Multi-directional lighting fixture

CN224622793UActive Publication Date: 2026-08-11NINGBO FUTAI ELECTRIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-21
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

例如,常见的吊灯、台灯仅能向单一方向投射光线,在一些复杂的空间环境中,难以实现全方位的有效照明

Benefits of technology

[0014] A control device; and

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to a multi-directional lighting fixture, which includes a base device, a folding device, a control device, and a lamp body device. The lamp body device includes a first lamp body, a second lamp body, and a third lamp body. The first lamp body is connected between the base device and the second lamp body. The third lamp body is disposed at the front end of the second lamp body. The folding device is disposed at both ends of the first lamp body to control the folding of the first lamp body and the second lamp body. The control device is electrically connected to the lamp body device.
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Description

Technical Field

[0001] This utility model relates to the field of lighting technology, and in particular to a multi-directional lighting fixture. Background Technology

[0002] In modern life and work settings, lighting fixtures are an indispensable basic device, widely used in homes, offices, commerce, industry, and other fields. However, existing traditional lighting fixtures have many limitations in use and are unable to meet the lighting needs of diverse scenarios.

[0003] From the perspective of lighting direction, traditional lighting fixtures mostly adopt unidirectional or fixed-angle lighting methods. For example, common chandeliers and table lamps can only project light in a single direction, making it difficult to achieve effective all-around lighting in some complex spatial environments. In terms of light adjustment, traditional lighting fixtures have relatively limited adjustment functions. Most fixtures only support brightness adjustment, and the adjustment methods are limited, making it impossible to precisely control the direction, angle, and distribution of light. For scenarios with high requirements for light quality, such as art studios and photography studios, traditional lighting fixtures struggle to create the ideal lighting atmosphere and effects, failing to meet the diverse lighting needs of professionals. From a size perspective, traditional lighting fixtures generally suffer from being too large or poorly designed. For example, floor lamps, with their bulky bases and poles, occupy a significant amount of indoor space. In small apartments or cramped offices, this not only reduces activity space but also affects the overall spatial layout and aesthetics. Large searchlights used outdoors are cumbersome and difficult to carry and move, making them unsuitable for emergency lighting or temporary work needs. Furthermore, traditional lighting fixtures often use a simple combination of multiple independent lamp heads to achieve multi-directional lighting, which further increases the size and weight of the fixtures and greatly reduces their flexibility of use. Summary of the Invention

[0004] One advantage of this invention is that it provides a multi-directional lighting fixture, which can achieve multi-directional lighting, has a large lighting range, and is suitable for various occasions.

[0005] Another advantage of this utility model is that it provides a multi-directional lighting fixture, which is provided with multiple lamp bodies that can rotate and fold together, and can be fixed at any angle, with a wider range of angle control.

[0006] Another advantage of this invention is that it provides a multi-directional lighting fixture that can achieve illumination in both longitudinal and lateral directions, resulting in a large illumination range.

[0007] Another advantage of this utility model is that it provides a multi-directional lighting fixture with a display screen that can display information such as power consumption, lighting mode, and folding angle in real time, thus achieving a more intelligent and convenient interactive experience.

[0008] Another advantage of this utility model is that it provides a multi-directional lighting fixture that can be folded multiple times, and after folding, it is compact and easy to carry.

[0009] Another advantage of this utility model is that it provides a multi-directional lighting fixture, which is provided with multiple lamp bodies, has multiple light emission modes, and can activate different light emission modes depending on the different folded and unfolded states, thus meeting the diverse application needs of different users.

[0010] Another advantage of this utility model is that it provides a multi-directional lighting fixture with multiple fixing methods, which users can choose according to their needs.

[0011] According to another aspect of the present invention, the present invention further provides a multi-directional lighting fixture, the multi-directional lighting fixture comprising:

[0012] A base device;

[0013] A folding device;

[0014] A control device; and

[0015] A lamp body assembly includes a first lamp body, a second lamp body, and a third lamp body. The first lamp body is connected between the base assembly and the second lamp body. The third lamp body is disposed at the front end of the second lamp body. A folding device is disposed at both ends of the first lamp body to control the folding of the first lamp body and the second lamp body. A control device is electrically connected to the lamp body assembly.

[0016] According to one embodiment of the present invention, the control device includes a display screen, which is disposed on the base device.

[0017] According to one embodiment of the present invention, the folding device includes a first folding component and a second folding component, the first folding component being disposed between the base device and the first lamp body, and the second folding component being disposed between the first lamp body and the second lamp body.

[0018] According to one embodiment of the present invention, the first lamp body is adapted to be folded 0° to 180° around the base device, and the second lamp body is adapted to be folded 0° to 225° around the first lamp body.

[0019] According to one embodiment of the present invention, the first lamp body includes a first light-emitting element, a first lamp plate, and a first lamp body mounting portion. The first lamp plate is mounted on one side of the first lamp body mounting portion, and the first light-emitting element is mounted inside the first lamp body mounting portion and emits light toward the first lamp plate.

[0020] According to one embodiment of the present invention, the second lamp body includes a second light-emitting element, a second lamp plate, and a second lamp body mounting portion. The second lamp plate is mounted on one side of the second lamp body mounting portion, and the second light-emitting element is mounted inside the second lamp body mounting portion and emits light toward the second lamp plate.

[0021] According to one embodiment of the present invention, the third lamp body includes a third light-emitting element, a third lamp plate, and a third lamp body mounting portion. The third lamp body mounting portion is connected to the upper end of the second lamp body mounting portion. The third lamp plate is mounted on one side of the third lamp body mounting portion. The third light-emitting element is mounted inside the third lamp body mounting portion and faces the third lamp plate.

[0022] According to one embodiment of the present invention, the control device further includes a power supply component, a control circuit, and a control assembly. The power supply component and the control circuit are installed inside the base device, and the control assembly is installed on the surface of the base device and electrically connected to the power supply component, the control circuit, and the lamp body device.

[0023] According to one embodiment of the present invention, the base device includes a base and a support portion, the support portion being connected above the base, the support portion having an inner cavity and an outer cavity, wherein the inner cavity is located inside the support portion to install the power supply component and the control circuit, and the outer cavity extends inwardly from one side of the support portion to accommodate the first lamp body and the second lamp body.

[0024] According to one embodiment of the present invention, the base device further includes a first mounting component and a second mounting component, both of which are disposed at the bottom of the base.

[0025] According to one embodiment of the present invention, the first folding assembly includes a first folding portion and a first fixing portion. The first fixing portion is connected above the support portion of the base device. The first folding portion is disposed at the lower end of the first lamp body. The first folding portion is adapted to fold around the first fixing portion to control the first lamp body to fold around the support portion of the base device.

[0026] According to one embodiment of the present invention, the first folding portion includes a first connector, a first folding member, and a first rotating cavity. The first connector is connected to the lower end of the first lamp body, the first rotating cavity is disposed in the first folding member, and the first folding member extends from the first connector to be foldably connected to the first fixing portion. The first fixing portion includes a first fixing member, a first extension member, a first rotating member, and a first limiting member. The first fixing member is connected above the support portion, the first extension member extends from the surface of the first fixing member at a predetermined angle, the first rotating member is disposed in the first extension member and is adapted to rotate within the first rotating cavity of the first folding portion, and the first limiting member is disposed in the first extension member to limit the folding angle of the first folding portion.

[0027] According to one embodiment of the present invention, the display screen is disposed on the surface of the first extension of the first fixing portion.

[0028] According to one embodiment of the present invention, the second folding component includes a second folding part and a second fixing part. The second fixing part is connected to the upper part of the first lamp body, and the second folding part is disposed at the lower end of the second lamp body. The second folding part is adapted to fold around the second fixing part to control the second lamp body to fold around the first lamp body.

[0029] According to one embodiment of the present invention, the second folding portion includes a second connector, a second folding member, and a second rotating cavity. The second connector is connected to the lower end of the second lamp body, the second rotating cavity is disposed on the second folding member, and the second folding member extends from the second connector to be foldably connected to the second fixing portion. The second fixing portion includes a second fixing member, a second extension member, a second rotating member, and a second limiting member. The second fixing member is connected to the upper part of the first lamp body, the second extension member extends from the surface of the second fixing member, the second rotating member is disposed on the second extension member and is adapted to rotate within the second rotating cavity, and the second limiting member is disposed on the second fixing member to limit the folding angle of the second folding portion.

[0030] According to one embodiment of the present invention, the multi-directional lighting fixture further includes a rotating device, which includes a first rotating device, a second rotating device and a third rotating device. The first rotating device is disposed between the base body and the first lamp body, the second rotating device is disposed between the first lamp body and the second lamp body, and the third rotating device is disposed between the second lamp body and the third lamp body.

[0031] According to one embodiment of the present invention, the rotation angles of the first rotating device, the second rotating device, and the third rotating device are all set to 0° to 360°.

[0032] According to one embodiment of the present invention, one or more magnetic elements are provided at the end of the third lamp body mounting portion.

[0033] The further objectives and advantages of this invention will become fully apparent from the following description and accompanying drawings. Attached Figure Description

[0034] Figure 1 This is a schematic diagram of the overall structure of a multi-directional lighting fixture according to an embodiment of the present invention.

[0035] Figure 2A This is one of the exploded structural diagrams of the multi-directional lighting fixture according to the above embodiments of the present utility model.

[0036] Figure 2B This is the second exploded structural diagram of the multi-directional lighting fixture according to the above embodiments of the present utility model.

[0037] Figure 2C This is the third exploded structural diagram of the multi-directional lighting fixture according to the above embodiments of the present utility model.

[0038] Figure 3 This is a structural schematic diagram of a folding device for a multi-directional lighting fixture according to the above embodiments of the present utility model.

[0039] Figure 4 This is a schematic diagram showing that both the first lamp body and the second lamp body of the multi-directional lighting fixture according to the above embodiments of the present invention are in a closed state.

[0040] Figure 5 This is a schematic diagram showing the first lamp body of the multi-directional lighting fixture according to the above embodiments of the present invention in an unfolded state and the second lamp body in a closed state.

[0041] Figure 6 This is a schematic diagram showing the first lamp body and the second lamp body of the multi-directional lighting fixture according to the above embodiments of the present invention in an unfolded state.

[0042] Figure 7 This is a schematic diagram of the multi-directional lighting fixture in its maximum unfolded state according to the above embodiments of the present invention.

[0043] Figure 8 This is a structural schematic diagram of another embodiment of the multidirectional lighting fixture according to the above-described embodiments of the present utility model.

[0044] Figure 9 This is a structural schematic diagram of another embodiment of the multidirectional lighting fixture according to the above-described embodiments of the present utility model. Detailed Implementation

[0045] The following description is intended to disclose the present invention so that those skilled in the art can implement it. The preferred embodiments described below are merely examples, and other obvious variations will occur to those skilled in the art. The basic principles of the present invention defined in the following description can be applied to other embodiments, modifications, improvements, equivalents, and other technical solutions that do not depart from the spirit and scope of the present invention.

[0046] Those skilled in the art should understand that, in the disclosure of this utility model, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limitations on this utility model.

[0047] It is understood that the term "a" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element can be multiple, and the term "a" should not be understood as a limitation on the number.

[0048] Reference Appendix Figure 1 To be continued Figure 8 As shown, a multi-directional lighting fixture according to a preferred embodiment of the present invention is illustrated. The multi-directional lighting fixture 1 can achieve multi-directional illumination, has a large illumination range, and is suitable for various occasions. Figure 1 This is a schematic diagram of the overall structure of the multi-directional lighting fixture 1 according to an embodiment of the present invention. In this embodiment, the multi-directional lighting fixture 1 includes a base device 10, a lamp body device 20, a folding device 30, and a control device 40. The lamp body device 20 is installed at the front end of the base device 10, the control device 40 is disposed on the base device 10 and used to control the lamp body device 20, and the folding device 30 is disposed on the lamp body device 20 to realize the folding of the lamp body device 20 itself and the folding relative to the base device 10.

[0049] In the embodiments of this application, the lamp body device 20 includes a first lamp body 21, a second lamp body 22, and a third lamp body 23. The first lamp body 21 is mounted on the front end of the base device 10, the second lamp body 22 is mounted on the front end of the first lamp body 21, and the third lamp body 23 is disposed on the front end of the second lamp body 22. That is, the first lamp body 21 is connected between the base device 10 and the second lamp body 22, and the third lamp body 23 is disposed on the front end of the second lamp body 22. The first lamp body 21, the second lamp body 22, and the third lamp body 23 can be combined to create multiple light-emitting modes, and different light-emitting modes can be activated depending on the folded or unfolded state, thus meeting the diverse application needs of different users.

[0050] It is worth mentioning that in this embodiment, the first lamp body 21 and the second lamp body 22 are configured as a strip shape. The first lamp body 21 and the second lamp body 22 can also be configured as other shapes, and are not limited by this embodiment.

[0051] More notably, in this embodiment, the first lamp body 21 and the second lamp body 22 can be folded together via the folding device 30, and the first lamp body 21 and the base device 10 can also be folded together via the folding device 30. Those skilled in the art will understand that the lamp body device 20 can also achieve more folds by setting more lamp bodies, meeting more needs while maintaining stability.

[0052] Specifically, in the embodiments of this application, the first lamp body 21 and the second lamp body 22 have an unfolded state and a closed state. Figure 4 This is a schematic diagram of the multi-directional lighting fixture 1 according to the above embodiment of the present invention, in which the first lamp body 21 and the second lamp body 22 are both in a closed state. When the first lamp body 21 and the second lamp body 22 are both in a closed state, the base device 10, the first lamp body 21 and the second lamp body 22 are folded twice by the folding device 30 to reduce the volume. Figure 5 This is a schematic diagram of the first lamp body 21 in an unfolded state and the second lamp body 22 in a closed state of the multi-directional lighting fixture 1 according to the above embodiment of the present utility model. The base device 10 and the first lamp body 21 are unfolded at a predetermined angle, and the first lamp body 21 and the second lamp body 22 are in close contact with each other. Figure 6This is a schematic diagram of the first lamp body 21 and the second lamp body 22 of the multi-directional lighting fixture 1 according to the above embodiment of the present utility model, both in the unfolded state. When the first lamp body 21 and the second lamp body 22 are both in the unfolded state, the base device 10, the first lamp body 21 and the second lamp body 22 are each unfolded at a predetermined angle and can be fixed at any angle, which can meet the various application needs of different users.

[0053] More specifically, such as Figure 7 The diagram shows a schematic representation of the multi-directional lighting fixture 1 in its maximum unfolded state. As shown, the first lamp body 21 is adapted to fold from the base device 10 at a maximum angle of 180°, and the second lamp body 22 is adapted to fold from the first lamp body 21 at a maximum angle of 225°. When the multi-directional lighting fixture 1 is in its unfolded state, it can achieve multi-directional lighting with a large illumination range, making it suitable for various occasions.

[0054] Continue as Figure 4 As shown, when both the first lamp body 21 and the second lamp body 22 are in the closed state, the control device 40 can turn on the second lamp body 22 and the third lamp body 23, so that the second lamp body illuminates forward and the third lamp body 23 illuminates upward. Figure 5 As shown, when the first lamp body 21 is in the unfolded state and the second lamp body 22 is in the closed state, as the unfolding angle of the first lamp body 21 changes, the first lamp body 21 illuminates towards the front side, and the second lamp body 22 illuminates towards the rear side opposite to the first lamp body 21. Figure 6 and Figure 7 As shown, when the first lamp body 21 and the second lamp body 22 are both in the unfolded state and are unfolded towards the maximum unfolded state, the first lamp body 21, the second lamp body 22 and the third lamp body 23 are suitable for illuminating in three different directions.

[0055] The first lamp body 21 includes a first light-emitting element 211, a first lamp plate 212, and a first lamp body mounting portion 213. The second lamp body 22 includes a second light-emitting element 221, a second lamp plate 222, and a second lamp body mounting portion 223. The first lamp plate 212 is mounted on one side of the first lamp body mounting portion 213. The first light-emitting element 211 is mounted within the first lamp body mounting portion 213 and emits light towards the first lamp plate 212. The first lamp plate 212 is made transparent so that light emitted by the first light-emitting element 211 can pass through it. The second lamp plate 222 is mounted on one side of the second lamp body mounting portion 223. The second light-emitting element 221 is mounted within the second lamp body mounting portion 223 and emits light towards the second lamp plate 222. The second lamp plate 222 is made transparent so that light emitted by the second light-emitting element 221 can pass through it.

[0056] The first lamp body mounting part 213 and the base device 10 are foldably connected by the folding device 30, and the first lamp body mounting part 213 and the second lamp body mounting part 223 are also foldably connected by the folding device 30.

[0057] The third lamp body 23 includes a third light-emitting element 231, a third lamp plate 232, and a third lamp body mounting portion 233. The third lamp body mounting portion 233 is connected to the upper end of the second lamp body mounting portion 223. The third lamp plate 232 is mounted on one side of the third lamp body mounting portion 233. The third light-emitting element 231 is mounted inside the third lamp body mounting portion 233 and faces the third lamp plate 232. The third lamp plate 232 is set to be transparent so that the light emitted by the third light-emitting element 231 can pass through the third lamp plate 232.

[0058] In this embodiment, the third lamp body 23 is installed above the second lamp body 22. That is, the third lamp body 23 and the second lamp body 22 are adapted to illuminate in different directions; specifically, the third lamp body 23 is adapted to illuminate in a longitudinal direction, while the second lamp body 22 and the first lamp body 21 are adapted to illuminate in a lateral direction. Based on this, the multi-directional lighting fixture 1 can achieve illumination in both longitudinal and lateral ranges, resulting in a large illumination area. Furthermore, since the third lamp body 23 is located above the second lamp body 22, i.e., at the very front of the multi-directional lighting fixture, it will not be obstructed by objects in front of it when illuminating, thus preventing blurring and making the illumination clearer.

[0059] It is worth mentioning that, in other possible embodiments, the first lamp plate 212 can be installed on both sides of the first lamp body mounting portion 213, and the first light-emitting element 211 can be installed on both sides of the first lamp body mounting portion 213 to provide multi-directional lighting; similarly, the second lamp plate 222 can be installed on both sides of the second lamp body mounting portion 223, and the second light-emitting element 221 can be installed on both sides of the second lamp body mounting portion 223 to provide multi-directional lighting. This is not a limitation of this utility model.

[0060] The control device 40 includes a display screen 41, which is disposed on the base device 10. The display screen 41 can display information such as power level, lighting mode, and folding angle in real time, so as to realize a more intelligent and convenient interactive experience. Specifically, the power information is presented as an intuitive percentage figure paired with a dynamic power icon, allowing users to monitor the remaining power of the multi-directional lighting fixture 1 at any time and avoid disruptions due to sudden power outages. For example, when camping outdoors, users can know in advance whether they need to recharge. The lighting mode clearly indicates the current mode, such as strong light, weak light, and flashing warning, allowing users to quickly switch according to their needs. For instance, switching to weak light mode when walking at night can avoid glare from strong light, while switching to flashing warning mode can serve as a distress signal in case of an emergency. The folding angle information provides precise digital feedback in real time on the angles between the first lamp body 21 and the base device 10, and between the second lamp body 22 and the first lamp body 21, helping users accurately control the unfolded state of the multi-directional lighting fixture 1 and ensure that the lighting angle meets expectations. For example, when performing precision maintenance, users can adjust to the most suitable lighting angle based on the displayed angle data.

[0061] The control device 40 further includes a power supply component 42, a control circuit 43, and a control assembly 44. The power supply component 42 and the control circuit 43 are installed inside the base device 10. The control assembly 44 is installed on the surface of the base device 10 and electrically connected to the power supply component 42 and the first lamp body 21, the second lamp body 22, and the third lamp body 23. The user controls the illumination and angle adjustment of the lamp body device 20 by opening and closing the control assembly 44. The control circuit 43 is electrically connected to the first lamp body 21, the second lamp body 22, the third lamp body 23, the power supply component 42, and the control assembly 44. By operating the control assembly 44, the user sends electrical signals to the circuit module 33, thereby controlling the illumination and angle adjustment of the lamp body device 20 through the control assembly 44.

[0062] The control device 40 is also provided with an electrical interface 421, which is located on the base device 10. The power supply is connected through the electrical interface 421 to charge the power supply component 42 so as to provide power to the lamp body device 20.

[0063] Preferably, the control component 44 includes a switch control element 441 and a lamp body control element 442. The switch control element 441 is used to control whether the lamp body device 20 emits light, and the lamp body control element 442 is used to control the angle adjustment of the lamp body device 20. The control component 44 may also be equipped with buttons for other functions, and there are no limitations on this.

[0064] The base device 10 includes a base 11 and a support portion 12. The support portion 12 is connected above the base 11, and the support portion 12 and the first lamp body mounting portion 213 are foldably connected via the folding device 30. The support portion 12 has an anti-slip function, making it more secure for the user to hold. The support portion 12 can be made of anti-slip material, or it can achieve anti-slip by setting rounded anti-slip protrusions and grooves on its surface, which is not a limitation of this utility model.

[0065] The support portion 12 has an inner cavity 121 and an outer cavity 122, wherein the inner cavity 121 is located inside the support portion 12, and the outer cavity 122 extends inwardly from one side of the support portion 12. The first lamp body 21 and the second lamp body 22 are adapted to be housed in the outer cavity 122 after being folded by the folding device 30. The power supply component 42 and the control circuit 43 are installed in the inner cavity 121.

[0066] The base device 10 further includes a first mounting component 13 and a second mounting component 14, both of which are disposed at the bottom of the base 11. In this embodiment, the first mounting component 13 is implemented as a magnetic element, and the second mounting component 14 is implemented as a hook and is provided with a silicone pad 141. The multi-directional lighting fixture 1 can be fixed by magnetic attraction or suspension using the first mounting component 13 and the second mounting component 14.

[0067] The folding device 30 includes a first folding component 31 and a second folding component 32. The first folding component 31 is disposed between the support portion 12 and the first lamp body 21 of the base device 10, and the second folding component 32 is disposed between the first lamp body 21 and the second lamp body 22. That is, the support portion 12 and the first lamp body 21 are foldably connected through the first folding component 31, and the first lamp body 21 and the second lamp body 22 are foldably connected through the second folding component 32.

[0068] The first folding assembly 31 includes a first folding part 311 and a first fixing part 312. The first fixing part 312 is connected above the support part 12 of the base device 10. The first folding part 311 is disposed at the lower end of the first lamp body 21. The first folding part 311 is adapted to fold around the first fixing part 312, thereby realizing the folding of the first lamp body 21 around the support part 12 of the base device 10.

[0069] Specifically, the first folding portion 311 includes a first connector 3111, a first folding member 3112, and a first rotating cavity 3113. The first connector 3111 is connected to the lower end of the first lamp body 21, the first rotating cavity 3113 is disposed on the first folding member 3112, and the first folding member 3112 extends from the first connector 3111 to be foldably connected to the first fixing portion 312. The first fixing part 312 includes a first fixing member 3121, a first extension member 3122, a first rotating member 3123 and a first limiting member 3124. The first fixing member 3121 is connected above the support part 12. The first extension member 3122 extends from the surface of the first fixing member 3121 at a predetermined angle, preferably 45°. The first rotating member 3123 is disposed on the first extension member 3122 and is adapted to rotate within the first rotating cavity 3113 of the first folding part 311, thereby enabling the first folding part 311 to be adapted to fold around the first fixing part 312. The first limiting member 3124 is disposed on the first extension member 3122. When the first folding part 311 is folded around the first fixing part 312 to the maximum extent, the first connecting member 3111 of the first folding part 311 is adapted to be engaged by the first limiting member 3124, thereby making the first lamp body 21 in the maximum unfolded state, that is, the first folding part 311 is folded around the first fixing part 312 by 180°, that is, the first lamp body 21 is adapted to be folded around the base device 10 by 180°.

[0070] In this embodiment, the display screen 41 is preferably disposed on the surface of the first extension 3122 of the first fixing part 312. The first extension 3122 extends from the surface of the first fixing part 3121 at a 45° angle, so that the user can more intuitively observe the content on the display screen 41.

[0071] The second folding assembly 32 includes a second folding part 321 and a second fixing part 322. The second fixing part 322 is connected to the upper part of the first lamp body 21, and the second folding part 321 is disposed at the lower end of the second lamp body 22. The second folding part 321 is adapted to fold around the second fixing part 322, thereby realizing the folding of the second lamp body 22 around the first lamp body 21.

[0072] Specifically, the second folding portion 321 includes a second connector 3211, a second folding member 3212, and a second rotating cavity 3213. The second connector 3211 is connected to the lower end of the second lamp body 22, the second rotating cavity 3213 is disposed on the second folding member 3212, and the second folding member 3212 extends from the second connector 3211 to be foldably connected to the second fixing portion 322. The second fixing part 322 includes a second fixing member 3221, a second extension member 3222, a second rotating member 3223, and a second limiting member 3224. The second fixing member 3221 is connected to the upper part of the first lamp body 21. The second extension member 3222 extends from the surface of the second fixing member 3221. The second rotating member 3223 is disposed on the second extension member 3222 and is adapted to rotate within the second rotating cavity 3213 of the second folding part 321, thereby enabling the second folding part 321 to fold around the second fixing part 322. The second limiting member 3224 is disposed on the second fixing member 3221. When the second folding part 321 is folded around the second fixing part 322 to its maximum extent, the second connecting member 3211 of the second folding part 321 is adapted to be engaged by the second limiting member 3224, thereby causing the second lamp body 22 to be in its maximum unfolded state, that is, the second folding part 321 is folded 225° around the second fixing part 322. That is, the second lamp body 22 is adapted to be folded 225° around the first lamp body 21.

[0073] like Figure 8As shown, the multi-directional lighting fixture 1 further includes a rotating device 50, which comprises a first rotating device 51, a second rotating device 52, and a third rotating device 53. The first rotating device 51 is disposed between the base body 10 and the first lamp body 21, the second rotating device 52 is disposed between the first lamp body 21 and the second lamp body 22, and the third rotating device 53 is disposed between the second lamp body 22 and the third lamp body 23. That is, the first lamp body 21 rotates relative to the base body 10 via the first rotating device 51, the second lamp body 22 rotates relative to the first lamp body 21 via the second rotating device 52, and the third lamp body 23 rotates relative to the second lamp body 22 via the third rotating device 53, thereby achieving multi-directional lighting of the multi-directional lighting fixture 1, providing a wide lighting range suitable for various occasions. In other possible embodiments, the number of rotating devices 50 can be changed. When different numbers of lamp bodies are provided, the number of rotating devices 50 also changes, which is not a limitation of this utility model.

[0074] Preferably, the first rotating device 51 is disposed on the first connecting member 3111 of the first folding portion 311, the second rotating device 52 is disposed on the second connecting member 3211 of the second folding portion 321, and the third rotating device 53 is disposed on the third lamp body mounting portion 233 of the third lamp body 23. The positions of the first rotating device 51, the second rotating device 52, and the third rotating device 53 are not limitations of this utility model.

[0075] In summary, the multi-directional lighting fixture 1 can achieve multi-directional lighting, with a large lighting range, and is suitable for various occasions. The multi-directional lighting fixture 1 is provided with multiple lamp bodies, which can rotate and fold together, and can be fixed at any angle, with a wider range of angle control.

[0076] in addition, Figure 9 As shown, one or more magnetic elements 234, such as magnets, are provided at the end of the third lamp body mounting portion 233. By folding or bending the first lamp body 21 and the second lamp body 22, the position of the magnetic elements 234 can be adjusted, thereby enabling the magnetic elements 234 to retrieve small objects, such as screws, from spaces that are inaccessible to the hand.

[0077] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the accompanying drawings are merely examples and do not limit the present invention. The purpose of the present invention has been fully and effectively achieved. The functions and structural principles of the present invention have been shown and explained in the embodiments. Without departing from the stated principles, the implementation of the present invention may have any variations or modifications.

Claims

1. A multi-directional lighting fixture, characterized in that, include: A base device; A folding device; A control device; and A lamp body assembly includes a first lamp body, a second lamp body, and a third lamp body. The first lamp body is connected between the base assembly and the second lamp body. The third lamp body is disposed at the front end of the second lamp body. A folding device is disposed at both ends of the first lamp body to control the folding of the first lamp body and the second lamp body. A control device is electrically connected to the lamp body assembly.

2. The multi-directional lighting fixture according to claim 1, wherein the control device includes a display screen, the display screen being disposed on the base device.

3. The multi-directional lighting fixture according to claim 1, wherein the folding device includes a first folding component and a second folding component, the first folding component being disposed between the base device and the first lamp body, and the second folding component being disposed between the first lamp body and the second lamp body.

4. The multi-directional lighting fixture according to claim 3, wherein the first lamp body is adapted to fold from 0° to 180° around the base device, and the second lamp body is adapted to fold from 0° to 225° around the first lamp body.

5. The multi-directional lighting fixture according to claim 4, wherein the first lamp body includes a first light-emitting element, a first lamp panel and a first lamp body mounting portion, the first lamp panel is mounted on one side of the first lamp body mounting portion, and the first light-emitting element is mounted inside the first lamp body mounting portion and emits light toward the first lamp panel.

6. The multi-directional lighting fixture according to claim 5, wherein the second lamp body includes a second light-emitting element, a second lamp panel and a second lamp body mounting portion, the second lamp panel is mounted on one side of the second lamp body mounting portion, and the second light-emitting element is mounted inside the second lamp body mounting portion and emits light toward the second lamp panel.

7. The multi-directional lighting fixture according to claim 6, wherein the third lamp body includes a third light-emitting element, a third lamp plate and a third lamp body mounting portion, the third lamp body mounting portion is connected to the upper end of the second lamp body mounting portion, the third lamp plate is mounted on one side of the third lamp body mounting portion, and the third light-emitting element is mounted inside the third lamp body mounting portion and faces the third lamp plate.

8. The multi-directional lighting fixture according to claim 7, wherein the control device further comprises a power supply component, a control circuit, and a control assembly, wherein the power supply component and the control circuit are installed in the base device, and the control assembly is installed on the surface of the base device and electrically connected to the power supply component, the control circuit, and the lamp body device.

9. The multi-directional lighting fixture according to claim 8, wherein the base device includes a base and a support portion, the support portion being connected above the base, the support portion having an inner cavity and an outer cavity, wherein the inner cavity is located inside the support portion to install the power supply component and the control circuit, and the outer cavity extends inwardly from one side of the support portion to receive the first lamp body and the second lamp body.

10. The multi-directional lighting fixture according to claim 9, wherein the base device further comprises a first mounting component and a second mounting component, the first mounting component and the second mounting component being disposed at the bottom of the base.

11. The multi-directional lighting fixture according to any one of claims 2 to 10, wherein the first folding assembly includes a first folding portion and a first fixing portion, the first fixing portion being connected above the support portion of the base device, the first folding portion being disposed at the lower end of the first lamp body, and the first folding portion being adapted to fold around the first fixing portion to control the first lamp body to fold around the support portion of the base device.

12. The multi-directional lighting fixture according to claim 11, wherein the first folding portion includes a first connector, a first folding member, and a first rotating cavity, the first connector is connected to the lower end of the first lamp body, the first rotating cavity is disposed in the first folding member, the first folding member extends from the first connector to be foldably connected to the first fixing portion, the first fixing portion includes a first fixing member, a first extension member, a first rotating member, and a first limiting member, the first fixing member is connected above the support portion, the first extension member extends from the surface of the first fixing member at a predetermined angle, the first rotating member is disposed in the first extension member and is adapted to rotate within the first rotating cavity of the first folding portion, and the first limiting member is disposed in the first extension member to limit the folding angle of the first folding portion.

13. The multi-directional lighting fixture according to claim 12, wherein the control device includes a display screen disposed on the surface of the first extension of the first fixing portion.

14. The multi-directional lighting fixture according to claim 13, wherein the second folding assembly includes a second folding portion and a second fixing portion, the second fixing portion is connected to the upper part of the first lamp body, the second folding portion is disposed at the lower end of the second lamp body, and the second folding portion is adapted to fold around the second fixing portion to control the second lamp body to fold around the first lamp body.

15. The multi-directional lighting fixture according to claim 14, wherein the second folding portion includes a second connector, a second folding member, and a second rotating cavity, the second connector being connected to the lower end of the second lamp body, the second rotating cavity being disposed in the second folding member, the second folding member extending from the second connector to be foldably connected to the second fixing portion, the second fixing portion including a second fixing member, a second extension member, a second rotating member, and a second limiting member, the second fixing member being connected to the upper part of the first lamp body, the second extension member extending from the surface of the second fixing member, the second rotating member being disposed in the second extension member and adapted to rotate within the second rotating cavity, and the second limiting member being disposed in the second fixing member to limit the folding angle of the second folding portion.

16. The multi-directional lighting fixture according to claim 15, wherein the multi-directional lighting fixture further comprises a rotating device, the rotating device comprising a first rotating device, a second rotating device and a third rotating device, the first rotating device being disposed between the base body and the first lamp body, the second rotating device being disposed between the first lamp body and the second lamp body, and the third rotating device being disposed between the second lamp body and the third lamp body.

17. The multi-directional lighting fixture according to claim 16, wherein the rotation angles of the first rotating device, the second rotating device and the third rotating device are all set to 0° to 360°.

18. The multi-directional lighting fixture according to claim 7, wherein one or more magnetic elements are provided at the end of the third lamp body mounting portion.