Open-mounted magnetic guide rail adapter
By using the surface-mounted magnetic guide rail adapter design, which employs a connector plug and slot structure and conductive pin insertion, the problem of traditional adapters being unable to flexibly adjust the angle is solved, achieving the effects of simple structure, stable connection and convenient assembly.
Patent Information
- Application Number
- CN202422741294.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-11
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-11-11
AI Technical Summary
Traditional adapter designs cannot flexibly adjust the connection angle, have complex structures that are prone to loosening, resulting in unstable conductivity, increased labor and time costs, and difficulty in meeting the needs of multi-angle cabling.
Design a surface-mounted magnetic guide rail adapter that uses a connector plug and slot structure, combined with conductive pins and tubes for insertion. It adapts to different installation environments through various connector styles and ensures stable connection using fasteners and positioning blocks.
It features a simple structure, convenient assembly, flexible adjustment of connection angles to reduce loosening and poor contact, meets various installation requirements, and reduces labor and time costs.
Smart Images

Figure CN223552824U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of adapter technology, specifically relating to an exposed magnetic guide rail adapter. Background Technology
[0002] In the installation of current electronic devices and lighting systems, the diversity and adaptability of connection modules are a key issue. To meet the needs of different environments and spatial layouts, various types of adapters are typically required to achieve flexible and reliable connections within limited spaces. However, traditional adapter designs often face the following technical challenges:
[0003] Many traditional adapters are only suitable for fixed connection angles or directions and cannot be flexibly adjusted. This limitation is particularly pronounced in environments with multi-angle or complex cabling requirements, making it difficult to meet diverse installation needs.
[0004] Many traditional adapters have complex structures and typically require multiple components for installation. This not only increases assembly steps but also raises labor and time costs, hindering large-scale application and promotion.
[0005] Traditional adapters may experience loose or poor contact at the contact points, leading to unstable conductivity, affecting the normal operation of electrical systems, and even posing safety hazards.
[0006] Therefore, overcoming the shortcomings of the existing technology is an urgent problem to be solved in this technical field. Utility Model Content
[0007] In view of the technical problems mentioned in the background art, the purpose of this utility model is to provide a surface-mounted magnetic guide rail adapter with a simple structure, convenient assembly, and various different styles of connectors to adapt to different installation environments and spatial layouts, so as to meet the needs of different installation angles, thereby solving the technical problems mentioned in the background art.
[0008] To achieve the above objectives, the present invention provides the following technical solution: a surface-mounted magnetic guide rail adapter, comprising a connector housing, a connector plug at one end of the connector housing, a connector slot at another end of the connector housing, symmetrically arranged connecting grooves on both sides of the connector plug, and symmetrically arranged connecting holes on both rear sides of the connector slot. Conductive tubes are connected to the connecting grooves, and conductive pins are connected to the connecting holes. When the adapter is connected, the connector plug is inserted into the connector slot, and simultaneously, the conductive pins are correspondingly inserted into the conductive tubes for conductive contact.
[0009] Furthermore, the interior of the connector housing is recessed with a mounting groove, the edge of which is recessed with a mounting cover groove, a mounting cover plate is embedded in the mounting cover groove, the interior of the mounting groove is provided with a plurality of connecting through posts, and the surface of the mounting cover plate is provided with a plurality of connecting through openings, each of the plurality of connecting through openings corresponding to a plurality of connecting through posts, and the fasteners passing through the connecting through openings and connecting through posts are connected and fixed.
[0010] Furthermore, the connector plug has symmetrical recessed positioning grooves on both sides, and the connector slot has convex positioning blocks on both sides, with the positioning blocks and positioning grooves correspondingly positioned and connected.
[0011] Furthermore, the connector housing is a horizontal angle connector, the connector plug is located at the right end of the connector housing, and the connector slot is located at the lower end of the connector housing.
[0012] Furthermore, the connector housing is a vertical angle connector, the connector plug is located at the right end of the connector housing, and the connector slot is located at the lower end of the connector housing.
[0013] Furthermore, the connector housing is a tee connector, and there are two connector plugs, which are symmetrically arranged at the left and right ends of the connector housing. The connector slot is located at the lower end of the connector housing.
[0014] Furthermore, the connector housing is a four-way connector, with two connector plugs, one on the right end and one at the bottom of the connector housing, and two connector slots, one on the left end and one at the top of the connector housing.
[0015] The present invention has the following advantages: one end of the connector housing is provided with a connector plug, and the other end of the connector housing is provided with a connector slot. The connector plug has symmetrical connecting slots on both sides, and the connector slot has symmetrical connecting holes on both sides. Conductive tubes are connected to the two connecting slots respectively, and conductive pins adapted to the conductive tubes are connected to the two connecting holes respectively. When the adapter is connected, the connector plug is inserted into the connector slot, and at the same time, the two conductive pins are correspondingly inserted into the two conductive tubes for contact and conductive connection. The surface-mounted magnetic guide rail adapter of the present invention has a simple structure and is easy to assemble. Through various different styles of connectors, it is easy to adapt to different installation environments and spatial layouts to meet the needs of different installation angles. Attached Figure Description
[0016] Figure 1 This is an exploded structural diagram of the present invention.
[0017] Figure 2 This is a schematic diagram of the first structural embodiment of the present invention.
[0018] Figure 3 This is a schematic diagram of the second structural embodiment of the present invention.
[0019] Figure 4 This is a schematic diagram of the third structural embodiment of the present invention.
[0020] Figure 5 This is a schematic diagram of the fourth structural embodiment of the present invention.
[0021] Reference numerals: Connector housing 10; Connector plug 11; Connector slot 12; Connecting groove 111; Connecting hole 121; Conductive tube 20; Conductive pin 30; Mounting groove 13; Mounting cover groove 131; Mounting cover plate 40; Connecting post 14; Connecting opening 41; Positioning slot 112; Positioning block 122. Detailed Implementation
[0022] like Figures 1 to 5 As shown, an exposed magnetic guide rail adapter includes a connector housing 10. One end of the connector housing 10 is provided with a connector plug 11, and the other end of the connector housing 10 is provided with a connector slot 12. The connector plug 11 has symmetrically opened connecting slots 111 on both sides, and the connector slot 12 has symmetrically opened connecting holes 121 on both rear sides. Conductive tubes 20 are respectively connected to the two connecting slots 111, and conductive pins 30 adapted to the conductive tubes 20 are respectively connected to the two connecting holes 121. When two adapters are connected, the connector plug 11 is inserted into the connector slot 12, and at the same time, the two conductive pins 30 are correspondingly inserted into the two conductive tubes 20 for contact and conductive connection, thereby connecting the two adapters. The structure is simple and easy to assemble.
[0023] In practical implementation, the interior of the connector housing 10 is recessed with a mounting groove 13, and the edge of the mounting groove 13 is recessed with a mounting cover groove 131. A mounting cover plate 40 is embedded in the mounting cover groove 131. The interior of the mounting groove 13 is provided with a plurality of connecting through posts 14. The surface of the mounting cover plate 40 is provided with a plurality of connecting through holes 41. The plurality of connecting through holes 41 correspond one-to-one with the plurality of connecting through posts 14, and are connected and fixed by fasteners passing through the connecting through holes 41 and connecting through posts 14, thereby fixing the mounting cover plate 40 on the connector housing 10. The structure is simple and easy to install. The fixing structure of the mounting cover plate 40 ensures the protection of the internal conductive components by the external environment and reduces the risk of external interference and damage.
[0024] In practical implementation, the connector plug 11 has symmetrically recessed positioning grooves 112 on its upper and lower sides, and the connector slot 12 has correspondingly protruding positioning blocks 122 on its inner sides. The positioning blocks 122 correspond to the positioning grooves 112. When the connector plug 11 is inserted into the connector slot 12, the positioning blocks 122 and the positioning grooves 112 are correspondingly positioned and connected, thereby making the connection between the connector plug 11 and the connector slot 12 more stable and effectively reducing the loosening or poor contact problems that may occur during the connection process.
[0025] First structural embodiment:
[0026] The connector housing 10 is a horizontal corner connector. The connector plug 11 is located at the right end of the connector housing 10, and the connector slot 12 is located at the lower end of the connector housing 10. In use, the connector housing 10 is designed with a horizontal corner, which allows the connector to be flexibly connected and positioned on a horizontal plane, making it easy to adapt to different installation environments and spatial layouts to meet the needs of different installation corners.
[0027] Second structural embodiment:
[0028] The connector housing 10 is a vertical angle connector. The connector plug 11 is located at the right end of the connector housing 10, and the connector slot 12 is located at the lower end of the connector housing 10. In use, the connector housing 10 is designed with a vertical angle, which allows the connection method to be adjusted in the vertical direction. The vertical angle connector can adapt to different installation directions, especially in the vertical connection of equipment, providing greater flexibility.
[0029] Third structural embodiment:
[0030] The connector housing 10 is a tee connector, and there are two connector plugs 11. The two connector plugs 11 are symmetrically arranged at the left and right ends of the connector housing 10. The connector slot 12 is located at the lower end of the connector housing 10. In use, the design of the tee connector allows the electrical connection to be extended in three directions. The combination of the plugs on the left and right sides and the slot at the lower end enables the connector to meet the needs of multi-directional connection and realize the interconnection between multiple devices.
[0031] Fourth structural embodiment:
[0032] The connector housing 10 is a four-way connector with two connector plugs 11, one on the right and one at the bottom. There are also two connector slots 12, one on the left and one at the top. In use, the four-way connector design allows electrical connections to be extended in four directions, making it ideal for multi-directional connection needs. The different plug and slot layouts support the connection and interoperability of multiple devices.
[0033] In summary, the connector housing 10 has a connector plug 11 at one end and a connector slot 12 at the other end. The connector plug 11 has symmetrically arranged connecting grooves 111 on both sides, and symmetrically arranged connecting holes 121 on both rear sides of the connector slot 12. Conductive tubes 20 are connected to the two connecting grooves 111, and conductive pins 30 adapted to the conductive tubes 20 are connected to the two connecting holes 121. When the adapter is connected, the connector plug 11 is inserted into the connector slot 12, and simultaneously, the two conductive pins 30 are correspondingly inserted into the two conductive tubes 20 for conductive contact. This utility model's surface-mounted magnetic guide rail adapter has a simple structure and is easy to assemble. Through various different styles of connectors, it can easily adapt to different installation environments and spatial layouts to meet the needs of different installation angles.
Claims
1. A surface-mounted magnetic guide rail adapter, characterized in that, It includes a connector housing (10), one end of which is provided with a connector plug (11) and the other end of which is provided with a connector slot (12). The connector plug (11) has symmetrically opened connecting grooves (111) on both sides, and the connector slot (12) has symmetrically opened connecting holes (121) on both sides of the rear. The connecting grooves (111) are respectively connected to conductive tubes (20), and the connecting holes (121) are respectively connected to conductive pins (30). When the adapter is connected, the connector plug (11) is inserted into the connector slot (12), and at the same time, the conductive pins (30) are correspondingly inserted into the conductive tubes (20) for conductive contact.
2. The surface-mounted magnetic guide rail adapter according to claim 1, characterized in that, The connector housing (10) has an internal mounting groove (13) and an edge mounting cover groove (131) on its edge. A mounting cover plate (40) is embedded in the mounting cover groove (131). The mounting groove (13) has a plurality of connecting pins (14) inside. The surface of the mounting cover plate (40) has a plurality of connecting openings (41). The plurality of connecting openings (41) correspond one-to-one with the plurality of connecting pins (14), and are connected and fixed by fasteners passing through the connecting openings (41) and the connecting pins (14).
3. The surface-mounted magnetic guide rail adapter according to claim 1, characterized in that, The connector plug (11) has symmetrical recessed positioning grooves (112) on both sides, and the inner sides of the connector slot (12) have convex positioning blocks (122) respectively. The positioning blocks (122) and the positioning grooves (112) are correspondingly positioned and connected.
4. The surface-mounted magnetic guide rail adapter according to claim 1, characterized in that, The connector housing (10) is a horizontal corner connector, the connector plug (11) is located at the right end of the connector housing (10), and the connector slot (12) is located at the lower end of the connector housing (10).
5. The surface-mounted magnetic guide rail adapter according to claim 1, characterized in that, The connector housing (10) is a vertical corner connector, the connector plug (11) is located at the right end of the connector housing (10), and the connector slot (12) is located at the lower end of the connector housing (10).
6. The surface-mounted magnetic guide rail adapter according to claim 1, characterized in that, The connector housing (10) is a three-way connector. There are two connector plugs (11), which are symmetrically arranged at the left and right ends of the connector housing (10). The connector slot (12) is located at the lower end of the connector housing (10).
7. The surface-mounted magnetic guide rail adapter according to claim 1, characterized in that, The connector housing (10) is a four-way connector. There are two connector plugs (11), which are respectively located at the right end and the lower end of the connector housing (10). There are two connector slots (12), which are respectively located at the left end and the upper end of the connector housing (10).