Lamp

By designing a hollow component surrounded by three mirrors and rationally distributing light source components, the problem of monotonous lighting effects of the lamps was solved, achieving diverse lighting variations and rich visual dynamic effects, thus enhancing the decorative and atmosphere-creating capabilities of the lamps.

CN121761271APending Publication Date: 2026-03-31HANGZHOU HANGKE OPTOELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-16
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing lighting fixtures have a limited range of lighting effects, lacking depth and dynamic variation, making it difficult to create a rich atmosphere.

Method used

The hollow component, which is formed by at least three mirrors, combines a semi-transparent mirror and a reflective mirror design. The open end of the hollow component serves as a viewing window. Through the rational distribution of the first light source component and the mirror structure design, diverse lighting changes and rich visual dynamic effects can be achieved.

Benefits of technology

It enhances the three-dimensionality and layering of the lighting, improves light utilization, and can present diverse lighting changes from different angles to adapt to various scene needs. It also provides an immersive atmosphere experience through a music rhythm controller.

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Abstract

The invention discloses a lamp, and belongs to the technical field of lamps. A lamp comprises a carrier and an atmosphere assembly arranged on the carrier, and the atmosphere assembly comprises a hollow part defined by at least three mirrors; the mirror surfaces of more than one mirror in the hollow part are arranged towards the inner side, so that an internal reflection cavity for presenting the lighting effect is formed; first light source assemblies are arranged between the interior of the carrier and the hollow part, the top of the hollow part is an open end, the open end is a visible window end, and the first light source assemblies are distributed on the outer side of the hollow part; according to the arrangement, through the structural design of the hollow part and the reasonable distribution of the first light source assembly, the lamp can present diversified light changes at different angles, the rich visual dynamic effect is created, and the lamp is suitable for various application scenes.
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Description

Technical Field

[0001] This invention belongs to the field of lighting technology, and more specifically, relates to a lamp. Background Technology

[0002] As people's demands for home decoration and the creation of atmosphere in public places continue to increase, the functions and designs of various lighting fixtures are becoming increasingly diversified. They not only need to provide basic lighting functions, but also need to be decorative, intelligent, and interactive. For example, modern lighting fixtures present different geometric structures in appearance, integrate multiple colors and light source types in terms of light effects, and even enhance the user experience through sound and light interaction technology. In existing technologies, although some lighting fixtures can achieve the integration of light and environment, the following problems still exist: the lighting effect is monotonous, lacks three-dimensionality and dynamic changes, and it is difficult to create a rich atmosphere; traditional lighting fixtures are mostly simple light-transmitting covers or fixed geometric shapes, which are not decorative enough. Summary of the Invention

[0003] The technical problem to be solved by the present invention is to provide a lamp that can achieve diverse light changes from different angles through the structural design of hollow components and the reasonable distribution of the first light source component, creating rich visual dynamic effects and suitable for a variety of application scenarios.

[0004] A lamp of the present invention includes a carrier and an atmosphere component disposed on the carrier. The atmosphere component includes a hollow component surrounded by at least three mirrors. The mirrors of one or more of the hollow components are arranged with their mirror surfaces facing inward to form an internal reflection cavity for presenting light effects. A first light source assembly is disposed between the carrier and the hollow component. One end of the hollow component is an open end, which is a viewing window end. The first light source assembly is distributed on the outside of the hollow component.

[0005] As a further improvement of the present invention, the mirror on one or more sides of the hollow component is a transparent mirror or a semi-transparent mirror and its mirror surface faces inward.

[0006] As a further improvement of the present invention, the mirror on one or more sides of the hollow component is a reflective mirror with its mirror surface facing inward and its coating surface facing outward.

[0007] As a further improvement of the present invention, the hollow component is a triangular prism, a multi-prism, a frustum, or a truncated cone.

[0008] As a further improvement of the present invention, the maximum outer diameter of the hollow component is arranged to decrease or increase from top to bottom, and the open end is located at the top of the hollow component.

[0009] As a further improvement of the present invention, the outer surfaces of one or more mirrors of the hollow component are partially or completely coated, pasted or engraved with lines, symbols, words, patterns or designs.

[0010] As a further improvement of the present invention, each mirror is arranged in a sheet-like shape; each adjacent mirror is arranged at an angle.

[0011] As a further improvement of the present invention, the inner or outer wall of the reflector is provided with a reflective layer, which serves as a reflective surface and transmits light through lines, symbols, text, patterns or designs.

[0012] As a further improvement of the present invention, a reflective layer is partially electroplated on the inner or outer sidewall of the mirror to form a semi-transparent reflective mirror surface.

[0013] As a further improvement of the present invention, the first light source component is one or more of the following: red light source, green light source, blue light source, cool white light source, and warm white light source.

[0014] As a further improvement of the present invention, the carrier is a cover that is transparent to light on one or more sides, and a control cabin is provided inside the cover. The control cabin is provided with a drive controller and a built-in power supply. The built-in power supply is electrically connected to the first light source assembly through the drive controller. A control button that is electrically connected to the drive controller is provided outside the control cabin. Alternatively, the carrier is a translucent shell that emits light around the entire circumference, with a base at its bottom. The base contains a drive controller and a built-in power supply. The built-in power supply is electrically connected to the first light source assembly via the drive controller. A control button electrically connected to the drive controller is located outside the base.

[0015] As a further improvement of the present invention, a music rhythm lighting controller electrically connected to the drive controller is also included.

[0016] As a further improvement of the present invention, an acoustic device is provided inside or outside the carrier.

[0017] As a further improvement of the present invention, the end of the hollow component away from the open end is a closed end; or... The end of the hollow component away from the open end is the open end, and the open end is provided with one or more of the following: a light-transmitting mirror, a display screen, and an LED module.

[0018] As a further improvement of the present invention, the atmosphere assembly also includes a support frame; a conical hollow prism is installed inside the support frame and is connected to the support frame. The inner sidewall at the bottom of the support frame and the conical hollow prism are spaced apart to form a receiving groove; a three-dimensional crystal block is embedded in the receiving groove.

[0019] As a further improvement of the present invention, it also includes a second light source assembly; the carrier includes a first housing and a second housing, the second housing being mounted and connected to the first housing; The second housing is a light-transmitting component; the second light source assembly is disposed inside the carrier, and the light emitted by the second light source assembly is emitted outward through the second housing.

[0020] Compared with the prior art, the beneficial effects of the present invention are as follows: a hollow component is constructed with at least three mirrors, including a combination design of semi-transparent mirrors and reflective mirrors; the open end of the hollow component serves as a viewing window end, and the semi-transparent mirrors and reflective mirrors, combined with the first light source component, can present diverse lighting changes from different angles, enhance the dynamic visual effect, and have excellent atmosphere creation capabilities. The inner side of the semi-transparent mirror faces the light source, while the outer side can be decorated with patterns to display dynamic pattern effects when the light is turned on; the reflector reflects light through its inner reflective layer, enhancing the three-dimensionality and layering of the light, while also improving the light utilization rate. By combining various light sources such as red light, green light, blue light, cool white light and warm white light, a rich variety of color changes can be achieved to meet the needs of various scenarios. When paired with a music-rhythm lighting controller, the lighting effects can automatically adjust according to the rhythm of the music, providing an immersive atmosphere. By rationally distributing the first light source components and combining them with a mirror structure design, the utilization rate of light is effectively improved, while creating a multi-dimensional spatial visual effect in appearance, thus making up for the single-dimensionality of traditional lamps. The carrier includes a first housing and a second housing; a second light source assembly is disposed inside the carrier, and the light emitted by the second light source assembly is emitted outward through the second housing; The second light source is for illumination. This arrangement allows the lamp to not only have a decorative and aesthetic effect, but also serve as a source of light. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of one embodiment of the present invention; Figure 2 This is a cross-sectional structural diagram of one embodiment of the present invention; Figure 3 This is a schematic diagram of the structure of one embodiment of the present invention with part of the carrier removed; Figure 4 This is a top view of one embodiment of the present invention; Figure 5 This is a schematic diagram of the atmosphere component structure of the present invention; Figure 6 This is a second top view schematic diagram of one embodiment of the present invention; Figure 7 This is a second schematic diagram of one embodiment of the present invention; Figure 8 This is a second three-dimensional structural schematic diagram of one embodiment of the present invention; Figure 9 This is a second schematic diagram of the internal structure of one embodiment of the present invention.

[0022] Explanation of the labels in the diagram: 1. Atmosphere component; 11. Hollow component; 111. First mirror; 112. Second mirror; 12. Control button; 13. Control compartment; 2. Carrier; 3. Drive controller; 4. Built-in power supply; 5. First light source component; 6. Audio system; 7. Light-collecting prism. Detailed Implementation

[0023] The present invention will be further described in detail below with reference to the embodiments. The following embodiments are explanations of the present invention, but the present invention is not limited to the following embodiments.

[0024] Specific Implementation Example 1: Please refer to... Figure 1 - Figure 7 A lamp includes a carrier 2 and an atmosphere component 1 disposed on the carrier 2. The atmosphere component 1 includes a hollow component 11 formed by at least three mirrors. The mirrors of one or more of the hollow component 11 are arranged with their mirror surfaces facing inward to form an internal reflection cavity for light effect presentation. A first light source assembly 5 is disposed between the carrier 2 and the hollow component 11; the top of the hollow component 11 is an open end, which is a viewing window for light output, and the first light source assembly 5 is distributed on the outside of the hollow component 11.

[0025] The hollow component 11 is a three-dimensional conical structure; the conical structure can be a rhombus, a multi-rhombus prism, a frustum, or a truncated cone, etc.

[0026] One or more of the mirrors are transparent or semi-transparent mirrors with their surfaces facing the inside of the hollow component, so that the light emitted by the first light source assembly can pass through the mirrors and be reflected by them.

[0027] The mirror surface mentioned above refers to the front of the mirror, that is, the smooth surface used for reflecting images.

[0028] The coating on the back of the mirror features lines, symbols, text, patterns, and designs, which can be achieved through coating, pasting, carving, or hollowing out.

[0029] In one embodiment, the coating on the mirror can be configured as lines, symbols, text, patterns, designs, etc. as needed. This part is a light-transmitting part, and the light emitted by the first light source component 5 shines into the hollow component from the light-transmitting part.

[0030] The mirrors on one or more sides of the hollow component are reflectors with their mirror surfaces facing the inside of the hollow component to reflect light entering the hollow component; the reflectors also include a coated surface with its coated surface facing the outside of the hollow component.

[0031] The side of a reflector that reflects light is the mirror surface.

[0032] Reflective mirrors can be common glass mirrors, made from flat glass or tinted glass as the base material, and manufactured through processes such as silver plating, steel plating, and multi-layer coating.

[0033] When the mirror has three sides: In one embodiment, the mirror includes two first mirrors 111 and one second mirror 112; The first mirror 111 is a transparent or semi-transparent mirror, and the second mirror 112 is a reflective mirror; or, the first mirror 111 is a reflective mirror, and the second mirror 112 is a transparent or semi-transparent mirror; In another embodiment, the mirror includes a first mirror 111 and two second mirrors 112; The first mirror 111 is a transparent or semi-transparent mirror, and the second mirror 112 is a reflective mirror; or, the first mirror 111 is a reflective mirror, and the second mirror 112 is a transparent or semi-transparent mirror.

[0034] The maximum outer diameter of the hollow component 11 decreases or increases from top to bottom, and the open end is located at the top of the hollow component 11.

[0035] The open end is located at the top of the hollow component 11, allowing users to observe changes in the lighting through a viewing window.

[0036] Preferably, the hollow component 11 is a triangular prism or a multi-prismatic prism.

[0037] Optionally, the outer surfaces of one or more mirrors may be partially or completely coated, pasted, carved, or hollowed out with lines, symbols, words, patterns, designs, etc.

[0038] The first light source assembly 5 is arranged around the outer periphery of the hollow component 11; the first light source assembly 5 is a flexible light strip or a rigidly bent light strip.

[0039] The first light source component 5 is one or more of the following: red light source, green light source, blue light source, cool white light source, and warm white light source.

[0040] Each mirror is arranged in a sheet-like shape; adjacent mirrors are arranged at an angle; optionally, all mirrors have the same shape and size.

[0041] Optionally, the inner or outer wall of the mirror may be provided with a reflective layer.

[0042] Optionally, a reflective layer may be provided on a portion of the inner or outer wall of the mirror to form a semi-transparent reflective surface.

[0043] Optionally, the reflective layer can be an electroplated reflective layer or other reflective layers, such as a metallized thin film layer, a metal vapor deposition layer, or a deposited metal layer.

[0044] The carrier 2 is a cover that is transparent to light from one or more sides. A control cabin 13 is provided inside the cover. A drive controller 3 and a built-in power supply 4 are provided inside the control cabin 13. The built-in power supply 4 is electrically connected to the first light source assembly 5 via the drive controller 3. A control button 12 that is electrically connected to the drive controller 3 is provided outside the control cabin 13. Alternatively, the carrier 2 is a translucent shell that emits light around the entire circumference, with a base at its bottom. The base contains a drive controller 3 and a built-in power supply 4. The built-in power supply 4 is electrically connected to the first light source assembly 5 via the drive controller 3. A control button 12, which is electrically connected to the drive controller 3, is located outside the base.

[0045] The output terminal of the drive controller 3 is electrically connected to the input terminal of the first light source component 5 to control the opening and closing of the first light source component 5.

[0046] Preferably, the lamp also includes a music rhythm lighting controller electrically connected to the drive controller 3; the music rhythm lighting controller is a controller that can control the color, brightness or flashing effect of the lamp according to the rhythm of the music; the music rhythm lighting controller analyzes the frequency and rhythm of the music through the input of audio signals, thereby adjusting the performance of the lamp to synchronize with the changes in the music.

[0047] The lights automatically adjust their brightness and color according to the rhythm of the music or changes in the environment via a music-based lighting controller.

[0048] A speaker 6 is provided inside or outside the carrier 2; in one embodiment, the speaker 6 is electrically connected to the drive controller 3 to conduct through the drive.

[0049] The other end of the viewing window of the hollow component 11 is a closed end, that is, the bottom of the hollow component 11 is a closed end; or, The other end of the viewing window of the hollow component 11 is an open end, that is, the bottom of the hollow component 11 is an open end, and one or more of the following are provided at the open end: a light-transmitting mirror, a display screen, and an LED module.

[0050] In one embodiment, a light-collecting prism 7 is installed at the bottom of the hollow component 11, and a corresponding first light source component 5 is installed below the light-collecting prism 7.

[0051] In one implementation, such as Figure 8 - Figure 9 As shown, the atmosphere component 1 also includes a support frame 14; the hollow component 11 is installed inside the support frame 14 and is fixedly connected to the support frame 14. The support frame 14 includes several connecting strips, a top plate and a bottom plate; the connecting strips are arranged around the outer periphery of the hollow component 11, the top plate is fixedly set on the top of the connecting strips, and the bottom plate is fixedly set on the bottom of the connecting strips and fixedly connected; the top plate has an opening from top to bottom that matches the viewing window of the hollow component 11 so that the interior of the hollow component 11 can be observed. Preferably, the connecting strip is arranged parallel to the mirror on the same side as the connecting strip.

[0052] The top of the support frame 14 is fixedly connected to the inner side wall of the top of the shell 2. The inner side wall of the bottom of the support frame 14 and the hollow component 11 are spaced apart to form a receiving groove. A three-dimensional crystal block is embedded in the receiving groove. The crystal block can be fixedly set in the receiving groove or not fixedly set, and can rotate in the receiving groove. The crystal block can be a glass crystal, a light-transmitting mirror, etc., and can be a regular shape such as a cube, sphere, cuboid, or polyhedron, or an irregular shape. The carrier 2 includes a first housing 21 and a second housing 22, with the second housing 22 being installed and connected to the first housing 21; the second housing 22 is a light-transmitting element.

[0053] The lamp also includes a second light source assembly, which is disposed inside the carrier 2. The light emitted by the second light source assembly is emitted outward through the second housing 22; this arrangement enables the lamp to provide illumination.

[0054] Preferably, the second light source component is a white light source, such as a warm white light source or a neutral white light source.

[0055] The second light source assembly is electrically connected to the drive controller.

[0056] Optionally, the second housing 22 is tapered.

[0057] Optionally, the hollow component is arranged in an inverted cone shape relative to the viewing window.

[0058] The above description is merely a preferred embodiment of this application; however, the scope of protection of this application is not limited thereto; any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this application, based on the technical solution and its improved concept, should be covered within the scope of protection of this application.

Claims

1. A lamp characterized by: The atmosphere assembly includes at least three mirrors arranged in a hollow component; one or more of the mirrors in the hollow component is arranged with a mirror surface facing the inside to form an internal reflection cavity for light effect presentation. The first light source assembly is arranged between the carrier and the hollow component, one end of the hollow component is an open end, and the open end is a visible window end; the first light source assembly is distributed on the outside of the hollow component.

2. The lamp of claim 1, wherein: One or more of the mirrors in the hollow component is a light-transmitting mirror or a semi-light-transmitting mirror, and the mirror surface faces the inside.

3. The lamp of claim 1, wherein: One or more of the mirrors in the hollow component is a mirror, and the mirror surface faces the inside, and a coating layer faces the outside.

4. The lamp of claim 1, wherein: The hollow component is a three-dimensional conical structure; the conical structure is a rhombic prism, a multi-rhombic prism, a prism, or a truncated cone.

5. The lamp of claim 1, wherein: The maximum outer diameter of the hollow component decreases or increases from top to bottom, and the open end is arranged at the top of the hollow component.

6. The lamp of claim 1, wherein: The outer side of one or more of the mirrors in the hollow component is partially or entirely coated, pasted, engraved, or hollowed with lines, symbols, characters, patterns, or textures.

7. The lamp of claim 1, wherein: Each mirror is arranged in a sheet shape; each adjacent mirror is arranged at an angle.

8. The lamp of claim 1, wherein: The inner wall or outer wall of the mirror is provided with a reflective layer as a reflective mirror surface, and the reflective layer is provided with lines, symbols, characters, patterns, or textures.

9. The lamp of claim 1, wherein: The inner wall or outer wall of the mirror is partially electroplated with a reflective layer to form a semi-reflective mirror surface.

10. The lamp of claim 1, wherein: The first light source assembly is one or more of a red light source, a green light source, a blue light source, a cool white light source, and a warm white light source.

11. The lamp of claim 1, wherein: The carrier is a single-sided or multi-sided light-transmitting cover, and the cover is provided with a control cabin; the control cabin is provided with a drive controller and an internal power supply; the internal power supply is electrically connected to the first light source assembly through the drive controller; and the control cabin is provided with a control button electrically connected to the drive controller. Alternatively, the carrier is a full-perimeter light-emitting light-transmitting shell, and the bottom of the shell is provided with a base; the base is provided with a drive controller and an internal power supply; the internal power supply is electrically connected to the first light source assembly through the drive controller; and the base is provided with a control button electrically connected to the drive controller.

12. The lamp of claim 9, wherein: The music motion light controller is electrically connected to the drive controller.

13. The lamp of claim 1, wherein: The carrier is provided with a sound inside or outside.

14. The lamp of claim 1, wherein: The end of the hollow component away from the open end is a closed end; or, The end of the hollow component away from the open end is an open end, and the open end is provided with one or more of a light-transmitting mirror, a display screen, and an LED module.

15. The lamp of claim 1, wherein: The atmosphere assembly further includes a support frame; the conical hollow prism is installed in the support frame and is connected to the support frame; The inner wall of the bottom of the support frame and the conical hollow prism are spaced apart to form an accommodation groove; and a three-dimensional crystal block is embedded in the accommodation groove.

16. The lamp of claim 1, wherein: The second light source assembly is further included; the carrier includes a first shell and a second shell; and the second shell is connected to the first shell. The second shell is a light-transmitting piece; the second light source assembly is arranged in the carrier, and the light emitted by the second light source assembly is emitted outward through the second shell.