can be arranged at a corresponding position according to actual needs, the problem that the slot is difficult to adjust after direct slotting is avoided, when a problem occurs in a slot body, the slot body can be directly replaced without modifying the overall circuit and the main structure; and the prefabricated slot body is adopted, so that the cost is low.

[0006] Further, a plurality of fixing buckles are arranged on the bottom of the slot body. By using the structure, the fixing buckles can be conveniently disassembled and assembled with the prearranged buckle positions.

[0007] Further, a sticking groove is formed on the slot body. A sticking strip can be arranged in the sticking groove. The sticking groove is used for positioning and fixedly installing the upper surface cover.

[0008] Further, the branch line board slot is provided with a branch line board, and the branch line board is clamped with the branch line board card slot. The branch line board is provided with branch emission module positive and negative poles corresponding to the contact connection hole. By using the structure, the branch line board can be clamped and fixed by the branch line board card slot, and the branch emission module positive and negative poles on the branch line board can be connected with the wireless charging module through the contact connection hole.

[0009] Further, the branch line board slot is provided with a positioning column matched with the positioning groove on the branch line board. By using the structure, the positioning column can further realize the positioning and fixing of the branch line board.

[0010] Further, the FPC line slot is provided with an extendable FPC connecting line. The end of the extendable FPC connecting line is provided with total power input positive and negative poles. The extendable FPC connecting line is provided with connection positive and negative poles matched with the branch line board. By using the structure, the extendable FPC connecting line can be arranged in the FPC line slot. The extendable FPC connecting line can be extended according to actual needs, so as to cooperate with the increase of the groove body, realize the increase of the wireless charging module, and realize the power connection between the extendable FPC connecting line and the branch line board through the connection positive and negative poles of the extendable FPC connecting line. The total power input positive and negative poles can realize the input of the total power.

[0011] Further, the module placing groove is detachably connected with a matched cover. The matched cover is provided with a hole table matched with the module avoiding hole. The hole table is provided with a matched hole. The matched cover can be detachably connected with the module placing groove by using any one of the existing technologies, such as that the matched cover is provided with a plug hole, and the module placing groove is provided with a plug column. By replacing different matched covers, different matched holes can be replaced, so as to realize the charging of different sizes of wireless charging modules. When the wireless charging module is replaced, the height of the charging position is still parallel to or higher than the upper surface of the module avoiding hole, so as to avoid the distance between the charging device and the wireless charging module being too far, thereby reducing the efficiency. The hole table is matched with the module avoiding hole, so as to improve the stability of the structure.

[0012] Beneficial effects: by using the structure of the present application, the wireless charging module can be simply installed by using the prefabricated groove body, and the disassembly and assembly structure is simple. The problem of poor groove precision on the desktop is effectively avoided. The groove body can be arranged at the corresponding position according to the specific needs, so as to avoid the problem that the groove is difficult to adjust after being directly opened. When a groove body is damaged, the groove body can be directly replaced without modifying the overall circuit and the main structure. By using the prefabricated groove body, the cost is low. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is a front oblique view of the groove body of the embodiment.

[0014] Figure 2 It is a schematic view of the groove body anticline of the embodiment;

[0015] Figure 3 It is a schematic view of two groove bodies of the embodiment;

[0016] Figure 4 It is a schematic view of the installation of multiple groove bodies of the embodiment;

[0017] Figure 5 It is a schematic view of the installation of the matching cover of the embodiment.

[0018] Reference signs: groove body 1, module placement slot 2, magnet 3, module avoidance hole 4, branch circuit board slot 5, FPC circuit slot 6, branch circuit board clamping groove 7, contact connection hole 8, fixed buckle 9, sticking groove 10, branch circuit board 11, branch circuit emission module contact positive and negative 12, positioning column 13, extendable FPC connecting line 14, total power supply input positive and negative 15, connecting positive and negative 16, matching cover 17, matching hole 18. DETAILED DESCRIPTION

[0019] The technical scheme of the magnetic type wireless charging module power supply groove of the utility model will be further explained in detail in combination with the embodiment.

[0020] In the description of the utility model, it is necessary to explain that, unless there is definite provision and limitation, the terms "installation", "connection", "connection" should be understood broadly, for example, it can be fixed connection, can also be detachable connection, or integrally connected; it can be mechanical connection, can also be electrical connection; it can be directly connected, can also be indirectly connected through intermediate medium, can be the communication inside two elements. For ordinary skilled in the art, the specific meaning of the above-mentioned terms in the utility model can be understood according to specific circumstances.

[0021] As Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5As shown, the power-on slot of the magnetic wireless charging module of the embodiment includes a slot body 1, two module placement slots 2 are symmetrically formed on the slot body 1, a connecting magnet 3 for attracting the wireless charging module is arranged in the module placement slot, and a module avoiding hole 4 is formed on the slot body 1 corresponding to the module placement slot. A branch line circuit board slot 5 is arranged on the front side of the slot body 1 corresponding to the module placement slot 2, and an FPC circuit slot 6 is arranged on the outer side of the slot body 1 corresponding to the module placement slot 2. A branch line circuit board clamping groove 7 is arranged on the branch line circuit board slot 5 corresponding to each module placement slot, and a contact connecting hole 8 is formed on the slot body 1 corresponding to the branch line circuit board clamping groove 7. A plurality of fixing buckles 9 are arranged on the bottom of the slot body 1. A sticking groove 10 is formed on the slot body 1. A sticking strip can be arranged in the sticking groove 10. A branch line circuit board 11 is arranged on the branch line circuit board slot 5, and the branch line circuit board 11 is clamped with the branch line circuit board clamping groove 7. The branch line circuit board 11 is provided with a branch emission module contact positive and negative electrode 12 corresponding to the contact connecting hole 8. The branch line circuit board slot 5 is provided with a positioning column 13 matched with the positioning groove on the branch line circuit board 11. An extendable FPC connecting line 14 is arranged on the FPC circuit slot 6, and a total power input positive and negative electrode 15 is arranged at the end of the extendable FPC connecting line 14. A connecting positive and negative electrode 16 matched with the branch line circuit board 11 is arranged on the extendable FPC connecting line 14. A matched cover 17 is detachably connected in the module placement slot 2, the matched cover 17 is provided with a hole table matched with the module avoiding hole 4, and a matched hole 18 is formed on the hole table. In use, the slot body 1 can be directly installed at a corresponding position as needed, then the wireless charging module can be installed in the corresponding module placement slot, then the magnet 3 arranged in the module placement slot attracts the wireless charging module with the magnet 3, and at the same time, the protruding coil magnet 3 of the wireless charging module is matched with the module avoiding hole 4. The branch line circuit board 11 can be arranged on the branch line circuit board slot 5 and clamped in the branch line circuit board clamping groove 7, and the positive and negative electrodes of the branch line circuit board 11 can correspond to the contact connecting hole 8, so as to be connected with the wireless charging module arranged in the module placement slot. The FPC circuit can be arranged on the FPC circuit slot 6 and connected with the branch line circuit board 11. During use, a plurality of slot bodies 1 can be arranged side by side to form a plurality of positions capable of wireless charging. The structure of the present application can realize simple installation of the wireless charging module through the prefabricated slot body 1, and the disassembly and assembly structure is simple. The problem of poor slot precision on the desktop is effectively avoided, and the slot body 1 can be arranged at a corresponding position according to specific needs, thereby avoiding the problem that it is difficult to adjust after direct slotting, and when a problem occurs in a certain slot body 1, the slot body 1 can be directly replaced without modifying the overall circuit and the main structure. The prefabricated slot body 1 has low cost. Figure 4d in the formula is a fixed hole distance.

[0022] While the embodiments of the present application have been illustrated and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the spirit and scope of the present application, which should be limited only by the appended claims and their equivalents.

Claims

1. A magnetic wireless charging module power supply slot, characterized in that: Including the groove body, two module placing slots are symmetrically arranged on the groove body, connecting magnets for adsorbing wireless charging modules are arranged in the module placing slots, and module avoiding holes are arranged on the groove body corresponding to the module placing slots; a branch line circuit board slot is arranged on the front side of the groove body corresponding to the module placing slot, and an FPC circuit slot is arranged on the outer side of the groove body corresponding to the module placing slot; a branch line circuit board clamping groove is arranged on the branch line circuit board slot corresponding to each module placing slot, and a contact connecting hole is arranged on the groove body corresponding to the branch line circuit board clamping groove.

2. The magnetic wireless charging module power-on slot of claim 1, wherein: A plurality of fixed buckles are arranged on the bottom of the groove body.

3. The magnetic wireless charging module power-on slot of claim 1, wherein: A sticking groove is arranged on the groove body.

4. The magnetic wireless charging module power-on slot of claim 1, wherein: A branch line circuit board is arranged on the branch line circuit board slot, and the branch line circuit board is clamped with the branch line circuit board clamping groove; the branch line circuit board is provided with branch emission module positive and negative poles corresponding to the contact connecting hole.

5. The magnetic wireless charging module power-on slot of claim 1, wherein: The branch line circuit board slot is provided with a positioning column matched with a positioning groove on the branch line circuit board.

6. The magnetic wireless charging module power-on slot of claim 1, wherein: An extendable FPC connecting line is arranged on the FPC circuit slot, the end of the extendable FPC connecting line is provided with a total power supply input positive and negative pole, and the extendable FPC connecting line is provided with a connecting positive and negative pole matched with the branch line circuit board.

7. The magnetic wireless charging module power-on slot of claim 1, wherein: A matched cover is detachably connected in the module placing slot, a hole table matched with the module avoiding hole is arranged on the matched cover, and a matched hole is arranged on the hole table.