Atmosphere lamp and display device

By setting optical components and optical parts in the light panel and lampshade, the light is softened twice, solving the problems of narrow illumination angle and direct glare of traditional atmosphere lights, and improving the visual experience and display effect.

CN223318943UActive Publication Date: 2025-09-09CHONGQING HUIKE JINYANG TECH
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422662136.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-09-09
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

The ambient light of traditional monitors has a narrow lighting angle, the direct light is dazzling, and the visual effect is monotonous, which affects the user experience.

Method used

A first optical component is set on the lamp panel, and a second optical part is set in the light-transmitting layer of the lampshade. The first optical component diffuses the light, and the second optical part refracts the light, forming a double softening effect, thereby improving the light softening effect and visual experience.

Benefits of technology

Through two softening processes, the light softening effect and visual experience of the atmosphere light are improved, providing a better lighting atmosphere and enriching the display effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223318943U_ABST
    Figure CN223318943U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of display, and particularly discloses an atmosphere lamp and a display device.The atmosphere lamp comprises a shell, a lamp panel and a lampshade, the lampshade is connected with the shell, and the lamp panel is arranged in the shell; a first optical piece is arranged between the lamp panel and the lampshade, and the lampshade comprises a light-transmitting layer; a second optical part is arranged in the light-transmitting layer; the first optical part diffuses light rays emitted by the lamp panel to the second optical part, the second optical part refracts the light rays penetrating through the first optical part, and the light rays are emitted out through the light transmitting layer. In this way, the light softening effect and the visual effect of the atmosphere lamp are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the field of display, and in particular to an atmosphere lamp and a display device. Background Art

[0002] As users' demands for monitors become higher and higher, atmosphere lights have gradually become a new favorite. The lighting effects of atmosphere lights can better create an immersive feeling for users.

[0003] The ambient lights of traditional monitors are mostly two-dimensional flat visual effects, and the lighting angle is mostly direct in a single plane. On the one hand, the lighting angle is narrow, and on the other hand, the direct light display is more dazzling, making the visual display effect of the ambient light relatively simple, affecting the user experience.

[0004] Therefore, how to improve the light softening effect and visual effect of the atmosphere light has become a problem that needs to be solved urgently in this field. Utility Model Content

[0005] The present application discloses an ambient light and a display device, the purpose of which is to enhance the light softening effect and visual effect of the ambient light.

[0006] An embodiment of the present application discloses an atmosphere lamp, comprising a shell, a lamp board and a lampshade, wherein the lampshade is connected to the shell, and the light board is arranged in the shell; a first optical component is arranged between the light board and the lampshade, and the lampshade includes a light-transmitting layer; a second optical part is arranged in the light-transmitting layer; the first optical component diffuses the light emitted by the light board to the second optical part, and the second optical part refracts the light passing through the first optical component, and emits the light through the light-transmitting layer.

[0007] Optionally, the second optical portion is a structure with multiple sun-drying stripes, the multiple sun-drying stripes are arranged at intervals, and the entire layer is laid in the light-transmitting layer.

[0008] Optionally, the light-transmitting layer includes a first light-transmitting layer and a second light-transmitting layer, the first light-transmitting layer and the second light-transmitting layer are stacked, and the first light-transmitting layer is located close to the side of the second light-transmitting layer close to the light board; the sun-scorching structure is provided in the first light-transmitting layer.

[0009] Optionally, the first light-transmitting layer is made of a white light-transmitting material; the second light-transmitting layer is made of a black light-transmitting material, and the light transmittance of the second light-transmitting layer is greater than the light transmittance of the first light-transmitting layer.

[0010] Optionally, the light-transmitting layer includes at least three adjacent inclined surfaces, and the three inclined surfaces are interconnected to form a cone shape.

[0011] Optionally, the shell includes a middle frame, the middle frame includes a first frame body and a second frame body, the first frame body and the second frame body are stacked, and the first frame body and the second frame body form a stepped shape; the first frame body and the second frame body are both provided with multiple sinks, and each sink on the first frame body is staggered with each sink on the second frame body.

[0012] Optionally, the shell further includes a lampshade shell, the lampshade shell is connected to the middle frame, an inclined portion is provided on the lampshade shell, and the inclined portion is connected to the light board on a side close to the lampshade; the first optical component is parallel to the inclined portion.

[0013] Optionally, the inclination angle between the inclined portion and the lampshade ranges from 25° to 55°.

[0014] Optionally, the light board includes a circuit board and a plurality of light-emitting units, the plurality of light-emitting units are arranged in an array on the circuit board, the circuit board is divided into a plurality of light-emitting areas, and each light-emitting area has at least two light-emitting units; the circuit board is used to control the light-emitting units in two adjacent light-emitting areas to display different colors.

[0015] An embodiment of the present application further discloses a display device, including a rear case. The display device further includes the aforementioned atmosphere light, which is mounted on the rear case.

[0016] The present application makes improvements to the atmosphere lamp by setting a first optical component on the lamp panel and setting a second optical part inside the light-transmitting layer of the lampshade, and using the combination of the first optical component and the second optical part to process the light from the lamp panel; when the light is emitted from the lamp panel, it will first reach the first optical component, which diffuses the light emitted by the lamp panel and scatters the light, which will differentiate and refract the light, thereby causing the light emitted from the lamp panel to be softened for the first time; and the light differentiated and softened by the first optical component will be irradiated into the lampshade of the atmosphere lamp, and the second optical part in the lampshade refracts the light, thereby causing the light to be softened for the second time at the position of the second optical part, and after the secondary softening, the final lighting effect will be presented on the outer surface of the light-transmitting layer, that is, the present application softens the light twice by the first optical component and the second optical part in the atmosphere lamp, and its light scattering effect makes the lighting effect softer under the internal structure processing, which can effectively improve the softening effect and visual effect of the atmosphere lamp, and allow users to have a good lighting atmosphere experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The included drawings are used to provide a further understanding of the embodiments of the present application, which constitute a part of the specification, are used to illustrate the implementation methods of the present application, and together with the text description, explain the principles of the present application. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without inventive work. In the drawings:

[0018] Figure 1 This is a schematic diagram of a first embodiment of the ambient light of the present application;

[0019] Figure 2 This is a schematic diagram of a second embodiment of the ambient light of the present application;

[0020] Figure 3 This is a schematic diagram of a lampshade in the third embodiment of the atmosphere lamp of the present application;

[0021] Figure 4 This is a schematic diagram of the middle frame of the fourth embodiment of the atmosphere lamp of the present application;

[0022] Figure 5 This is a schematic diagram of a fifth embodiment of the ambient light of the present application;

[0023] Figure 6 This is a schematic diagram of a light board in a sixth embodiment of the atmosphere light of the present application;

[0024] Figure 7 FIG. 1 is a schematic diagram of an embodiment of a display device of the present application.

[0025] Among them, 10, display device; 100, atmosphere light; 200, rear shell; 110, shell; 111, middle frame; 112, first frame body; 113, second frame body; 114, sink; 120, lampshade shell; 121, inclined portion; 130, lamp board; 131, circuit board; 132, light-emitting area; 133, light-emitting unit; 140, lampshade; 141, second optical part; 142, sun-drying structure; 143, light-transmitting layer; 144, first light-transmitting layer; 145, second light-transmitting layer; 150, inclined surface; 160, first optical component. DETAILED DESCRIPTION

[0026] The present application is described in detail below with reference to the accompanying drawings and optional embodiments. It should be noted that, under the premise of no conflict, the embodiments or technical features described below can be arbitrarily combined to form new embodiments.

[0027] Figure 1 This is a schematic diagram of the first embodiment of the atmosphere lamp of the present application, as shown Figure 1As shown, an embodiment of the present application discloses an atmosphere lamp 100, including a shell 110, a lamp board 130 and a lampshade 140, the lampshade 140 is connected to the shell 110, and the lamp board 130 is arranged in the shell 110; a first optical component 160 is arranged between the lamp board 130 and the lampshade 140, and the lampshade 140 includes a light-transmitting layer 143; a second optical part 141 is arranged in the light-transmitting layer 143; the first optical component 160 diffuses the light emitted by the lamp board 130 to the second optical part 141, and the second optical part 141 refracts the light passing through the first optical component 160, and emits it through the light-transmitting layer 143.

[0028] The present application improves the atmosphere lamp 100 by arranging a first optical element 160 on the lamp board 130 and arranging a second optical portion 141 inside the light-transmitting layer 143 of the lampshade 140. The first optical element 160 and the second optical portion 141 are combined to process the light of the lamp board 130. When the light is emitted from the lamp board 130, it will first reach the first optical element 160. The first optical element 160 diffuses the light emitted from the lamp board 130 and scatters the light. This will differentiate and refract the light, thereby softening the light emitted from the lamp board 130 for the first time. After being differentiated by the first optical element 160, the light will be The softened light will be irradiated into the lampshade 140 of the atmosphere lamp 100, and the second optical part 141 in the lampshade 140 refracts the light, so that the light is softened twice at the position of the second optical part 141. After the secondary softening, the final lighting effect will be presented on the outer surface of the light-transmitting layer 143. That is, the present application softens the light twice through the first optical component 160 and the second optical part 141 in the atmosphere lamp 100. The light scattering effect makes the lighting effect softer under the internal structure processing, which can effectively enhance the softening effect and visual effect of the atmosphere lamp 100, and can give users a good lighting atmosphere experience.

[0029] The first optical element 160 in this application can be a diffuser, and the second optical portion 141 is a plurality of tanning structures 142. The tanning structures 142 are arranged at intervals and laid in a layer within the light-transmitting layer 143. The tanning structures 142 are embedded in the light-transmitting layer 143 of the lampshade 140, forming multiple lines within the light-transmitting layer 143.

[0030] When the lamp board 130 emits light, the light will first reach the diffuser, which diffuses the light emitted by the lamp board 130 and scatters the light, thereby dividing and refracting the light, thereby softening the light emitted from the lamp board 130 for the first time; and the light after being divided and softened by the diffuser will be irradiated into the light-transmitting layer 143 of the lampshade 140, and the grain structure 142 in the light-transmitting layer 143 refracts the light, thereby softening the light for the second time at the position of the grain structure 142. After the second softening, the final lighting effect will be presented on the outer surface of the light-transmitting layer 143, which is conducive to improving the softness and visual effect of the light.

[0031] That is, the present application forms a plurality of sun-drying structures 142 in the light-transmitting layer 143, which can, on the one hand, improve the overall aesthetics of the lampshade 140 and enhance the user experience; on the other hand, the sun-drying structures 142 can be used to soften the light transmitted from the diffuser for a second time, thereby softening the light and enhancing the visual effect.

[0032] Figure 2 This is a schematic diagram of the second embodiment of the atmosphere lamp of the present application, as shown in FIG. Figure 2 As shown, Figure 2 The embodiment shown is based on Figure 1 The improvement is that the light-transmitting layer 143 includes a first light-transmitting layer 144 and a second light-transmitting layer 145, the first light-transmitting layer 144 and the second light-transmitting layer 145 are stacked, and the first light-transmitting layer 144 is located on the side of the second light-transmitting layer 145 close to the light board 130; the first light-transmitting layer 144 is provided with a sun-scorching structure 142.

[0033] This embodiment is different from the previous embodiment in that, in this embodiment, the light-transmitting layer 143 of the lampshade 140 has two layers, namely a first light-transmitting layer 144 and a second light-transmitting layer 145, wherein the first light-transmitting layer 144 is located in the inner layer of the lampshade 140, and the second light-transmitting layer 145 is located in the outer layer of the lampshade 140, and a sun-scorching structure 142 is provided in the first light-transmitting layer 144 located in the inner layer of the lampshade 140.

[0034] When light is emitted from the lamp board 130, it will first reach the first optical element 160. The first optical element 160 diffuses the light emitted by the lamp board 130 and scatters the light, which will differentiate and refract the light, thereby causing the light emitted from the lamp board 130 to be softened for the first time; and the light differentiated and softened by the first optical element 160 will be irradiated into the lampshade 140 of the atmosphere lamp 100, and the light entering the lampshade 140 will first pass through the first light-transmitting layer 144, and the light will be refracted by the sun-scorching structure 142 in the first light-transmitting layer 144, so that the light will be softened for the second time at the position of the second optical part 141. After the secondary softening, the final lighting effect will be presented on the outer second light-transmitting layer 145.

[0035] That is, the present application softens the light twice through the first optical component 160 and the second optical part 141 in the atmosphere lamp 100, and transmits the softened light through two layers of light-transmitting layers 143, thereby making the light scattering effect softer. This can effectively enhance the softening effect and visual effect of the atmosphere lamp 100, and allow users to have a good lighting atmosphere experience.

[0036] Specifically, the first light-transmitting layer 144 is made of a white light-transmitting material; the second light-transmitting layer 145 is made of a black light-transmitting material, and the light transmittance of the second light-transmitting layer 145 is greater than the light transmittance of the first light-transmitting layer 144 .

[0037] In this embodiment, the first light-transmitting layer 144 can be made of a milky white polycarbonate material combined with a diffuser raw material, and the second light-transmitting layer 145 can be made of a thermoplastic polymer structural material combined with a black diffuser. In this way, the outer layer of the lampshade 140 of the atmosphere lamp 100 can be a highly light-transmitting black, and the inner layer can be milky white. The sun-scorched structure 142 set in the first light-transmitting layer 144 can intensify the refraction effect of the lamp bead lamp shadow and soften the light.

[0038] Of course, the first light-transmitting layer 144 and the second light-transmitting layer 145 may also adopt other color combinations, that is, the first light-transmitting layer 144 and the second light-transmitting layer 145 may have different colors or the same color, and the specific design may be based on the needs of the user's actual environment.

[0039] When the transmittance of the second light-transmitting layer 145 in the outer layer is greater than the transmittance of the first light-transmitting layer 144, the light has a better sense of layering after irradiating the first light-transmitting layer 144 and the second light-transmitting layer 145. Moreover, when the second light-transmitting layer 145 is completely black, the lighting effect can be better.

[0040] Figure 3 This is a schematic diagram of a lampshade in the third embodiment of the atmosphere lamp of the present application, as shown in FIG. Figure 3 As shown, Figure 3 The embodiment shown is based on Figure 2 The light-transmitting layer 143 includes at least three adjacent inclined surfaces 150, and the three inclined surfaces 150 are connected to each other in a cone shape.

[0041] In this embodiment, the structure of the lampshade 140 is improved, and the three adjacent light-emitting surfaces in the light-transmitting layer 143 of the lampshade 140 are tilted and spliced ​​to form a cone, so that the three inclined surfaces 150 of the light-transmitting layer 143 have a three-dimensional effect. When the light emitted by the lamp board 130 is irradiated and softened twice by the first optical component 160 and the second optical part 141, it will eventually shine on the three inclined surfaces 150 and emit outward, which further expands the range of light emission and the viewing angle. When the atmosphere lamp 100 is installed on the rear shell 200 of the display device 10, the lighting effect can be effectively viewed and felt on both the top and back sides of the display device 10, and the light-transmitting layer 143 with a conical design can achieve a three-dimensional visual effect, which helps to improve the user experience.

[0042] Figure 4 This is a schematic diagram of the middle frame of the fourth embodiment of the atmosphere lamp of this application, as shown Figure 4 As shown, Figure 4 The embodiment shown is based on Figure 1 The improvement is that the shell 110 includes a middle frame 111, and the middle frame 111 includes a first frame body 112 and a second frame body 113. The first frame body 112 and the second frame body 113 are stacked, and the first frame body 112 and the second frame body 113 form a stepped shape; a plurality of sink grooves 114 are provided on the first frame body 112 and the second frame body 113, and each sink groove 114 on the first frame body 112 is staggered with each sink groove 114 on the second frame body 113.

[0043] The middle frame 111 in this embodiment is used to fix the lampshade 140, thereby limiting the lampshade 140 to the area enclosed by the middle frame 111, and further limiting the light to be displayed within the fixed area, and using the middle frame 111 to block the light emitted by the lamp board 130 to prevent light from leaking out in areas where light is not required.

[0044] The middle frame 111 of the present application adopts a double-frame stacking to form a stepped structure. On the one hand, the overall depth of the middle frame 111 can be increased to increase the space for accommodating various components in the atmosphere lamp 100, such as the light board 130 and the first optical component 160. On the other hand, the stepped structure design can also make room for the installation of the middle frame 111 and the rear shell 200 of the display device 10, making it easier for the middle frame 111 to be assembled with the rear shell 200 of the display device 10 using the step portion formed between the first frame 112 and the second frame 113.

[0045] In addition, by opening a sinking groove 114 on the first frame 112 and the second frame 113, the inside and outside of the atmosphere lamp 100 are connected by using the sinking groove 114, so that the heat generated by the lamp board 130 when emitting light can be brought to the external environment through the air circulation inside and outside the atmosphere lamp 100, thereby playing a certain ventilation and heat dissipation role.

[0046] In addition, the sink groove 114 design can also block the light of the light-emitting unit 133 on the light board 130 to a certain extent, preventing the light from leaking out after being refracted by the second optical part 141 in the light-transmitting layer 143.

[0047] The staggered design of each sinking groove 114 on the first frame 112 and each sinking groove 114 on the second frame 113 can avoid the situation where the structural strength of the middle frame 111 at the sinking groove 114 is reduced due to the corresponding positions of the sinking grooves 114 at the upper and lower positions of the first frame 112 and the second frame 113, thereby making the installation of the middle frame 111 and the atmosphere lamp 100 more stable; and can effectively improve the problem that when the sinking grooves 114 of the upper and lower frames are dissipating heat at the same time, the hot air flows interfere with each other at the sinking grooves 114 of the upper and lower frames, thereby reducing the heat dissipation effect.

[0048] Figure 5 This is a schematic diagram of the fifth embodiment of the atmosphere lamp of the present application, as shown Figure 5 As shown, Figure 5 The embodiment shown is based on Figure 4 The improvement is that the shell 110 also includes a lampshade shell 120, which is connected to the middle frame 111. The lampshade shell 120 is provided with an inclined portion 121, and the inclined portion 121 is connected to the light board 130 on the side close to the lampshade 140; the first optical element 160 is parallel to the inclined portion 121.

[0049] In this embodiment, an inclined portion 121 is provided on the lampshade shell 120. When the atmosphere lamp 100 is installed, the lamp board 130 of the atmosphere lamp 100 can be installed on the inclined portion 121, and the lamp board 130 is fixed by using the inclined portion 121. Since the inclined portion 121 is parallel to the first optical element 160, the lamp board 130 installed on the inclined portion 121 can also be parallel to the first optical element 160. The light emitted by the lamp board 130 can be more irradiated onto the first optical element 160, ensuring that sufficient light can be scattered by the first optical element 160, improving light loss, making the visual effect of the light shadow effect on the lampshade 140 softer, and making the visual transition of different color pigments on the lampshade 140 more natural.

[0050] Furthermore, according to the principle of light intensity, when the light-emitting unit 133 is a lamp bead, the optimal scattering light intensity angle of the lamp bead is less than or equal to 130°. Therefore, in order to achieve a better scattering effect of the light emitted by the lamp board 130, the present application designs the inclination angle between the inclined portion 121 and the lampshade 140. The specific design is as follows:

[0051] The angle α between the inclined portion 121 and the lampshade 140 ranges from 25° to 55°. When the angle α between the inclined portion 121 and the lampshade 140 is between 25° and 55°, the light emitted by the lamp panel 130 can achieve a good heat dissipation effect, thereby improving the light softening effect of the atmosphere lamp 100.

[0052] Figure 6 This is a schematic diagram of a light board in the sixth embodiment of the atmosphere light of this application, as shown in FIG. Figure 6 As shown, Figure 6 The embodiment shown is based on Figure 5 The improvement of the light board 130 includes a circuit board 131 and a plurality of light emitting units 133, the plurality of light emitting units 133 are arranged in an array on the circuit board 131, and the circuit board 131 is divided into a plurality of light emitting areas 132 , Each light-emitting area 132 has at least two light-emitting units 133 . The circuit board 131 is used to control the light-emitting units 133 in two adjacent light-emitting areas 132 to display different colors.

[0053] In this embodiment, the light board 130 is divided into multiple light-emitting areas 132, and the light-emitting units 133 in each light-emitting area 132 are controlled to emit light by the circuit board 131. Since the light-emitting units 133 in two adjacent light-emitting areas 132 display different colors, the combination of the light-emitting units 133 in each light-emitting area 132 can display different light effects, which is conducive to enriching the diversity of the display of the atmosphere lamp 100.

[0054] For example, when the light-emitting unit 133 is a lamp bead, according to optical principles, the optimal light-emitting angle of the light-emitting unit 133 on the lamp board 130 is 130°. With 130° as the radiation light source, 56 light-emitting units 133 are required to illuminate the entire lampshade 140 without blind spots.

[0055] On the light board 130, the 56 light-emitting units 133 can be mainly divided into 5 light-emitting areas 132. The color of the light-emitting unit 133 in different modes in each area will be set with different RGB values, and the color layered area will be set with a transitional RGB color value; then the circuit board 131 is used to control the different light-emitting areas 132 to emit light according to a preset mode, so that the circuit board 131 can be used to control different light-emitting areas 132 to display light of different colors, thereby forming a variety of light effects through the combination of multiple light-emitting areas 132, which provides users with a variety of lighting effects and modes to choose from, allowing users to have a good lighting atmosphere experience and meet the customer's needs for visual effects in different scenarios.

[0056] Figure 7 This is a schematic diagram of an embodiment of the display device of the present application, as shown in FIG. Figure 7As shown, the embodiment of the present application further discloses a display device 10, including a rear housing 200. The display device 10 also includes the aforementioned ambient light 100, which is mounted on the rear housing 200. The rear housing 200 is used to protect the ambient light 100 from damage by external forces during the transportation or movement of the display device 10. It can also, to a certain extent, reduce the risk of external moisture entering the ambient light 100 and causing corrosion to the ambient light 100, thereby improving the service life of the display device 10 and the ambient light 100.

[0057] In the conventional display device 10 , the direct light from the ambient light 100 is rather glaring, which makes the visual display effect of the ambient light 100 relatively monotonous, affecting the user experience.

[0058] In response to the above problems, the present application improves the atmosphere lamp 100 in the display device 10, by placing a first optical member 160 on the lamp board 130 and setting a second optical portion 141 inside the light-transmitting layer 143 of the lampshade 140, and using the first optical member 160 and the second optical portion 141 to process the light from the lamp board 130; when the light is emitted from the lamp board 130, it will first reach the first optical member 160, and the first optical member 160 will diffuse the light emitted from the lamp board 130 and scatter the light, which will differentiate and refract the light, thereby softening the light emitted from the lamp board 130 for the first time; and after being divided and refracted by the first optical member 160, the light will be The softened light will be irradiated into the lampshade 140 of the atmosphere lamp 100, and the second optical part 141 in the lampshade 140 refracts the light, so that the light is softened twice at the position of the second optical part 141. After the secondary softening, the final lighting effect will be presented on the outer surface of the light-transmitting layer 143. That is, the present application softens the light twice through the first optical part 160 and the second optical part 141 in the atmosphere lamp 100. The light scattering effect makes the lighting effect softer under the internal structure processing, which can effectively improve the softening effect and visual effect of the light of the atmosphere lamp 100, so that users can have a good lighting atmosphere experience, and further improve the quality of the display device 10.

[0059] In addition, in the present application, the rear shell 200 of the display device 10 can also be directly used as the lampshade shell 120 of the atmosphere lamp 100, that is, an inclined portion 121 for fixing the lamp board 130 is directly provided on the rear shell 200 of the display device 10. When installing the atmosphere lamp 100, the lamp board 130 is directly installed on the inclined portion 121 on the rear shell 200 of the display device 10, and the first optical component 160 and the lampshade 140 are both installed on the middle frame 111. Finally, the middle frame 111 is snap-fitted and connected to the rear shell 200 of the display device 10 to complete the assembly of the atmosphere lamp 100 and the display device 10. This is conducive to saving costs, simplifying the structure of the display device 10, and easily realizing the lightness and thinness of the display device 10.

[0060] It should be noted that the inventive concept of this application can form a large number of embodiments, but the length of the application document is limited and it is impossible to list them one by one. Therefore, under the premise of no conflict, the various embodiments or technical features described above can be arbitrarily combined to form new embodiments. After the various embodiments or technical features are combined, the original technical effects will be enhanced.

[0061] The above content is a further detailed description of the present application in conjunction with specific optional implementation methods, and the specific implementation of the present application cannot be considered to be limited to these descriptions. For ordinary technicians in the technical field to which the present application belongs, they can make several simple deductions or substitutions without departing from the concept of the present application, which should be considered to fall within the scope of protection of the present application.

Claims

1. An atmosphere lamp, comprising a housing, a lamp panel and a lampshade, wherein the lampshade is connected to the housing and the lamp panel is arranged in the housing; characterized in that: A first optical component is arranged between the lamp board and the lampshade, and the lampshade includes a light-transmitting layer; a second optical part is arranged in the light-transmitting layer; the first optical component diffuses the light emitted by the lamp board to the second optical part, and the second optical part refracts the light passing through the first optical component and emits it from the light-transmitting layer.

2. The atmosphere lamp according to claim 1, wherein: The second optical portion is a structure with multiple sun-striped stripes, and the multiple sun-striped striped structures are arranged at intervals, and the entire layer is laid in the light-transmitting layer.

3. The atmosphere lamp according to claim 2, wherein: The light-transmitting layer includes a first light-transmitting layer and a second light-transmitting layer. The first light-transmitting layer and the second light-transmitting layer are stacked, and the first light-transmitting layer is located close to the side of the second light-transmitting layer close to the light board. The sun-scorching structure is arranged in the first light-transmitting layer.

4. The atmosphere lamp according to claim 3, wherein: The first light-transmitting layer is made of a white light-transmitting material; the second light-transmitting layer is made of a black light-transmitting material, and the light transmittance of the second light-transmitting layer is greater than the light transmittance of the first light-transmitting layer.

5. The atmosphere lamp according to claim 4, characterized in that: The light-transmitting layer comprises at least three adjacent inclined surfaces, and the three inclined surfaces are connected to each other in a cone shape.

6. The atmosphere lamp according to claim 1, wherein: The shell includes a middle frame, and the middle frame includes a first frame body and a second frame body. The first frame body and the second frame body are stacked and formed in a stepped shape. The first frame body and the second frame body are both provided with a plurality of sinks, and each sink on the first frame body is staggered with each sink on the second frame body.

7. The atmosphere lamp according to claim 6, wherein: The housing further includes a lampshade shell, which is connected to the middle frame. An inclined portion is provided on the lampshade shell, and a side of the inclined portion close to the lampshade is connected to the light board; the first optical component is parallel to the inclined portion.

8. The atmosphere lamp according to claim 7, wherein: The inclination angle between the inclined portion and the lampshade ranges from 25° to 55°.

9. The atmosphere lamp according to claim 1, wherein: The light board includes a circuit board and a plurality of light-emitting units, wherein the plurality of light-emitting units are arranged in an array on the circuit board. The circuit board is divided into a plurality of light-emitting areas, and each light-emitting area has at least two light-emitting units. The circuit board is used to control the light-emitting units in two adjacent light-emitting areas to display different colors.

10. A display device comprising a rear housing, characterized in that: The display device further includes the atmosphere light according to any one of claims 1 to 9, wherein the atmosphere light is mounted on the rear housing.