Lamp

By designing the reflective components and driving mechanism of the lamps, the direction and range of light are adjusted, solving the problem of fixed light in existing lamps and improving the lighting effect and user experience.

CN223840229UActive Publication Date: 2026-01-27SHENZHEN INTELLIROCKS TECH CO LTD +1
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Patent Information

Application Number
CN202520563339.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2026-01-27
Estimated Expiration
2035-03-27

AI Technical Summary

Technical Problem

Existing lighting fixtures have fixed light direction and illumination range, which cannot meet users' diverse needs for personalized adjustment of light direction and illumination range.

Method used

A lamp fixture was designed, including a lamp head, a bracket, and a reflector. The light from the light-emitting element is partially reflected by the reflector. The direction of light propagation and the illumination range are adjusted by the reflector, and the rotation effect of the light is achieved by combining it with a driving mechanism.

Benefits of technology

It enables personalized adjustments to the direction and range of light, meeting diverse user needs and improving lighting efficiency and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model relates to a lamp. The lamp comprises a lamp holder, a support and a reflection assembly. The lamp holder comprises a lamp shell, a circuit board and a light-emitting element, the light-emitting element is arranged on the circuit board, and the circuit board is contained in the lamp shell; the lamp shell is supported on the bracket; the reflection assembly is rotationally connected to the support, and at least part of light generated by the light-emitting element irradiates the reflection assembly. According to the lamp, due to the fact that at least part of the light generated by the light-emitting element irradiates the reflection assembly, and the reflection assembly reflects and / or projects the light, the propagation direction of the light and the irradiation range of the light can be adjusted, and therefore the requirement of a user for adjusting the direction of the light in a personalized mode is met; and diversified requirements of users on different light irradiation ranges can be met.
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Description

Technical Field

[0001] This application relates to the field of lighting equipment technology, and more particularly to a lamp. Background Technology

[0002] A lamp is a lighting device that emits light through a light source to meet people's lighting needs in various situations. The design and function of lamps can be optimized according to specific usage scenarios to provide a more efficient and comfortable lighting experience. For example, in an office environment, lamps can be designed with adjustable brightness and color temperature to reduce eye fatigue and improve work efficiency. In a home environment, lamps can focus on combining aesthetics and practicality to provide a warm lighting atmosphere. Furthermore, in outdoor environments, lamps need higher protection levels and weather resistance to cope with various harsh weather conditions. In addition, outdoor lamps should also consider energy conservation and environmental protection requirements, using highly efficient and energy-saving light sources and materials.

[0003] In the process of developing this application, the applicant discovered that although lamps are used in various fields, the direction of the light produced by current lamps is fixed, and the illumination range of the light is fixed, which cannot meet the user's need to adjust the direction of the light in a personalized way, nor can it adapt to the user's diverse needs for different illumination ranges. Utility Model Content

[0004] In view of the above problems, this application provides a lamp that overcomes or at least partially solves the above problems.

[0005] According to one aspect of the embodiments of this application, a lamp is provided, including a lamp head, a bracket, and a reflective assembly; the lamp head includes a lamp housing, a circuit board, and a light-emitting element, the light-emitting element being disposed on the circuit board, and the circuit board being housed in the lamp housing; the lamp housing being supported on the bracket; the reflective assembly being rotatably connected to the bracket, and at least a portion of the light generated by the light-emitting element irradiates the reflective assembly.

[0006] In one alternative embodiment, the reflective assembly includes a reflective lens, one end of which is rotatably connected to the end of the bracket near the lamp head.

[0007] In an alternative embodiment, the reflective assembly further includes a support rod, one end of which is rotatably connected to the other end of the reflective lens, and the other end of which is used to support the bracket.

[0008] In one alternative embodiment, the bracket includes a first section and a second section; the first section supports the lamp housing; the first section provides an installation space, and the reflective assembly further includes a connector, a portion of which is housed within the installation space, one end of which is rotatably connected to the first section, and the other end of which is connected to one end of the reflective lens; a portion of the second section is housed within the installation space, and the portion of the second section housed within the installation space is connected to the first section.

[0009] In one alternative, the second section is recessed to form a relief groove corresponding to the connector, the relief groove being used to avoid the connector.

[0010] In one alternative embodiment, the bottom of the clearance groove is provided with multiple slots at intervals, and the other end of the support rod is used to support the slots.

[0011] In one alternative, the connector is recessed to form a receiving groove corresponding to the support rod, the receiving groove being used to receive the support rod.

[0012] In one alternative embodiment, the light-emitting element includes a first light source and a plurality of second light sources; the first light source and the second light sources are respectively disposed on opposite sides of the circuit board; the plurality of second light sources are evenly distributed on the circuit board.

[0013] In one alternative embodiment, at least a portion of the light emitted by the second light source illuminates the reflective component; the number of reflective components is plurality of, and each reflective component corresponds to one of the second light sources.

[0014] In one alternative embodiment, the reflective component is provided with a handle position.

[0015] The beneficial effects of this application embodiment include: providing a lamp holder, including a lamp head, a bracket, and a reflective assembly; the lamp head includes a lamp housing, a circuit board, and a light-emitting element, the light-emitting element being disposed on the circuit board, and the circuit board being housed in the lamp housing; the lamp housing being supported by the bracket; the reflective assembly being rotatably connected to the bracket, and at least a portion of the light generated by the light-emitting element irradiates the reflective assembly. Through this lamp holder, since at least a portion of the light generated by the light-emitting element irradiates the reflective assembly, and the reflective assembly reflects and / or projects the light, the direction of light propagation can be adjusted, and the irradiation range can be adjusted, thereby meeting the user's need for personalized adjustment of the light direction and adapting to the user's diverse needs for different irradiation ranges. Attached Figure Description

[0016] One or more embodiments are illustrated by way of example with reference numerals in the accompanying drawings. These illustrations do not constitute a limitation on the embodiments. Elements with the same reference numerals in the drawings are denoted as similar elements. Unless otherwise stated, the figures in the drawings are not to be limited by scale.

[0017] Figure 1 This is a schematic diagram illustrating one implementation of the lighting fixture provided in this application embodiment;

[0018] Figure 2 This is a schematic diagram illustrating another aspect of one implementation of the lighting fixture provided in the embodiments of this application;

[0019] Figure 3 This is a partial schematic diagram of the lighting fixture provided in an embodiment of this application;

[0020] Figure 4 This is a schematic diagram of the lamp holder provided in an embodiment of this application;

[0021] Figure 5 This is an exploded view of the lamp holder provided in an embodiment of this application;

[0022] Figure 6 The embodiments of this application provide the following: Figure 4 A sectional view of P;

[0023] Figure 7 This is a cross-sectional view of another implementation of the lamp provided in this application embodiment;

[0024] Figure 8 This is a schematic diagram illustrating another implementation of the lighting fixture provided in this application embodiment;

[0025] Figure 9 This is a partial schematic diagram of another implementation of the lamp provided in the embodiments of this application;

[0026] Figure 10 This is a schematic diagram illustrating another implementation of the lighting fixture provided in the embodiments of this application;

[0027] Figure 11 The embodiments of this application provide the following: Figure 9 A cross-sectional view of Q.

[0028] The attached figures are labeled as follows:

[0029] Lighting fixtures 100;

[0030] Lamp holder 10, bracket 20, floor socket 30, drive mechanism 40, reflector assembly 50;

[0031] 1. Lamp housing; 2. Circuit board; 3. Light-emitting element; 4. Diffuser cover; 5. Lens; 6. Light-shielding ring; 7. Sealing ring; 8. Power cord; 9. Plug; 101. Connecting ring.

[0032] The containment cavity is 1 second; the first opening is 11 hours; the second opening is 12 hours.

[0033] First shell 11, second shell 12;

[0034] Connecting terminal 21;

[0035] First light source 31, second light source 32;

[0036] First LED bead 311, second LED bead 321;

[0037] Amplifying cavity 5s; Stepped section 51, mounting groove 52, receiving groove 53, drain hole 54, limiting groove 55;

[0038] Outlet cable 20h; Channel 20s; Mounting component 20s1;

[0039] First section 201, second section 202; installation space 201s; clearance groove 2021; slot 2022; through hole 2023;

[0040] Drive end 401, connecting wire 402; hexagonal nut 4001;

[0041] Handle position 501;

[0042] Reflective lens 5001, support rod 5002, connector 5003, receiving groove 5003a. Detailed Implementation

[0043] To facilitate understanding of this application, a more detailed description is provided below with reference to the accompanying drawings and specific embodiments. It should be noted that when an element is described as being "fixed to" another element, it can be directly attached to the other element, or one or more intermediate elements may exist between them. When an element is described as being "connected to" another element, it can be directly connected to the other element, or one or more intermediate elements may exist between them. The terms "vertical," "horizontal," "left," "right," "inner," "outer," and similar expressions used in this specification are for illustrative purposes only.

[0044] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the scope of the application. The term "and / or" as used in this specification includes any and all combinations of one or more of the associated listed items.

[0045] Example 1

[0046] Please see Figure 1 This application provides a lamp 100, which includes a lamp head 10, a bracket 20, and a ground socket 30. The lamp head 10 is supported on the bracket 20, and the ground socket 30 is connected to the bracket 20. The lamp head 10 is used to generate light, the bracket 20 is used to support the lamp head 10, and the ground socket 30 is used to insert the lamp 100 into the ground, so that the lamp 100 can be stably fixed on the ground when used outdoors.

[0047] It is worth noting that in some embodiments, the lamp 100 may not be equipped with the ground socket 30, and the lamp 100 may be connected and fixed to external equipment or the ground via the bracket 20.

[0048] It is worth noting that in some embodiments, the ground plug 30 is detachably connected to the end of the bracket 20 away from the lamp head 10. When the ground plug 30 is connected to the bracket 20, it is convenient to fix the lamp 100 as a whole firmly on the ground. When the ground plug 30 is not needed, it can be removed from the bracket 20 for easy storage and transportation.

[0049] The floor plug 30 can be screwed to the bracket 20, or it can be detachably connected to the bracket 20 via a clip (not shown).

[0050] Please refer to the above-mentioned lamp holder 10 as well. Figures 2 to 4 The lamp head 10 includes a lamp housing 1, a circuit board 2, and a light-emitting element 3. The light-emitting element 3 is disposed on the circuit board 2 and is used to generate light. The circuit board 2 is housed in the lamp housing 1 and is used to supply power to the light-emitting element 3.

[0051] Furthermore, please refer to the following: Figure 5 and Figure 6 The light-emitting element 3 includes a first light source 31 and a plurality of second light sources 32; the first light source 31 and the second light sources 32 are respectively disposed on opposite sides of the circuit board 2; the plurality of second light sources 32 are evenly distributed on the circuit board 2. Through the lamp head 10, light can be emitted from both opposite sides of the circuit board 2, i.e., the lamp head 10 can emit light from both sides. This solves the technical problem in the prior art where the lamp head 10 can only emit light in one direction.

[0052] It is worth noting that in some embodiments, the number of the second light source 32 is three, and the three second light sources 32 are evenly distributed on the circuit board 3.

[0053] It is worth noting that the three second light sources 32 are evenly distributed on the circuit board 2, which means that the angle between any two second light sources 32 and the center of the circuit board 2 is 120 degrees, or the triangle formed by the lines connecting the three second light sources 32 is an equilateral triangle. This distribution method can ensure the uniform distribution of the light generated by the second light sources 32 and improve the light efficiency.

[0054] The first light source 31 or the second light source 32 can be any device that can generate light. For example, the first light source 31 includes a plurality of first lamp beads 311, and any second light source 32 includes two second lamp beads 321.

[0055] It is worth noting that when the lamp head 10 is supported by the bracket 20, in some embodiments, the second light source 32 faces the bracket 20, and the first light source 31 faces away from the bracket 20. Therefore, when the lamp 100 is inserted into the ground via the ground plug 30, the first light source 31 emits light upwards, and the second light source 32 emits light downwards. This not only enables the lamp 100 to output light at different angles, meeting diverse lighting needs, but also allows the lamp 100 to provide light at various angles. Furthermore, when the lamp 100 is installed on the ground, the first light source 31 shines upwards, providing auxiliary lighting, while the second light source 32 shines downwards, providing main lighting and clearly illuminating the ground for user use.

[0056] It is worth noting that in some embodiments, the lamp housing 1 is provided with a receiving cavity 1s and a first opening 11h communicating with the receiving cavity 1s, and the circuit board 2 is housed in the receiving cavity 1s; the lamp head 10 also includes a diffuser 4, which covers the first opening 11h, and the first light source 31 faces the diffuser 4. The design of the receiving cavity 1s provides a stable installation environment for the circuit board 2, the first light source 31 and the second light source 32 electrically connected to the circuit board 2. The setting of the first opening 11h ensures effective light output. Through the diffuser 4, the light generated by the first light source 31 can be evenly scattered, avoiding the glare problem caused by direct illumination and improving the user experience. At the same time, the design of the diffuser 4 can also effectively protect the first light source 31, prevent dust and foreign objects from entering, and extend the service life of the lamp 100.

[0057] It is worth noting that in some embodiments, the lamp housing 1 is further provided with a plurality of second openings 12h communicating with the receiving cavity 1s; the lamp head 10 also includes a lens 5, which is disposed on the circuit board 2. The lens 5 is recessed toward the plurality of second openings 12h to form a light-expanding cavity 5s, and a second light source 32 is housed in one of the light-expanding cavities 5s. Through the arrangement of the lens 5, the light from the second light source 32 can be effectively focused and evenly distributed, thereby enhancing the lighting effect. Furthermore, the design of the light-expanding cavity 5s expands the illumination range of the light.

[0058] It is worth noting that the light-expanding cavity 5s can be a sealed space formed between the lens 5 and the circuit board 2, thereby effectively preventing the light generated by the second light source 32 from leaking out, ensuring that the light generated by the second light source 32 is emitted through the area where the light-expanding cavity 5s is located in the lens 5, and ensuring the utilization efficiency of the light generated by the second light source 32.

[0059] It is worth noting that in some embodiments, the size of the second opening 12h is increased along the diffusion direction of the second light source 32, thereby expanding the illumination range of the second light source 32.

[0060] It is worth noting that in some embodiments, the lens 5 is recessed to form a stepped portion 51 and a mounting groove 52, the circuit board 2 is disposed in the mounting groove 52, and the light-expanding cavity 5s is recessed from the bottom of the mounting groove 52; the lamp head 10 also includes a light-shielding ring 6, which covers the stepped portion 51 and the edge of the circuit board 2. The stepped portion 51 and the mounting groove 52 provide a stable mounting environment for the circuit board 2. The light-shielding ring 6 also covers the stepped portion 51 and the edge of the circuit board 2. Combined with the diffuser lampshade 4 and the lamp housing 1, the first light source 31 and the second light source 32 are effectively isolated, reducing mutual interference between them.

[0061] In some embodiments, the light-shielding ring 6 is either foam or rubber.

[0062] It is worth noting that in some embodiments, the lamp head 10 further includes a sealing ring 7, which seals between the diffuser lamp cover 4 and the lens 5. The sealing ring 7 ensures that the receiving cavity 1s in the lamp housing 1 forms a sealed cavity, reducing the damage caused by external dust and moisture to the circuit board 2, the first light source 31, and the second light source 32 in the lamp head 10.

[0063] It is worth noting that in some embodiments, the lamp housing 1 includes a first housing 11 and a second housing 12, the first housing 11 and the second housing 12 being detachably connected, and the first housing 11 and the second housing 12 together forming the receiving cavity 1s; the first housing 11 is provided with the first opening 11h, and the second housing 12 is provided with the second opening 12h. The arrangement of the first housing 11 and the second housing 12 facilitates the assembly and maintenance of the lamp head 10. The detachable connection design of the first housing 11 and the second housing 12 can employ a precise snap-fit ​​or threaded structure to ensure a secure connection and ease of operation. The first opening 11h and the second opening 12h correspond to the installation positions of the first light source 31 and the second light source 32, respectively, providing a light emission path for the lamp head 10.

[0064] It is worth noting that when the lamp housing 1 includes a first housing 11 and a second housing 12, specifically, the second housing 12 is supported by the bracket 20.

[0065] In some embodiments, the lens 5 is disposed on the second housing 12, the sealing ring 7 is stacked on the lens 5 and surrounds the lens 5, and the edges of the diffuser 4 are respectively stacked on the sealing ring 7 and the light-shielding ring 6. The edges of the diffuser 4, the sealing ring 7, and the edges of the lens 5 are locked to the second housing 12 by screws, thereby achieving the isolation of the receiving cavity 1s from the outside by the sealing ring 7 and the pressing of the edges of the diffuser 4 against the light-shielding ring 6, thereby achieving the effective isolation of the first light source 31 and the second light source 32 by the light-shielding ring 6.

[0066] It is worth noting that in some embodiments, the lens 5 is provided with a receiving groove 53, the circuit board 2 is provided with a connecting terminal 21, the connecting terminal 21 is received in the receiving groove 53, and the lamp holder 10 also includes a power cord 8, which passes through the bottom of the receiving groove 53 and is electrically connected to the connecting terminal 21. The power cord 8 is used to connect to a power source, and the lamp 100 is powered through the setting of the power cord 8.

[0067] It is worth noting that in some embodiments, the receiving groove 53 is located in the middle of the lens 5, and the receiving groove 53 is further recessed from the bottom of the mounting groove 52.

[0068] It is worth noting that when the lamp head 10 is supported on the bracket 20, the bracket 20 is also provided with a cable outlet 20h, through which the power cord 8 is electrically connected to the power source.

[0069] It is worth noting that in some embodiments, the lamp holder 10 further includes a plug 9 and a connecting ring 101. The connecting ring 101 surrounds the power cord 8 and seals the power cord 8 to the lens 5. A drain hole 54 is provided at the bottom of the receiving groove 53, and the plug 9 is disposed in the drain hole 54. The connecting ring 101 secures the power cord 8, reducing the risk of damage from pulling. Furthermore, the design of the plug 9 and the drain hole 54 facilitates testing the airtightness of the lamp holder 10 during production and allows for the removal of moisture from the receiving cavity 1s, thereby achieving a seal in the receiving cavity 1s under the action of the plug 9 and the connecting ring 101.

[0070] In some embodiments, a sealant (not shown) is also provided between the connecting ring 101 and the lens 5, and between the plug 9 and the lens 5, to enhance the sealing effect on the receiving cavity 1s.

[0071] In this embodiment, the lamp head 10 includes a lamp housing 1, a circuit board 2, a first light source 31, and a plurality of second light sources 32. The circuit board 2 is housed within the lamp housing 1. The first light source 31 and the second light sources 32 are respectively disposed on opposite sides of the circuit board 2. The plurality of second light sources 32 are evenly distributed on the circuit board 2, enabling the lamp head 10 to emit light from opposite sides of the circuit board 2, i.e., the lamp head 10 can emit light from both sides, thus solving the technical problem in the prior art where the lamp head 10 can only emit light in one direction.

[0072] In addition, when the lamp holder 10 provided in this application embodiment is installed on the bracket 20 to form a lamp 100, the lamp 100 can emit light from both sides.

[0073]

Example 2

[0074] Please see Figure 7 The difference between Embodiment 2 and Embodiment 1 is that the lamp 100 further includes a driving mechanism 40, which is housed in the bracket 20. The driving mechanism 40 is electrically connected to the circuit board 2, and its driving end 401 is connected to the lamp head 10. The circuit board 2 is equipped with a control mechanism for controlling the rotation of the driving end 401 of the driving mechanism 40. With this lamp 100, when the driving end 401 of the driving mechanism 40 rotates, the lamp head 10 connected to it rotates, causing the light-emitting element 3 in the lamp head 10 to rotate accordingly. This achieves a rotating light effect without requiring the switching / color changing of the light-emitting element 3, resulting in a better user experience.

[0075] It is worth noting that the function of the drive mechanism 40 is to convert electrical energy into mechanical energy to rotate the drive end 401 of the drive mechanism 40. Any drive mechanism 40 with this function can be applied to the lamp 100 provided in the embodiments of this application. The drive mechanism 40 can be a motor, or it can be a combination of a motor and gears, or the drive structure can be a cylinder and a connecting rod mechanism.

[0076] It is worth noting that the function of the control mechanism is to control the rotation of the drive end 401 of the drive mechanism 40. Any control mechanism with this function can be applied to the lamp 100 provided in this embodiment. The control mechanism can be a switch, or the drive mechanism 40 can be a wireless device, thereby facilitating user control of the drive mechanism 40 via wireless means. Alternatively, the control mechanism can also be a controller, in which case the program steps involved in the controller adopt existing program steps, and the controller also adopts an existing processor, such as an Intel i3 processor, an AMD Ryzen processor, etc.

[0077] It is worth noting that when the lamp head 10 includes the lens 5, the lens 5 is locked to the lamp housing 1. The lens 5 is provided with the receiving groove 53 and the limiting groove 55, which are arranged opposite to each other. The driving end 401 of the driving mechanism 40 passes through the bottom of the limiting groove 55 and the bottom of the receiving groove 53 in sequence and is then constrained by the limiting groove 55, thereby fixing the lens 5 to the driving end 401 of the driving mechanism 40. Through this arrangement, the driving end 401 of the driving mechanism 40 drives the lens 5 to rotate, and the lamp housing 1 locked with the lens 5 rotates. The circuit board 2 fixed in the lamp housing 1 and the light-emitting element 3 on the circuit board 2 rotate accordingly, thereby achieving a rotating light effect.

[0078] It is worth noting that the specific implementation of the driving end 401 of the driving mechanism 40 being restricted to the limiting groove 55 can be that the driving end 401 of the driving mechanism 40 is locked to the lens by a hexagonal nut 4001, the hexagonal nut 4001 is located in the limiting groove 55, and the limiting groove 55 restricts the rotation of the hexagonal nut 4001, thereby improving the stability of the driving end 4001 of the driving mechanism 40 driving the lens 5 to rotate.

[0079] It is worth noting that in some embodiments, the drive mechanism 40 is connected to a connecting line 402. The connecting line 402 passes through the bottom of the receiving groove 53 and is electrically connected to the circuit board 2. Power is supplied to the drive mechanism 40 through the connecting line 402.

[0080] It is worth noting that since the bottom of the receiving slot 53 is used for the power cord 8, the connecting wire 402 and the drive end 401 of the drive mechanism 40, the drain hole 54 and the plug 9 may not be provided due to space constraints.

[0081] It is worth noting that in some embodiments, the bracket 20 has a channel 20s, the drive mechanism 40 is received in the channel 20s, and the bracket 20 extends toward the channel 20s with a mounting member 20s1, on which the drive mechanism 40 is mounted. The channel 20s provides an installation environment for the drive mechanism 40, and the mounting member 20s1 allows the drive mechanism 40 to be securely mounted to the bracket 20.

[0082] It is worth noting that when the lamp housing 1 includes the first housing 11 and the second housing 12, the lampshade and the lens 5 are both locked to the second housing 12, which facilitates the drive mechanism 40 to drive the lamp head 10 to rotate, thereby realizing the rotation of the first light source 31 and the second light source 32 and achieving a rotating light effect.

[0083] In this embodiment, a lamp 100 is used, comprising a lamp head 10, a bracket 20, and a driving mechanism 40. The lamp head 10 includes a lamp housing 1, a circuit board 2, and a light-emitting element 3. The light-emitting element 3 is electrically connected to the circuit board 2, which is housed within the lamp housing 1. The driving mechanism 40 is housed within the bracket 20 and electrically connected to the circuit board 2. The driving end 401 of the driving mechanism 40 is connected to the lamp head 10. The circuit board 2 is connected to a control mechanism for controlling the rotation of the driving end 401 of the driving mechanism 40. When the driving end 401 of the driving mechanism 40 rotates, the lamp head 10 connected to the driving end 401 rotates, causing the light-emitting element 3 in the lamp head 10 to rotate accordingly. This achieves a rotating light effect without requiring the switching / color changing of the light-emitting element 3, resulting in a good user experience.

[0084]

Example 3

[0085] Please see Figure 8 The difference between Embodiment 3 and Embodiment 1 is that the lamp 100 further includes a reflective component 50; the reflective component 50 is rotatably connected to the bracket 20, and at least a portion of the light generated by the light-emitting element 3 illuminates the reflective component 50. Through the lamp 100, since at least a portion of the light generated by the light-emitting element 3 illuminates the reflective component 50, and the reflective component 50 reflects and / or projects the light, the direction of light propagation and the illumination range of the light can be adjusted, thereby meeting the user's need for personalized adjustment of the light direction and adapting to the user's diverse needs for different light illumination ranges.

[0086] It is worth noting that the reflective component 50 can converge the light emitted by the light source using the principle of reflection, and further adjust the direction of the light through the refraction of the lens 5. Please refer to [link / reference]. Figure 9 In this embodiment of the application, the reflective component 50 is used to reflect and / or refract the light emitted by the second light source 32, thereby adjusting the illumination range of the light.

[0087] It is worth noting that the precise design of the reflector component 50 can effectively control the light propagation path, reducing light scattering and waste. This not only improves the lighting efficiency of the luminaire 100 and reduces energy consumption, but also extends the lifespan of the luminaire 100. Furthermore, the reflector component 50 can adjust the shape and size of the light spot as needed. Additionally, the reflector component 50 can eliminate glare through a reasonable light distribution design, reducing eye strain and discomfort. This helps improve visual comfort and protect the user's eye health.

[0088] It is worth noting that in some embodiments, the reflective assembly 50 includes a reflective lens 5001, one end of which is rotatably connected to the end of the bracket 20 near the lamp head 10. This arrangement facilitates the adjustment of the propagation direction of the light generated by the second light source 32 by the reflective lens 5001, thereby expanding the illumination range of the second light source 32.

[0089] It is understood that the rotational connection between the reflective lens 5001 and the bracket 20 can be adjusted according to actual needs. In some embodiments, one end of the reflective lens 5001 can also be rotatably connected to the end of the bracket 20 away from the lamp head 10, or one end of the reflective lens 5001 can also be rotatably connected to the middle part of the bracket 20.

[0090] It is worth noting that in some embodiments, the reflective assembly 50 further includes a support rod 5002, one end of which is rotatably connected to the other end of the reflective lens 5001, and the other end of which is used to support the bracket 20. The support rod 5002 facilitates adjustment of the rotation angle and position of the reflective lens 5001 relative to the bracket 20, thereby allowing for more precise control of the light propagation direction and illumination range.

[0091] It is understood that one end of the support rod 5002 is located on the side of the reflective lens 5001 facing the bracket 20, thereby facilitating the storage of the support rod 5002.

[0092] It is worth noting that in some embodiments, please refer to the following: Figure 9 and Figure 10The bracket 20 includes a first section 201 and a second section 202; the first section 201 supports the lamp housing 1; the first section 201 provides an installation space 201s; the reflective component 50 further includes a connector 5003, a portion of which is housed within the installation space 201s, one end of which is rotatably connected to the first section 201, and the other end of which is connected to one end of the reflective lens 5001; a portion of the second section 202 is housed within the installation space 201s, and the portion of the second section 202 housed within the installation space 201s is connected to the first section 201. This configuration specifically provides a method in which the reflective component 50 is rotatably connected to the bracket 20.

[0093] It is worth noting that in some embodiments, the second section 202 is recessed to form a clearance groove 2021, which is used to avoid the connector 5003. The clearance groove 2021 provides an installation environment for the connector 5003. Additionally, the support rod 5002 can also be accommodated within the clearance groove 2021. Furthermore, the clearance groove 2021 allows the reflective lens 5001 to rotate relative to the bracket 20 and be accommodated in the opening of the clearance groove 2021, or within the clearance groove 2021 itself. This allows the outer surface of the reflective lens 5001 to be flush with the outer surface of the bracket 20, which is not only aesthetically pleasing but also reduces the risk of damage to the reflective lens 5001 from impacts.

[0094] It is worth noting that in some embodiments, the bottom of the clearance groove 2021 is provided with multiple slots 2022 at intervals, and the other end of the support rod 5002 is used to support the slots 2022. By setting the slots 2022, when the support rod 5002 is supported in different slots 2022, the rotation angle of the reflective lens 5001 relative to the bracket 20 can be adjusted, which facilitates the adjustment of different illumination ranges of the light.

[0095] It is worth noting that in some embodiments, please refer to [link / reference]. Figure 9 The connector 5003 is provided with a receiving groove 5003a corresponding to the support rod 5002, and the receiving groove 5003a is used to receive the support rod 5002. With the provision of the receiving groove 5003a on the connector 5003, after the support rod 5002 rotates relative to the reflective lens 5001, the support rod 5002 can be received in the receiving groove 5003a.

[0096] It is worth noting that in some embodiments, please refer to the following: Figure 10 and Figure 11When the bracket 20 includes the first section 201 and the second section 202, the outlet 20h is located in the second section 202. The second section 202 is also provided with a through hole 2023. The power cord 8 of the lamp 100 is electrically connected to the circuit board 2. The power cord 8 passes through the installation space 201s, the through hole 2023 and the outlet 20h in sequence before being used to connect to the power source.

[0097] It is worth noting that when the lamp housing 1 includes the first housing 11 and the second housing 12, the second housing 12 can be integrally formed with the first section 201.

[0098] It is worth noting that when the light-emitting element 3 includes a first light source 31 and a plurality of second light sources 32, at least a portion of the light generated by the second light source 32 illuminates the reflective component 50; the number of reflective components 50 is plurality of, and each reflective component 50 corresponds to one second light source 32. With this arrangement, different reflective components 50 can adjust the illumination direction and illumination range of the light generated by different second light sources 32.

[0099] It is understood that when there are three second light sources 32, there are three reflective components 50, and each reflective component 50 corresponds to one second light source 32.

[0100] It is worth noting that in some embodiments, the reflective component 50 is provided with a handle position 501. The handle position 501 facilitates the user to engage the reflective component 50, thereby causing the reflective component 50 to rotate relative to the bracket 20.

[0101] It is worth noting that when the reflective component 50 includes the reflective lens 5001, the handle position 501 is disposed on the reflective lens 5001.

[0102] It is worth noting that the handle position 501 can be configured in any form that facilitates the user to engage the reflective component 50. For example, the handle position 501 can be a groove located at the other end of the reflective component 50, or the handle position 501 can be a handle located at the other end of the reflective component 50 (not shown).

[0103] In this embodiment, a lamp 100 is used, comprising a lamp head 10, a bracket 20, and a reflector 50. The lamp head 10 includes a lamp housing 1, a circuit board 2, and a light-emitting element 3. The light-emitting element 3 is electrically connected to the circuit board 2, and the circuit board 2 is housed within the lamp housing 1. The lamp housing 1 is supported by the bracket 20. The reflector 50 is rotatably connected to the bracket 20, and at least a portion of the light emitted by the light-emitting element 3 illuminates the reflector 50. Through the lamp 100, since at least a portion of the light emitted by the light-emitting element 3 illuminates the reflector 50, and the reflector 50 reflects and / or projects the light, the direction of light propagation and the illumination range can be adjusted. This satisfies the user's need for personalized light direction adjustment and adapts to the user's diverse needs for different light illumination ranges.

[0104] It is worth noting that Embodiment 3 can also be combined with Embodiment 2 above, and the technical solution formed therefrom is also within the protection scope of this application.

[0105] It should be noted that while preferred embodiments of this application are provided in the specification and accompanying drawings, this application can be implemented in many different forms and is not limited to the embodiments described herein. These embodiments are not intended to impose additional limitations on the content of this application; their purpose is to provide a more thorough and comprehensive understanding of the disclosure of this application. Furthermore, the above-described technical features can be combined with each other to form various embodiments not listed above, all of which are considered to be within the scope of this application's specification. Moreover, those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

Claims

1. A lamp, characterized in that, Includes lamp holder, bracket, and reflector assembly; The lamp holder includes a lamp housing, a circuit board, and a light-emitting element. The light-emitting element is disposed on the circuit board, and the circuit board is housed in the lamp housing. The lamp housing is supported by the bracket; The reflective component is rotatably connected to the bracket, and at least a portion of the light emitted by the light-emitting element illuminates the reflective component.

2. The lamp according to claim 1, characterized in that, The reflective component includes a reflective lens, one end of which is rotatably connected to the end of the bracket near the lamp head.

3. The lamp according to claim 2, characterized in that, The reflective assembly also includes a support rod, one end of which is rotatably connected to the other end of the reflective lens, and the other end of which is used to support the bracket.

4. The lamp according to claim 3, characterized in that, The support includes a first section and a second section; The first section supports the lamp housing; The first section provides an installation space, and the reflective component further includes a connector. A portion of the connector is housed within the installation space, one end of the connector is rotatably connected to the first section, and the other end of the connector is connected to the reflective lens. A portion of the second section is housed within the mounting space, and the portion of the second section housed within the mounting space is connected to the first section.

5. The lamp according to claim 4, characterized in that, The second section has a recessed groove corresponding to the connector, which is used to avoid the connector.

6. The lamp according to claim 5, characterized in that, The bottom of the clearance groove is provided with multiple slots at intervals, and the other end of the support rod is used to support the slots.

7. The lamp according to claim 4, characterized in that, The connector is recessed to form a receiving groove corresponding to the support rod, and the receiving groove is used to accommodate the support rod.

8. The lamp according to any one of claims 1-7, characterized in that, The light-emitting element includes a first light source and a plurality of second light sources; The first light source and the second light source are respectively disposed on opposite sides of the circuit board; Multiple second light sources are evenly distributed on the circuit board.

9. The lamp according to claim 8, characterized in that, At least a portion of the light emitted by the second light source illuminates the reflective component; The number of the reflective components is multiple, and each reflective component corresponds to a second light source.

10. The lamp according to any one of claims 1-7, characterized in that, The reflective component is provided with a handle position.