Lighting device
The design of the rotating connecting shell components and built-in battery components solves the problem of the display case lights not being able to adjust the illumination position, enabling wireless installation and flexible lighting adjustment, improving the display effect and simplifying the installation and maintenance process.
Patent Information
- Application Number
- CN202520504879.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-03-21
AI Technical Summary
Existing display case lights cannot freely adjust the position of the LED beads, causing the light to not focus on the products, reducing their attractiveness. In addition, they need to be connected to an external power source through wires, which affects the aesthetics.
A lighting device that does not require an external power source has been designed. The angle of the light can be adjusted by rotating the housing components. Combined with battery components and magnetic components, it allows for flexible installation and changes in the direction of the light.
It enables flexible lighting adjustment and wireless installation, improving the display effect of products, simplifying the installation process, and reducing maintenance difficulty and cost.
Smart Images

Figure CN223840284U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of lighting fixtures, specifically to a lighting device. Background Technology
[0002] A display case is a protective display stand provided for showcasing goods. Display case lights are used to illuminate the goods in the display case, making the goods easier to display and attracting consumers.
[0003] However, existing display case lights are limited in design and the position of the LEDs cannot be easily adjusted. If a user changes the merchandise in the display case, the light cannot be focused on the products, reducing their appeal. Furthermore, current display case lights require wiring to connect to an external power source, necessitating the concealment of these wires for aesthetic purposes. Utility Model Content
[0004] The specific technical solution of this application is as follows:
[0005] This application provides a lighting device that does not require an external power supply and can adjust the angle of light illumination.
[0006] This application provides a lighting device, wherein the device includes a housing assembly, a battery assembly, and a lighting assembly. The housing assembly includes a first housing assembly and a second housing assembly, the second housing assembly being rotatably connected to the first housing assembly. The battery assembly is disposed within the first housing assembly or the second housing assembly, and the lighting assembly is disposed on the second housing assembly.
[0007] The battery assembly is electrically connected to the lighting assembly;
[0008] The battery assembly includes a battery holder and a battery, the battery holder having a first receiving component for accommodating the battery; or
[0009] The battery assembly is a battery.
[0010] Further, the first receiving component includes a fixing part and a moving part, the fixing part being disposed in the middle of the battery holder, and the moving part being detachably connected to the fixing part; or
[0011] The first receiving component includes a fixing portion with an opening at at least one end, through which the battery is placed within the fixing portion.
[0012] Furthermore, the battery holder also has a second receiving component for accommodating the magnetic component, with the second receiving component respectively provided at both ends of the battery holder, and the first receiving component located between the two second receiving components.
[0013] Furthermore, each of the second receiving components includes at least one receiving groove in which the magnetic suction component is disposed, the receiving groove facing the bottom and / or sidewall of the first housing component.
[0014] Furthermore, each of the second receiving components includes three receiving slots, namely a first receiving slot, a second receiving slot, and a third receiving slot.
[0015] The first receiving slot is disposed at the bottom of the battery bracket;
[0016] The second and third receiving slots are respectively disposed on the side walls of the battery bracket on both sides.
[0017] Furthermore, the device includes a magnetic support bracket disposed within the first housing assembly, and a magnetic component is disposed on the magnetic support bracket;
[0018] The magnetic bracket has at least one magnetic groove, and the magnetic component is detachably disposed in the magnetic groove, with the magnetic groove facing the bottom and / or sidewall of the first housing component.
[0019] Furthermore, the magnetic holder has three magnetic slots, namely a first magnetic slot, a second magnetic slot, and a third magnetic slot.
[0020] The first magnetic slot is disposed at the bottom of the magnetic bracket;
[0021] The second magnetic groove and the third magnetic groove are respectively disposed on both sides of the magnetic bracket.
[0022] Furthermore, along the extending direction of the first housing assembly, a first slot is provided on the inner wall of the first housing assembly, and a baffle plate is engaged with the first slot.
[0023] Furthermore, the shield is located on the side of the battery bracket closer to the lighting assembly and is connected to the battery bracket; or
[0024] The shield is located on the side of the battery holder away from the lighting component.
[0025] Furthermore, the lighting assembly includes a circuit board and at least one LED, the LED being located on the circuit board.
[0026] Furthermore, along the extending direction of the second housing assembly, a second slot is provided on the inner wall of the second housing assembly, and the circuit board is snapped into the second slot; or
[0027] The circuit board is bolted to the inner wall or bottom of the second housing assembly.
[0028] Furthermore, the battery bracket is connected to the inner wall of the first housing assembly, the inner wall of the second housing assembly, the side surface of the shield away from the second housing assembly, or the side surface of the circuit board away from the lighting assembly.
[0029] Furthermore, the second housing assembly includes a second housing body and a lampshade assembly, the lampshade assembly being located above the lighting assembly;
[0030] The lampshade assembly includes a lampshade and a reflector, the lampshade being connected to the reflector, and the reflector being connected to the inner wall of the circuit board or the second housing body.
[0031] Furthermore, the second housing assembly includes a second housing body and a lampshade assembly, the lampshade assembly being located above the lighting assembly;
[0032] The lampshade assembly includes a lens assembly and / or a reflector, and the lens assembly and / or reflector is connected to the second housing body;
[0033] The lens assembly includes at least two spaced-apart lenses, the lenses being positioned above the LED beads; or
[0034] The reflector includes at least two spaced-apart reflectors that surround the LED beads.
[0035] Furthermore, the lampshade assembly also includes one or more of the following: a face cover, an anti-glare cover, a flat lens, a light-shielding film, and a bracket;
[0036] The faceplate is disposed on the side of the lens assembly and / or reflector away from the lighting assembly;
[0037] The anti-glare shield is disposed on the side of the lens assembly and / or reflector away from the lighting assembly;
[0038] The plano lens is disposed on the side of the lens assembly and / or reflector away from the lighting assembly;
[0039] The light-shielding film is disposed on the side of the lens assembly and / or reflector away from the lighting assembly;
[0040] The bracket is disposed on the side of the lens assembly and / or reflector near the lighting assembly, and the bracket is connected to the circuit board.
[0041] Furthermore, a circuit board support is provided on the side surface of the circuit board near the shielding plate;
[0042] Along the extending direction of the second outer casing, a third slot is provided on the inner wall of the second outer casing, and the circuit board bracket is snapped into the third slot; or
[0043] The circuit board bracket or circuit board is connected to the lens assembly, reflector or bracket.
[0044] Furthermore, the material of the second outer shell body is either a conductive material or a non-conductive material;
[0045] Within the second housing assembly, the circuit board is connected to a conductive component, which is connected to the inner wall of the second housing assembly and is used to control the activation of the lighting component by touching the second housing assembly.
[0046] Furthermore, the battery is fixed to the inner wall of the first housing assembly or to a shielding plate; or
[0047] The battery is fixed to the inner wall of the second housing assembly or to the circuit board.
[0048] The lighting device described in this application can change the light direction of the lighting component by rotating the second housing assembly relative to the first housing assembly, and the lighting component is powered by the battery assembly, thus eliminating the need for an external power source. Attached Figure Description
[0049] The accompanying drawings are provided to better understand this application and do not constitute an undue limitation thereof. Wherein:
[0050] Figure 1 A schematic diagram of the lighting device provided in this application.
[0051] Figure 2 A schematic diagram of the lighting device provided in this application.
[0052] Figure 3 An exploded view of the lighting device provided in this application.
[0053] Explanation of reference numerals in the attached figures
[0054] 1-First housing assembly, 2-Second housing assembly, 3-Circuit board, 4-Circuit board support, 5-Shielding plate, 6-Battery support, 7-First receiving assembly, 8-Second receiving assembly, 9-Magnetic assembly, 10-First receiving slot, 11-Second receiving slot, 12-Sensing assembly, 13-Reflector. Detailed Implementation
[0055] The following description provides exemplary embodiments of this application, including various details to aid understanding, and should be considered merely exemplary. Therefore, those skilled in the art will recognize that various changes and modifications can be made to the embodiments described herein without departing from the scope and spirit of this application. Similarly, for clarity and brevity, descriptions of well-known functions and structures are omitted in the following description.
[0056] like Figures 1-3 As shown, this application provides a lighting device, which includes a housing assembly, a battery assembly, and a lighting assembly. The housing assembly includes a first housing assembly 1 and a second housing assembly 2, the second housing assembly 2 being rotatably connected to the first housing assembly 1. The battery assembly is disposed within the first housing assembly 1 or the second housing assembly 2, and the lighting assembly is disposed on the second housing assembly 2.
[0057] The battery assembly is electrically connected to the lighting assembly;
[0058] In some embodiments, the sidewall of the first housing assembly 1 is connected to the sidewall of the second housing assembly 2 by a rotation axis, thereby allowing the second housing assembly 2 to rotate about the rotation axis.
[0059] In some embodiments, the bottom of the first housing assembly 1 and the top of the second housing assembly 2 are connected by a rotation axis, thereby allowing the second housing assembly 2 to rotate about the rotation axis.
[0060] In use, the lighting device described in this application has the first housing assembly 1 fixed to the wall / cabinet and the lighting assembly turned on. When it is necessary to adjust the position of the light from the lighting assembly, the second housing assembly 2 rotates relative to the first housing assembly 1 until it is rotated to the desired position, thereby changing the direction of the light from the lighting assembly. The lighting assembly is powered by the battery assembly, thus eliminating the need for an external power source.
[0061] In some embodiments, the battery assembly includes a battery holder 6 and a battery, the battery holder 6 having a first receiving component 7 for receiving the battery. The battery is secured by the battery holder 6 and is fixed within the first housing assembly 1, thereby fixing the position of the battery.
[0062] The battery holder 6 has the following functions:
[0063] Battery protection: It provides a certain degree of buffer protection for the battery, reduces the direct impact of external shocks on the battery, lowers the risk of battery damage due to external forces, and extends battery life.
[0064] Easy to install: The battery is installed in the first receiving component 7 of the battery bracket 6, then the battery bracket 6 is fixed to the lamp cover component, and then installed into the first housing component 1. This modular installation method makes the installation process simpler and more orderly, improves assembly efficiency, and facilitates production and manufacturing.
[0065] Easy maintenance: When the battery needs to be replaced or repaired, simply remove the battery from the battery holder 6 to easily operate the battery without having to disassemble the entire product, reducing maintenance difficulty and cost.
[0066] Preventing short circuits: By fixing the battery position with the battery bracket 6, a safe distance can be maintained between the battery and electronic components, avoiding safety hazards such as short circuits caused by battery displacement, and improving the safety of product use.
[0067] Facilitates heat dissipation: The rationally designed battery bracket 6 can leave a heat dissipation channel or space between the battery and the first housing component 1, which is conducive to the dissipation of heat generated by the battery during operation, prevents the battery from overheating, and further improves the safety and reliability of the product.
[0068] In some embodiments, the battery assembly is a battery. The battery can be directly attached to the inside of the first housing assembly 1 or the second housing assembly 2 (e.g., the battery is attached to the inner wall of the first housing assembly 1 or the shield 5; or the battery is attached to the inner wall of the second housing assembly 2 or the circuit board 3). For example, the attachment method can be by adhesive. This design 1) simplifies the structure of the lighting device, reduces intermediate components such as the battery bracket 6, simplifies the overall structure, reduces design and manufacturing complexity, makes the product assembly process simpler, and helps improve production efficiency and reduce production costs. 2) It also makes the installation of the lighting device convenient. Adhesive attachment is relatively simple; workers can directly attach the battery to the designated position without complex installation steps, shortening the production cycle and improving production efficiency. 3) It can further reduce costs by omitting components such as the battery bracket 6, reducing the procurement and processing costs of parts. At the same time, the simplified structure and convenient installation method also reduce labor costs and losses during production, helping to reduce the overall cost of the product and improve its market competitiveness.
[0069] In this application, the first receiving component 7 includes a fixed portion and a movable portion. The fixed portion is disposed in the middle of the battery holder 6, and the movable portion is detachably connected to the fixed portion. The battery can be placed inside the fixed portion, and the movable portion is used to confine the battery within the fixed portion.
[0070] Furthermore, the fixing part can be a groove-shaped structure, and the moving part can be fastened to the top of the groove-shaped structure.
[0071] Furthermore, the fixing part can be a groove-shaped structure with a sliding groove at the top of the groove-shaped structure. The moving part cooperates with the sliding groove and slides on the sliding groove to facilitate the removal and replacement of the battery.
[0072] Furthermore, the fixing part has a hollow structure to facilitate the connection of external wires and heat dissipation.
[0073] In this application, the first receiving component 7 includes a fixing part with an opening at at least one end, through which the battery is placed. This design allows for compatibility with various battery specifications. By adjusting the size of the fixing part and the opening, batteries of different shapes and sizes can be accommodated, increasing product versatility and compatibility while reducing design and production costs.
[0074] In some embodiments, the fixing part has openings at both ends along its length direction, and the battery is placed inside the fixing part through the openings, the length direction of the battery being consistent with the length direction of the fixing part.
[0075] In some embodiments, the fixing part has an opening at one end along its length direction, through which the battery is placed inside the fixing part, and the length direction of the battery is consistent with the length direction of the fixing part.
[0076] In this application, the battery holder 6 also has a second receiving component 8 for accommodating the magnetic component 9. The second receiving components 8 are respectively disposed at both ends of the battery holder 6, and the first receiving component 7 is located between the two second receiving components 8. The battery holder 6 can hold both the battery and the magnetic component 9, integrating the battery and the magnetic component 9 into a single component. This not only saves space but also simplifies the assembly process. Integrating the battery and the magnetic component 9 onto a single battery holder 6 reduces the cumbersome steps of installing multiple independent components separately. During manufacturing, workers only need to install this one integrated component, improving assembly efficiency. Furthermore, it further reduces production costs. Sharing a single holder reduces the number of parts, lowering raw material procurement, processing, and inventory management costs. The simplified assembly process also saves labor costs.
[0077] Furthermore, each of the second receiving components 8 includes at least one receiving slot, within which the magnetic suction component 9 is disposed, the receiving slot facing the bottom and / or sidewall of the first housing component 1. This design allows the bottom and sidewall of the first housing component 1 to be magnetically attached to a magnetic wall or cabinet surface. This design enables flexible installation of the lighting device; the receiving slot facing the bottom and / or sidewall allows the product to be attached to the wall or cabinet surface with different faces depending on the available space and usage requirements. For example, attaching the bottom allows for vertical hanging, while attaching the sidewall allows for horizontal placement, increasing installation flexibility and versatility.
[0078] The internal shape and structure of the receiving groove match the magnetic suction component 9, thereby allowing the magnetic suction component 9 to be detachably fixed within the receiving groove for easy removal and replacement. The internal shape of the receiving groove can be designed according to actual needs; for example, the magnetic suction groove may have a cylindrical structure, and the magnetic suction component 9 may have a corresponding cylindrical shape.
[0079] Specifically, each of the second receiving components 8 includes three receiving slots, namely a first receiving slot 10, a second receiving slot 11, and a third receiving slot.
[0080] The first receiving slot 10 is disposed at the bottom of the battery bracket 6;
[0081] The second receiving groove 11 and the third receiving groove are respectively disposed on the side walls on both sides of the battery bracket 6.
[0082] In this application, the device includes a magnetic support bracket disposed within the first housing assembly 1, and a magnetic component 9 is disposed on the magnetic support bracket. The magnetic support bracket has at least one magnetic groove, and the magnetic component 9 is detachably disposed within the magnetic groove, with the magnetic groove facing the bottom and / or sidewall of the first housing assembly 1. This design not only enhances installation flexibility, allowing for flexible adjustment of the number and position of the magnetic components 9 on the magnetic support bracket according to actual needs—for example, in different scenarios and for products of different lengths—the magnetic components 9 can be installed at different positions to meet the adsorption requirements of different magnetic objects, or the magnitude and direction of the adsorption force can be adjusted as needed. Furthermore, it can also fix the magnetic components 9. Magnets have positive and negative pole characteristics, with like poles repelling each other, which makes fixing and installation difficult. The magnetic support bracket provides a stable fixing effect, effectively preventing displacement caused by mutual interference between components.
[0083] Specifically, the number of magnetic brackets can be 0, 1, 2, 3, 4, 5, 6, 7, 8, etc., and the number of magnetic brackets can be set according to actual needs.
[0084] Furthermore, the magnetic holder has three magnetic slots, namely a first magnetic slot, a second magnetic slot, and a third magnetic slot.
[0085] The first magnetic slot is disposed at the bottom of the magnetic bracket;
[0086] The second magnetic groove and the third magnetic groove are respectively disposed on both sides of the magnetic bracket.
[0087] In some embodiments, the device includes both a magnetic holder and a battery assembly, wherein the battery assembly is a battery.
[0088] In some embodiments, the device includes both a magnetic support and a battery assembly. The battery assembly includes a battery holder 6 and a battery. The battery holder 6 includes a first receiving component 7, which includes a fixed portion and a movable portion. The fixed portion is disposed in the middle of the battery holder 6, and the movable portion is detachably connected to the fixed portion.
[0089] In some embodiments, the device includes both a magnetic holder and a battery assembly. The battery assembly includes a battery holder 6 and a battery. The battery holder 6 includes a first receiving component 7, which includes a fixing portion with an opening at least at one end, through which the battery is placed.
[0090] In some embodiments, the device includes both a magnetic support and a battery assembly. The battery assembly includes a battery holder 6 and a battery. The battery holder 6 includes a first receiving component 7 and a second receiving component 8. The first receiving component 7 includes a fixed part and a movable part. The fixed part is disposed in the middle of the battery holder 6, and the movable part is detachably connected to the fixed part.
[0091] In some embodiments, the device includes both a magnetic holder and a battery assembly. The battery assembly includes a battery holder 6 and a battery. The battery holder 6 includes a first receiving component 7 and a second receiving component 8. The first receiving component 7 includes a fixing portion with an opening at least one end, through which the battery is placed in the fixing portion.
[0092] In some embodiments, the device does not have a magnetic support, but has a battery assembly, which is a battery, and the magnetic assembly 9 can be attached to the inner or outer wall of the first housing assembly 1.
[0093] In some embodiments, the device does not have a magnetic support bracket, but has a battery assembly consisting of a battery holder 6 and a battery. The battery holder 6 includes a first receiving component 7 and a second receiving component 8. The first receiving component 7 includes a fixing portion with an opening at least at one end, through which the battery is placed in the fixing portion.
[0094] In some embodiments, the device does not have a magnetic support, but has a battery assembly consisting of a battery holder 6 and a battery. The battery holder 6 includes a first receiving component 7 but does not have a second receiving component 8. The magnetic component 9 can be attached to the inner or outer wall of the first housing component 1.
[0095] In this application, along the extending direction of the first housing assembly 1, a first slot is provided on the inner wall of the first housing assembly 1, and a baffle plate 5 is snapped onto the first slot.
[0096] In some embodiments, when the battery holder 6 is disposed within the first housing assembly 1, the shield 5 is located on the side of the battery holder 6 closer to the lighting assembly and is connected to the battery holder 6. The shield 5 can be used to secure the battery holder 6 and / or the magnetic bracket.
[0097] In some embodiments, when the battery holder 6 is disposed within the second housing assembly 2, the shield 5 is located on the side of the battery holder 6 away from the lighting assembly. The magnetic bracket is connected to the shield 5, and the shield 5 can fix the magnetic bracket, thereby fixing the magnetic position of the device.
[0098] In this application, the lighting assembly includes a circuit board 3 and at least one LED, the LED being located on the circuit board 3.
[0099] Furthermore, along the extending direction of the second housing assembly 2, a second slot is provided on the inner wall of the second housing assembly 2, and the circuit board 3 is snapped into the second slot; or the circuit board 3 is connected to the inner side wall or bottom of the second housing assembly 2 by bolts.
[0100] Furthermore, the battery bracket 6 is connected to the inner wall of the first housing assembly 1, the inner wall of the second housing assembly 2, the side surface of the shielding plate 5 away from the second housing assembly 2, or the side surface of the circuit board 3 away from the lighting assembly.
[0101] In some embodiments, when the battery holder 6 is located inside the first housing assembly 1, the battery holder 6 is connected to the inner wall or the shielding plate 5 of the first housing assembly 1, thereby fixing the battery holder 6 inside the first housing assembly 1.
[0102] In some embodiments, when the battery holder 6 is located inside the second housing assembly 2, the battery holder 6 is connected to the interior of the second housing assembly 2 or the circuit board 3, thereby fixing the battery holder 6 inside the second housing assembly 2.
[0103] In this application, the second housing assembly 2 includes a second housing body and a lampshade assembly, the lampshade assembly being located above the lighting assembly;
[0104] The lampshade assembly includes a lampshade and a reflector, the lampshade being connected to the reflector; the reflector being connected to the inner wall of the circuit board 3 or the second housing body.
[0105] In this application, the second housing assembly 2 includes a second housing body and a lampshade assembly, the lampshade assembly being located above the lighting assembly;
[0106] The lampshade assembly includes a lampshade and a reflector, with the lampshade connected to the reflector. The inner wall of the second housing body is provided with a fourth slot, which extends along the length of the second housing assembly 2. A flange corresponding to the fourth slot is provided on the top of the second housing body, and a snap-fit portion is formed between the flange and the fourth slot. The lampshade assembly is snapped into the snap-fit portion, and further, the lampshade is snapped into the snap-fit portion.
[0107] Furthermore, the reflector includes one or more spaced reflectors 13, which surround the lamp beads. The light emitted by the lamp beads is reflected by the reflectors 13 and emitted evenly through the lamp beads.
[0108] In some embodiments, a reflector 13 corresponds to a lamp bead, and the lamp bead is located in the middle of the reflector 13. This design allows the light emitted by the lamp bead to be reflected by the reflector 13, reducing glare, reducing light scattering, and improving the uniformity of light.
[0109] In some embodiments, a reflector 13 corresponds to at least two LEDs, and multiple LEDs are located in the middle of the reflector 13. This design allows multiple LEDs to emit light together, which can make the light distribution in the illuminated area more uniform and reduce shadows and differences in brightness.
[0110] In this application, the second housing assembly 2 includes a second housing body and a lampshade assembly, the lampshade assembly being located above the lighting assembly;
[0111] The lampshade assembly includes a lens assembly and / or a reflector, and the lens assembly and / or reflector is connected to the second housing body;
[0112] The lens assembly includes at least two spaced-apart lenses positioned above the LED.
[0113] The reflector includes at least two spaced-apart reflectors 13, which surround the LED beads.
[0114] In this application, the second housing assembly 2 includes a second housing body and a lampshade assembly, the lampshade assembly being located above the lighting assembly;
[0115] The lampshade assembly includes a lens assembly and / or a reflector, the lens assembly including at least two spaced-apart lenses located above the lamp beads;
[0116] The reflector includes at least two spaced-apart reflectors 13, which surround the LED beads.
[0117] The inner wall of the second housing body is provided with a fourth slot, which extends along the length of the second housing assembly 2. A flange corresponding to the fourth slot is provided on the top of the second housing body, and a snap-fit portion is formed between the flange and the fourth slot. The lampshade assembly is snapped into the snap-fit portion.
[0118] Furthermore, the lampshade assembly also includes one or more of the following: a face cover, an anti-glare cover, a flat lens, a light-shielding film, and a bracket;
[0119] The faceplate is disposed on the side of the lens assembly and / or reflector away from the lighting assembly;
[0120] The anti-glare shield is disposed on the side of the lens assembly and / or reflector away from the lighting assembly;
[0121] The plano lens is disposed on the side of the lens assembly and / or reflector away from the lighting assembly;
[0122] The light-shielding film is disposed on the side of the lens assembly and / or reflector away from the lighting assembly;
[0123] The bracket is positioned on the side of the lens assembly and / or reflector near the lighting assembly.
[0124] In some embodiments, the lampshade assembly includes a faceplate, an anti-glare cover, a plano lens, a reflector, and a bracket arranged sequentially. The reflector is connected to the bracket, and the reflector has multiple spaced-apart reflectors 13 surrounding the lamp beads. The faceplate has multiple spaced-apart first light-transmitting holes, the anti-glare cover has multiple spaced-apart second light-transmitting holes, and the plano lens has multiple spaced-apart light-transmitting lenses. The first light-transmitting holes, second light-transmitting holes, light-transmitting lenses, and reflectors 13 are correspondingly arranged. The light-transmitting lenses are located directly above the reflectors 13. The anti-glare cover is fitted onto the light-transmitting lenses through the second light-transmitting holes, and the faceplate is fitted onto the second light-transmitting holes through the first light-transmitting holes. The bracket is located on the circuit board 3 and may or may not be connected to the circuit board 3.
[0125] In some embodiments, the lampshade assembly includes a faceplate, an anti-glare shield, and a lens assembly arranged sequentially. The faceplate has multiple spaced-apart first light-transmitting holes, and the anti-glare shield has multiple spaced-apart second light-transmitting holes. The first light-transmitting holes, second light-transmitting holes, and the lens are correspondingly arranged. The lens is located directly above the LED chip. The anti-glare shield is fitted onto the lens through the second light-transmitting holes, and the faceplate is fitted onto the second light-transmitting holes through the first light-transmitting holes. The lens assembly may or may not be connected to the circuit board 3.
[0126] In some embodiments, the lampshade assembly includes an anti-glare cover, a plano lens, a reflector, and a bracket arranged sequentially, with the reflector connected to the bracket. The reflector has multiple spaced-apart reflectors 13 surrounding the LED. The anti-glare cover has multiple spaced-apart second light-transmitting holes, and the plano lens has multiple spaced-apart light-transmitting lenses. The second light-transmitting holes, the light-transmitting lenses, and the reflectors 13 are correspondingly arranged, with the light-transmitting lenses located directly above the reflectors 13. The anti-glare cover is fitted onto the light-transmitting lenses through the second light-transmitting holes. The bracket is located on the circuit board 3 and may or may not be connected to the circuit board 3.
[0127] In some embodiments, the lampshade assembly includes an anti-glare cover and a lens assembly arranged sequentially. The anti-glare cover has multiple spaced-apart second light-transmitting holes, and the lens assembly has multiple spaced-apart lenses. The lenses are positioned above the LED beads, with the second light-transmitting holes and lenses correspondingly arranged. The lenses are located directly above the LED beads, and the anti-glare cover is fitted onto the lenses through the second light-transmitting holes. The lens assembly may or may not be connected to the circuit board 3.
[0128] In some embodiments, the lampshade assembly includes an anti-glare cover, a reflector, and a bracket arranged sequentially. The reflector is connected to the bracket, and the reflector has a plurality of spaced-apart reflectors 13 surrounding the lamp beads. The anti-glare cover has a plurality of spaced-apart second light-transmitting holes, which are correspondingly arranged with the reflectors 13. The anti-glare cover is fitted onto the reflectors 13 through the second light-transmitting holes. The bracket is located on the circuit board 3 and may or may not be connected to the circuit board 3.
[0129] In some embodiments, the lampshade assembly includes an anti-glare cover, a light-shielding film, and a lens assembly arranged sequentially. The anti-glare cover has multiple spaced-apart second light-transmitting holes, the light-shielding film has multiple spaced-apart third light-transmitting holes, and the lens assembly has multiple spaced-apart lenses. The lenses are positioned above the LED beads, with the second light-transmitting holes, third light-transmitting holes, and lenses correspondingly arranged. The lens is located directly above the LED beads, and the light-shielding film is fitted onto the lenses through the third light-transmitting holes. The anti-glare cover is fitted onto the lenses through the second light-transmitting holes. The light-shielding film is located between the anti-glare cover and the lens assembly. The lens assembly may or may not be connected to the circuit board 3.
[0130] In some embodiments, the lampshade assembly includes a lens assembly, a reflector, and a bracket arranged sequentially. The reflector is connected to the bracket. The lens assembly has multiple lenses arranged sequentially. The reflector has multiple spaced-apart reflectors 13 arranged around the lamp beads. The lenses are located directly above the reflectors 13. The bracket is located on the circuit board 3 and may or may not be connected to the circuit board 3.
[0131] In some embodiments, the lampshade assembly includes a lens assembly and a reflector arranged sequentially. The lens assembly has a plurality of lenses arranged sequentially, and the reflector has a plurality of spaced-apart reflectors 13 arranged around the lamp beads. The lenses are located directly above the reflectors 13. The reflector is located on the circuit board 3 and may or may not be connected to the circuit board 3.
[0132] In this application, a circuit board support 4 is provided on the side surface of the circuit board 3 near the shielding plate 5;
[0133] Along the extending direction of the second outer shell body, a third slot is provided on the inner wall of the second outer shell body, and the circuit board bracket 4 is snapped into the third slot; or
[0134] The circuit board bracket 4 or circuit board 3 is connected to the lens assembly, reflector or bracket.
[0135] The function of the circuit board bracket 4 is to connect the circuit board 3, the reflector and / or the focusing plate into one unit.
[0136] In this application, the material of the second outer shell body is a conductive material or a non-conductive material.
[0137] Inside the second housing assembly 2, the circuit board 3 is connected to a conductive component, which is connected to the inner wall of the second housing assembly 2 and is used to control the activation of the lighting component by touching the second housing assembly 2.
[0138] The conductive component can be a touch spring, wire, copper foil, conductive foam, etc.
[0139] When the material of the second housing body is conductive, touching any part of the second housing body can activate the lighting component.
[0140] When the second housing component 2 is made of a non-conductive material, the lighting component can be activated by touching the position where the conductive component is connected to the second housing component 2.
[0141] In this article, starting up the lighting component refers to turning on the lighting component and switching between different modes of the lighting component.
[0142] In some embodiments, the second housing assembly 2 is made of a magnetic material, and the device may not contain a magnetic support or a second receiving cavity.
[0143] In this application, the device includes a sensing component 12, which is electrically connected to the circuit board 3. The sensing component has the ability to collect various signals. Once a signal that meets the preset conditions is successfully collected, it will be converted into an electrical signal through the internal circuit structure, triggering the switch action and realizing the start of the lighting component.
[0144] Furthermore, the sensing component 12 may be selected from one of the following: infrared sensor, sound sensor, microwave sensor, photoelectric sensor, and ultrasonic sensor.
[0145] Infrared sensor: It detects the movement signal of an object by sensing the sensitive element, and outputs a digital signal through acquisition, filtering and other processes. The microcontroller in the peripheral circuit realizes the control of the lighting components.
[0146] Sound sensor; based on the principle of sound vibration, it can sensitively capture the sounds produced by human activities, such as footsteps and voices, thereby enabling control of lighting components.
[0147] Microwave sensors: These utilize microwave radar technology to detect the movement of objects by transmitting and receiving microwave signals. When a human body enters the sensing area, it causes reflection of the microwave signal and a Doppler frequency shift, thus triggering the sensor. The advantages of this sensing mode are long sensing distance, high sensitivity, the ability to penetrate non-metallic obstacles, and immunity to environmental factors such as light and temperature.
[0148] Photoelectric sensors: These typically detect changes in ambient light intensity using a photosensitive element. For example, when the ambient light level is lower than a set value, they trigger the lighting assembly to start; or when an object blocks the light, causing a change in the light intensity received by the photosensitive element, they take corresponding actions. They are commonly used to automatically adjust lighting brightness based on ambient light, or to trigger sensing when an object passes through a specific area.
[0149] Ultrasonic sensors detect the presence and movement of objects by emitting and receiving ultrasonic waves. When ultrasonic waves are reflected back from objects such as humans, the sensor determines whether an object has entered the sensing area based on the time and intensity of the reflected wave. Its advantages include being unaffected by light and color, and being effective at detecting transparent or translucent objects.
[0150] The sensing component 12 can be disposed on the same side of the lighting component. For example, the sensing component 12 can pass through the lampshade component and be electrically connected to the circuit board 3. The sensing component 12 can be disposed in the middle of the lampshade component or on one side of the lampshade component. The sensing component 12 can be disposed on the second housing body and be electrically connected to the circuit board 3.
[0151] In this application, a switch is also provided on the side wall of the second housing body, which is connected to the circuit board 3 and is used to control the start or stop of the lighting component.
[0152] Example
[0153] Unless otherwise specified, the experimental methods used in the following examples are conventional methods.
[0154] Unless otherwise specified, all materials and reagents used in the following examples are commercially available.
[0155] Example 1
[0156] The lighting device of this embodiment includes a housing assembly, a battery pack, a lighting component, two magnetic brackets, a sensing component, and a switch. The housing assembly includes a first housing assembly and a second housing assembly. The sidewalls of the first housing assembly and the second housing assembly are connected by a rotating shaft, allowing the second housing assembly to rotate about the rotating shaft. The battery assembly and the magnetic brackets are disposed inside the first housing assembly, and the lighting component is disposed on the second housing assembly. The battery assembly is electrically connected to the lighting component.
[0157] The battery assembly includes a battery holder and a battery. The battery holder has a first receiving component and two second receiving components. The first receiving component is located between the two second receiving components. The first receiving component includes a fixed part and a movable part. The fixed part is disposed in the middle of the battery holder, and the movable part is detachably connected to the fixed part. The battery can be placed in the fixed part, and the movable part is used to confine the battery within the fixed part. Each second receiving component includes three receiving slots, namely a first receiving slot, a second receiving slot, and a third receiving slot. The first receiving slot is disposed at the bottom of the battery holder; the second receiving slots and the third receiving slots are respectively disposed on the side walls of the two sides of the battery holder.
[0158] Along the extending direction of the first housing assembly, two magnetic brackets are located on both sides of the battery bracket. Each magnetic bracket has three magnetic slots, namely a first magnetic slot, a second magnetic slot, and a third magnetic slot. The first magnetic slot is located at the bottom of the magnetic bracket; the second magnetic slot and the third magnetic slot are respectively located on both sides of the magnetic bracket.
[0159] Along the extending direction of the first housing assembly, a first slot is provided on the inner wall of the first housing assembly. A baffle plate is engaged with the first slot. The baffle plate is located on the side of the battery bracket closer to the lighting component and is connected to the battery bracket and the magnetic bracket. The battery bracket and the magnetic bracket can be fixed by the baffle plate.
[0160] The lighting assembly includes a circuit board and LEDs, with 5-20 LEDs disposed on the circuit board. A second slot is provided on the inner wall of the second housing assembly along its extending direction, and the circuit board is engaged with the second slot.
[0161] The second housing assembly includes a second housing body and a lampshade assembly, the lampshade assembly being located above the lighting assembly; the lampshade assembly includes a lampshade and a reflector, the lampshade being connected to the reflector; the reflector is connected to the circuit board. The reflector includes 1-10 spaced reflectors, the reflectors surrounding the LED, with one reflector corresponding to one LED, the LED located in the center of the reflector. This design allows the light emitted by the LED to be reflected by the reflectors, reducing glare, reducing light scattering, and improving light uniformity.
[0162] The second housing body is made of aluminum. Inside the second housing assembly, the circuit board is connected to a touch spring, which is connected to the inner wall of the second housing assembly. It is used to control the activation of the lighting assembly by touching any position of the second housing assembly.
[0163] The sensing component passes through the lampshade assembly and is electrically connected to the circuit board. The sensing component is an infrared sensor. When a human body enters the sensing area, the sensing component absorbs the infrared radiation from the human body, causing a change in its own temperature, which in turn generates a change in charge. This change is converted into an electrical signal through the internal circuit, triggering the switch action and activating the lighting component.
[0164] The switch is also provided on the side wall of the second housing body, which is connected to the circuit board and is used to control the start or stop of the lighting component.
[0165] Although the embodiments of this application have been described above in conjunction with the accompanying drawings, this application is not limited to the specific embodiments and application fields described above. The specific embodiments described above are merely illustrative and instructive, not restrictive. Those skilled in the art can make many other forms based on the guidance of this specification and without departing from the scope of protection of the claims of this application, and these are all within the scope of protection of this application.
Claims
1. A lighting device, characterized in that, The device includes a housing assembly, a battery assembly, and a lighting assembly. The housing assembly includes a first housing assembly and a second housing assembly, the second housing assembly being rotatably connected to the first housing assembly. The battery assembly is disposed within either the first housing assembly or the second housing assembly, and the lighting assembly is disposed on the second housing assembly. The battery assembly is electrically connected to the lighting assembly; The battery assembly includes a battery holder and a battery, the battery holder having a first receiving component for accommodating the battery; or The battery assembly is a battery.
2. The apparatus according to claim 1, characterized in that, The first receiving component includes a fixing part and a moving part, the fixing part being disposed in the middle of the battery holder, and the moving part being detachably connected to the fixing part; or The first receiving component includes a fixing portion with an opening at at least one end, through which the battery is placed within the fixing portion.
3. The apparatus according to claim 1, characterized in that, The battery holder also has a second receiving component for accommodating the magnetic component. The second receiving components are respectively provided at both ends of the battery holder, and the first receiving component is located between the two second receiving components.
4. The apparatus according to claim 3, characterized in that, Each of the second receiving components includes at least one receiving slot, in which the magnetic attraction component is disposed, the receiving slot facing the bottom and / or sidewall of the first housing component.
5. The apparatus according to claim 4, characterized in that, Each of the second receiving components includes three receiving slots, namely a first receiving slot, a second receiving slot, and a third receiving slot. The first receiving slot is disposed at the bottom of the battery bracket; The second and third receiving slots are respectively disposed on the side walls of the battery bracket on both sides.
6. The apparatus according to claim 1, characterized in that, The device includes a magnetic support bracket, which is disposed inside the first housing assembly, and a magnetic component is disposed on the magnetic support bracket; The magnetic bracket has at least one magnetic groove, and the magnetic component is detachably disposed in the magnetic groove, with the magnetic groove facing the bottom and / or sidewall of the first housing component.
7. The apparatus according to claim 6, characterized in that, The magnetic holder has three magnetic slots, namely the first magnetic slot, the second magnetic slot, and the third magnetic slot. The first magnetic slot is disposed at the bottom of the magnetic bracket; The second magnetic groove and the third magnetic groove are respectively disposed on both sides of the magnetic bracket.
8. The apparatus according to claim 1, characterized in that, Along the extending direction of the first housing assembly, a first slot is provided on the inner wall of the first housing assembly, and a baffle plate is engaged in the first slot.
9. The apparatus according to claim 8, characterized in that, The shield is located on the side of the battery bracket closer to the lighting assembly and is connected to the battery bracket; or The shield is located on the side of the battery holder away from the lighting component.
10. The apparatus according to claim 8, characterized in that, The lighting assembly includes a circuit board and at least one LED, which is located on the circuit board.
11. The apparatus according to claim 10, characterized in that, Along the extending direction of the second housing assembly, a second slot is provided on the inner wall of the second housing assembly, and the circuit board is snapped into the second slot; or The circuit board is bolted to the inner wall or bottom of the second housing assembly.
12. The apparatus according to claim 10, characterized in that, The battery bracket is connected to the inner wall of the first housing assembly, the inner wall of the second housing assembly, the side surface of the shield away from the second housing assembly, or the side surface of the circuit board away from the lighting assembly.
13. The apparatus according to claim 10, characterized in that, The second housing assembly includes a second housing body and a lampshade assembly, the lampshade assembly being located above the lighting assembly; The lampshade assembly includes a lampshade and a reflector, the lampshade being connected to the reflector, and the reflector being connected to the inner wall of the circuit board or the second housing body.
14. The apparatus according to claim 10, characterized in that, The second housing assembly includes a second housing body and a lampshade assembly, the lampshade assembly being located above the lighting assembly; The lampshade assembly includes a lens assembly and / or a reflector, and the lens assembly and / or reflector is connected to the second housing body; The lens assembly includes at least two spaced-apart lenses, the lenses being positioned above the LED beads; or The reflector includes at least two spaced-apart reflectors that surround the LED beads.
15. The apparatus according to claim 14, characterized in that, The lampshade assembly also includes one or more of the following: a face cover, an anti-glare cover, a flat lens, a light-shielding film, and a bracket; The faceplate is disposed on the side of the lens assembly and / or reflector away from the lighting assembly; The anti-glare shield is disposed on the side of the lens assembly and / or reflector away from the lighting assembly; The plano lens is disposed on the side of the lens assembly and / or reflector away from the lighting assembly; The light-shielding film is disposed on the side of the lens assembly and / or reflector away from the lighting assembly; The bracket is positioned on the side of the lens assembly and / or reflector near the lighting assembly.
16. The apparatus according to claim 14 or 15, characterized in that, A circuit board support is provided on the side surface of the circuit board near the shielding plate; Along the extending direction of the second outer casing, a third slot is provided on the inner wall of the second outer casing, and the circuit board bracket is snapped into the third slot; or The circuit board bracket or circuit board is connected to the lens assembly, reflector or bracket.
17. The apparatus according to claim 10, characterized in that, Within the second housing assembly, the circuit board is connected to a conductive component, which is connected to the inner wall of the second housing assembly and is used to control the activation of the lighting component by touching the second housing assembly.
18. The apparatus according to claim 10, characterized in that, The battery is fixed to the inner wall of the first housing assembly or to a shielding plate; or The battery is fixed to the inner wall of the second housing assembly or to the circuit board.