Solar spotlight lamp

By using a detachable bracket design and limiting slots, the problem of fixed and non-removable floodlights is solved, enabling flexible use scenarios and a stable power supply, reducing maintenance costs, and improving service life and lighting effect.

CN224580144UActive Publication Date: 2026-07-31NINGBO LANGYAO LIGHTING TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO LANGYAO LIGHTING TECH
Filing Date
2025-09-02
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

The existing floodlight bracket design is fixed and cannot be disassembled, which limits the application scenarios and flexibility of the lamps, fails to meet diverse lighting needs, and has high maintenance costs.

Method used

The design features a detachable bracket, which allows the solar panel and lamp body to rotate on the bracket through the movable connection of the first and second connectors. The bracket also provides a stable connection through structures such as limit slots, ball joints, and detachable links, ensuring the stability and flexible adjustment of the power supply.

Benefits of technology

It expands the applicable scenarios of floodlights, reduces maintenance costs, improves service life and lighting effect, and meets diverse lighting needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a solar floodlight, including a bracket. A solar panel is movably connected to one end of the bracket, and a lamp body is movably connected to the other end. The solar panel and the lamp body can rotate relative to the bracket. The bracket includes a first connector and a second connector. The first connector is bent to form a first connecting portion and a second connecting portion, and the second connector is bent to form a third connecting portion and a fourth connecting portion. The first connecting portion is movably connected to the solar panel, and the fourth connecting portion is movably connected to the lamp body. The second and third connecting portions are detachable. This utility model, through the detachable design of the first and second connectors, allows the solar panel and the lamp body to be fixed in different positions, further expanding the application scenarios of this solar floodlight.
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Description

Technical Field

[0001] This utility model relates to the field of lighting fixtures, specifically a solar floodlight. Background Technology

[0002] Floodlights are wall-mounted lighting fixtures that not only provide illumination but also enhance the elegance and ambiance of the environment. Floodlights come in various types and styles, both indoors and outdoors. Because of their significant role in illuminating and decorating the nightscape of cities and scenic areas, floodlights have seen increasing use in recent years.

[0003] However, while current floodlights on the market offer some degree of adjustable beam angle, the range of this adjustment is relatively limited and cannot fully meet diverse lighting needs. Secondly, these floodlights suffer from structural design flaws, specifically the fixed and non-removable bracket connecting the solar panel and the lamp body. This fixed bracket design significantly restricts the lamp's usability and flexibility, preventing users from flexibly installing and adjusting it according to specific needs in particular environments. This, in turn, hinders the widespread application of floodlights and the user experience, and warrants improvement. Utility Model Content

[0004] One of the technical problems to be solved by this application is to overcome the defects of the above-mentioned related technologies and provide a solar floodlight that can be installed in a detachable manner through a bracket, so that the lamp body and the solar panel can be used separately while the lamp body can still maintain normal operation, thereby adapting to different usage scenarios.

[0005] The technical solution adopted by this utility model to solve the technical problem is as follows: a solar floodlight includes a bracket, one end of which is movably connected to a solar panel, and the other end is movably connected to a lamp body. The solar panel and the lamp body are rotatable relative to the bracket. The bracket includes a first connecting member and a second connecting member. The first connecting member is bent to form a first connecting portion and a second connecting portion, and the second connecting member is bent to form a third connecting portion and a fourth connecting portion. The first connecting portion is movably connected to the solar panel, and the fourth connecting portion is movably connected to the lamp body. The second connecting portion and the third connecting portion are detachable. The detachable design of the second and third connecting portions allows the solar panel and the lamp body to be fixed in different places, expanding the applicable scenarios of the solar floodlight. Furthermore, if a single component is damaged, it can be replaced individually, saving maintenance costs.

[0006] Preferably, the second connecting part is provided with a limiting groove, and the third connecting part is provided with a limiting block, the limiting block being detachably installed in the limiting groove. The design of the limiting groove makes the connection between the second connecting part and the third connecting part more stable.

[0007] Preferably, connecting rods are detachably mounted on the first and fourth connecting parts, and one end of the connecting rod passes through the movable sleeve and is fixedly connected to the ball head. The movable sleeve cooperates with the ball head. The detachable design of the ball head assembly allows for the replacement of only the damaged component when a part is damaged, rather than replacing the entire assembly, greatly reducing the maintenance cost of the solar floodlight.

[0008] Preferably, the solar panel and the lamp body are each provided with a locking seat, and the movable sleeve is threadedly connected to the locking seat, with the ball head installed inside the movable sleeve. This design ensures the stability of the connection while allowing the lamp body and solar panel to be flexibly adjusted at different angles and positions, ensuring the lighting effect.

[0009] Preferably, the first connecting part and the fourth connecting part are respectively provided with a slot, and the end of the connecting rod away from the ball head is detachably installed in the slot. The design of installing the connecting rod in the slot ensures detachability while improving the stability of the connection between the connecting rod and the slot.

[0010] Preferably, the solar panel is electrically connected to a first wiring hole, and the lamp body is electrically connected to a second wiring hole. The two wiring holes are connected by a wire. Even when the first and second connectors are fixed in different positions, the solar panel can still connect the first and second wiring holes through the wire to continuously supply power to the lamp body, thus expanding the application scenarios of the solar floodlight.

[0011] Preferably, the third connecting part is provided with a countersunk hole, and the limiting groove is provided with a through hole. The screw passes through the countersunk hole and connects with the through hole to fix the limiting block in the limiting groove. The screw passing through the countersunk hole to fix the third connecting part in the limiting groove effectively prevents the limiting block from shifting or loosening in the limiting groove, thereby improving the overall service life and safety.

[0012] Preferably, the lamp body is equipped with a rechargeable battery, which is electrically connected to both the solar panel and the light-emitting element of the lamp body. The solar panel, electrically connected to the rechargeable battery, can charge the rechargeable battery, which can power the lamp body to emit light. When the lamp body is used alone, the rechargeable battery can continue to power the lamp body to emit light, ensuring the lighting effect.

[0013] Preferably, the lamp body is also provided with a charging port, which is electrically connected to a rechargeable battery. Similarly, when the lamp body is used alone and the rechargeable battery is depleted, the rechargeable battery can be charged through the charging port to enable the lamp body to emit light, further expanding the application scenarios of this solar floodlight.

[0014] Compared with related technologies, this utility model has the following advantages: 1. The detachable design of the first and second connecting parts allows the solar panel and the lamp body to be fixed in different positions, expanding the application scenarios; the bending design expands the applicable range of the solar floodlight; at the same time, the design of the first connecting part being movably connected to the solar panel and the second connecting part being movably connected to the lamp body further expands the lighting range of the lamp body and the range of motion of the solar panel. 2. The first and second connecting parts are connected together in a detachable manner, so when a certain component is damaged, only that component can be replaced, reducing maintenance costs and greatly improving the service life of the solar floodlight. Attached Figure Description

[0015] Figure 1 This is a perspective view of the present invention;

[0016] Figure 2 This is a schematic diagram of the structure of the bracket in this utility model;

[0017] Figure 3 This is an exploded view of the bracket in this utility model;

[0018] Figure 4 This is a schematic diagram of the structure of the solar panel in this utility model;

[0019] Figure 5 This is a schematic diagram of the lamp body in this utility model.

[0020] Attached Figures: 1. Solar panel; 101. First wiring hole; 2. Lamp body; 201. Second wiring hole; 202. Rechargeable battery; 203. Charging port; 3. First connector; 301. First connecting part; 302. Second connecting part; 303. Limiting slot; 304. Through hole; 4. Second connector; 401. Third connecting part; 402. Fourth connecting part; 403. Limiting block; 404. Countersunk hole; 5. Ball head; 6. Connecting rod; 7. Movable sleeve; 8. Locking seat; 9. Slot. Detailed Implementation

[0021] First, those skilled in the art should understand that these embodiments are merely used to explain the technical principles of the embodiments of this application and are not intended to limit the scope of protection of the embodiments of this application. Those skilled in the art can make adjustments as needed to adapt to specific application scenarios.

[0022] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0023] like Figures 1-5 As shown, a solar floodlight is provided, including a bracket. One end of the bracket is movably connected to a solar panel 1, and the other end is movably connected to a lamp body 2. The solar panel 1 and the lamp body 2 are rotatable relative to the bracket. The bracket includes a first connector 3 and a second connector 4. The first connector 3 is bent to form a first connecting part 301 and a second connecting part 302. The second connector 4 is bent to form a third connecting part 401 and a fourth connecting part 402. The first connecting part 301 is movably connected to the solar panel 1, and the fourth connecting part 402 is movably connected to the lamp body 2. The second connecting part 302 and the third connecting part 401 are detachably installed.

[0024] In this embodiment, a solar-powered floodlight mainly includes a sturdy bracket. A solar panel 1 is movably mounted at one end of the bracket, while a lighting body 2 is movably mounted at the other end. This design allows both the solar panel 1 and the lighting body 2 to rotate flexibly relative to the bracket to adapt to different lighting needs. Furthermore, the bracket consists of two connecting parts: a first connecting part 3 and a second connecting part 4. The first connecting part 3 is bent to form a first connecting portion 301 and a second connecting portion 302, while the second connecting part 4 is also bent to form a third connecting portion 401 and a fourth connecting portion 402. The first connecting portion 301 is bent outwards relative to the second connecting portion 302, and the fourth connecting portion 402 is bent relative to the third connecting portion 401, with a bending angle greater than 90°, greatly increasing the range of motion of the lighting body 2 and the solar panel 1. Notably, the second connecting portion 302 and the third connecting portion 401 are connected by a detachable connection, making the entire bracket structure both sturdy and easy to disassemble and maintain, greatly improving ease of use and flexibility. Similarly, the detachable design of the second connecting part 302 and the third connecting part 401 allows the lamp body 2 and the solar panel 1 to be fixed in different positions, expanding the applicable scenarios of the solar floodlight. Furthermore, the second connecting part 302 and the third connecting part 401 can also be installed in opposite directions and fixed to the top of a street light or other locations using brackets, further expanding the application scenarios of the solar floodlight and also increasing the illumination and light-receiving range of the lamp body 2 and the solar panel 1. This flexible adjustment capability greatly enhances the adaptability and practicality of the solar floodlight, ensuring optimal lighting effects under various environments and conditions, thereby meeting the diverse lighting needs of users.

[0025] Furthermore, the second connecting part 302 is provided with a limiting slot 303, and the third connecting part 401 is provided with a limiting block 403, the limiting block 403 being detachably installed in the limiting slot 303.

[0026] In this embodiment, a limiting groove 303 is provided on the second connecting part 302. The function of the limiting groove 303 is to limit and stabilize the position of the limiting block 403. Specifically, the limiting block 403 is installed inside the limiting groove 303, and the side wall of the limiting groove 303 cooperates with the limiting block 403 to ensure that the limiting block 403 will not move laterally within the limiting groove 303, and can be stably positioned, thereby effectively preventing the bracket from shifting or loosening during movement or use, and improving the stability and reliability of the overall structure.

[0027] Furthermore, connecting rods 7 are detachably installed on the first connecting part 301 and the fourth connecting part 402 respectively. The end of the connecting rod 7 passes through the movable sleeve 6 and is fixedly connected to the ball head 5. The movable sleeve 6 cooperates with the ball head 5.

[0028] In this embodiment, a detachable connecting rod 7 is respectively installed on the first connecting part 301 and the fourth connecting part 402 by screws. Similarly, the movable sleeve 6 and the ball head 5 also have a detachable function. This detachable design allows the user to easily and quickly replace only the damaged parts if the movable sleeve 6 or the connecting rod 7 is damaged. This design not only significantly reduces the maintenance cost of the solar floodlight and avoids the need to replace the entire device due to component damage, but also greatly extends the overall service life of the device, ensuring the reliability of the solar floodlight in long-term use.

[0029] Furthermore, the solar panel 1 and the lamp body 2 are respectively provided with locking seats 8, and the movable sleeve 6 is threadedly connected to the locking seat 8 and the ball head is installed in the movable sleeve 6.

[0030] In this embodiment, the solar panel 1 and the lamp body 2 are respectively provided with locking seats 8. The movable sleeve 6 is threadedly connected to the locking seat 8, and the ball head 5 is installed inside the movable sleeve 6. When the threaded connection between the movable sleeve 6 and the locking seat 8 is relatively loose, the ball head 5 can rotate inside the locking seat 8, thereby driving the solar panel 1 and the lamp body 2 to adjust their positions, so as to expand the illumination angle of the lamp body 2 and the range of motion of the solar panel 1. After adjusting the positions of the solar panel 1 and the lamp body 2, the ball head 5 is secured inside the locking seat 8 by tightening the movable sleeve 6 and the locking seat 8, thereby fixing the positions of the solar panel 1 and the lamp body 2. This design not only ensures the stability and firmness of the connection in actual use, preventing loosening or falling off due to external factors, but also ensures that the solar panel 1 can be adjusted to receive solar energy at a better angle at any time. Similarly, it can also realize the adjustment of the illumination angle of the lamp body 2, further expanding the usage methods and application scenarios.

[0031] Furthermore, the first connecting part 301 and the fourth connecting part 402 are respectively provided with slots 9, and the end of the connecting rod 7 away from the ball head 5 can be detachably installed in the slot 9.

[0032] In this embodiment, the end of the connecting rod 7 furthest from the ball head 5 is detachably mounted in the slot 9 by screws. The design of the slot 9 prevents the connecting rod 7 from shifting laterally, further enhancing the stability of the connection between the connecting rod 7 and the first connecting part 301 and the fourth connecting part 402.

[0033] Furthermore, the solar panel 1 is provided with a first wire hole 101, and the lamp body 2 is provided with a second wire hole 201.

[0034] In this embodiment, the solar panel 1 is provided with a first wiring hole 101, and the lamp body 2 is provided with a corresponding second wiring hole 201. These two wiring holes are electrically connected via wires to ensure a smooth electrical path. When the lamp body 2 and the solar panel 1 are fixed in different positions, the solar panel 1 can still be electrically connected via the wires between the first wiring hole 101 and the second wiring hole 201, continuously and stably providing the required power supply to the lamp body 2. This design not only effectively solves the power supply problem when the support is separated, but also greatly expands the application scenarios of this solar floodlight, enabling it to be flexibly applied in various complex environments and conditions.

[0035] Furthermore, the limiting block 403 is provided with a countersunk hole 404, and the limiting slot 303 is provided with a through hole 304. The screw passes through the countersunk hole 404 to fix the limiting block 403 in the limiting slot 303.

[0036] In this embodiment, the limiting block 403 is designed with a countersunk hole 404, which is designed to accommodate screws. Specifically, the screw passes through the countersunk hole 404, and through precise fitting and tightening, the limiting block 403 is securely fixed within the limiting slot 303. This fixing method not only further ensures that the limiting block 403 will not experience any displacement or loosening within the limiting slot 303, thereby further improving the stability and reliability of the overall structure, but also significantly extends the service life of the equipment and enhances safety during use. Furthermore, the ingenious design of the countersunk hole 404 allows the countersunk screw to be hidden inside, avoiding potential safety hazards from exposed screws and resulting in a cleaner and more aesthetically pleasing appearance, thus improving the overall aesthetics of the product.

[0037] Furthermore, the lamp body 2 is provided with a rechargeable battery 202, which is electrically connected to the solar panel 1 and the light-emitting element of the lamp body 2.

[0038] In this embodiment, a rechargeable battery 202 is provided on the lamp body 2, which is electrically connected to both the solar panel 1 and the lamp body 2. Specifically, the electrical connection design between the solar panel 1 and the rechargeable battery 202 ensures that, under sufficient sunlight, the solar panel 1 can effectively convert light energy into electrical energy, thereby efficiently charging the rechargeable battery 202. Simultaneously, the electrical connection between the rechargeable battery 202 and the light-emitting element of the lamp body 2 ensures that, when powered, the rechargeable battery 202 can stably provide the lamp body 2 with the necessary power to meet lighting requirements. It is worth mentioning that when the lamp body 2 is used alone, i.e., without external power support, the rechargeable battery 202 can still continuously supply power to the lamp body 2, ensuring that the lamp body 2 maintains a stable light-emitting state, thereby effectively guaranteeing the lighting effect and meeting the user's lighting needs in different environments.

[0039] Furthermore, the lamp body 2 is also provided with a charging port 203, which is electrically connected to the rechargeable battery 202.

[0040] In this embodiment, the lamp body 2 is also equipped with a charging port 203, which is electrically connected to the rechargeable battery 202 through an internal circuit. Similarly, when the lamp body 2 is in standalone use, if the rechargeable battery 202 is completely depleted, the user can charge the battery through the charging port 203, ensuring the lamp body 2 can continue to provide illumination. Furthermore, the charging port 203 is also electrically connected to the light-emitting element of the lamp body 2, so that the lamp body 2 can still provide illumination when the rechargeable battery 202 is damaged. This design not only enhances the practicality and convenience of the lamp body 2 but also expands the application scenarios of this solar floodlight, enabling it to function effectively in various environments and conditions.

[0041] During use, this solar floodlight can be installed indoors or outdoors in locations with sunlight. The solar floodlight is installed in the desired location using a bracket, and the position of the lamp body 2 and solar panel 1 can be adjusted by rotating the ball head 5. Tightening the locking seat 8 and the movable sleeve 6 secures the lamp body 2 and solar panel 1 in the predetermined position. When sunlight shines on the solar panel 1, the solar panel 1 converts light energy into electrical energy, which is stored in the rechargeable battery 202. The rechargeable battery 202 continuously powers the lamp body 2, enabling it to emit light and thus meeting the user's lighting needs. When the user needs to fix the lamp body 2 and solar panel 1 in different locations, simply detach the first connector 3 and the second connector 4. Similarly, when the user needs to use the lamp body 2 alone, this can be achieved by disassembling the first connector 3 and the second connector 4. Even without the power supply from the solar panel 1, the rechargeable battery 202 and charging port 203 on the lamp body 2 can still power the lamp body 2 to meet lighting needs.

[0042] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A solar-powered floodlight, characterized in that, The device includes a bracket, one end of which is movably connected to a solar panel, and the other end of which is movably connected to a lamp body. The solar panel and the lamp body are rotatable relative to the bracket. The bracket includes a first connector and a second connector. The first connector is bent to form a first connecting part and a second connecting part. The second connector is bent to form a third connecting part and a fourth connecting part. The first connecting part is movably connected to the solar panel, and the fourth connecting part is movably connected to the lamp body. The second connecting part and the third connecting part are detachable and installable.

2. The solar spotlight of claim 1, wherein, The second connecting part is provided with a limiting slot, and the third connecting part is provided with a limiting block. The limiting block can be detachably installed in the limiting slot.

3. The solar flood lamp according to claim 2, wherein, The first connecting part and the fourth connecting part are respectively detachably installed with connecting rods. One end of the connecting rod passes through the movable sleeve and is fixedly connected to the ball head. The movable sleeve cooperates with the ball head.

4. The solar flood lamp of claim 3, wherein, The solar panel and the lamp body are respectively provided with locking seats, and the movable sleeve is threadedly connected to the locking seats and the ball head is installed in the movable sleeve.

5. The solar flood lamp of claim 4, wherein, The first connecting part and the fourth connecting part are respectively provided with a slot, and the end of the connecting rod away from the ball head can be detachably installed in the slot.

6. The solar flood lamp according to claim 1, wherein, The solar panel has a first wire hole, and the lamp body has a second wire hole.

7. The solar flood lamp of claim 2, wherein, The third connecting part is provided with a countersunk hole, and the limiting slot is provided with a through hole. The screw passes through the countersunk hole and connects with the through hole to fix the limiting block in the limiting slot.

8. The solar flood lamp of claim 1, wherein, The lamp body is equipped with a rechargeable battery, which is electrically connected to the solar panel and the light-emitting element of the lamp body.

9. The solar flood lamp of claim 8, wherein, The lamp body is also provided with a charging port, which is electrically connected to a rechargeable battery.