Adapter and track extension socket assembly

By placing the main control module and the wireless charging module in separate cavities within the wireless charging adapter, the problem of uneven heat dissipation is solved, achieving uniform heat distribution and rapid heat dissipation, thereby improving device performance and user experience.

CN223957350UActive Publication Date: 2026-02-27SHENZHEN GREEN CONNECTION TECH CO LTD
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Patent Information

Application Number
CN202520381956.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-02-27
Estimated Expiration
2035-03-04

AI Technical Summary

Technical Problem

Existing wireless charging adapters have poor internal heat dissipation and uneven heat distribution, which affects device performance and user experience.

Method used

The main control module and the wireless charging module are placed in two independent mounting cavities of the housing. The reasonable layout ensures even heat distribution, and the socket body and charging shell are set to limit the mounting cavity and avoid circuit interference.

Benefits of technology

It achieves uniform heat distribution and rapid heat dissipation, improves the overall layout rationality and heat dissipation effect of the equipment, prevents circuit interference, and enhances equipment performance and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of sockets, in particular to an adapter and a track extension socket assembly. Comprising a shell, a main control module and a wireless charging module, a first mounting cavity and a second mounting cavity are formed in the shell; the main control module is arranged in the first mounting cavity; the wireless charging module is installed in the second installation cavity and electrically connected to the main control module. The adapter for the track extension socket assembly not only can provide wireless charging for electronic equipment of a user, but also is more reasonable in overall layout, more uniform in heat source distribution and better in heat dissipation effect.
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Description

TECHNICAL FIELD

[0001] The utility model relates to socket technical field, especially an adapter and track row plug assembly. BACKGROUND

[0002] With the rapid development of smart home and mobile devices, wireless charging technology has become a user demand due to its convenience, and gradually expands to multiple scenarios. As a flexible power supply solution, track row plug is favored by the market due to its modular design. Therefore, a wireless charging adapter for track row plug appears on the market to meet the wireless charging needs of users for track row plug.

[0003] However, the existing wireless charging adapter usually directly installs the main control module and wireless charging module into the shell, which leads to redundant internal circuit layout, and the heat source generated during the charging process is mainly concentrated in a certain place in the shell, resulting in uneven heat source distribution, limited heat dissipation, and affecting device performance and user experience. SUMMARY

[0004] The technical problem to be solved by the embodiments of the utility model is to provide an adapter and track row plug assembly to solve the problem of poor internal heat dissipation of the adapter of the track row plug assembly in the prior art.

[0005] In a first aspect, the embodiments of the utility model provide an adapter, comprising:

[0006] a shell having a first mounting cavity and a second mounting cavity inside;

[0007] a main control module installed in the first mounting cavity;

[0008] a wireless charging module installed in the second mounting cavity, the wireless charging module being electrically connected to the main control module.

[0009] In an embodiment, the shell includes a socket body and a charging shell, the top of the socket body is provided with a mounting groove, the charging shell cover is arranged at the groove opening of the mounting groove, the charging shell defines the second mounting cavity, the wireless charging module is installed in the charging shell, the main control module is installed in the mounting groove, and the socket body and the charging shell jointly enclose the first mounting cavity.

[0010] In an embodiment, the wireless charging module includes a charging coil and a circuit board, the charging shell is internally provided with a partition support plate, the charging coil is installed on one side of the partition support plate away from the socket body, the circuit board is installed on the other side of the partition support plate, and the charging coil is electrically connected to the circuit board.

[0011] In an embodiment, the partition support plate is provided with a through hole, and the wireless charging module further comprises a first wire, which is inserted into the through hole and connected to the circuit board and the charging coil respectively.

[0012] In an embodiment, the charging shell comprises a bottom shell and a top cover, the top cover is arranged on the bottom shell, and a through hole is arranged on one side of the bottom shell facing the top cover; a mounting column is arranged on the wall of the mounting groove;

[0013] The adapter further comprises a screw, which is inserted into the through hole and threadedly connected to the mounting column.

[0014] In an embodiment, the mounting groove comprises a first accommodating portion and a second accommodating portion; the second accommodating portion is located on the side of the first accommodating portion away from the charging shell, and the inner contour of the first accommodating portion is larger than that of the second accommodating portion to form a step; a positioning boss is arranged on the side of the charging shell facing the mounting groove, and the positioning boss is clamped in the step.

[0015] In an embodiment, the shell further comprises an anti-skid cover, which is arranged on the top of the charging shell, and a magnet is arranged in the anti-skid cover.

[0016] In an embodiment, a rotating seat is further provided, which is sleeved on the outside of the socket body and rotatably arranged on the socket body along the central axis of the socket body, the rotating seat comprises a rotating base plate, and a connecting hole is arranged on the rotating base plate;

[0017] The bottom of the socket body is provided with a conductive plug, which comprises a shaft portion, a connecting portion and a conductive portion, the shaft portion is rotatably connected to the socket body, and the rotation axis of the shaft portion is arranged in parallel with the central axis of the socket body; one end of the shaft portion is located in the mounting groove, and the other end is exposed on the bottom of the socket body; the connecting portion is inserted into the connecting hole and connected to one end of the shaft portion; the conductive portion is arranged on the other end of the shaft portion, and the conductive portion extends towards the central axis of the socket body; the shaft portion is hollow to form a connecting channel for electrically connecting the conductive portion to the main control module;

[0018] The rotating seat is rotated to drive the connecting portion to rotate the shaft portion, and the conductive portion is opened outwardly away from the center of the socket body.

[0019] In an embodiment, a locking assembly is further included, which comprises a locking piece and a first elastic piece, the locking piece is arranged in the socket body, the locking piece is provided with a hook, the hook is exposed at the bottom of the socket body, the hook is used for locking with the track socket, and the first elastic piece is connected to the locking piece; wherein the locking piece is movably arranged in the socket body in the direction perpendicular to the central axis of the socket body, so that when the locking piece is forced, the first elastic piece is compressed to store energy, the hook is retracted and unlocked with the track socket, and the hook is reset when the first elastic piece releases energy.

[0020] In a second aspect, the utility model embodiment further provides a track socket assembly, which comprises the adapter of the above-embodiments.

[0021] Compared with the prior art, the adapter and the track socket assembly have the beneficial effects that the adapter can provide wireless charging for the user's electronic device, and because the overall layout of the adapter is more reasonable and the heat source is more evenly distributed, the heat dissipation effect of the adapter is better.

[0022] Specifically, the main control module and the wireless charging module generate heat when working, and by placing the two modules in two adjacent but independent cavities, the heat is more evenly distributed in the shell, avoiding the concentration of heat in a certain place of the shell, which helps to quickly dissipate heat inside the shell. Secondly, the arrangement of the second mounting cavity and the first mounting cavity avoids the mutual interference of the circuits between the two modules, and the circuit of each module has a separate space, effectively preventing problems such as line crossing and interference between them, and further improving the overall layout rationality of the adapter. BRIEF DESCRIPTION OF DRAWINGS

[0023] The specific implementation of the utility model will be further described in detail below in combination with the drawings and embodiments, and the drawings are as follows:

[0024] Figure 1 is a perspective view of the adapter provided by the utility model embodiment;

[0025] Figure 2 is a disassembly view of the socket body and the wireless charging assembly provided by the utility model embodiment;

[0026] Figure 3 is a disassembly view of the wireless charging assembly provided by the utility model embodiment;

[0027] Figure 4 is a top view of the adapter provided by the utility model embodiment;

[0028] Figure 5 is Figure 4 is a sectional view along line A-A;

[0029] Figure 6 is a disassembled schematic view of the anti-skid cover and the charging shell provided by the embodiment of the present application;

[0030] Figure 7 is a three-dimensional schematic view of the wireless charging assembly provided by the embodiment of the present application;

[0031] Figure 8 is an assembly schematic view of the wireless charging assembly, the screw element and the socket body provided by the embodiment of the present application;

[0032] Figure 9 is one of the internal assembly schematic views of the rotating seat and the socket body provided by the embodiment of the present application;

[0033] Figure 10 is a disassembled schematic view of the rotating seat and the socket body provided by the embodiment of the present application;

[0034] Figure 11 is the second internal assembly schematic view of the rotating seat and the socket body provided by the embodiment of the present application;

[0035] Figure 12 is a schematic view of the open state of the conductive plug provided by the embodiment of the present application;

[0036] Figure 13 is a three-dimensional schematic view of the conductive plug provided by the embodiment of the present application;

[0037] Figure 14 is a schematic view of the locked state of the locking assembly provided by the embodiment of the present application;

[0038] Figure 15 is a schematic view of the locked and unlocked state of the locking assembly provided by the embodiment of the present application;

[0039] Figure 16 is a three-dimensional schematic view of the locking assembly provided by the embodiment of the present application;

[0040] Figure 17 is a three-dimensional schematic view of the track socket assembly provided by the embodiment of the present application.

[0041] The reference signs in the drawings are as follows:

[0042] 1000, track socket assembly;

[0043] 100, adapter;

[0044] 10. Housing; 11. First mounting cavity; 12. Second mounting cavity; 13. Opening; 14. Socket body; 141. Mounting groove; 1411. First receiving part; 1412. Second receiving part; 1413. Step; 142. Guide seat; 1421. Receiving groove; 15. Charging shell; 151. Partition support plate; 1511. Through port; 1512. Mounting groove; 152. Annular insertion groove; 153. Bottom shell; 1531. Through hole; 1532. Positioning boss; 154. Top cover; 16. Conductive pin; 161. Shaft; 1611. Connecting channel; 162. Connecting part; 163. Conductive part; 17. Anti-slip cover; 171. Support plate; 172. Protruding edge; 18. First wire; 19. Ground wire metal connector;

[0045] 20. Main control module;

[0046] 30. Wireless charging module; 31. Charging coil; 32. Circuit board;

[0047] 40. Screws;

[0048] 50. Rotating seat; 51. Rotating base plate; 511. Connecting hole; 52. Second elastic element;

[0049] 60. Locking component; 61. Locking element; 611. Hook; 62. First elastic element;

[0050] 200. Rail connector; 210. Rail groove. Detailed Implementation

[0051] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The preferred embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0052] This utility model provides an adapter 100, which is applied to a track power strip assembly 1000. For example... Figure 1 - Figure 5 As shown, the adapter 100 includes a housing 10, a main control module 20, and a wireless charging module 30. The housing 10 has a first mounting cavity 11 and a second mounting cavity 12. The main control module 20 is installed in the first mounting cavity 11. The wireless charging module 30 is installed in the second mounting cavity 12 and is electrically connected to the main control module 20. This application can solve the problem of concentrated heat generation and uneven heat dissipation in existing wireless charging adapters. The adapter 100 for the track power strip assembly 1000 not only provides wireless charging for the user's electronic devices, but also has better heat dissipation due to its more reasonable overall layout and more uniform heat source distribution.

[0053] Specifically, the main control module 20 and the wireless charging module 30 generate heat during operation. By placing the two modules in two adjacent but independent cavities, the heat is more evenly distributed within the shell 10, avoiding heat concentration in a certain part of the shell 10, and helping to quickly dissipate heat inside the shell 10. Secondly, the arrangement of the second mounting cavity 12 and the first mounting cavity 11 avoids the mutual interference of the circuits between the two modules. The circuit of each module has its own independent space, effectively preventing problems such as line crossing and interference between each other, and further improving the overall layout rationality inside the adapter 100.

[0054] In an embodiment, the shell 10 includes a socket body 14 and a charging shell 15. The top of the socket body 14 is provided with a mounting groove 141, and the charging shell 15 is arranged at the slot opening of the mounting groove 141. The wireless charging module 30 is arranged in the charging shell 15, and the main control module 20 is arranged in the mounting groove 141. The socket body 14 and the charging shell 15 jointly define the first mounting cavity 11; the charging shell 15 defines the second mounting cavity 12. In this way, the first mounting cavity 11 and the second mounting cavity 12 are defined by the arrangement of the socket body 14 and the charging shell 15. On the one hand, this reduces the difficulty of processing and manufacturing, which is beneficial to production; on the other hand, it facilitates the assembly of the wireless charging module 30 and the main control module 20, and improves the installation efficiency. Specifically, the side of the charging shell 15 facing the socket body 14 is provided with an opening 13, which is in communication with the inside of the shell 10. The opening 13 is used for the conductive wire to pass through, so as to realize the connection between the wireless module and the main control module 20.

[0055] It is worth mentioning that by implementing the above embodiment, the socket body 14 and the charging shell 15 are arranged separately, and the main control module 20 is arranged in the socket body 14. The main control module 20 can also cooperate with other independent components, so that the socket body 14 has universality. In the production link, different socket bodies 14 do not need to be designed and manufactured for adapters 100 with different functions. Only this kind of socket body 14 needs to be produced, and then different independent components such as wireless charging components or other interface components such as USB ports and general jacks are assembled according to the needs, which meets the modular production, thereby effectively reducing the production design cost and manufacturing difficulty. In addition, during maintenance, the operator can also conveniently disassemble the charging shell 15 for inspection and replacement, thereby reducing the maintenance cost.

[0056] Reference Figure 3 Figure 5 ​In an embodiment, the wireless charging module 30 comprises a charging coil 31 and a circuit board 32, the charging shell 15 is internally provided with a partition support plate 151, the charging shell 15 is arranged on the socket body 14, the partition support plate 151 is arranged in the charging shell 15, the charging coil 31 is arranged on one side of the partition support plate 151 away from the socket body 14, the circuit board 32 is arranged on the other side of the partition support plate 151, and the charging coil 31 is electrically connected to the circuit board 32. In this way, on the one hand, the partition support plate 151 divides the inside of the charging shell 15 into two mounting spaces, the charging coil 31 and the circuit board 32 are respectively located in the two mounting spaces, which can make the heat source evenly distributed in the charging shell 15, and help heat dissipation; on the other hand, the charging coil 31 and the circuit board 32 are both mounted on the partition support plate 151, which facilitates workers to install them in place at one time, and realizes convenient installation.

[0057] Specifically, the partition support plate 151 is provided with a through port 1511, and the wireless charging module 30 further comprises a first lead wire, which is arranged through the through port 1511 and connected to the circuit board 32 and the charging coil 31 respectively.

[0058] Preferably, the partition support plate 151 is further provided with a mounting groove 1512, and the charging coil 31 is accommodated in the mounting groove 1512, so as to facilitate assembly of the charging coil 31.

[0059] The wireless charging assembly and the socket body 14 can be connected in many ways, such as buckle connection, magnetic attraction connection, etc. Exemplarily, referring to Figure 8 In the present application, the charging shell 15 comprises a bottom shell 153 and a top cover 154, the top cover 154 is arranged on the bottom shell 153, one side of the bottom shell 153 facing the top cover 154 is provided with a through hole 1531; the slot wall of the mounting slot 141 is provided with a mounting column; the adapter 100 further comprises a screw piece 40, the screw piece 40 is arranged through the through hole 1531 and threadedly connected to the mounting column. In this way, the detachable connection between the charging shell 15 and the socket body 14 is realized by loosening the screw piece 40, the structure is simpler, and the screw piece 40 and the socket body 14 cooperate to generate a fastening force to more firmly fix the charging shell 15. Specifically, the screw piece 40 is a screw.

[0060] Preferably, the screw piece 40, the through hole 1531 and the mounting column are all provided with a plurality of ones, the plurality of through holes 1531 are arranged in a circumferential direction of the bottom shell 153, each screw piece 40 is arranged through each through hole 1531 and threadedly connected to one mounting column, so that the charging shell 15 can be more stably fixed on the socket body 14 under uniform force.

[0061] Referring to Figure 7In an embodiment, the mounting groove 141 comprises a first accommodating portion 1411 and a second accommodating portion 1412; the second accommodating portion 1412 is located on the side of the first accommodating portion 1411 away from the charging shell 15, and the inner contour of the first accommodating portion 1411 is larger than that of the second accommodating portion 1412 to form a step 1413; the side of the charging shell 15 facing the mounting groove 141 is provided with a positioning boss 1532 which is clamped at the step 1413. The first accommodating portion 1411 can limit the movement of the positioning boss 1532 in the horizontal direction, and the step 1413 can provide support to the positioning boss 1532 and limit the movement of the positioning boss 1532 in the vertical direction. In this way, the mounting groove 141 can preliminarily position the charging shell 15, greatly improving the installation efficiency of the charging shell 15.

[0062] Preferably, the outer contour of the first accommodating portion 1411 of the mounting groove 141 is circular, and the outer contour of the positioning boss 1532 is also circular. When a user installs, the user does not need to pay attention to the placement angle of the charging shell 15, and can directly place the positioning boss 1532 in the first accommodating portion 1411 to cooperate with the step 1413 to form positioning, so that the installation is faster and the complexity of assembly is reduced.

[0063] Referring to Figure 6 In an embodiment, the shell 10 comprises an anti-skid cover 17 which is arranged on the side of the charging shell 15 away from the socket body 14, and the anti-skid cover 17 is internally provided with a magnet (not shown in the figure). In this way, the anti-skid cover 17 is used to contact the electronic device and increase the friction force with the electronic device, and by arranging a magnet inside, the electronic device can be firmly magnetically connected to the wireless charging assembly, improving the stability of the connection between the two.

[0064] The anti-skid cover 17 can be installed in many ways, such as adhesion, threaded connection, etc.; preferably, in the present application,

[0065] The anti-skid cover 17 comprises a support plate 171 and a raised edge 172 arranged around the support plate 171, and the side of the charging shell 15 away from the socket body 14 is provided with an annular insertion groove 152, and the raised edge 172 is clamped in the annular insertion groove 152. In this way, the raised edge 172 is directly embedded in the annular insertion groove 152, which can ensure reliable connection and make the installation process of the anti-skid cover 17 more convenient and efficient.

[0066] Referring to Figure 9 - Figure 13 In an embodiment, the adapter 100 further comprises a rotating seat 50 which is sleeved on the outside of the socket body 14, and the rotating seat 50 is rotatably arranged on the socket body 14 along the direction of the central axis of the socket body 14, and the rotating seat 50 comprises a rotating base plate 51 which is provided with a connecting hole 511.

[0067] The bottom of the socket body 14 is provided with a conductive pin 16 for electrical connection with the track row plug 200, the conductive pin 16 includes a shaft portion 161, a connecting portion 162 and a conductive portion 163, the shaft portion 161 is rotationally connected to the socket body 14, the rotation axis of the shaft portion 161 is arranged in parallel with the central axis of the socket body 14; one end of the shaft portion 161 is located in the mounting groove 141, and the other end is exposed at the bottom of the socket body 14, the connecting portion 162 is arranged at one end of the shaft portion 161 and inserted into the connecting hole 511, and the conductive portion 163 is arranged at the other end of the shaft portion 161, the conductive portion 163 is arranged to extend towards the central axis of the socket body 14, and the shaft portion 161 is hollow to form a connecting channel 1611 for electrically connecting the conductive portion 163 to the main control module 20; wherein the rotating seat 50 is rotated to drive the connecting portion 162 to rotate the shaft portion 161, and the conductive portion 163 is opened outwardly away from the center of the socket body 14 or retracted inwardly towards the center of the socket body 14. By rotating the rotating seat 50, the adapter 100 can be closed and opened, and when the adapter 100 is matched with the track row plug 200, the user can only operate the adapter 100 to close or open, without affecting the normal use of other adapters 100 on the track plug row, thereby improving the use flexibility and convenience of the adapter 100.

[0068] Specifically, the rotating seat 50 is rotated to rotate the base plate 51 relative to the socket body 14, at this time, since the connecting portion 162 of the conductive pin 16 is inserted into the connecting hole 511 of the rotating base plate 51, the rotation of the rotating base plate 51 can drive the connecting portion 162 to swing, and then the connecting portion 162 drives the shaft portion 161 to rotate upwardly, so that the conductive portion 163 can be opened or retracted away from or towards the center of the socket body 14, when the conductive portion 163 is in the opened state, it is in conduction with the metal connecting piece in the track plug row, thereby realizing electrical connection, and when the conductive portion 163 is retracted, it is disconnected from the metal connecting piece of the track plug row, thereby cutting off the conduction, and realizing the closing of the adapter 100.

[0069] More specifically, the connecting hole 511 and the conductive pin 16 are both provided with two, the two conductive pins 16 are oppositely arranged, each conductive pin is matched with a corresponding connecting hole 511, one of the conductive pins 16 is used to contact the metal connecting piece connected with the zero line in the track plug row, and the other conductive pin 16 is used to contact the metal connecting piece connected with the live line in the track plug row, by rotating the rotating seat 50, the conductive portions 163 of the two conductive pins 16 can be simultaneously opened outwardly or retracted inwardly.

[0070] The bottom of the socket body 14 is also provided with a ground metal connecting piece 19, one end of which is located outside the bottom of the socket body 14, and the other end is located in the mounting groove 141 and is electrically connected with the main control module 20. In this way, the ground metal connecting piece 19 can be connected with the total power ground wire through the track socket 200, and when the adapter 100 leaks, the current will quickly flow to the ground through the ground metal connecting piece 19, avoiding direct contact of the human body with the live parts, reducing the occurrence of electric shock accidents, and improving the safety of the adapter 100.

[0071] With reference to Figure 12 In an embodiment, the bottom of the socket body 14 is provided with a guide seat 142, which is provided with a containing groove 1421, and the conductive pin 16 is contained in the containing groove 1421. The guide seat 142 is used to provide guidance when the adapter 100 is installed on the track socket 200. In this way, the guide seat 142 can provide guidance for the socket body 14 when the socket body 14 is inserted into the track of the track socket 200, facilitating the quick installation of the socket body 14 on the track socket 200, effectively reducing the jamming during the installation of the socket body 14. The conductive pin 16 is contained in the containing groove 1421, and the groove wall of the containing groove 1421 can limit the conductive pin 16, which is conducive to the installation of the conductive pin 16 to the correct position, ensuring that the conductive pin can be in contact with the metal connecting piece of the track socket, improving the accuracy of operation, and improving the reliability of the adapter 100.

[0072] With reference to Figure 10 In an embodiment, the adapter 100 further comprises a second elastic member 52, which is installed in the socket body 14. The rotating base plate 51 is also provided with a clamping plug, and the second elastic member 52 is clamped in the clamping plug. The rotating base plate 51 drives the second elastic member 52 to bend in the rotating path, and the second elastic member 52 is stressed and stored energy at this time. In this way, the elastic force provided by the second elastic member 52 maintains the relative position of the rotating seat 50 on the socket body 14, and ensures that the rotating seat 50 can always maintain the current position without deviation and shaking when there is no external force in the open or closed state of the adapter 100, further improving the reliability of the adapter 100.

[0073] With reference to Figure 14 - Figure 16In an embodiment, the adapter 100 further comprises a locking assembly 60, which comprises a locking piece 61 and a first elastic piece 62, the locking piece 61 is arranged through the socket body 14, the locking piece 61 is provided with a hook 611, which is exposed at the bottom of the socket body 14, and the hook 611 is used for locking with the track socket 200, and the first elastic piece 62 is connected to the locking piece 61; wherein the locking piece 61 is movably arranged on the socket body 14 in a direction perpendicular to the central axis of the socket body 14, so that when the locking piece 61 is forced, the first elastic piece 62 is compressed to store energy, the hook 611 is retracted and unlocked with the track socket 200, and the hook 611 is reset when the first elastic piece 62 releases energy. In this way, the locking assembly 60 can improve the connection stability of the adapter 100 and the track socket 200, and can still maintain the connection with the track socket 200 when the adapter 100 is vibrated by external factors, thereby preventing the adapter 100 from falling off.

[0074] Specifically, one end of the locking piece 61 is exposed outside the socket body 14, and the other end is located inside the socket body 14. After the socket body 14 is installed, the user presses the end of the locking piece 61 exposed outside the socket body 14, so that the locking piece 61 moves relative to the socket body 14 and drives the hook 611 to move. At this time, the hook 611 is disengaged from the track socket 200 to unlock, and the adapter 100 can be removed from the track socket 200. The first elastic piece 62 is a spring, which is compressed and stored when the locking piece 61 is pressed, and is reset by the elastic force generated when the adapter 100 falls off the track, so that the hook 611 can automatically cooperate with the track socket 200 to form a lock when the adapter 100 is reinstalled, and the user does not need to press the locking piece 61 repeatedly, and the installation efficiency is higher.

[0075] The utility model embodiment further provides a track socket assembly 1000, which comprises the adapter 100 and the track socket 200 of the above-mentioned embodiments, and the track socket 200 is provided with a track slot 210, and the socket body 14 is inserted into the track slot 210 to realize electrical connection with the track socket 200.

[0076] It should be understood that the above embodiments are only used to illustrate the technical solutions of the utility model, and not to limit them. Those skilled in the art can modify the technical solutions described in the above embodiments, or make equivalent replacement to some technical features; and all these modifications and replacements shall belong to the protection scope of the claims of the utility model.

Claims

1. An adapter for use with a track outlet strip assembly, the adapter comprising: The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device.

2. The adapter of claim 1, wherein, The application relates to a wireless charging device.

3. The adapter of claim 2, wherein, The application relates to a wireless charging device.

4. The adapter of claim 3, wherein, The application relates to a wireless charging device.

5. The adapter of claim 2, wherein, The application relates to a wireless charging device. The application relates to a wireless charging device.

6. The adapter of claim 5, wherein, The application relates to a wireless charging device.

7. The adapter of claim 2, wherein, The application relates to a wireless charging device.

8. The adapter of any one of claims 2-7, wherein, The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. 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The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. 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The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a wireless charging device. The application relates to a 9. The adapter of claim 8, wherein, The locking assembly comprises a locking piece and a first elastic piece, the locking piece is arranged in the socket body, the locking piece is provided with a hook, the hook is exposed at the bottom of the socket body, the hook is used for locking with the track socket, and the first elastic piece is connected to the locking piece; wherein the locking piece is movably arranged in the socket body in the direction perpendicular to the central axis of the socket body, so that when the locking piece is stressed, the first elastic piece is compressed and stored, the hook is retracted and unlocked with the track socket, and the hook is reset when the first elastic piece is released.

10. A track outlet strip assembly characterized by, The adapter comprises the adapter according to any one of claims 1-9.