LED row socket structure and LED module

By designing a new LED row socket structure in the LED module, including mounting frame, adapter plate and plug-in slot, the problem that the number of lamp plates in the existing technology must be even, the matching and assembly of odd-numbered lamp plates is achieved, and the scope of application of LED modules is expanded.

CN222915355UActive Publication Date: 2025-05-27XIAN QINGSONG PHOTOELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202421839137.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-05-27
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The number of lamp board rows of existing LED modules must be even, otherwise the distribution board cannot match the lamp board, resulting in the LED module being unable to be assembled normally, limiting the scope of application of LED modules.

Method used

By designing a new LED socket structure, including a mounting frame, adapter board and plug-in slot, the matching of the lamp plate and the distribution board is achieved, allowing the installation of odd-numbered lamp plates.

Benefits of technology

Without changing the original lamp plate and distribution plate structure, the matching of single or odd-row lamp plates and distribution plates is achieved, which expands the scope of application of LED modules and improves assembly flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of LED assembly, and discloses an LED row socket structure and an LED module, the LED row socket structure comprises a distribution plate and a plurality of lamp panels, each lamp panel is provided with a first row socket, the distribution plate is provided with a second row socket, the LED row socket structure also comprises a mounting rack, the lamp panels and the distribution plate are oppositely arranged and are respectively arranged at two sides of the mounting rack; the adapter plate is arranged on the mounting frame, a first adapter row socket and a second adapter row socket which are electrically connected are arranged on the adapter plate, the first adapter row socket is matched with the first row sockets and is electrically connected with one of the first row sockets, and the second adapter row socket is matched with the second row sockets and is electrically connected with one of the second row sockets; according to the novel LED row socket structure, on the basis that an original lamp panel and distribution plate mechanism is not changed, the distribution plate can be matched with the lamp panel row sockets in the odd number of columns, and the problem that an LED module is small in application range is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of LED assembly, in particular to an LED row socket structure and an LED module. Background Technique

[0002] The main components of an LED module generally include a light box, a light board and a control unit. A plurality of light boards and the control unit are both installed in the light box. In order to realize the signal transmission between the light board and the control unit, a distribution board needs to be set, and a plurality of row sockets of the distribution board are connected to the row sockets on the corresponding plurality of light boards, and the control unit is electrically connected to the distribution board.

[0003] In the related art, generally two groups of row sockets are provided on one light board. The two groups of row sockets are arranged on the back of the light board and are located on the opposite sides of the back of the light board. Any one of the two groups of row sockets can be connected to the row socket of the distribution board to realize the signal transmission between the light board and the distribution board. The distribution board is arranged at the intersection position of two columns of light boards, and the row sockets on the distribution board are respectively connected to the adjacent row sockets on the two columns of light boards.

[0004] However, in the above related art, since the distribution board needs to be connected to two adjacent columns of light boards at the same time, the number of columns of light boards on the LED module must be an even number, otherwise the position of the distribution board cannot match the number of columns of light boards, resulting in the LED module being unable to be assembled normally, which limits the application range of the LED module. Content of the Utility Model

[0005] In view of this, the utility model provides an LED row socket structure and an LED module. By setting a new LED row socket structure, on the basis of not changing the original light board and distribution board mechanisms, the distribution board can be matched with the row sockets of an odd number of columns of light boards to solve the problem of the small application range of the LED module.

[0006] In a first aspect, the utility model provides an LED row socket structure, including a distribution board and a plurality of light boards. Each light board is provided with a first row socket, and the distribution board is provided with a second row socket. The LED row socket structure further includes: a mounting rack, the light board and the distribution board are arranged oppositely and are respectively arranged on two sides of the mounting rack; a transfer board, arranged on the mounting rack, and the transfer board is provided with a first transfer row socket and a second transfer row socket which are electrically connected. The first transfer row socket is adapted to the first row socket and is electrically connected to one of the first row sockets, and the second transfer row socket is adapted to the second row socket and is electrically connected to one of the second row sockets.

[0007] Beneficial effects: The distribution board is used to distribute power and signals to the corresponding lamp boards. In a single-row LED socket structure, restricted by the LED module box or housing, multiple single-row lamp boards are arranged opposite to the distribution board. The second-row sockets on the distribution board originally adapted to the double-row lamp boards cannot be aligned and connected to the corresponding first-row sockets. In this application, by providing a mounting bracket, a mounting foundation is provided for the single-row lamp boards and the distribution board respectively. Subsequently, by providing an adapter board, and respectively providing a first adapter row socket adapted to the first-row sockets and a second adapter row socket adapted to the second-row sockets on the opposite sides of the adapter board, the first adapter row socket and the second adapter row socket are electrically connected. Thus, when the first adapter row socket is plugged into the first-row sockets and the second adapter row socket is plugged into the second-row sockets, power or data communication of the first-row sockets - the first adapter row socket - the second adapter row socket - the second-row sockets can be achieved. Furthermore, without changing the structures of the lamp boards and the distribution board, data interaction and power transmission between the lamp boards and the distribution board can be realized in a single-row LED module.

[0008] In an alternative embodiment, the adapter board is located on the side of the mounting bracket facing the lamp board. The mounting bracket is provided with a plugging slot, which is arranged opposite to the second adapter row socket and one of the second-row sockets.

[0009] Beneficial effects: While the mounting bracket provides a fixed mounting foundation for the adapter board, since the adapter board is located on the side of the mounting bracket facing the lamp board, and a plugging slot is provided, the firmness of the installation of the adapter board is improved by limiting the second adapter row socket on the adapter board. At the same time, it also ensures that the second adapter row socket can be plugged into the second-row socket located on the other side of the mounting bracket. In addition, the cooperation between the plugging slot and the second adapter row socket can provide a pre-positioning effect for the assembly of the adapter board, improving the assembly efficiency.

[0010] In an alternative embodiment, a pair of the first-row sockets are provided on the lamp board, and the pair of the first-row sockets are symmetrically arranged about the center line of the lamp board. Multiple pairs of second-row sockets are provided on the distribution board, and each pair of the second-row sockets are symmetrically arranged about the center line of the distribution board. Multiple plugging slots are provided, and the multiple plugging slots are respectively arranged opposite to each pair of the second-row sockets.

[0011] Beneficial effects: By providing a plurality of insertion slots respectively arranged opposite to a corresponding pair of second-row sockets, and since the first-row sockets are symmetrically arranged about the center line of the lamp board, and each pair of second-row sockets is symmetrically arranged about the center line of the distribution board, when the adapter board is inserted into one of the first-row sockets through the first adapter row socket and into one of the second-row sockets through the second adapter row socket, after the adapter board is removed and rotated by 180°, the first adapter row socket can be correspondingly inserted into the other first-row socket, and the second adapter row socket can be inserted into the other second-row socket. That is, the adapter board has two installation methods, and both installation methods can achieve the function of electrically connecting the first-row sockets and the second-row sockets, further improving the flexibility of assembly and facilitating the avoidance of other possible components during the installation process.

[0012] In an optional implementation manner, the adapter board is located on the side of the mounting bracket facing the distribution board. The mounting bracket is provided with insertion slots, and the insertion slots are arranged opposite to the first adapter row socket and opposite to one of the first-row sockets.

[0013] Beneficial effects: While the mounting bracket provides a fixed installation basis for the adapter board, since the adapter board is located on the side of the mounting bracket facing the distribution board and insertion slots are provided, by limiting the first adapter row socket on the adapter board, the firmness of the installation of the adapter board is improved. At the same time, it also ensures that the first adapter row socket can be inserted into the first-row socket located on the other side of the mounting bracket. In addition, the cooperation between the insertion slots and the first adapter row socket can provide a pre-positioning effect for the assembly of the adapter board, improving the assembly efficiency.

[0014] In an optional implementation manner, the lamp board is provided with a pair of the first-row sockets, and the pair of the first-row sockets is symmetrically arranged about the center line of the lamp board. The distribution board is provided with multiple pairs of second-row sockets, and each pair of the second-row sockets is symmetrically arranged about the center line of the distribution board. The insertion slots are provided with two, and the two insertion slots are respectively arranged opposite to different first-row sockets.

[0015] Beneficial effects: By providing a plurality of plug slots respectively arranged opposite to a corresponding pair of first row sockets, and since the first row sockets are symmetrically arranged about the center line of the lamp board, and each pair of second row sockets is symmetrically arranged about the center line of the distribution board, when the adapter board is plugged into one of the first row sockets by the first row of transfer sockets and the second row of transfer sockets is plugged into one of the second row sockets, after the adapter board is disassembled and rotated 180°, the first row of transfer sockets can be correspondingly plugged into the other first row socket, and the second row of transfer sockets can be plugged into the other second row socket. That is, the adapter board has two installation methods, and both installation methods can realize the function of electrically connecting the first row socket and the second row socket, further improving the flexibility of assembly and facilitating avoiding other possible components during the installation process.

[0016] In an alternative embodiment, an installation plate is provided on the mounting frame. One side of the installation plate facing the adapter board has a receiving groove adapted to receive the adapter board, and the plug slot is provided at the bottom of the receiving groove.

[0017] Beneficial effects: By providing the installation plate, the firmness of the installation of the adapter board is improved. By providing the receiving groove, the plate body of the installation plate is installed in the receiving groove, so that it does not additionally occupy the space in the thickness direction of the LED module, and thus there is no need to redesign and adjust other structures such as the LED module box body, improving the structural adaptability and the space utilization rate.

[0018] In an alternative embodiment, the mounting frame includes a rectangular frame and support ribs. The two ends of the support ribs are respectively connected to the opposite ends of the rectangular frame. A relief groove is provided on the support ribs, and the installation plate is connected to the groove wall of the relief groove.

[0019] Beneficial effects: Through the setting of the support ribs, the overall structural strength of the mounting frame is improved, and the relief groove on the mounting frame is convenient for receiving the installation plate and limiting the installation plate. Since the installation plate is connected to the groove wall of the relief groove, the support ribs reinforce the installation plate, improving the structural reliability at the installation plate.

[0020] In an alternative embodiment, the adapter board is connected to the bottom of the receiving groove by a fastener.

[0021] Beneficial effects: The adapter board is directly installed on the bottom of the receiving groove through the fastener, so that the connection between the adapter board and the mounting frame can be completed without other connection structures such as connection ears, further saving space. And on the basis of pre-positioning through the receiving groove and the first row of transfer sockets or the second row of transfer sockets, the connection position of the fastener is easy to align, and the assembly operation is simple and rapid.

[0022] Second aspect, the present utility model further provides an LED module, including at least one of the above-mentioned LED row socket structures.

[0023] Beneficial effects: By adopting the above-mentioned LED row socket structure, the LED module can be matched with a single-row light board or an odd-numbered row of light boards. When matching more than one odd-numbered row of light boards, the LED row socket structure in the prior art is combined in parallel with the LED row socket structure of the present application to form a module structure for odd-numbered row of light boards.

[0024] In an optional implementation manner, when there are multiple LED row socket structures, the multiple LED row socket structures are closely arranged along the length direction of the distribution board.

[0025] Beneficial effects: By arranging the row socket structure along the length direction of the distribution board, LED modules with different lengths are formed, improving the applicable range of the LED module. Description of the Drawings

[0026] In order to more clearly illustrate the specific implementation manners of the present utility model or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the specific implementation manners or the prior art. Obviously, the following drawings are some implementation manners of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0027] Figure 1 Schematic diagram of an LED row socket structure according to an embodiment of the present utility model for showing the position structure of the adapter board and the mounting frame;

[0028] Figure 2 Schematic diagram of an LED row socket structure according to an embodiment of the present utility model for showing the positional relationship between the light board and the distribution board;

[0029] Figure 3 Schematic diagram of an LED row socket structure according to an embodiment of the present utility model for showing the positional relationship between the first adapter row socket and the light board;

[0030] Figure 4 Schematic diagram of an LED row socket structure according to an embodiment of the present utility model for showing the positional relationship between the distribution board and the insertion slot;

[0031] Figure 5 Schematic diagram of an LED row socket structure according to an embodiment of the present utility model for showing the structure of the distribution board;

[0032] Figure 6 Schematic diagram of an LED row socket structure in the related art.

[0033] Explanation of the reference numerals:

[0034] 100, Lamp board; 101, First row of sockets; 200, Distribution board; 201, Second row of sockets; 300, Mounting frame; 301, Insertion slot; 302, Mounting plate; 3021, Accommodating groove; 3022, Connecting hole; 303, Rectangular frame; 304, Support rib; 3041, Relief groove; 400, Adapter board; 401, First adapter row of sockets; 402, Second adapter row of sockets; 500, Fastener; 501, Connecting column; 502, Screw. Detailed implementation manners

[0035] To make the objectives, technical solutions, and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present utility model. Apparently, the described embodiments are some, but not all, of the embodiments of the present utility model. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative efforts fall within the protection scope of the present utility model.

[0036] In the related art, since two sets of row sockets are provided on the lamp board, and multiple sets of row sockets are provided on the distribution board and one distribution board is adapted to two or more lamp boards in adjacent two columns, in the case of an LED module with a single row or an odd number of rows of lamp boards, there is always one row of lamp boards on the LED module that needs to be separately connected and coordinated with one row of the distribution board. And the position where the distribution board is located is at the edge of all the lamp boards and will protrude a certain distance from the position of the lamp board, resulting in a relatively wide lamp board-free area at the edge of the screen of the LED module, seriously affecting the product effect.

[0037] This application designs an LED lamp board row socket structure, adjusts and transfers the row sockets by using an adapter board and sets corresponding installation structures, so that the row sockets of the lamp board are transferred to a position close to the middle of the lamp board. On the premise that the distribution board is electrically connected to the row sockets of the lamp board, the distribution board can be set at a position opposite to the middle of the lamp board, so as to realize the matching of a single row of lamp boards and a single row of distribution boards without changing the original lamp board structure and distribution board structure. And because a single row of lamp boards can be matched with a single row of distribution boards, when the number of columns set in the LED module is an odd number greater than 1, the row of lamp boards at the edge uses a row socket structure with an adapter board structure to match with a single row of distribution boards, and the remaining even rows of lamp boards use the row socket structure without an adapter board in the related art, and two rows of lamp boards are matched with one row of distribution boards to solve the problem of a relatively wide lamp board-free area at the edge of the odd-numbered rows of lamp boards, so that the LED module can be matched with the odd-numbered rows of lamp boards and the applicable range of the LED module is improved.

[0038] The following will describe the embodiments of the present utility model in conjunction with Figures 1 to 6 , the embodiments of the present utility model will be described.

[0039] According to an embodiment of the present utility model, on the one hand, a structure of an LED row socket is provided. Please refer to Figures 1 to 4 , which includes a distribution board 200 and a plurality of lamp boards 100. Each lamp board 100 is provided with a first row socket 101, and the distribution board 200 is provided with a second row socket 201. It further includes: a mounting bracket 300, the lamp boards 100 and the distribution board 200 are oppositely arranged and are respectively arranged on both sides of the mounting bracket 300; an adapter board 400, which is arranged on the mounting bracket 300, and the adapter board 400 is provided with an electrically connected first adapter row socket 401 and a second adapter row socket 402. The first adapter row socket 401 is adapted to the first row socket 101 and is electrically connected to one of the first row sockets 101, and the second adapter row socket 402 is adapted to the second row socket 201 and is electrically connected to one of the second row sockets 201.

[0040] In this embodiment, the distribution board 200 is used to distribute power and signals to the corresponding lamp boards 100. In a single-row LED row socket structure, limited by the LED module box or housing, the multiple single-row lamp boards 100 and the distribution board 200 are arranged facing each other, and the second row socket 201 on the distribution board 200 originally adapted to the double-row lamp boards 100 cannot be aligned and connected to the corresponding first row socket 101. In this application, by providing the mounting bracket 300, an installation foundation is respectively provided for the single-row lamp boards 100 and the distribution board 200. Subsequently, by providing the adapter board 400 and respectively arranging a first adapter row socket 401 adapted to the first row socket 101 and a second adapter row socket 402 adapted to the second row socket 201 on the opposite sides of the adapter board 400, and electrically connecting the first adapter row socket 401 and the second adapter row socket 402, so that when the first adapter row socket 401 is plugged into the first row socket 101 and the second adapter row socket 402 is plugged into the second row socket 201, the power or data connection of the first row socket 101 - the first adapter row socket 401 - the second adapter row socket 402 - the second row socket 201 can be realized. Furthermore, without changing the structures of the lamp boards 100 and the distribution board 200, data interaction and power transmission between the lamp boards 100 and the distribution board 200 can be realized in a single-row LED module.

[0041] In the above embodiment, specifically, the mounting bracket 300 is arranged inside the LED module box and serves as a bracket for providing an installation foundation for the lamp boards 100, the distribution board 200 and other components. The specific form of the mounting bracket 300 is not limited in this embodiment.

[0042] In addition, specifically, the adapter board 400 can be a PCB board with built-in circuits, which electrically connects the first adapter row socket 401 and the second adapter row socket 402 through its own built-in circuits, and realizes power transmission, or / and data transmission to the first row socket 101 and the second row socket 201. In some embodiments, the adapter board 400 may not be a PCB board with built-in circuits, and the first adapter row socket 401 and the second adapter row socket 402 are connected through data wires and power wires. In some embodiments not shown, the data wires and circuit wires can be clamped on the surface of the adapter board 400 through fixing parts such as hose clamps, or can penetrate into the interior of the adapter board 400, so as to avoid the situation of redundant wires inside the LED module.

[0043] In one embodiment, please refer to Figures 1 to 5 , the adapter board 400 is located on the side of the mounting bracket 300 facing the lamp board 100. The mounting bracket 300 is provided with a plug-in slot 301, which is oppositely arranged with the second adapter row socket 402 and is oppositely arranged with one of the second row sockets 201.

[0044] In this embodiment, while the mounting bracket 300 provides a fixed installation basis for the adapter board 400, since the adapter board 400 is located on the side of the mounting bracket 300 facing the lamp board 100, and due to the provision of the plug-in slot 301, the installation firmness of the adapter board 400 is improved by limiting the second adapter row socket 402 on the adapter board 400. At the same time, it also ensures that the second adapter row socket 402 can be plugged into the second row socket 201 located on the other side of the mounting bracket 300. In addition, the cooperation between the plug-in slot 301 and the second adapter row socket 402 can provide a pre-positioning effect for the assembly of the adapter board 400 and improve the assembly efficiency.

[0045] In one embodiment, the lamp board 100 is provided with a pair of first row sockets 101, and the pair of first row sockets 101 are symmetrically arranged about the center line of the lamp board 100. The distribution board 200 is provided with multiple pairs of second row sockets 201, and each pair of second row sockets 201 are symmetrically arranged about the center line of the distribution board 200. The plug-in slot 301 has multiple ones, and the multiple plug-in slots 301 are respectively oppositely arranged with each pair of second row sockets 201.

[0046] Please refer to Figure 1, the insertion slots 301 are symmetrically arranged about the center line of the distribution board 200, and the shapes and positions of the insertion slots 301 and the second adapter row socket 402 correspond and match. After the second adapter row socket 402 is flipped 180°, the insertion slots 301 can still be adapted to the second adapter row socket 402. Therefore, in this embodiment, by providing a plurality of insertion slots 301 respectively arranged opposite to a corresponding pair of second row sockets 201, and since the first row socket 101 is symmetrically arranged about the center line of the lamp board 100, and each pair of second row sockets 201 is symmetrically arranged about the center line of the distribution board 200, when the adapter board 400 is inserted with the first adapter row socket 401 into one of the first row sockets 101 and the second adapter row socket 402 into one of the second row sockets 201, after the adapter board 400 is disassembled and rotated 180°, the first adapter row socket 401 can be correspondingly inserted into the other first row socket 101, and the second adapter row socket 402 can be inserted into the other second row socket 201. That is, the adapter board 400 has two installation methods, and both installation methods can realize the function of electrically connecting the first row socket 101 and the second row socket 201, further improving the flexibility of assembly and facilitating the avoidance of other possible components during the installation process.

[0047] It should be noted that the disassembly of the adapter board 400 as described above specifically refers to the situation where the first adapter row socket 401 on the adapter board 400 is separated from the first row socket 101, the second adapter row socket 402 is separated from the second row socket 201, and the adapter board 400 is disassembled from the mounting bracket 300. The rotation of the adapter board 400 by 180° specifically means that at the position corresponding to the lamp board 100, the adapter board 400 is rotated 180° while keeping parallel to the lamp board 100, and the orientations of the first adapter row socket 401 and the second adapter row socket 402 do not change during the rotation process.

[0048] In an embodiment not shown, the adapter board 400 is located on the side of the mounting bracket 300 facing the distribution board 200. The mounting bracket 300 is provided with insertion slots 301, which are arranged opposite to the first adapter row socket 401 and one of the first row sockets 101.

[0049] In this embodiment, while the mounting bracket 300 provides a fixed installation basis for the adapter board 400, since the adapter board 400 is located on the side of the mounting bracket 300 facing the distribution board 200, by providing the insertion slots 301, the installation firmness of the adapter board 400 is improved by limiting the first adapter row socket 401 on the adapter board 400. At the same time, it also ensures that the first adapter row socket 401 can be inserted into the first row socket 101 located on the other side of the mounting bracket 300. In addition, the cooperation between the insertion slots 301 and the first adapter row socket 401 can provide a pre-positioning effect for the assembly of the adapter board 400, improving the assembly efficiency.

[0050] In one embodiment, a pair of first row sockets 101 are provided on the lamp board 100. The pair of first row sockets 101 are symmetrically arranged with respect to the center line of the lamp board 100. A plurality of pairs of second row sockets 201 are provided on the distribution board 200. Each pair of second row sockets 201 are symmetrically arranged with respect to the center line of the distribution board 200. There are two plugging slots 301, and the two plugging slots 301 are respectively arranged opposite to different first row sockets 101.

[0051] In this embodiment, by arranging a plurality of plugging slots 301 respectively opposite to a corresponding pair of first row sockets 101, and since the first row sockets 101 are symmetrically arranged with respect to the center line of the lamp board 100, and each pair of second row sockets 201 are symmetrically arranged with respect to the center line of the distribution board 200, when the adapter board 400 is plugged with one of the first row sockets 101 at the first adapter row socket 401 and plugged with one of the second row sockets 201 at the second adapter row socket 402, after the adapter board 400 is disassembled and rotated 180°, the first adapter row socket 401 can be correspondingly plugged with the other first row socket 101, and the second adapter row socket 402 can be plugged with the other second row socket 201. That is, the adapter board 400 has two installation methods, and both installation methods can realize the function of electrically connecting the first row socket 101 and the second row socket 201, further improving the flexibility of assembly and facilitating the avoidance of other possible components during the installation process.

[0052] It should be noted that the disassembly of the adapter board 400 mentioned above specifically refers to the situation where the first adapter row socket 401 on the adapter board 400 is separated from the first row socket 101, the second adapter row socket 402 is separated from the second row socket 201, and the adapter board 400 is disassembled from the mounting frame 300. The rotation of the adapter board 400 by 180° specifically means that at the position corresponding to the lamp board 100, the adapter board 400 is rotated 180° while keeping parallel to the lamp board 100, and the orientations of the first adapter row socket 401 and the second adapter row socket 402 do not change during the rotation process.

[0053] In one embodiment, please refer to Figures 1 to 4 , a mounting plate 302 is provided on the mounting frame 300. One side of the mounting plate 302 facing the adapter board 400 has a receiving groove 3021 adapted to receive the adapter board 400, and the plugging slot 301 is provided at the bottom of the receiving groove 3021.

[0054] In this embodiment, by providing the mounting plate 302, the firmness of the installation of the adapter plate 400 is improved. By providing the receiving groove 3021, the plate body of the mounting plate 302 is installed in the receiving groove 3021, so that the space in the thickness direction of the LED module is not additionally occupied. Therefore, it is not necessary to redesign and adjust other structures such as the LED module box, which improves the structural adaptability and the space utilization rate.

[0055] In one embodiment, the mounting frame 300 includes a rectangular frame 303 and support ribs 304. Both ends of the support ribs 304 are respectively connected to the opposite ends of the rectangular frame 303. A relief groove 3041 is provided on the support ribs 304, and the mounting plate 302 is connected to the groove wall of the relief groove 3041.

[0056] In this embodiment, by providing the support ribs 304, the overall structural strength of the mounting frame 300 is improved. The relief groove 3041 on the mounting frame 300 facilitates the accommodation of the mounting plate 302 and positions the mounting plate 302. Since the mounting plate 302 is connected to the groove wall of the relief groove 3041, the support ribs 304 reinforce the mounting plate 302, improving the structural reliability at the mounting plate 302.

[0057] In one embodiment, the adapter plate 400 is connected to the bottom of the receiving groove 3021 through a fastener 500.

[0058] This application does not limit the specific form of the connection of the fastener 500 to the adapter plate 400. Exemplarily, the fastener 500 includes a screw 502. A connection post 501 is provided on the adapter plate 400, and a threaded hole is provided in the connection post 501. The screw 502 is adapted to the threaded hole. A connection hole 3022 is provided on the adapter plate 400 at a position adapted to the threaded hole. When the adapter plate 400 and the mounting plate 302 are assembled, the screw 502 passes through the connection hole 3022 and is connected to the threaded hole.

[0059] In this embodiment, the adapter plate 400 is directly mounted on the bottom of the receiving groove 3021 through the fastener 500, so that the connection between the adapter plate 400 and the mounting frame 300 can be completed without other connection structures such as connection ears, further saving space. On the basis of pre-positioning through the receiving groove 3021 and the first adapter row socket 401 or the second adapter row socket 402, the connection position of the fastener 500 is easy to align, and the assembly operation is simple and rapid.

[0060] According to an embodiment of the present invention, on the other hand, an LED module is further provided, including at least one of the above-mentioned LED row socket structures.

[0061] In this embodiment, by adopting the above-mentioned LED row socket structure, the LED module can be matched with a single-row light board 100 or an odd-numbered row of light boards 100. When matching more than one odd-numbered row of light boards 100, the LED row socket structure in the related art and the LED row socket structure of the present application are arranged in parallel to form a module structure for the odd-numbered row of light boards 100.

[0062] In the above embodiment, by way of example, when the LED module needs to be provided with 5 rows of light boards 100, two sets of LED row socket structures in the related art (please refer to Figure 6 ) and one set of LED row socket structures in the embodiment of the present application are arranged in parallel.

[0063] In one embodiment, in the case where there are multiple LED row socket structures, the multiple LED row socket structures are closely arranged along the length direction of the distribution board 200.

[0064] In this embodiment, by arranging the row socket structure along the length direction of the distribution board 200, LED modules with different lengths are formed, improving the applicable range of the LED module.

[0065] Although the embodiments of the present utility model have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present utility model, and such modifications and variations fall within the scope defined by the appended claims.

Claims

1. An LED row socket structure, comprising a distribution plate (200) and a plurality of lamp boards (100), each of the lamp boards (100) being provided with a first row of sockets (101), and the distribution plate (200) being provided with a second row of sockets (201), characterized in that: Also includes: A mounting frame (300), wherein the lamp panel (100) and the distribution plate (200) are arranged opposite to each other and are arranged on both sides of the mounting frame (300); An adapter plate (400) is arranged on the mounting frame (300), and a first adapter row socket (401) and a second adapter row socket (402) which are electrically connected are provided on the adapter plate (400), wherein the first adapter row socket (401) is adapted to the first row sockets (101) and is electrically connected to one of the first row sockets (101), and the second adapter row socket (402) is adapted to the second row sockets (201) and is electrically connected to one of the second row sockets (201).

2. The LED row socket structure according to claim 1, characterized in that: The adapter plate (400) is located on a side of the mounting frame (300) facing the lamp panel (100), and a plug-in slot (301) is provided on the mounting frame (300). The plug-in slot (301) is arranged opposite to the second adapter row socket (402) and opposite to one of the second row sockets (201).

3. The LED row socket structure according to claim 2, characterized in that: The lamp board (100) is provided with a pair of the first row sockets (101), and the pair of the first row sockets (101) are symmetrically arranged about the center line of the lamp board (100); the distribution board (200) is provided with a plurality of pairs of the second row sockets (201), and each pair of the second row sockets (201) is symmetrically arranged about the center line of the distribution board (200); a plurality of the plug-in slots (301) are provided, and the plurality of the plug-in slots (301) are respectively arranged opposite to each pair of the second row sockets (201).

4. The LED row socket structure according to claim 1, characterized in that: The adapter plate (400) is located on a side of the mounting frame (300) facing the distribution plate (200), and a plugging slot (301) is provided on the mounting frame (300). The plugging slot (301) is arranged opposite to the first adapter row socket (401) and opposite to one of the first row sockets (101).

5. The LED row socket structure according to claim 2, characterized in that: The lamp board (100) is provided with a pair of the first row sockets (101), and the pair of the first row sockets (101) are symmetrically arranged about the center line of the lamp board (100); the distribution board (200) is provided with a plurality of pairs of the second row sockets (201), and each pair of the second row sockets (201) are symmetrically arranged about the center line of the distribution board (200); and two plug-in slots (301) are provided, and the two plug-in slots (301) are respectively arranged opposite to different first row sockets (101).

6. The LED row socket structure according to claim 2 or 4, characterized in that: The mounting frame (300) is provided with a mounting plate (302), and the side of the mounting plate (302) facing the adapter plate (400) has a receiving groove (3021) suitable for receiving the adapter plate (400), and the plug-in groove (301) is provided at the bottom of the receiving groove (3021).

7. The LED row socket structure according to claim 6, characterized in that: The mounting frame (300) comprises a rectangular frame (303) and a supporting rib (304), two ends of the supporting rib (304) are respectively connected to opposite ends of the rectangular frame (303), a clearance groove (3041) is provided on the supporting rib (304), and the mounting plate (302) is connected to the groove wall of the clearance groove (3041).

8. The LED row socket structure according to claim 7, characterized in that: The adapter plate (400) is connected to the bottom of the accommodating groove (3021) via a fastener (500).

9. An LED module, characterized in that: The method comprises at least one LED row socket structure according to any one of claims 1 to 8.

10. The LED module according to claim 9, characterized in that: In the case where a plurality of LED row socket structures are provided, the plurality of LED row socket structures are closely arranged along the length direction of the distribution plate (200).