An in-cabinet cabinet light track structure

CN224814927UActive Publication Date: 2026-09-29FOSHAN JINKEDI HARDWARE CO LTD
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Patent Information

Application Number
CN202522651875.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-12-15
Publication Date
2026-09-29
Estimated Expiration
2035-12-15

AI Technical Summary

Technical Problem

[0004]然而,线条灯在实际应用中也存在一些明显短板

Benefits of technology

[0021]1、导轨内部的导电板采用可拆卸设计,当导电板出现故障或需要升级时,用户能轻松拆卸进行维修或更换,无需复杂操作和专业工具,降低了维护成本和难度。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of cabinet cabinet light rail structure, it is related to lamp technical field, for providing the basis limit of mobile for line lamp and power supply, including guide rail, detachably set with conducting plate in guide rail interior, conducting plate extends arrangement along the length direction of guide rail, for the power supply for line lamp installed on guide rail;Guide rail end portion detachably connects weldingless plug, weldingless plug includes plug body, plug body is inlayed with spring sheet mounting seat, spring sheet mounting seat is inlayed with positive pole conducting spring and negative pole conducting spring.The utility model has the beneficial effect that, the conducting plate in guide rail interior is detachably designed, when conducting plate fails or needs upgrading, user can easily disassemble and maintain or replace guide rail two ends setting weldingless plug, weldingless plug can close guide rail end portion, guarantee conducting plate normal work, and also undertake the task of conducting plate power transmission, lamp is connected with conducting plate and takes electricity, improve the convenience of installation and use.
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Description

Technical Field

[0001] This utility model relates to the field of lighting technology, and in particular to a cabinet light track structure. Background Technology

[0002] Linear lights occupy an important position in modern interior lighting due to their unique optical and design advantages. Their even and continuous light source distribution allows for seamless splicing, creating a harmonious and fluid visual extension that significantly enhances the overall integrity and sophistication of a space. In terms of appearance, linear lights are mostly installed in a concealed or recessed manner, cleverly integrating into various architectural structures and decorative surfaces; coupled with ultra-narrow bezels or even frameless designs, they highly complement modern minimalist and understated luxury styles, presenting an aesthetic effect where the light source is not visible.

[0003] As home design becomes increasingly functional and human-centered, the application of linear lighting has expanded from public spaces to residential areas. Especially in custom cabinet designs, linear lighting is commonly used inside wardrobes, bookcases, display cabinets, and kitchen wall cabinets as an auxiliary lighting system. It not only clearly illuminates items inside for easy access, but also enhances the sense of depth in the display area through soft lighting effects, creating a warm atmosphere and improving the overall quality and living experience of the home.

[0004] However, linear lights also have some obvious shortcomings in practical applications. Currently, most cabinet linear lights are fixedly installed, and the lighting angle and range cannot be adjusted according to needs. When the layout of items inside the cabinet changes, or when it is necessary to highlight a certain area, the fixed lighting mode often cannot respond flexibly, limiting its functionality.

[0005] Furthermore, wiring layout and subsequent maintenance are also common pain points. The power supply route and connection method must be determined at the initial installation stage. Once the wiring is completed, subsequent replacement or upgrades of the light fixtures face numerous difficulties: not only must the compatibility of the fixture size and interface be considered, but it may also involve complex operations such as disassembling and reassembling cabinets, rewiring, and connecting circuits. This is not only time-consuming and labor-intensive, increasing modification costs, but also extremely unfriendly to non-professional users, often requiring the assistance of a professional electrician, reducing the feasibility of users performing self-maintenance and upgrades.

[0006] These issues make it difficult for linear lights to fully meet users' demands for lighting flexibility, adjustability, and ease of maintenance in actual use, which to some extent weakens their intended functional experience and long-term value. Utility Model Content

[0007] This utility model overcomes the shortcomings of the prior art and provides a cabinet light track structure. The guide rail is equipped with weld-free plugs at both ends to ensure the normal operation of the conductive plate and to supply power to the conductive plate. The light fixture draws power by connecting to the conductive plate. The power drawing process is simple and efficient, without the need for complicated wiring and welding, which improves the convenience of installation and use.

[0008] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:

[0009] A cabinet light track structure is provided to provide basic constraints and power supply for the movement of linear lights. It includes a guide rail and a conductive plate that is detachably installed inside the guide rail. The conductive plate extends along the length of the guide rail and is used to supply power to the linear lights installed on the guide rail.

[0010] The guide rail end is detachably connected to a weld-free plug. The weld-free plug includes a plug body, and the plug body has a spring plate mounting seat embedded in it. The spring plate mounting seat has a positive conductive spring plate and a negative conductive spring plate embedded in it.

[0011] One end of the positive and negative conductive springs is connected to an external power source, and the other end of the positive and negative conductive springs contacts the conductive plate to draw power. The lamps installed inside the guide rail draw power by connecting to the conductive plate.

[0012] Furthermore, the guide rail has a U-shaped or C-shaped cross-section, and its inner side is provided with a groove or locking part for locking the strip light.

[0013] Furthermore, the guide rail has a bottom slot inside, and the conductive plate is a long strip of metal with a conductive coating or plating on its surface, which is inserted into the bottom slot.

[0014] Furthermore, the spring plate mounting base is made of insulating material, and the spring plate mounting base has two separated spring plate insertion ends inside. The two separated spring plate insertion ends are used to insert positive conductive spring plates and negative conductive spring plates. One end of the spring plate insertion end is also provided with a spring plate connecting end. One end of the positive conductive spring plate and the negative conductive spring plate extends from the spring plate connecting end. When the solderless plug is inserted into the guide rail, the part of the positive conductive spring plate and the negative conductive spring plate extending from the spring plate connecting end contacts the conductive plate.

[0015] Furthermore, the solderless plug also includes a power lead interface for connecting an external power cord, and transmits electrical energy to the conductive plate through the positive and negative conductive springs.

[0016] Furthermore, the guide rail is made of aluminum alloy or engineering plastic, and the conductive plate is made of copper or copper alloy.

[0017] Furthermore, the guide rail is provided with an opening end slot near the opening, and the plug body is provided with snap-fit ​​strips on both sides. When the weld-free plug is connected to the guide rail, the snap-fit ​​strips are inserted into the opening end slot.

[0018] Furthermore, the outer side of the guide rail is provided with a corrugated pattern.

[0019] Furthermore, the guide rail is detachably connected to a dust cover. The dust cover has a buffer cavity in the center and a first locking strip and a second locking strip on both sides. When the dust cover is connected to the guide rail, the first locking strip covers the opening of the guide rail directly above it, and the second locking strip is inserted into the slot at the opening end.

[0020] Compared with the prior art, the beneficial effects of this utility model are:

[0021] 1. The conductive plate inside the guide rail is designed to be detachable. When the conductive plate malfunctions or needs to be upgraded, users can easily disassemble it for repair or replacement without complicated operations or professional tools, thus reducing maintenance costs and difficulty.

[0022] 2. The guide rail is equipped with weld-free plugs at both ends. These plugs can seal the ends of the guide rail to prevent dust and debris from entering the interior of the guide rail, ensuring the normal operation of the conductive plate. They also serve to supply power to the conductive plate. The lamps draw power by connecting to the conductive plate. The power drawing process is simple and efficient, requiring no complicated wiring or welding, thus improving the convenience of installation and use. Attached Figure Description

[0023] The accompanying drawings are provided to further illustrate the utility model and, together with the embodiments of the utility model, are used to explain the present utility model. They do not constitute a limitation on the present utility model. In the drawings:

[0024] Figure 1 This is a schematic diagram of the overall track structure of the first embodiment of this utility model;

[0025] Figure 2 This is an exploded view of the track structure according to the first embodiment of this utility model;

[0026] Figure 3 This is a schematic diagram of the overall track structure of the second embodiment of this utility model;

[0027] Figure 4 This is an exploded view of the track structure according to the second embodiment of this utility model;

[0028] Figure 5 This is a cross-sectional view of the track structure according to an embodiment of the present invention.

[0029] In the diagram: 1. Guide rail; 101. Bottom slot; 102. Open end slot; 103. Wavy texture; 2. Conductive plate; 3. Dust cover; 301. First retaining strip; 302. Second retaining strip; 303. Buffer cavity; 4. Weld-free plug; 401. Plug body; 4011. Snap-fit ​​strip; 402. Spring mounting base; 4021. Spring insertion end; 4022. Spring connection end; 403. Positive conductive spring; 404. Negative conductive spring. Detailed Implementation

[0030] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the scope of the present invention.

[0031] like Figures 1 to 5 As shown, a cabinet light track structure is provided to restrict the movement of linear lights and provide power. It includes a guide rail 1, and a detachable conductive plate 2 is installed inside the guide rail 1. The conductive plate 2 extends along the length of the guide rail 1 and is used to power the linear lights installed on the guide rail. This detachable design makes the installation and replacement of the conductive plate 2 very convenient. When the conductive plate 2 malfunctions or needs to be upgraded, the user can easily remove it for repair or replacement without complicated operations and professional tools.

[0032] A weld-free plug 4 is detachably connected to the end of the guide rail 1. The weld-free plug 4 not only seals the end of the guide rail 1, preventing dust and debris from entering and affecting the normal operation of the conductive plate 2, but also plays a crucial role in supplying power to the conductive plate 2. The weld-free plug 4 includes a plug body 401, within which a spring-loaded mounting base 402 is embedded. The spring-loaded mounting base 402 contains a positive conductive spring 403 and a negative conductive spring 404. One end of the positive conductive spring 403 and the negative conductive spring 404 is connected to an external power source, while the other end contacts the conductive plate 2 to draw power. The lamps installed inside the guide rail 1 draw power through their connection to the conductive plate 2. When the lamps installed inside the guide rail 1 are connected to the conductive plate 2, they can obtain power from the conductive plate 2, thus achieving the function of illuminating light. This design makes the power supply process for the lamps simple and efficient, eliminating the need for complex wiring and soldering operations, and greatly improving the convenience of installation and use.

[0033] like Figure 1 and Figure 2As shown, in the first embodiment, the spring plate mounting base 402 is made of insulating material. The spring plate mounting base 402 has two isolated spring plate insertion ends 4021 inside, effectively preventing dangerous situations such as short circuits between the positive conductive spring plate 403 and the negative conductive spring plate 404. The two isolated spring plate insertion ends 4021 are used to insert the positive conductive spring plate 403 and the negative conductive spring plate 404, preventing them from contacting each other and causing short circuit faults, thus ensuring stable current transmission and normal circuit operation. One end of the spring plate insertion end 4021 is also provided with a spring plate connection end 4022. One end of the positive conductive spring plate 403 and the negative conductive spring plate 404 extends from the spring plate connection end 4022. When the solderless plug 4 is inserted into the guide rail 1, the portions of the positive conductive spring plate 403 and the negative conductive spring plate 404 extending from the spring plate connection end 4022 contact the conductive plate 2. The weld-free plug 4 also includes a power lead interface for connecting an external power cord, and transmits electrical energy to the conductive plate 2 through the positive conductive spring 403 and the negative conductive spring 404. Thus, the entire power supply system forms a complete circuit, providing stable and reliable power support for the lamps installed on the guide rail 1, ensuring that the lamps can emit light normally and creating a bright and comfortable lighting environment inside the cabinet.

[0034] like Figure 3 and Figure 4 As shown, in the second embodiment, both the spring plate mounting base 402 and the plug body 401 are made of insulating material, which can effectively prevent current leakage and prevent dangerous situations such as short circuits, thus ensuring the stable operation and safe use of the entire electrical system. During installation, the positive conductive spring plate 403 and the negative conductive spring plate 404 are first placed on the spring plate mounting base 402, and then the plug body 401 is fastened to the spring plate mounting base 402, so that the positive conductive spring plate 403 and the negative conductive spring plate 404 are contained inside the plug body 401 and the spring plate mounting base 402. An isolation strip is provided below the plug body 401 to separate the positive conductive spring plate 403 and the negative conductive spring plate 404. The positive conductive spring plate 403 and the negative conductive spring plate 404 are exposed towards the inner side of the guide rail, thereby contacting the conductive plate 2. The other end of the positive conductive spring plate 403 and the negative conductive spring plate 404 is connected to an external power source, forming a complete and stable power supply circuit. In this way, the cabinet light track structure can operate normally, providing a bright and comfortable lighting environment inside the cabinet.

[0035] The guide rail 1 has a U-shaped or C-shaped cross-section. The U-shaped or C-shaped structure can provide stable support and guidance for the linear light. Its inner side is provided with a groove or locking part for locking the linear light, allowing the linear light to slide smoothly on the guide rail. It can firmly fix the position of the linear light and prevent it from shaking or shifting during use, ensuring that the linear light is always in a stable working state.

[0036] The guide rail 1 has a bottom slot 101 inside. The conductive plate 2 is a long strip of metal with a conductive coating or plating on its surface, which significantly improves the conductivity of the conductive plate 2 and ensures stable and efficient current transmission. The conductive plate 2 is inserted into the bottom slot 101, achieving a tight connection with the guide rail 1. This installation method is not only convenient and quick, but also ensures the stability of the conductive plate 2 inside the guide rail 1, preventing it from loosening or shifting during use, thus affecting the power transmission effect.

[0037] The guide rail 1 is made of aluminum alloy or engineering plastic. Aluminum alloy has advantages such as light weight, high strength, and corrosion resistance, which can reduce the weight of the entire track structure while ensuring the structural strength of guide rail 1, making it convenient for installation and use. Engineering plastic has good insulation and processing properties, effectively preventing current leakage, and can be flexibly processed according to different design requirements to meet diverse application scenarios. The conductive plate 2 is made of copper or copper alloy. Copper has excellent electrical and thermal conductivity, making it an ideal conductive material that ensures stable power transmission. Copper alloy retains the excellent properties of copper while also having better mechanical properties and corrosion resistance, further improving the service life and stability of conductive plate 2.

[0038] The guide rail 1 has an opening end slot 102 near the opening, and the plug body 401 has snap-fit ​​strips 4011 on both sides. When the weldless plug 4 is connected to the guide rail 1, the snap-fit ​​strips 4011 are inserted into the opening end slot 102. This snap-fit ​​method can not only realize the quick connection between the weldless plug 4 and the guide rail 1, but also ensure the stability and reliability of the connection, prevent the weldless plug 4 from loosening or falling off during use, and ensure the integrity and stability of the entire track structure.

[0039] The outer side of the guide rail 1 is provided with a corrugated pattern 103. The corrugated pattern 103 can increase the friction between the guide rail 1 and surrounding objects, thereby improving the stability of the guide rail 1 during installation and use. At the same time, the corrugated pattern 103 can also play a certain role in heat dissipation, dissipating the heat generated by the guide rail 1 during operation and preventing heat accumulation from affecting the performance and service life of the guide rail 1.

[0040] The guide rail 1 is detachably connected to a dust cover 3, which is made of rubber. When no light fixtures are installed on the guide rail 1, the interior of the guide rail is relatively open and susceptible to dust and other debris. To prevent dust and debris from entering the interior of the guide rail 1 and affecting the subsequent installation of light fixtures and the normal operation of the track structure, the dust cover 3 can be installed on the guide rail 1. The dust cover 3 has a buffer cavity 303 in its center. During transportation or storage, there may be some minor collisions or compressions on the guide rail 1. The buffer cavity 303 can effectively disperse and absorb these external forces, preventing the guide rail 1 from deforming or being damaged due to external impacts, thereby ensuring the durability and stability of its protective function. The dust cover 3 has a first retaining strip 301 and a second retaining strip 302 on both sides. When the dust cover 3 is connected to the guide rail 1, the first retaining strip 301 covers the opening of the guide rail 1, and the second retaining strip 302 is inserted into the slot 102 at the opening end. This design allows the dust cover 3 to effectively prevent dust and debris from entering the interior through the opening of the guide rail 1, further enhancing the dustproof effect. At the same time, the second retaining strip 302 is inserted into the slot 102 at the opening end, so that the dust cover 3 can be firmly fixed on the guide rail 1, not easily loosening or falling off, ensuring the reliability of the protection.

[0041] The conductive plate 2 inside the guide rail 1 of the cabinet light track structure of this utility model adopts a detachable design. When the conductive plate malfunctions or needs to be upgraded, the user can easily disassemble it for repair or replacement without complicated operation and professional tools, reducing maintenance costs and difficulty. The guide rail 1 is equipped with weld-free plugs 4 at both ends, which can seal the ends of the guide rail 1 to prevent dust and debris from entering the interior of the guide rail, ensuring the normal operation of the conductive plate 2. In addition, it also undertakes the task of supplying power to the conductive plate 2. The light fixture draws power by connecting to the conductive plate 2. The power drawing process is simple and efficient, without complicated wiring and welding, improving the convenience of installation and use.

[0042] Finally, it should be noted that the above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. However, any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the utility model should be included within the protection scope of the utility model.

Claims

1. A cabinet light track structure for providing basic constraints and power supply for the movement of linear lights, characterized in that, Includes a guide rail (1), inside which a conductive plate (2) is detachably provided. The conductive plate (2) extends along the length of the guide rail (1) and is used to supply power to the linear lights installed on the guide rail. The end of the guide rail (1) is detachably connected to a weld-free plug (4). The weld-free plug (4) includes a plug body (401), a spring plate mounting seat (402) embedded in the plug body (401), and a positive conductive spring plate (403) and a negative conductive spring plate (404) embedded in the spring plate mounting seat (402). One end of the positive conductive spring (403) and the negative conductive spring (404) are connected to an external power source. The other end of the positive conductive spring (403) and the negative conductive spring (404) are in contact with the conductive plate (2) to obtain power. The lamp installed inside the guide rail (1) obtains power by connecting to the conductive plate (2).

2. The cabinet light track structure according to claim 1, characterized in that, The guide rail (1) has a U-shaped or C-shaped cross-section, and its inner side is provided with a groove or locking part for locking the strip light.

3. The cabinet light track structure according to claim 1, characterized in that, The guide rail (1) has a bottom slot (101) inside. The conductive plate (2) is a long strip of metal with a conductive coating or plating on its surface, and is inserted into the bottom slot (101).

4. The cabinet light track structure according to claim 3, characterized in that, The spring plate mounting base (402) is made of insulating material. The spring plate mounting base (402) has two separate spring plate insertion ends (4021) inside. The two separate spring plate insertion ends (4021) are used to insert the positive conductive spring plate (403) and the negative conductive spring plate (404). One end of the spring plate insertion end (4021) is also provided with a spring plate connection end (4022). One end of the positive conductive spring plate (403) and the negative conductive spring plate (404) extends out from the spring plate connection end (4022). When the weld-free plug (4) is inserted into the guide rail (1), the part of the positive conductive spring plate (403) and the negative conductive spring plate (404) extending out from the spring plate connection end (4022) contacts the conductive plate (2).

5. The cabinet light track structure according to claim 4, characterized in that, The weld-free plug (4) also includes a power lead interface for connecting an external power cord and for transferring electrical energy to the conductive plate (2) through the positive conductive spring (403) and the negative conductive spring (404).

6. A cabinet light track structure according to any one of claims 1 to 5, characterized in that, The guide rail (1) is made of aluminum alloy or engineering plastic, and the conductive plate (2) is made of copper or copper alloy.

7. A cabinet light track structure according to any one of claims 1 to 5, characterized in that, The guide rail (1) is provided with an opening end slot (102) near the opening, and the plug body (401) is provided with snap-fit ​​strips (4011) on both sides. When the weld-free plug (4) is connected to the guide rail (1), the snap-fit ​​strips (4011) are inserted into the opening end slot (102).

8. The cabinet light track structure according to claim 1, characterized in that, The outer side of the guide rail (1) is provided with a corrugated pattern (103).

9. The cabinet light track structure according to claim 1, characterized in that, The guide rail (1) is detachably connected to the dust cover (3). The dust cover (3) has a buffer cavity (303) in the center and a first locking strip (301) and a second locking strip (302) on both sides. When the dust cover (3) is connected to the guide rail (1), the first locking strip (301) covers the opening of the guide rail (1) directly above it, and the second locking strip (302) is inserted into the slot (102) at the opening end.