Wireless powered micro-landscape installation

CN224790399UActive Publication Date: 2026-09-22LISHUI RUNSHENG MOSS TECH CO LTD
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Patent Information

Application Number
CN202522343800.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-09-22
Estimated Expiration
2035-11-05

AI Technical Summary

Technical Problem

[0003]但是,发明人认为鱼缸外的发射底座与鱼缸之间出现相对移动,会导致位于鱼缸内的接受器无法接收到信号,导致与接受器电性连接的LED灯等电子元件与接受器之间无法实现正常的电连接,从而影响生态鱼缸的观赏性,严重还会影响生态鱼缸内的植物的生长

Benefits of technology

[0006]本申请在安装有无线供电发射模块的发射底座上设置接触限位部,并在设有接收模块的支撑座上设置水平限位部,通过对水平限位部与接触限位部接触限位实现发射底座与支撑之间的限位,从而避免发射底座与支撑座之间的相对移动,进而实现无线供电发射模块与接收模块之间的稳定电磁耦合,最终保障LED灯及其他电子元件持续稳定工作,使得微景观设施内的植物能够正常生长。

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Abstract

A wireless power supply micro landscape facility, comprising a transmitting base and a supporting seat arranged on the transmitting base, a wireless power supply transmitting module is installed on the transmitting base, a receiving module corresponding to the wireless power supply transmitting module is arranged above the wireless power supply transmitting module on the supporting seat, a horizontal limiting part is arranged on the supporting seat, a contact limiting part is arranged on the transmitting base, and the horizontal limiting part and the contact limiting part are in contact limiting for limiting the horizontal movement of the supporting seat relative to the transmitting base. The application sets the contact limiting part on the transmitting base with the wireless power supply transmitting module, and sets the horizontal limiting part on the supporting seat with the receiving module. The limiting between the transmitting base and the supporting is realized by the contact limiting of the horizontal limiting part and the contact limiting part, so as to avoid the relative movement between the transmitting base and the supporting seat, and then realize the stable electromagnetic coupling between the wireless power supply transmitting module and the receiving module, and finally ensure the continuous and stable work of the LED lamp and other electronic components.
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Description

Technical Field

[0001] This utility model relates to the field of artificial landscaping, specifically to a wirelessly powered micro-landscape facility. Background Technology

[0002] Miniature landscapes are miniature ecological scenes constructed within containers such as glass bottles, primarily using moss and succulents, complemented by fences, gravel, and figurines as decorations. Essentially, they are layered small ecosystems, typically consisting of layers of pumice, sphagnum moss, and potting soil for drainage, moisture retention, and planting. Through creative arrangement, they become personalized decorations, widely used in home décor, office greenery, and ecological education settings. Chinese utility model patent application number CN201720566274 discloses a wirelessly powered landscape ecological aquarium, including an aquarium, a wireless power supply component, a landscaping support base, LED aquarium lights, an electrolyzed water aerator, and an electric waterwheel. The aquarium is a glass or transparent plastic aquarium with a lid and ventilation holes. The wireless power supply component includes a transmitter base and a receiver, with the transmitter base located outside the aquarium and the receiver located inside. The landscaping support base supports the landscaping system inside the aquarium, supporting and fixing the LED aquarium lights, electrolyzed water aerator, and electric waterwheel, or fixing them with artificial rockery support. The upper layer of the landscaping support base has a sponge for assisting in planting aquatic plants. The LED aquarium lights are submersible aquarium lights or floating aquarium lights. The LED aquarium lights, electrolyzed water aerator, and electric waterwheel are electrically connected to the wireless power supply receiver via wires.

[0003] However, the inventors believe that relative movement between the transmitter base outside the aquarium and the aquarium will prevent the receiver inside the aquarium from receiving signals. This will prevent the electronic components, such as LED lights, which are electrically connected to the receiver, from achieving normal electrical connection with the receiver, thus affecting the aesthetics of the aquarium and, in severe cases, even the growth of plants inside the aquarium. Utility Model Content

[0004] This invention aims to solve the aforementioned existing problems by providing a wirelessly powered micro-landscape facility that limits the distance between the transmitting base and the support base of the facility.

[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a wirelessly powered micro-landscape facility, including a transmitting base and a support base set on the transmitting base. A wireless power transmitting module is installed on the transmitting base, and a receiving module corresponding to the wireless power transmitting module is provided on the support base above the wireless power transmitting module. A horizontal limiting part is provided on the support base, and a contact limiting part is provided on the transmitting base. The horizontal limiting part and the contact limiting part are used to limit the horizontal movement of the support base relative to the transmitting base.

[0006] This application provides a contact limiting part on the transmitting base equipped with a wireless power supply transmitting module and a horizontal limiting part on the support base equipped with a receiving module. By limiting the contact between the horizontal limiting part and the contact limiting part, the relative movement between the transmitting base and the support base is prevented, thereby achieving stable electromagnetic coupling between the wireless power supply transmitting module and the receiving module. Ultimately, this ensures the continuous and stable operation of LED lights and other electronic components, enabling the plants in the micro-landscape facility to grow normally.

[0007] Preferably, the horizontal limiting part is a downwardly positioned first sleeve, and the contact limiting part is an upwardly protruding first boss on the launch base. The first sleeve is fitted over the first boss and contacts and limits its position with the outer surface of the first boss. When the first sleeve is fitted over the first boss and contacts and limits its position with the outer surface of the first boss, an effective horizontal limiting mechanism is formed, allowing the support base to be stably installed and limited on the launch base.

[0008] Preferably, the launch base includes a bottom for mounting a support base and an outer periphery that surrounds the bottom and forms a water storage cavity with the bottom. The first protrusion is correspondingly positioned upward on the bottom. The bottom provides support and a stable foundation for the entire landscape facility; the outer periphery surrounding the bottom forms a water storage cavity for storing water within the landscape facility; the first protrusion is positioned upward on the bottom, allowing the first sleeve on the support base to be fitted onto the first protrusion, thus limiting the movement between the support base and the launch base.

[0009] Preferably, the first protrusion has a downwardly recessed annular groove, within which a water pump is installed. The water pump is electrically connected to the receiving module. The water pump, installed within the annular groove, provides power to extract water from the landscape facility.

[0010] Preferably, the first protrusion has an installation space, and the wireless power supply transmitter module is ring-shaped and installed within the installation space. Installing the ring-shaped wireless power supply transmitter module within the installation space achieves the limiting and fixing of the wireless power supply transmitter module.

[0011] Preferably, the support base includes an annular support portion that is positioned on the upper surface of the first protrusion and corresponds to the launch module, and a rockery structure disposed on the annular support portion. The horizontal limiting portion is disposed on the outer periphery of the annular support portion. The annular support portion, positioned on the upper surface of the first protrusion and aligned with the launch module, provides stable support and ensures the accurate positioning of the launch module. The rockery structure on the annular support portion enhances the aesthetics and natural feel of the installation. The horizontal limiting portion, disposed on the outer periphery of the annular support portion, restricts the horizontal movement of the support base, ensuring its stability.

[0012] Preferably, the artificial rockery structure has several receiving slots for installing LED strips. These slots are located along the outer perimeter of the structure and their ends are connected to an annular support. The LED strips are electrically connected to a receiving module, which is correspondingly positioned on the annular support. Installing LED strips in the receiving slots enhances the aesthetic appeal of the landscape feature and also facilitates photosynthesis in the plants within the landscape structure, ensuring their normal growth.

[0013] Preferably, the inner side of the artificial rockery structure has a hollow receiving cavity connected to the annular groove, and the bottom of the receiving groove has a corresponding channel hole connecting to the hollow receiving cavity. Creating a receiving cavity inside the artificial rockery structure effectively reduces the weight of the support base and improves its stability; creating a channel hole at the bottom of the receiving groove connects the receiving cavity to the receiving groove, allowing water from the receiving cavity to be transported to the surface of the artificial rockery structure, providing moisture for the plants placed on the surface of the artificial rockery structure.

[0014] Preferably, the outlet end of the water pump is connected to a silicone tube, and the receiving tank has a positioning hole for installing the silicone tube. Connecting the silicone tube to the outlet end of the water pump and creating a positioning hole in the receiving tank allows the water pumped by the pump to rise through the silicone tube to the receiving tank, thus forming a water flow pattern and enhancing the aesthetics of the landscape facility.

[0015] Preferably, the launch base is equipped with a transparent cover that covers the outside of the support base. The transparent cover has ventilation holes, and a dust filter is installed on the inner side of the ventilation holes. Installing the transparent cover on the launch base and having ventilation holes allows for slow convection of air inside and outside the cover, maintaining a stable humidity level within a suitable range to ensure normal plant growth. The dust filter on the inner side of the ventilation holes prevents dust from entering the transparent cover, thereby improving the aesthetic appeal of the landscape feature.

[0016] The beneficial effects of this utility model are as follows: This utility model sets a contact limiting part on the transmitting base on which the wireless power supply transmitting module is installed, and sets a horizontal limiting part on the support base on which the receiving module is installed. By limiting the horizontal part and the contact limiting part, the horizontal limiting between the transmitting base and the support is achieved, thereby avoiding relative movement between the transmitting base and the support base, and thus achieving stable electromagnetic coupling between the wireless power supply transmitting module and the receiving module. On the one hand, it can ensure the continuous and stable operation of LED lights and other electronic components, so that the plants in the micro-landscape facility can grow normally. On the other hand, it can also effectively improve the transmission efficiency between the wireless power supply transmitting module and the receiving module. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of Embodiment 1; Figure 2 This is an exploded view of Example 1; Figure 3 This is a top view of the base in Embodiment 1; Figure 4 This is a cross-sectional view of Example 1; Figure 5 This is a top view of the support base in Embodiment 1; Figure 6 This is a cross-sectional view of Example 2.

[0018] Explanation of reference numerals in the attached drawings: 1. Transmitting base; 11. Contact limiting part; 111. First boss; 112. Annular groove; 113. Installation space; 114. Second sleeve; 12. Bottom; 13. Outer periphery; 2. Support base; 21. Horizontal limiting part; 211. First sleeve; 212. Second boss; 22. Annular support part; 23. Artificial mountain structure; 231. Receiving groove; 232. Receiving cavity; 233. Channel hole; 234. Positioning hole; 3. Transmitting module; 4. Receiving module; 5. Water pump; 6. Light strip; 7. Silicone tube; 8. Transparent cover; 81. Vent hole; 82. Dust filter. Detailed Implementation

[0019] To further illustrate the technical means and effects of the present invention in achieving its intended purpose, the following detailed description of the specific implementation methods, structures, features, and effects of the present invention, in conjunction with the accompanying drawings and preferred embodiments, is provided below.

[0020] Example 1 Combination Figure 2 and Figure 5 As shown, this utility model discloses a wirelessly powered micro-landscape facility, including a transmitting base 1 and a support base 2 disposed on the transmitting base 1. A wireless power transmitting module 3 is installed on the transmitting base 1, and a receiving module 4 located above the wireless power transmitting module 3 and corresponding to the wireless power transmitting module 3 is disposed on the support base 2. A horizontal limiting part 21 is provided on the support base 2, and a contact limiting part 11 is provided on the transmitting base 1. The horizontal limiting part 21 and the contact limiting part 11 are contact-limited to restrict the horizontal movement of the support base 2 relative to the transmitting base 1.

[0021] This application provides a contact limiting part 11 on the transmitting base 1 where the wireless power supply transmitting module 3 is installed, and a horizontal limiting part 21 on the support base 2 where the receiving module 4 is installed. By limiting the contact between the horizontal limiting part 21 and the contact limiting part 11, the horizontal limitation between the transmitting base 1 and the support is achieved, thereby preventing relative movement between the transmitting base 1 and the support base 2. This enables stable electromagnetic coupling between the wireless power supply transmitting module 3 and the receiving module 4. On the one hand, this ensures the continuous and stable operation of LED lights and other electronic components, allowing plants in the micro-landscape facility to grow normally; on the other hand, it also effectively improves the transmission efficiency between the wireless power supply transmitting module 3 and the receiving module 4.

[0022] Reference Figure 4 As shown, the horizontal limiting part 21 is a downwardly positioned first sleeve 211, and the contact limiting part 11 is an upwardly protruding first boss 111 on the launch base 1. The first sleeve 211 is fitted over the first boss 111 and contacts and limits its position with the outer surface of the first boss 111. The first boss 111 is provided on the launch base 1. When the first sleeve 211, which is provided on the support base 2, is fitted over the first boss 111, the inner wall of the first sleeve 211 contacts the outer wall of the first boss 111. At this time, the support base 2 is limited and installed on the outside of the launch base 1, effectively preventing the support base 2 from moving in the horizontal direction.

[0023] Combination Figure 3 and Figure 4 As shown, the launch base 1 includes a bottom 12 for mounting the support base 2 and an outer periphery 13 that surrounds the bottom 12 and forms a water storage cavity with the bottom 12. A first protrusion 111 is correspondingly provided on the bottom 12. The bottom 12 provides support and a stable foundation for the entire landscape facility; the outer periphery 13 surrounding the bottom 12 forms a water storage cavity for storing water within the landscape facility; the first protrusion 111 is provided on the bottom 12 to limit and fix the support base 2.

[0024] Combination Figure 2 and Figure 4 As shown, the first protrusion 111 has a downwardly recessed annular groove 112, within which a water pump 5 is installed. The water pump 5 is electrically connected to the receiving module 4. The downwardly recessed annular groove 112 on the first protrusion 111 facilitates the installation of the water pump 5, which provides power. The water pump 5 is electrically connected to the receiving module 4. When the receiving module 4 receives the output signal from the wireless power supply transmitter 3, the receiving module 4 is energized, and the water pump 5 is simultaneously energized, beginning to extract water from the landscape facility.

[0025] Reference Figure 2As shown, an installation space 113 is provided on the first protrusion 111, and the wireless power supply transmitter module 3 is ring-shaped and installed within the installation space 113. The installation space 113 on the first protrusion 111 prevents the wireless power supply transmitter module 3 from moving, ensuring that the wireless power supply transmitter module 3 is confined within the installation space 113. Furthermore, the ring-shaped design of the wireless power supply transmitter module 3 improves its efficiency and coverage, thereby achieving efficient and stable transmission.

[0026] Reference Figure 4 As shown, the support includes an annular support portion 22, which is positioned on the upper surface of the first protrusion 111 and corresponds to the launching module 3, and a rockery structure 23 mounted on the annular support portion 22. A horizontal limiting portion 21 is located on the outer periphery of the annular support portion 22. The annular support portion 22, which is positioned on the upper surface of the first protrusion 111 and aligned with the launching module 3, provides stable support and ensures the accurate positioning of the launching module 3. The rockery structure 23 on the annular support portion 22 imitates a natural landscape, and landscaping elements such as moss can be laid on the surface of the rockery structure 23 to enhance the aesthetic appeal. The horizontal limiting portion 21, located on the outer periphery of the annular support portion 22, restricts the horizontal movement of the support 2 and ensures the stability of the support 2.

[0027] Combination Figure 2 and Figure 5 As shown, the artificial rockery structure 23 has several receiving slots 231 for installing LED strips 6. The receiving slots 231 are located along the outer periphery of the artificial rockery structure 23, and both ends of the receiving slots 231 are connected to the annular support portion 22. The LED strips 6 are electrically connected to the receiving module 4, which is correspondingly mounted on the annular support portion 22. When the receiving module 4 receives the output signal from the wireless power supply module, the LED strips 6 are powered on and emit light. This not only enhances the aesthetic appeal of the landscape facility but also enables photosynthesis in the plants within the landscape facility, allowing them to grow normally.

[0028] Combination Figure 2 and Figure 4 As shown, a hollow receiving cavity 232 connected to an annular groove 112 is provided on the inner side of the artificial rockery structure 23, and a channel hole 233 connecting the hollow receiving cavity 232 is correspondingly provided on the bottom 12 of the receiving groove 231. The receiving cavity 232 is provided on the inner side of the artificial rockery structure 23, which can effectively reduce the weight of the support 2 and improve the stability of the support 2; the channel hole 233 is provided on the bottom 12 of the receiving groove 231 to connect the receiving cavity 232 and the receiving groove 231, which can transport the water in the receiving cavity 232 to the surface of the artificial rockery structure 23, providing water for the plants placed on the surface of the artificial rockery structure 23.

[0029] Reference Figure 2 and Figure 5 As shown, a silicone tube 7 is connected to the outlet end of the water pump 5, and a positioning hole 234 for installing the silicone tube 7 is provided on the receiving tank 231. By connecting the silicone tube 7 to the outlet end of the water pump 5 and providing a positioning hole 234 for installing the silicone tube 7 on the receiving tank 231, the water pumped by the water pump 5 rises through the silicone tube 7 to the receiving tank 231, thereby forming a water flow pattern and enhancing the aesthetics of the landscape facility.

[0030] Reference Figure 1 As shown, a transparent cover 8 is installed on the launch base 1, covering the outside of the support base 2. The transparent cover 8 has ventilation holes 81, and a dust filter 82 is installed on the inner side of the ventilation holes 81. The transparent cover 8 is installed on the launch base 1, and the ventilation holes 81 are opened on the transparent cover 8 to achieve slow convection of air inside and outside the cover, so that the humidity inside the transparent cover 8 is maintained within a suitable range, ensuring that the plants can grow normally inside the transparent cover 8. The dust filter 82 installed on the inner side of the ventilation holes 81 can prevent dust from outside the transparent cover 8 from entering, thereby improving the aesthetics of the landscape facility.

[0031] Example 2 Reference Figure 6 As shown, the difference between this embodiment and Embodiment 1 is that the horizontal limiting part 21 is a downwardly positioned second protrusion 212, and the contact limiting part 11 is a second sleeve 114. The second sleeve 114 is sleeved outside the second protrusion 212 and contacts and limits its movement with the outer surface of the second protrusion 212. The second sleeve 114 is disposed on the launch base 1. When the second protrusion 212 on the support base 2 is installed on the second sleeve 114, the outer wall of the second sleeve 114 contacts the inner wall of the second protrusion 212. At this time, the support base 2 is limited and installed inside the second sleeve 114 of the launch base 1, effectively preventing the support base 2 and the launch base 1 from moving in the horizontal direction.

[0032] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.

Claims

1. A wirelessly powered micro-landscape structure, comprising a transmitting base (1) and a support base (2) disposed on the transmitting base (1), characterized in that: The transmitting base (1) is equipped with a wireless power supply transmitting module (3), and the support base (2) is provided with a receiving module (4) located above the wireless power supply transmitting module (3) and corresponding to the wireless power supply transmitting module (3). The support base (2) is provided with a horizontal limiting part (21), and the transmitting base (1) is provided with a contact limiting part (11). The horizontal limiting part (21) and the contact limiting part (11) are contacted and limited to restrict the horizontal movement of the support base (2) relative to the transmitting base (1).

2. The wirelessly powered micro-landscape facility according to claim 1, characterized in that, The horizontal limiting part (21) is a first sleeve (211) set downward, and the contact limiting part (11) is a first boss (111) protruding upward on the launch base (1). The first sleeve (211) is sleeved outside the first boss (111) and contacts and limits the contact with the outer surface of the first boss (111).

3. A wirelessly powered micro-landscape facility according to claim 2, characterized in that, The launch base (1) includes a bottom (12) for mounting the support base (2) and an outer periphery (13) that surrounds the bottom (12) and forms a water storage cavity with the bottom (12). The first boss (111) is correspondingly protruding upward on the bottom (12).

4. A wirelessly powered micro-landscape facility according to claim 2, characterized in that, The first boss (111) is provided with a downwardly recessed annular groove (112), and a water pump (5) is installed in the annulus. The water pump (5) is electrically connected to the receiving module (4).

5. A wirelessly powered micro-landscape facility according to claim 4, characterized in that, An installation space (113) is provided on the first boss (111), and the wireless power supply transmitter module (3) is ring-shaped and installed in the installation space (113).

6. A wirelessly powered micro-landscape facility according to claim 5, characterized in that, The support base (2) includes an annular support part (22) that is limited and disposed on the upper end face of the first boss (111) and is disposed corresponding to the launch module (3), and a rockery structure (23) disposed on the annular support part (22). The horizontal limiting part (21) is disposed on the outer periphery of the annular support part (22).

7. A wirelessly powered micro-landscape facility according to claim 6, characterized in that, The artificial mountain structure (23) has several receiving slots (231) for installing light strips (6). The receiving slots (231) are opened along the outer periphery of the artificial mountain structure (23) and the two ends of the receiving slots (231) are respectively connected to the annular support part (22). The light strip (6) is electrically connected to the receiving module (4), and the receiving module (4) is correspondingly set on the annular support part (22).

8. A wirelessly powered micro-landscape facility according to claim 7, characterized in that, The artificial mountain structure (23) has a hollow cavity (232) connected to the annular groove (112) on its inner side, and the bottom (12) of the accommodating groove (231) has a corresponding channel hole (233) for connecting the hollow cavity (232).

9. A wirelessly powered micro-landscape facility according to claim 7, characterized in that, The outlet end of the water pump (5) is connected to a silicone tube (7), and the receiving groove (231) is provided with a positioning hole (234) for installing the silicone tube (7).

10. A wirelessly powered micro-landscape facility according to claim 1, characterized in that, The launch base (1) is equipped with a transparent cover (8) covering the outside of the support base (2). The transparent cover (8) is provided with a vent hole (81), and a dust filter (82) is provided on the inside of the vent hole (81).

Citation Information

Patent Citations

  • Wireless power supply's view ecological fish tank

    CN206790220U