Plant pot with adjustable medication

By integrating a sprinkler system, water tank, pesticide storage compartment, and mixing device into a flowerpot, and combining this with sensors to monitor soil conditions, the problem of existing flowerpots being unable to adjust pesticide concentration has been solved, enabling precise pesticide application based on the plant's growth stage.

CN224290817UActive Publication Date: 2026-05-29GUANGDONG DONGLEE ENVIRONMENT CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG DONGLEE ENVIRONMENT CO LTD
Filing Date
2025-07-31
Publication Date
2026-05-29

Smart Images

  • Figure CN224290817U_ABST
    Figure CN224290817U_ABST
Patent Text Reader

Abstract

The utility model discloses a flowerpot of adjustable dispensing medicine, including medicine box, be equipped with water storage tank and medicine storage in the top of medicine box, store the medicine storage in the dispensing medicine before use, and the medicine storage adds the dispensing medicine in medicine box, and water storage tank adds water in medicine box, and water and medicine mix into the dispensing medicine in medicine box, and the medicine of different dose mixes and dispenses the medicine of different concentration, can satisfy the diversification demand of plant in different growth stage to the medicine application, including fixed installation in the spout mouth place's sprinkling irrigation subassembly, is equipped with water pump in medicine box, and water pump draws the dispensing medicine in medicine box to sprinkling irrigation subassembly and carries out sprinkling irrigation, and the application of plant is completed, including recycling bin, after sprinkling irrigation, water storage tank supplies water to medicine box until water fills medicine box and soaks and dissolves the residual medicine, and the sewage that has completed soaking is discharged to recycling bin through sewage port, and the user takes out recycling bin, and after pouring off sewage, put back to the original place.
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Description

Technical Field

[0001] This utility model relates to the field of flower pot maintenance technology, specifically to a flower pot that can be used to prepare medicines. Background Technology

[0002] Currently, ordinary flowerpots are merely containers for holding soil and planting plants. Some flowerpots contain pre-mixed liquid pesticides, nutrient solutions, or similar medications, which can be sprayed onto the plants. However, because the medications are pre-mixed and their concentrations are fixed, it is difficult to meet the diverse needs of plants at different growth stages. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a flowerpot that can mix water and medicine to meet the diverse needs of plants for medicine application at different growth stages.

[0004] A pot with adjustable medicine includes a sprinkler assembly fixedly installed at the pot opening, a medicine box containing a water pump that pumps the medicine from the medicine box to the sprinkler assembly for irrigation, a water tank and a medicine storage compartment above the medicine box, an outlet at the bottom of the water tank connected to the medicine box with a water gate, a medicine outlet at the bottom of the medicine storage compartment connected to the medicine box with a medicine gate, and a wastewater outlet in the medicine box connected to the wastewater box with a wastewater gate.

[0005] Furthermore, the medicine box is equipped with a stirring device.

[0006] Furthermore, the medicine storage compartments are arranged in parallel.

[0007] Furthermore, the sprinkler assembly includes drip irrigation tubing for dripping into the soil and / or atomizing nozzles for spraying the tops of plants.

[0008] Furthermore, a sensor assembly for monitoring soil conditions is provided at the rim of the flowerpot, and a display panel is provided on the outer wall of the flowerpot. The display panel is connected to the sensor assembly and displays the soil conditions monitored by the sensor assembly in real time.

[0009] Furthermore, the sensor assembly includes a temperature sensor, a humidity sensor, and a soil moisture sensor.

[0010] Before use, the unmixed medicine is stored in the medicine storage compartment. The medicine storage compartment adds the unmixed medicine to the medicine box, and the water tank adds water to the medicine box. The water and medicine mix in the medicine box to form the mixed medicine. Different amounts of water and medicine are mixed to create different concentrations of medicine, which can meet the diverse needs of plants for medicine application at different growth stages. The water pump draws the mixed medicine in the medicine box to the sprinkler assembly for irrigation, thus completing the plant application. After irrigation, the water tank supplies water to the medicine box until it is full, soaking and dissolving the residual medicine. The wastewater after soaking is discharged into the recycling bin through the wastewater outlet. The user removes the recycling bin, empties the wastewater, and puts it back in its original place. Attached Figure Description

[0011] Figure 1 It's a 3D image of a flowerpot.

[0012] Figure 2 This is a schematic diagram of the internal structure of a flowerpot.

[0013] Figure 3 This is a schematic diagram of a flowerpot water tank.

[0014] Figure 4 This is a schematic diagram of a flowerpot medicine storage compartment.

[0015] Figure 5 This is a diagram of a flowerpot and medicine box. Detailed Implementation

[0016] The present invention will be further described in detail below with reference to specific embodiments.

[0017] First embodiment:

[0018] like Figure 1 The flowerpot shown has a sprinkler assembly 1 fixedly installed at the rim and a medicine box 7 at the bottom. Figure 2 The medicine box 7 contains a water pump 9, which draws the medicine from the medicine box 7 to the irrigation assembly 1 for spraying. A water tank 2 is located above the medicine box 7. Figure 3 The water tank 2 has an outlet 20 at the bottom that connects to the medicine box 7. The outlet 20 is equipped with a water gate 21, which is connected to a water switch 22. When watering the plants, turn the water switch 22 to open the water gate 21. Water is added from the water tank 2 to the medicine box 7 through the outlet 20. Then, the water pump 9 is turned on to pump the water from the medicine box 7 to the sprinkler assembly 1 for watering the plants.

[0019] The medicine box 7 has multiple parallel medicine storage compartments 6 on top. Before use, different undissolved medicines are stored in different medicine storage compartments 6 respectively. For example... Figure 4As shown, the bottom of the medicine storage chamber 6 has a medicine outlet 60 connected to the medicine box 7. The medicine outlet 60 is equipped with a medicine gate 61, which is connected to a medicine dispensing switch 62. If it is necessary to apply medicine to the plants, the medicine needs to be prepared first. The preparation process is as follows: Turn the medicine dispensing switch 62 to open the medicine gate 61, and the medicine storage chamber 6 adds the unprepared medicine to the medicine box 7 through the medicine outlet 60; turn the water outlet switch 22 to open the water outlet gate 21 of the water storage tank 2, and the water storage tank 2 adds water to the medicine box 7 through the water outlet 20. The medicine box 7 is equipped with a stirring device (not shown in the figure) to stir and mix the water and medicine in the box to form a prepared medicine. Different dosages of water and different types of medicine can be mixed to form different prepared medicines, which can meet the diverse needs of plants for medicine application at different growth stages. Finally, the water pump 9 is turned on to pump the prepared medicine in the medicine box 7 to the sprinkler irrigation assembly 1 for irrigation, thus completing the plant application.

[0020] The sprinkler system 1 includes a drip irrigation pipe 12 laid horizontally on the soil surface near the plant roots, with drip irrigation holes (not shown in the figure) arranged on the lower wall of the pipe 12. A water pump 9 draws water or pesticides into the drip irrigation pipe 12, which then drips into the soil through the drip irrigation holes, reducing water evaporation. A water pipe 110 extends upward from the middle of the drip irrigation pipe 12, and a misting nozzle 11 is connected to the end of the water pipe 110. The misting nozzle 11 sprays the top of the plant and can be adjusted in direction to suit different plant shapes.

[0021] After the medicine in medicine box 7 has been sprayed, turn the water outlet switch 22 again to open the water outlet gate 21 of the water storage tank 2. The water storage tank 2 supplies water to medicine box 7 until it is full, soaking and dissolving any remaining medicine, thus cleaning medicine box 7. See Figure 1 The bottom of the flowerpot has a recycling bin 8 next to the medicine box 7. The medicine box 7 has a wastewater outlet 70 connected to the recycling bin 8. Figure 5 The wastewater outlet 70 is equipped with a wastewater gate 71, which is connected to a wastewater switch 72. Turning the wastewater switch 72 opens the wastewater gate 71, allowing the wastewater from the soaking of the medicine box 7 to drain through the wastewater outlet 70 into the recycling bin 8. The user removes the recycling bin 8, empties the wastewater, and returns it to its original location.

[0022] like Figure 1 As shown, a display panel 4 is provided on the outer wall of the flowerpot, and a sensor assembly 3 is provided on the soil surface at the rim of the flowerpot. The sensor assembly 3 includes a temperature sensor, a humidity sensor, and a soil moisture sensor. The display panel 4 displays the soil condition monitored by the sensor assembly 3 in real time.

[0023] In this embodiment, the water outlet gate 21, the medicine outlet gate 61, and the sewage gate 71 are respectively connected to the corresponding water outlet switch 22, medicine outlet switch 62, and sewage outlet switch 72. Rotating each switch opens the corresponding gate.

[0024] In the second embodiment, the flowerpot is equipped with three drive motors and a controller. The controller controls and connects to the three drive motors, which respectively drive and connect to the water outlet gate 21, the chemical gate 61, and the sewage gate 71. The controller is connected to a wireless signal receiver (e.g., a Bluetooth device), and the flowerpot is also equipped with a remote control. When the operator operates the remote control to send a signal to open a gate, the controller receives the signal via the wireless signal receiver and controls the corresponding drive motor to open the corresponding gate. Conversely, when the operator operates the remote control to send a signal to close a gate, the controller receives the signal via the wireless signal receiver and controls the corresponding drive motor to close the corresponding gate.

[0025] The difference between the third and second embodiments is that a weight sensor is installed at the bottom of the medicine box 7 to monitor the weight change of the medicine box 7 in real time. The weight sensor is electrically connected to the controller, transmitting the monitored weight data to the controller. The operator uses a remote control to preset a first setpoint and a second setpoint to the controller. The first setpoint controls the amount of medicine dispensed, and the second setpoint controls the amount of water dispensed. When the medicine gate 61 is opened, medicine is added from the medicine storage compartment 6 to the medicine box 7, and the weight of the medicine box 7 gradually increases. The controller monitors the weight change of the medicine box based on the real-time weight data fed back by the weight sensor. When the weight of the medicine box 7 reaches the first setpoint, the controller controls the corresponding drive motor to close the medicine gate 61, thereby achieving precise control of the amount of medicine dispensed. Similarly, when the water gate 21 is opened, water is added to the medicine box 7. The controller monitors the weight change of the medicine box based on the real-time weight data fed back by the weight sensor. When the weight of the medicine box 7 reaches the second setpoint, the controller controls the corresponding drive motor to close the water gate 21, thereby achieving precise control of the water volume. This flowerpot can precisely control the ratio of water to medicine, thus achieving precise proportioning.

Claims

1. A flowerpot with adjustable medicine, comprising a sprinkler assembly fixedly installed at the rim of the pot, including a medicine box, a water pump inside the medicine box, the water pump drawing the medicine in the medicine box to the sprinkler assembly for spraying, characterized in that: The medicine box is equipped with a water tank and a medicine storage compartment at the top; the water tank has an outlet at the bottom that connects to the medicine box and is equipped with a water gate; the medicine storage compartment has a medicine outlet at the bottom that connects to the medicine box and is equipped with a medicine gate; the medicine box also includes a recycling compartment, and the medicine box has a sewage outlet that connects to the recycling compartment and is equipped with a sewage gate.

2. The flowerpot according to claim 1, characterized in that: The medicine box is equipped with a stirring device.

3. The flowerpot according to claim 1, characterized in that: The medicine storage compartments are arranged in a row.

4. The flowerpot according to claim 1, characterized in that: The sprinkler assembly includes drip irrigation tubing for dripping into the soil and / or atomizing nozzles for spraying the tops of plants.

5. The flowerpot according to claim 1, characterized in that: The flowerpot is equipped with a sensor assembly at the rim to monitor soil conditions. A display panel is located on the outer wall of the flowerpot and is connected to the sensor assembly to display the soil conditions monitored by the sensor assembly in real time.

6. The flowerpot according to claim 5, characterized in that: The sensor assembly includes a temperature sensor, a humidity sensor, and a soil moisture sensor.