Illumination device
By introducing light sources with different irradiance in the lighting device and optimizing their layout, combined with reflector cups and COB light energy chamber design, the problem of the lighting device's single function has been solved, achieving diversified functions and improved beauty effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-04-10
AI Technical Summary
Existing light therapy devices have limited functionality and poor cosmetic effects.
The first and second light sources with different irradiance are used to emit light alternately or simultaneously in the lighting device. The layout of the light sources is optimized by array distribution. Combined with the design of reflector cups and COB light energy chambers, the lighting effect and beauty effect are improved.
It realizes the diversified functions of the light-emitting device, enhances the beauty effect, promotes skin metabolism, reduces wrinkles, avoids uneven skin tone, and enhances the uniformity and brightness of light.
Smart Images

Figure CN224099831U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of light equipment, in particular to a light device. BACKGROUND
[0002] Among the light devices used in people's daily life, there are light devices for light irradiation on the face of human body to achieve the purpose of beauty, which stimulate the metabolism of skin cells, promote the generation of collagen, and improve the elasticity and tightness of the skin by emitting light of different wavelengths.
[0003] At present, the lamps provided on the light devices for beauty are all lamps of the same structure type, resulting in single function and unsatisfactory beauty effect. CONTENT OF THE UTILITY MODEL
[0004] Therefore, the present application provides a light device, which solves the problems of single function and poor beauty effect.
[0005] In order to achieve the above purpose, the present application provides the following technical solutions:
[0006] A light device, comprising a light-emitting assembly and a light-emitting assembly, the light-emitting assembly comprising:
[0007] a main board having a light-emitting area corresponding to the light-emitting assembly;
[0008] a plurality of first light sources arranged on the main board and located in the light-emitting area;
[0009] a plurality of second light sources arranged on the main board and arranged in an array in the light-emitting area;
[0010] wherein the irradiance of the second light source is greater than the irradiance of the first light source.
[0011] Optionally, in the light device, the first light source is at least one LED lamp arranged on the main board, the second light source is a COB lamp, and the second light source is embedded in the gap of the first light source in an array form.
[0012] Optionally, in the light device, the light-emitting assembly comprises:
[0013] a light cup plate having a plurality of first through holes corresponding one-to-one to the first light sources and a plurality of second through holes corresponding one-to-one to the second light sources; wherein the first through holes are horn holes to form first light cups of the first light sources;
[0014] A plurality of COB light energy cabins are arranged on the light cup plate and cover the second through holes. The COB light energy cabin includes an upper surface and a lower surface. The vertical projection area of the upper surface on the light cup plate is less than the vertical projection area of the lower surface on the light cup plate. The upper surface is concave towards the main plate direction.
[0015] Optionally, in the lighting device, the light emitting assembly further includes:
[0016] A front cover plate is arranged to cover the light cup plate.
[0017] And / or,
[0018] A decorative piece is arranged on the COB light energy cabin.
[0019] Optionally, in the lighting device, the lighting device includes:
[0020] A middle frame is arranged to mount the light emitting assembly and the light emitting assembly and is sealed by the light emitting assembly on one side.
[0021] A rear cover plate is connected with the middle frame and seals the other side opening of the middle frame.
[0022] A support seat is connected with the middle frame and / or the rear cover plate through a rotating shaft assembly.
[0023] Optionally, in the lighting device, a fogging assembly is further included, and the fogging assembly includes:
[0024] A fogging assembly is arranged on the main plate, the light emitting assembly and / or the rear cover plate to atomize the liquid.
[0025] A liquid container is detachably connected to the rear cover plate and is in communication with the fogging assembly.
[0026] A humidity sensor is arranged on the fogging assembly or the light emitting assembly to detect the fogging state.
[0027] A fogging channel penetrates the main plate and the light emitting assembly to guide the atomized liquid droplets.
[0028] Optionally, in the lighting device, a nozzle is further included to spray the atomized liquid droplets, and the nozzle forms an outlet of the fogging channel.
[0029] And / or,
[0030] The outlet of the fogging channel and all the second light sources are arranged in an array, and the outlet of the fogging channel is located at the geometric center of the lighting device.
[0031] Optionally, in the lighting device, the fogging assembly includes:
[0032] An atomizing oscillation sheet is arranged on the main plate, the light emitting assembly and / or the back cover plate, and is used for atomizing the liquid flowing out of the liquid container.
[0033] Optionally, in the light device, the mist emitting assembly comprises:
[0034] A porous structure is arranged on the mist emitting channel, and is used for allowing the liquid flowing out of the liquid container to permeate;
[0035] A fan is arranged on one side of the mist emitting channel and corresponds to the porous structure, and is used for blowing air to the porous structure to form atomized liquid droplets.
[0036] Optionally, in the light device, the light device further comprises:
[0037] A display module is arranged on the main plate or the light emitting assembly and is exposed to the light emitting assembly;
[0038] A function adjusting assembly at least comprises a touch key arranged on the light emitting assembly;
[0039] A light homogenizing module is arranged on the main plate or the light emitting assembly and comprises a light homogenizing sheet and backlight sources arranged at two ends of the light homogenizing sheet, and is used for illuminating the touch key;
[0040] A voice module is arranged on the main plate or the light emitting assembly and is used for receiving control instructions.
[0041] The light device provided in the application is provided with the first light source and the second light source corresponding to the light emitting assembly on the main plate of the light emitting assembly, the two light sources have different irradiance, when the light device is a large row lamp beauty instrument, the large row lamp beauty instrument can have multiple different beauty effects by making the first light source and the second light source emit light alternately or simultaneously in different stages, and when the first light source and the second light source are arranged, multiple second light sources are arranged in an array distribution in the light emitting area of the main plate, and multiple first light sources are also arranged in the light emitting area, so that the layout of the first light source and the second light source is optimized, and the beauty effect can be further improved. In this way, the function of the light device can be more diverse, and the beauty effect is improved. BRIEF DESCRIPTION OF DRAWINGS
[0042] In order to more clearly illustrate the technical solutions in the embodiments of the application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only belong to the embodiments of the application, and those skilled in the art can also obtain other drawings according to the provided drawings without any creative effort.
[0043] Figure 1 The exploded view of the illumination device provided in the embodiments of the present application;
[0044] Figure 2 The structural schematic view of the user side of the illumination device;
[0045] Figure 3 The structural schematic view of the cooperation of the COB light energy cabin and the second light source;
[0046] Figure 4 The structural schematic view of the connection of the liquid container to the back cover plate;
[0047] Figure 5 The structural schematic view of the connection of the liquid container to the connecting opening;
[0048] Figure 6 The structural schematic view of the cooperation of the fan and the porous structure for atomization;
[0049] Figure 7 The structural schematic view of the cooperation of the light uniformity module and the touch key.
[0050] In Figures 1-7 , the technical scheme in the embodiments of the present application is described in detail below with reference to the drawings:
[0051] 1-main plate, 2-first light source, 3-second light source, 4-reflection cup plate, 5-first through hole, 6-second through hole, 7-COB light energy cabin, 8-front cover plate, 9-second reflection cup, 10-avoidance area, 11-decorative part, 12-liquid container, 13-atomization oscillation sheet, 14-nozzle, 15-porous structure, 16-fan, 17-mist outlet channel, 18-middle frame, 19-back cover plate, 20-rotating shaft assembly, 21-plate-shaped body, 22-counterweight, 23-display module, 24-touch key, 25-light uniformity module, 26-voice module, 27-mode key, 28-rotary encoder, 29-power key, 30-DC module, 31-lid, 32-connecting opening, 33-upper surface, 34-lower surface, 35-light uniformity sheet, 36-backlight source, 37-groove, 38-indicia. DETAILED DESCRIPTION
[0052] The technical scheme in the embodiments of the present application is described in detail below with reference to the drawings. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of protection of the present application.
[0053] As Figures 1-7As shown, the embodiment of the present application provides a light device which can be used as different types of instruments or tools, such as a large row lamp beauty instrument or a lighting lamp for lighting, etc. The subsequent content in the present application takes the large row lamp beauty instrument as an example for illustration. The light device mainly comprises a light emitting assembly and a light emitting assembly, and the light emitting assembly comprises a main plate 1, a plurality of first light sources 2 and a plurality of second light sources 3. The main plate 1 has a light emitting area corresponding to the light emitting assembly. In order to meet the design requirements of the large row lamp beauty instrument and improve its beauty effect, the light emitting area can be the entire surface area of the main plate 1 facing the light emitting assembly. When the first light source 2 and the second light source 3 are arranged in the light emitting area, the light emitted by the first light source 2 and the second light source 3 can be emitted from the light emitting assembly to irradiate the face of the user to play a beauty function. In order to simplify the structure, the main plate 1 can be a control circuit board of the light device, and the first light source 2 and the second light source 3 are directly integrated on the control circuit board. In this way, the use of electrical components such as wires can be avoided, and the circuit structure is simplified. Alternatively, the main plate 1 can not be a control circuit board, but a mounting plate specially arranged for mounting the first light source 2 and the second light source 3. Figure 1 As shown, the first light source 2 is arranged in the light emitting area (but the second light source 3 needs to be reserved for arrangement, or the first light source 2 is arranged in the remaining area of the light emitting area after the second light source 3 is arranged); the second light source 3 is a light source with different light irradiation effect from the first light source 2 (the difference is explained in the subsequent content). The second light source 3 is also arranged in the light emitting area of the main plate 1, and the second light source 3 is also arranged in the light emitting area in an array. The specific array mode can be polygonal, circular, linear or cross-shaped, etc. Since the first light source 2 is preferably arranged in the light emitting area (i.e. arranged in a rectangular array or circular array), each second light source 3 is arranged between different first light sources 2, so that the first light source 2 is saturatedly distributed in the light emitting area, and the second light source 3 is arranged in the gap between the first light source 2 in the form of an array, forming a whole distribution pattern of the first light source 2 basic coverage and the second light source 3 regular insertion. Further, the first light source 2 can be uniformly arranged in the entire light emitting area in the form of an array, and the second light source 3 can be centrally symmetrically distributed with the center of the light emitting area as the symmetric center.
[0054] Compared with the illumination device with only one type of lamp in the prior art, the illumination device with the above structure has the first light source 2 and the second light source 3 with different illumination effects (i.e., different irradiance), more diversified types of light sources, more diversified illumination effects of the illumination device (e.g., any light source emits light alone, two light sources emit light alternately, two light sources emit light simultaneously, etc.), higher brightness, and high-energy light emission, so that the function of the illumination device is more diversified and no longer single. On the other hand, the first light source 2 is uniformly and densely distributed, the second light source 3 is arranged in a matrix and is centrally symmetrical, and the second light source 3 is embedded in the gap of the first light source 2 in an array form to form an overall distribution pattern of the first light source 2 as a base coverage and the second light source 3 as a regular interlacing. The high brightness of the second light source 3 and the uniform brightness of the first light source 2 are complementary to each other, which can make the illumination more sufficient and uniform, avoid the appearance of light spots or dark areas, and improve the beautifying effect. In summary, the illumination device provided by the present application has more diversified functions and improved beautifying effect, realizes oil control and acne removal for the user's skin, avoids uneven skin color, makes the skin more compact, reduces wrinkles, promotes metabolism, and accelerates the shedding of old cells.
[0055] In optional embodiments, the plurality of first light sources 2 are a plurality of LED (Light Emitting Diode) lamps independently arranged on the main plate 1, and the second light source 3 is a plurality of COB (Chip on Board) lamps. Compared with the LED lamp, the COB lamp has better illumination effects such as high light energy density, pure light color, high color rendering, uniform light spot, and uniform light. Therefore, by adding the COB lamp as the second light source 3 on the basis of the LED lamp as the first light source 2, the illumination effect of the illumination device can be further improved, and the beautifying performance is better. In addition, the structure of the COB lamp is more compact and has a smaller size, which is convenient for installation in a large-row lamp beautifying instrument with a narrow internal installation space, and is conducive to batch production and manufacturing of the large-row lamp beautifying instrument. In addition, the second light source 3 can also be selected from an OLED (Organic Light-Emitting Diode) lamp, a high color rendering index LED lamp, or a narrow spectrum LED lamp, etc. Figure 1As shown, the light-emitting assembly includes a light cup plate 4, and a plurality of first through holes 5 are formed in the light cup plate 4 and arranged one-to-one with the first light sources 2. The first through holes 5 are trumpet holes to form first light cups of the first light sources 2. The light cup plate 4 is arranged in the light-emitting direction (i.e., the light irradiation direction) of the first light sources 2 and parallel to the main plate 1. A plurality of first through holes 5 are formed in the light cup plate 4 to be arranged one-to-one with the plurality of first light sources 2, so that the light emitted by each first light source 2 can pass through the first through hole 5 and irradiate to the outside of the light device, so that the user can use the light of the first light source 2 for beauty. In addition, in order to improve the lighting effect of the first light source 2, the first through hole 5 is also a trumpet hole, and the small opening of the trumpet hole is close to the first light source 2, so that the light emitted by the first light source 2 is diverged from the small opening to the large opening of the trumpet hole. The inner wall of the trumpet hole is arranged as a light-reflecting wall, so that the trumpet hole forms a first light cup of the first light source 2, which realizes the collimation and correction of the dispersed light emitted by the first light source 2, so that the light emitted by the first light source 2 can be more concentrated in the direction perpendicular to the light cup plate 4, thereby improving the light utilization rate of the light device.
[0056] Meanwhile, a plurality of second through holes 6 are also formed in the light cup plate 4, and the second through holes 6 are arranged one-to-one with the second light sources 3 to allow the light emitted by the second light sources 3 to irradiate to the outside of the light device, so that the user can use the light of the second light source 3 for beauty. In addition, the light-emitting assembly also includes a plurality of transparent COB light energy cabins 7, which are arranged on the light cup plate 4 and cover different second through holes 6, respectively. As shown, Figure 3 The COB light energy cabin 7 can be a frustum or a cover body, and includes an upper surface 33 and a lower surface 34 through which the light passes. The upper surface 33 is away from the second light source 3, and the lower surface 34 is close to the second light source 3. The vertical projection area of the upper surface 33 on the light cup plate 4 is smaller than the vertical projection area of the lower surface 34 on the light cup plate 4, that is, the light irradiation area of the lower surface 34 is larger than that of the upper surface 33, so as to facilitate the assembly of the COB light energy cabin 7 and the light cup plate 4. On this basis, the upper surface 33 is recessed towards the direction of the main plate, that is, the upper surface 33 is recessed towards the direction of the main plate 1. In this way, the part of the COB light energy cabin through which the light passes forms a concave lens, so as to diverge the light emitted by the second light source 3. As shown, Figure 1 and Figure 3As shown, the plurality of COB light energy cabins 7 are also arranged one-to-one with the plurality of second through holes 6. In specific arrangement, the COB light energy cabin 7 can be arranged at the end of the second through hole 6 away from the second light source 3, or arranged in the second through hole 6. In addition, since the COB light energy cabin 7 is located on the propagation path of the light emitted by the second light source 3, the COB light energy cabin 7 forming a concave lens can realize the divergence of the light emitted by the second light source 3. In combination with the central symmetric arrangement of the second light source 3, the light emitted by the second light source 3 can be more uniformly distributed on the use side of the illumination device, that is, can be more uniformly irradiated on the face of the user, avoiding the occurrence of local light spots on the face of the user, and improving the working performance of the illumination device.
[0057] Further, as shown in Figure 1 and Figure 2 , the light-emitting assembly further includes a front cover plate 8 for covering the light cup plate 4. The front cover plate 8 is arranged parallel to the light cup plate 4 and covers the outer side of the light cup plate 4, that is, the front cover plate 8 is an external component of the illumination device, which, together with the middle frame 18 and the rear cover plate 19 described later, forms a complete housing of the illumination device. In order to improve the protection effect of the front cover plate 8 on the internal components such as the light cup plate 4, the main plate 1, the first light source 2 and the second light source 3, the front cover plate 8 can be arranged as a transparent partition plate without through holes and openings. The light emitted by the first light source 2 and the second light source 3 is transmitted through the front cover plate 8 to realize external irradiation. On the basis thereof, the second light cup 9 can be protrudingly arranged on the inner surface (i.e., the surface close to the light cup plate 4) of the front cover plate 8. The second light cup 9 is arranged one-to-one with the first light cup and can be combined one-to-one into a light cup with a larger reflecting surface, thereby further improving the illumination effect of the first light source 2. Meanwhile, the front cover plate 8 is also provided with an avoidance area 10 where the second light cup 9 is not arranged. The avoidance area 10 is arranged one-to-one with the COB light energy cabin 7 to ensure the normal emission of the light emitted by the second light source 3. Specifically, when the COB light energy cabin 7 is arranged at the end of the second through hole 6 away from the second light source 3, since the COB light energy cabin 7 protrudes relative to the light cup plate 4 to the side of the front cover plate 8, the avoidance area 10 can be arranged as a thinned area to provide space for the arrangement of the COB light energy cabin 7, and the avoidance area 10 can assist in firmly installing the COB light energy cabin 7 on the light cup plate 4 by abutting and compressing. In addition, when the protection effect allows to be reduced, the second light cup 9 on the front cover plate 8 can adopt the same structure as the first light cup arranged on the light cup plate 4, that is, also arranged as a through hole, and the avoidance area 10 is arranged as an avoidance window, and the COB light energy cabin 7 is allowed to partially enter or pass through the avoidance window.
[0058] Furthermore, the light-emitting assembly further includes a decorative piece 11 arranged on the COB light energy cabin 7 to decorate the COB light energy cabin 7. Specifically, as shown in Figure 1As shown, the decorative piece 11 can be annular, which can be optionally arranged on the COB light energy cabin 7, or the decorative piece 11 can also be arranged on the inner surface of the front cover plate 8, or the decorative piece 11 can also be clamped between the front cover plate 8 and the COB light energy cabin 7. In addition, when the light device is provided with the nozzle 14 described below, in order to improve the aesthetic effect, the decorative piece 11 can also be arranged on the nozzle 14, and the mounting mode of the decorative piece 11 is also arranged on the nozzle 14, or connected to the inner surface of the front cover plate 8, or clamped between the front cover plate 8 and the nozzle 14.
[0059] As shown in Figure 1 , Figure 2 and Figure 4 , the appearance structure of the light device includes: a middle frame 18 for mounting the light-emitting assembly and the light-emitting assembly, and being blocked on one side opening by the light-emitting assembly; a back cover plate 19 connected with the middle frame 18 and blocking the other side opening of the middle frame 18; a support seat is rotatably connected with the middle frame 18 and / or the back cover plate 19 through a rotating shaft assembly 20. In this structure, the middle frame 18 is a circumferentially closed structure, which has a certain width in the direction perpendicular to the main plate 1, so as to facilitate the main plate 1, the light cup plate 4 and the front cover plate 8 to be embedded into the middle frame 18 and fixedly connected with the middle frame 18, thereby realizing the assembly of the light-emitting assembly and the light-emitting assembly with the middle frame 18; the back cover plate 19 is arranged parallel to the main plate 1, the light cup plate 4 and the front cover plate 8, which can also be assembled with the middle frame 18, and realize the blocking of the two side openings of the middle frame 18 with the front cover plate 8 respectively, so that the middle frame 18, the front cover plate 8 and the back cover plate 19 form a closed shell to protect the components such as the main plate 1, the light cup plate 4, the first light source 2 and the second light source 3 inside it. The support seat is used to support the middle frame 18, the front cover plate 8, the back cover plate 19 and the components inside it (this part of the structure is collectively referred to as the main body of the light device), so that the user can support the main body by the support seat and the desktop when using the light device, so that the user can use the light device more conveniently. In order to facilitate the adjustment of the illumination direction of the light, so that the user can use the light device more comfortably and flexibly, the support seat and the main body are rotatably connected through the rotating shaft assembly 20 (the specific structure of the rotating shaft assembly 20 can be referred to the prior art), so that the rotation angle between the main body and the support seat can be adjusted, and the illumination direction of the light can be changed. Specifically, the middle frame 18 can be made of plastic material or metal material, the rotating shaft assembly 20 connects the support seat at the bottom of the main body, in order to improve the support stability of the support seat, the support seat includes a plate-shaped body 21 and a counterweight 22 fixedly arranged on the plate-shaped body 21, and the counterweight 22 can also be arranged in a plate shape and arranged in a stacked manner and fixedly connected with the plate-shaped body 21. On the basis of the above structure, in order to further improve the beauty effect of the light device, the light device further includes an atomization assembly, as shown in Figure 1 , Figure 4 , Figure 5 andFigure 6 As shown, the atomization assembly comprises: an atomization assembly arranged on the main plate 1, the light-emitting assembly and / or the back cover plate 19, for atomizing the liquid; a liquid container 12 detachably connected outside the shell of the light-irradiating device, specifically detachably connected outside the back cover plate 19 and located outside the back cover plate 19, and in communication with the atomization assembly when connected to the back cover plate 19; and an atomization channel 17 penetrating through the main plate 1 and the light-emitting assembly, for guiding the atomized liquid out. The atomization channel 17 can be formed by opening holes in the main plate 1 and the light-emitting assembly (the light-emitting assembly refers to the reflector plate 4 and the front cover plate 8), or can be formed by arranging a conduit penetrating through the main plate 1, the reflector plate 4 and the front cover plate 8. In this structure, the liquid container 12 is used to contain the beauty liquid, and is detachably connected outside the back cover plate 19. Optionally, the liquid container 12 can also be detachably connected inside the back cover plate 19. When the user uses the light-irradiating device and feels that the skin is dry, the atomization function can be used, that is, the user can connect the liquid container 12 full of beauty liquid to the back cover plate 19, and at the same time, the liquid container 12 can be in communication with the atomization assembly, the beauty liquid in the liquid container 12 can flow to the atomization assembly, and the atomization assembly arranged on the main plate 1 or the light-emitting assembly can convert the beauty liquid into atomized liquid droplets. Since the atomization channel 17 penetrates through the main plate 1 and the light-emitting assembly, the atomization channel 17 corresponding to the atomization assembly can guide the atomized liquid droplets out from the use side of the light-irradiating device, so that the atomized liquid droplets can blow the user's face, and the user's skin can be kept moist during light irradiation, thereby improving the beauty effect of the light-irradiating device. When the user does not use the atomization function, the liquid container 12 can be detached from the back cover plate 19, and the cover 31 can be used to plug the connecting opening 32 on the back cover plate 19 for connecting the liquid container 12, so as to prevent impurities from entering the connecting opening 32. In order to reduce the pollution of the cover 31 to the atomization assembly, the material of the cover 31 can be selected as a silica gel material which has no side effects on the human body.
[0060] In order to optimize the structure, the atomization assembly is preferably arranged on the reflector plate 4, or can also be arranged on the main plate 1, or can also be arranged on the inner surface of the back cover plate 19, or can also be installed through the cooperation between two adjacent plate-shaped plates, for example, being clamped between the reflector plate 4 and the main plate 1, or being clamped between the main plate 1 and the back cover plate 19.
[0061] In order to make the atomized droplets better reach the user's face, in an optional embodiment, the light device can also include a nozzle 14 located at the end of the mist outlet channel 17 facing the user to form the outlet of the mist outlet channel 17. By using the nozzle 14 to spray the atomized droplets out of the mist outlet channel 17, the distance of the atomized droplets from the light device can be greater, and a larger space area can be covered, which is beneficial to the comfortable use of the user. Specifically, the nozzle 14 can be provided on the main board 1 or the light outlet assembly, preferably on the reflector cup plate 4, and passes through the front cover plate 8 to ensure that the nozzle 14 can spray the atomized droplets to the user side.
[0062] In addition, the nozzle 14 is provided with a micron-sized aperture hole, and the atomized droplets are sprayed to the user's face through the hole. That is, the light device provided by the present application adopts a micron-sized light moisturizing technology, so that the cosmetic effect of the light device can be more prominent.
[0063] Further, the atomization assembly can also include a humidity sensor (not shown in the figure), which is provided on the mist outlet assembly or the light outlet assembly for detecting the misting state. Specifically, the humidity sensor is provided at the mist outlet, and the humidity sensor is in communication connection with the control circuit board. During the working process of the atomization assembly, the mist outlet continuously sprays atomized droplets, and the humidity value detected by the humidity sensor is greater than the preset value. At this time, the atomization assembly is working normally. When the humidity value detected by the humidity sensor is less than the preset value, it indicates that the atomized droplets sprayed at the mist outlet are reduced, that is, the cosmetic liquid is used up. At this time, the humidity sensor sends an alarm signal to the control circuit board, and the control circuit board controls the mist outlet assembly to stop working after receiving the alarm signal, so as to avoid damage caused by the continuous working of the atomization assembly in the no-liquid state.
[0064] On the basis of the light device provided with the atomization assembly, the structure type of the atomization assembly can be different. In an optional embodiment, as shown in Figure 1 The mist outlet assembly includes an atomization oscillation sheet 13 provided on the main board 1, the light outlet assembly and / or the rear cover plate 19, preferably provided on the reflector cup plate 4, which is used to atomize the liquid flowing out of the liquid container 12. The structure of the atomization oscillation sheet 13 is simple, the volume is small, and the price is low and easy to purchase, which is more suitable for installation and use in a large lamp cosmetic instrument with small volume. The atomization oscillation sheet 13 cooperates with the nozzle 14 to work more stably, fully and timely to realize atomization and the export of atomized droplets, and the atomization effect can better meet the design requirements of the large lamp cosmetic instrument. Specifically, in order to further simplify the structure, the atomization oscillation sheet 13 is mechanically connected to the reflector cup plate 4 and electrically connected to the control circuit board as the main board 1 through a wire.
[0065] In another optional embodiment, as shown in Figure 6As shown, the misting assembly comprises: a porous structure 15 arranged on the rear cover plate 19, the main plate 1 or the light-emitting assembly, preferably on the rear cover plate 19, for the liquid flowing in the liquid container 12 to permeate; and a fan 16 arranged on the rear cover plate 19, the main plate 1 or the light-emitting assembly, preferably on the rear cover plate 19, and electrically connected to the main plate 1 by a wire, for blowing air to the porous structure 15 to form atomized liquid droplets. In this structure, in the state that the liquid container 12 is connected to the shell, the cosmetic liquid in the liquid container 12 flows into the porous structure 15 to fill the capillary space in the porous structure 15, at which time the porous structure 15 is permeated by the cosmetic liquid, and then the fan 16 is turned on to blow air to the permeated porous structure 15, and the air passing through the porous structure 15 carries the liquid droplets in the capillary space to form an air flow containing atomized liquid droplets, which flows to the user side of the light-irradiating device through the misting passage 17. Specifically, the porous structure 15 can be a sponge, foam or the like, and the fan 16 is started and stopped under the control of the control circuit board. In this structure, since the fan can provide sufficient power for the atomized liquid droplets to reach the user's face, a nozzle 14 can also not be arranged at the end of the misting passage 17 facing the user.
[0066] Regardless of which structure the misting assembly adopts, it needs to be noted that, in order to avoid the leakage of the cosmetic liquid affecting the normal operation of the electronic devices such as the control circuit board, the first light source 2 and the second light source 3 inside the light-irradiating device, a sealing ring or other sealing isolation member needs to be arranged between the flow passage of the liquid and the electronic devices to ensure the safe and normal operation of the light-irradiating device.
[0067] On the basis of arranging the misting assembly, as shown in Figure 1 and Figure 2 , the nozzle 14 (or the outlet of the misting passage 17) and all the second light sources 3 are arranged in an array, and the nozzle 14 is located at the geometric center of the light-irradiating device, which is reflected in the appearance as being located at the center of the front cover plate 8. Among them, arranging the nozzle 14 and the second light sources 3 in an array can further optimize the structural layout and improve the cosmetic effect of the light-irradiating device; since all the second light sources 3 are arranged in a central symmetry manner in the light-emitting region, and the center of symmetry is the center of the light-emitting region, by locating the nozzle 14 at the geometric center of the light-irradiating device, the nozzle 14 (or the outlet of the misting passage 17) can be located at the center of the light-emitting region and the front cover plate 8, that is, the atomized liquid droplets are sprayed from the center of the light-emitting region and the front cover plate 8, which can make the atomized liquid droplets be sprayed more efficiently and accurately to the user's face, improving the working performance of the light-irradiating device. Specifically, as shown in Figure 1 and Figure 2As shown in the figures, the nozzles 14 (or the outlets of the mist outlets 17) and the second light sources 3 are arranged in a rectangular array, and the second light sources 3 and the COB light energy cabins 7 are both provided as eight, eight second light sources 3 and eight COB light energy cabins 7 are arranged in a rectangle around one nozzle 14 (or the outlet of the mist outlet 17), that is, eight second light sources 3 are arranged in a nine-square grid around one nozzle 14, so that the working performance of the light device can be maximized on the basis of ensuring the simplification of the structure.
[0068] As shown in the figures, Figure 1 , Figure 2 and Figure 7 , the light device further comprises a display module 23 provided on the main board 1 or the light outlet assembly and exposed to the light outlet assembly; a function adjusting assembly at least comprising a touch key 24 provided on the light outlet assembly; a light uniformization module 25 provided on the main board 1 or the light outlet assembly and comprising a light uniformization sheet 35 and a backlight source 36 provided at both ends of the light uniformization sheet 35 for illuminating the touch key 24; and a voice module 26 provided on the main board 1 or the light outlet assembly for receiving control instructions. In this structure, the function adjusting assembly is used to adjust different working parameters of the light device, which includes mode keys 27, rotary encoders 28, power keys 29 and touch keys 24, at least part of these keys or rotary knobs are exposed to the main body of the light device to ensure that the user can operate them, wherein the mode keys 27 are mainly used to adjust time parameters, such as setting the start time of a certain working mode or the duration of the current working mode, etc., the rotary encoders 28 have multiple gears for adjusting working intensity, such as adjusting light intensity, atomization intensity, etc., the power keys 29 are used to control the opening and closing of the light device, and the touch keys 24 are provided with multiple, different touch keys 24 are used to control different functions, such as including timing, starting and stopping of the atomization mode, combination of different light modes, deletion and confirmation of setting parameters, etc.; as Figure 7As shown, the light uniformity module 25 includes a light uniformity sheet 35 for uniformly dispersing light, a backlight 36 is arranged at both ends of the light uniformity sheet 35, and a plurality of touch keys 24 are arranged on the light uniformity sheet 35. The backlight 36 is used for emitting light and the light uniformity sheet 35 is used for light uniformity, so as to provide backlight for the plurality of touch keys 24 to illuminate the touch keys 24 and make the illumination intensity of each touch key 24 uniform. The light uniformity module 25 is preferably arranged between the light cup plate 4 and the front cover plate 8. Specifically, the light cup plate 4 is provided with a groove 37, the backlight 36 is arranged in the groove 37 and electrically connected with the main board 1, the light uniformity sheet 35 covers the groove 37, and the front cover plate 8 and the light cup plate 4 clamp and fix the light uniformity sheet. The front cover plate 8 is provided with an identifier 38 arranged one-to-one with the plurality of touch keys 24. In the case of power-off and non-use of the light illumination device, the touch keys 24 arranged on the front cover plate 8 are white silk prints. After the light illumination device is powered on, the touch keys 24 are illuminated by the light uniformity module 25, so that the characters on the touch keys 24 are white and bright. In order to more conveniently use the light illumination device, the light illumination device is further provided with a voice module 26 for receiving control instructions. In order to simplify the structure, the voice module 26 can be directly arranged on the main board 1. The voice module 26 can receive control instructions such as adjustment mode, turning on or off of light, reservation, timing, etc., and send the instructions to the control circuit board. The display module 23 is used for displaying the current working mode of the light illumination device and the setting parameters (such as continuous time length) of the mode in real time. The display module 23 can be directly arranged on the front cover plate 8 or arranged on the main board 1 and reserved to be exposed on the light cup plate 4 and the front cover plate 8.
[0069] In addition, as shown in Figure 1 The light illumination device further includes a DC module 30 electrically connected with the main board 1 and used for supplying power to the light illumination device. The DC module 30 has a power interface on the middle frame 18.
[0070] Please refer to Figure 1In assembling the light device, the decorative part 11, the COB light energy cabin 7 and the nozzle 14 are first clamped to the light cup plate 4 to realize the assembly of the decorative part 11, the COB light energy cabin 7, the nozzle 14 and the light cup plate 4, the assembled light cup plate 4 is installed into the middle frame 18, and the periphery of the light cup plate 4 is fixed on the middle frame 18 by screws, then the main board 1, the display module 23 and the atomizing oscillation piece 13 are installed into the middle frame 18 and fixed by screws, after that, the power button 29, the mode button 27, the rotary encoder 28, the DC module 30, the voice module 26 and the rotating shaft assembly 20 are installed from the side of the middle frame 18 and are plugged with the main board 1 to ensure good mechanical connection and electrical connection, then the back cover plate 19 is installed into the reserved position of the middle frame 18 and fixed by screws to cover and tightly fix the internal components, and the cover 31 is sealed into the connecting opening 32 on the back cover plate 19, the two opposite rotating ends of the rotating shaft assembly 20 are fixedly connected with the middle frame 18 and the plate-shaped body 21 of the support seat by screws, then the counterweight 22 is locked on the body by screws, and finally the front cover plate 8 is attached to the light emitting side of the body by back glue.
[0071] The basic principles of the present application are described above in combination with specific embodiments, but it should be pointed out that the advantages, advantages, effects and the like mentioned in the present application are only examples and are not limiting, and these advantages, advantages, effects and the like cannot be considered as the must-have of each embodiment of the present application. In addition, the specific details disclosed above are only for the purpose of example and for the purpose of understanding, and are not limiting, and the above details do not limit the present application to the must-use specific details.
[0072] The block diagrams of the devices, apparatuses, equipment, systems involved in the present application are only illustrative examples and are not intended to require or imply the connection, arrangement, configuration shown in the block diagrams. As those skilled in the art will recognize, these devices, apparatuses, equipment, systems can be connected, arranged, configured in any manner. Words such as "include", "contain", "have" and the like are open-ended words, mean "include but not limited to", and can be used interchangeably. The words "or" and "and" used herein mean the word "and / or", and can be used interchangeably unless the context clearly indicates otherwise. The word "such as" used herein means the phrase "such as but not limited to", and can be used interchangeably.
[0073] It should also be noted that in the devices, equipment and methods of the present application, each component or each step can be decomposed and / or recombined. These decompositions and / or recombination should be considered as equivalent solutions of the present application.
[0074] The above description of the disclosed aspects is provided to enable any person skilled in the art to make or use the application. Various modifications to these aspects will be readily apparent to those skilled in the art, and the generic principles defined herein can be applied to other aspects without departing from the scope of the application. Thus, the present application is not intended to be limited to the aspects shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
[0075] It should be understood that the limiting words "first", "second", "third", "fourth", "fifth" and "sixth" used in the embodiments description of the present application are only used for more clearly explaining the technical solutions, and cannot be used to limit the protection scope of the present application.
[0076] The above description has been presented for the purpose of illustration and description. Furthermore, this description is not intended to limit the embodiments of the application to the forms disclosed herein. Although several example aspects and embodiments have been discussed above, those of ordinary skill in the art will appreciate a variety of modifications, alternatives, permutations, additions, and sub-combinations of the described aspects and embodiments.
Claims
1. An illumination device, characterized in that The light-emitting assembly comprises a light-emitting component and a light-emitting component, the light-emitting component comprises: A main plate has a light-emitting area corresponding to the light-emitting component; A plurality of first light sources are arranged on the main plate and located in the light-emitting area; A plurality of second light sources are arranged on the main plate and arranged in an array in the light-emitting area; Wherein, the irradiance of the second light source is greater than the irradiance of the first light source.
2. Illumination device according to claim 1, characterized in that The first light source is at least one LED lamp arranged on the main plate, the second light source is a COB lamp, and the second light source is embedded in the gap of the first light source in an array form.
3. The illumination device of claim 1, wherein, The light-emitting component comprises: The light cup plate is provided with a plurality of first through holes corresponding to the first light source and a plurality of second through holes corresponding to the second light source; wherein the first through hole is a horn hole to form the first light cup of the first light source; The COB light energy cabin is arranged on the light cup plate and covers the second through hole, the COB light energy cabin comprises an upper surface and a lower surface, the vertical projection area of the upper surface on the light cup plate is smaller than the vertical projection area of the lower surface on the light cup plate; the upper surface is concave towards the main plate direction.
4. Illumination device according to claim 3, characterized in that The light-emitting component further comprises: The front cover plate is used to cover the light cup plate; And / or, The decoration part is arranged on the COB light energy cabin.
5. Illumination device according to any one of claims 1-4, characterized in that, The light device comprises: A middle frame is used to mount the light-emitting assembly and the light-emitting assembly, and is blocked by the light-emitting assembly on one side opening; The back cover plate is connected with the middle frame and blocks the other side opening of the middle frame; The support seat is connected with the middle frame and / or the back cover plate through the rotating shaft assembly.
6. Illumination device according to claim 5, characterized in that It also includes an atomization assembly, the atomization assembly comprises: The mist outlet assembly is arranged on the main plate, the light-emitting assembly and / or the back cover plate, and is used for atomizing liquid; The liquid container is detachably connected to the back cover plate and is in communication with the mist outlet assembly; The humidity sensor is arranged on the mist outlet assembly or the light-emitting assembly for detecting the misting state; The mist outlet channel penetrates through the main plate and the light-emitting assembly, and is used for guiding the atomized liquid droplets.
7. Illumination device according to claim 6, characterized in that It also includes a nozzle for spraying atomized liquid droplets, the nozzle forms the outlet of the mist outlet channel; And / or, The outlets of the mist outlet channels and all the second light sources are arranged in an array, and the outlets of the mist outlet channels are located at the geometric center of the light device.
8. The illumination device of claim 6, wherein, The mist outlet assembly comprises: The atomization oscillation sheet is arranged on the main plate, the light-emitting assembly and / or the back cover plate, and is used for atomizing the liquid flowing out of the liquid container.
9. The illumination device of claim 6, wherein, The mist outlet assembly comprises: The porous structure is arranged on the mist outlet channel for the liquid flowing out of the liquid container to permeate; The fan is arranged on one side of the mist outlet channel corresponding to the porous structure, and is used for blowing air to the porous structure to form atomized liquid droplets.
10. Illumination device according to any one of claims 1-4, characterized in that, The light device further comprises: The display module is arranged on the main plate or the light-emitting assembly and exposed to the light-emitting assembly; The function adjusting assembly at least comprises a touch key arranged on the light-emitting assembly; The light uniformity module is arranged on the main board or the light emitting assembly and comprises a light uniformity sheet and a backlight source arranged at both ends of the light uniformity sheet, so as to illuminate the touch key. The voice module is arranged on the main board or the light emitting assembly and is used for receiving a control instruction.