CN214282611U - Intelligent plant maintenance device - Google Patents

Intelligent plant maintenance device Download PDF

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Publication number
CN214282611U
CN214282611U CN202120135538.9U CN202120135538U CN214282611U CN 214282611 U CN214282611 U CN 214282611U CN 202120135538 U CN202120135538 U CN 202120135538U CN 214282611 U CN214282611 U CN 214282611U
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China
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water
main control
frame
control board
humidity
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CN202120135538.9U
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Chinese (zh)
Inventor
张志豪
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Shenzhen Huaju Technology Co ltd
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Shenzhen Huaju Technology Co ltd
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Abstract

The utility model discloses an intelligent plant maintenance device, including holding the frame, the water tank, a water pump, main control board and soil humidity probe, it is equipped with the flowerpot to hold in the frame, the below at holding the frame is established to the water tank, water pump and main control board are all established at the lower extreme that holds the frame, soil humidity probe is established in the flowerpot, soil humidity probe response flowerpot in the humidity of soil, generate corresponding humidity signal, and give the main control board with humidity signal, the main control board is compared humidity signal and humidity setting value, generate control signal according to the comparison result, main control board control water pump suction water in the water tank, and arrange water to the flowerpot through the pipeline, the distance of two soil humidity probes is 1/5 ~ 1/4 for holding frame bottom width. The utility model discloses in, owing to all install water pump and main control board at the lower extreme that holds the frame, the outlet pipe way of water pump only need through holding in the frame just can reach the flowerpot, can reduce the piping erection, the structure is simpler.

Description

Intelligent plant maintenance device
Technical Field
The utility model belongs to the technical field of the plant maintenance, concretely relates to intelligent plant maintenance device.
Background
An intelligent flowerpot is a plant maintenance device, generally speaking, the intelligent flowerpot generally applies the siphon principle, and a cotton strip or a cotton rod is used for absorbing water into flower soil, so that the method cannot control the water quantity and the rhythm of watering, and the method is simple but unscientific, so that the planted plants cannot grow well.
In addition, the prior flowerpot has the following problems: (1) the light supplementing lamp can only simply control the lamp turning-on and turning-off time, the light supplementing mode for the plants is simple and fixed, and different requirements of different plants on illumination in different growth stages cannot be met; (2) the main bodies such as the flowerpot, the frame and the like are combined into a whole, so that the replacement of plants is very inconvenient, and even the plants cannot be replaced; (3) at present, intelligent flowerpots with illumination and watering functions in the market cannot customize watering and illumination schemes for different plants.
In addition, chinese utility model patent application with application number CN201911313095.1 discloses a plant maintenance device, and this plant maintenance device's water pump and controlling means install the lower extreme at the water tank, this plant maintenance device's the following defect of existence at least: (1) because the water pump is arranged at the lower end of the water tank, a pipeline between the water pump and the spray head needs to reach the upper frame through the lower frame and then reach the spray head, the structure is complex and the reliability is poor; (2) the water pump and the control device are arranged at the lower end of the water tank, and when the water tank is cleaned, the part of the circuit needs to be waterproof, namely, the circuit is troublesome.
In addition, the utility model patent application has the following defects: because the control device is arranged at the lower end of the water tank, the circuit connection between the lamp holder and the control device at least needs to pass through the lower frame, the upper frame and the supporting rod, and because the circuit is too long, the structure is complex and the reliability is poor; and does not have a vertical separation detection function.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an intelligent plant maintenance device, which solves the problems in the prior art, and at least solves the problems that (1) because a water pump is arranged at the lower end of a water tank, a pipeline between the water pump and a spray nozzle needs to reach an upper frame through a lower frame and then reach the spray nozzle, the structure is complex and the reliability is poor; and (2) the water pump and the control device are arranged at the lower end of the water tank, and when the water tank is cleaned, the circuit needs to be waterproof, so that the two problems are solved.
According to the utility model discloses an aspect provides an intelligent plant maintenance device, including holding the frame, the water tank, a water pump, main control board and soil humidity probe, it is equipped with the flowerpot to hold in the frame, the water tank is established in the below that holds the frame, the lower extreme that holds the frame is all established to water pump and main control board, soil humidity probe is established in the flowerpot, the humidity of soil in the soil humidity probe response flowerpot, generate the corresponding humidity signal, and give the main control board with humidity signal, the main control board is compared humidity signal and humidity setting value, generate control signal according to the comparison result, water in the main control board control water pump suction water tank, and arrange water to the flowerpot through the pipeline, the distance of two soil humidity probes is 1/5 ~ 1/4 for holding the width of frame bottom.
In the utility model, because the water pump and the main control board are both arranged at the lower end of the containing frame, the water outlet pipeline of the water pump can reach the flowerpot only through the containing frame, the pipeline installation can be reduced, and the structure is simpler; because the water pump and the main control board are both arranged at the lower end of the containing frame, the water tank does not contain any circuit structure, and the water tank can be taken down, added with water, cleaned and the like more conveniently; in addition, because the distance between the two soil humidity probes is smaller, compared with the distance between the two soil humidity probes, the two soil humidity probes can sense the humidity of the soil at the similar position, and the detection speed and the detection precision are improved; meanwhile, the flowerpot is placed into the containing frame, the positioning requirement is low, or the flowerpot does not need to be positioned basically, and the flowerpot can be placed into the containing frame.
In some embodiments, still include light filling lamp and MCU control module, MCU control module generates light control signal, sends light control signal for the light filling lamp, and the light filling lamp is lighted according to light control signal. From this, because the utility model discloses in be provided with MCU control module, MCU control module can establish together with the light filling lamp, for controlling the light filling lamp through the main control board, the circuit still less, the cost is lower and more stable.
In some embodiments, the fill-in light comprises three red light lamps emitting 660nm, two blue light lamps emitting 460nm and two green light lamps emitting 525nm, and the MCU control module controls the fill-in light to emit light and the light-emitting brightness through control signals.
In some embodiments, still include the bracing piece, pluggable the establishing on holding the frame of the lower extreme of bracing piece, the upper end of bracing piece is equipped with lamp holder board, is provided with the light filling lamp circuit board in the lamp holder board, and the light filling lamp is connected with light filling lamp circuit board electricity, and MCU control module establishes on light filling lamp circuit board. From this, the bracing piece plays the effect of supporting the light filling lamp, through setting up MCU control module and light filling lamp together, can be so that the circuit still less, and the cost is lower and more stable.
In some embodiments, the light head plate is provided with a heat sink inside, the light supplement lamp circuit board is arranged on one side of the heat sink, and the upper side of the light head plate is provided with a heat dissipation hole. From this, the heat that the light filling lamp sent on the lamp holder board can be conducted to the fin, and the louvre can accelerate the heat dissipation of light filling lamp.
In some embodiments, the main control board further comprises a first primary-secondary plug connector and a second primary-secondary plug connector, the first primary-secondary plug connector is arranged at the lower end of the support rod, the second primary-secondary plug connector is arranged at the upper end of the support rod, and the main control board is electrically connected with the MCU control module through the first primary-secondary plug connector and the second primary-secondary plug connector.
In some embodiments, the water-saving device further comprises a three-way joint and two spray heads, the lower end joint of the three-way joint is communicated with the water pump, the other two joints are respectively connected with the two spray heads, water pumped by the water pump is discharged to the two spray heads through the other two joints, and a positioning sheet is arranged at the edge of the upper end of the containing frame. Therefore, water pumped by the water pump can enter the two spray heads through the three-way joint, and the two spray heads can be installed in an assisting manner through the positioning piece.
In some embodiments, the one end of shower nozzle can be dismantled and connect in the upper end that holds the frame, and the shower nozzle is half circular arc, is formed with the recess on the shower nozzle, is equipped with a plurality of through-holes on the recess, and two shower nozzles set up relatively, and two shower nozzles all keep away from the edge that holds the frame upper end. From this, through a plurality of through-holes, can directly drip in the flowerpot, prevent that water from directly flowing into the bottom of flowerpot along the inner wall of flowerpot, lead to bottom ponding too much.
In some embodiments, still include level sensor and alarm module, be equipped with the vertical chamber that holds in the water tank, vertical chamber intermediate position department that holds is equipped with the baffle, the vertical both sides that hold the chamber all are equipped with the opening, level sensor and water pump establish respectively in the both sides of baffle and all are located the vertical chamber that holds, level sensor is used for responding to the water level in the water tank, generate corresponding water level signal, and give main control board with water level signal transmission, main control board generates corresponding alarm control signal according to water level signal, and send alarm module, alarm module reports to the police. Therefore, the alarm module can know that the water level is too low and add water; through setting up the baffle, can prevent that the water level when lower, the suction pipe of water pump from inhaling water and influencing the water level detection, cause the water tank to deposit water.
In some embodiments, the lower end of the accommodating frame is provided with a type-C9V electric inlet interface and a usb9V electric outlet interface. Therefore, the power of the light supplement lamp can be improved, and the cost of the product can be reduced.
Drawings
Fig. 1 is a schematic structural view of an intelligent plant maintenance device according to an embodiment of the present invention;
FIG. 2 is a schematic view of a hidden cover plate of the intelligent plant maintenance device shown in FIG. 1;
FIG. 3 is a schematic view of a hidden containing frame of the intelligent plant maintenance device shown in FIG. 1;
FIG. 4 is a schematic view of the intelligent plant maintenance device shown in FIG. 1 with the hidden containing frame and the hidden bucket;
FIG. 5 is a schematic view of the intelligent plant maintenance device shown in FIG. 1, showing another direction;
fig. 6 is a schematic structural view of a support rod and a light supplement lamp of the intelligent plant maintenance device shown in fig. 1;
FIG. 7 is a schematic view of the structure of a water bucket of the intelligent plant maintenance device shown in FIG. 1;
FIG. 8 is an enlarged schematic view of a portion of the intelligent plant maintenance device shown in FIG. 1;
fig. 9 is a schematic view of the intelligent plant maintenance device shown in fig. 1.
In the figure: 1-an accommodating frame; 11-a flowerpot; 111-a three-way joint; 12-a spray head; 121-a through hole; 122-a spacer; a 13-type-C power inlet interface; 14-usb power-out interface; 15-cover plate; 2-a water tank; 21-a vertical containing cavity; 3-a water pump; 4-a main control board; 5-a soil moisture probe; 6-a separator; 7-a light supplement lamp; 8-MCU control module; 9-a support bar; 91-lamp head plate; 911-heat sink; 912-heat dissipation holes; 92-a first male-female plug; 93-second primary-secondary plug-in connection; 10-a water level sensor; 101-alarm module.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
Fig. 1 to 8 schematically show the structure of an intelligent plant maintenance device according to an embodiment of the present invention.
As shown in fig. 1 to 8, an intelligent plant maintenance device comprises a containing frame 1, a water tank 2, a water pump 3, a main control panel 4 and a soil humidity probe 5. In addition, this intelligent plant maintenance device still includes light filling lamp 7, MCU control module 8, bracing piece 9, first primary and secondary bayonet joint 92, second primary and secondary bayonet joint 93, level sensor 10, alarm module 101 and detection module.
As shown in fig. 1 to 5, the accommodating frame 1 may be formed with an accommodating space in which the flowerpot 11 may be placed, of course, the flowerpot 11 may also be taken out of the accommodating space, the water tank 2 may be detachably mounted below the accommodating frame 1, and the water pump 3 and the main control panel 4 are both fixedly mounted on a bottom plate at the lower end of the accommodating frame 1; it can be seen from fig. 5 that, can be at the bottom integrated into one piece through-hole of flowerpot 11, the through-hole is passed to soil humidity probe 5's upper end, and set up in flowerpot 11, in this embodiment, soil humidity probe 5 can respond to the humidity of soil in flowerpot 11, and generate corresponding humidity signal, send humidity signal for main control board 4, main control board 4 compares humidity signal and humidity set value, and according to comparison result generation control signal, main control board 4 sends control signal to water pump 3, therefore, main control board 4 can control water pump 3 and aspirate the water in the water tank 2, and arrange water to flowerpot 11 through the pipeline.
Then, as shown in fig. 5, the distance between the two soil moisture probes 5 is 1/5-1/4 of the width of the bottom of the accommodating frame; because the distance between the two soil humidity probes 5 is small, compared with the mode that the distance between the two soil humidity probes 5 is large, the two soil humidity probes 5 can sense the humidity at the close positions, and the detection speed and the detection precision can be improved; meanwhile, the flowerpot 11 can be put into the accommodating frame without requiring low positioning of the flowerpot 11 in the accommodating frame 1 or basically positioning the flowerpot 11.
Furthermore, after a certain plant is planted in the flowerpot 11, the type of the plant and the current growth stage can be selected through app and applet, and then the plant can be transmitted to the main control board 4 through wireless transmission (such as WiFi, 4G, etc.). The main control board 4 can compare the humidity signal with a humidity set value, for example: the planted plants and the growth stage are set, then the growth stage has an optimum humidity (or humidity range), the optimum humidity (or humidity range) is the humidity set value, when the humidity corresponding to the humidity signal is less than the humidity set value, the main control board 4 generates a control signal and controls the water pump 3 to pump the water in the water tank 2, when the humidity corresponding to the humidity signal is greater than or equal to the humidity set value, the main control board 4 does not generate a control signal, the water pump 3 does not work, therefore, the water pump 3 does not pump the water in the water tank 2.
In this embodiment, the MCU control module 8 generates a light control signal, and sends the light control signal to the light supplement lamp 7, and the light supplement lamp 7 is turned on or turned off according to the light control signal.
In this embodiment, as shown in fig. 6, the number of the fill-in lamps 7 is six, the six fill-in lamps 6 are three red lamps emitting 660nm, two blue lamps emitting 460nm and two green lamps emitting 525nm, and the MCU control module 8 can control the six fill-in lamps 6 to emit light and light brightness through a control signal.
Further, in the present embodiment, as shown in fig. 1 and fig. 2, the lower end of the supporting rod 9 is installed on the accommodating frame 1 in a pluggable manner, where the pluggable means: a groove is formed on the accommodating frame 1, and the lower end of the supporting rod 9 can be inserted into the groove and can be pulled out of the groove; lamp holder board 91 is installed to the upper end of bracing piece 9, is provided with the light filling lamp circuit board in the lamp holder board 91, and light filling lamp 7 and light filling lamp circuit board electricity interconnect are connected, and MCU control module 8 can be installed on the light filling lamp circuit board, and bracing piece 9 plays the effect of supporting light filling lamp 7, through setting up MCU control module 8 and light filling lamp 7 together, can make the circuit still less, and the cost is lower and more stable.
As shown in fig. 1 and 8, a heat sink 911 is provided inside the lamp head board 91, a light supplement lamp circuit board is provided on one side of the heat sink 911, and a heat dissipation hole 912 is provided on an upper side surface of the lamp head board 91. The heat dissipation fins 711 may conduct heat generated by the fill light on the lamp head plate, and the heat dissipation holes 912 may accelerate heat dissipation of the fill light.
In this embodiment, as shown in fig. 6, the first primary-secondary plug 92 may be installed at the lower end of the support rod 9, the second primary-secondary plug 93 is installed at the upper end of the support rod 9, the primary-secondary plug includes a primary connector and a secondary connector, and the main control board 4 may be electrically connected to the MCU control module 8 through the primary-secondary plug. When the lower end of the supporting rod 9 is pulled out, the sub-joint and the female joint of the first sub-plug 92 are separated, and when the lower end of the supporting rod 9 is inserted, the sub-joint and the female joint of the first sub-plug 92 are inserted.
In addition, in the embodiment, because the MCU control module 8 is provided, the MCU control module 8 can be electrically connected to the main control board 4 through a wire and a mother-son plug, the main control board 4 provides electric energy for the MCU control module 8, if the MCU control module 8 is not provided, the main control board 4 needs to be electrically connected to the fill light 7, and the MCU control module 8 of the main control board 4 needs to be electrically connected to the light sensor 6, two sets of eight wires are required; the utility model provides a main control board 4 and MCU control module 8 are as long as a set of four wires.
In this embodiment, as shown in fig. 3 and 4, the lower end joint of the three-way joint 111 may be communicated with the water pump 3 through a pipeline, two joints at the upper end are respectively communicated with the two nozzles 12 through pipelines, water pumped by the water pump 3 is discharged to the two nozzles 12 through the other two joints, the water pumped by the water pump 3 may enter the two nozzles 12 through the three-way joint 111, and the upper end edge of the containing frame 1 is provided with a positioning piece 122. In addition, with reference to fig. 3 and 4, it can be known that the water pump 3 can be connected to the water tank through a pipe, the water pump can pump water from the water tank, and the positioning plate 122 can assist in installing the two nozzles, that is, when installing the two nozzles 12, only one end of each of the two nozzles needs to be installed at the upper end of the accommodating frame 1, and the other end of each of the two nozzles needs to be aligned to the positioning plate 122 to complete the installation.
In this embodiment, in fig. 2, the rear end of the nozzle 12 is detachably connected to the upper end of the containing frame 1, that is, the rear end of the nozzle 12 can be inserted into the upper end of the containing frame 1, and the rear end of the nozzle 12 can be pulled out from the upper end of the containing frame 1, the nozzle 12 is in a semi-arc shape, a groove is formed in the nozzle 12, a plurality of through holes 121 are integrally formed in the groove, two nozzles 12 are oppositely arranged, that is, as shown in fig. 2, two nozzles 12 are oppositely arranged, two nozzles 12 are both far away from the edge of the upper end of the containing frame 1, that is, two nozzles 12 cannot be tightly attached to the inner wall of the flowerpot 11, because the nozzle 12 is in a semi-arc shape, two nozzles 12 can be substantially in a circular shape, and by setting the position of the nozzle 12, water dropped from the through holes 121 can directly drop into the flowerpot, and the water is prevented from directly flowing into the bottom of the flowerpot along the inner wall of the flowerpot.
In this embodiment, a water level sensor 10 may be disposed in the water tank 2, the water level sensor 10 may sense a water level in the water tank 2 to generate a corresponding water level signal and send the water level signal to the main control board 4, the main control board 4 may compare the water level signal with a water level set value, when the water level signal corresponds to a water level lower than the water level set value, a corresponding alarm control signal is generated and sent to the alarm module 101, the alarm module 101 alarms, and through the alarm module 101, it may be known that the water level is too low and water is added; when the water level signal corresponds to a water level higher than the set water level value, the main control board 4 will not control the alarm module 101 to alarm, wherein the alarm module 101 may be a speaker or other devices capable of generating sound.
In this embodiment, a detection module for detecting whether the receiving frame 1 and the water tank 2 are separated may be installed between the receiving frame 1 and the water tank 2.
In the embodiment, the lower end of the accommodating frame 1 is provided with a type-C9V power inlet 13 and a USB9V power outlet 14, when the accommodating frame is placed on a bed head and an office desk for use, a product is powered by a type-C USB port, and meanwhile, an A-type USB port is used as a 9V power port for outputting outwards; a 9V power adapter with enough power can be used for supplying power to a plurality of products connected in series, so that the occupation of socket resources is saved; when only one product is used, the product occupies one socket hole site, and simultaneously provides a standard A-type USB power interface for a user, so that power supply and charging of other electronic product mobile phones of the user can be realized; in addition, the power of the light supplement lamp can be improved, and the cost of the product can be reduced.
Furthermore, the utility model discloses whole can be the ovum type (whole no water caltrop promptly) to with water route and circuit mounting in same one side, make the utility model discloses whole symmetry is more pleasing to the eye.
The utility model discloses in, because all install water pump 3 and main control board 4 at the lower extreme that holds frame 1, consequently, the outlet pipe way of water pump 3 only need just can reach flowerpot 11 through holding frame 1, can reduce the piping erection, and the structure is simpler, because water pump 3 and main control board 4 all install the lower extreme that holds frame 1, and do not contain any circuit structure in water tank 2, can take off water tank 2, add water and wash etc. more conveniently. In addition, because the distance between the two soil humidity probes is small, compared with the mode that the distance between the two soil humidity probes is large, the two soil humidity probes can sense the humidity at the close positions, and the detection speed and the detection precision are improved; meanwhile, the flowerpot is placed into the containing frame, the positioning requirement is low, or the flowerpot does not need to be positioned basically, and the flowerpot can be placed into the containing frame.
The present invention is not limited to the above-mentioned optional embodiments, and any other products in various forms can be obtained by anyone under the teaching of the present invention, and any changes in the shape or structure thereof, all the technical solutions falling within the scope of the present invention, are within the protection scope of the present invention.

Claims (10)

1. The utility model provides an intelligent plant maintenance device which characterized in that: comprises a containing frame (1), a water tank (2), a water pump (3), a main control board (4) and two soil humidity probes (5), wherein a flowerpot (11) is arranged in the containing frame (1), the water tank (2) is arranged below the containing frame (1), the water pump (3) and the main control board (4) are arranged at the lower end of the containing frame (1), the soil humidity probes (5) are arranged in the flowerpot (11), the soil humidity probes (5) sense the humidity of soil in the flowerpot (11), generate corresponding humidity signals and send the humidity signals to the main control board (4), the main control board (4) compares the humidity signals with humidity set values to generate control signals according to comparison results, the main control board (4) controls the water pump (3) to pump water in the water tank (2) and discharge the water into the flowerpot (11) through a pipeline, the distance between the two soil humidity probes (5) is 1/5-1/4 of the width of the bottom of the accommodating frame (1).
2. The intelligent plant maintenance device of claim 1, wherein: still include a plurality of light filling lamps (7) and MCU control module (8), MCU control module (8) generate light control signal, send light control signal give light filling lamp (7), light filling lamp (7) are lighted according to light control signal.
3. An intelligent plant maintenance device of claim 2, wherein: the light filling lamp (7) comprises three red light lamps emitting 660nm, two blue light lamps emitting 460nm and one green light lamp emitting 525nm, and the MCU control module (8) controls the light filling lamp (7) to emit light and emit light brightness through control signals.
4. An intelligent plant maintenance device of claim 3, wherein: still include bracing piece (9), the lower extreme of bracing piece (9) is established that can plug-draw hold on the frame (1), the upper end of bracing piece (9) is equipped with lamp head board (91), be provided with the light filling lamp circuit board in lamp head board (91), light filling lamp (7) and light filling lamp circuit board electricity are connected, MCU control module (8) are established on the light filling lamp circuit board.
5. An intelligent plant maintenance device of claim 4, wherein: the inside of lamp board (91) is equipped with fin (911), the light filling lamp circuit board is established on one side of fin (911), the side of going up of lamp board (91) is equipped with louvre (912).
6. An intelligent plant maintenance device of claim 5, wherein: the support rod is characterized by further comprising a first primary-secondary plug connector (92) and a second primary-secondary plug connector (93), wherein the first primary-secondary plug connector (92) is arranged at the lower end of the support rod (9), the second primary-secondary plug connector (93) is arranged at the upper end of the support rod (9), and the main control board (4) is electrically connected with the MCU control module (8) through the first primary-secondary plug connector (92) and the second primary-secondary plug connector (93).
7. An intelligent plant maintenance device of claim 6, wherein: the water pump is characterized by further comprising a three-way joint (111) and two spray heads (12), wherein the lower end joint of the three-way joint (111) is communicated with the water pump (3), the other two joints are respectively connected with the two spray heads (12), water pumped by the water pump (3) is discharged to the two spray heads (12) through the other two joints, and a positioning sheet (122) is arranged at the edge of the upper end of the containing frame (1).
8. An intelligent plant maintenance device of claim 7, wherein: the one end of shower nozzle (12) can be dismantled and connect and be in hold the upper end of frame (1), shower nozzle (12) are half-circular arc, be formed with the recess on shower nozzle (12), be equipped with a plurality of through-holes (121) on the recess, two shower nozzles (12) set up relatively, and two shower nozzles (12) are all kept away from hold the edge of frame (1) upper end.
9. An intelligent plant maintenance device of claim 8, wherein: still include water level sensor (10) and alarm module (101), be equipped with vertical chamber (21) that holds in water tank (2), vertical chamber (21) intermediate position department that holds is equipped with baffle (6), the vertical both sides that hold chamber (21) all are equipped with opening (211), water level sensor (10) with the pipe that absorbs water of water pump (3) is established respectively in the both sides of baffle (6) and all is located vertical chamber (21) that holds, water level sensor (10) are used for responding to water level in water tank (2) generates corresponding water level signal, and will water level signal sends for main control board (4), main control board (4) generate corresponding alarm control signal according to water level signal, and send for alarm module (101), alarm module (101) report to the police.
10. An intelligent plant maintenance device of claim 9, wherein: the lower end of the accommodating frame (1) is provided with a type-C9V electricity inlet interface (13) and a usb9V electricity outlet interface (14).
CN202120135538.9U 2021-01-18 2021-01-18 Intelligent plant maintenance device Active CN214282611U (en)

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CN202120135538.9U CN214282611U (en) 2021-01-18 2021-01-18 Intelligent plant maintenance device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114200103A (en) * 2021-11-23 2022-03-18 江西省永盛园艺股份有限公司 Succulent plant plants and uses soil moisture detection device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114200103A (en) * 2021-11-23 2022-03-18 江西省永盛园艺股份有限公司 Succulent plant plants and uses soil moisture detection device

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