An ambience device
By setting slots inside the housing of the ambient light device to install a light-diffusing element and a projection sheet, the light-diffusing element is used to convert the light source into a uniform light source, which solves the problem of high cost in traditional printing processes and achieves a low-cost, high-brightness ambient light effect and clear pattern projection.
Patent Information
- Application Number
- CN202521868984.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-08-29
AI Technical Summary
Existing ambient lighting devices are costly when printing complex patterns, full-color or color gradient patterns, and traditional printing processes use heavy materials and are wasteful.
The design employs a slotted design within the housing to install the first ambient component, which includes a first light source group, a light diffuser, and a projection sheet. The distance between the light diffuser and the light source group is less than the distance between the projection sheet and the light source group. Both the light diffuser and the projection sheet are installed within the slot. The light diffuser converts the light source into a uniform light source, and the light passes through the projection sheet to form a clear pattern. Flexible film is used to replace the heavy printing plate.
It reduces manufacturing costs, achieves high-brightness lighting effects, saves materials, and can project clearly. The flexible film can be replaced with different patterns to meet different needs.
Smart Images

Figure CN224680661U_ABST
Abstract
Description
[Technical Field]
[0001] This utility model relates to the field of atmosphere device technology, and in particular to an atmosphere device for creating a light effect atmosphere. [Background Technology]
[0002] An existing ambient lighting device includes a main body with a bottom shell module installed at the bottom. The main body has an internal cavity and a first opening on one side. A picture light panel module is installed at the first opening. The picture light panel module consists of a picture panel and a diffuser. The diffuser is installed on one side of the picture panel and the diffuser is installed inside the first opening.
[0003] The aforementioned ambient lighting module displays a pattern on a transparent plate, allowing light to pass through the plate and maintain high brightness in the pattern area, thus achieving an aesthetic effect. This printing process requires the use of opaque or semi-transparent materials (such as ink or metal plating) to form specific patterns on the plate, but the printing cost is high for complex patterns, full-color patterns, or color gradient patterns.
[0004] Therefore, it is necessary to design an atmosphere device to solve the above problems. [Utility Model Content]
[0005] In view of the problems faced by the prior art, this utility model provides a low-cost atmosphere device for creating a light effect atmosphere.
[0006] To achieve the above objectives, the present invention employs the following technical means:
[0007] An atmosphere device, comprising:
[0008] The housing includes an outwardly facing slot; the first atmosphere component includes a first light source group, a light-diffusing element located outside the first light source group, and a projection sheet. The first light source group is mounted on the housing and faces the slot. The distance between the light-diffusing element and the first light source group is less than the distance between the projection sheet and the first light source group. Both the light-diffusing element and the projection sheet are mounted on the slot, and the projection sheet is exposed outwardly in the slot. When the atmosphere device is in operation, the first atmosphere component constitutes a first atmosphere zone.
[0009] Furthermore, the first atmosphere component includes a light-transmitting element located outside the projection sheet, and the housing includes a first plate and a second plate forming the slot. The first atmosphere component is fixedly connected to the first plate and the second plate and is at least partially housed in the slot.
[0010] Furthermore, the light-diffusing element or the light-transmitting element is provided with a slot, and the light-diffusing element or the light-transmitting element is provided with a buckling part, the buckling part and the slot engaging with each other, and the light-diffusing element and the light-transmitting element together constitute the positioning structure of the projection sheet.
[0011] Furthermore, the light-diffusing element or the light-transmitting element includes a main body extending in the vertical direction, a positioning part extending from the main body in the horizontal direction, and a slot penetrating the positioning part. The light-diffusing element or the light-transmitting element includes a latching part protruding from the main body and protruding into the slot. The light-diffusing element and the light-transmitting element together hold the projection sheet.
[0012] Furthermore, the first plate and / or the second plate are provided with positioning grooves that communicate with the slot, and the upper and / or lower sides of the first atmosphere component are fixed to the positioning grooves.
[0013] Furthermore, the housing includes a protruding portion extending into the slot, the first light source group is fixed to the protruding portion and is disposed toward the light-diffusing element, and the distance between the light-diffusing element and the first light source group is in the range of 5mm to 60mm.
[0014] Furthermore, the projection sheet is configured as a flexible film, the film including a first surface and a second surface, and an arcuate surface connecting the first surface and the second surface. The first light source group includes a first lamp body and a second lamp body, and a transition lamp body connecting the first lamp body and the second lamp body. The light from the first lamp body illuminates the first surface, the light from the second lamp body illuminates the second surface, and the light from the transition lamp body illuminates the arcuate surface.
[0015] Furthermore, the housing includes a receiving cavity communicating with the slot and a sound-producing assembly installed in the receiving cavity. The sound-producing assembly includes a housing and a speaker housed in the housing. The housing includes a first opening and a second opening extending vertically through the housing, and a diaphragm exposed in the first opening. The sound-producing end of the speaker is fixed to the second opening, wherein the first opening and the second opening are offset from each other.
[0016] Furthermore, the first ambient area includes multiple ambient zones with different orientations, the ambient zones being arranged around the sound-producing component, wherein the planes containing two adjacent ambient zones are perpendicular to each other.
[0017] Furthermore, the atmosphere device further includes a second atmosphere component mounted on the housing. The second atmosphere component includes a light guide, a light strip disposed toward the light guide, and a turntable located above the light guide. The light guide includes a first part and a second part extending downward from the first part. The turntable is located above the first part. The second part is at least partially disposed above the plane on which the housing is located. Light emitted by the light strip passes through the second part and is projected outward.
[0018] Furthermore, the housing includes a protrusion extending from the housing in a vertical direction, the light strip is disposed around the protrusion and fixed to the protrusion, the first part is located above the light strip, and the second part is exposed outward from the housing. When the atmosphere device is in working state, the second atmosphere component constitutes a second atmosphere zone.
[0019] Furthermore, the light guide cover further includes a third part extending from the first part in a vertical direction, the light strip is mounted on the third part and is disposed facing the second part, and when the atmosphere device is in working state, the second atmosphere component constitutes a second atmosphere zone.
[0020] Furthermore, the atmosphere device further includes a drive assembly and a rotating component connected to the drive assembly. The rotating component includes a turntable and / or a decorative element, which protrudes outward from the housing. The drive assembly drives the decorative element and / or the rotating component to rotate.
[0021] Compared with the prior art, the atmosphere device of this utility model has the following beneficial effects:
[0022] By setting a housing, including an outward slot; a first atmosphere component, including a first light source group, a light-diffusing element located outside the first light source group, and a projection sheet, the first light source group is installed in the housing and faces the slot, the distance between the light-diffusing element and the first light source group is less than the distance between the projection sheet and the first light source group, the light-diffusing element and the projection sheet are both installed in the slot, and the projection sheet is exposed outward in the slot. When the atmosphere device is in working state, the first atmosphere component constitutes a first atmosphere zone; this utility model creates a light effect atmosphere through the light-diffusing element and the projection sheet. The light-diffusing element converts the light source of the first light source group into a uniform light source, and the light source passes through the projection sheet, so that the specific pattern area maintains high brightness; compared with the traditional printing process (printing a specific pattern on a transparent plate for display), the thin film structure of the projection sheet replaces the relatively thick printing plate, saving materials and waste, thereby reducing manufacturing costs; by converting light into a uniform light source through the light-diffusing element, clear projection is achieved by projecting onto the pattern layer of the projection sheet, eliminating the need for the thick ink layer superimposed to compensate for scattering in the traditional process, further saving costs. [Attached Image Description]
[0023] Figure 1 This is an overall structural diagram of an atmosphere device proposed in this utility model;
[0024] Figure 2 for Figure 1 3D exploded view;
[0025] Figure 3 A three-dimensional view showing the removal of the light-diffusing element, slide, and light-transmitting element;
[0026] Figure 4 An exploded three-dimensional view of the light-diffusing component and the light-transmitting component;
[0027] Figure 5 for Figure 3 A magnified view of a section at point A in the middle;
[0028] Figure 6 for Figure 1 Top view;
[0029] Figure 7 for Figure 6 A sectional view taken along line BB;
[0030] Figure 8 for Figure 6 A sectional view taken along line CC;
[0031] Figure 9 A top view of another embodiment;
[0032] Figure 10 for Figure 9 A sectional view taken along line DD;
[0033] Explanation of reference numerals in the accompanying drawings for specific embodiments:
[0034] Slotting 12 Second board 13 Second positioning groove 131 Protrusion 132 Outer wall 1321 Protrusion 14 Containment cavity 15 Battery 16 First Atmosphere Component 2 First light source group 21 First lamp body 211 Second lamp body 212 Transition lamp body 213 Light-diffusing component 22 First Main Body Section 221 First Positioning Unit 222 First slot 223 First buckle part 224 Slide 23 Page 1, page 231 Page 232 Curved surface 233 24 light-transmitting components Second Main Body Section 241 Second positioning unit 242 Second slot 243 Second buckle part 244 Second Atmosphere Component 3 Light guide cover 31 Part 1, Chapter 311 Part 2, Chapter 312 Part 3, Chapter 313 LED strip 32 Turntable 33 Decorative piece 34 Pronunciation Component 4 Box 41 First opening 411 Second opening 412 Diaphragm 413 Speaker 42 Driver Component 5 Swing arm assembly 6 Swing arm 61 Swing arm seat 62 Switch assembly 7
Detailed Implementation Methods
[0035] To facilitate a better understanding of the purpose, structure, features, and effects of this utility model, the present utility model will now be further described in conjunction with the accompanying drawings and specific embodiments.
[0036] like Figures 1 to 10 As shown, this utility model discloses an atmosphere device 100, which includes a housing 1, a first atmosphere component 2 installed on the housing 1, and a swing arm component 6 exposed on the surface of the housing 1. The housing 1 includes a first plate 11 and a second plate 13, and an outward slot 12 is formed between the first plate 11 and the second plate 13.
[0037] like Figure 2 , Figure 7 and Figure 8As shown, the first plate 11 includes a receiving cavity 15 communicating with the slot 12, a battery 16 and a circuit board housed in the receiving cavity 15, a switch assembly 7, a sound-producing assembly 4 mounted in the receiving cavity 15, a drive assembly 5, a protrusion 14 protruding into the slot 12, a first positioning groove 111 communicating with the slot 12, a positioning hole extending upward from the first plate 11, and a support foot extending downward from the first plate 11. The sound-producing assembly 4 includes a housing 41 and a speaker housed in the housing 41. The housing 41 includes a first opening 411 and a second opening 412 penetrating vertically through the housing 41, and a diaphragm 413 exposed in the first opening 411. The sound-producing end of the speaker is fixed to the second opening 412, wherein the first opening 411 and the second opening 412 are offset. The arrangement includes: In this embodiment, the first opening 411 and the second opening 412 are opened on the bottom surface of the housing 41, and the housing 1 has a first through hole corresponding to the first opening 411 to ensure that the diaphragm 413 is exposed in the first opening 411; the housing 1 has a horn hole corresponding to the second opening 412, and sound insulation cotton is filled between the second opening 412 of the housing 41 and the horn hole, and the sound-producing end of the horn 42 is positioned directly opposite the horn hole; In another embodiment, the second opening 412 is opened on the bottom surface of the housing 41, the first opening 411 is opened on the top surface or side surface of the housing 41, the diaphragm 413 is exposed in the first opening 411, the housing 1 has a horn hole corresponding to the second opening 412, and sound insulation cotton is filled between the second opening 412 of the housing 41 and the horn hole. The protruding portion 14 is vertically disposed on the first plate 11. The protruding portion 14 is a wall structure extending upward from the first plate 11. A reinforcing rib is provided between the protruding portion 14 and the first positioning groove 111 to enhance the rigidity of the protruding portion 14. The first positioning groove 111 includes a first wall and a second wall, which extend from the first plate 11 and are disposed around the edge of the first plate 11, forming a groove structure between the first wall and the second wall.
[0038] like Figure 2 , Figure 7 and Figure 8As shown, the second plate 13 includes a second through hole and a third through hole penetrating the second plate 13, a positioning post extending downward from the second plate 13, a second positioning groove 131 disposed on the second plate 13 and communicating with the slot 12, a protrusion 132 disposed on the upper surface of the second plate 13, and three mounting posts disposed around the protrusion 132; the positioning post extends into the positioning hole of the first plate 11 and is fixed by screws to realize the connection between the first plate 11 and the second plate 13, and the first plate 11 and the second plate 13 form an outward slot 12. The first positioning groove 111 and the second positioning groove 131 are defined as positioning grooves, and the protrusion 132 is disposed around the second through hole.
[0039] like Figures 1 to 5 As shown, the first atmosphere component 2 includes a first light source group 21, a light-diffusing element 22 and a projection sheet 23 located outside the first light source group 21, and a light-transmitting element 24 located outside the projection sheet 23. The first light source group 21 is mounted on the housing 1 and faces the slot 12. The distance between the light-diffusing element 22 and the first light source group 21 is less than the distance between the projection sheet 23 and the first light source group 21. Both the light-diffusing element 22 and the projection sheet 23 are mounted on the slot 12, and the projection sheet 23 is exposed outward in the slot 12. When the atmosphere device 100 is in working state, the first atmosphere component 2 constitutes the first... An ambient light zone is defined in this embodiment. The first light source group 21 is a strip light, fixed to the protruding portion 14 and facing the light-diffusing element 22. The distance between the light-diffusing element 22 and the first light source group 21 ranges from 5mm to 60mm. When the light-diffusing element 22 is too close to the first light source group 21 (distance less than 5mm), the first light source group 21 cannot sufficiently diffuse the light, resulting in dotted light spots that cannot fully and clearly display the pattern on the projection sheet 23. When the light-diffusing element 22 is too far from the first light source group 21 (distance greater than 60mm), the light source's brightness decreases due to the excessive distance, causing the pattern area of the projection sheet 23 to be dim. Figure 3 , Figure 4 and Figure 5As shown, in this embodiment, the light-diffusing element 22 and the light-transmitting element 24 clamp the projection sheet 23 between them. The light-diffusing element 22 or the light-transmitting element 24 is provided with a slot and a latching portion. The latching portion and the slot are engaged with each other. The light-diffusing element 22 and the light-transmitting element 24 together constitute the positioning structure of the projection sheet 23. The light-diffusing element 22 includes a first main body portion 221 extending vertically, a first positioning portion 222 extending horizontally from the first main body portion 221, and a first slot 223 penetrating the first positioning portion 222. The light-diffusing element 22 includes a first latching portion 224 protruding from the first main body portion 221, which protrudes into the first slot 223. The light-transmitting element... 24 includes a second main body portion 241 extending vertically, a second positioning portion 242 extending horizontally from the second main body portion 241, and a second slot 243 penetrating the second positioning portion 242. The light-transmitting member 24 includes a second latching portion 244 protruding from the second main body portion 241, the second latching portion 244 protruding into the second slot 243. The light-diffusing member 22 and the light-transmitting member 24 together hold the projection sheet 23. The first main body portion 221 and the second main body portion 241 are defined as main bodies, the first positioning portion 222 and the second positioning portion 242 are defined as positioning portions, the first slot 223 and the second slot 243 are defined as slots, and the first latching portion 224 and the second latching portion 244 are defined as latching portions. Figure 2 and Figure 3As shown, the projection sheet 23 is a flexible film made of a transparent / semi-transparent material, and its pattern is formed by printing on a flexible film substrate using thermal transfer technology. In this embodiment, the film includes a first surface 231, a second surface 232, and an arc-shaped surface 233 connecting the first surface 231 and the second surface 232. Correspondingly, the first light source group 21 includes a first lamp body 211, a second lamp body 212, and a transition lamp body 213 connecting the first lamp body 211 and the second lamp body 212. The light from the first lamp body 211 irradiates towards the first surface 231, and the light from the second lamp body 212 irradiates towards the second surface 232. The light from the lamp body 213 shines on the arc-shaped surface 233. In this embodiment, the first surface 231 and the second surface 232 of the film and their corresponding lamp bodies are on different planes. The light-diffusing element 22 and the light-transmitting element 24 are also set to bend according to the curvature of the film. The curved area and the horizontal area are smoothly transitioned. Thus, the first atmosphere area forms multiple atmosphere zones with different orientations. The atmosphere zones are arranged around the sound-producing component 4. The planes of two adjacent atmosphere zones are perpendicular to each other. The planes of two adjacent atmosphere zones are perpendicular to each other and correspond to the rectangular shell 1 structure of the atmosphere device 100 in this embodiment, thereby realizing a multi-directional pattern display area.
[0040] like Figure 1-3 , Figure 7 , Figures 8-10 As shown, the atmosphere device 100 further includes a second atmosphere component 3 installed on the housing 1. The second atmosphere component 3 includes a light guide 31, a light strip 32 disposed toward the light guide 31, a turntable 33 located above the light guide 31, and a decorative piece 34 exposed outward from the housing. In this embodiment, the light guide 33 includes a first part 311, a second part 312 extending downward from the first part 311, a third part 313 extending vertically from the first part 311, and three mounting holes formed in the first part 311. The light strip 32 is installed on the third part 313 and disposed toward the second part 312. The turntable 33 is located above the first part 311. The second part 312 is at least partially higher than the plane on which the housing 1 is located. The light emitted by the light strip 32 passes through the second part 312 and is projected outward. The mounting holes correspond to the mounting posts of the second plate 13. During the assembly of the light guide cover 33, the mounting holes are aligned with the mounting posts and secured with screws to prevent the light guide cover 33 from detaching from the second plate 13; in another embodiment, such as Figure 9 and Figure 10As shown, the light guide cover 33 is disposed over the protrusion 132, the protrusion 132 is exposed in the middle area of the light guide cover 33, the light strip 32 is disposed around the protrusion 132 and fixed to the protrusion 132, the first part 311 is located above the light strip 32, and the second part 312 is exposed outward from the housing 1.
[0041] It is worth noting that the driving component 5 is a motor, and the output shaft of the motor passes through the second through hole and is connected to the turntable 33 and / or the decorative piece 34. The turntable 33 and the decorative piece 34 are exposed outward from the housing 1. In this embodiment, the driving component 5 drives the decorative piece 34 and the turntable 33 to rotate. In another embodiment, the driving component 5 drives one of the decorative piece 34 and the turntable 33 to rotate. When the atmosphere device 100 is in working condition, the second atmosphere component 3 constitutes a second atmosphere zone.
[0042] The first atmosphere component 2 is fixedly connected to the first plate 11 and the second plate 13, and is at least partially received in the slot 12. In this embodiment, the upper side of the first atmosphere component 2 is fixed to the second positioning slot 131, and the lower side of the first atmosphere component 2 is fixed to the first positioning slot 131. In another embodiment, the upper or lower side of the first atmosphere component 2 is fixed to the first positioning slot 111 or the second positioning slot 131.
[0043] like Figure 1 -like Figure 3 As shown, the swing arm assembly 6 includes a swing arm base 62 and a swing arm 61 disposed on the swing arm base 62. The swing arm 61 can rotate around the swing arm base 62 as the rotation center. The swing arm base 62 is exposed on the upper surface of the housing 1 through the third through hole. The housing 1 includes a switch assembly 7 installed inside the housing 1. The switch assembly 7 includes a transmission gear and a rotary switch. The rotation shaft of the swing arm 61 passes through the swing arm base 62 and meshes with the transmission gear. The transmission gear is connected to the rotary switch. When the swing arm 61 rotates, it drives the transmission gear to rotate. When the swing arm 61 rotates to a set angle, it triggers the main switch of the switch assembly 7, thereby controlling the ambient light device 100 to enter the working state or turn off. The swing arm assembly 6 controls the switch of the ambient light device 100 or the sound component 4. The swing arm assembly 6 controls the switch through the gear set. The mechanical angle sensor replaces the electronic angle sensor, which saves the cost of hardware facilities and improves the operability for users.
[0044] In summary, the atmosphere device of this utility model has the following beneficial effects:
[0045] (1) By providing a housing 1, including an outward slot 12; a first atmosphere component 2, including a first light source group 21, a light-diffusing element 22 located outside the first light source group 21, and a projection sheet 23, the first light source group 21 is installed on the housing 1 and is arranged facing the slot 12, the distance between the light-diffusing element 22 and the first light source group 21 is less than the distance between the projection sheet 23 and the first light source group 21, the light-diffusing element 22 and the projection sheet 23 are both installed on the slot 12, and the projection sheet 23 is exposed outward in the slot 12. When the atmosphere device 100 is in working state, the first atmosphere component 2 constitutes First Atmosphere Zone: This invention creates a light effect atmosphere through a light-diffusing element 22 and a projection sheet 23. The light-diffusing element 22 converts the light source of the first light source group 21 into a uniform light source. The light source passes through the projection sheet 23, maintaining high brightness in specific pattern areas. Compared with traditional printing processes (printing specific patterns on transparent plates for display), the thin film structure of the projection sheet 23 replaces the relatively thick printing plate, saving materials and waste, thereby reducing manufacturing costs. The light-diffusing element 22 converts light into a uniform light source, projecting it onto the pattern layer of the projection sheet 23 to achieve clear projection, eliminating the need for the thick ink layer superimposed to compensate for scattering in traditional processes, further saving costs.
[0046] (2) By setting the first atmosphere component 2 to include a light-transmitting element 24 located outside the projection sheet 23, and the housing 1 including a first plate 11 and a second plate 13 forming the slot 12, the first atmosphere component 2 is fixedly connected to the first plate 11 and the second plate 13, and is at least partially housed in the slot 12; the present invention sets the light-transmitting element 24, which not only filters and eliminates stray light from the light penetrating the projection sheet 23, but also cooperates with the light-diffusing element 22 to tightly press the projection sheet 23 between the two, preventing the projection sheet 23 from deforming and causing the light path to shift, while maintaining the flatness of the projection sheet 23 and presenting a complete pattern effect. Secondly, the first atmosphere component is housed in the slot 12 between the first plate 11 and the second plate 13. The first plate 11 and the second plate 13 concentrate the light from the light source group and guide it to the projection area of the slot 12 to form lateral overflow light, so that the atmosphere effect is revealed over a large area.
[0047] (3) By setting the light-diffusing element 22 or the light-transmitting element 24 to have a slot, the light-diffusing element 22 or the light-transmitting element 24 to have a buckle part, the buckle part and the slot are engaged with each other, and the light-diffusing element 22 and the light-transmitting element 24 together constitute the positioning structure of the projection sheet; the light-diffusing element 22 and the light-transmitting element 24 of this utility model are connected by the buckle part and the slot to ensure that the projection sheet 23 is tightly attached between the light-diffusing element 22 and the light-transmitting element 24.
[0048] (4) The light-diffusing element 22 or the light-transmitting element 24 includes a main body extending in the vertical direction, a positioning part extending in the horizontal direction from the main body, and a slot penetrating the positioning part. The light-diffusing element 22 or the light-transmitting element 24 includes a buckling part protruding from the main body and protruding into the slot. The light-diffusing element 22 and the light-transmitting element 24 together clamp the projection sheet 23. The main body extending in the vertical direction of this utility model is adapted to the size of the projection sheet 23 to prevent the projection sheet 23 from being displaced in the vertical direction. The positioning part extending in the horizontal direction constrains the planar displacement. The interlocking arrangement of the buckling part and the slot makes the clamping force evenly distributed and eliminates the micro-wrinkles of the projection sheet 23 caused by local stress.
[0049] (5) By setting the first plate 11 and / or the second plate 13 to have a positioning groove that communicates with the slot 12, the upper side and / or lower side of the first atmosphere component 2 is fixed to the positioning groove; the shape of the positioning groove of this utility model matches the contour of the upper side and / or lower side of the first atmosphere component 2, and during assembly, it is quickly guided into the preset installation position through the positioning groove, reducing the manual alignment operation steps and reducing the assembly difficulty.
[0050] (6) By setting the housing 1 to include a protruding part 14 extending into the slot 12, the first light source group 21 is fixed to the protruding part 14 and is arranged towards the light-diffusing element 22. The distance between the light-diffusing element 22 and the first light source group 21 is in the range of 5mm to 60mm. The present invention sets the protruding part 14 extending from the housing 1 to fix the first light source group 21 in the middle area of the first plate 11 and the second plate 13, ensuring that the light is fully incident on the light-diffusing element 22 and eliminating the edge dark area caused by oblique illumination. In addition, when the light-diffusing element 22 is too close to the first light source group 21 (distance less than 5mm), the first light source group 21 cannot fully diffuse the light, resulting in a dotted light spot, which cannot fully and clearly display the pattern on the projection sheet 23. When the light-diffusing element 22 is too far away from the first light source group 21 (distance greater than 60mm), the light source brightness is reduced due to the excessive distance, resulting in the pattern area of the projection sheet 23 being dark.
[0051] (7) By setting the projection sheet 23 as a flexible film, the film includes a first surface 231 and a second surface 232 and an arc surface 233 connecting the first surface 231 and the second surface 232. The first light source group 21 includes a first lamp body 211 and a second lamp body 212 and a transition lamp body 213 connecting the first lamp body 211 and the second lamp body 212. The light from the first lamp body 211 shines towards the first surface 231, the light from the second lamp body 212 shines towards the second surface 232, and the light from the transition lamp body 213 shines towards the arc surface 233. This utility model achieves seamless light effect on curved surfaces. The flexible material of the projection sheet 23 can bend with the curved surface of the housing 1, ensuring that the light remains uniformly illuminated in the corner area. This overcomes the problem of pattern deformation at corners in traditional flat printing, replaces expensive curved surface printing processes, and greatly reduces production costs. In addition, since the film uses a flexible thin film substrate, and with the flexible disassembly of the light-diffusing component 22 and the light-transmitting component 24, the slide 23 can be easily replaced to replace different pattern types and meet consumer needs.
[0052] (8) The housing 1 is provided with a receiving cavity 15 connected to the slot 12 and a sound-producing component 4 installed in the receiving cavity 15. The sound-producing component 4 includes a housing 41 and a speaker 42 housed in the housing 41. The housing 41 includes a first opening 411 and a second opening 412 that pass through the housing 41 vertically, and a diaphragm 413 exposed in the first opening 411. The sound-producing end of the speaker 42 is fixed to the second opening 412. The first opening 411 and the second opening 412 are misaligned. The present invention provides an independent housing 41 to house the speaker 42, which prevents sound energy from spreading inside the housing 1 and reduces the attenuation of sound energy after reflection or blocking inside the housing 1. The first opening 411 and the second opening 412 of the housing 41 are respectively provided with the diaphragm 413 and the sound-producing end of the speaker 42. The sound waves generated by the diaphragm 413 can be directly and unobstructedly radiated to the outside of the sound-producing component 4, shortening the sound propagation path and improving the sound production efficiency.
[0053] (9) By setting the first atmosphere zone to include multiple atmosphere partitions with different orientations, the atmosphere partitions are set around the sound component 4, wherein the planes of two adjacent atmosphere partitions are perpendicular to each other; this utility model breaks the limitation of single-direction projection, and the atmosphere partitions with different orientations form a multi-directional surrounding light and shadow atmosphere, so that the atmosphere effect changes from a plane to a three-dimensional space, and enhances the atmosphere penetration of the atmosphere device 100; the mutually perpendicular partitions make the light and shadow form a hierarchical difference of "up and down / left and right / front and back" in three-dimensional space, avoiding the blandness of light and shadow in a single direction and enhancing the visual hierarchy.
[0054] (10) The atmosphere device 100 further includes a second atmosphere component 2 installed on the housing 1. The second atmosphere component 3 includes a light guide 31, a light strip 32 facing the light guide 31, and a turntable 33 located above the light guide 31. The light guide 31 includes a first part 311 and a second part 312 extending downward from the first part 311. The turntable 33 is located above the first part 311. The second part 312 is at least partially higher than the plane of the housing 1. The light emitted by the light strip 32 passes through the second part 312 and is projected outward. The present invention creates a second atmosphere zone by setting the second atmosphere component 3, thereby further improving the atmosphere effect.
[0055] (11) The ambient device 100 further includes a driving component 5, and the second ambient component 3 includes a decorative element 34 exposed to the housing 1. The turntable 33 and / or the decorative element 34 are connected to the driving component 5, and the driving component 5 drives the turntable 33 and / or the decorative element 34 to rotate. The present invention uses a dynamically set turntable 33 to imitate the shape design of a disc speaker, thereby improving the sense of three-dimensionality and interactivity. By setting the decorative element 34, the driving component 5 can control the rotation of the turntable 33 and / or the decorative element 34, further enhancing the fun of the product.
[0056] The above detailed description is only a description of the preferred embodiment of this utility model and is not intended to limit the patent scope of this utility model. Therefore, all equivalent technical changes made using the content of this invention's specification and illustrations are included within the patent scope of this invention.
Claims
1. An atmosphere device, characterized in that, include: The housing includes outward slots; The first atmosphere component includes a first light source group, a light-diffusing element located outside the first light source group, and a projection sheet. The first light source group is installed in the housing and faces the slot. The distance between the light-diffusing element and the first light source group is less than the distance between the projection sheet and the first light source group. Both the light-diffusing element and the projection sheet are installed in the slot, and the projection sheet is exposed outward in the slot. When the atmosphere device is in working condition, the first atmosphere component constitutes a first atmosphere zone.
2. An atmosphere device as described in claim 1, characterized in that: The first atmosphere component includes a light-transmitting element located outside the projection sheet, and the housing includes a first plate and a second plate forming the slot. The first atmosphere component is fixedly connected to the first plate and the second plate and is at least partially housed in the slot.
3. An atmosphere device as described in claim 2, characterized in that: The light-diffusing component or the light-transmitting component is provided with a slot, and the light-diffusing component or the light-transmitting component is provided with a buckle part. The buckle part and the slot are engaged with each other, and the light-diffusing component and the light-transmitting component together constitute the positioning structure of the projection sheet.
4. An atmosphere device as described in claim 3, characterized in that: The light-diffusing element or the light-transmitting element includes a main body extending in the vertical direction, a positioning part extending from the main body in the horizontal direction, and a slot penetrating the positioning part. The light-diffusing element or the light-transmitting element includes a buckling part protruding from the main body and protruding into the slot. The light-diffusing element and the light-transmitting element together hold the projection sheet.
5. An atmosphere device as described in claim 2, characterized in that: The first plate and / or the second plate are provided with positioning grooves that communicate with the slot, and the upper and / or lower sides of the first atmosphere component are fixed to the positioning grooves.
6. An atmosphere device as described in claim 2, characterized in that: The housing includes a protruding portion extending into the slot, the first light source group is fixed to the protruding portion and is disposed toward the light-diffusing element, and the distance between the light-diffusing element and the first light source group is in the range of 5mm to 60mm.
7. An atmosphere device according to any one of claims 1-6, characterized in that: The projection sheet is configured as a flexible film, the film including a first surface and a second surface, and an arcuate surface connecting the first surface and the second surface. The first light source group includes a first lamp body and a second lamp body, and a transition lamp body connecting the first lamp body and the second lamp body. The light from the first lamp body shines toward the first surface, the light from the second lamp body shines toward the second surface, and the light from the transition lamp body shines toward the arcuate surface.
8. An atmosphere device according to any one of claims 1-6, characterized in that: The housing includes a receiving cavity communicating with the slot and a sound-producing assembly installed in the receiving cavity. The sound-producing assembly includes a housing and a speaker housed in the housing. The housing includes a first opening and a second opening extending vertically through the housing, and a diaphragm exposed in the first opening. The sound-producing end of the speaker is fixed to the second opening, wherein the first opening and the second opening are offset.
9. An atmosphere device as described in claim 8, characterized in that: The first ambient zone includes multiple ambient zones with different orientations, the ambient zones being arranged around the sound-producing component, wherein the planes containing two adjacent ambient zones are perpendicular to each other.
10. An atmosphere device according to any one of claims 1-6, characterized in that: The ambient lighting device further includes a second ambient lighting component mounted on the housing. The second ambient lighting component includes a light guide, a light strip disposed toward the light guide, and a turntable located above the light guide. The light guide includes a first part and a second part extending downward from the first part. The turntable is located above the first part. The second part is at least partially disposed above the plane on which the housing is located. Light emitted by the light strip passes through the second part and is projected outward.
11. An atmosphere device as described in claim 10, characterized in that: The housing includes a protrusion extending from the housing in a vertical direction. The light strip is arranged around the protrusion and fixed to the protrusion. The first part is located above the light strip, and the second part is exposed outward from the housing. When the atmosphere device is in working state, the second atmosphere component constitutes a second atmosphere zone.
12. An atmosphere device as described in claim 10, characterized in that: The light guide cover further includes a third part extending from the first part in a vertical direction, the light strip is installed on the third part and is disposed towards the second part, and when the atmosphere device is in working state, the second atmosphere component constitutes a second atmosphere zone.
13. An atmosphere device as described in claim 10, characterized in that: The atmosphere device further includes a drive assembly, the second atmosphere assembly including a decorative element exposed outward from the housing, the turntable and / or the decorative element being connected to the drive assembly, the drive assembly driving the turntable and / or the decorative element to rotate.