Beautifying large bank lamp
By incorporating airflow channels and fan-driven airflow for heat dissipation within the large beauty LED light panel, the problem of heat accumulation is solved, improving user experience and equipment safety, and extending equipment lifespan.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- DAYUE INNOVATION (SUZHOU) MEDICAL TECH CO LTD
- Filing Date
- 2025-06-04
- Publication Date
- 2026-05-26
Smart Images

Figure CN224284533U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of beauty equipment technology, and in particular to a large beauty panel light. Background Technology
[0002] Large LED beauty panels have always been a leader among home beauty devices. They emit light of different frequencies and irradiate the human body to achieve related beauty and skincare purposes. However, due to the large number of light sources in a large LED beauty panel, the heat generated during operation cannot be ignored. On the one hand, the accumulation of heat can cause a burning sensation for the user, reducing the user experience; on the other hand, the accumulation of heat can also adversely affect the safety of the beauty device itself and shorten its lifespan. Therefore, the heat dissipation problem of large LED beauty panels cannot be ignored. Utility Model Content
[0003] The purpose of this invention is to propose a large LED light panel for beauty treatments, which solves the problem in the prior art where the heat of the large LED light panel cannot be dissipated in time, thus reducing the user experience.
[0004] To achieve this objective, the present invention adopts the following technical solution:
[0005] This utility model provides a large beauty light panel, comprising at least one main body, the main body including:
[0006] A housing having an accommodating space inside, and an airflow inlet and an airflow outlet connected to the accommodating space on the housing;
[0007] A lamp panel assembly includes a lamp panel body and multiple light source groups disposed on the lamp panel body. The lamp panel body is disposed within the accommodating space and divides the accommodating space into a first channel and a second channel. The light source groups are located in the first channel. The lamp panel body is provided with air flow holes connecting the first channel and the second channel.
[0008] A fan is installed in either the first channel or the second channel. The fan is used to drive the airflow in one of the first channel and the second channel, and to drive the airflow in the other channel through the airflow hole, so as to dissipate heat from the light source group and the lamp panel body.
[0009] The beauty panel light has an internal housing with a lamp panel body inside. The lamp panel assembly is housed within this housing and divides the housing into a first channel and a second channel. The light source group is located in the first channel. Airflow holes connecting the first and second channels are provided on the lamp panel body. A fan drives airflow in one of the first and second channels and, through the airflow holes, drives airflow in the other channel to dissipate heat from the light source group and the lamp panel body. This reduces heat buildup, improves the user experience, lowers safety risks, and extends the lifespan of the beauty panel light.
[0010] As a preferred embodiment of the aforementioned large-format beauty light panel, multiple sets of light sources are arranged in an array on the light panel body.
[0011] Multiple light source groups are arranged in an array on the lamp panel body, which can make full and reasonable use of the space of the lamp panel body to arrange the light source groups.
[0012] As a preferred embodiment of the aforementioned large beauty light panel, multiple sets of light source groups are arranged in an array to form multiple rows of light source components, with light source gaps formed between adjacent rows of light source components, and airflow holes are disposed at the light source gaps between adjacent rows of light source components.
[0013] The airflow holes are located at the gaps between adjacent rows of light source components to prevent the light source group from obstructing the airflow through the airflow holes.
[0014] As a preferred embodiment of the aforementioned large beauty light panel, the light source groups of two adjacent columns of light source components are staggered, and the airflow holes are located at the staggered positions of the light source groups of two adjacent columns of light source components.
[0015] By staggering the light source groups of two adjacent columns of light source components and placing the airflow holes at the staggered positions of the light source groups, the diameter of the airflow holes can be increased to enhance the airflow capacity of the airflow holes.
[0016] As a preferred embodiment of the aforementioned beauty panel light, the airflow holes are located on equidistant lines between two adjacent light source groups in the same row of light source components.
[0017] The above configuration ensures that the distance from the air passage to the adjacent light source group is the same, which simplifies the manufacturing process and meets the heat dissipation requirements of the air passage for the two adjacent light source groups.
[0018] As a preferred embodiment of the aforementioned beauty panel light, multiple airflow holes are provided, and the multiple airflow holes located between two adjacent rows of light source components are arranged along the extension direction of the light source gap.
[0019] The above settings can improve the heat dissipation efficiency of the light source group.
[0020] As a preferred embodiment of the aforementioned beauty panel light, at least a portion of the airflow inlet and / or at least a portion of the airflow outlet are located within the first channel;
[0021] Alternatively, both the airflow inlet and the airflow outlet are located within the second channel.
[0022] Because airflow holes are provided on the lamp panel body, the first channel and the second channel can be connected. Therefore, the arrangement of the airflow inlet and outlet is relatively flexible, and the above different positions can all achieve cooling and heat dissipation of the lamp panel body and the light source group.
[0023] As a preferred embodiment of the aforementioned large beauty light panel, the large beauty light panel further includes a reflector, which is disposed on the side of the light panel body where the light source group is disposed. The reflector has multiple recessed mounting positions, and each mounting position corresponds to the installation of one of the light source groups.
[0024] The reflector has multiple mounting positions, and each mounting position corresponds to a light source group. This allows the light source groups to be installed in the mounting positions when the reflector is mounted on the light panel body. On the one hand, this allows the light in each light source group to be reflected by the reflector; on the other hand, it avoids mutual interference between the light source groups, thereby improving the working efficiency of the beauty panel light.
[0025] As a preferred embodiment of the aforementioned large beauty panel light, the two adjacent mounting positions of the reflector are continuous with each other, and the airflow hole is covered after the reflector is assembled with the light panel body.
[0026] The reflector is continuous between two adjacent mounting positions, meaning it is continuous and integrated in non-mounting positions. Since the air passages are arranged at the intervals of the light source group, the reflector can hide or cover these air passages when it is assembled onto the light panel body. This not only enhances the overall aesthetics of the large LED light panel but also ensures the structural strength of the reflector.
[0027] As a preferred embodiment of the aforementioned large beauty panel light, the large beauty panel light further includes a light-transmitting plate, which is disposed on the side of the reflector away from the light panel assembly and covers the mounting position.
[0028] The light-transmitting panel is laid on the outside of the reflector to prevent the user's skin from directly contacting the light source assembly, thus protecting both the user and the equipment. Attached Figure Description
[0029] Figures 1-6 This is a structural schematic diagram of the beauty panel light from different perspectives in one embodiment of the present invention;
[0030] Figure 7 This is an exploded view of a beauty panel light according to one embodiment of the present invention;
[0031] Figure 8 This is a first structural schematic diagram of the display light panel assembly of the beauty panel light in one embodiment of the present utility model;
[0032] Figure 9 yes Figure 8 The enlarged schematic diagram shown in Q is shown below;
[0033] Figure 10 This is a schematic diagram of the second structure of the beauty panel light display assembly in one embodiment of the present invention;
[0034] Figure 11 yes Figure 10 A magnified view of a large LED light panel for beauty treatments;
[0035] Figure 12 This is a schematic diagram of the airflow of a large beauty panel light in one embodiment of the present invention;
[0036] Figure 13 This is a schematic diagram of the airflow port of the beauty panel light in one embodiment of the present invention;
[0037] Figure 14 and Figure 15 This is a structural schematic diagram of the beauty panel light in one embodiment of the present invention after removing the light panel assembly from different perspectives;
[0038] Figure 16 yes Figure 15 The enlarged schematic diagram shown in Figure A;
[0039] Figure 17 This is a cross-sectional enlarged view of a beauty panel light in one embodiment of the present invention;
[0040] Figure 18 This is a schematic diagram of the first structure of the beauty panel light provided in Embodiment 2 of this utility model;
[0041] Figure 19 yes Figure 18 Enlarged view of point C in the middle;
[0042] Figure 20 This is a schematic diagram of the second structure of the beauty panel light provided in Embodiment 2 of this utility model.
[0043] In the picture:
[0044] 10. Main body; 101. Lamp panel assembly; 1010. Lamp panel body; 1011. Airflow hole; 1012. Reflector; 1013. Mounting position; 1014. Light-transmitting plate; 102. Fan; 1020. Air outlet; 103. Shell wall; 104. Top wall; 105. Bottom wall; 106. Airflow port; 1060. Airflow inlet; 1061. Airflow outlet; 107. Accommodation space; 1070. First channel; 1071. Second channel; 108. Reinforcing rib; 1080. Transverse reinforcing rib; 1081. Longitudinal reinforcing rib;
[0045] 11. Hinge; 12. Support component; 13. Light source assembly; 14. Bracket. Detailed Implementation
[0046] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present invention, not the entire structure.
[0047] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0048] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0049] In the description of this embodiment, the terms "upper," "lower," "right," etc., refer to the orientation or positional relationship shown in the accompanying drawings. They are used only for ease of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.
[0050] Example 1:
[0051] like Figures 1-11 As shown, this embodiment provides a large beauty panel light, including at least one main body 10. The main body 10 includes a housing, a lamp panel assembly 101, and a fan 102. The housing has an accommodating space 107, and the housing is provided with an airflow inlet 1060 and an airflow outlet 1061 communicating with the accommodating space 107. The lamp panel assembly 101 includes a lamp panel body 1010 and multiple light source groups 13 disposed on the lamp panel body 1010. The lamp panel body 1010 is disposed in the accommodating space 107 and divides the accommodating space 107 into a first channel 1070 and a second channel 1071 (see...). Figure 11 The light source group 13 is located in the first channel 1070, and the lamp panel body 1010 is provided with an airflow hole 1011 connecting the first channel 1070 and the second channel 1071. The fan 102 is provided in the first channel 1070 or the second channel 1071. The fan 102 is used to drive the airflow in one of the first channel 1070 and the second channel 1071, and drive the airflow in the other channel through the airflow hole 1011, so as to dissipate heat from the light source group 13 and the lamp panel body 1010, thereby solving the heat dissipation problem of the beauty panel light, thus extending the service life of the beauty panel light and improving the user experience.
[0052] In this embodiment, the beauty panel light is a folding panel light, comprising three main bodies 10. Adjacent main bodies 10 are hinged together by hinges 11, thereby enabling the beauty panel light to be folded. In other embodiments, the beauty panel light may also include two main bodies 10, four main bodies 10, or more main bodies 10, without specific limitations.
[0053] Specifically, taking one of the main bodies 10 as an example, the main body 10 includes a housing, a lamp panel assembly 101, and a fan 102. The housing includes a shell wall 103, a top wall 104, and a bottom wall 105. A receiving space 107 is formed between the shell wall 103 and the top wall 104 and bottom wall 105. Airflow ports 106 are provided on both the top wall 104 and the bottom wall 105. Figure 6 As shown, the airflow port 106 located on the top wall 104 is the airflow inlet 1060, as... Figure 5As shown, the airflow port 106 located on the bottom wall 105 is the airflow outlet 1061. The airflow inlet 1060 and the airflow outlet 1061 can connect the accommodating space 107 with the external space, thereby realizing heat dissipation and cooling of the lamp panel assembly 101. The lamp panel body 1010 is disposed in the accommodating space 107, dividing the accommodating space 107 into a first channel 1070 and a second channel 1071. The lamp panel body 1010 has a first wall and a second wall (the first wall is the upper surface wall of the lamp panel body, and the second wall is the lower surface wall of the lamp panel body). Multiple light source groups 13 are disposed on the first wall of the lamp panel body 1010. The light source groups 13 are disposed in the first channel 1070. The airflow hole 1011 penetrates the first wall and the second wall of the lamp panel body 1010. The fan 102 is disposed in the first channel 1070. In channel 1070 or the second channel 1071, the air outlet 1020 of the fan 102 is connected to the air outlet 1061. The fan 102 can drive the airflow in one of the channels 1070 and 1071, and drive the airflow in the other channel through the airflow hole 1011 to dissipate heat from the light source group 13 and the lamp panel body 1010, thereby solving the heat dissipation problem of the beauty panel light. On the one hand, it can extend the service life of the beauty panel light, and on the other hand, it can improve the user experience.
[0054] For example, such as Figure 11 , Figure 12 and Figure 13 As shown, when the fan 102 is installed in the second channel 1071, its operation drives the airflow within the second channel 1071 to dissipate heat from the lamp panel body 1010. The first channel 1070 is connected to the second channel 1071 via an airflow hole 1011, allowing airflow from the first channel 1070 to enter the second channel 1071 through the airflow hole 1011, thus also dissipating heat from the light source assembly 13 within the first channel 1070. Similarly, when the fan 102 is installed in the first channel 1070, its operation drives the airflow within the first channel 1070 to dissipate heat from the light source assembly 13. Since the second channel 1071 is connected to the first channel 1070 via the airflow hole 1011, airflow from the second channel 1071 can also enter the first channel 1070 through the airflow hole 1011, thereby also dissipating heat from the second channel 1071 and ultimately dissipating heat from the lamp panel body 1010.
[0055] Preferably, such as Figure 14As shown, the fan 102 is arranged near the bottom wall 105. In this embodiment, the fan 102 is set on the shell wall 103 and arranged near the bottom wall 105. The fan 102 is located in the second channel 1071. The air outlet 1020 of the fan 102 is connected to the air outlet 106 on the bottom wall 105. On the one hand, due to the weight of the fan 102 itself, the beauty panel light can be made heavier at the bottom when it is working, thereby improving the stability of the beauty panel light when it is placed. On the other hand, setting the fan 102 at the bottom wall 105 can prevent the hot air from flowing out from other places when the fan 102 is dissipating heat, which would bring a bad user experience.
[0056] Optionally, the airflow port 106 on the bottom wall 105 is arranged along the extension direction of the bottom wall 105, while the airflow port 106 on the top wall 104 is arranged along the extension direction of the top wall 104. Each airflow port 106 has multiple through holes arranged at intervals (the through holes can be waist-shaped holes, square holes, round holes, etc., which will not be described in detail here). On the one hand, it can improve the airflow, and on the other hand, it can ensure the supporting strength and aesthetics of the shell.
[0057] Furthermore, the number and specific location of the air vents 106 can be adjusted according to the actual size of the main body 10, as long as they meet the basic heat dissipation conditions of the main body 10.
[0058] like Figures 7-10 As shown, multiple light source groups 13 are arranged in an array on the lamp panel body 1010 (or, in other words, arranged in an array on the first wall). This array can be rectangular or circular, etc. The arrangement of multiple light source groups 13 on the lamp panel body 1010 allows for efficient and rational use of the space within the lamp panel body 1010. Each light source group 13 has multiple sub-light sources, and each sub-light source can emit any one of red, yellow, blue, or green light.
[0059] Specifically, in this embodiment, multiple light source groups 13 are arranged in an array to form multiple columns of light source components, and a light source gap is formed between two adjacent columns of light source components. An air flow hole 1011 is provided at the light source gap between two adjacent columns of light source components to prevent the light source group 13 from obstructing the gas flow of the air flow hole 1011.
[0060] Furthermore, such as Figure 8 and Figure 9As shown, the light source groups 13 of two adjacent columns of light source assemblies are staggered. Airflow holes 1011 are located at the staggered points between the light source groups 13 of the two adjacent columns of light source assemblies. This increases the aperture of the airflow holes 1011, thereby enhancing their airflow capacity. Furthermore, to further improve the heat dissipation effect of the airflow holes 1011 on the light source groups 13, the airflow holes 1011 should be arranged adjacent to the light source groups 13 to maximize heat dissipation. Additionally, there should be as many airflow holes 1011 as possible to ensure effective airflow.
[0061] Preferably, such as Figure 8 and Figure 9 As shown, the air passage 1011 is located on an equidistant line between two adjacent light source groups 13 in the same column of light source assemblies, such that the distance from the air passage 1011 to the adjacent light source group 13 is the same. Figure 9 The distance from the central airflow hole 1011 to the adjacent light source group 13 is d. This arrangement simplifies the manufacturing process and ensures the airflow hole 1011 effectively dissipates heat from adjacent light source groups 13. In other embodiments, the airflow hole 1011 may not be positioned on an equidistant line; as long as an airflow hole 1011 is provided near each light source group 13, the heat dissipation requirements can be met, and this is not a further limitation.
[0062] Optionally, multiple airflow holes 1011 are provided, and the multiple airflow holes 1011 located between two adjacent rows of light source components are arranged along the extension direction of the light source gap. The above arrangement can improve the heat dissipation efficiency of the light source group 13.
[0063] like Figure 12 and Figure 13 As shown, the airflow inlet 1060 and airflow outlet 1061 can be located within the second channel 1071; or, part of the airflow inlet 1060 and airflow outlet 1061 can be located within the first channel 1070 and the other part within the second channel 1071; or, the airflow inlet 1060 and airflow outlet 1061 can be located within the first channel 1070. Since an airflow hole 1011 is provided on the lamp panel body 1010, the first channel 1070 and the second channel 1071 can be connected. Therefore, the arrangement of the airflow inlet 1060 and airflow outlet 1061 is relatively flexible, and the above different positions can all achieve cooling and heat dissipation of the lamp panel body 1010 and the light source group 13.
[0064] like Figure 15 , Figure 16 and Figure 17As shown, multiple sets of reinforcing ribs 108 are also arranged on the shell wall 103 of the beauty light panel to ensure the overall structural strength of the shell. Specifically, the reinforcing ribs 108 include transverse reinforcing ribs 1080 (extending in a direction parallel to the bottom wall 105 or the top wall 104) and longitudinal reinforcing ribs 1081 (extending from the top wall 104 to the bottom wall 105). The transverse reinforcing ribs 1080 and the longitudinal reinforcing ribs 1081 are arranged on the shell wall 103 to improve the overall strength of the shell wall 103.
[0065] like Figure 7 , Figure 12 and Figure 13 As shown, a reflector 1012 and a light-transmitting plate 1014 are provided on the upper layer of the lamp panel body 1010. The reflector 1012 and / or the light-transmitting plate 1014 can also seal the upper part of the first channel 1070, thereby enabling the first channel 1070 to form a complete airflow channel.
[0066] In addition, the reflector 1012 has multiple recessed mounting positions 1013. Specifically, these are multiple mounting positions 1013 recessed from the reflector 1012 toward the lamp panel body 1010. Each mounting position 1013 corresponds to the mounting of a light source group 13. This ensures that when the reflector 1012 is mounted on the lamp panel body 1010, all light source groups 13 can be mounted within the mounting positions 1013. On the one hand, this allows the light from each light source group 13 to be reflected by the reflector 1012. On the other hand, it avoids mutual interference between the light source groups 13, thereby improving the working efficiency of the beauty panel light.
[0067] Furthermore, the reflector 1012 is continuous and integral in the non-installation position. Since the air passages 1011 are arranged at the intervals of the light source group 13, the reflector 1012 can hide or cover these air passages 1011 when it is assembled onto the lamp panel body 1010. On the one hand, this can improve the overall aesthetics of the beauty panel light, and on the other hand, it can ensure the structural strength of the reflector 1012.
[0068] Optionally, the light-transmitting plate 1014 is laid on the outside of the reflector 1012 to prevent the user's skin from directly contacting the light source group 13, thereby protecting both the user and the electronic equipment.
[0069] The beauty panel light housing also includes a support member 12 and function buttons. The support member 12 protrudes from the outer side of the bottom wall 105, while the function buttons are located on the top wall 104 or the side wall of the housing. The support member 12 elevates the main body 10, preventing the airflow vent 106 at the bottom wall 105 from being blocked during use, thus ensuring airflow. The placement of the function buttons on the top wall 104 or side wall facilitates user operation, enhancing the user experience.
[0070] Example 2:
[0071] This embodiment provides a large beauty panel light. The large beauty panel light in this embodiment is a flat panel light, while the large beauty panel light in Embodiment 1 is a folding type.
[0072] like Figures 18-20 As shown, the large beauty panel light includes a main body 10 and a support 14. The support 14 is hinged to the main body 10 and supports the main body 10. The main body 10 includes a housing, a lamp panel assembly 101, and a fan 102. The housing has an accommodating space 107, and the housing is provided with an airflow inlet and an airflow outlet communicating with the accommodating space 107. The lamp panel assembly 101 includes a lamp panel body 1010 and multiple light source groups 13 disposed on the lamp panel body 1010. The lamp panel body 1010 is disposed in the accommodating space 107 and divides the accommodating space 107 into a first channel 1070 and a second channel 1071. The light source groups 13 are located in the first channel 1070. 010 is provided with an airflow hole 1011 connecting the first channel 1070 and the second channel 1071; a fan 102 is disposed in the first channel 1070 or the second channel 1071. The fan 102 is used to drive the airflow in one of the first channel 1070 and the second channel 1071, and drive the airflow in the other channel through the airflow hole 1011 to dissipate heat from the light source group 13 and the lamp panel body 1010, thereby solving the heat dissipation problem of the beauty panel light, thus extending the service life of the beauty panel light and improving the user experience (the structure of the main body 10 in this embodiment is similar to that of the main body 10 in embodiment one, please refer to embodiment one).
[0073] Specifically, the housing includes a shell wall 103, a top wall 104, and a bottom wall 105. A receiving space 107 is formed between the shell wall 103, the top wall 104, and the bottom wall 105. At least two of the shell wall 103, the top wall 104, and the bottom wall 105 are provided with airflow ports 106 to connect the receiving space 107 with the external space. One airflow port 106 is an airflow inlet, and the other airflow port 106 is an airflow outlet. The lamp panel body 1010 of the lamp panel assembly 101 is disposed within the receiving space 107, dividing the receiving space 107 into a first channel 1070 and a second channel 1071. The lamp panel body 1010 is provided with… An airflow hole 1011 connects the first channel 1070 and the second channel 1071. A fan 102 is installed in either the first channel 1070 or the second channel 1071. The air outlet of the fan 102 is connected to the airflow outlet. The fan 102 drives the airflow in one of the first channel 1070 and the second channel 1071, and drives the airflow in the other channel through the airflow hole 1011 to dissipate heat from the light source group 13 and the lamp panel body 1010, thereby solving the heat dissipation problem of the beauty panel light, extending the service life of the beauty panel light, and improving the user experience.
[0074] like Figures 18 to 20 As shown, the airflow port 106 can be arranged at any two of the shell wall 103, top wall 104, and bottom wall 105, or at all three locations. For example, the airflow port 106 can be arranged at the shell wall 103 and the top wall 104, while the fan 102 can be arranged near the top wall 104, and its air outlet can be connected to the airflow port 106 of the shell wall 103. Thus, airflow flows in from the airflow port 106 at the top wall 104 and flows out from the airflow port 106 at the shell wall 103. The lamp panel body 1010 of the lamp panel assembly 101 is provided with airflow holes 1011, thereby realizing heat dissipation of the lamp panel assembly 101 and the light source group 13.
[0075] For example, the air outlet 106 can be located at the bottom wall 105 and the top wall 104 respectively. The air outlet 1020 of the fan 102 can be connected to the air outlet 106 of the top wall 104 (the air outlet 106 of the top wall 104 is the air outlet). At this time, the airflow flows in from the air outlet 106 of the bottom wall 105 (the air outlet 106 of the bottom wall 105 is the air inlet) and flows out from the air outlet 106 of the top wall 104, thereby realizing heat dissipation of the lamp panel assembly 101 and the light source group 13.
[0076] For example, airflow ports 106 are provided on the shell wall 103, top wall 104 and bottom wall 105. The air outlet of the fan 102 can be connected to the airflow port 106 of the top wall 104. At this time, the airflow can enter from the airflow ports 106 of the bottom wall 105 and the shell wall 103 and flow out from the airflow port 106 of the top wall 104, thereby realizing heat dissipation of the lamp panel assembly 101 and the light source group 13.
[0077] Optionally, a support member 12 and function buttons are also provided on the housing of the beauty panel light. The support member 12 protrudes from the outer side of the bottom wall 105, while the function buttons are located on the top wall 104 or the side wall of the housing. By providing the support member 12, the main body 10 can be elevated, ensuring that the airflow port 106 at the bottom wall 105 is not blocked during use, thus guaranteeing airflow. The placement of the function buttons on the top wall 104 or side wall facilitates user operation, thereby improving the user experience.
[0078] The internal structure of the flat panel beauty panel light can be referred to the folding panel light in Embodiment 1, and will not be described again here. It can be understood that the flat panel panel light can be understood as a folding panel light with 10 main bodies.
[0079] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make various obvious changes, readjustments, and substitutions without departing from the protection scope of this utility model. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. A beauty bar lamp characterized by, Includes at least one subject, said subject comprising: A housing having an accommodating space inside, and an airflow inlet and an airflow outlet connected to the accommodating space on the housing; A lamp panel assembly includes a lamp panel body and multiple light source groups disposed on the lamp panel body. The lamp panel body is disposed within the accommodating space and divides the accommodating space into a first channel and a second channel. The light source groups are located in the first channel. The lamp panel body is provided with air flow holes connecting the first channel and the second channel. A fan is installed in either the first channel or the second channel. The fan is used to drive the airflow in one of the first channel and the second channel, and to drive the airflow in the other channel through the airflow hole, so as to dissipate heat from the light source group and the lamp panel body.
2. The beauty bar lamp according to claim 1, wherein Multiple sets of the light sources are arranged in an array on the lamp panel body.
3. The cosmetic vanity light of claim 1, wherein, Multiple sets of light source groups are arranged in an array to form multiple rows of light source components, and a light source gap is formed between two adjacent rows of light source components. The air flow hole is disposed at the light source gap between two adjacent rows of light source components.
4. The cosmetic vanity light of claim 3, wherein, The light source groups in two adjacent columns of the light source assembly are staggered, and the air passage is provided at the staggered position of each light source group in two adjacent columns of the light source assembly.
5. The cosmetic vanity light of claim 4, wherein, The air passage is located on an equidistant line between two adjacent light source groups in the same row of light source assemblies.
6. The cosmetic vanity light of claim 3, wherein, Multiple air passages are provided, and the multiple air passages located between two adjacent columns of the light source components are arranged along the extension direction of the light source gap.
7. The cosmetic vanity light of any of claims 1-6, wherein, At least a portion of the airflow inlet and / or at least a portion of the airflow outlet are located within the first channel; Alternatively, both the airflow inlet and the airflow outlet are located within the second channel.
8. The beauty panel light according to any one of claims 1-6, characterized in that, The beauty panel light also includes a reflector, which is disposed on one side of the light source group on the light panel body. The reflector has multiple recessed mounting positions, and each mounting position corresponds to the installation of one of the light source groups.
9. The cosmetic vanity light of claim 8, wherein, The two adjacent mounting positions of the reflector are continuous with each other, and the reflector covers the air passage after it is assembled with the lamp panel body.
10. The cosmetic vanity light of claim 8, wherein, The beauty panel light also includes a light-transmitting plate, which is disposed on the side of the reflector away from the light panel assembly and covers the mounting position.