Camping lamp
The camping light, connected by flexible connectors and magnetic adsorption components, solves the problem of traditional camping lights not being able to flexibly adjust the angle, achieving multi-angle lighting and convenient storage, and improving the flexibility and portability for outdoor use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-03-10
- Publication Date
- 2026-04-10
AI Technical Summary
Traditional camping lights have a rigid structure that cannot be flexibly adjusted, making operation cumbersome and increasing the risk of tipping over and causing damage. They cannot meet the diverse lighting needs of complex outdoor environments.
Multiple lamp bodies are connected by flexible connectors, allowing them to be bent arbitrarily and retain their preset shape after the external force is removed. Combined with magnetic adsorption and snap-on connection components, multiple lighting modes and convenient storage are achieved.
It achieves flexible lighting from multiple angles, adapts to complex outdoor environments, reduces size for easy carrying, lowers the risk of damage, and improves portability and ease of use.
Smart Images

Figure CN121828650A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of outdoor lighting equipment, in particular to a camping lamp. BACKGROUND
[0002] The camping lamp is a portable lamp for outdoor environment lighting. The conventional camping lamp adopts a single lamp body and a fixed angle lighting design, which can meet the basic brightness requirement. However, the outdoor terrain and the environmental lighting condition are complex and changeable, and the user often needs to simultaneously perform large-scale environment lighting and local operation key lighting. The lamp body structure and the connecting piece of the existing camping lamp are mostly rigid design, or only a few fixed gears are provided, and the user is often forced to manually hold the lamp or rely on external objects for leaning in actual use, which not only is cumbersome to operate, but also increases the risk of lamp falling and damage.
[0003] Therefore, there is an urgent need for a camping lamp with space omnidirectional adjustment capability. The lamp body joint should be able to be flexibly adjusted and stably locked at any angle, and the overall structure needs to be kept compact for quick deployment and storage. SUMMARY
[0004] The present application aims to solve the above technical problems and provides a camping lamp, which has a plurality of lamp bodies that can be relatively bent, is flexible in lighting angle, and is convenient to store and carry.
[0005] To achieve the above-mentioned purpose, the present application discloses a camping lamp, which comprises a flexible connecting piece and at least two lamp bodies, the flexible connecting piece is connected between the at least two lamp bodies, the flexible connecting piece is configured to be arbitrarily bent under external force and to maintain a preset shape after the external force is removed.
[0006] Preferably, the flexible connecting piece is made of a soft and moldable material; and / or, the flexible connecting piece is in a tubular structure, and the at least two lamp bodies are electrically connected through wires accommodated in the flexible connecting piece.
[0007] Preferably, each of the lamp bodies of the camping lamp comprises a first irradiation surface and a connecting surface; the first irradiation surface is arc-shaped, the at least two lamp bodies combine to form a cylindrical body, and the first irradiation surface of each lamp body is arranged along the outer periphery of the cylindrical body; and the connecting surfaces of any two adjacent lamp bodies are oppositely arranged.
[0008] Preferably, the camping lamp further comprises a connecting structure, and any two adjacent lamp bodies are detachably connected through the connecting structure.
[0009] Preferably, the connecting structure of the camping lamp is arranged between the connecting surfaces of two adjacent lamp bodies and comprises a magnetic adsorption assembly and / or a buckle connecting assembly.
[0010] Preferably, each lamp body of the camping lamp further includes a second irradiation surface; the second irradiation surface is connected between the first irradiation surface and the connecting surface, and the second irradiation surface and the flexible connector are respectively disposed at opposite ends of the cylinder.
[0011] Preferably, the camping light also includes a solar panel, and the solar panel is provided on the connecting surface of each of the light bodies.
[0012] Preferably, the camping light has two lamp bodies, which are respectively connected to the two ends of the flexible connector.
[0013] Preferably, at least one of the lamp bodies of the camping lamp has a support surface.
[0014] Preferably, the camping light further includes a circuit board disposed in one of the lamp bodies and electrically connected to each of the lamp bodies; and / or, the camping light further includes a battery disposed in one of the lamp bodies and electrically connected to each of the lamp bodies.
[0015] Beneficial effects The camping lamp of this invention connects multiple lamp bodies via flexible connectors, allowing users to freely bend the relative angles of the multiple lamp bodies to achieve various modes such as wide-angle front lighting, side supplemental lighting, and back-to-back dual-zone lighting, adapting to complex outdoor lighting needs. Simultaneously, the flexible connectors can be used to magnetically attach multiple lamp bodies together, reducing their size and creating a more regular shape, making them easy to pack into backpacks or vehicle compartments. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of the camping lamp of the present invention with each lamp body in a separated state.
[0017] Figure 2 This is a three-dimensional structural diagram of the camping lamp of the present invention with the lamp bodies in a connected state.
[0018] Figure 3 This is an exploded structural diagram of one of the lamp bodies of the camping lamp of the present invention.
[0019] Figure 4 This is another exploded structural diagram of one of the lamp bodies of the camping lamp of the present invention.
[0020] Figure 5 This is a schematic diagram of the internal cross-section of a lamp body according to the present invention.
[0021] Explanation of reference numerals in the attached drawings: 1. Flexible connector; 2. Lamp body; 21. First illumination surface; 22. Connecting surface; 221. Magnetic component; 222. Gasket; 23. Mounting bracket; 231. Housing; 2311. First light outlet; 2312. Second light outlet; 232. Lamp holder; 2321. Fixing frame; 2322. Mounting groove; 24. First lighting module; 241. First lampshade; 242. First light-emitting component; 2421. First LED bead; 25. Receiving cavity; 26. Second illumination surface; 261. Supporting surface; 27. Second lighting module; 271. Second lampshade; 272. Second light-emitting component; 2721. Second LED bead; 28. Solar panel; 281. Battery; 282. External charging port; 29. Circuit board; 210. Switch. Detailed Implementation
[0022] The present invention will be further explained below with reference to the accompanying drawings and specific embodiments.
[0023] like Figure 1 As shown, this embodiment discloses a camping light, including a flexible connector 1 and at least two lamp bodies 2. The flexible connector 1 is connected between the at least two lamp bodies 2. The flexible connector 1 is configured to be arbitrarily bent under the action of external force and to maintain a preset shape after the external force is removed. The preset shape refers to the shape of the flexible connector 1 after the external force is removed.
[0024] By adopting the above technical solution, a flexible connector 1 is set to connect at least two lamp bodies 2, and each lamp body 2 is interconnected through the flexible connector 1. The flexible connector 1 can be bent arbitrarily under the action of external force and maintains a preset shape after the external force is removed. Thus, each lamp body 2 can be stably placed on uneven surfaces or wrapped around supports, branches, or other objects without additional support through the flexible connector 1, which greatly enhances the environmental adaptability and placement freedom of the camping light.
[0025] Furthermore, the flexible connector 1 is made of a soft, malleable material. The manufactured flexible connector 1 can be bent and twisted in any direction, and after being adjusted to a preset shape, the material itself can provide sufficient structural strength to prevent the flexible connector 1 from springing back or loosening. The soft, malleable material can be, for example, silicone or a thermoplastic elastomer.
[0026] Furthermore, the flexible connector 1 has a tubular structure. Of course, in other embodiments, the flexible connector 1 may also be configured with other shapes.
[0027] In another embodiment, the at least two lamp bodies 2 are electrically connected by wires housed within the flexible connector 1, which not only achieves electrical connection between the lamp bodies 2, but also protects the wires.
[0028] Furthermore, multiple lamp bodies 2 can be combined to form a symmetrical geometric shape. For example, multiple lamp bodies 2 can be combined to form a polyhedron, including but not limited to the shape of a regular tetrahedron or a cube.
[0029] In another embodiment, each lamp body 2 includes a first irradiation surface 21 and a connecting surface 22, wherein the first irradiation surface 21 is arc-shaped, and multiple lamp bodies 2 are combined to form a cylinder, with the first irradiation surface 21 of each lamp body 2 arranged along the outer periphery of the cylinder. This arrangement in this embodiment ensures that after multiple lamp bodies 2 are combined via the connecting surface 22, as... Figure 2 As shown, all the first irradiation surfaces 21 can collectively form a cylindrical luminous surface, achieving wide-angle and uniform diffusion of the illumination light. Please refer again. Figure 1 and Figure 2 By combining multiple independent lamp bodies 2 into a compact cylinder, the overall size of the camping lamp is significantly reduced, making it easier to store and carry, and improving the product's portability.
[0030] Specifically, such as Figure 3 As shown, each lamp body 2 also includes a mounting bracket 23 and a first lighting module 24, the first lighting module 24 being fixed within the mounting bracket 23. Further, as... Figure 4 As shown, the mounting bracket 23 includes a housing 231 and a lamp holder 232. The lamp holder 232 is detachably mounted to the housing 231, as shown below. Figure 5 As shown, the two together form a receiving cavity 25. Please refer to this again. Figure 4 The outer casing 231 is provided with a first light outlet 2311. The first lighting module 24 is fixed inside the accommodating cavity 25, and the light emitted by the first lighting module 24 is emitted through the first light outlet 2311.
[0031] Furthermore, the lamp holder 232 is flat.
[0032] In this embodiment, multiple lamp bodies 2 are combined to form a cylinder. In other embodiments, multiple lamp bodies 2 can also be combined to form other shapes, such as a sphere.
[0033] Specifically, please refer to [the relevant documentation] again. Figure 4 The first lighting module 24 includes a first lampshade 241 and a first light-emitting component 242. The first lampshade 241 is disposed within the accommodating cavity 25. The shape of the outer shell 231 is adapted to the first lampshade 241. Preferably, the first light-emitting port 2311 of the outer shell 231 is arc-shaped. The first light-emitting component 242 includes a plurality of first LED beads 2421 and is disposed inside the first lampshade 241. The light emitted by the plurality of first LED beads 2421 is uniformly emitted from the outer shell 231 through the first lampshade 241, that is, the light emitted by the plurality of first LED beads 2421 is uniformly emitted to the external environment through the first light-emitting port 2311.
[0034] It should be noted that the mounting bracket 23 and the first lampshade 241 together protect the internal components of the camping light. The housing 231 and the first lampshade 241 serve as light emission channels. The lamp holder 232 is used to support and fix the first light-emitting component 242.
[0035] Preferably, the lamp holder 232 further includes a fixing frame 2321. The first lampshade 241 is stably installed in the receiving cavity 25 by the fixing frame 2321.
[0036] It is understood that in other embodiments, the outer shell 231 has a light-transmitting perforated pattern, such as an arc shape, a fan shape, or other shapes that are conducive to the directional projection of light or the formation of a specific light spot.
[0037] It should be noted that the connecting surfaces 22 of adjacent lamp bodies 2 are in contact with each other, enabling convenient use and storage of the lamps. In one embodiment, the connecting surface 22 is the side of the lamp holder 232 that does not face the receiving cavity 25.
[0038] In another embodiment of this application, the camping light further includes a connection structure that allows adjacent light bodies 2 to be detachably connected. The connection structure includes a magnetic adsorption component and / or a snap-fit connection component. This connection structure improves the stability of the connection between the light bodies 2 and facilitates opening when illumination from different angles is required.
[0039] In this embodiment, the connection structure includes a magnetic adsorption component.
[0040] It is understood that in other embodiments, the connection structure may also include a snap-fit connection component, or a magnetic adsorption component and a snap-fit connection component.
[0041] Please refer again for further information. Figure 1 The magnetic adsorption assembly includes a plurality of magnetic components 221.
[0042] Furthermore, please refer to [the website / platform] again. Figure 1 and Figure 5 The plurality of magnetic components 221 are disposed on the connecting surface 22.
[0043] Specifically, a number of magnetic components 221 are disposed on the side of the lamp holder 232 not facing the receiving cavity 25. The side of the lamp holder 232 not facing the receiving cavity 25 has a mounting groove 2322, and the magnetic components 221 are installed within the mounting groove 2322. The magnetic components 221 include permanent magnets or magnetically conductive materials such as iron sheets, as long as they can ensure that the connecting surfaces 22 of adjacent lamp bodies 2 are firmly attached when closed. Please refer again. Figure 2Under the influence of magnetism, the connecting surfaces 22 of adjacent lamp bodies 2 automatically align and adhere tightly together, forming a cylinder. It is understood that in some embodiments, the connecting surfaces 22 of adjacent lamp bodies 2 may also be other shapes that can completely fit together after magnetic attraction. The camping lamp, after being firmly attached, has a significantly reduced volume compared to when unfolded, making it easy to place in a backpack side pocket, car storage compartment, or dedicated storage bag. The magnetic attraction provides sufficient holding force to prevent accidental unfolding during transport. At the same time, the folded state also protects the connecting surfaces 22 on the lamp holder 232 from scratches by hard objects.
[0044] Please refer to this again. Figure 1 In another embodiment of this application, each lamp body 2 further includes a second irradiation surface 26, which is connected between the first irradiation surface 21 and the connecting surface 22. The second irradiation surface 26 and the flexible connector 1 are respectively disposed at opposite ends of the cylinder. By providing the second irradiation surface 26, the camping lamp can provide illumination from a direction different from the first irradiation surface 21. The second irradiation surface 26 and the flexible connector 1 are respectively disposed at opposite ends of the cylinder, which can prevent the flexible connector 1 from interfering with the light emitted by the second irradiation surface 26.
[0045] In this camping light, after all the lamp bodies 2 are assembled into a cylinder, the second illumination surface 26 of each lamp body 2 enables the camping light to function as a flashlight.
[0046] Please refer again for further information. Figure 3 Each lamp body 2 also includes a second lighting module 27, please refer to [link / reference] again. Figure 4 The outer casing 231 is also provided with a second light outlet 2312. The light emitted by the second lighting module 27 is emitted through the second light outlet 2312.
[0047] For details, please refer to the following again. Figure 4 The second lighting module 27 includes a second lampshade 271 and a second light-emitting component 272. The second lampshade 271 is disposed in the second light outlet 2312, and its shape matches the second light outlet 2312. The second light-emitting component 272 includes a plurality of second LED beads 2721 and is disposed inside the second lampshade 271. The light emitted by the plurality of second LED beads 2721 is uniformly directed to the external environment through the second lampshade 271.
[0048] It is understood that in other embodiments, the first lampshade 241 and the second lampshade 271 may be integrally formed.
[0049] It is understood that in other embodiments, the lamp body 2 may not have a second irradiation surface 26.
[0050] Please refer to this again. Figure 3 In another embodiment of this application, the camping light further includes a solar panel 28. Specifically, please refer again to...Figure 1 Each lamp body 2 has a solar panel 28 installed on its connecting surface 22. The solar panel 28 can convert sunlight into electricity, providing a sustainable and clean energy supply for the camping lamp, extending its usage time in outdoor environments without mains power, and enhancing the product's self-sufficiency and environmental friendliness.
[0051] Furthermore, the solar panel 28 is fixedly mounted on the lamp holder 232 as an auxiliary charging method for the camping lamp. Specifically, the solar panels 28 of multiple lamp bodies 2 are connected in parallel through wires passing through the flexible connector 1.
[0052] Please refer to this again. Figure 1 and Figure 4 In another embodiment, the connecting surface 22 is further provided with a gasket 222. The gasket 222 is preferably made of an elastic material and is disposed around the solar panel 28 on the connecting surface 22. When multiple lamp bodies 2 are attracted or attached to each other, the gasket 222 can play a buffering role, preventing the solar panel 28 from breaking or damaging the circuit structure due to excessive force, and at the same time avoiding scratches caused by direct friction between the connecting surfaces 22.
[0053] Preferably, there are two lamp bodies 2, each connected to one end of the flexible connector 1. It is understood that in other embodiments, there may be three, four, or five lamp bodies 2, etc. It should be noted that the number of lamp bodies 2 is not limited by this embodiment and the accompanying drawings.
[0054] Specifically, please refer to [the relevant documentation] again. Figure 1 and Figure 2 In one embodiment, the camping light includes two lamp bodies 2, namely a first lamp body and a second lamp body. A flexible connector 1 has a tubular structure. The two ends of the flexible connector 1 are fixed to the first ends of the first lamp body and the second lamp body respectively via waterproof joints or compression methods. Wires connecting the first lamp body and the second lamp body are threaded inside the flexible connector 1. By bending the flexible connector 1, the user can freely adjust the angle between the first lamp body and the second lamp body; that is, the user can apply external force to bend the flexible connector 1 into any shape, and it can stably maintain that shape after the external force is removed. Specifically, the user can adjust the two lamp bodies 2 to various modes according to the lighting scene requirements, such as focused illumination in a relative position, expanded illumination range in opposite positions, parallel illumination in the same direction, or cross illumination at any angle.
[0055] Please refer to this again. Figure 5In another embodiment of this application, at least one lamp body 2 has a support surface 261, which is a plane and can stably support the camping lamp. Specifically, when another lamp body 2 is suspended in the air, the lamp body 2 with the support surface 261 can be supported on a horizontal surface, preventing the camping lamp from shaking as a whole. When multiple lamp bodies 2 have support surfaces 261 at their bottoms, after the multiple lamp bodies 2 form a cylinder, the support surface 261 is located at the bottom of the cylinder, ensuring that the camping lamp is stably placed on a horizontal surface and preventing the use effect from being affected by shaking.
[0056] Please refer to this again. Figure 4 In another embodiment, the camping light further includes a circuit board 29, which is disposed within one of the lamp bodies 2 and electrically connected to each lamp body 2. Specifically, the first lighting module 24, the second lighting module 27, and the solar panel 28 are all electrically connected to the circuit board 29.
[0057] Furthermore, the camping light also includes a battery 281, which is disposed within the light frame 232. The battery 281 is a rechargeable battery and is connected to each solar panel 28 and the circuit board 29 to store electrical energy converted from solar energy, ensuring that the camping light can still be used normally at night or in cloudy conditions.
[0058] Furthermore, to cope with rainy days or situations where charging is urgently needed, the camping light is also equipped with an external charging port 282 that is electrically connected to the circuit board 29.
[0059] Please refer to this again. Figure 3 In another embodiment, the camping light also includes a switch 210. By operating the switch 210, the user can send commands to the circuit board 29 to cycle through different lighting modes, such as having only one lamp body 2 illuminate or multiple lamp bodies 2 illuminate simultaneously. In each lighting mode, the lighting intensity, flashing frequency, and color temperature switching of each lamp body 2 are further controlled. That is, the circuit board 29 of the camping light of this application allows multiple lamp bodies 2 to simultaneously execute the same lighting mode, or it can be controlled independently to achieve differentiated operating states, such as one lamp body 2 providing high-brightness illumination, another lamp body 2 providing low-brightness ambient lighting, or flashing warning. Furthermore, by operating the switch 210, the user can use the circuit board 29 to adjust each lamp body 2 to a specific brightness level. After all lamp bodies 2 have been adjusted, operating the switch 210 again will turn off the camping light.
[0060] When using the camping light of this application, the user can bend the flexible connector 1 to a suitable angle for illumination as needed. During the day, the solar panel 28 can be charged by facing the sunlight. For storage, the multiple lamp bodies 2 are rotated until the connecting surfaces 22 are facing each other, and the magnetic component 221 automatically attracts them, allowing the product to fold into a smaller, unified unit.
[0061] The above description is merely a preferred embodiment of the present invention and is not intended to limit the scope of protection of the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of protection of the present invention.
Claims
1. A camping light, characterized in that, Includes flexible connectors and at least two lamp bodies; The flexible connector is connected between the at least two lamp bodies. The flexible connector is configured to bend arbitrarily under external force and maintain a preset shape after the external force is removed.
2. The camping light as described in claim 1, characterized in that, The flexible connector is made of a soft, malleable material; And / or, the flexible connector has a tubular structure, and the at least two lamp bodies are electrically connected by wires housed within the flexible connector.
3. The camping light as described in claim 1, characterized in that, Each of the lamp bodies includes a first irradiating surface and a connecting surface; The first irradiation surface is arc-shaped, and the at least two lamp bodies are combined to form a cylinder. The first irradiation surface of each lamp body is arranged along the outer periphery of the cylinder. The connecting surfaces of any two adjacent lamp bodies are arranged opposite each other.
4. The camping light as described in claim 3, characterized in that, The camping light also includes a connecting structure, through which any two adjacent light bodies can be detachably connected.
5. The camping light as described in claim 4, characterized in that, The connection structure is disposed between the connection surfaces of two adjacent lamp bodies and includes a magnetic adsorption component and / or a snap-fit connection component.
6. The camping light as described in claim 3, characterized in that, Each of the lamp bodies also includes a second irradiation surface; The second irradiation surface is connected between the first irradiation surface and the connecting surface, and the second irradiation surface and the flexible connector are respectively disposed at opposite ends of the cylinder.
7. The camping light as described in claim 3, characterized in that, The camping light also includes a solar panel, and the solar panel is provided on the connecting surface of each of the light bodies.
8. The camping light as claimed in claim 1, characterized in that, The lamp body is provided in two parts, and the two lamp bodies are respectively connected to the two ends of the flexible connector.
9. The camping light as claimed in claim 1, characterized in that, At least one of the lamp bodies has a support surface.
10. The camping light as claimed in any one of claims 1 to 9, characterized in that, The camping light also includes a circuit board disposed in one of the light bodies and electrically connected to each of the light bodies; And / or, the camping light also includes a battery disposed in one of the light bodies and electrically connected to each of the light bodies.