Bionic atmosphere lamp
Through the bionic shape design of the light guide plate and mounting base and the multi-luminous unit control, the problem of loose parts of the existing ambient lamp is solved, and the stable installation and diverse lighting effects are achieved, which improves the uniformity and aesthetics of the lighting area.
Patent Information
- Application Number
- CN202422111333.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-28
AI Technical Summary
The installation structure of the lighting parts of the existing ambient lights is unreasonable and easy to loosen, which affects the stability of use and maintenance convenience.
采用导光板与安装座的仿生形状设计,通过安装口和安装座本体的抵压固定,结合多发光单元的独立控制,实现牢固安装和多样照明效果。
Enhances the uniformity and aesthetics of the lighting area while providing a variety of lighting atmosphere options, which are securely installed and easy to disassemble and maintain.
Smart Images

Figure CN223090490U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of lighting fixtures, in particular to a bionic atmosphere lamp. Background Art
[0002] A magnetic lamp is a lamp that uses magnetism to adsorb lamp components on a track for power supply and illumination. Magnetic lamps are also called wall atmosphere night lights, magnetic atmosphere lamps or atmosphere lamps in the lighting field. By adjusting the lighting effect, a comfortable and relaxing environment can be created, helping users fall asleep more easily, relax the nervous system, reduce stress and anxiety, promote physical and mental relaxation. At the same time, it can also illuminate dark corners indoors or provide temporary lighting, providing a sense of security and reducing unnecessary fear and anxiety.
[0003] The light sources commonly used for atmosphere lamps are energy-saving lamps and incandescent lamps; with the progress of technology, currently, a large number of LED lamps have been adopted as lighting light sources on the market. LED lamps can emit relatively soft light, have no radiation, low failure rate, convenient maintenance, low temperature rise, long life, low power consumption, and can be used for people's small-scale activities at night. For example, when going to the bathroom at night, turning on ordinary lighting will affect the rest of others, while the atmosphere lamp will not due to its own atmosphere characteristics.
[0004] The various effects of the atmosphere lamp mentioned above are adapted to the usage environment, and these effects are mainly generated by the lighting part. In the prior art, the installation structure of the components of the lighting part is unreasonable, and there may be situations of insecure installation and looseness. Summary of the Utility Model
[0005] The utility model provides a bionic atmosphere lamp to solve the above technical problem that the installation structure of the components of the lighting part in the prior art is unreasonable.
[0006] According to one aspect of the utility model, an embodiment provides a bionic atmosphere lamp, including:
[0007] A mounting base with a mounting opening on the side;
[0008] A light-emitting component arranged in the mounting base; and
[0009] A light guide plate arranged on the side of the mounting base and in a bionic shape; the mounting part on the first side of the light guide plate is inserted into the mounting opening and is pressed and fixed by the mounting base body on both sides, and the mounting part faces the light-emitting component; the light guide plate extends outward and the cross-section of the second side forms a lighting part; the light guide plate is used to guide the light emitted by the light-emitting component to increase the lighting area;
[0010] Wherein, the light-emitting component includes a plurality of light-emitting units arranged along the mounting part; each light-emitting unit corresponds to a lighting part, and each light-emitting unit is used to control the lighting atmosphere of the corresponding lighting part.
[0011] Preferably, the mounting base includes:
[0012] A base for fixing at the position to be installed;
[0013] A base bracket detachably connected to the base, with a mounting opening formed on the side of the base bracket, and the side of the mounting opening facing the base being a through opening; and
[0014] A front shell detachably connected to the base bracket.
[0015] Preferably, the bottom surface of the base is used for adhering to the position to be installed through double-sided tape, and mounting holes are formed on the mounting base for inserting screws to fix the base at the position to be installed; a magnet for magnetically attracting the base at the position to be installed is fixed inside the mounting base, and the position to be installed for magnetically attracting the base has ferromagnetism.
[0016] Preferably, the base bracket is connected to the base by screws, and the front shell and the base are snap-connected; and / or
[0017] Both ends of the mounting opening inside the mounting base are provided with mounting posts, and both ends of the mounting part are provided with limiting holes, and each limiting hole sleeves the corresponding mounting post.
[0018] Preferably, the bionic atmosphere lamp includes:
[0019] A main control box arranged inside the mounting base and supported on the base bracket;
[0020] A control board fixedly connected to the main control box.
[0021] Preferably, the main control box has a receiving cavity, and the bottom of the receiving cavity extends into the base; the receiving cavity is used for accommodating a battery and a light-emitting component, and the light-emitting component is arranged on the side of the battery and the light-emitting surface faces the light guide plate.
[0022] Preferably, the light-emitting component is set as an LED lamp board, and the light-emitting unit is set as an LED lamp bead electrically connected to the LED lamp board;
[0023] Among them, the light-emitting unit includes:
[0024] A first light-emitting unit for emitting first light;
[0025] A second light-emitting unit for emitting second light; and
[0026] A third light-emitting unit for emitting third light;
[0027] The lighting part includes:
[0028] The first lighting part, corresponding to the first light-emitting unit; the first lighting part is used to emit first light rays to present a first lighting atmosphere;
[0029] The second lighting part, corresponding to the second light-emitting unit; the second lighting part is used to emit second light rays to present a second lighting atmosphere; and
[0030] The third lighting part, corresponding to the third light-emitting unit; the third lighting part is used to emit third light rays to present a third lighting atmosphere.
[0031] Preferably, the control board is parallel to the light guide plate, a notch is formed on the control board, and the LED lamp board is perpendicular to the board surface of the control board and is fixed by engaging with the notch through a support leg.
[0032] Preferably, the control board is arranged in the front shell, and the control board is provided with:
[0033] A PIR infrared human body sensor, used to detect whether there is a human body within the sensing range through the infrared radiation emitted by the human body, and the top of the PIR infrared human body sensor protrudes from the avoidance hole on the front shell; and / or
[0034] A touch switch, used to control the light-emitting component;
[0035] Wherein, the touch switch includes:
[0036] The first touch switch, used to turn on / off the light-emitting component and / or switch the human body sensing mode, and the touch sensing part of the first touch switch is arranged on the surface of the front shell; and
[0037] The second touch switch, used to switch the light-emitting mode of the light-emitting component, and the touch sensing part of the second touch switch is arranged on the surface of the front shell;
[0038] Wherein, the first touch switch and the second touch switch are symmetrical about the PIR infrared human body sensor.
[0039] Preferably, light guide plates are arranged on both sides of the mounting seat, the light guide plates are in the shape of wings, and the light guide plates on both sides are symmetrical about the mounting seat; each light guide plate is correspondingly provided with a light-emitting component; the bionic atmosphere lamp as a whole is in the shape of a butterfly spreading its two wings.
[0040] In the technical solution of the present utility model, the bionic atmosphere lamp uses a light guide plate to conduct light and increase the illumination area. The light is delicate, uniform, and has a wide irradiation range. In the setting of multiple light-emitting units, each light-emitting unit can independently control the corresponding illumination part, thereby generating a variable illumination effect, and can create different atmospheres and emotional expressions according to different scenes and needs. In addition, the installation part of the light guide plate on the bionic atmosphere lamp is inserted into the installation opening, and the installation seat body on both sides of the installation opening presses against the installation part to fix the light guide plate, with firm fixation and no looseness. At the same time, the bionic atmosphere lamp is detachable during maintenance, repair, and installation, and the installation method of the light guide plate has the advantages of being convenient for disassembly and assembly, easy to install in place, and stable. BRIEF DESCRIPTION OF THE DRAWINGS
[0041] Figure 1 is an exploded schematic view of the bionic atmosphere lamp in an embodiment;
[0042] Figure 2 is an effect schematic view of the bionic atmosphere lamp simulating the illumination atmosphere in an embodiment;
[0043] Figure 3 is an operation schematic view of the bionic atmosphere lamp being adhesively fixed in an embodiment;
[0044] Figure 4 is an operation schematic view of the bionic atmosphere lamp being fixed with screws in an embodiment;
[0045] Figure 5 is a schematic view of the disassembly state when the bionic atmosphere lamp is fixed with screws in an embodiment.
[0046] REFERENCE SIGNS:
[0047] 1 - front shell; 2 - control board; 3 - LED lamp board; 4 - battery; 5 - first iron sheet; 6 - main control box; 7 - magnet; 8 - base bracket; 9 - light guide plate; 10 - second iron sheet; 11 - base; 12 - double-sided tape; 13 - second touch switch; 14 - first touch switch; 15 - PI R infrared human body sensor; 16 - light-emitting component; 17 - mounting seat; 18 - wall. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0048] It should be noted that, without conflict, the embodiments in the present utility model and the features in the embodiments can be combined with each other. The present utility model will be described in detail below with reference to the drawings and in combination with the embodiments.
[0049] In order to enable those skilled in the art to better understand the solutions of the present utility model, the technical solutions in the embodiments of the present utility model will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts shall fall within the protection scope of the present utility model.
[0050] It should be noted that the terms "first", "second", etc. in the present utility model are used to distinguish similar objects and do not necessarily need to be used to describe a specific order or sequence. It should be understood that such data can be interchanged under appropriate circumstances for the embodiments of the present utility model described herein. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device comprising a series of steps or units does not necessarily have to be limited to those steps or units clearly listed, but may include other steps or units not clearly listed or inherent to these processes, methods, products or devices.
[0051] It should be understood that when an element (such as a layer, film, region, or substrate) is described as being "on" another element, the element can be directly on the other element or there can also be an intermediate element. Moreover, in the present utility model, when it is described that an element is "connected" to another element, the element can be "directly connected" to the other element or "connected" to the other element through a third element.
[0052] Embodiment
[0053] Please refer to Figures 1-5, this embodiment provides a bionic atmosphere lamp, including: a mounting seat 17, a light-emitting component 16 and a light guide plate 9; wherein the mounting seat 17 is used to be fixed at the position to be installed, that is, the fixed installation of the bionic atmosphere lamp is realized; the light-emitting component 16 and the light guide plate 9 are used for the illumination of the bionic atmosphere lamp. Specifically, a mounting port is provided on the side of the mounting seat 17; the light-emitting component 16 is arranged in the mounting seat 17, and the light-emitting component 16 can emit light. The light guide plate 9 is arranged on the side of the mounting seat 17, and the light guide plate 9 is preferably in a bionic shape, such as a wing shape. The mounting portion on the first side of the light guide plate 9 is inserted into the mounting port and is fixed by the mounting seat body on both sides, and the mounting portion faces the light-emitting component and can directly receive light; this fixing method is firm and stable and cannot be loosened. The light guide plate 9 extends outward and the cross section of the second side forms an illumination portion for external illumination, that is, the cross section on the second side contour of the light guide plate 9 is lit to achieve illumination; it can be seen that the light guide plate 9 is used to guide the light emitted by the light-emitting component 16 to increase the illumination area. The lighting part is preferably arc-shaped, and the light will be emitted in a divergent form, the lighting area and lighting atmosphere are wider, and the light is more uniform. Among them, the light guide plate 9 is preferably made of transparent acrylic material, which has good light transmittance and delicate light. Furthermore, the light-emitting assembly 16 includes a plurality of light-emitting units arranged along the mounting portion; each light-emitting unit corresponds to a lighting part, and each light-emitting unit is used to control the lighting atmosphere of the corresponding lighting part, and a variety of lighting atmospheres can be formed.
[0054] like Figure 1 In a specific embodiment shown, the mounting base 17 includes: a base 11, a base bracket 8 and a face shell 1; wherein the base 11 is used to be fixed at a position to be installed, so as to realize the installation of the bionic atmosphere lamp; the base bracket 8 is detachably connected to the base 11, and a mounting opening is provided on the side of the base bracket 8, and the side of the mounting opening facing the base 11 is a through opening; the base 11 and the base bracket 8 press against both sides of the mounting portion of the light guide plate 9 to fix the light guide plate 9. In addition, the face shell 1 can also be detachably connected to the base bracket 8.
[0055] In a preferred embodiment, the base bracket 8 is connected to the base 11 by screws, and the front shell 1 and the base 11 are snap-connected; both can achieve relatively simple detachable connection. Preferably, protrusions are provided on both sides of the inner wall of the front shell 1, and corresponding clamping holes are provided on both sides of the main control box 6 for the protrusions to be inserted into for clamping and fixing; since the main control box 6 is fixed to the base 11, the front shell 1 is connected to the base 11. The front shell 1 preferably covers the main control box 6 because some components will be installed on the main control box 6. In one embodiment, the bionic atmosphere lamp includes: a main control box 6 and a control board 2; the main control box 6 is arranged in the mounting seat 17 and supported on the base bracket 8. The control board 2 is fixedly connected to the main control box 6, and the control board 2 is preferably supported on the main control box 6; specifically, four support columns are provided on the main control box 6 to support the four corners of the control board 2 and are fixed by screws, such as four PA2.0*8 self-tapping screws can be used to fix the control board 2.
[0056] In a preferred embodiment, mounting posts are provided at both ends of the mounting opening in the mounting seat 17, and the mounting posts are arranged in pairs, such as Figure 1 shown, there are four mounting posts. The base bracket 8 is preferably fixed to the base 11 by tightening with screws (such as four PA3.0*8 self-tapping screws) on the mounting posts. Further, limiting holes are provided at both ends of the mounting part of the light guide plate 9, and each limiting hole sleeves a corresponding mounting post; in this way, the light guide plate 9 will not come loose from the mounting opening. Preferably, a through hole is formed in the limiting hole, and the limiting hole is formed in a hook shape and hooks the column body of the mounting post.
[0057] In a preferred embodiment, the main control box 6 has a receiving cavity, and the bottom of the receiving cavity extends into the base 11; the receiving cavity is used to receive the battery 4 and the light-emitting component 16. The battery 4 is connected to the control board 2 to supply power to the control board 2. The light-emitting component 16 is arranged on the side of the battery 4 and the light-emitting surface faces the light guide plate 9. The battery 4 preferably uses a rechargeable lithium battery, and the type of the battery 4 is 18650. The charging port of the battery 4 is arranged on the front shell 1, and the charging port can be selected as a TYPE-C interface, which is convenient to use. A charging indicator is provided beside the TYPE-C interface, which is set to emit red light during charging and green light when fully charged.
[0058] In one embodiment, the light-emitting component 16 is provided as the LED light board 3; the light-emitting unit is provided as the LED lamp beads electrically connected to the LED light board; there are multiple LED lamp beads, which are arranged along the installation part. The light-emitting surface of the LED light board 3 faces the installation part of the light guide plate 9, and the light guide plate 9 can directly guide the light for external illumination. In the light-emitting unit, the first light-emitting unit is used to emit the first light; the second light-emitting unit is used to emit the second light; the third light-emitting unit is used to emit the third light. In the lighting part, the first lighting part corresponds to the first light-emitting unit, and the first lighting part is used to export the first light to illuminate the first lighting atmosphere; the second lighting part corresponds to the second light-emitting unit, and the second lighting part is used to export the second light to illuminate the second lighting atmosphere; the third lighting part corresponds to the third light-emitting unit, and the third lighting part is used to export the third light to illuminate the third lighting atmosphere. There is an arc design in the first, second, and third lighting parts, and the light will be emitted in a divergent form, with a wider and more delicate lighting atmosphere. In addition, the arc design is also more beautiful.
[0059] As Figure 2 shown in the bionic atmosphere lamp, in the light guide plate 9, the light-emitting parts of different colors show the first, second, and third lighting parts and the corresponding first, second, and third lighting atmospheres, and the light colors of the lighting parts create the overall atmosphere. In the setting of multiple light-emitting units, each light-emitting unit can independently control the corresponding lighting part, thereby generating variable lighting effects, and can create different atmospheres and emotional expressions according to different scenes and requirements through changes in parameters such as color, brightness, and blinking frequency. For example, the lighting atmosphere of the bionic atmosphere lamp can have fifteen modes, which are completed by the cooperation of the light-emitting unit and the lighting part, such as: static warm white light → static red light → static green light → static blue light → static orange light → static yellow light → static cyan light → static red, white, and blue → dynamic rainbow → dynamic seven-color opening → dynamic seven-color closing → dynamic seven-color breathing → dynamic seven-color jumping → dynamic seven-color brushing → dynamic counterclockwise white background seven-color trailing.
[0060] In a preferred embodiment, light guide plates 9 are provided on both sides of the mounting base 17, and the light guide plates 9 on both sides are symmetric about the mounting base 17; each light guide plate 9 is correspondingly provided with an LED light board 3; at this time, the battery in the accommodating cavity is sandwiched between the two LED light boards 3. When it comes to the LED light board 3, the installation and fixation method naturally needs to be considered. In one embodiment, the control board 2 is parallel to the light guide plate 9, a slot is opened on the control board 2, and the LED light board 3 is perpendicular to the board surface of the control board 2 and is fixed by the support feet being clamped into the slot.
[0061] In one embodiment, the control board 2 is disposed inside the front shell 1. A PIR infrared human body sensor 15 is provided on the control board 2. The PIR infrared human body sensor 15 is used to detect whether there is a human body within the sensing range by the infrared radiation emitted by the human body. The top of the PIR infrared human body sensor 15 extends out from the avoidance hole on the front shell 1 for normal operation. When the bionic atmosphere lamp is set to the human body induction mode (controlled by the first touch switch 14), when the PIR infrared human body sensor 15 detects a human body, the bionic atmosphere lamp can be lit for illumination.
[0062] In one embodiment, a first touch switch 14 and a second touch switch 13 are further provided on the control board 2. The first touch switch 14 is used to turn on / off the light emitting component 16 and / or switch the human body induction mode. The touch sensing part of the first touch switch 14 is arranged on the surface of the front shell 1, preferably the top surface. The first touch switch 14 is preferably designed to turn on with a single click and enter the constant on mode; click again, flash twice and enter the human body induction mode; click again to turn off the light. The second touch switch 13 is used to switch the light emitting mode of the light emitting component 16. The touch sensing part of the second touch switch 13 is arranged on the surface of the front shell 1, preferably the top surface. The second touch switch 13 is preferably designed to switch the mode with a single click and perform stepless dimming (with memory function can be set) when long pressed in the on state of the light.
[0063] Figure 2 In the described embodiment, a bionic shape of the light guide plate 9 in the bionic atmosphere lamp is reflected. The bionic atmosphere lamp as a whole is in the shape of a butterfly with its two wings spread out, with a beautiful and elegant shape. The bionic atmosphere lamp is a butterfly-shaped atmosphere lamp. Among them, the LED lamp beads of the light emitting units on the LED lamp board 3 can be controlled to change the light emitting color, and can also be adjusted in terms of color temperature and brightness through the control of the second touch switch 13 and the control board 2, and with the cooperation of the light emitting units and the lighting part, so as to realize the light guide plate 9 illuminating in various colors, and the lighting atmosphere of the bionic atmosphere lamp is more beautiful and warm.
[0064] As Figures 3-5 Illustrates various installation methods of the bionic atmosphere lamp. In the prior art, due to the large number of use environments and places, it is difficult to install the bionic atmosphere lamp conveniently in many use environments to meet the needs of different use places. The bionic atmosphere lamp of the present utility model can be applied to the atmosphere lighting of living rooms, bedrooms, bathrooms, corridors, bedside, basements, garages, bar counters, etc. in homes, and of course also for the atmosphere lighting of commercial places; specifically, the bionic atmosphere lamp has the following several flexible and convenient installation forms:
[0065] 1. As Figure 3As shown in the figure, for the pasting and fixing method, a double-sided adhesive tape 12 is pasted on the bottom surface of the base 11, and it is adhered to the installation position on the wall 18 through the double-sided adhesive tape 12, which is simple and convenient. During installation, first tear off the double-sided adhesive tape 12 (such as 3M tape), paste one side on the bottom surface of the base 11, then tear off the other side and paste it to the desired position, and press to fix it. As Figure 4 shown;
[0066] 2. As Figure 4 , Figure 5 shown, for the screw fixing method, mounting holes for fixing the base 11 at the installation position on the wall 18 are provided on the mounting seat 17; screws are inserted into the mounting holes, and the screws are tightened at the installation position to realize the fixed installation of the bionic atmosphere lamp, and the installation is more firm and reliable; during installation, place the bionic atmosphere lamp base 11 at the desired position, drill two holes corresponding to the two screws, and tighten the screws to achieve the preliminary installation and fixation; then, as Figure 5 shown, install the base bracket 8, the control board 2 and the face shell 1 on the base 11 to assemble the bionic atmosphere lamp;
[0067] 3. For the magnetic attraction fixing method, a magnet 7 for magnetically attracting the base 11 at the installation position is fixed inside the mounting seat 17. At this time, the installation position has ferromagnetic (material). The magnetic attraction can be removed immediately to change the installation position, which is flexible, convenient, simple and easy; among them, as Figure 1 , Figure 5 shown, the magnet 7 is fixed in a form clamped by iron sheets on both sides. Specifically: a first iron sheet 5 is provided at the bottom of the accommodation cavity in the main control box 6, and the first iron sheet 5 can be pressed by the battery 4 or the LED lamp board 3; a magnet 7 is arranged below the accommodation cavity (regarding the magnet 7, a circular hole is preferably opened at the bottom of the accommodation cavity, and the magnet 7 is arranged in the circular hole to magnetically attract the first iron sheet 5); a second iron sheet 10 is correspondingly arranged in the base 11 for the magnet 7. The second iron sheet 10 can attract magnetism or cooperate with the first iron sheet 5 to fix the magnet 7; it is convenient to magnetically attract the bionic atmosphere lamp to the installation position.
[0068] This embodiment also provides a set of technical parameters for the bionic atmosphere lamp, as shown in the following table:
[0069]
[0070] The above is only the preferred embodiment of the present invention, and it is not used to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A bionic ambiance light, characterized in that, Comprising: A mounting base with a mounting opening formed on its side surface; A light-emitting component disposed within the mounting base; And A light guide plate disposed on the side surface of the mounting base and having a bionic shape; the mounting portion on the first side of the light guide plate is inserted into the mounting opening and is pressed and fixed by the mounting base bodies on both sides, and the mounting portion faces the light-emitting component; the light guide plate extends outward and the cross-section of the second side forms an illumination portion; the light guide plate is used to guide the light emitted by the light-emitting component to increase the illumination area; Wherein, the light-emitting component includes a plurality of light-emitting units arranged along the mounting portion; each of the light-emitting units corresponds to an illumination portion, and each of the light-emitting units is used to control the illumination atmosphere of the corresponding illumination portion.
2. The bionic atmosphere lamp according to claim 1, characterized in that, The mounting base includes: A base for fixing at the position to be installed; A base bracket detachably connected to the base, with the mounting opening formed on the side surface of the base bracket, and the side of the mounting opening facing the base is a through-hole; and A face shell detachably connected to the base bracket.
3. The bionic atmosphere lamp according to claim 2, wherein, The bottom surface of the base is used to adhere to the position to be installed by double-sided tape, and mounting holes for inserting screws to fix the base at the position to be installed are formed on the mounting base; a magnet for magnetically attracting the base at the position to be installed is fixed within the mounting base, and the position to be installed for magnetically attracting the base has ferromagnetism.
4. The bionic atmosphere lamp according to claim 2, characterized in that, The base bracket is connected to the base by screws, and the face shell and the base are snap-connected; and / or Both ends of the mounting opening within the mounting base are provided with mounting posts, and both ends of the mounting portion are provided with limiting holes, and each of the limiting holes sleeves the corresponding mounting post.
5. The bionic atmosphere lamp according to claim 2, wherein The bionic atmosphere lamp includes: A main control box disposed within the mounting base and supported on the base bracket; A control board fixedly connected to the main control box.
6. The bionic atmosphere lamp according to claim 5, characterized in that, The main control box has a receiving cavity, and the bottom of the receiving cavity extends into the base; the receiving cavity is used to accommodate a battery and the light-emitting component, and the light-emitting component is disposed on the side of the battery and the light-emitting surface faces the light guide plate.
7. The bionic atmosphere lamp according to claim 5 or 6, characterized in that The light-emitting component is set as an LED lamp board, and the light-emitting unit is set as an LED lamp bead electrically connected to the LED lamp board; Wherein, the light-emitting unit includes: A first light-emitting unit for emitting first light; A second light-emitting unit for emitting second light; and A third light-emitting unit for emitting third light; The illumination portion includes: A first illumination portion corresponding to the first light-emitting unit; the first illumination portion is used to guide the first light to present a first illumination atmosphere; A second illumination portion corresponding to the second light-emitting unit; the second illumination portion is used to guide the second light to present a second illumination atmosphere; and A third illumination portion corresponding to the third light-emitting unit; the third illumination portion is used to guide the third light to present a third illumination atmosphere.
8. The bionic atmosphere lamp according to claim 7, characterized in that The control board is parallel to the light guide plate, a notch is formed on the control board, and the LED lamp board is perpendicular to the board surface of the control board and is fixed by the legs being snapped into the notch.
9. The bionic atmosphere lamp according to claim 5, characterized in that, The control board is disposed within the face shell, and the control board is provided with: A PIR infrared human body sensor for detecting whether there is a human body within the sensing range through the infrared radiation emitted by the human body, and the top of the PIR infrared human body sensor protrudes from the avoidance hole on the face shell; And / or A touch switch for controlling the light-emitting component; Wherein, the touch switch includes: A first touch switch for turning on / off the light-emitting component and / or switching the human body induction mode, and the touch sensing part of the first touch switch is arranged on the surface of the front shell; and A second touch switch for switching the light-emitting mode of the light-emitting component, and the touch sensing part of the second touch switch is arranged on the surface of the front shell; Wherein, the first touch switch and the second touch switch are symmetric about the PIR infrared human body sensor.
10. The bionic atmosphere lamp according to any one of claims 1-6 and 9, characterized in that, Light guide plates are arranged on both sides of the mounting seat. The light guide plates are in the shape of wings and the light guide plates on both sides are symmetric about the mounting seat; each light guide plate is correspondingly provided with a light-emitting component; the bionic atmosphere lamp as a whole is in the shape of a butterfly with both wings spread out.