Ceiling type multispectral healthy illuminating lamp
By using an insulating sealing device in the ceiling-mounted multispectral health lighting, the problem of lamp damage caused by moisture intrusion is solved, resulting in a longer service life and safety, ensuring no current leakage, and improving the overall performance of the lamp.
Patent Information
- Application Number
- CN202520252416.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Existing ceiling-mounted multispectral health lights in environments such as garages suffer from uneven ceiling surfaces that create gaps. Under high temperature and humidity conditions in summer, moisture can penetrate the interior of the light fixture, damaging the LED chips, light panel, and controller, thus affecting its lifespan and safety.
An insulating sealing device is used, including a rectangular insulating sealing frame and an insulating gasket, which is fixed to the garage ceiling with expansion bolts to prevent moisture intrusion and to provide insulation in case of leakage, preventing current conduction.
It effectively prevents moisture intrusion, protects the core components of the lamp from damage, extends service life and safety, ensures no current leakage, and enhances safety and lighting effect.
Smart Images

Figure CN223840326U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of lighting lamps, specifically relating to a ceiling-mounted multispectral health lighting lamp. Background Technology
[0002] With the improvement of people's quality of life and the increase in demand for healthy lighting, ceiling-mounted multispectral healthy lighting lamps have been widely used in various places, especially spaces such as garages. Multispectral lighting can simulate the spectral characteristics of natural light, providing a more comfortable and healthy lighting environment and meeting people's lighting needs in different scenarios.
[0003] However, existing ceiling-mounted multispectral health lights have some problems that urgently need to be solved in actual use. Currently, most of these lights are installed directly on the garage ceiling. Since it is difficult to achieve a perfectly flat garage ceiling during construction, uneven surfaces are common. When the lights are installed on such surfaces, gaps easily appear between the lights and the ceiling. Especially in summer, the environmental conditions inside garages are harsh, with high temperatures, high humidity, and extremely high water vapor content. This moisture can seep into the lights through the gaps between the lights and the ceiling. Once moisture enters the lights, it can cause serious damage to core components such as LED chips, light panels, and controllers. LED chips exposed to a humid environment for extended periods are prone to short circuits and burnout, affecting lighting performance and lifespan. Moisture on the light panels can affect circuit performance, potentially leading to unstable lighting or even malfunction. As the core of the lights, the controller is even more sensitive to humidity; moisture intrusion can damage electronic components, causing the lights to lose their control function. Utility Model Content
[0004] The purpose of this utility model is to provide a ceiling-mounted multispectral health lighting lamp to solve the problem mentioned in the background art that the environmental conditions in garages are relatively harsh, with high summer temperatures, high humidity, and extremely high water vapor content in the air. This water vapor can penetrate into the lamp through the gap between the lamp and the garage ceiling, causing serious damage to the core components of the lamp, such as the lamp beads, lamp board, and controller.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a ceiling-mounted multispectral health lighting lamp, comprising a ceiling-mounted lamp panel and a rectangular lampshade disposed at the bottom of the ceiling-mounted lamp panel. A lampshade mounting sealing frame is also fixed to the outer wall of the bottom of the ceiling-mounted lamp panel. The top of the rectangular lampshade is fitted onto the outside of the lampshade mounting sealing frame. A wiring hole is provided inside the center of the ceiling-mounted lamp panel. Lamp panel mounting screw holes are provided inside the ceiling near the four corners of the ceiling-mounted lamp panel. Expansion screws can be inserted into the multiple lamp panel mounting screw holes, and the ceiling-mounted lamp panel is fixed to the garage ceiling by multiple expansion screws. An insulating sealing device is provided outside the wiring hole.
[0006] Preferably, the insulating sealing device includes a rectangular frame-type embedded groove, a rectangular insulating sealing frame, and insulating spacers. The top outer wall of the top mounting light panel is provided with a downwardly recessed rectangular frame-type embedded groove, which surrounds the wiring hole. A rectangular insulating sealing frame is inserted into the rectangular frame-type embedded groove. Insulating spacers are provided on the top four outer walls of the rectangular insulating sealing frame, and multiple insulating spacers are located on the upper side of the top outer wall of the top mounting light panel.
[0007] Preferably, both the rectangular insulating sealing frame and the insulating spacer are made of soft rubber. The rectangular insulating sealing frame is hollow inside, and the top of the rectangular insulating sealing frame can be compressed and deformed downwards when pressed.
[0008] Preferably, the thickness of the rectangular insulating sealing frame is twice the depth of the rectangular frame-type embedded groove, and the plurality of insulating spacers can be completely attached to the outer wall of the top of the top mounting light panel.
[0009] Preferably, the outer walls of the rectangular lampshade are flush with the outer walls of the top mounting plate, and the rectangular lampshade and the lampshade mounting sealing frame are fixedly connected by multiple lampshade fixing screws.
[0010] Preferably, the top-mounted lamp panel is made of aluminum alloy, and a frame-type mounting bracket is fixed to the outer wall of the bottom end of the top-mounted lamp panel. The frame-type mounting bracket is located inside the frame of the lampshade mounting sealing frame, and the frame-type mounting bracket does not contact the lampshade mounting sealing frame.
[0011] Preferably, the bottom of the frame mounting bracket is fixed with an LED light board by multiple screws, and multiple LED beads are equidistantly arranged at the bottom of the LED light board. The multiple LED beads can emit light sources of different wavelengths to achieve the purpose of multispectral lighting.
[0012] Preferably, the frame mounting bracket has a controller installed inside, and the controller is installed on the top of the LED light panel and is electrically connected to the LED light panel.
[0013] Preferably, a light-transmitting plate is provided inside the bottom of the rectangular lampshade. The light-transmitting plate is made of acrylic material and is located directly below the LED light panel.
[0014] Compared with the prior art, this utility model provides a ceiling-mounted multispectral health lighting lamp with the following beneficial effects:
[0015] This invention features a novel insulating sealing device added to the top of the roof-mounted light panel. This device completely protects the outside of the wiring hole inside the center of the roof-mounted light panel. After the roof-mounted light panel is installed onto the garage roof using multiple expansion screws, the insulating sealing device is pressed between the roof-mounted light panel and the outer wall of the garage roof. This effectively prevents moisture in the air from continuously intruding into the light fixture through the wiring hole. Furthermore, in the event of a leakage current, the insulating sealing device provides insulation, preventing current from being transmitted through the roof-mounted light panel into the garage structure. The rectangular insulating sealing frame... Both the insulating spacers and the insulating pads are made of soft rubber, which has excellent insulation properties. When leakage occurs, it can effectively block the current path. Moreover, the rectangular insulating sealing frame is hollow inside, and can be compressed and deformed downwards when the top is pressed. This allows it to better fit the contact surface when squeezed between the top-mounted light panel and the outer wall of the garage roof, further enhancing the insulation effect and preventing current leakage from the edges. At the same time, multiple insulating spacers can completely fit against the top outer wall of the top-mounted light panel, which also provides additional insulation protection. This multi-faceted protection ensures that in the event of leakage, the current will not be conducted to the garage building, greatly improving the safety of use. Attached Figure Description
[0016] Figure 1 This is a top-view three-dimensional structural diagram of a ceiling-mounted multispectral health lighting lamp according to the present invention.
[0017] Figure 2 This is a three-dimensional structural diagram of a ceiling-mounted multispectral health lighting lamp of the present invention, viewed from below.
[0018] Figure 3 This is a front view schematic diagram of the structure of a ceiling-mounted multispectral health lighting lamp according to the present invention.
[0019] Figure 4 This is a schematic diagram of the upward-view disassembly structure of a ceiling-mounted multispectral health lighting lamp according to this utility model.
[0020] Figure 5 This is a three-dimensional structural diagram of the insulating and sealing device of this utility model.
[0021] In the diagram: 1. Top mounting plate; 2. Rectangular lampshade; 3. Mounting screw holes for the plate; 4. Fixing screws for the lampshade; 5. Wiring hole; 6. Insulation and sealing device; 7. Transparent plate; 8. Frame mounting bracket; 9. LED plate; 10. LED beads; 11. Lampshade mounting and sealing frame; 12. Rectangular frame recessed groove; 13. Rectangular insulation and sealing frame; 14. Insulation gasket. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] This utility model provides, for example Figure 1-5 The ceiling-mounted multispectral health lighting lamp shown includes a ceiling-mounted light panel 1 and a rectangular lampshade 2 disposed at the bottom of the ceiling-mounted light panel 1. A lampshade mounting sealing frame 11 is also fixed to the outer wall of the bottom end of the ceiling-mounted light panel 1. The top of the rectangular lampshade 2 is fitted onto the outside of the lampshade mounting sealing frame 11. A wiring hole 5 is provided inside the center of the ceiling-mounted light panel 1. Light panel mounting screw holes 3 are provided inside the ceiling-mounted light panel 1 near its four corners. Expansion screws can be inserted into the multiple light panel mounting screw holes 3, and the ceiling-mounted light panel 1 is fixed to the garage ceiling by multiple expansion screws. The mounting plate 1 is made of aluminum alloy. In terms of structural design, the top mounting plate 1 serves as the installation base and main support structure of the entire lamp. The aluminum alloy material has advantages such as light weight, high strength, and good heat dissipation performance. This not only facilitates the installation of the lamp, but also effectively dissipates the heat generated during the operation of the lamp, extending the service life of the internal electronic components of the lamp. The mounting screw holes 3 on the plate allow for the insertion of expansion screws, which can firmly fix the top mounting plate 1 to the garage ceiling, ensuring the overall stability of the lamp.
[0024] like Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, the outer walls of the rectangular lampshade 2 are flush with the outer walls of the top mounting plate 1. The rectangular lampshade 2 is fixedly connected to the lampshade mounting sealing frame 11 by multiple lampshade fixing screws 4. The lampshade mounting sealing frame 11 is fixed to the bottom of the top mounting plate 1, providing a precise installation position and sealing protection for the rectangular lampshade 2. The top of the rectangular lampshade 2 is fitted onto the outside of the lampshade mounting sealing frame 11 and connected by multiple lampshade fixing screws 4. This design not only ensures a firm installation of the lampshade but also effectively prevents dust, moisture, etc., from entering the lamp fixture, protecting the internal electronic components. Furthermore, the flush design of the outer walls of the rectangular lampshade 2 with the outer walls of the top mounting plate 1 makes the overall appearance of the lamp fixture neater and more aesthetically pleasing. A light-transmitting plate 7 is installed inside the bottom of the lampshade 2. The light-transmitting plate 7 is made of acrylic material and is located directly below the LED light panel 9. The acrylic material has the characteristic of high light transmittance, which can effectively scatter the light emitted by the LED beads 10 evenly, making the light in the lighting area softer and more uniform, avoiding direct light and glare, and further improving the comfort of lighting. At the same time, the acrylic material also has a certain strength and wear resistance, which can protect the internal LED light panel 9 and beads from damage by dust, moisture and external objects, and extend the service life of the lamp.
[0025] like Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, a frame-type mounting bracket 8 is fixed to the outer wall of the bottom end of the top-mounted light panel 1. The frame-type mounting bracket 8 is located inside the frame of the lampshade mounting sealing frame 11. The frame-type mounting bracket 8 does not contact the lampshade mounting sealing frame 11. The bottom end of the frame-type mounting bracket 8 is fixed to the LED light panel 9 by multiple screws. The frame-type mounting bracket 8 is fixed to the bottom end of the top-mounted light panel 1 and is located inside the frame of the lampshade mounting sealing frame 11 but does not contact it. This layout provides reasonable space for the internal structure arrangement of the lamp. On the one hand, the frame-type mounting bracket 8 provides a stable mounting platform for the LED light panel 9. The LED light panel 9 is fixed to its bottom end by multiple screws, ensuring the stability of the LED light panel 9. On the other hand, this non-contact design avoids mutual interference and is conducive to the dissipation of internal heat and the layout of the circuit. The bottom end of the LED light panel 9 Multiple LED beads 10 are equidistantly arranged, each emitting light at different wavelengths to achieve multispectral lighting. A controller is installed inside the frame mounting bracket 8, mounted on the top of the LED light panel 9 and electrically connected to it. Regarding the lighting principle, multiple LED beads 10 are positioned at the bottom of the LED light panel 9, emitting light at different wavelengths. By controlling the LED light panel 9 with the controller, the luminous state of each LED bead 10 can be precisely adjusted, thus achieving multispectral lighting. The combination of different wavelengths of light can simulate the spectral characteristics of natural light, providing more comfortable and healthy lighting conditions for the garage environment, meeting people's lighting needs in different scenarios, and improving the quality and effect of lighting.
[0026] like Figure 1 and Figure 5As shown, an insulating sealing device 6 is provided on the outside of the wiring hole 5. The insulating sealing device 6 includes a rectangular frame-type recessed groove 12, a rectangular insulating sealing frame 13, and insulating gaskets 14. The outer wall of the top of the top mounting light panel 1 has a downwardly recessed rectangular frame-type recessed groove 12, which surrounds the outer perimeter of the wiring hole 5. The rectangular insulating sealing frame 13 is inserted into the rectangular frame-type recessed groove 12. Insulating gaskets 14 are provided on the outer walls of the top four sides of the rectangular insulating sealing frame 13. Multiple insulating gaskets 14 are located on the upper side of the top outer wall of the top of the top mounting light panel 1. The rectangular insulating sealing frame 13 and the insulating gaskets 14 are both made of soft rubber. The rectangular insulating sealing frame 13 is hollow inside, and the top of the rectangular insulating sealing frame 13 can be compressed and deformed downwards when pressed. In terms of leakage protection, the soft rubber material itself has good insulation performance. When the lighting lamp has leakage, the rectangular insulating sealing frame 13 and the insulating pad 14 can form an effective insulation barrier to prevent the current from being transmitted to the garage building through the top-mounted lamp panel 1. The insulating pad 14 is completely attached to the top of the top-mounted lamp panel 1, avoiding the possibility of current leakage from the edge. The tight fit of the rectangular insulating sealing frame 13 after being compressed and deformed further ensures the insulation effect, providing comprehensive protection for electrical safety in the event of leakage.
[0027] like Figure 1 and Figure 5As shown, the thickness of the rectangular insulating sealing frame 13 is twice the depth of the rectangular frame-type recessed groove 12. Multiple insulating spacers 14 can completely fit against the outer wall of the top of the ceiling-mounted lamp panel 1. The insulating sealing device 6 plays a crucial role in this ceiling-mounted multispectral health lighting lamp. Its design and working principle mainly revolve around preventing moisture intrusion and leakage protection. From a structural design perspective, the rectangular frame-type recessed groove 12 on the top-mounted lamp panel 1 surrounds the wiring hole 5 on the outer side. This layout provides a precise installation position for the rectangular insulating sealing frame 13. The rectangular insulating sealing frame 13 is inserted into the rectangular frame-type recessed groove 12, forming the first line of sealing defense, which can directly block some moisture and dust from entering the lamp from around the wiring hole 5. Both the rectangular insulating sealing frame 13 and the insulating spacers 14 are made of soft rubber. This is based on the many excellent properties of soft rubber material. Soft rubber has good flexibility and elasticity, which makes the rectangular insulating sealing frame 13 hollow inside and top-mounted. Under pressure, it can be compressed and deformed downwards. When the top-mounted light panel 1 is fixed to the garage ceiling with expansion screws, the insulating sealing device 6 will be squeezed between the top-mounted light panel 1 and the outer wall of the garage ceiling. At this time, the top of the rectangular insulating sealing frame 13 is compressed and deformed downwards, which can better fill the gap between the top-mounted light panel 1 and the garage ceiling, further enhancing the sealing effect and effectively preventing moisture in the air from continuously invading the interior of the lighting lamp through the wiring hole 5. The thickness of the rectangular insulating sealing frame 13 is designed to be twice the depth of the rectangular frame-type embedded groove 12. This dimensional relationship ensures that the rectangular insulating sealing frame 13 can still maintain sufficient thickness after being compressed and deformed during installation to maintain good sealing performance. At the same time, multiple insulating spacers 14 are set on the outer walls of the top four sides of the rectangular insulating sealing frame 13 and can completely fit on the top outer wall of the top of the top-mounted light panel 1. The insulating spacers 14 not only further enhance the tightness of the seal, but also play an additional insulating protection role.
[0028] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A ceiling-mounted multispectral health lighting lamp, comprising a ceiling-mounted lamp panel (1) and a rectangular lampshade (2) disposed at the bottom of the ceiling-mounted lamp panel (1), wherein a lampshade mounting sealing frame (11) is fixed to the outer wall of the bottom of the ceiling-mounted lamp panel (1), the top of the rectangular lampshade (2) is sleeved on the outside of the lampshade mounting sealing frame (11), a wiring hole (5) is provided inside the center of the ceiling-mounted lamp panel (1), and lamp panel mounting screw holes (3) are provided inside the ceiling-mounted lamp panel (1) near the four corners, wherein expansion screws can be inserted into the multiple lamp panel mounting screw holes (3), and the ceiling-mounted lamp panel (1) is fixed to the garage ceiling by multiple expansion screws, characterized in that: An insulating sealing device (6) is provided on the outside of the wiring hole (5); The insulating sealing device (6) includes a rectangular frame-type embedded groove (12), a rectangular insulating sealing frame (13), and an insulating spacer (14). The top outer wall of the top mounting lamp plate (1) is provided with a downwardly recessed rectangular frame-type embedded groove (12), and the rectangular frame-type embedded groove (12) surrounds the wiring hole (5) on all four sides. The rectangular frame-type embedded groove (12) is inserted into the rectangular frame-type embedded groove (12). The top four outer walls of the rectangular insulating sealing frame (13) are provided with insulating spacers (14), and multiple insulating spacers (14) are located on the upper side of the top outer wall of the top mounting lamp plate (1).
2. A ceiling-mounted multispectral health lighting lamp according to claim 1, characterized in that: The rectangular insulating sealing frame (13) and the insulating spacer (14) are both made of soft rubber. The rectangular insulating sealing frame (13) is hollow inside, and the top of the rectangular insulating sealing frame (13) can be compressed and deformed downwards when pressed.
3. A ceiling-mounted multispectral health lighting lamp according to claim 2, characterized in that: The thickness of the rectangular insulating sealing frame (13) is twice the depth of the rectangular frame-type embedded groove (12), and the plurality of insulating spacers (14) can be completely attached to the top outer wall of the top mounting light panel (1).
4. A ceiling-mounted multispectral health lighting lamp according to claim 1, characterized in that: The rectangular lampshade (2) has four outer walls that are flush with the four outer walls of the top mounting plate (1). The rectangular lampshade (2) and the lampshade mounting sealing frame (11) are fixedly connected by multiple lampshade fixing screws (4).
5. A ceiling-mounted multispectral health lighting lamp according to claim 1, characterized in that: The top mounting plate (1) is made of aluminum alloy. A frame mounting bracket (8) is fixed to the outer wall of the bottom end of the top mounting plate (1). The frame mounting bracket (8) is located inside the frame of the lampshade mounting sealing frame (11). The frame mounting bracket (8) does not contact the lampshade mounting sealing frame (11).
6. A ceiling-mounted multispectral health lighting lamp according to claim 5, characterized in that: The bottom of the frame mounting bracket (8) is fixed with an LED light board (9) by multiple screws. Multiple LED beads (10) are equidistantly arranged at the bottom of the LED light board (9). The multiple LED beads (10) can emit light sources of different wavelengths to achieve the purpose of multi-spectral lighting.
7. A ceiling-mounted multispectral health lighting lamp according to claim 6, characterized in that: The frame mounting bracket (8) is equipped with a controller, which is installed on the top of the LED light panel (9) and is electrically connected to the LED light panel (9).
8. A ceiling-mounted multispectral health lighting lamp according to claim 7, characterized in that: The rectangular lampshade (2) has a light-transmitting plate (7) inside its bottom end. The light-transmitting plate (7) is made of acrylic material and is located directly below the LED light panel (9).