Splicing type linear lamp

By using the sliding slot and locking block structure of the splicing linear light, combined with the buckle and terminal connection, the problem of complex installation of existing linear lights is solved, realizing rapid splicing and stable electrical connection, improving installation efficiency and aesthetics.

CN223768811UActive Publication Date: 2026-01-06DONGGUAN KEEN LIGHTING CO LTD
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Patent Information

Application Number
CN202520403914.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-08
Publication Date
2026-01-06
Estimated Expiration
2035-03-08

AI Technical Summary

Technical Problem

The existing linear lights' independent AC power connection design leads to complex, time-consuming, and labor-intensive installation, and the uneven joints affect the lighting effect and aesthetics.

Method used

The linear lamp adopts a modular design, which enables quick splicing through the sliding slots and locking blocks of the male and female connectors. The combination of buckles and terminal structures ensures electrical connection, and the hoisting assembly is used for installation and fixation.

Benefits of technology

It enables rapid assembly of multiple linear lights, improving installation efficiency and connection stability, and ensuring the reliability and aesthetics of electrical connections.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of linear lamps, in particular to a splicing type linear lamp which comprises a linear lamp body, a male connector and a female connector, the male connector and the female connector are connected to the two ends of the linear lamp body respectively, and a sliding clamping groove is formed in the end face, away from the linear lamp body, of the male connector. The end face, away from the linear lamp body, of the female connector protrudes to form a sliding clamping block matched with the sliding clamping groove, the male connector is used for being in sliding clamping connection with the sliding clamping block of an adjacent splicing type linear lamp through the sliding clamping groove, and the female connector is used for being in sliding clamping connection with the sliding clamping groove of another adjacent splicing type linear lamp through the sliding clamping block. When a plurality of splicing type linear lamps are spliced and combined, the male connector of one splicing type linear lamp is in sliding clamping connection with the sliding clamping block of the adjacent splicing type linear lamp through the sliding clamping groove, and the female connector of one splicing type linear lamp is in sliding clamping connection with the sliding clamping groove of the other adjacent splicing type linear lamp through the sliding clamping block. Rapid splicing and combination of a plurality of splicing type linear lamps are achieved, and the assembling efficiency is effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of linear lamp technology, specifically to a splicing linear lamp. Background Technology

[0002] Linear lights, named for their linear appearance when illuminated, feature a robust and aesthetically pleasing aluminum alloy casing. Combining linear elements with advanced LED technology, they can be easily and seamlessly installed or suspended on walls or cabinets, and are widely used for decoration and lighting in residential and commercial spaces.

[0003] Most existing linear lights are independently powered by the mains, a design approach with significant limitations. Using each linear light individually not only restricts its flexibility and scalability, but also necessitates complex connectors or manual labor when installing multiple lights to form a continuous lighting strip. This splicing method is not only time-consuming and labor-intensive, increasing installation costs, but can also lead to unevenness at the joints, affecting the overall lighting effect and aesthetics. Summary of the Invention

[0004] In order to overcome the shortcomings and deficiencies of the existing technology, the purpose of this utility model is to provide a splicing linear lamp.

[0005] The purpose of this utility model is achieved through the following technical solution: a splicing linear lamp for sequentially splicing and combining multiple splicing linear lamps, including a linear lamp body and male and female connectors respectively connected to both ends of the linear lamp body. The male connector has a sliding groove on its end face away from the linear lamp body, and the female connector has a sliding block protruding from its end face away from the linear lamp body, which is adapted to the sliding groove. The male connector is used to slide and engage with the sliding block of an adjacent splicing linear lamp through the sliding groove, and the female connector is used to slide and engage with the sliding groove of another adjacent splicing linear lamp through the sliding block.

[0006] Preferably, the male connector has a snap-fit ​​mounting groove on the end face away from the linear lamp body, and a male snap-fit ​​is fixedly installed in the snap-fit ​​mounting groove. The female connector has a female snap-fit ​​hole on the end face away from the linear lamp body that matches the male snap-fit. The male connector is used to engage with the female snap-fit ​​hole of an adjacent spliced ​​linear lamp through the male snap-fit, and the female connector is used to engage with the male snap-fit ​​of another adjacent spliced ​​linear lamp through the female snap-fit ​​hole.

[0007] Preferably, the male connector has a first terminal locking hole and a first spring-loaded terminal that engages with the first terminal locking hole, with the spring portion of the first spring-loaded terminal extending into a sliding groove. The female connector has a second terminal locking hole and a second spring-loaded terminal that engages with the second terminal locking hole and is adapted to the first spring-loaded terminal, with the spring portion of the second spring-loaded terminal abutting against the side of the sliding block. The first spring-loaded terminal is used for electrical connection with the second spring-loaded terminal of an adjacent spliced ​​linear lamp, and the second spring-loaded terminal is used for electrical connection with the first spring-loaded terminal of another adjacent spliced ​​linear lamp.

[0008] Preferably, the male connector also has a third terminal slot, and the male connector is provided with a spring probe that can move and extend within the third terminal slot. The female connector also has a fourth terminal slot, and the female connector is provided with a pin female terminal that is fixed to the fourth terminal slot and adapted to the spring probe. The spring probe is used to electrically connect with the pin female terminal of an adjacent spliced ​​linear lamp, and the pin female terminal is used to electrically connect with the spring probe of another adjacent spliced ​​linear lamp.

[0009] Preferably, both ends of the linear lamp body have protruding screw mounting portions on their inner walls, and both the male and female connectors have countersunk holes that correspond to and communicate with the screw mounting portions.

[0010] Preferably, the modular linear light also includes a hoisting assembly connected to the top of the linear light body and used for hoisting the linear light body.

[0011] Preferably, the hoisting assembly includes a hoisting base, a hoisting rod fixedly connected to the bottom of the hoisting base, and a mounting bracket fixedly connected to the end of the hoisting rod away from the hoisting base. The top of the linear lamp body is provided with a hoisting slot, and the two sides of the mounting bracket extend with hoisting hooks that engage with the hoisting slot.

[0012] Preferably, the splicing linear lamp further includes a first protective cover detachably connected to the male connector and a second protective cover detachably connected to the female connector.

[0013] The beneficial effects of this utility model are as follows: The splicing linear lamp of this utility model is used for the sequential splicing and combination of multiple splicing linear lamps. It adopts a linear lamp body and male and female connectors respectively connected to both ends of the linear lamp body. The end face of the male connector away from the linear lamp body has a sliding groove, and the end face of the female connector away from the linear lamp body has a sliding block that matches the sliding groove. The male connector is used to slide and engage with the sliding block of the adjacent splicing linear lamp through the sliding groove, and the female connector is used to slide and engage with the sliding groove of another adjacent splicing linear lamp through the sliding block. When multiple splicing linear lamps are spliced ​​and combined, the male connector of one splicing linear lamp slides and engages with the sliding block of the adjacent splicing linear lamp through the sliding groove, and the female connector of one splicing linear lamp slides and engages with the sliding groove of another adjacent splicing linear lamp through the sliding block, realizing the rapid splicing and combination of multiple splicing linear lamps and effectively improving assembly efficiency. Attached Figure Description

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

[0015] Figure 2 This is a partially enlarged exploded view of this utility model;

[0016] Figure 3 This is another partially enlarged exploded view of this utility model;

[0017] Figure 4 This is a schematic diagram of the structure of two spliced ​​linear lamp combinations of this utility model;

[0018] Figure 5 yes Figure 4 A schematic diagram of local decomposition;

[0019] The attached figures are labeled as follows: 1. Linear lamp body; 2. Male connector; 3. Female connector; 4. Sliding slot; 5. Sliding block; 6. Snap-on mounting slot; 7. Male snap-on; 8. Female snap-on hole; 9. First terminal snap-on hole; 10. First spring terminal; 11. Second terminal snap-on hole; 12. Second spring terminal; 13. Third terminal snap-on hole; 14. Spring probe; 15. Fourth terminal snap-on hole; 16. Pin female terminal; 17. Screw mounting part; 18. Countersunk hole; 19. Lifting assembly; 191. Lifting base; 192. Lifting rod; 193. Socket; 20. Lifting slot; 21. Lifting hook; 22. First protective cover; 23. Second protective cover. Detailed Implementation

[0020] To facilitate understanding by those skilled in the art, the present invention will be further described below with reference to embodiments and accompanying drawings. The content mentioned in the embodiments is not intended to limit the present invention.

[0021] like Figure 1-5 As shown, a modular linear light is used for sequentially assembling multiple modular linear lights. It includes a linear light body 1, and a male connector 2 and a female connector 3 connected to both ends of the linear light body 1. The male connector 2 has a sliding groove 4 on its end face away from the linear light body 1, and the female connector 3 has a sliding block 5 protruding from its end face away from the linear light body 1, which is adapted to the sliding groove 4. The male connector 2 is used to slide and engage with the sliding block 5 of an adjacent modular linear light through the sliding groove 4, and the female connector 3 is used to slide and engage with the sliding groove 4 of another adjacent modular linear light through the sliding block 5.

[0022] This modular linear light can be used individually or in combination. When multiple modular linear lights are combined, the male connector 2 of one modular linear light slides into the sliding block 5 of the adjacent modular linear light via the sliding slot 4, and the female connector 3 of one modular linear light slides into the sliding slot 4 of another adjacent modular linear light via the sliding block 5, thus enabling rapid combination of multiple modular linear lights and effectively improving assembly efficiency.

[0023] Furthermore, the male connector 2 has a snap-fit ​​mounting groove 6 on its end face away from the linear lamp body 1, and a male snap-fit ​​7 is fixedly installed in the snap-fit ​​mounting groove 6. The female connector 3 has a female snap-fit ​​hole 8 on its end face away from the linear lamp body 1, which is adapted to the male snap-fit ​​7. The male connector 2 is used to engage with the female snap-fit ​​hole 8 of the adjacent spliced ​​linear lamp through the male snap-fit ​​7, and the female connector 3 is used to engage with the male snap-fit ​​7 of another adjacent spliced ​​linear lamp through the female snap-fit ​​hole 8. This helps to improve the connection stability of the two linear lamp bodies 1 after they are spliced ​​together.

[0024] Furthermore, the male connector 2 has a first terminal locking hole 9, and the male connector 2 is provided with a first spring-loaded terminal 10 that is locked in the first terminal locking hole 9. The spring portion of the first spring-loaded terminal 10 extends into the sliding slot 4. The female connector 3 has a second terminal locking hole 11, and the female connector 3 is provided with a second spring-loaded terminal 12 that is locked in the second terminal locking hole 11 and is adapted to the first spring-loaded terminal 10. The spring portion of the second spring-loaded terminal 12 abuts against the side of the sliding block 5. When two or more spliced ​​linear lamps are spliced ​​together, the first spring-loaded terminal 10 of one spliced ​​linear lamp abuts against the second spring-loaded terminal 12 of the adjacent spliced ​​linear lamp to achieve an electrical connection, or the second spring-loaded terminal 12 of one spliced ​​linear lamp abuts against the first spring-loaded terminal 10 of another adjacent spliced ​​linear lamp to achieve an electrical connection.

[0025] Furthermore, the male connector 2 is also provided with a third terminal locking hole 13, and the male connector 2 is provided with a spring probe 14 that can move and extend within the third terminal locking hole 13. The female connector 3 is also provided with a fourth terminal locking hole 15, and the female connector 3 is provided with a pin female terminal 16 that is fixed to the fourth terminal locking hole 15 and adapted to the spring probe 14. When two or more spliced ​​linear lamps are spliced ​​together, the spring probe 14 of one spliced ​​linear lamp abuts against the pin female terminal 16 of the adjacent spliced ​​linear lamp to achieve electrical connection, and the pin female terminal 16 of one spliced ​​linear lamp abuts against the spring probe 14 of another adjacent spliced ​​linear lamp to achieve electrical connection.

[0026] Furthermore, both ends of the linear lamp body 1 have protruding screw mounting portions 17 on their inner walls, and both the male connector 2 and the female connector 3 have countersunk holes 18, which correspond one-to-one with the screw mounting portions 17. During installation, screws are threaded through the countersunk holes 18 and connected to the screw mounting portions 17 for fixation.

[0027] Furthermore, the modular linear lamp also includes a hoisting assembly 19 connected to the top of the linear lamp body 1 and used for hoisting the linear lamp body 1.

[0028] Furthermore, the hoisting assembly 19 includes a hanging base 191, a hanging rod 192 fixedly connected to the bottom of the hanging base 191, and a bracket 193 fixedly connected to the end of the hanging rod 192 away from the hanging base 191. The top of the linear lamp body 1 is provided with a hoisting slot 20, and the two sides of the bracket 193 extend with hoisting hooks 21 that engage with the hoisting slot 20. The linear lamp body 1 can be hoisted to the top of the wall by means of the hoisting assembly 19.

[0029] Furthermore, the modular linear light also includes a first protective cover 22 detachably connected to the male connector 2 and a second protective cover 23 detachably connected to the female connector 3. When the modular linear light is used alone, covering it with the first protective cover 22 and the second protective cover 23 helps prevent dust accumulation on the male connector 2 and the female connector 3, and also helps prevent the male connector 2 and the female connector 3 from being exposed and affecting the aesthetics. When multiple modular linear lights are combined, the first protective cover 22 and the second protective cover 23 between adjacent modular linear lights need to be removed.

[0030] The above embodiments are preferred implementations of this utility model. In addition, this utility model can also be implemented in other ways. Any obvious substitutions without departing from the concept of this utility model are within the protection scope of this utility model.

Claims

1. A spliced linear lamp for a plurality of spliced linear lamps to be spliced together in series, characterized by: The linear lamp body, a male connector and a female connector connected to the two ends of the linear lamp body respectively, a sliding clamping groove is formed on the end face of the male connector away from the linear lamp body, a sliding clamping block matched with the sliding clamping groove protrudes from the end face of the female connector away from the linear lamp body, the male connector is used for sliding clamping with the sliding clamping block of the adjacent spliced linear lamp through the sliding clamping groove, and the female connector is used for sliding clamping with the sliding clamping groove of the other adjacent spliced linear lamp through the sliding clamping block.

2. A modular linear light according to claim 1, characterized in that: A buckle mounting groove is formed on the end face of the male connector away from the linear lamp body, a male buckle is fixedly mounted in the buckle mounting groove, a female buckle hole matched with the male buckle is formed on the end face of the female connector away from the linear lamp body, the male connector is used for buckling with the female buckle hole of the adjacent spliced linear lamp through the male buckle, and the female connector is used for buckling with the male buckle of the other adjacent spliced linear lamp through the female buckle hole.

3. The modular linear lamp of claim 1, wherein: A first terminal clamping hole is formed in the male connector, a first reed terminal is arranged in the first terminal clamping hole, a reed part of the first reed terminal extends into the sliding clamping groove, a second terminal clamping hole is formed in the female connector, a second reed terminal matched with the first reed terminal is arranged in the second terminal clamping hole, and a reed part of the second reed terminal abuts against the side face of the sliding clamping block, the first reed terminal is used for electrically connecting with the second reed terminal of the adjacent spliced linear lamp, and the second reed terminal is used for electrically connecting with the first reed terminal of the other adjacent spliced linear lamp.

4. The modular linear lamp of claim 1, wherein: A third terminal clamping hole is formed in the male connector, a spring probe is arranged in the third terminal clamping hole, a fourth terminal clamping hole is formed in the female connector, a pin female terminal matched with the spring probe is arranged in the fourth terminal clamping hole, the spring probe is used for electrically connecting with the pin female terminal of the adjacent spliced linear lamp, and the pin female terminal is used for electrically connecting with the spring probe of the other adjacent spliced linear lamp.

5. The modular linear lamp of claim 1, wherein: Screw mounting parts protrude from the inner walls of the two ends of the linear lamp body, and the male connector and the female connector are provided with counterpunches in one-to-one correspondence with the screw mounting parts.

6. The modular linear lamp according to claim 1, characterized in that: The spliced linear lamp further comprises a hoisting assembly connected to the top of the linear lamp body and used for hoisting the linear lamp body.

7. A modular linear lamp according to claim 6, characterized in that: The hoisting assembly comprises a hoisting seat, a hoisting rod fixedly connected to the bottom of the hoisting seat, and a clamping seat fixedly connected to the end of the hoisting rod away from the hoisting seat, the top of the linear lamp body is provided with a hoisting clamping groove, and the two sides of the clamping seat extend and are provided with hoisting clamping hooks matched with the hoisting clamping groove.

8. The modular linear lamp according to claim 1, characterized in that: The spliced linear lamp further comprises a first protective cover detachably connected to the male connector and a second protective cover detachably connected to the female connector.