Lamp

CN122281250BActive Publication Date: 2026-08-21SHENZHEN QIANYAN TECH LTD
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Patent Information

Application Number
CN202610737393.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2026-05-27
Publication Date
2026-08-21
Estimated Expiration
2046-05-27

AI Technical Summary

Technical Problem

然而,现有的大多数帘幕灯为一体式或半固定式结构,灯帘与支架之间的连接较为固定,灯帘的体积较大,不可拆分或拆分极为不便

Benefits of technology

[0005] Compared to existing technologies, the lighting fixture provided in this application features a detachable connection between multiple light curtain components. A single light string extends back and forth between a first mounting member and a second mounting member to form multiple mutually spaced light string columns. Each light curtain component requires only one complete light string, reducing the number of electrical contacts, decreasing the probability of failure, and also reducing the amount of wiring and connectors used, making the installation process faster and more standardized. In use, multiple light curtain components are first assembled into a single curtain; during disassembly, the multiple light curtain components are separated, and each light curtain component can be rolled up and stored individually.

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Abstract

The application relates to a lamp, which comprises a support module and a plurality of lamp curtain assemblies. The support module comprises two support rods and a connecting rod connected between the two support rods. The support rods extend along a first direction, and the connecting rod extends along a second direction. The first direction and the second direction intersect. The lamp curtain assemblies are connected to at least one of the connecting rod and the support rods, and the plurality of lamp curtain assemblies are detachably connected. The lamp curtain assembly comprises a first mounting piece, a second mounting piece and a lamp string. The first mounting piece and the second mounting piece are oppositely and spacedly arranged. The lamp string is connected between the first mounting piece and the second mounting piece, and reciprocally extends between the first mounting piece and the second mounting piece to form a plurality of lamp string rows which are spaced from each other. The lamp comprises a plurality of detachable lamp curtain assemblies, which can significantly reduce the storage volume, can be built at any time during use, and can meet the use requirements in different scenes.
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Description

Technical Field

[0001] This application relates to the field of lighting technology, and in particular to a luminaire. Background Technology

[0002] Curtain lights, as a common decorative lighting product, are widely used in creating festive atmospheres, commercial displays, and home decoration. Traditional curtain lights typically consist of a bracket and a curtain fixed to the bracket, forming a continuous luminous curtain effect. However, most existing curtain lights are one-piece or semi-fixed structures, with a relatively fixed connection between the curtain and the bracket. The curtain is also large and either cannot be disassembled or is extremely inconvenient to disassemble. This results in the product taking up a lot of space when stored, and its large size can easily increase costs and the risk of damage during transportation. Summary of the Invention

[0003] This application provides a lighting fixture.

[0004] The lighting fixture includes a bracket module and multiple light curtain assemblies. The bracket module includes two support rods and a connecting rod connecting the two support rods. The support rods extend along a first direction, and the connecting rod extends along a second direction, which intersect. The light curtain assemblies are connected to at least one of the connecting rods and the support rods, and the multiple light curtain assemblies are detachably connected to each other. Each light curtain assembly includes a first mounting member, a second mounting member, and a light string. The first mounting member and the second mounting member are arranged at intervals relative to each other. The light string is connected between the first mounting member and the second mounting member, and the light string extends back and forth between the first mounting member and the second mounting member to form multiple mutually spaced light string columns.

[0005] Compared to existing technologies, the lighting fixture provided in this application features a detachable connection between multiple light curtain components. A single light string extends back and forth between a first mounting member and a second mounting member to form multiple mutually spaced light string columns. Each light curtain component requires only one complete light string, reducing the number of electrical contacts, decreasing the probability of failure, and also reducing the amount of wiring and connectors used, making the installation process faster and more standardized. In use, multiple light curtain components are first assembled into a single curtain; during disassembly, the multiple light curtain components are separated, and each light curtain component can be rolled up and stored individually.

[0006] The lighting fixture provided in this application includes multiple detachable curtain light components. This modular design allows the fixture to be disassembled into multiple independent parts when not in use, significantly reducing storage volume. It can be easily assembled when needed, meeting the needs of various scenarios. Compared to traditional fixed curtain lights, the fixture of this application, due to the detachable packaging of components, can more effectively utilize transportation space and reduce packaging and transportation costs. When a curtain light component malfunctions or is damaged, the user does not need to replace the entire fixture; they only need to disassemble the damaged component for repair or replacement, greatly reducing maintenance and operating costs. Attached Figure Description

[0007] To more clearly illustrate the technical solution of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0008] Figure 1 This is a schematic diagram of the overall structure of a lamp provided in one embodiment of this application.

[0009] Figure 2 yes Figure 1 A schematic diagram of the structure of the lamp curtain assembly of the lamp shown.

[0010] Figure 3 yes Figure 1 An exploded view of the bracket module of the lamp shown.

[0011] Figure 4 yes Figure 1 A magnified structural diagram of part A in the middle.

[0012] Figure 5 yes Figure 1 A schematic diagram of another embodiment of the counterweight of the lamp shown.

[0013] Figure 6 yes Figure 2 The diagram shows an exploded view of the first mounting component of the light curtain assembly.

[0014] Figure 7 yes Figure 1 An exploded view of the connecting components of the lamp shown.

[0015] Labeling Explanation: 100, Lighting Fixture; 10, Bracket Module; 12, Support Rod; 121, Support Part; 14, Connecting Rod; 141, Connecting Part; 16, Base Plate; 18, Support Component; 181, Holding Slot; 19, Fixing Component; 30, Light Curtain Module; 301, Light Curtain Assembly; 31, Circuit Board; 32, First Mounting Component; 321, First Mounting Housing; 3212, Inner Cavity; 3213, Waterproof Cavity; 3214, Cable Tray; 3215, Mounting Cavity; 323 325. Wire clamp; 329. Partition plate; 34. Second mounting shell; 36. Second mounting component; 37. Light string; 38. Light string array; 39. Light bead; 303. Connecting assembly; 31. Waterproof connector; 32. First connecting wire; 33. Second connecting wire; 34. Wire clamp cover; 35. Holding connector; 36. Buckle part; 37. Anti-deviation limit line; 38. Counterweight; 69. Ground plug limit component; 70. First limit hook; 81. Second limit hook. Detailed Implementation

[0016] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are merely some embodiments of the present application, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present application without creative effort are within the scope of protection of the present application.

[0017] Please see Figure 1 This application provides a lamp 100, which is a curtain lamp and is widely used in scenarios such as creating a festive atmosphere, commercial display, and home decoration. It can be installed inside a building to provide lighting and / or decoration for the building.

[0018] Please also refer to Figure 1 and Figure 2 In this embodiment, the lighting fixture 100 may include a light curtain module 30. The light curtain module 30 may include a plurality of light curtain assemblies 301, which are detachably connected to each other. Each light curtain assembly 301 may include a first mounting member 32, a second mounting member 34, and a string of lights 36. The first mounting member 32 and the second mounting member 34 are arranged at intervals relative to each other, and the string of lights 36 is connected between the first mounting member 32 and the second mounting member 34. The string of lights 36 extends back and forth between the first mounting member 32 and the second mounting member 34 to form a plurality of mutually spaced light string columns 361.

[0019] In the lighting fixture 100, multiple light curtain assemblies 301 are detachably connected. Light strings 36 extend back and forth between the first mounting member 32 and the second mounting member 34 to form multiple mutually spaced light string columns 361. Each light curtain assembly 301 requires only one complete light string 36, reducing the number of electrical contacts, decreasing the probability of failure, and also reducing the amount of wiring and connectors used, making the installation process faster and more standardized. In use, multiple light curtain assemblies 301 are assembled into a single curtain; in disassembly, the multiple light curtain assemblies 301 are separated, and each light curtain assembly 301 can be rolled up and stored individually.

[0020] The lighting fixture 100 provided in this application includes multiple detachable curtain light components 301. This modular design allows the lighting fixture 100 to be disassembled into multiple independent parts when not in use, significantly reducing its storage volume. It can be easily assembled when needed, meeting the needs of different scenarios. Compared to traditional fixed curtain lights, the lighting fixture 100 of this application, due to the detachable packaging of its components, can more effectively utilize transportation space and reduce packaging and transportation costs. When a curtain light component 301 malfunctions or is damaged, the user does not need to replace the entire curtain light module 30; they only need to disassemble the damaged curtain light component 301 for repair or replacement with a new one, greatly reducing maintenance and usage costs.

[0021] Please also refer to Figure 1 and Figure 3 In this embodiment, the lamp 100 also includes a bracket module 10, which supports the light curtain module 30. In actual use, the bracket module 10 can be placed on the target placement plane of the lamp 100, such as the ground, a table, or other target placement plane, providing a stable installation base for the light curtain module 30. The light curtain module 30 is suspended or connected to the bracket module 10, and achieves decorative and lighting functions by illuminating the light string 36. The bracket module 10 may include two support rods 12 and a connecting rod 14 connecting the two support rods 12. A base plate 16 is provided at the end of the support rod 12 away from the connecting rod 14. The support rod 12 extends along a first direction X, and the connecting rod 14 extends along a second direction Y, where the first direction X and the second direction Y intersect.

[0022] This specification does not limit the specific directions of the first direction X and the second direction Y. As an example, when the lamp 100 is placed on a horizontal surface, the first direction X can be a vertical direction that is approximately perpendicular to the horizontal surface, and the second direction Y can be a horizontal direction that is approximately parallel to the horizontal surface. The first direction X and the second direction Y intersect (e.g., perpendicularly). The lamp curtain module 30 can be suspended on the connecting rod 14, and the two support rods 12 provide support for the lamp curtain module 30. The base plate 16 further improves the placement stability of the bracket module 10.

[0023] The support rod 12 may include multiple support parts 121, which are detachably connected together sequentially along a first direction X. Considering the different height dimensions of the light curtain module 30, the support rod 12 includes multiple detachable support parts 121. Users can select to connect different numbers of support parts 121 according to actual needs, thereby adjusting the overall height of the support rod 12 to adapt to light curtain modules 30 of different heights or different installation scenarios. This design gives the bracket module 10 a high degree of adjustability and adaptability in height.

[0024] The support portion 121 is a rod-shaped structure extending along the first direction X. The support portion 121 can be a square rod, a round rod, a solid rod, or a hollow rod. This specification does not limit the specific connection method between multiple support portions 121. For example, two adjacent support portions 121 can be connected by a plug-in fit, which can be an interference fit or a threaded connection. In some embodiments, the slot structure or protruding structure at the end of the support portion 121 can also be provided with a limiting structure, such as a spring pin or a spring clip. When two support portions 121 are plugged into each other, the spring pin further locks them together, improving the stability of the support rod 12.

[0025] Similarly, the connecting rod 14 may also include multiple connecting parts 141, which are detachably connected together sequentially along the second direction Y. By combining different numbers of connecting parts 141, the overall length of the connecting rod 14 can be adjusted to accommodate light curtain modules 30 of different widths. When the width of the light curtain module 30 is large, the number of connecting parts 141 can be increased to lengthen the connecting rod 14; conversely, the number of connecting parts 141 can be reduced. The connecting part 141 is a rod-shaped structure extending along the second direction Y. The connecting part 141 can be a square rod, a round rod, a solid rod, or a hollow rod. This specification does not limit the specific connection method between the multiple connecting parts 141. For example, two adjacent connecting parts 141 can be connected together by a plug-in fit, which can be an interference fit or a threaded connection. In some embodiments, a limiting structure, such as a spring pin, may be provided on the slot structure or protruding structure at the end of the connecting part 141. When two connecting parts 141 are inserted into each other, the spring pin further locks them together, improving the stability of the connecting rod 14. In other embodiments, multiple connecting parts 141 may be connected into a connecting rod 14 by an elastic rope.

[0026] The multi-section detachable design of the support rod 12 and the connecting rod 14 further enhances the modularity of the lamp 100 and the convenience of transportation and storage. Each support part 121 and connecting part 141 can be packaged and transported separately, effectively saving space.

[0027] Please also refer to Figure 3 and Figure 4 To achieve a stable connection between the connecting rod 14 and the support rod 12, in this embodiment, the bracket module 10 may further include a support member 18 and a fixing member 19. The support member 18 is detachably connected to one end of the support rod 12. Specifically, the support member 18 can be connected to the support rod 12 near its top end to support the connecting rod 14. One end of the support member 18 can be inserted into the top end of the support rod 12, and the other end has a retaining groove 181. The connecting rod 14 is embedded in the retaining groove 181, the shape of which matches the shape of the connecting rod 14, to provide initial positioning and fixation for the connecting rod 14. The fixing member 19 passes through the support member 18 and the connecting rod 14, firmly fixing the support member 18 and the connecting rod 14 together to prevent the connecting rod 14 from falling off the support member 18 or shifting during use. This specification does not limit the specific type of the fixing member 19; the fixing member 19 can be a bolt, screw, or other commonly used fastener. The cooperation of the support member 18 and the fixing member 19 ensures the stability and reliability of the connection between the connecting rod 14 and the support rod 12, thereby guaranteeing the structural strength of the entire bracket module 10.

[0028] There are two support rods 12, and the two ends of the connecting rod 14 are connected to the two support rods 12 respectively. Correspondingly, there are two support members 18 and two fixing members 19, with each connecting rod 14 connected to one support member 18 and one fixing member 19. In this embodiment, both the connecting rod 14 and the support rod 12 can be hollow metal rods. To prevent users from being scratched by the ends of the connecting rod 14 during installation, in some embodiments, protective members can be provided at both ends of the connecting rod 14. The protective members can be made of plastic different from the material of the connecting rod 14. The protective members are connected to both ends of the connecting rod 14 and cover the ends of the connecting rod 14.

[0029] The end of the support rod 12 furthest from the connecting rod 14 is connected to the base plate 16. The base plate 16 is generally flat to increase the contact area between the support module 10 and the placement plane, thereby improving the placement stability of the support module 10. Two base plates 16 are provided, each connected to the bottom end of its corresponding support rod 12. The base plates 16 and the support rods 12 can be connected by threaded engagement or fixed together by fasteners such as screws or bolts.

[0030] Please also refer to Figure 1 and Figure 5To further improve the stability of the lamp 100 during use and prevent it from tipping over, the lamp 100 may also include a counterweight 50 or a ground-insertion limiting member 60. In one embodiment, the lamp 100 includes a counterweight 50, which is detachably connected to the support rod 12 and placed on the base plate 16. The counterweight 50 may be made of a material with a certain weight, such as an iron block, a concrete block, or a water-filled counterweight bag. By increasing the weight at the bottom of the bracket module 10 with the counterweight 50, the center of gravity of the lamp 100 is lowered, thereby improving its anti-tipping ability. The counterweight 50 may be provided with a through hole for the support rod 12 to pass through. During installation, the support rod 12 first passes through the through hole of the counterweight 50 and then connects to the base plate 16, thereby fixing the counterweight 50. The detachable connection between the counterweight 50 and the support rod 12 allows the counterweight 50 to be separated from the support rod 12 during transportation and storage, reducing the weight of individual components and facilitating handling.

[0031] In another embodiment, the luminaire 100 includes a ground-insertion limiting member 60, which is disposed on the base plate 16 for insertion into the target placement surface of the luminaire 100. Once the ground-insertion limiting member 60 is inserted into the target placement surface (such as soil, lawn, etc.), it can limit the position of the bracket module 10, preventing it from moving or tipping over under wind or other external forces. This method is suitable for outdoor and other scenarios where insertion and fixation are possible. Users can choose to equip the luminaire 100 with either a counterweight 50 or a ground-insertion limiting member 60 according to the actual usage environment and needs, to ensure stable placement of the luminaire 100.

[0032] In this embodiment, the light curtain module 30 is hung on the bracket module 10 and is used to provide lighting or decoration. The light curtain assembly 301 is connected to at least one of the connecting rod 14 and the support rod 12. Each light curtain assembly 301 uses a complete light string 36, which extends back and forth between the first mounting member 32 and the second mounting member 34 to form a plurality of mutually spaced light string rows 361. When the luminaire 100 is in use, the light string rows 361 extend along the first direction X.

[0033] Please refer to it again. Figure 2 and Figure 6 The first mounting member 32 may include a first mounting shell 321, which has an inner cavity 3212 and a wire-holding groove 3214 communicating with the inner cavity 3212. For ease of installation, the first mounting shell 321 may be an open shell on one side. For example, the first mounting shell 321 may have a bottom wall and a side wall. When the lamp 100 is in use, the bottom wall extends along the second direction Y, and the side wall is circumferentially connected to the periphery of the bottom wall to define the inner cavity 3212 together with the bottom wall. The wire-holding groove 3214 is formed on the side wall of the first mounting shell 321 facing the lamp string 361.

[0034] In this embodiment, the light curtain assembly 301 may further include a circuit board 31, which is electrically connected to the light string 36 and is used to control the lighting, extinguishing, and color change of the light string 36. The circuit board 31 is disposed within the inner cavity 3212, and the light string 36 passes through the wire-locking groove 3214 to be electrically connected to the circuit board 31. This specification does not limit the specific number of wire-locking grooves 3214. For example, there may be two wire-locking grooves 3214, which are respectively opened at both ends of the first mounting shell 321. The two ends of the light string 36 extend into the inner cavity 3212 and are connected to the circuit board 31 through the corresponding wire-locking grooves 3214. In other embodiments, there may be multiple wire-locking grooves 3214, and the number of multiple wire-locking grooves 3214 is less than the number of multiple light string columns 361. The multiple wire-locking grooves 3214 include two end wire-locking grooves and a middle wire-locking groove disposed between the two end wire-locking grooves. The two end wire-locking grooves are respectively disposed at both ends of the first mounting shell 321. The number of central wire-locking slots can be one or more. When there is only one central wire-locking slot, it can be a long slot extending along the length of the first mounting shell 321. Multiple light strings 361, except for the two ends of the light strings 36, can all extend into the inner cavity 3212 through the same central wire-locking slot. In other embodiments, the central wire-locking slot can include multiple short slots spaced apart along the length of the first mounting shell 321, and some of the multiple light strings 361 extend into the inner cavity 3212 through different central wire-locking slots.

[0035] In other embodiments, multiple wire-locking slots 3214 are provided, spaced apart within the first mounting housing 321, maintaining a roughly uniform spacing between them. Multiple LED strings 361 are sequentially threaded through the multiple wire-locking slots 3214. This corresponding number of slots provides positioning and guidance for the LED strings 361, ensuring a uniform spacing and preventing them from becoming tangled or disordered. Placing the circuit board 31 within the inner cavity 3212 protects it from damage caused by external dust and moisture, extending its lifespan.

[0036] In some embodiments, the luminaire 100 may further include a controller electrically connected to the circuit board 31 for remote or intelligent control of the luminaire 100. The controller can interact with the circuit board 31 via wireless communication (such as Bluetooth, Wi-Fi, infrared, etc.). Users can send control commands to the controller via mobile APP, remote control, or other terminal devices to control the switching, brightness adjustment, color switching, and dynamic effect selection of the light string 36.

[0037] To further ensure the stability of the light string 361 within the wire-holding groove 3214 and prevent it from slipping out, the first mounting member 32 may also include a wire-holding member 323. The wire-holding member 323 is disposed within the inner cavity 3212 and connected to the first mounting shell 321, confining the light string 361 within the wire-holding groove 3214. The wire-holding member 323 may be made of an elastic material or designed with a certain clamping force. After the light string 361 passes through the wire-holding groove 3214, the wire-holding member 323 presses or holds the light string 361 from the inside, preventing it from easily sliding out of the wire-holding groove 3214. This design effectively ensures the reliability of the installation of the light string 361 and the structural stability of the light curtain assembly 301. In other embodiments, the wire clamp 323 may be provided with mounting holes for screw installation, and the first mounting housing 321 may be provided with a support platform that cooperates with the wire clamp 323. The lamp string 361 is clamped between the support platform and the wire clamp 323, and then the wire clamp 323 is fixed to the support platform by screws, thereby achieving the purpose of pressing the lamp string 361.

[0038] The two ends of the light string 36 can be soldered to the circuit board 31 to form a complete circuit. Considering the waterproof requirements of the circuit board 31, the inner cavity 3212 may include a waterproof cavity 3213 and a mounting cavity 3215. For example, the first mounting member 32 may also include a partition 325, which is disposed within the first mounting shell 321 along the length of the first mounting shell 321, dividing the inner cavity 3212 into the waterproof cavity 3213 and the mounting cavity 3215. The circuit board 31 is disposed within the waterproof cavity 3213, and a sealing element (not shown in the figure) is also disposed within the waterproof cavity 3213. The sealing element is used to isolate the waterproof cavity 3213 from the external environment, preventing moisture and humidity from entering the interior of the waterproof cavity 3213 and damaging the circuit board 31. The mounting cavity 3215 is disposed between the waterproof cavity 3213 and the wire-holding groove 3214 and communicates with the wire-holding groove 3214. The wire-holding member 323 is disposed within the mounting cavity 3215. In this way, the lamp string 361 enters the mounting cavity 3215 from the wire slot 3214, and then makes an electrical connection with the circuit board 31 in the waterproof cavity 3213. This not only ensures the connection path of the lamp string 361, but also provides reliable waterproof protection for the circuit board 31 through the waterproof cavity 3213 and the seal.

[0039] This specification does not limit the specific type of seal. For example, the seal can be a sealing ring, sealant, or other sealing structure. In this embodiment, the seal is sealant. During installation, the light string 36 is first soldered onto the circuit board 31. Then, the circuit board 31 is placed inside the waterproof cavity 3213 and fixed to the first mounting shell 321. Finally, waterproof sealant is poured into the waterproof cavity 3213 to completely seal the circuit board 31 and achieve a waterproof effect.

[0040] In this embodiment, the first mounting member 32 may further include a second mounting shell 329. The second mounting shell 329 engages with the first mounting shell 321 and seals the waterproof cavity 3213. The second mounting shell 329 is sleeved over the first mounting shell 321, completely covering the open side of the first mounting shell 321, thereby further isolating the circuit board 31 inside the waterproof cavity 3213 from external environmental influences. In this embodiment, the inner first mounting shell 321 can be a plastic shell, and the outer second mounting shell 329 can be a metal shell. The metal shell not only enhances the rigidity of the overall structure but also provides heat dissipation to a certain extent, preventing internal components from being affected by excessive temperature. The second mounting shell 329 and the first mounting shell 321 can be securely connected by clips, screws, or other means to ensure they will not easily separate during use.

[0041] When it is necessary to install or repair circuit board 31, the second mounting shell 329 can be removed from the first mounting shell 321, exposing the waterproof cavity 3213. After the operation is completed, the second mounting shell 329 can be snapped back into place to seal the waterproof cavity 3213. This detachable shell design makes the installation, debugging, and maintenance of circuit board 31 more convenient.

[0042] The structure of the second mounting member 34 can be similar to that of the first mounting member 32 to achieve stable support and positioning of the other end of the light string 36. For example, the second mounting member 34 may also include similar structures such as a first mounting shell, a second mounting shell, a wire clamping groove, and a wire clamping component to fix the other end of the light string 361, so that the light string 36 can remain taut between the first mounting member 32 and the second mounting member 34, preventing the light string 361 from becoming loose or sagging, and ensuring the overall aesthetics and lighting effect of the light curtain module 30.

[0043] This manual does not limit the specific number of light curtain assemblies 301; the specific number of light curtain assemblies 301 can be adjusted according to actual usage requirements. As an example, the number of light curtain assemblies 301 can be three, with the three light curtain assemblies 301 connected sequentially along the second direction Y. The three first mounting members 32 of the three light curtain assemblies 301 are connected sequentially along the second direction Y, and the three second mounting members 34 are connected sequentially along the second direction Y.

[0044] Please also refer to Figure 1 , Figure 6 and Figure 7The light curtain module 30 may further include a connecting component 303, which is used to realize a detachable connection between multiple light curtain components 301. The connecting component 303 may include a waterproof connector 33 and a retaining connector 35. The waterproof connector 33 is electrically connected between two circuit boards 31 of two adjacent light curtain components 301 to realize power and signal transmission between the multiple light curtain components 301. The waterproof connector 33 has good waterproof performance, ensuring stable operation even in humid environments. The retaining connector 35 includes two latching portions 352, one latching portion 352 being disposed between two first mounting members 32 of two adjacent light curtain components 301; the other latching portion 352 being disposed between two second mounting members 34 of two adjacent light curtain components 301. The cooperative use of the waterproof connector 33 and the retaining connector 35 makes the connection between the multiple light curtain components 301 both firm and reliable, and easy to disassemble and assemble.

[0045] This specification does not limit the specific type of the retaining connector 35. For example, the retaining connector 35 can be an elastic snap-on type, a magnetic adsorption type, a threaded locking type, etc. In this embodiment, both snap-on parts 352 can adopt a snap-on, slot, or other structural form. For example, by snapping together the first mounting part 32 and the second mounting part 34 of adjacent light curtain assemblies 301 respectively, a detachable mechanical connection between the light curtain assemblies 301 is achieved, ensuring the overall structural stability of the combined multiple light curtain assemblies 301. This specification does not limit the specific type of the waterproof connector 33. For example, the waterproof connector 33 can be a waterproof terminal wire, a waterproof connector plug, a magnetic contact, etc. In this embodiment, the waterproof connector 33 can be a waterproof terminal wire. The waterproof connector 33 includes a first connecting wire 331 and a second connecting wire 332. The first connecting wire 331 is connected to one of the second mounting shells 329 of the adjacent light curtain assembly 301 and passes through the second mounting shell 329 of the light curtain assembly 301. The first mounting shell 321 is electrically connected to the circuit board 31. The second connecting wire 332 is connected to another second mounting housing 329 of the adjacent light curtain assembly 301, and passes through the second mounting housing 329 of the light curtain assembly 301. The first mounting housing 321 is electrically connected to the circuit board 31. When the first mounting members 32 of the adjacent light curtain assemblies 301 are connected together by the retaining connector 35, and the second mounting members 34 of the adjacent light curtain assemblies 301 are connected together by the retaining connector 35, the first connecting wire 331 and the second connecting wire 332 are electrically connected.

[0046] To facilitate the fixing of the waterproof connector 33, in this embodiment, a wire pressing cover 334 may also be provided on the first mounting member 32. The wire pressing cover 334 is fixedly connected to the second mounting shell 329 and presses the first connecting wire 331 or the second connecting wire 332 onto the second mounting shell 329, thereby improving the installation stability of the waterproof connector 33.

[0047] Please also refer to Figure 1 and Figure 5 In this embodiment, the lamp 100 may further include a first limiting hook 70 and a second limiting hook 80. The first limiting hook 70 is connected to the second mounting member 34, and the second mounting member 34 is detachably connected to the support rod 12 and / or the connecting rod 14 via the first limiting hook 70. The second limiting hook 80 is connected between the first mounting member 32 and the support rod 12. Specifically, one end of the first limiting hook 70 can hook or snap onto the second mounting shell of the second mounting member 34, and the other end hooks or snaps onto the connecting rod 14 and / or the support rod 12. One end of the second limiting hook 80 is connected to the second mounting shell 329 of the first mounting member 32, and the other end is connected to the support rod 12. Through the combined action of the first limiting hook 70 and the second limiting hook 80, the light curtain module 30 is stably suspended or fixed on the bracket module 10. This connection method is simple to operate, facilitates the installation and removal of the light curtain module 30, and also ensures the stability of the light curtain module 30 during use, preventing it from shaking.

[0048] This specification does not limit the specific installation position of the first limiting hook 70. For example, the first limiting hook 70 may include a vertical limiting hook connected between the second mounting member 34 and the connecting rod 14, or it may include a lateral limiting hook connected between the second mounting member 34 and the support rod 12. In this embodiment, the first limiting hook 70 is connected between the second mounting member 34 and the connecting rod 14. Multiple first limiting hooks 70 can be provided, and these multiple first limiting hooks 70 are arranged at intervals along the length of the connecting rod 14. The multiple first limiting hooks 70 further improve the suspension stability of the light curtain module 30 on the bracket module 10. Two second limiting hooks 80 can be provided, with each second limiting hook 80 connected to one of the two support rods 12.

[0049] Please refer to it again. Figure 2For the light curtain assembly 301, the light string 361 has multiple LED beads 3612. To ensure that the light emission direction of the LED beads 3612 is consistent and to avoid affecting the overall lighting and decorative effect due to the angular deviation of the LED beads 3612, the luminaire 100 may also include an anti-deviation limiting line 38. The anti-deviation limiting line 38 is connected to multiple light string strings 361 to limit the direction of the LED beads 3612. The anti-deviation limiting line 38 can be made of flexible wire, such as nylon wire or cotton wire. For the aesthetics of the luminaire 100, in this embodiment, the anti-deviation limiting line 38 is made of transparent wire. The anti-deviation limiting line 38 can be connected horizontally or diagonally between adjacent light string strings 361 to limit the LED beads 3612 on the light string strings 361 to approximately the same orientation. As an example, multiple anti-deviation limiting lines 38 can be provided, all extending along the length of the connecting rod 14 and spaced apart along the length of the support rod 12. This specification does not limit the specific connection method between the anti-deviation limiting lines 38 and the lamp strings 361. For example, the anti-deviation limiting lines 38 can be connected between the lamp beads 3612 of multiple lamp strings 361, or they can be connected to the wires between the lamp beads 3612. In this embodiment, the anti-deviation limiting lines 38 are connected between multiple lamp beads 3612 that are approximately on the same horizontal line.

[0050] After the light string 36 extends back and forth between the first mounting part 32 and the second mounting part 34 to form multiple light string columns 361, the anti-deviation limit line 38 can be tied or connected at different height positions of the light string column 361, thereby effectively preventing the light beads 3612 from rotating or shifting under the action of gravity or external force, and ensuring the neatness and aesthetics of the light-emitting surface of the entire light curtain module 30.

[0051] In the lighting fixture 100 provided in this application embodiment, the light curtain module 30 is detachably connected to the bracket module 10. The light curtain module 30 includes multiple light curtain components 301, which are also detachably connected to each other through connecting components 303. The light strings 36 extend back and forth between the first mounting member 32 and the second mounting member 34 to form multiple mutually spaced light string columns 361. Each light curtain component 301 only needs one complete light string 36, reducing the number of electrical contacts, reducing the probability of failure, and also reducing the amount of wires and connectors used, making the installation process faster and more standardized. When in use, first set up the bracket module 10, then assemble multiple light curtain components 301 into a whole curtain through the connecting component 303, and then install the light curtain module 30 onto the bracket module 10; when disassembling, first cut off the power to the lamp 100, remove the light curtain module 30 from the bracket module 10, and then separate the multiple light curtain components 301 through the connecting component 303. Each light curtain component 301 can be rolled up and stored separately.

[0052] The lamp 100 provided in this application has a detachable bracket module 10 and a lamp curtain module 30, and the lamp curtain module 30 includes multiple detachable lamp curtain components 301. This modular design allows the lamp 100 to be disassembled into multiple independent parts when not in use, significantly reducing its storage volume. It can be set up at any time when needed, meeting the needs of different scenarios. Compared with traditional fixed curtain lights, the lamp 100 of this application can make more efficient use of transportation space and reduce packaging and transportation costs because the components can be disassembled and packaged separately. When a lamp curtain component 301 malfunctions or is damaged, the user does not need to replace the entire lamp curtain module 30; they only need to disassemble the damaged lamp curtain component 301 for repair or replace it with a new one, greatly reducing maintenance and usage costs.

[0053] Terminology Explanation In this application, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0054] In this application, unless otherwise expressly specified or limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or merely surface contact. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0055] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

Claims

1. A lamp, characterized in that, include: A support module includes a support rod, a connecting rod, a support member, and a fixing member. Two support rods are provided, extending along a first direction. A connecting rod connects the two support rods and extends along a second direction, where the first and second directions intersect. The support member is detachably connected to one end of the support rod and has a retaining groove. The connecting rod is embedded in the retaining groove. The fixing member passes through the support member and the connecting rod to fix the support member and the connecting rod. A plurality of light curtain assemblies are connected to at least one of the connecting rod and the supporting rod, and the plurality of light curtain assemblies are detachably connected to each other; the light curtain assembly includes: A first mounting component and a second mounting component are arranged at intervals relative to each other; the first mounting component includes a first mounting shell, the first mounting shell having an inner cavity and a plurality of wire-locking grooves communicating with the inner cavity; A string of lights is connected between the first mounting member and the second mounting member. The string of lights extends back and forth between the first mounting member and the second mounting member to form multiple rows of lights that are spaced apart from each other. The multiple rows of lights are threaded one-to-one through the multiple wire slots. Each row of lights has multiple LEDs. A circuit board is disposed within the inner cavity, and the lamp string is electrically connected to the circuit board. A connecting assembly includes a waterproof connector and a retaining connector. The waterproof connector is electrically connected between two circuit boards of two adjacent light curtain assemblies. The retaining connector includes two latching parts, one of which is disposed between two first mounting parts of two adjacent light curtain assemblies, and the other of which is disposed between two second mounting parts of two adjacent light curtain assemblies. And anti-deviation limiting lines, which are connected to multiple of the lamp strings to limit the direction of the lamp beads.

2. The lamp as described in claim 1, characterized in that, The first mounting component further includes a wire clamping component, which is disposed within the inner cavity and connected to the first mounting shell, and the wire clamping component restricts the lamp string within the wire clamping groove.

3. The lamp as described in claim 2, characterized in that, The inner cavity includes a waterproof cavity and an installation cavity. The circuit board is disposed in the waterproof cavity, and a sealing element is also disposed in the waterproof cavity. The installation cavity is disposed between the waterproof cavity and the wire-clamping groove and communicates with the wire-clamping groove. The wire-clamping element is disposed in the installation cavity.

4. The lighting fixture as described in any one of claims 1 to 3, characterized in that, The support rod has a base plate at one end away from the connecting rod, and the lamp further includes a counterweight, which is detachably connected to the support rod and placed on the base plate; or The support rod has a base plate at one end away from the connecting rod, and the lamp also includes a ground insertion limiting member, which is disposed on the base plate for insertion into the target placement plane of the lamp.

5. The luminaire as described in any one of claims 1 to 3, characterized in that, The lamp further includes a first limiting hook and a second limiting hook. The first limiting hook is connected to the second mounting member. The second mounting member is detachably connected to the support rod and / or the connecting rod via the first limiting hook. The second limiting hook is detachably connected between the first mounting member and the support rod.

Citation Information

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