Lamp holder

By combining maze-shaped support components and functional components, the problem of fixing long strip lights that cannot adapt to changes in shape in existing technologies is solved, and the overall shape design of rapid modeling and decorative design is realized.

CN223512014UActive Publication Date: 2025-11-04ZHONGSHAN LEAVES LED LIGHTING TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423253719.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-28
Publication Date
2025-11-04
Estimated Expiration
2034-12-28

AI Technical Summary

Technical Problem

The existing fixed connection structure is not suitable for long strip lights whose shape can be changed at will, and the maze-shaped bracket is only used to store the power cord and cannot be used to fix the long strip light.

Method used

The system employs a maze-shaped support structure, including maze-shaped strips and concave side panels, which can be bent in three dimensions and fixed in the designed position through the maze structure. Combined with functional components such as light strips, it achieves shape fixation and light source connection.

Benefits of technology

It enables rapid shaping according to site requirements and can fix long strip lights through a maze-structured bracket to meet decorative design requirements.

✦ Generated by Eureka AI based on patent content.

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Abstract

A lamp holder relates to the technical field of power lines and comprises a labyrinth-shaped support component and a functional component, the labyrinth-shaped support component comprises a strip-shaped object in a labyrinth shape and side plates which are arranged on the two sides of the strip-shaped object and are concave in the middle, and the labyrinth-shaped support component can be bent in a three-dimensional mode. The functional component capable of providing the light source comprises a strip-shaped functional body and side clamping plates which are arranged on the two sides of the upper face of the strip-shaped functional body and are concave in the middle, and side plates on the two sides of the labyrinth type support component are located between the side clamping plates on the two sides of the upper face of the strip-shaped functional body and clamped and fixed by the two side clamping plates. The functional member can be three-dimensionally bent together with the labyrinth-type bracket member. Compared with the prior art, the utility model has the advantages that the modeling can be conveniently and quickly carried out according to the field requirement, and the modeling can be conveniently completed through the bracket with the labyrinth structure.
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Description

Technical Field

[0001] This utility model relates to the field of power cord technology, and in particular to lamp holders. Background Technology

[0002] Existing long, narrow lights all require a fixed connection structure to position them in a specific location. This fixed connection structure is either a rope or wire, or a clip (such as a clip fixed to a wall or ceiling). This type of fixed connection structure is only suitable for long, narrow lights with a fixed shape, and not for long, narrow lights with a shape that can be changed at will. On the other hand, the existing flexible brackets are maze-shaped brackets. After being fixed to the ceiling or wall along a set path, these brackets can only be used to store power cords and cannot be used to fix long, narrow lights. Summary of the Invention

[0003] The purpose of this invention is to provide a light frame that can overcome one or more of the above-mentioned disadvantages, can be easily and quickly shaped according to the needs of the site, and can easily fix and connect the shaped light strips through the maze structure support.

[0004] This utility model is implemented as follows: it includes a maze-shaped support component and a functional component. The maze-shaped support component includes a strip-shaped object with a maze shape and side plates recessed in the middle on both sides of the strip-shaped object. The maze-shaped support component can be bent in three dimensions. The functional component that can provide a light source includes a strip-shaped functional body and side clamps recessed in the middle on both sides of the strip-shaped functional body. The side plates on both sides of the maze-shaped support component are located between the side clamps on both sides of the strip-shaped functional body and are clamped and fixed by the side clamps. The functional component can be bent in three dimensions together with the maze-shaped support component.

[0005] In use, based on the design requirements and usage scenarios, first shape the maze-shaped support component. Then, using the maze structure, fix the maze-shaped support component in the designed position to keep the shape fixed. Next, connect the functional components (such as light strip components that can provide light sources) to the maze-shaped support component, so that the concave side plates on both sides of the maze-shaped support component are embedded between the concave side plates on both sides of the strip-shaped functional body, thereby completing the design and shape fixation of the functional components.

[0006] Preferably, the side panel is composed of several unit side panels connected side-by-side to the sides of the maze-shaped strip, and the unit side panels are connected to the sides of the horizontal plates constituting the maze-shaped strip. Using unit side panels allows the maze-shaped support component to easily bend along the vertical plates connected between the horizontal plates of two adjacent maze-shaped strips, avoiding the side panels from affecting the smooth bending of the maze-shaped support component.

[0007] Preferably, the bottoms of adjacent side panels after each interval of one side panel are connected together by a connecting plate. Using a connecting plate ensures that the labyrinth-type support structure has good overall rigidity.

[0008] Preferably, some horizontal plates of the maze-shaped support component have perforations. By using screws that pass through the perforations, the maze-shaped support component can be fixed to a designated fixture (such as a ceiling or wall).

[0009] Preferably, the strip-shaped functional body includes a conductive cable connected to the side clamp and a light-emitting element connected to the conductive cable, wherein the conductor of the conductive cable is connected to the power input terminal of the light-emitting element.

[0010] Preferably, the light source is a light strip.

[0011] Preferably, a recessed groove for embedding a light-emitting element is provided below the conductive cable, and the light strip is embedded in the recessed groove. This embedding method connects the conductive cable and the light strip into a single unit, allowing for overall shape design to meet decorative design requirements.

[0012] Alternatively, the strip-shaped functional body includes a connector connected to the side panels and a light-emitting element connected to the connector. The connector has an inlay groove below it, and the light-emitting element (light strip) is inlaid within the groove. The light-emitting element (light strip) is connected to an external power source to obtain power. The inlay method connects the connector and the light-emitting element (light strip) into a single unit, allowing for overall shape design to meet decorative design requirements.

[0013] Compared with existing technologies, this utility model has the advantages of being able to create shapes quickly and easily according to on-site needs, and being able to complete the shapes conveniently through a maze-structured support. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of the lamp holder in Embodiment 1 of this utility model;

[0015] Figure 2 for Figure 1 Exploded view;

[0016] Figure 3 This is a schematic diagram of the structure of the lamp holder in Embodiment 2 of this utility model;

[0017] Figure 4 for Figure 3 Exploded view;

[0018] Figure 5 This is a schematic diagram of the structure of the lamp holder in Embodiment 3 of this utility model.

[0019] Reference numerals: a- Maze-shaped support component; b- Functional component; 1- Maze-shaped strip; 101- Horizontal plate; 102- Perforation; 103- Vertical plate; 2- Side plate; 201- Unit side plate; 202- Connecting plate; 3- Strip-shaped functional main body; 301- Connector; 302- Light-emitting body; 3021- Light strip inlay structure; 3022- Light-emitting body body; 3023- Light strip; 303- Inlay groove; 4- Side clamp; 5- Conductive cable; 501- Wire; 502- Light-emitting body inlay groove. Detailed Implementation

[0020] The lamp holder of this utility model will now be described in further detail with reference to the accompanying drawings and embodiments:

[0021] Example 1: As Figure 1 , 2 As shown, the lamp holder of this utility model is implemented as follows: it includes a maze-shaped support component a and a functional component b. The maze-shaped support component a includes a maze-shaped strip 1 and side plates 2 recessed in the middle on both sides of the strip 1. The maze-shaped support component a can be bent in three dimensions. The functional component b, which can provide a light source, includes a strip-shaped functional body 3 and side clamping plates 4 recessed in the middle on both sides of the strip-shaped functional body 3. The side plates 2 on both sides of the maze-shaped support component a are located between the side clamping plates 4 on both sides of the strip-shaped functional body 3 and are clamped and fixed by the side clamping plates 4. The functional component b can be bent in three dimensions together with the maze-shaped support component a.

[0022] Preferably, the strip-shaped functional body 3 includes a connector 301 connected to the side clamp 4 and a light-emitting body 302 connected to the connector 301. The connector 301 has an inlay groove 303 on its underside, and the light-emitting body 302 is inlaid in the inlay groove 303. The light-emitting body 302 is connected to an external power source to obtain power. The inlay method connects the connector 301 and the light-emitting body 302 into a single unit, allowing for overall shape design to meet decorative design requirements.

[0023] Preferably, the connector 301 is square and opaque, the inlay groove 303 has a cross-section that is trapezoidal with a long bottom side and a short top side, the light-emitting body 302 has a cross-section that matches the inlay groove 303 and is trapezoidal with a long bottom side and a short top side, the light-emitting body 302 is a light-transmitting body, and the light emitted by the lamp beads located on the side of the light-emitting body 302 is transmitted through the light-emitting body 302 from the bottom.

[0024] Preferably, the light source 302 includes a trapezoidal light-transmitting body 3022 with a light strip inlay structure 3021 and a light strip 3023 disposed on the light strip inlay structure 3021. By using the trapezoidal light-transmitting body 3022, the point light emitted by the light strip LEDs can be converted into surface light.

[0025] Preferably, the side panel 2 is composed of several unit side panels 201 connected side by side to the side of the maze-shaped strip 1, and the unit side panels 201 are connected to the side of the horizontal plate 101 that constitutes the maze-shaped strip 1.

[0026] Preferably, the bottom of the unit side plates 201 between two adjacent unit side plates 201 after each interval of one unit side plate 201 is connected together by a connecting plate 202.

[0027] Preferably, perforations 102 are provided on part of the horizontal plate 101 of the maze-type support component a.

[0028] The maze-shaped strip 1 includes horizontal plates 101 and vertical plates 103 connected between the end sides of adjacent horizontal plates 101. The first vertical plate 103 is connected between one end side of the first pair of adjacent horizontal plates 101, and the second vertical plate 103 is connected between the other end side of the next pair of adjacent horizontal plates 101, thus forming a zigzag maze structure with several horizontal plates 101 and several vertical plates 103 connected together.

[0029] Example 2: Figure 3 , 4 As shown, this embodiment is based on embodiment 1. The strip-shaped functional body 3 includes a conductive cable 5 connected to the side clamp 4, a light-emitting element 302 connected to the conductive cable 5, and a wire 501 located on the upper part of the conductive cable 5 or a wire 501 located on the side of the conductive cable 5 (e.g., Figure 5 (As shown) is connected to the power input terminal of the light-emitting body 302.

[0030] Preferably, a light-emitting element inlay groove 502 is provided below the conductive cable 5, and the light-emitting element 302 (lamp strip) is inlaid in the light-emitting element inlay groove 502. The wire on the light-emitting element 302 that supplies power to the light source (lamp bead) is connected to the wire 501 on the upper part of the conductive cable 5 by means of a conductive needle, so as to obtain power from the wire 501; or, the wire on the light-emitting element 302 that supplies power to the light source (lamp bead) is connected to the wire 501 on the upper part of the conductive cable 5 by means of a conductive contact, so as to obtain power from the wire 501.

Claims

1. A lamp holder, characterized in that, The system includes a maze-shaped support component and functional components. The maze-shaped support component includes a maze-shaped strip and side plates recessed in the middle on both sides of the strip. The maze-shaped support component can be bent in three dimensions. The functional components that provide light sources include a strip-shaped functional body and side clamps recessed in the middle on both sides of the strip-shaped functional body. The side plates on both sides of the maze-shaped support component are located between the side clamps on both sides of the strip-shaped functional body and are clamped and fixed by the side clamps. The functional components can be bent in three dimensions together with the maze-shaped support component.

2. The lamp holder according to claim 1, characterized in that, The side panel consists of several unit side panels that are connected side by side to the side of the strip-shaped object in the maze shape. The unit side panels are connected to the side of the horizontal plate that makes up the strip-shaped object in the maze shape.

3. The lamp holder according to claim 2, characterized in that, The bottom of adjacent side panels after each interval of one unit side panel is connected together by a connecting plate.

4. The lamp holder according to claim 1, 2, or 3, characterized in that, Perforations are provided on some of the horizontal plates of the maze-shaped support component.

5. The lamp holder according to claim 1, 2, or 3, characterized in that, The strip-shaped functional body includes a conductive cable connected to the side clamp and a light-emitting element connected to the conductive cable. The conductor of the conductive cable is connected to the power input terminal of the light-emitting element.

6. The lamp holder according to claim 5, characterized in that, The conductive cable has a recessed groove for embedding the light source, and the light strip is embedded in the recessed groove.

7. The lamp holder according to claim 1, 2, or 3, characterized in that, The strip-shaped functional body includes a connector connected to the side clamp and a light-emitting body connected to the connector. An inlay groove is provided below the connector, and the light-emitting body is inlaid in the inlay groove.

8. The lamp holder according to claim 5, characterized in that, The connector is square and opaque. The cross-section of the inlaid groove is a trapezoid with a long base and a short top. The light-emitting body is a trapezoid with a long base and a short top, matching the cross-section of the inlaid groove. The light-emitting body is a light-transmitting body. The light emitted by the lamp beads located on the two sides of the light-emitting body is transmitted through the light-emitting body from the bottom.

9. The lamp holder according to claim 7, characterized in that, The connector is square and opaque. The cross-section of the inlaid groove is a trapezoid with a long base and a short top. The light-emitting body is a trapezoid with a long base and a short top, matching the cross-section of the inlaid groove. The light-emitting body is a light-transmitting body. The light emitted by the lamp beads located on the two sides of the light-emitting body is transmitted through the light-emitting body from the bottom.

10. The lamp holder according to claim 8 or 9, characterized in that, The light source includes a trapezoidal light-transmitting body with a light strip inlay structure and a light strip set on the light strip inlay structure.