A plant fill light with humidification function

By designing a plant fill light with a humidification function and using an atomizer and a guide component to achieve uniform spraying of water mist, the problem of the single function of existing plant fill lights is solved, and the moistening effect and cleaning convenience of the plant growth environment are improved.

CN118120498BActive Publication Date: 2025-10-03DONGGUAN JIAMENG LIGHTING TECH LTD
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Patent Information

Application Number
CN202311857113.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-29
Publication Date
2025-10-03
Estimated Expiration
2043-12-29

AI Technical Summary

Technical Problem

Existing plant light supplementary lights have a single function and are unable to meet the diverse market demands.

Method used

A plant fill light with humidification function is designed, which includes a hollow shell, a humidification component, a light source component and a guide component. Water is atomized into water mist through an atomizer and sprayed on plants through a nozzle. The guide component is used to spray the water mist evenly, and the humidification time is controlled in combination with a timing unit.

Benefits of technology

It achieves humidification of plants and cooling inside the eco-bottle, improves the wetting effect and water mist utilization rate, reduces the formation of water stains on the inner wall of the eco-bottle, and reduces the frequency of cleaning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a plant fill light with a humidification function, comprising: a hollow shell, an inner cavity of which is formed with an electric control chamber and a water storage chamber; a humidification component, comprising an atomizer and a nozzle; a light source component, comprising a light-emitting element and a lampshade; a guide component, comprising a mist outlet pipe extending downward from the output end of the nozzle, the mist outlet pipe being provided with a plurality of mist outlet holes facing the plants. The atomizer is used to atomize the water in the water storage chamber into water mist, which is sprayed onto the plants in the eco-bottle through the nozzle, thereby achieving the purpose of humidification. On the one hand, it can moisten the stems and leaves of the plants, and on the other hand, it can cool the inner cavity of the eco-bottle, thereby being more conducive to the growth of the plants. In addition, the mist outlet pipe is used to guide the water mist, so that the water mist can be sprayed more evenly onto the plants through the mist outlet holes, which is conducive to improving the moistening effect and the utilization rate of the water mist. On the other hand, the directional spraying method can reduce the situation where the water mist adheres to the wall of the eco-bottle cavity to form water stains, thereby reducing the frequency of cleaning the eco-bottle.
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Description

Technical Field

[0001] The present invention relates to the technical field of plant light supplementation lamps, and in particular to a plant light supplementation lamp with a humidification function. Background Art

[0002] Plant fill lights are used to provide light for plants in eco-bottles and jars. On the one hand, it is necessary for the normal growth of plants, and on the other hand, it plays a decorative role to increase the added value of the eco-bottles.

[0003] The existing plant light supplementary lamp has a single function and is difficult to meet more market demands. Summary of the Invention

[0004] In order to overcome the shortcomings and deficiencies in the prior art, the object of the present invention is to provide a plant supplementary light with a humidification function.

[0005] To achieve the above object, the technical solution of the present invention is as follows:

[0006] A plant light with a humidification function, comprising:

[0007] The hollow shell has an electric control chamber and a water storage chamber formed in the inner cavity. The electric control chamber is provided with a power supply and a PCB board, and the water storage chamber is provided with a water inlet and a water outlet;

[0008] A humidifying assembly comprising an atomizer and a nozzle, wherein the atomizer is disposed at the bottom of the hollow shell, and an input end thereof is connected to the water storage chamber through the water inlet; an input end of the nozzle is docked with the atomizer, and an output end thereof penetrates the bottom of the hollow shell for spraying;

[0009] A light source assembly comprising a light emitting element and a lampshade, wherein the light emitting element is disposed at the bottom of the hollow housing and an input end thereof is electrically connected to the power supply via the PCB board; an inner end of the lampshade faces the light emitting element and an outer end thereof penetrates the bottom of the hollow housing for emitting light;

[0010] The guide assembly comprises a mist outlet pipe extending downward from the output end of the nozzle, and the mist outlet pipe is provided with a plurality of mist outlet holes facing the plants.

[0011] Preferably, it also includes:

[0012] The timing unit is provided on the PCB board, the atomizer is electrically connected to the PCB board, and is used to control the start and stop of the atomizer.

[0013] Preferably, it also includes:

[0014] The indicator light is provided on the electronic control chamber, and the light-emitting end thereof passes through the side of the hollow shell and is used to indicate the working status of the light-emitting component and / or the atomizer, and is electrically connected to the power supply through the PCB board.

[0015] Preferably, it also includes:

[0016] The charging interface is provided on the PCB board, and the socket end passes through the side of the hollow shell for connecting with an external charging cable.

[0017] Preferably, it also includes:

[0018] The sealing member is adapted to the water inlet and is detachably arranged on the hollow shell.

[0019] Preferably, it also includes:

[0020] The bottom plate is arranged at the bottom of the hollow shell, cooperates with the bottle mouth of the eco-bottle, and provides an upward supporting force for the hollow shell; and is provided with an avoidance gap corresponding to the nozzle and the lampshade.

[0021] Preferably, it also includes:

[0022] A plurality of ventilation holes are provided on the bottom plate.

[0023] Preferably, it also includes:

[0024] The baffle structure is a movable structure on the panel and can open or cover the air vents.

[0025] Preferably, the guide assembly further comprises:

[0026] A first connecting pipe, the bottom end of which is integrally formed with the mist outlet pipe;

[0027] A first assembly part is provided with a first through hole for the top end of the first connecting pipe to pass through;

[0028] a first magnet, the lampshade and the nozzle are coaxially arranged, a sleeve is provided extending upward from the center of the lampshade, the nozzle is sleeved and matched with the inner side of the sleeve, the first magnet is annular and sleeved and matched with the outer side of the sleeve, and can be magnetically engaged with the first assembly part;

[0029] A second connecting pipe, the top end of which is integrally formed with the mist outlet pipe;

[0030] The second assembly part has a second through hole on the top for the bottom end of the second connecting tube to pass through, and a pin structure on the bottom;

[0031] The mist outlet pipe is a spiral tubular body.

[0032] Preferably, the second assembly includes:

[0033] an upper cover, wherein the second through-hole is formed on the upper cover;

[0034] The base is detachably provided at the bottom of the upper cover and can be spliced ​​with the upper cover to form a collection chamber, wherein the collection chamber is used to recover water droplets formed by water mist; the pin is provided at the bottom of the base;

[0035] The water outlet is provided on the base and can output the water in the collection chamber to the outside.

[0036] The beneficial effects of the present invention are: using an atomizer to atomize the water in the water storage chamber into water mist, and spraying it on the plants in the eco-bottle through a nozzle, thereby achieving the purpose of humidification. On the one hand, it can moisten the stems and leaves of the plants, and on the other hand, it can cool the inner cavity of the eco-bottle, which is more conducive to the growth of plants; in addition, the water mist is guided by a mist outlet pipe, and the water mist can be sprayed more evenly on the plants through a number of mist outlet holes, which is beneficial to improving the wetting effect and the utilization rate of the water mist. On the other hand, the directional spraying method can reduce the situation where the water mist adheres to the wall of the eco-bottle cavity to form water stains, thereby reducing the frequency of cleaning the eco-bottle. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] Figure 1 It is a structural schematic diagram of an embodiment of the present invention;

[0038] Figure 2 A schematic longitudinal section of an embodiment of the present invention;

[0039] Figure 3 for Figure 2 A partial enlarged view of point A in the middle;

[0040] Figure 4 for Figure 2 A partial enlarged view of point B in the middle.

[0041] As shown in the figure:

[0042] 1-hollow shell, 11-electrical control chamber, 111-power supply, 12-water storage chamber, 121-water inlet, 122-water outlet, 13-indicator light, 14-charging port, 15-sealing member, 16-bottom plate, 161-avoidance gap, 162-vent, 163-baffle structure;

[0043] 2-humidification component, 21-atomizer, 22-nozzle;

[0044] 3-light source assembly, 31-light emitting element, 32-lampshade, 321-sleeve;

[0045] 4-guide assembly, 41-mist outlet pipe, 42-mist outlet hole, 43-first connecting pipe, 44-first assembly part, 441-first through-hole, 442-sealing ring, 45-first magnet, 46-second connecting pipe, 47-second assembly part, 471-second through-hole, 472-upper cover, 473-base, 4731-second magnet, 474-collecting chamber, 48-pin structure, 481-hollow channel, 482-leakage hole;

[0046] 5-Eco-bottle, 51-bottle body, 52-chassis. DETAILED DESCRIPTION

[0047] The following describes the embodiments of the present invention in detail with reference to the accompanying drawings, which are for reference and illustration only and do not limit the scope of patent protection of the present invention.

[0048] See also Figure 1-Figure 4 , a plant fill light with humidification function, comprising:

[0049] The hollow shell 1 has an electric control chamber 11 and a water storage chamber 12 formed in its inner cavity. The electric control chamber 11 is provided with a power supply 111 and a PCB board, and the water storage chamber 12 is provided with a water inlet 121 and a water outlet 122;

[0050] The humidifying assembly 2 includes an atomizer 21 and a nozzle 22. The atomizer 21 is provided at the bottom of the hollow shell 1, and its input end is connected to the water storage chamber 12 through the water inlet 121. The input end of the nozzle 22 is connected to the atomizer 21, and the output end passes through the bottom of the hollow shell 1 for spraying.

[0051] The light source assembly 3 includes a light-emitting element 31 and a lampshade 32. The light-emitting element 31 is provided at the bottom of the hollow housing 1, and its input end is electrically connected to the power supply 111 through the PCB board. The inner end of the lampshade 32 faces the light-emitting element 31, and the outer end thereof penetrates the bottom of the hollow housing 1 for emitting light.

[0052] The guide assembly 4 includes a mist outlet pipe 41 extending downward from the output end of the nozzle 22 . The mist outlet pipe 41 is provided with a plurality of mist outlet holes 42 facing the plants.

[0053] In this embodiment, the plant fill light is used in conjunction with a plant eco-bottle 5. The plant eco-bottle 5 includes a chassis 52 for supporting the plant and a bottle body 51 with upper and lower openings mounted on the chassis 52. To allow the user to clearly view the plant, the bottle body 51 is generally made of transparent glass. When in use, the hollow shell 1 is placed at the upper opening of the bottle body 51. The atomizer 21 of this embodiment has the same atomization principle as the humidifier in the prior art and will not be described in detail here. The power supply 111 is a battery located in the electronic control chamber 11.

[0054] Preferably, it also includes:

[0055] The timing unit is provided on the PCB board, and the atomizer 21 is electrically connected to the PCB board for controlling the start and stop of the atomizer 21 .

[0056] In this embodiment, the timing unit is a timing control circuit, which can control the atomizer 21 to start when a preset time is reached, thereby achieving a timed humidification effect.

[0057] Preferably, it also includes:

[0058] The indicator light 13 is provided on the electronic control chamber 11 and its light-emitting end passes through the side of the hollow shell to indicate the working status of the light-emitting element 31 and / or the atomizer 21, and is electrically connected to the power supply 111 through the PCB board.

[0059] In this embodiment, two indicator lights 13 are provided. One is in a long-light state when the light-emitting element 31 is working, and the other is in a long-light state when the atomizer 21 is working.

[0060] Preferably, it also includes:

[0061] The charging interface 14 is provided on the PCB board, and the socket end passes through the side of the hollow shell 1 for connecting with an external charging cable.

[0062] In this embodiment, the power supply interface 24 is a Type-C interface (5V 2A), and the charging adapter of the mobile phone can provide power, which is convenient to use.

[0063] Preferably, it also includes:

[0064] The sealing member 15 is adapted to the water inlet 121 and is detachably mounted on the hollow shell 1 .

[0065] In this embodiment, the sealing member 15 is made of silicone material and is used to open or close the water inlet 121 of the water storage chamber 12 .

[0066] Preferably, it also includes:

[0067] The bottom plate 16 is provided at the bottom of the hollow shell 1 and cooperates with the bottle mouth of the eco-bottle 5 to provide an upward support force for the hollow shell 1; and an avoidance gap 161 corresponding to the nozzle 22 and the lampshade 32 is opened.

[0068] Preferably, it also includes:

[0069] A plurality of ventilation holes 162 are defined on the bottom plate 16 .

[0070] In this embodiment, when in use, the air holes 162 are used to allow air to circulate between the inner cavity of the eco-bottle 5 and the outside world, which is beneficial to reducing the possibility of mold on the roots of plants.

[0071] Preferably, it also includes:

[0072] The baffle structure 163 is a movable structure on the panel and can open or cover the air vent 162.

[0073] In this embodiment, there are 4 groups of air holes 162, each group includes holes, and the four groups of air holes 162 are arranged in a circle with the center of the avoidance notch 161 as the center of the circle, and the angle between two adjacent groups of air holes 162 is 90°; the baffle structure 163 includes a cover plate rotatably connected to the bottom plate 16, and a rotating cover fixedly connected to the cover plate, and the outer wall of the rotating cover is provided with a number of raised stripes to facilitate user rotation, the cover plate and the rotating cover are respectively provided with notches corresponding to the avoidance notch 161, and four convex plates are provided outwardly on the edge of the cover plate, each of which can cover or open a group of air holes 162, wherein the rotatable angle of the convex plate is ±90°, an annular guide groove is provided on the bottom plate 16, and a barb portion corresponding to the annular guide groove is provided on the cover plate. When rotating, the barb portion slides with the annular guide groove, and the above-mentioned structure is used to realize opening or closing of the air holes 162, which has a simple structure and is easy to use.

[0074] Preferably, the guide assembly 4 further includes:

[0075] The first connecting pipe 43, the bottom end of which is integrally formed with the mist outlet pipe 41;

[0076] The first assembly part 44 is provided with a first through hole 441 for the top end of the first connecting tube 43 to pass through;

[0077] The lampshade 32 and the nozzle 22 are coaxially arranged. A sleeve 321 is provided upwardly from the center of the lampshade 32. The nozzle 22 is sleeved and fitted with the inner side of the sleeve 321. The first magnet 45 is annular and sleeved and fitted with the outer side of the sleeve 321, and can be magnetically engaged with the first assembly part 44.

[0078] The second connecting pipe 46, the top end of which is integrally formed with the mist outlet pipe 41;

[0079] The second assembly part 47 has a second through hole 471 on the top for the bottom end of the second connecting tube 46 to pass through, and a pin structure 48 on the bottom;

[0080] The mist outlet pipe 41 is a spiral tubular body, and a plurality of mist outlet holes 42 are respectively provided on the inner side of the mist outlet pipe 41 and face the plants. The first assembly part 44 of this embodiment is made of metal material.

[0081] In this embodiment, a spiral mist outlet pipe 41 is arranged spirally around the stem of the plant. In a unit height, more mist outlet holes 42 can be opened, thereby achieving multi-directional mist outlet while weakening the pressure of the mist spray, further reducing the situation where the mist adheres to the inner wall of the eco-bottle 5. The mist outlet pipe 41 of this embodiment is made of transparent rigid plastic to improve the ornamental effect during the atomization process. The specific installation method is as follows:

[0082] (1) Replace the new pot and separate the plant from the old pot. The height of the new pot + the longitudinal height of the first connecting pipe 43 + the longitudinal height of the mist outlet pipe 41 + the longitudinal height of the second connecting pipe 46 = the height of the bottle body 51 of the eco-bottle 5. The new pot of this embodiment is produced in conjunction with the mist outlet pipe 41. For plants with shorter roots, it is necessary to fill the bottom of the new pot with ceramsite or foam to ensure that the soil can be filled to the top of the new pot.

[0083] (2) Using the pin structure 48 to insert into the soil, fix the second assembly part 47 below the plant stem. The second assembly part 47 of this embodiment is cross-shaped and is used to avoid the plant stem. When burying the soil in step (1), the roots of the plant are deviated from the center of the new plate.

[0084] (3) The mist outlet pipe 41 is installed by rotating it around the stem of the plant using the characteristics of the spiral shape, which helps to reduce the scraping of leaves and petals during installation. Finally, the bottom end of the second connecting pipe 46 is inserted into the second through-hole 471 of the second assembly part 47;

[0085] (4) Fine-tune the flatness of the soil by adding or digging out the soil to ensure that the top of the first connecting pipe 43 is vertically upward, and finally the top of the first connecting pipe 43 is inserted into the first through-hole 441 of the first assembly part 44;

[0086] (5) Place the new pot with the plant on the chassis 52, cover the eco-bottle 5 from top to bottom, and finally place the hollow shell 1 on the top of the eco-bottle 5. The first assembly part 44 is magnetically engaged with the first magnet 45 on the hollow shell 1, so that the nozzle 22 is connected to the first connecting pipe 43, thereby completing the assembly.

[0087] In this embodiment, a sealing ring 442 is further included. A groove is formed around the top of the first assembly part 44 , and the sealing ring 442 is sleeved on the groove.

[0088] Preferably, the second assembly part 47 includes:

[0089] An upper cover 472 , wherein the second through hole 471 is formed on the upper cover 472 ;

[0090] The base 473 is detachably provided at the bottom of the upper cover 472 and can be spliced ​​with the upper cover 472 to form a collection chamber 474. The collection chamber 474 is used to recover water droplets formed by water mist. The pin is provided at the bottom of the base 473.

[0091] The water outlet is provided on the base 473 to output the water in the collection chamber 474 to the outside. The water outlet is used to drop water droplets formed by the water mist onto the soil, thereby moistening the roots.

[0092] In this embodiment, the upper cover 472 and the base 473 are both cross-shaped, and there are four pin structures 48, which is conducive to improving the stability of the installation of the second assembly part 47. The bottoms of the four pin structures 48 are all spike-shaped and have hollow channels 481 respectively. The four hollow channels 481 are respectively connected to the collection chamber 474, and the water outlet includes a seepage hole 482 opened on the side of the hollow channel 481, which is conducive to expanding the range of water flow and thus improving the wetting effect. Furthermore, it also includes four water-absorbing ropes (not shown in the figure), one end of the water-absorbing rope extends into the bottom end of the second connecting pipe 46, and the other end extends into the hollow channel 481 after passing through the collection chamber 474 to prevent soil from clogging the seepage hole 482. Furthermore, a single hollow channel 481 There are 8 seepage holes 482, which are beneficial to increasing the contact area between the water-absorbing rope and the soil. In this embodiment, it also includes a second magnet 4731 located on the top of the base 473. The upper cover 472 is made of metal material. During assembly, the four water-absorbing ropes located on the base 473 are first twisted in the same direction at the same time to achieve spiral winding. The width of the preferred collection chamber 474 matches the diameter of the water-absorbing rope, which has a certain positioning effect. After the second connecting tube 46 is inserted into the second through-hole 471 of the upper cover 472, the installation step (3) of this embodiment is performed. The exposed part of the water-absorbing rope is clamped and fixed with tweezers to facilitate insertion into the second connecting tube 46. Finally, the second magnet 4731 is magnetically engaged with the upper cover 472 to complete the assembly.

[0093] The above disclosure is only a preferred embodiment of the present invention and cannot be used to limit the scope of protection of the present invention. Therefore, equivalent changes made within the scope of the patent application of the present invention are still within the scope covered by the present invention.

Claims

1. A plant light with humidification function, characterized in that: include: The hollow shell has an electric control chamber and a water storage chamber formed in the inner cavity. The electric control chamber is provided with a power supply and a PCB board, and the water storage chamber is provided with a water inlet and a water outlet; A humidifying assembly comprising an atomizer and a nozzle, wherein the atomizer is disposed at the bottom of the hollow shell, and an input end thereof is connected to the water storage chamber through the water inlet; an input end of the nozzle is docked with the atomizer, and an output end thereof penetrates the bottom of the hollow shell for spraying; A light source assembly comprising a light emitting element and a lampshade, wherein the light emitting element is disposed at the bottom of the hollow housing and an input end thereof is electrically connected to the power supply via the PCB board; an inner end of the lampshade faces the light emitting element and an outer end thereof penetrates the bottom of the hollow housing for emitting light; A guide assembly includes a mist outlet pipe extending downward from the output end of the nozzle, and the mist outlet pipe is provided with a plurality of mist outlet holes facing the plants; The guide assembly further comprises: A first connecting pipe, the bottom end of which is integrally formed with the mist outlet pipe; A first assembly part is provided with a first through hole for the top end of the first connecting pipe to pass through; a first magnet, the lampshade and the nozzle are coaxially arranged, a sleeve is provided extending upward from the center of the lampshade, the nozzle is sleeved and matched with the inner side of the sleeve, the first magnet is annular and sleeved and matched with the outer side of the sleeve, and can be magnetically engaged with the first assembly part; A second connecting pipe, the top end of which is integrally formed with the mist outlet pipe; The second assembly part has a second through hole on the top for the bottom end of the second connecting tube to pass through, and a pin structure on the bottom; The mist outlet pipe is a spiral tubular body; The second assembly includes: an upper cover, wherein the second through-hole is formed on the upper cover; The base is detachably provided at the bottom of the upper cover and can be spliced ​​with the upper cover to form a collection chamber, wherein the collection chamber is used to recover water droplets formed by water mist; the pin is provided at the bottom of the base; The water outlet is provided on the base and can output the water in the collection chamber to the outside.

2. The plant light with humidification function according to claim 1, characterized in that: Also includes: The timing unit is provided on the PCB board, the atomizer is electrically connected to the PCB board, and is used to control the start and stop of the atomizer.

3. The plant supplementary light with humidification function according to claim 1, characterized in that: Also includes: The indicator light is provided on the electronic control chamber, and the light-emitting end thereof passes through the side of the hollow shell and is used to indicate the working status of the light-emitting component and / or the atomizer, and is electrically connected to the power supply through the PCB board.

4. The plant supplementary light with humidification function according to claim 1, characterized in that: Also includes: The charging interface is provided on the PCB board, and the socket end passes through the side of the hollow shell for connecting with an external charging cable.

5. The plant supplementary light with humidification function according to claim 1, characterized in that: Also includes: The sealing member is adapted to the water inlet and is detachably arranged on the hollow shell.

6. The plant light with humidification function according to claim 1, characterized in that: Also includes: The bottom plate is arranged at the bottom of the hollow shell, cooperates with the bottle mouth of the eco-bottle, and provides an upward supporting force for the hollow shell; and is provided with an avoidance gap corresponding to the nozzle and the lampshade.

7. The plant supplementary light with humidification function according to claim 6, characterized in that: Also includes: A plurality of ventilation holes are provided on the bottom plate.

8. The plant supplementary light with humidification function according to claim 7, characterized in that: Also includes: The baffle structure and the movable structure are on the bottom plate and can open or cover the air vents.

Citation Information

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