Illumination module of green lamp

By separating the lighting module and the blue sky module into different cavities, and using an adjustable rotating base and light-transmitting cover, combined with adjustable color temperature LED beads, the problems of large thickness and fixed light spot angle of existing blue sky lamps are solved, realizing flexible installation of lamps and diversified lighting effects.

CN223755231UActive Publication Date: 2026-01-02FOSHAN ELECTRICAL & LIGHTING +1
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Patent Information

Application Number
CN202423306140.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-02
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing skylights are thick and have a fixed beam angle, making them difficult to adapt to the installation needs of different decoration environments. Furthermore, the distance between the light source and the wall is fixed and cannot be flexibly adjusted.

Method used

The lighting module and the blue sky module are housed in separate cavities. An adjustable rotating base and a light-transmitting cover are used, combined with LED beads with adjustable color temperature, to achieve angle adjustment and color change of the lighting module.

Benefits of technology

The height of the light fixtures has been lowered to accommodate different installation distances, providing a soft and comfortable lighting effect and meeting diverse decoration needs.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223755231U_ABST
Patent Text Reader

Abstract

The utility model discloses a lighting module of a green lamp. The green lamp comprises a lamp body and a blue sky module. The lighting module is arranged in the lamp body and located on one side of the blue sky module. The blue sky module comprises a Rayleigh scattering plate and a first light emitting unit, and the first light emitting unit is used for emitting light to the Rayleigh scattering plate; the lighting module comprises a second light-emitting unit and a dimming assembly, the second light-emitting unit is arranged in the dimming assembly, and the dimming assembly comprises a reflection cup and / or a convex lens. According to the blue sky lighting lamp, the lighting module and the blue sky module are arranged in the different containing cavities respectively, the blue sky atmosphere lighting effect is provided, the blue sky lighting lamp can also be used as an indoor lighting lamp, and the height of the whole lamp is greatly reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a lighting device especially relates to a lighting module of sky blue lamp. BACKGROUND

[0002] With the development of economy, people's living standard promotion, healthy living environment begins to become the pursuit of the masses. For lighting device, simulation natural light is the biggest challenge. Under this big environment, sky blue lamp emerges as the times require, and the main effect of this lamp is to simulate the visual effect of the sky, and provide a skylight-like lighting effect for the space that cannot be irradiated by sunlight in the room.

[0003] The sky blue lamp in the prior art is mostly inclined to the Rayleigh scattering plate to realize the visual effect of simulating the sky. In order to make the scattering plate light effect uniform, the light source and the light outlet need to keep a large distance, resulting in that the overall thickness of the lamp is large. At the same time, since the light source is located inside the lamp, the light emitting angle is fixed, and the light spot angle irradiated to the wall cannot be changed, so that the lamp must be installed at a specific distance during installation, and it is difficult to cope with different decoration environments of customers. UTILITY MODEL CONTENT

[0004] The utility model discloses a lighting module of sky blue lamp can greatly reduce the height of whole lamp, and can also be used as indoor lighting lamp.

[0005] In order to solve the above technical problems, the utility model provides a kind of lighting module of sky blue lamp, the sky blue lamp includes lamp body and blue sky module;The lighting module is located in the lamp body, in the side of the blue sky module;The blue sky module includes Rayleigh scattering plate and first light emitting unit, and the first light emitting unit is used to emit light to the Rayleigh scattering plate;The lighting module includes second light emitting unit and light adjusting component, and the second light emitting unit is located in the light adjusting component, and the light adjusting component includes reflecting cup and / or convex lens.

[0006] As the improvement of the above scheme, the lighting module further includes light-transmitting cover, and the light-transmitting cover covers the surface of the light adjusting component.

[0007] As the improvement of the above scheme, the lamp body has a lighting module accommodating cavity, and the lighting module accommodating cavity is located at the intersection of the bottom surface and the side surface of the lamp body;The lighting module is located in the lighting module accommodating cavity.

[0008] As the improvement of the above scheme, the light-transmitting cover is arc-shaped, and the upper edge is smoothly connected with the side surface of the lamp body, and the lower edge is smoothly connected with the bottom surface of the lamp body.

[0009] As the improvement of the above-mentioned scheme, the lighting module further comprises a rotating seat, a rotating shaft is arranged on the side of the rotating seat, and the rotating seat is connected with the lamp body through the rotating shaft; the second light-emitting unit and the light adjusting assembly are arranged on the rotating seat.

[0010] As the improvement of the above-mentioned scheme, the rotating shaft of the rotating seat is further connected with a manual knob and / or a rotating motor.

[0011] As the improvement of the above-mentioned scheme, the light adjusting assembly further comprises a mounting seat, and the reflecting cup and / or the convex lens are arranged on the mounting seat.

[0012] As the improvement of the above-mentioned scheme, the mounting seat comprises a positioning hole and a female buckle, the convex lens is arranged above the positioning hole, the reflecting cup is provided with a male buckle, and the reflecting cup is fixed through the male buckle and the female buckle.

[0013] As the improvement of the above-mentioned scheme, the reflecting cup comprises an upper reflecting surface and a lower reflecting surface, and the inclination angle of the upper reflecting surface is greater than that of the lower reflecting surface.

[0014] As the improvement of the above-mentioned scheme, the second light-emitting unit is a color temperature adjustable LED lamp bead or a combination of LED lamp beads with different fixed color temperatures.

[0015] The embodiment has the following beneficial effects:

[0016] In the embodiment, the lighting module and the blue sky module are arranged in different cavities, so that the lamp can be used as an indoor lighting lamp in addition to providing a blue sky atmosphere lighting effect. The main lighting part is arranged on the side of the lamp, which greatly reduces the height of the lamp and realizes the installation purpose of the surface-mounted lamp.

[0017] The lighting module can be adjusted in angle through the knob to match different installation distances, and the light color can be changed through the adjustable color temperature light source to cope with different scenes required by customers. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is a whole structure schematic view of the lighting module of the clear sky lamp according to the present application;

[0019] Figure 2 is a structure schematic view of the lighting module of the clear sky lamp according to the present application after the light-transmitting cover is hidden;

[0020] Figure 3 is an assembly relationship view of the lighting module and the blue sky module according to the present application;

[0021] Figure 4 is a structure schematic view of the rotating seat according to the present application;

[0022] Figure 5 is a structural schematic diagram of the light adjusting assembly. DETAILED DESCRIPTION

[0023] In order to make the purpose, technical scheme and advantages of the utility model more clear, the utility model will be described in further detail below in combination with the drawings. It is hereby declared that the up, down, left, right, front, back, inner and outer directions appearing or about to appear in the text of the utility model are based on the drawings of the utility model, and they are not specific limitations on the utility model.

[0024] As Figures 1-5 shown, the utility model embodiment provides a lighting module of a blue sky lamp, the blue sky lamp includes a lamp body 100 and a blue sky module 200; the lighting module 300 is arranged in the lamp body 100 and is located at one side of the blue sky module 200; the blue sky module 200 includes a Rayleigh scattering plate 1 and a first light emitting unit 2, the first light emitting unit 2 is arranged at one side or above the Rayleigh scattering plate 1 and is used to emit light to the Rayleigh scattering plate 1; the lighting module 300 includes a second light emitting unit 3 and a light adjusting assembly 4, the second light emitting unit 3 is arranged in the light adjusting assembly 4, and the light adjusting assembly 4 includes a reflecting cup 5 and / or a convex lens 6.According to specific requirements, the second light emitting unit 3 can be provided with the reflecting cup 5 and the convex lens 6 simultaneously or can be provided with one of them alone.

[0025] In this embodiment, the lighting module 300 and the blue sky module 200 are arranged in different cavities, so that the lamp can be used as an indoor lighting lamp in addition to providing a blue sky atmosphere lighting effect.The main lighting part is arranged on the side of the lamp, which greatly reduces the height of the whole lamp and realizes the installation purpose of surface mounting.The lighting module 300 can be angle-adjusted through a knob to match different installation distances, and the light color can be changed through an adjustable color temperature light source to cope with different scenes required by customers.

[0026] In order to protect the lighting module 300, the lighting module 300 further includes a light-transmitting cover 7, and the light-transmitting cover 7 covers the surface of the light adjusting assembly 4.

[0027] Preferably, the lamp body 100 has a lighting module accommodating cavity 101, and the lighting module accommodating cavity 101 is located at the intersection of the bottom surface and the side surface of the lamp body 100; and the lighting module 300 is arranged in the lighting module accommodating cavity 101.

[0028] It should be noted that by arranging the lighting module accommodating cavity 101 at the intersection of the bottom surface and the side surface of the lamp body 100, light can be emitted from the side surface and the bottom surface of the lamp, and the angle can be adjusted greatly.

[0029] More preferably, the light-transmitting cover 7 is arc-shaped, with the upper edge smoothly connected to the side surface of the lamp body 100 and the lower edge smoothly connected to the bottom surface of the lamp body 100. The arc-shaped light-transmitting cover 7 can reduce the focusing of light and the shadow, and can also reduce glare, thereby providing a softer and more comfortable lighting effect. By smoothly connecting the upper edge of the light-transmitting cover 7 to the side surface of the lamp body 100 and the lower edge to the bottom surface of the lamp body 100, the structural strength between the light-transmitting cover 7 and the lamp body 100 can be enhanced, stress concentration caused by improper connection can be reduced, and the durability of the lamp can be improved. The arc-shaped light-transmitting cover 7 cooperates with the subsequent rotating seat to control different exit angles and form light spots at different heights on the wall surface.

[0030] In order to realize the control of the irradiation height, the lighting module 300 further comprises a rotating seat 8, the side surface of the rotating seat 8 is provided with a rotating shaft 81, the rotating seat 8 is connected to the lamp body 100 through the rotating shaft 81, and the second light-emitting unit 3 and the light adjustment assembly 4 are arranged on the rotating seat 8. The rotating shaft 81 of the rotating seat 8 is further connected with a manual knob 82 and / or a rotating motor. In the embodiment, the rotating shaft 81 of the rotating seat 8 is connected with the manual knob 82, and the user can adjust the angle of the rotating seat 8 by directly rotating the manual knob 82, so as to control the irradiation height. In another embodiment, the rotating shaft 81 of the rotating seat 8 is further connected with a rotating motor, and the rotating seat 8 can be remotely or timed controlled to swing up and down by the rotating motor, so as to automatically control the irradiation height.

[0031] In some embodiments, the light adjustment assembly 4 further comprises a mounting seat 41, and the light-reflecting cup 5 and / or the convex lens 6 are arranged on the mounting seat 41. The mounting seat 41 comprises a positioning hole 411 and a female buckle 412, the convex lens 6 is arranged above the positioning hole 411, the light-reflecting cup 5 is provided with a male buckle 53, and the light-reflecting cup 5 is fixed by clamping the male buckle 53 and the female buckle 412.

[0032] It should be noted that in the above manner, the mounting seat 41 can be fixed on the rotating seat 8 in advance by means of bolts or the like, and the bottom plate provided with the second light-emitting unit 3 can be pressed tightly on the rotating seat 8 through the mounting seat 41. The mounting seat 41 is provided with a positioning hole 411, the second light-emitting unit 3 is located in the positioning hole 411, and the convex lens 6 is arranged above the positioning hole 411 to converge the light emitted by the second light-emitting unit 3. The light-reflecting cup 5 is arranged outside the convex lens 6 to further converge and collimate the light treated by the convex lens 6.

[0033] Preferably, the light-reflecting cup 5 comprises an upper light-reflecting surface 51 and a lower light-reflecting surface 52, the inclination angle of the upper light-reflecting surface 51 is greater than that of the lower light-reflecting surface 52. By setting light-reflecting surfaces with different reflection angles, the directivity of the outgoing light can be further enhanced, and glare can be reduced.

[0034] A plurality of the second light-emitting units 3, light-reflecting cups 5 and convex lenses 6 are arranged in a row on the rotating seat 8, forming a linearly arranged lighting structure, which can form a rectangular light spot on a wall or a floor. When the lighting module 300 is irradiated to the center of the wall, the included angle between the light-reflecting cup 5 and the blue sky module 200 is 35 degrees. Based on this angle, the lighting module 300 can be swung back and forth between 20°-50° by a knob, so as to adapt to different installation distances required by different customers. When the distance is too far, the swing angle of the lighting module 300 can be adjusted to ensure that the light spot of the light irradiation remains on the wall and does not fall to the ground, affecting the overall effect. At the same time, the second light-emitting unit 3 uses LED lamp beads with adjustable color temperature or uses a combination of LED lamp beads with different fixed color temperatures to simulate the light and shadow effect of the sun irradiating into the window at different time periods. In the morning mode, the angle of the lighting module 300 is turned to 50 degrees, and the 4000K lamp beads are lit at this time; in the noon mode, the angle of the lighting module 300 is turned to 35 degrees, and the 5700K lamp beads are lit at this time; in the evening mode, the angle of the main lighting module 300 is turned to 20 degrees, and the 1800K lamp beads are lit at this time. The three different modes can be adjusted according to customer preferences.

[0035] The above is the preferred embodiment of the present application, it should be pointed out that, for those skilled in the technical field, without departing from the principles of the present application, can make a number of improvements and refinements, these improvements and refinements also considered as the protection scope of the present application.

Claims

1. A lighting module for a sky blue lamp, characterized in that The blue sky lamp comprises a lamp body and a blue sky module; The lighting module is arranged in the lamp body and located at one side of the blue sky module; The blue sky module comprises a Rayleigh scattering plate and a first light emitting unit for emitting light to the Rayleigh scattering plate; The lighting module comprises a second light emitting unit and a light adjusting assembly, the second light emitting unit is arranged in the light adjusting assembly, and the light adjusting assembly comprises a reflecting cup and / or a convex lens.

2. The sky- lit luminaire lighting module of claim 1, wherein, The lighting module further comprises a light-transmitting cover covering the surface of the light adjusting assembly.

3. The sky- lit luminaire lighting module of claim 2, wherein, The lamp body has a lighting module accommodating cavity located at the intersection of the bottom surface and the side surface of the lamp body; the lighting module is arranged in the lighting module accommodating cavity.

4. The sky- lit luminaire lighting module of claim 3, wherein, The light-transmitting cover is arc-shaped, the upper edge thereof is smoothly connected with the side surface of the lamp body, and the lower edge thereof is smoothly connected with the bottom surface of the lamp body.

5. The sky- lit luminaire lighting module of claim 1, wherein, The lighting module further comprises a rotating seat, the side surface of the rotating seat is provided with a rotating shaft, the rotating seat is connected with the lamp body through the rotating shaft; the second light emitting unit and the light adjusting assembly are arranged on the rotating seat.

6. The sky- lit luminaire lighting module of claim 5, wherein, The rotating shaft of the rotating seat is further connected with a manual knob and / or a rotating motor.

7. The skyli ght lighting module of claim 1, wherein, The light adjusting assembly further comprises a mounting seat, the reflecting cup and / or the convex lens are arranged on the mounting seat.

8. The sky- lit luminaire lighting module of claim 7, wherein, The mounting seat comprises a positioning hole and a female buckle, the convex lens is arranged above the positioning hole, the reflecting cup is provided with a male buckle, and the reflecting cup is fixedly connected with the female buckle through the male buckle.

9. The skyli ght lighting module of claim 1, wherein, The reflecting cup comprises an upper reflecting surface and a lower reflecting surface, and the inclination angle of the upper reflecting surface is greater than that of the lower reflecting surface.

10. The skyli ght lighting module of claim 1, wherein, The second light emitting unit is a color temperature adjustable LED lamp bead or a combination of LED lamp beads with different fixed color temperatures.