Intelligent water drinking system
The intelligent drinking water system addresses the lack of real-time electrolyte adjustment in existing machines by using a body condition and environmental sensing module to optimize water quality based on user health and environmental data.
Patent Information
- Application Number
- CN202421691367.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-07-17
AI Technical Summary
The existing water dispenser cannot automatically adjust and replenish electrolyte water based on the user's physical condition and external environmental conditions in real time.
It adopts an intelligent drinking water system, integrating shell, intelligent control module, water quality monitoring and purification module, distribution module, environmental perception module and sign detection module. By detecting user sign data and environmental data, it finely controls and quantitatively distributes supplementary raw materials to realize automatic distribution of electrolyte water.
Real-time automatic distribution of electrolyte water based on user's physical condition and external environmental conditions, improving user experience and the health of drinking water.
Smart Images

Figure CN223095300U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of household appliances, in particular to an intelligent drinking water system. Background Art
[0002] The structure of a water dispenser usually includes two main parts: a filter and a heating unit. The filter is designed to effectively remove impurities and odors in water to ensure the purity of water quality; while the heating unit is responsible for heating water to a preset temperature to provide warm drinking water. Through the cooperation of these two units, the water dispenser can provide users with a clean, hygienic and comfortable drinking water experience. However, it should be noted that the current water dispenser cannot automatically allocate and supplement electrolyte water in real time according to the user's physical condition and external environmental conditions. Content of the Utility Model
[0003] The utility model provides an intelligent drinking water system, and the problem to be solved is: how to automatically allocate and supplement electrolyte water in real time according to the user's physical condition and external environmental conditions.
[0004] In order to achieve the above-mentioned utility model purpose, the technical solution adopted by the utility model is as follows:
[0005] An intelligent drinking water system, including a housing, an intelligent control module, a water quality monitoring and purification module, a dispensing module, an environment perception module, and a physical sign detection module;
[0006] Housing;
[0007] The intelligent control module includes a display and a processor. The display is installed on the outer surface of the housing, and the display is electrically connected to the processor. Users can input instructions into the processor through the display;
[0008] The physical sign detection module is used to detect the physical signs of the user, and is communicatively connected to the communication element built in the processor of the intelligent control module, and can transmit the physical sign data of the user detected by the physical sign detection module to the processor;
[0009] The dispensing barrel is fixed inside the housing and is used to hold drinking water;
[0010] The water quality monitoring and purification module is used to detect and purify municipal tap water; the water inlet of the water quality monitoring and purification module is communicated with the municipal tap water source, and the water outlet of the water quality monitoring and purification module is communicated with the dispensing barrel;
[0011] The dispensing module is used to put various supplementary raw materials for supplementing body elements into the dispensing barrel, thereby increasing the electrolyte content of the drinking water in the dispensing barrel. The dispensing module includes a quantitative feeder and a stirrer. The stirrer is used to stir and evenly mix the supplementary raw materials in the dispensing barrel into the drinking water. A plurality of quantitative feeders are provided, and each quantitative feeder contains one kind of supplementary raw material. The quantitative feeder is used to feed materials into the dispensing barrel.
[0012] The water outlet module is used to discharge the prepared drinking water.
[0013] Among them, the intelligent control module, according to the acquired physical sign data of the user and the preset feeding amount of the supplementary raw materials based on the physical sign data, controls the quantitative feeder to quantitatively put the supplementary raw materials into the dispensing barrel. Then, it controls the water outlet module to discharge the prepared drinking water in the dispensing barrel for the user to drink.
[0014] Furthermore, it further includes an environmental perception module set, which includes an indoor temperature sensor, a humidity sensor, and a barometric pressure sensor, and is used to detect the indoor temperature, humidity, and barometric pressure respectively. The indoor temperature sensor, humidity sensor, and barometric pressure sensor are respectively electrically connected to the processor. The processor can acquire real-time environmental data.
[0015] Furthermore, the user's physical sign data is heart rate, body temperature, blood pressure, and blood oxygen content.
[0016] The physical sign detection module includes a second communication element, a second processor, a heart rate sensor, a body temperature sensor, a blood pressure sensor, and a blood oxygen content sensor. The detection parts of the processor, heart rate sensor, body temperature sensor, blood pressure sensor, and blood oxygen content sensor are exposed outside the housing 10. The second communication element, heart rate sensor, body temperature sensor, blood pressure sensor, and blood oxygen content sensor are all electrically connected to the second processor.
[0017] Or, the physical sign detection module is a smart watch that can detect heart rate, body temperature, blood pressure, and blood oxygen content.
[0018] Furthermore, the water quality monitoring and purification module includes a water pipeline and a filtration module.
[0019] Both ends of the water pipeline are the water inlet and the water outlet.
[0020] The filtration module includes an activated carbon filter, an ultrafilter, and a reverse osmosis filter. The activated carbon filter, ultrafilter, and reverse osmosis filter are installed on the water pipeline in sequence along the water flow direction.
[0021] Furthermore, it further includes a water quality detection unit; the water quality detection unit is used to detect whether the water treated by the filtration module is qualified, and the water quality detection unit is connected to the intelligent control module for data transmission; the intelligent control module can determine whether the water treated by the filtration module is qualified according to the preset water quality standard data;
[0022] When the intelligent control module detects that the water quality exceeds the standard, a prompt word "Water quality exceeds the standard" is displayed on the display of the intelligent control module, and the user is reminded to replace the filtration module in time.
[0023] Furthermore, a liquid level sensor is arranged in the dispensing bucket; the liquid level sensor is electrically connected to the processor of the intelligent control module, and can enable the intelligent control module to know the water level in the dispensing bucket in real time;
[0024] The electronic water valve is arranged on the water delivery pipeline of the water quality monitoring and purification module, and the electronic water valve can disconnect / connect the water delivery pipeline;
[0025] The water volume in the dispensing bucket is displayed on the display in real time; when the water volume in the dispensing bucket reaches the user's drinking water volume, the user sends an instruction to stop water inlet to the processor through the display screen, and then the processor controls the electronic water valve to be in a closed state, that is, disconnect the water delivery pipeline.
[0026] Furthermore, the heating element is located in the dispensing bucket and can heat the drinking water in the dispensing bucket;
[0027] A water temperature sensor is also arranged in the dispensing bucket, and the water temperature sensor can obtain the water temperature of the drinking water in the dispensing bucket in real time;
[0028] The processor is electrically connected to the heating element and the water temperature sensor;
[0029] The user sets the water temperature through the display. When the processor receives that the water temperature reaches the set temperature through the processor, the processor controls the heating element to stop heating.
[0030] Furthermore, the feeder includes a feed cylinder, an inclined plane, a weight sensor, a blanking pipe, and a blanking valve;
[0031] Among them, the weight sensor is fixedly arranged; the feed cylinder is fixed in the detection area of the weight sensor, the inner bottom surface of the feed cylinder is an inclined plane, the upper end of the blanking pipe is communicated with the feed cylinder, and the upper port of the blanking pipe is located at the lowest point of the inclined plane;
[0032] The lower port of the blanking pipe is communicated with the upper end of the dispensing bucket;
[0033] The weight sensor is electrically connected to the processor of the intelligent control module, and the processor can obtain the reduction amount of the supplementary raw materials in the feed cylinder, and this reduction amount is the feeding amount of the supplementary raw materials;
[0034] It is arranged on the blanking pipe and is used to control the on / off of the blanking pipe;
[0035] A plurality of feeders are arranged, which are respectively used to accommodate edible substances containing sodium, edible substances containing potassium, edible substances containing calcium, and edible substances containing magnesium.
[0036] Furthermore, the dispensing module further includes a stirrer, which includes a motor and a stirring rod. The stirring rod is located in the dispensing barrel. The motor is fixedly arranged, and the output end of the motor is fixedly connected to the stirring rod. The motor can drive the stirring rod to rotate.
[0037] Furthermore, the water outlet module includes a water outlet pipeline and a water outlet pump. The two ends of the water outlet pipeline are respectively an inlet and an outlet. The inlet of the water pipeline is communicated with the bottom of the dispensing barrel, and the outlet of the water pipeline is the water receiving port of the user;
[0038] The water outlet pump is electrically connected to the processor. When the water in the dispensing barrel is heated to the set temperature, the processor starts the water outlet pump to deliver water to the water receiving port.
[0039] The beneficial effects of the present utility model are as follows:
[0040] The physical sign detection module can detect the physical signs of the user, and the intelligent control module 40 obtains the user (biological) physical sign data detected by the physical sign detection module; the intelligent control module 40 determines the feeding amount of the supplementary raw materials according to the obtained user physical sign data and the preset feeding amount of the supplementary raw materials according to the physical sign data in advance; the intelligent control module 40 controls the metering feeder 32 to quantitatively put the supplementary raw materials into the dispensing barrel 80. That is, the intelligent control module 40 has the ability to carefully select and put the corresponding supplementary raw materials according to the (biological) physical sign data from different users. The purpose of automatically dispensing and supplementing electrolyte water according to the user's physical condition and external environmental conditions in real time is achieved. Description of the Drawings
[0041] Figure 1 It is the front view of the water dispenser;
[0042] Figure 2 It is the side schematic diagram of the water dispenser;
[0043] Figure 3 It is the internal schematic diagram of the water dispenser;
[0044] List of Reference Numerals:
[0045] Housing 10;
[0046] Water quality monitoring and purification module 20, filtration module 21, activated carbon filter 211, ultrafilter 212, reverse osmosis device 213, disinfection unit 22, water quality detection unit 23.
[0047] The mixing module 30, the feeder 32, the barrel 321, the inclined plane 3211, the weight sensor 322, the discharge pipe 323, the discharge valve, and the stirrer 33;
[0048] Intelligent control module 40, display 41, the processor;
[0049] Mixing barrel 80. DETAILED DESCRIPTION
[0050] The specific implementation of the utility model is further described below in conjunction with the accompanying drawings. The same parts are represented by the same figure numbers. It should be noted that the words "front", "rear", "left", "right", "upper" and "lower" used in the following description refer to directions in the accompanying drawings, and the words "inner" and "outer" refer to directions toward or away from the geometric center of a specific component, respectively.
[0051] In order to make the contents of the present invention more clearly understood, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention.
[0052] The intelligent drinking water system includes a housing 10, an intelligent control module 40, a water quality monitoring and purification module 20, a blending module 30, an environment sensing module, and a vital sign detection module;
[0053] Housing 10.
[0054] The intelligent control module 40 includes a display 41 and the processor. The display 41 is mounted on the outer surface of the housing 10 . The display 41 is electrically connected to the processor. The user can input instructions into the processor through the display 41 .
[0055] The vital sign detection module is used to detect the vital signs of the user and communicate with the communication element of the processor of the intelligent control module 40, that is, it can transmit the vital sign data of the user detected by the vital sign detection module to the processor. The vital sign data of the user provides data support for the elements that the user needs to supplement.
[0056] The mixing barrel 80 is fixed inside the housing 10 and is used to contain drinking water.
[0057] The water quality monitoring and purification module 20 is used to detect and purify municipal tap water; the water inlet of the water quality monitoring and purification module 20 is connected to the municipal tap water source, and the water outlet of the water quality monitoring and purification module 20 is connected to the mixing barrel 80, so that the purified water can enter the mixing barrel 80.
[0058] The dispensing module 30 is used to put a variety of supplementary raw materials for supplementing body elements into the dispensing barrel 80, thereby increasing the electrolyte content of the drinking water in the dispensing barrel 80. The dispensing module 30 includes a quantitative feeder 32 and a stirrer 33; the stirrer 33 is used to stir the supplementary raw materials in the dispensing barrel 80 evenly and mix them in the drinking water; a plurality of quantitative feeders 32 are provided, and each quantitative feeder 32 contains a kind of supplementary raw material, and the quantitative feeder 32 is used to feed materials into the dispensing barrel 80.
[0059] The water outlet module is used to discharge the prepared drinking water.
[0060] Among them, the intelligent control module 40 controls the quantitative feeder 32 to quantitatively put the supplementary raw materials into the dispensing barrel 80 according to the obtained physical sign data of the user and the preset dosage of the supplementary raw materials according to the physical sign data; then, it controls the water outlet module to discharge the prepared drinking water in the dispensing barrel 80 for the user to drink.
[0061] In summary, the physical sign detection module can detect the physical signs of the user, and the intelligent control module 40 obtains the physical sign data of the user detected by the physical sign detection module; the intelligent control module 40 sets the dosage of the supplementary raw materials according to the obtained physical sign data of the user and the preset dosage of the supplementary raw materials according to the physical sign data; the intelligent control module 40 controls the quantitative feeder 32 to quantitatively put the supplementary raw materials into the dispensing barrel 80. That is, the intelligent control module 40 has the ability to carefully select and put the corresponding supplementary raw materials according to the physical sign data of different users. It achieves the purpose of automatically dispensing and supplementing electrolyte water in real time according to the user's physical condition and external environmental conditions.
[0062] Furthermore, it further includes an environmental perception module set, which includes an indoor temperature sensor, a humidity sensor and a barometric pressure sensor, and is used to detect the indoor temperature, humidity and barometric pressure respectively; the indoor temperature sensor, the humidity sensor and the barometric pressure sensor are respectively electrically connected to the processor; the processor can obtain real-time environmental data. In this way, the supplementary raw materials for the user can be set with reference to the environmental data and the user's physical sign data.
[0063] Furthermore, the user's physical sign data is heart rate, body temperature, blood pressure, and blood oxygen content;
[0064] The physical sign detection module includes a second communication element, a second processor, a heart rate sensor, a body temperature sensor, a blood pressure sensor, and a blood oxygen content sensor. The detection parts of the processor, the heart rate sensor, the body temperature sensor, the blood pressure sensor, and the blood oxygen content sensor are exposed outside the housing 10, so that they can contact the human skin for detection; the second communication element, the heart rate sensor, the body temperature sensor, the blood pressure sensor, and the blood oxygen content sensor are all electrically connected to the second processor.
[0065] Alternatively, the physical sign detection module is a smart watch capable of detecting heart rate, body temperature, blood pressure, and blood oxygen content.
[0066] Further, the water quality monitoring and purification module 20 includes a water pipeline and a filtration module 21;
[0067] Both ends of the water pipeline are the water inlet and the water outlet; the water inlet of the water quality monitoring and purification module 20 is connected to the municipal tap water source, and the water outlet of the water quality monitoring and purification module 20 is connected to the mixing barrel 80.
[0068] The filtration module 21 includes an activated carbon filter 211, an ultrafilter 212, and a reverse osmosis device 213; the activated carbon filter 211, the ultrafilter 212, and the reverse osmosis device 213 are installed on the water pipeline in sequence along the water flow direction to improve water quality.
[0069] Preferably, it further includes a water quality detection unit 23; the water quality detection unit 23 is used to detect whether the water treated by the filtration module 21 is qualified, and the water quality detection unit 23 is connected to the intelligent control module 40 for data transmission; the intelligent control module 40 can determine whether the water treated by the filtration module 21 is qualified according to the preset water quality standard data.
[0070] When the intelligent control module 40 detects that the water quality exceeds the standard, a prompt word "Water quality exceeds the standard" is displayed on the display 41 of the intelligent control module 40, and the user is reminded to replace the filtration module 21 in time.
[0071] Further, a liquid level sensor is arranged in the mixing barrel 80; the liquid level sensor is electrically connected to the processor of the intelligent control module 40, and can enable the intelligent control module 40 to know the water level in the mixing barrel 80 in real time.
[0072] An electronic water valve is arranged on the water pipeline of the water quality monitoring and purification module 20, and the electronic water valve can disconnect / connect the water pipeline.
[0073] The water volume in the mixing barrel 80 is displayed on the display 41 in real time; when the water volume in the mixing barrel 80 reaches the user's drinking water volume, the user sends an instruction to stop water intake to the processor through the display screen, and then the processor controls the electronic water valve to be in a closed state, that is, disconnect the water pipeline.
[0074] Further, a heating element 60 is located in the mixing barrel 80 and can heat the drinking water in the mixing barrel 80;
[0075] A water temperature sensor is also arranged in the mixing barrel 80, and the water temperature sensor can obtain the water temperature of the drinking water in the mixing barrel 80 in real time.
[0076] The processor is electrically connected to the heating element 60 and the water temperature sensor;
[0077] The user sets the water temperature through the display 41. When the processor receives that the water temperature reaches the set temperature through the processor, the processor controls the heating element 60 to stop heating.
[0078] Further, the feeder 32 includes a barrel 321, an inclined plane 3211, a weight sensor 322, a blanking pipe 323, and a blanking valve;
[0079] Among them, the weight sensor 322 is fixedly arranged; the barrel 321 is fixed in the detection area of the weight sensor 322. The inner bottom surface of the barrel 321 is an inclined surface. The upper end of the blanking pipe 323 is communicated with the barrel 321, and the upper port of the blanking pipe 323 is located at the lowest point of the inclined surface, that is, the upper port of the blanking pipe 323 can receive the supplementary raw materials at the lowest point of the inclined surface.
[0080] The lower port of the blanking pipe 323 is communicated with the upper end of the blending barrel 80.
[0081] The weight sensor 322 is electrically connected to the processor of the intelligent control module 40. The processor can obtain the reduction amount of the supplementary raw materials in the barrel 321, and this reduction amount is the feeding amount of the supplementary raw materials. That is, the processor can control the feeding amount of the feeder 32.
[0082] It is arranged on the blanking pipe 323 for controlling the on-off of the blanking pipe 323.
[0083] Multiple feeders 32 are arranged, which are respectively used to accommodate edible substances containing sodium, edible substances containing potassium, edible substances containing calcium, and edible substances containing magnesium.
[0084] Further, independent feeders 32 respectively contain vitamins and flavoring agents; it can also change the drinking taste.
[0085] Further, the blending module 30 further includes a stirrer 33. The stirrer 33 includes a motor 331 and a stirring rod 332. The stirring rod 332 is located in the blending barrel 80. The motor 331 is fixedly arranged. The output end of the motor 331 is fixedly connected to the stirring rod 332, and the motor 331 can drive the stirring rod 332 to rotate.
[0086] Further, the water outlet module includes a water outlet pipeline and a water outlet pump. The two ends of the water outlet pipeline are respectively a water inlet and a water outlet. The water inlet of the water pipeline is communicated with the bottom of the blending barrel 80, and the water outlet of the water pipeline is the water receiving port of the user.
[0087] The water outlet pump is electrically connected to the processor. When the water in the blending barrel 80 is heated to the set temperature, the processor starts the water outlet pump to convey water to the water receiving port.
[0088] Further, the processor is connected to the cloud server through a communication component, and the cloud server obtains user data, environmental data, and drinking water data, and stores and analyzes them through a cloud platform.
[0089] Further, the display 41 displays water quality information, drinking water suggestions, and device status.
[0090] Further, the processor accesses the Internet through a communication component, and thus can obtain weather conditions.
[0091] The above are only the preferred embodiments of the utility model patent, and are not intended to limit the utility model patent. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the utility model patent shall be included in the protection scope of the utility model patent.
Claims
1. Intelligent drinking water system, characterized in that, It includes a housing, an intelligent control module, a water quality monitoring and purification module, a dispensing module, an environmental perception module, and a physical sign detection module; The housing; The intelligent control module includes a display and a processor. The display is installed on the outer surface of the housing and is electrically connected to the processor. Through the display, the user can input instructions into the processor; The physical sign detection module is used to detect the user's physical signs and is communicatively connected to the communication element built in the processor of the intelligent control module, and can transmit the physical sign data of the user detected by the physical sign detection module to the processor; The dispensing barrel is fixed inside the housing and is used to hold drinking water; The water quality monitoring and purification module is used to detect and purify municipal tap water; the water inlet of the water quality monitoring and purification module is connected to the municipal tap water source, and the water outlet of the water quality monitoring and purification module is connected to the dispensing barrel; The dispensing module is used to put a variety of supplementary raw materials for supplementing body elements into the dispensing barrel, thereby increasing the electrolyte content of the drinking water in the dispensing barrel; the dispensing module includes a quantitative feeder and a stirrer; the stirrer is used to stir and evenly mix the supplementary raw materials in the drinking water in the dispensing barrel; multiple quantitative feeders are provided, and each quantitative feeder contains one kind of supplementary raw material, and the quantitative feeder is used to feed materials into the dispensing barrel; The water outlet module is used to discharge the prepared drinking water; Among them, the intelligent control module, according to the obtained physical sign data of the user and the preset dosage of the supplementary raw materials according to the physical sign data, controls the quantitative feeder to quantitatively put the supplementary raw materials into the dispensing barrel; then, controls the water outlet module to discharge the prepared drinking water in the dispensing barrel for the user to drink.
2. The intelligent drinking water system according to claim 1, wherein, It further includes an environmental perception module set, which includes an indoor temperature sensor, a humidity sensor, and a barometric pressure sensor, and is used to detect the indoor temperature, humidity, and barometric pressure respectively; the indoor temperature sensor, the humidity sensor, and the barometric pressure sensor are respectively electrically connected to the processor 42; the processor 42 can obtain real-time environmental data.
3. The intelligent drinking water system according to claim 2, wherein, The user's physical sign data is heart rate, body temperature, blood pressure, and blood oxygen content; The physical sign detection module includes a second communication element, a second processor, a heart rate sensor, a body temperature sensor, a blood pressure sensor, and a blood oxygen content sensor. The detection parts of the processor, the heart rate sensor, the body temperature sensor, the blood pressure sensor, and the blood oxygen content sensor are exposed outside the housing; the second communication element, the heart rate sensor, the body temperature sensor, the blood pressure sensor, and the blood oxygen content sensor are all electrically connected to the second processor.
4. The intelligent drinking water system according to claim 1, wherein, The water quality monitoring and purification module includes a water pipeline and a filtration module; Both ends of the water pipeline are the water inlet and the water outlet; The filtration module includes an activated carbon filter, an ultrafilter, and a reverse osmosis device; the activated carbon filter, the ultrafilter, and the reverse osmosis device are installed on the water pipeline in sequence along the water flow direction.
5. The intelligent drinking water system according to claim 1, wherein, It further includes a water quality detection unit; the water quality detection unit is used to detect whether the water treated by the filtration module is qualified, and the water quality detection unit is connected to the intelligent control module for data transmission; the intelligent control module can determine whether the water treated by the detection filtration module is qualified according to the preset water quality standard data; When the intelligent control module detects that the water quality exceeds the standard, a prompt word "Water quality exceeds the standard" is displayed on the display of the intelligent control module, and the user is reminded to replace the filtration module in time.
6. The intelligent drinking water system according to claim 1, wherein A liquid level sensor is arranged in the dispensing bucket; the liquid level sensor is electrically connected to the processor of the intelligent control module, and can enable the intelligent control module to know the water level in the dispensing bucket in real time; An electronic water valve is arranged on the water supply pipeline of the water quality monitoring and purification module, and the electronic water valve can disconnect / connect the water supply pipeline; The water volume in the dispensing bucket is displayed on the display in real time; when the water volume in the dispensing bucket reaches the user's drinking water volume, the user sends an instruction to stop water inlet to the processor through the display screen, and then the processor controls the electronic water valve to be in a closed state, that is, disconnects the water supply pipeline.
7. The intelligent drinking water system according to claim 6, wherein The heating element is located in the dispensing bucket and can heat the drinking water in the dispensing bucket; A water temperature sensor is also arranged in the dispensing bucket, and the water temperature sensor can obtain the water temperature of the drinking water in the dispensing bucket in real time; The processor is electrically connected to the heating element and the water temperature sensor; The user sets the water temperature through the display. When the processor receives that the water temperature reaches the set temperature through the processor, the processor controls the heating element to stop heating.
8. The intelligent drinking water system according to claim 1, wherein The feeder includes a feed cylinder, an inclined plane, a weight sensor, a blanking pipe, and a blanking valve; Among them, the weight sensor is fixedly arranged; the feed cylinder is fixed in the detection area of the weight sensor, the inner bottom surface of the feed cylinder is an inclined plane, the upper end of the blanking pipe is communicated with the feed cylinder, and the upper port of the blanking pipe is located at the lowest point of the inclined plane; The lower port of the blanking pipe is communicated with the upper end of the dispensing bucket; The weight sensor is electrically connected to the processor of the intelligent control module, and the processor can obtain the reduction amount of the supplementary raw material in the feed cylinder, and this reduction amount is the feeding amount of the supplementary raw material; The blanking pipe is provided with a valve for controlling the on / off of the blanking pipe; Multiple feeders are arranged, and are respectively used to accommodate edible substances containing sodium, edible substances containing potassium, edible substances containing calcium, and edible substances containing magnesium.
9. The intelligent drinking water system according to claim 7, wherein The dispensing module further includes a stirrer, and the stirrer includes a motor and a stirring rod. The stirring rod is located in the dispensing bucket, the motor is fixedly arranged, the output end of the motor is fixedly connected to the stirring rod, and the motor can drive the stirring rod to rotate.
10. The intelligent drinking water system according to claim 9, wherein The water outlet module includes a water outlet pipeline and a water outlet pump. The two ends of the water outlet pipeline are respectively an inlet and an outlet. The inlet of the water pipeline is communicated with the bottom of the dispensing bucket, and the outlet of the water pipeline is the water receiving port of the user; The water pump is electrically connected to the processor. When the water in the dispensing bucket is heated to the set temperature, the processor activates the water pump to deliver water to the water inlet.