An inflatable apparatus with a laser light ambiance lamp

CN122813142APending Publication Date: 2026-09-25ZHONGSHAN TIDEA TOYS MFG LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202611059692.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-07-16
Publication Date
2026-09-25

AI Technical Summary

Technical Problem

[0004]本发明的目的是克服了现有技术的问题,提供了一种带有镭射激光氛围灯的充气设备,以解决传统充气设备灯光单一性的问题,通过创新性的灯光设计,为充气设备赋予更加丰富多样的灯光效果,增强其氛围观赏性,满足不同场景下的使用需求

Benefits of technology

[0025]1、本发明将多个氛围灯装置可拆卸连接在充气主体,一方面,使用者可以根据实际需求灵活调整氛围灯装置的数量和位置,以达到最佳的灯光效果;另一方面,拆装方便,便于对氛围灯装置进行维护和更换,有效地增强了充气设备的灵活性和可维护性,方便使用者根据实际需求进行个性化设置和操作。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122813142A_ABST
    Figure CN122813142A_ABST
Patent Text Reader

Abstract

The application relates to the technical field of inflating equipment, and discloses inflating equipment with a laser atmosphere lamp, which comprises an inflating main body and an atmosphere lamp device, and a plurality of atmosphere lamp devices are detachably connected to the inflating main body; the atmosphere lamp device comprises a base shell and a cover body which are adaptively connected in a cover combination mode; the cover body is provided with a first light outlet and a second light outlet; a color-changing light source module is installed in the base shell in a position corresponding to the first light outlet; a dynamic laser diffraction device is installed in the cover body in a position corresponding to the second light outlet; and a PCB control mainboard is arranged in the base shell and electrically connected with the color-changing light source module and the dynamic laser diffraction device. The inflating equipment with the laser atmosphere lamp is convenient to disassemble and assemble, is convenient to maintain and replace the atmosphere lamp device, effectively enhances the flexibility and maintainability of the inflating equipment, and through the innovative light design, the inflating equipment is endowed with more various light effects, the atmosphere ornamental property is enhanced, and the use requirements in different scenes are met.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of inflatable equipment technology, and in particular to an inflatable equipment with a laser ambient light. Background Technology

[0002] Inflatable structures are widely used in daily life and entertainment, such as inflatable slides, inflatable castles, inflatable swimming pools, and inflatable advertising models. Primarily targeting children's play areas, they are commonly found in outdoor public spaces, commercial areas, and cultural and tourism leisure settings. When used at night, these inflatable structures often require lighting to enhance their visibility and appeal. However, traditional lighting designs for inflatable structures are relatively simple, typically using fixed-color illumination, lacking variation and interest, and failing to meet people's needs for creating a unique atmosphere and enhancing visual appeal.

[0003] For example, Chinese patent application CN201922329501.5 discloses a luminous inflatable children's castle trampoline, including a trampoline body. The trampoline body includes a square base, with a staircase connected to the front side of the square base. Uprights are connected to the four corners of the upper part of the square base, and the upper parts of the uprights are connected by connecting columns. Each upright and connecting column has a transparent bag inside, containing built-in LEDs and built-in batteries electrically connected to the LEDs. The connecting columns on the left and right sides are connected to the left and right sides of the square base by double-layered protective netting. Several sets of external LEDs and external batteries electrically connected to the external LEDs are located between the double-layered protective netting. However, this luminous inflatable children's castle trampoline has a relatively simple lighting design compared to traditional inflatable devices. It uses built-in LEDs for illumination, and the design of these built-in LEDs is simply fixed-color lighting, lacking variation and fun, and failing to meet people's needs for creating a unique atmosphere and enhancing visual appeal. Summary of the Invention

[0004] The purpose of this invention is to overcome the problems of the prior art and provide an inflatable device with a laser ambient light to solve the problem of the monotonous lighting of traditional inflatable devices. Through innovative lighting design, the inflatable device is endowed with richer and more diverse lighting effects, enhancing its atmospheric appeal and meeting the usage needs of different scenarios.

[0005] To achieve the above objectives, the present invention adopts the following solution:

[0006] An inflatable device with laser ambient lighting includes an inflatable body and ambient lighting units, wherein several ambient lighting units are detachably connected to the inflatable body; the ambient lighting units include:

[0007] Base shell and cover body; the base shell and cover body are fitted together and connected; the cover body has a first light outlet and a second light outlet.

[0008] The color-changing light source module is installed inside the base housing at the position corresponding to the first light outlet.

[0009] The dynamic laser diffraction device is installed inside the cover at the position corresponding to the second light outlet.

[0010] The PCB control motherboard is located inside the base shell and is electrically connected to the color-changing light source module and the dynamic laser diffraction device, respectively.

[0011] As described above, an inflatable device with a laser ambient light is provided, wherein the ambient light device is detachably connected to the inflatable body via Velcro; the inflatable body is provided with a Velcro hook side, and the base shell or cover is provided with a Velcro rough side.

[0012] As mentioned above, an inflatable device with laser ambient lighting can be used as an inflatable castle, inflatable slide, or other shaped inflatable model. The ambient lighting device is installed on the bottom, side wall, or top of the inflatable body.

[0013] As described above, an inflatable device with a laser ambient light includes a color-changing light source module comprising RGB LED beads and a lens; the RGB LED beads are installed inside the base shell; the lens is positioned inside the base shell corresponding to the light emission position of the RGB LED beads; and the PCB control board is electrically connected to the RGB LED beads.

[0014] As described above, an inflatable device with a laser ambient light includes a dynamic laser diffraction device comprising:

[0015] Fixed bracket and motor; the motor is connected to the cover via the fixed bracket;

[0016] The laser module is mounted on a fixed bracket;

[0017] The grating, located inside the cover and connected to the output shaft of the motor, is rotated by the motor.

[0018] As described above, an inflatable device with a laser ambient light includes a laser module comprising a first light-color laser head and a second light-color laser head; a second light outlet includes a first light-color light outlet and a second light-color light outlet disposed on the cover; the first light-color laser head and the second light-color laser head are respectively disposed on a fixed bracket corresponding to the positions of the first light-color light outlet and the second light-color light outlet.

[0019] As described above, an inflatable device with a laser ambient light includes at least two first-color laser heads mounted on a fixed frame; and at least two second-color laser heads mounted on the fixed frame.

[0020] As described above, an inflatable device with a laser ambient light has a mounting frame with a first mounting groove and a second mounting groove that are respectively adapted to and embedded in a first light color laser head and a second light color laser head; the mounting frame also has a first light-transmitting outlet and a second light-transmitting outlet that are respectively opened at the bottom of the first mounting groove and the bottom of the second mounting groove.

[0021] As described above, an inflatable device with a laser ambient light has a fixed bracket that is bolted to the cover; there is a cavity between the cover and the fixed bracket that can accommodate the rotation of the grating.

[0022] The cover is provided with several mounting posts around its perimeter; the fixed bracket is provided with mounting holes of the same number and in the same position as the mounting posts; the fixed bracket is provided with a fixing groove of the same number and in the same position as the mounting posts on one side of each mounting hole; the mounting posts are fitted into the fixing grooves; bolts pass through the mounting holes and are connected to the mounting posts.

[0023] As mentioned above, an inflatable device with a laser ambient light has a power interface on its base that is electrically connected to the PCB board; and several heat dissipation holes on the side wall of the base that are connected to its inner cavity.

[0024] Compared with existing technologies, the present invention has the following advantages:

[0025] 1. This invention detachably connects multiple ambient light devices to the inflatable body. On the one hand, users can flexibly adjust the number and position of the ambient light devices according to actual needs to achieve the best lighting effect. On the other hand, it is easy to assemble and disassemble, making it convenient to maintain and replace the ambient light devices, effectively enhancing the flexibility and maintainability of the inflatable equipment, and facilitating users to make personalized settings and operations according to actual needs.

[0026] 2. This invention incorporates a color-changing light source module and a dynamic laser diffraction device within the base shell and cover, all uniformly controlled by a PCB control motherboard. This effectively solves the problem of monotonous lighting in traditional inflatable devices. The color-changing light source module provides multiple color changes and brightness adjustment functions, while the dynamic laser diffraction device generates dynamic laser patterns and light and shadow effects. The combination of these two elements gives the inflatable device a richer and more diverse range of lighting effects, greatly enhancing its aesthetic appeal. Moreover, it can create a unique and captivating atmosphere in scenarios such as inflatable devices, attracting people's attention and improving the quality and effectiveness of activities. Attached Figure Description

[0027] The present application will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0028] Figure 1This is one of the exploded three-dimensional structural schematic diagrams of the inflatable device with laser ambient light of the present invention.

[0029] Figure 2 This is the second exploded three-dimensional structural diagram of the inflatable device with laser ambient light of the present invention.

[0030] Figure 3 This is an exploded three-dimensional structural diagram of the ambient lighting device of the present invention.

[0031] Figure 4 This is a three-dimensional structural diagram of the ambient lighting device of the present invention.

[0032] Figure 5 This is one of the three-dimensional structural schematic diagrams of the fixed bracket of the present invention.

[0033] Figure 6 This is the second three-dimensional structural schematic diagram of the fixed bracket of the present invention.

[0034] Figure 7 This is a three-dimensional structural diagram of the cover body of the present invention.

[0035] The image includes:

[0036] Inflatable main body 1, mounting slot 11, bottom panel 12, ambient light device 2, base shell 21, heat dissipation hole 211, cover 22, first light outlet 221, second light outlet 222, first light color outlet 2221, second light color outlet 2222, mounting post 223, color-changing light source module 23, RGB lamp bead 231, lens 232, dynamic laser diffraction device 24, fixing bracket 241, first mounting slot 2411, second mounting slot 2412, first light transmission outlet 2413, second light transmission outlet 2414, mounting hole 2415, fixing slot 2416, motor 242, laser module 243, first light color laser head 2431, second light color laser head 2432, grating 244, PCB control motherboard 25, power interface 26, Velcro 3, beam 4. Detailed Implementation

[0037] The specific embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and are not intended to limit the scope of the invention.

[0038] like Figures 1 to 7As shown, an inflatable device with laser ambient lighting includes an inflatable body 1 and ambient lighting devices 2. The inflatable body 1 can be made of common inflatable materials such as PVC and TPU, ensuring good airtightness and durability. The inflatable body 1 is inflated to a suitable size and shape to meet the needs of the usage scenario. Several ambient lighting devices 2 are detachably connected to the inflatable body 1. On the one hand, users can flexibly adjust the number and position of the ambient lighting devices 2 according to actual needs to achieve the best lighting effect; on the other hand, they are easy to assemble and disassemble, facilitating maintenance and replacement of the ambient lighting devices 2, effectively enhancing the flexibility and maintainability of the inflatable device, and allowing users to personalize settings and operations according to actual needs. Furthermore, the positions of the ambient lighting devices 2 can be rationally distributed according to the shape and design requirements of the inflatable body 1 to achieve the best lighting effect. For example, installing ambient lighting devices 2 on the top, edges, or other positions of the inflatable body 1 allows the light to evenly illuminate the entire inflatable body 1, creating a unique atmosphere. The ambient light device 2 includes a base shell 21, a cover 22, a color-changing light source module 23, a dynamic laser diffraction device 24, and a PCB control motherboard 25. The base shell 21 and the cover 22 are fitted together to ensure a tight connection and prevent dust and moisture from entering. The cover 22 has a first light outlet 221 and a second light outlet 222. The color-changing light source module 23 is installed inside the base shell 21 corresponding to the position of the first light outlet 221. Appropriate fixing devices, such as screws and glue, are used to ensure that the color-changing light source module 23 is securely installed and accurately positioned, so that light can pass smoothly through the first light outlet 221. The dynamic laser diffraction device 24 is installed inside the cover 22 at the position corresponding to the second light outlet 222. A reliable fixing method is used to ensure that the dynamic laser diffraction device 24 will not loosen or shift during operation, guaranteeing that the laser beam 4 can be accurately emitted through the second light outlet 222 to form the expected dynamic pattern and light and shadow effect. The PCB control motherboard 25 is located inside the base shell 21 and is electrically connected to both the color-changing light source module 23 and the dynamic laser diffraction device 24. The PCB control motherboard 25 is installed in a suitable position inside the base shell 21, and wires are used to electrically connect the PCB control motherboard 25 to the color-changing light source module 23 and the dynamic laser diffraction device 24. During the connection process, it is essential to ensure that the wire connections are secure to avoid poor contact, ensuring that the PCB control motherboard 25 can properly control the operation of both components.

[0039] In this embodiment, the ambient light device 2 and the inflatable body 1 are detachably connected by Velcro 3; the inflatable body 1 is fixedly provided with a Velcro hook side, and the base shell 21 or cover 22 is fixedly provided with a Velcro rough side. Of course, in other embodiments, the ambient light device 2 and the inflatable body 1 can also be fixed by means of clips, screws, etc., and the specific connection method can be selected according to the actual design and production requirements.

[0040] The ambient lighting device 2 of this inflatable device with laser ambient lighting incorporates a color-changing light source module 23 and a dynamic laser diffraction device 24 within the base shell 21 and cover 22, and is uniformly controlled by a PCB control motherboard 25. This effectively solves the problem of the monotonous lighting of traditional inflatable devices. The color-changing light source module 23 provides multiple color changes and brightness adjustment functions, while the dynamic laser diffraction device 24 produces dynamic laser patterns and light and shadow effects. The combination of these two elements gives the inflatable device a richer and more diverse range of lighting effects, greatly enhancing its atmospheric appeal. Moreover, it can create a unique and charming atmosphere in scenarios such as inflatable devices, attracting people's attention and improving the quality and effect of activities.

[0041] Preferably, the inflatable body 1 is an inflatable model product such as an inflatable castle or inflatable slide, and the ambient lighting device 2 is installed on the bottom, side wall, or top of the inflatable body 1. Of course, the position of the ambient lighting device 2 can also be reasonably distributed according to the shape and design requirements of the inflatable body 1 to achieve the best lighting effect, so that the light can evenly illuminate the entire inflatable body 1 and create a unique atmosphere. In this embodiment, the inflatable body 1 is an inflatable slide, and the ambient lighting device 2 is installed on the bottom of the vertical column of the inflatable body 1. For inflatable slides, such as... Figures 1 to 2 As shown, an installation slot 11 for mounting ambient light devices 2 is provided on the bottom of the column of the inflatable slide. The inflatable slide has a matching bottom panel 12 in each installation slot. The hook and loop fastener is provided on the bottom panel 12, and the base shell 21 is fixed with a hook and loop fastener surface that is adhered to the hook and loop fastener. The inflatable slide has 4 columns, that is, there are 4 installation slots 11 and 4 bottom panels 12. During installation, the hook and loop fastener on each ambient light device 2 is adhered to the hook and loop fastener on the bottom panel 12. Then, the ambient light device 2 is inserted into the installation slot 11 and shines upwards corresponding to the column of the inflatable slide. Then, the bottom panel 12 is fitted into the installation slot 11.

[0042] In this embodiment, the color-changing light source module 23 includes RGB LED beads 231 and a lens element 232. The RGB LED beads 231 are installed inside the base shell 21. The lens element 232, corresponding to the light-emitting position of the RGB LED beads 231, is located inside the base shell 21. The PCB control motherboard 25 is electrically connected to the RGB LED beads 231. The color-changing light source module 23 includes RGB LED beads 231 and a lens element 232. The RGB LED beads 231 are installed inside the base shell 21. As the core component of the color-changing light source module 23, the RGB LED beads 231 can emit light of three basic colors: red, green, and blue. Through the mixing of different colors of light, a rich variety of color changes can be achieved. The lens element 232, corresponding to the light-emitting position of the RGB LED beads 231, is located inside the base shell 21. The function of the lens element 232 is to focus, diffuse, or shape the light beam 4 emitted by the RGB LED beads 231, so that the light beam 4 is projected more evenly and softly, improving the quality of the light and shadow effect. The PCB control motherboard 25 is electrically connected to the RGB LED bead 231, so that the PCB control motherboard 25 can precisely control the emission color, brightness and other parameters of the RGB LED bead 231 to achieve diversified display effects of color-changing light source.

[0043] In this embodiment, the dynamic laser diffraction device 24 includes a fixed bracket 241, a motor 242, a laser module 243, and a grating 244. The motor 242 is connected to the cover 22 via the fixed bracket 241; the fixed bracket 241 provides a stable mounting position for the motor 242, ensuring its stability during operation and preventing the ambient light from being affected by motor 242 shaking. The laser module 243 is mounted on the fixed bracket 241, providing a light source for the emission of the laser beam. The grating 244 is located inside the cover 22 and is driven by the output shaft of the motor 242, allowing it to rotate under the drive of the motor 242. When the laser beam 4 of the laser module 243 passes through the rotating grating 244, due to the special structure of the grating 244, the beam 4 undergoes diffraction and interference phenomena, thereby forming various unique laser patterns. Preferably, the grating 244 is a diffraction grating 244 or a transmission grating 244. The first light-emitting port 221 and the second light-emitting port 222 on the cover 22 are respectively set to correspond to the light-emitting positions of the color-changing light source module 23 and the laser module 243. The beam 4 of the laser module 243 passes through the grating 244 and is projected out from the second light-emitting port 222. The beam 4 of the color-changing light source module 23 is projected out from the first light-emitting port 221, and the beam 4 of the laser module 243 passes through the grating 244 and is projected out from the second light-emitting port 222. The two beams 4 work together to create a rich and diverse light and shadow atmosphere. The PCB control motherboard 25, as the control core of the entire ambient light, can precisely control the working status of the motor 242, the laser module 2436, and the color-changing light source module 23 according to the preset program or externally input instructions. For example, controlling the rotational speed of motor 242 changes the rotational speed of grating 244, thus affecting the dynamic effect of the laser pattern; controlling the emission power of laser module 243 adjusts the brightness of the laser; controlling the color change of color-changing light source module 23 achieves synergy with the laser, creating more dazzling and colorful light and shadow effects. In this way, users can adjust parameters such as the dynamic effect, brightness, and color change of the laser pattern according to their preferences and actual needs, through preset programs or externally input commands, to achieve personalized atmosphere customization, making the ambient lighting more in line with the user's individual needs. Therefore, personalized atmosphere customization makes the ambient lighting more in line with the user's individual needs.The ambient lighting device 2 combines a base shell 21, a cover 22, a fixed bracket 241, a motor 242, a color-changing light source module 23, a laser module 243, a grating 244, and a PCB control motherboard 25. The PCB control motherboard 25 precisely controls the working states of the motor 242, the color-changing light source module 23, and the laser module 243, achieving the combined effect of laser and color-changing light. Specifically, the motor 242 drives the grating 244 to rotate, causing the laser beam 4 of the laser module 243 to pass through the grating 244 to form unique laser patterns, such as high-definition dot matrix and starry sky patterns. At the same time, the color-changing light source module 235 can emit multiple colors of light. The two types of light colors complement each other, and the complementary and superimposed light colors of the two light sources can project rich and diverse, dynamic light and shadow effects, bringing users a brand-new visual experience and meeting the diverse needs for atmosphere creation in different scenarios.

[0044] As described above, an inflatable device with a laser ambient light includes a laser module 243 comprising a first-color laser head 2431 and a second-color laser head 2432; a second light outlet 222 comprising a first-color light outlet 2221 and a second-color light outlet 2222 disposed on a cover 22; the first-color laser head 2431 and the second-color laser head 2432 are respectively positioned on a fixed bracket 241 corresponding to the positions of the first-color light outlet 2221 and the second-color light outlet 2222. In this application, the first-color laser head 2431 can emit a red beam 4, and the second-color laser head 2432 can emit a green beam 4. Of course, the colors of the light emitted by the first-color laser head 2431 and the second-color laser head 2432 can be reasonably set according to requirements. Under the control of the PCB control motherboard 25, the first light color laser head 2431 and the second light color laser head 2432 generate light beams 4 of different colors respectively. When the light beams 4 of different colors pass through the rotating grating 244, due to the special structure of the grating 244, the light beams 4 will undergo diffraction, interference and other phenomena, and then be projected out from the first light color output port 2221 and the second light color output port 2222, thereby forming various unique laser patterns and creating a rich and diverse light and shadow atmosphere.

[0045] Preferably, at least two first-color laser heads 2431 are mounted on the mounting frame; and at least two second-color laser heads 2432 are mounted on the mounting frame. In this embodiment, there are two first-color laser heads 2431 and two second-color laser heads 2432. This design allows the first-color laser heads 2431 and the second-color laser heads 2432 to work simultaneously, with their light effects superimposed, significantly improving overall brightness and expanding the illumination coverage. This results in more uniform projection of the laser pattern, effectively avoiding dark areas from single-head illumination and enhancing the overall lighting and atmosphere rendering effect.

[0046] To enhance the installation stability and reliable connection of the first and second color laser heads 2431 and 2432, the mounting bracket is provided with a first mounting groove 2411 and a second mounting groove 2412 respectively adapted to be embedded and installed in the first and second color laser heads 2431 and 2432. The mounting bracket also has a first light-transmitting outlet 2413 and a second light-transmitting outlet 2414 respectively opened at the bottom of the first mounting groove 2411 and the bottom of the second mounting groove 2412. The design of the first light-transmitting outlet 2413 and the second light-transmitting outlet 2414 better allows the light beam 4 to pass through the grating 244.

[0047] In this embodiment, the fixing bracket 241 is fitted onto the cover 22 by bolts; there is a receiving cavity between the cover 22 and the fixing bracket 241 that can accommodate the rotation of the grating 244; a plurality of mounting posts 223 are arranged around the cover 22; the fixing bracket 241 is provided with mounting holes 2415, which are the same number as the mounting posts 223 and are arranged in a one-to-one correspondence with each other; the fixing bracket 241 is provided with fixing grooves 2416, which are the same number as the mounting posts 223 and are arranged in a one-to-one correspondence with each other, on one side of each mounting hole 2415; the mounting posts 223 are fitted into the fixing grooves 2416; bolts pass through the mounting holes 2415 and are connected to the mounting posts 223. Each mounting post 223 is fitted into the fixing groove 2416 one by one, and the fixing bracket 241 is placed in the cover 22. The mounting hole 2415 corresponds to the position of the mounting post 223. Then, bolts are used to connect the mounting hole 2415 to the mounting post 223. This installation of the fixing bracket 241 is stable and reliable, effectively preventing the influence of motor 242 vibration and making it less prone to loosening and displacement.

[0048] To facilitate power supply to the ambient lighting device 2, it also includes a power interface 26. The base shell 21 is provided with a power interface 26 that is electrically connected to the PCB board. The power interface 26 can be a DC power interface, a MicroUSB interface, a Type-C interface, or a Lightning interface, which can be selected according to production needs. The side wall of the base shell 21 is provided with several heat dissipation holes 211 that communicate with its internal cavity, which helps to dissipate heat inside the ambient lighting device 2.

[0049] The principle behind this inflatable device with laser ambient lighting is as follows:

[0050] Assembly of ambient lighting device 2:

[0051] When assembling this ambient lighting device 2, firstly, the RGB LED beads 231 are installed inside the base shell 21, and the lens 232 is installed in the corresponding position to ensure that the light beam 4 emitted by the RGB LED beads 231 can be effectively processed by the lens 232. Next, the PCB control motherboard 25 is installed inside the base shell 21 and electrically connected to the RGB LED beads 231, the motor 242, and the laser module 243 respectively, completing the initial circuit construction.

[0052] Next, the mounting bracket 241 is installed on the cover 22, and then the motor 242 is installed on the mounting bracket 241, ensuring the stability of the motor 242. The laser module 243 is installed in a suitable position on the mounting bracket 241, ensuring that its light output direction matches the optical path designed later. The grating 244 is installed inside the cover 22 and connected to the output shaft of the motor 242, ensuring that the motor 242 can drive the grating 244 to rotate stably.

[0053] Finally, the cover 22 is connected to the base shell 21, so that the first light outlet 221 and the second light outlet 222 correspond to the light outlet positions of the color-changing light source module 23 and the laser module 243 respectively, thus completing the assembly of the entire ambient light device 2.

[0054] During use, the PCB control motherboard 25 activates the motor 242, laser module 243, and color-changing light source module 23. The motor 242 drives the grating 244 to rotate, and the beam 4 emitted by the laser module 243 passes through the rotating grating 244, projecting a unique laser pattern from the second light outlet 222. Simultaneously, the PCB control motherboard 25 controls the RGB LED beads 231 to emit different colors of light, which, after being processed by the lens 232, are projected from the first light outlet 221, working in conjunction with the laser to create a rich and diverse light and shadow atmosphere. Users can also adjust the operating parameters of each component according to preset programs or externally input commands to achieve personalized atmosphere customization.

[0055] Connection between ambient lighting device 2 and inflatable body 1:

[0056] Several assembled ambient light devices 2 are detachably connected and installed on the inflatable body 1. The positions of the ambient light devices 2 can be rationally distributed according to the shape and design requirements of the inflatable body 1 to achieve the best lighting effect. For example, ambient light devices 2 can be installed at the bottom, top, and edges of the inflatable body 1 so that the light can evenly illuminate the entire inflatable body 1 and create a unique atmosphere.

[0057] Control and adjustment of lighting effects:

[0058] The lighting effects of the color-changing light source module 23 and the dynamic laser diffraction device 24 can be controlled and adjusted by the preset program of the PCB control motherboard 25 or by external input signals. Different lighting modes can be set, such as party mode, romantic mode, and leisure mode. Each mode corresponds to different color changes, brightness adjustments, and laser pattern displays. During the debugging process, observe whether the lighting effect meets the design requirements. If necessary, the parameters of the PCB control motherboard 25 can be adjusted until a satisfactory effect is achieved.

[0059] In summary, the embodiments of the present invention provide an inflatable device with a laser ambient light, wherein the inflatable device with the laser ambient light has the following advantages:

[0060] First, multiple ambient light devices 2 can be detachably connected to the inflatable body 1. On the one hand, users can flexibly adjust the number and position of the ambient light devices 2 according to actual needs to achieve the best lighting effect. On the other hand, they are easy to assemble and disassemble, making it convenient to maintain and replace the ambient light devices 2. This effectively enhances the flexibility and maintainability of the inflatable equipment and allows users to make personalized settings and operations according to actual needs.

[0061] Second, a color-changing light source module 23 and a dynamic laser diffraction device 24 are installed inside the base shell 21 and the cover 22, and are uniformly controlled by the PCB control motherboard 25. This effectively solves the problem of the monotony of lighting in traditional inflatable equipment. The color-changing light source module 23 provides multiple color changes and brightness adjustment functions, and the dynamic laser patterns and light and shadow effects generated by the dynamic laser diffraction device 24, together, give the inflatable equipment a richer and more diverse lighting effect, greatly enhancing its atmospheric visual appeal. Moreover, in scenarios such as inflatable equipment, it can create a unique and charming atmosphere, attract people's attention, and improve the quality and effect of the activity.

[0062] The above description is only a preferred embodiment of this application. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of this application, and these improvements and substitutions should also be considered within the scope of protection of this application.

Claims

1. An inflatable device with a laser ambient light, comprising an inflatable body and an ambient light device, characterized in that, Several ambient light devices are detachably connected to the inflatable body; the ambient light devices include: A base shell and a cover; the base shell and the cover are fitted together; the cover has a first light outlet and a second light outlet. A color-changing light source module is installed inside the base housing at the position corresponding to the first light outlet. A dynamic laser diffraction device is installed inside the cover body at a position corresponding to the second light outlet. The PCB control motherboard is located inside the base shell and is electrically connected to the color-changing light source module and the dynamic laser diffraction device, respectively.

2. The inflatable device with laser ambient light according to claim 1, characterized in that, The ambient light device is detachably connected to the inflatable body via Velcro; the inflatable body is fixedly provided with a Velcro hook side, and the base shell or cover is fixedly provided with a Velcro rough side.

3. The inflatable device with a laser ambient light according to claim 1 or 2, characterized in that, The inflatable body is an inflatable castle or an inflatable slide, and the ambient lighting device is installed on the bottom, side wall or top of the inflatable body.

4. The inflatable device with a laser ambient light according to claim 1, characterized in that, The color-changing light source module includes RGB LED beads and a lens; the RGB LED beads are installed inside the base shell; the lens is located inside the base shell corresponding to the light emission position of the RGB LED beads. The PCB control board is electrically connected to the RGB LED beads.

5. The inflatable device with a laser ambient light according to claim 1, characterized in that, The dynamic laser diffraction device includes: A fixed bracket and a motor; the motor is connected to the cover via the fixed bracket. A laser module is mounted on the fixed bracket; A grating, located within the cover and driven by the output shaft of the motor, is rotated by the motor.

6. The inflatable device with a laser ambient light according to claim 5, characterized in that, The laser module includes a first light-color laser head and a second light-color laser head; the second light outlet includes a first light-color light outlet and a second light-color light outlet disposed on the cover; the first light-color laser head and the second light-color laser head are respectively disposed on the fixed bracket at positions corresponding to the first light-color light outlet and the second light-color light outlet.

7. The inflatable device with a laser ambient light according to claim 6, characterized in that, At least two first-color laser heads are mounted on the mounting frame; and at least two second-color laser heads are mounted on the mounting frame.

8. The inflatable device with a laser ambient light according to claim 6, characterized in that, The mounting frame is provided with a first mounting slot and a second mounting slot, which are respectively adapted to be embedded and installed in the first light-color laser head and the second light-color laser head; the mounting frame is provided with a first light-transmitting outlet and a second light-transmitting outlet, which are respectively opened on the bottom of the first mounting slot and the bottom of the second mounting slot.

9. The inflatable device with a laser ambient light according to claim 5, characterized in that, The fixing bracket is installed on the cover by bolts; there is a receiving cavity between the cover and the fixing bracket to accommodate the rotation of the grating; The cover is provided with a number of mounting posts around its perimeter; the fixing bracket is provided with mounting holes of the same number as the mounting posts and in a one-to-one correspondence with their positions; the fixing bracket is provided with fixing grooves of the same number as the mounting posts and in a one-to-one correspondence with their positions on one side of each mounting hole; the mounting posts are fitted into the fixing grooves; the bolts pass through the mounting holes and are connected to the mounting posts.

10. The inflatable device with a laser ambient light according to claim 1, characterized in that, The base shell is provided with a power interface that is electrically connected to the PCB board; the side wall of the base shell is provided with a number of heat dissipation holes that communicate with its inner cavity.

Citation Information

Patent Citations

  • Luminous inflatable castle trampoline for children

    CN211327956U