AI interactive direct water dispenser based on Internet of Things
By incorporating a splash-proof adjustment mechanism and an IoT AI interactive design, the problem of water splashing and safety hazards caused by mismatched heights in direct drinking water machines has been solved. This allows for automatic adjustment of water temperature and flow rate, improving both ease of use and safety.
Patent Information
- Application Number
- CN202511930028.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-19
- Publication Date
- 2026-02-10
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing direct drinking water machines have faucets at a fixed height, which makes it easy for water to splash out when cups of different heights are dispensed, resulting in slippery surfaces or wasted drinking water; they lack specific safety features, making them easy for children to get scalded; and they require manual adjustment of water temperature and flow rate, indicating a low level of automation.
It adopts a splash-proof adjustment mechanism and IoT AI interactive design, including a waterproof front and rear guard, piston assembly, air pressure adjustment, clamping assembly and recognition unit. Through IoT AI technology, it identifies the user and the cup, and automatically adjusts the water temperature, water flow and height to achieve adaptive water dispensing.
It effectively prevents water splashing, reduces waste, enhances convenience and safety, adapts to different user needs, and provides an immersive experience.
Smart Images

Figure CN121489296A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of household appliance technology, and in particular to an interactive direct drinking water machine based on the Internet of Things and AI. Background Technology
[0002] As a core drinking water device in public spaces and homes, direct drinking water machines have become a key facility for meeting daily convenient drinking water needs due to their advantages of instant filtration and drinking water without the need to transport bottled water. However, the faucet height of existing direct drinking water machines is generally fixed. When using cups of different heights, the mismatch in height can easily lead to water splashing, causing the countertop to become slippery or wasting drinking water. Moreover, they lack targeted protection and intelligent adaptation designs. Children may accidentally touch the cups, resulting in hot water spills and burns. Furthermore, the water temperature and flow rate need to be manually adjusted, and they cannot automatically adapt to the user's needs and the cup's capacity, indicating a low level of intelligence.
[0003] To address the above problems, this invention proposes an AI-interactive direct drinking water machine based on the Internet of Things. Summary of the Invention
[0004] The purpose of this invention is to address the shortcomings of existing direct drinking water machines, which generally have a fixed faucet height. When using cups of different heights, the water may splash out due to height mismatch, causing the countertop to become slippery or wasting drinking water. Furthermore, they lack targeted protection and intelligent adaptation design, making it easy for children to accidentally touch the cup and cause hot water to spill and burn them. In addition, they require manual adjustment of water temperature and flow rate and cannot automatically adapt to the user's needs and cup capacity, resulting in a low level of intelligence. Therefore, this invention proposes an IoT-based AI interactive direct drinking water machine.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: An IoT-based AI interactive drinking water machine includes an interactive drinking water machine, wherein a splash-proof adjustment mechanism is provided at the water inlet of the interactive drinking water machine; The splash-proof adjustment mechanism includes multiple protective rear barriers and multiple waterproof front barriers. The multiple protective rear barriers are fixedly connected to the water inlet of the interactive direct drinking water machine. A clamping component is provided on the lowest waterproof front barrier. A piston assembly is connected between the waterproof front barrier and the protective rear barriers. Each set of three piston assemblies on both sides is connected to two air pressure regulating components. The second piston rod of the two air pressure regulating components is fixedly connected to the same water outlet connector. The water outlet connector is fixed to a telescopic water outlet, and the telescopic water outlet is connected to the water outlet of the interactive direct drinking water machine.
[0006] Preferably, the interactive direct drinking water machine includes a control device, a display unit, and a recognition unit.
[0007] Preferably, the control device is located above the interactive drinking water machine, and the recognition unit includes two voice recognition modules and a face and image recognition module. The display unit, the two voice recognition modules, and the face and image recognition module are located in front of the interactive drinking water machine.
[0008] Preferably, a pressure sensor is installed on the lower wall of the water inlet of the interactive drinking water machine, and a metering module is installed at the water outlet of the interactive drinking water machine.
[0009] Preferably, the piston assembly includes a fixed side cylinder, which is mounted on the protective rear bumper. A first piston rod is disposed inside the fixed side cylinder, and a return spring is fixedly connected between the first piston rod and the side wall of the fixed side cylinder. The first piston rod extends out of the fixed side cylinder and is fixedly connected to the waterproof front bumper.
[0010] Preferably, the air pressure regulating component includes a fixed upper cylinder, which is fixedly connected to the water inlet of the interactive direct drinking water machine. A second piston rod is provided inside the fixed upper cylinder, and a conveying pipe is connected to the lower part of the fixed upper cylinder. The conveying pipe is connected to three fixed side cylinders through three solenoid valves respectively.
[0011] Preferably, the clamping assembly includes a fixed base, which is fixedly connected to the rear of the waterproof front cover. An electric push rod is mounted on the fixed base. A slider is fixedly connected to one end of the electric push rod. A cup holder is fixedly connected to one side of the slider. The slider is slidably connected in a sliding opening, which is opened on the waterproof front cover.
[0012] Preferably, a guide slide is fixedly connected to the protective rear bumper, and guide grooves are provided on both sides of the waterproof front bumper, with the guide grooves and guide slide being slidably connected.
[0013] Preferably, the control device includes a central processing unit, a judgment module, a water outlet module, a temperature control module, and a control module. The judgment module and the pressure sensor are electrically connected to the central processing unit. The central processing unit is electrically connected to the temperature control module, the solenoid valve, the control module, and the metering module. The temperature control module is electrically connected to the water outlet module. The control module, the metering module, and the water outlet module are electrically connected to the display unit.
[0014] Preferably, the identification unit is electrically connected to the judgment module, and the judgment module is electrically connected to the display unit, which includes a display screen and a sound module.
[0015] Compared with existing technologies, the present invention provides an IoT-based AI interactive direct drinking water machine, which has the following beneficial effects: 1. This IoT-based AI interactive water dispenser allows users to place a cup at the water inlet and push the corresponding waterproof front panel backward according to the cup's height, smoothly reaching the water outlet. The movement of the waterproof front panel utilizes a piston assembly to adjust the height of the water outlet using air pressure, ensuring the water outlet adapts to the cup's height and reducing water splashing. The waterproof front panel further prevents water splashes, avoiding slippery surfaces and minimizing drinking water waste. This design is compatible with cups of various heights, significantly improving the convenience of drinking water operation, especially suitable for public settings where multiple people use different sized cups.
[0016] 2. This IoT-based AI interactive water dispenser uses IoT AI technology to input the water temperature via voice recognition and facial and image recognition to identify adults or children. Adults can directly dispense water, preventing children from doing so. During dispensing, a clamping component secures the cup to prevent children from grabbing it or accidentally knocking it over, thus avoiding scalding from hot water spills. Furthermore, by collecting data on the cup size and matching the corresponding water volume, a metering module controls the water flow, achieving automatic water control. This design not only solves the safety hazards of traditional water dispensers but also provides a drinking experience that eliminates the need for manual adjustment, adapting to the needs of different users.
[0017] 3. This IoT-based AI interactive water dispenser uses IoT AI technology combined with a face and image recognition module to accurately capture the user's face and the size of the cup. After data collection, the corresponding waterproof front panel can be pushed back according to the cup's height. The waterproof front panel can also control the air pressure regulating component to adjust the height of the water outlet, thus adapting to the cup's height. The water volume can be automatically controlled based on the cup size, and the user can input the desired water temperature via voice. The cup is fixed by a clamping component, and a pressure sensor automatically detects the weight of water in the cup and automatically stops the water flow. This interactive method achieves automatic water dispensing and safety protection, providing users with a more immersive experience and significantly upgrading the user experience of the interactive water dispenser. Attached Figure Description
[0018] Figure 1 This is a three-dimensional view of an IoT-based AI interactive direct drinking water machine proposed in this invention; Figure 2 This is a cross-sectional perspective view of an IoT-based AI interactive direct drinking water machine proposed in this invention; Figure 3 This is a three-dimensional view of an interactive direct drinking water machine based on IoT AI proposed in this invention; Figure 4 This is a three-dimensional view of a splash-proof adjustment mechanism for an IoT-based AI interactive direct drinking water machine proposed in this invention; Figure 5 This is a cross-sectional perspective view of an interactive direct drinking water machine based on IoT AI proposed in this invention. Figure 6 This is a three-dimensional view of the connection between the waterproof front panel and the protective rear panel of an IoT-based AI interactive direct drinking water machine proposed in this invention. Figure 7 This is a cross-sectional perspective view of a piston assembly of an IoT-based AI interactive direct drinking water machine proposed in this invention. Figure 8 This is a cross-sectional perspective view of a gas pressure regulating component for an IoT-based AI interactive direct drinking water machine proposed in this invention. Figure 9 This is a three-dimensional view of a clamping component for an IoT-based AI interactive direct drinking water machine proposed in this invention; Figure 10 In this invention Figure 7 Enlarged view of point A; Figure 11 This is a view of the system of the present invention.
[0019] In the diagram: 100, Interactive direct drinking water machine; 101, Telescopic water outlet; 102, Voice recognition module; 103, Display unit; 104, Control device; 105, Pressure sensor; 106, Face and image recognition module; 107, Metering module; 200, Waterproof splash adjustment mechanism; 201, Waterproof front cover; 202, Clamping assembly; 2021, Fixing base; 2022, Electric push rod; 2023, Slider; 2024, Water cup clamp; 203, Protective rear cover; 204, Guide slide groove; 205, Guide slide bar; 206, Piston assembly; 2061, First piston rod; 2062, Fixed side cylinder; 2063, Return spring; 207, Air pressure adjustment assembly; 2071, Second piston rod; 2072, Fixed upper cylinder; 2073, Delivery pipe; 2074, Solenoid valve; 208, Water outlet connector. Detailed Implementation
[0020] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0021] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.
[0022] Example 1: Refer to Figures 1-2 , Figure 4 and Figures 6-10 An interactive direct drinking water machine based on the Internet of Things and AI includes an interactive direct drinking water machine 100, and a splash-proof adjustment mechanism 200 is provided at the water outlet of the interactive direct drinking water machine 100. The splash-proof adjustment mechanism 200 includes multiple protective rear barriers 203 and multiple waterproof front barriers 201. The multiple protective rear barriers 203 are fixedly connected to the water inlet of the interactive direct drinking water machine 100. A clamping assembly 202 is provided on the lowest waterproof front barrier 201. A piston assembly 206 is connected between the waterproof front barrier 201 and the protective rear barriers 203. The piston assembly 206 includes a fixed side cylinder 2062, which is installed on the protective rear barriers 203. A guide slide 205 is fixedly connected to the protective rear barrier 203. Guide grooves 204 are opened on both sides of the waterproof front barrier 201. The guide grooves 204 are connected to the guide slides 205. The sliding strips 205 are slidably connected. Each waterproof front baffle 201 and protective rear baffle 203 are arranged longitudinally side by side to form a protective area at the water inlet. The reserved upper waterproof front baffle 201 can prevent water from splashing out, and the waterproof front baffle 201 can slide smoothly on the guide strip 205 through the guide groove 204. A first piston rod 2061 is provided inside the fixed side cylinder 2062. A return spring 2063 is fixedly connected between the first piston rod 2061 and the side wall of the fixed side cylinder 2062. The return spring 2063 can drive the first piston rod 2061 to return to its original position, so that the first piston rod 2061 is... The waterproof front baffle 201 automatically resets, and the first piston rod 2061 extends out of the fixed side cylinder 2062 and is fixedly connected to the waterproof front baffle 201. Each of the three piston assemblies 206 on both sides is connected to two air pressure regulating assemblies 207. Each air pressure regulating assembly 207 includes a fixed upper cylinder 2072, which is fixedly connected to the water inlet of the interactive direct drinking water machine 100. A second piston rod 2071 is installed inside the fixed upper cylinder 2072. A delivery pipe 2073 connects to the lower part of the fixed upper cylinder 2072. The delivery pipe 2073 is connected to the three fixed side cylinders 2062 via three solenoid valves 2074. 062 is connected, and the opening and closing of the delivery pipe 2073 can be controlled by the solenoid valve 2074. When the delivery pipe 2073 is closed, the problem of the cup being pushed out and tipped over can be avoided by the first piston rod 2061 driving the waterproof front stop 201 to reset. The second piston rod 2071 of the two air pressure regulating components 207 is fixedly connected to the same water outlet connector 208. The water outlet connector 208 is fixed to the telescopic water outlet 101. The telescopic water outlet 101 can perform telescopic movement, so that the adjustment action of the telescopic water outlet 101 can be smoothly realized. The telescopic water outlet 101 is connected to the water outlet end of the interactive direct drinking water machine 100.
[0023] In this embodiment: by placing the cup at the water inlet of the interactive drinking fountain 100, and pushing the corresponding waterproof front guard 201 backward according to the height of the cup, the cup smoothly reaches the water inlet position. The movement of the waterproof front guard 201 can drive the first piston rod 2061 to move. The first piston rod 2061 uses air pressure to control the movement of the second piston rod 2071. The height of the telescopic water outlet 101 can be adjusted through the water outlet connector 208, so that the water outlet adapts to the water inlet height of the cup, reducing the problem of water splashing when filling the cup. At the same time, the reserved waterproof front guard 201 at the top can further block the splashing water when filling the cup, avoiding the risk of slipping due to the wet and slippery ground caused by splashed water, and also reducing drinking water waste. Moreover, this design is compatible with cups of various heights, greatly improving the convenience of drinking water operation, and is especially suitable for the needs of multiple people using cups of different sizes in public scenarios.
[0024] Example 2: Refer to Figure 3 , Figure 5 and Figure 11 An IoT-based AI interactive drinking water machine includes an interactive drinking water machine 100. The interactive drinking water machine 100 includes a control device 104, a display unit 103, and a recognition unit. The control device 104 is positioned above the interactive drinking water machine 100. The recognition unit includes two voice recognition modules 102 and a face and image recognition module 106. The voice recognition modules 102 can recognize voice commands, and the face and image recognition modules 106 can extract and recognize facial features and analyze the size of the cup. The face and image recognition modules 106 can also... The interactive water dispenser 100 is equipped with a camera device that can automatically turn, thereby meeting the facial feature recognition needs of children and adults. The display unit 103, two voice recognition modules 102 and a face and image recognition module 106 are set in front of the interactive water dispenser 100. A pressure sensor 105 is set on the lower wall of the water outlet of the interactive water dispenser 100. The pressure sensor 105 can detect the weight of the cup, and the metering module 107 can detect the water volume. The water weight is automatically calculated based on the water volume. The accurate water volume is obtained by comparing the water weight with the simulated water weight. The water outlet of the interactive water dispenser 100 is equipped with a metering module 107. The control device 104 includes a central processing unit, a judgment module, a water outlet module, a temperature control module, and a control module. The judgment module and pressure sensor 105 are electrically connected to the central processing unit. The central processing unit is electrically connected to the temperature control module, solenoid valve 2074, control module, and metering module 107. The temperature control module is electrically connected to the water outlet module. The temperature control module can receive instructions and heat the water temperature, and the control module can send instructions to control the metering module 107 and the water outlet module to perform operation instructions. After the instructions are sent, water can be dispensed and the water volume can be measured. The control module, metering module 107, and water outlet module are electrically connected to the display unit 103. The identification unit is electrically connected to the judgment module. The judgment module is based on the Internet of Things and analyzes and judges facial features and cup size features. The judgment module is electrically connected to the display unit 103. The display unit 103 includes a display screen and a sound module. Water dispensing instructions can be performed through the display screen, and the sound module can provide voice reminders to children. The clamping assembly 202 includes a fixed base 2021, which is fixedly connected to the rear of the waterproof front cover 201. An electric push rod 2022 is installed on the fixed base 2021. The electric push rod 2022 drives the cup clamp 2024 to move, so that the two cup clamps 2024 clamp and position the cup, preventing children from taking hot water and causing safety hazards. A slider 2023 is fixedly connected to one end of the electric push rod 2022. The cup clamp 2024 is fixedly connected to one side of the slider 2023. The slider 2023 is slidably connected in a sliding opening, which guides the slider 2023 so that the slider 2023 can drive the cup clamp 2024 to slide stably. The sliding opening is opened on the waterproof front cover 201.
[0025] In this embodiment: Based on IoT AI technology, the water temperature is input via voice through the voice recognition module 102, and the face and image recognition module 106 identifies adults or children. Adults can directly fill the water cup to prevent children from doing so. During the water filling process, the clamping component 202 can fix the cup in place to prevent children from grabbing or accidentally knocking it over, thus avoiding hot water spills and scalding. Furthermore, by collecting the cup size data to match the corresponding water volume, and through the metering module 107 to control the water flow, the purpose of automatic water control is achieved. This design not only solves the safety hazards of traditional direct drinking water machines, but also provides a drinking experience that does not require manual adjustment, adapting to the needs of different users.
[0026] Example 3: Reference Figures 3-5 and Figure 11An IoT-based AI interactive direct drinking water machine includes a splash-proof adjustment mechanism 200. The splash-proof adjustment mechanism 200 includes multiple protective rear baffles 203 and multiple waterproof front baffles 201. The multiple protective rear baffles 203 are fixedly connected to the water inlet of the interactive direct drinking water machine 100. A clamping component 202 is provided on the lowest waterproof front baffle 201. A piston component 206 is connected between the waterproof front baffle 201 and the protective rear baffles 203. Each three piston components 206 on both sides are respectively connected to two air pressure adjustment components 207. The second piston rod 2071 of the two air pressure adjustment components 207 is fixedly connected to the same water outlet connector 208. The water outlet connector 208 is fixed to a telescopic water outlet 101. The telescopic water outlet 101 is connected to the water outlet of the interactive direct drinking water machine 100. The control device 104 includes a central processing unit, a judgment module, a water outlet module, a temperature control module, and a control module. The judgment module and the pressure sensor 105 are electrically connected to the central processing unit. The central processing unit is electrically connected to the temperature control module, the solenoid valve 2074, the control module, and the metering module 107. The temperature control module is electrically connected to the water outlet module. The control module, the metering module 107, and the water outlet module are electrically connected to the display unit 103. The identification unit is electrically connected to the judgment module. The judgment module is electrically connected to the display unit 103. The display unit 103 includes a display screen and a sound module.
[0027] In this embodiment: IoT AI technology, combined with face and image recognition module 106, is used to accurately collect the face and cup size. After collection, the corresponding waterproof front cover 201 can be pushed back according to the height of the cup. The waterproof front cover 201 can be adjusted by the air pressure regulating component 207 through the piston component 206 to adjust the height of the water outlet, thereby adapting to the height of the cup. The collected cup size can be used for automatic water dispensing. The desired water temperature can be input by voice. The cup is fixed by the clamping component 202. The pressure sensor 105 automatically detects the weight of the cup filled with water and automatically stops the water flow. This method adopts an interactive approach to achieve automatic water dispensing and achieves the purpose of safety protection. It not only brings a more immersive experience to the user, but also significantly upgrades the user experience of the interactive direct drinking water machine 100.
[0028] Working principle: During water dispensing, facial recognition is performed by the face and image acquisition module, and feature analysis is conducted by the control device 104 to distinguish between adults and children. After differentiation, a voice prompt can be given to a child via the display unit 103. If it is an adult, proceed directly to the next step. The size of the cup is analyzed, and a water temperature command can be input directly via the voice recognition module 102. Then, the cup pushes the waterproof front stop 201 to move backward, and the cup enters the water dispensing port of the interactive direct drinking water machine 100. The movement of the waterproof front stop 201 also drives the first piston rod 2061 to move, and the first piston rod 2061 drives the return spring. The gas cylinder 2063 deforms and presses the gas into the fixed upper cylinder 2072 through the delivery pipe 2073. The gas pressure drives the second piston rod 2071 to move, so that the second piston rod 2071 adjusts the position of the telescopic water outlet 101 through the water outlet connector 208. At this time, the cup is placed on the pressure sensor 105 and is smoothly below the water outlet. At the same time, the solenoid valve 2074 closes to keep the cup in place. Then, the electric push rod 2022 retracts, so that the electric push rod 2022 drives the slider 2023 to move. The slider 2023 drives the cup clamp 2024 to move. The relative movement of the two cup clamps 2024 can clamp the cup. Then, the control device 104 analyzes the size characteristics of the cup and issues a voice command to heat the water to the corresponding temperature. At this time, the control module controls the water outlet module to issue a water outlet command, so that water is dispensed from the outlet and enters the cup. During the water dispensing process, the waterproof front guard 201, which remains stationary above, can prevent water from splashing. The metering module 107 measures the amount of water passing through, and the output water volume is calculated by the control device 104 to obtain the water weight. Then, it is compared with the pressure sensor 105. If the two specific gravities are the same, the water dispensing operation is stopped. The face recognition is matched to an adult. At this time, the electric push rod 2022 extends and resets, so that the cup holder 2024 moves away. The cup is then removed. At the same time, the first reset spring 2063 drives the first piston rod 2061 to reset, so that the first piston rod 2061 can smoothly drive the waterproof front guard 201 to complete the reset action.
[0029] The above are merely preferred embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. An IoT-based AI interactive direct drinking water machine, comprising an interactive direct drinking water machine (100), characterized in that, The interactive direct drinking water machine (100) is equipped with a water inlet with a splash-proof adjustment mechanism (200). The waterproof splash adjustment mechanism (200) includes multiple protective rear baffles (203) and multiple waterproof front baffles (201). The multiple protective rear baffles (203) are fixedly connected to the water inlet of the interactive direct drinking water machine (100). The lowest waterproof front baffle (201) is provided with a clamping component (202). A piston assembly (206) is connected between the waterproof front baffle (201) and the protective rear baffles (203). Each three piston assemblies (206) on both sides are respectively connected to two air pressure adjustment components (207). The second piston rod (2071) of the two air pressure adjustment components (207) is fixedly connected to the same water outlet connector (208). The water outlet connector (208) is fixed to the telescopic water outlet (101). The telescopic water outlet (101) is connected to the water outlet of the interactive direct drinking water machine (100).
2. The IoT-based AI interactive direct drinking water machine according to claim 1, characterized in that, The interactive direct drinking water machine (100) includes a control device (104), a display unit (103), and an identification unit.
3. The IoT-based AI interactive direct drinking water machine according to claim 2, characterized in that, The control device (104) is located above the interactive drinking water machine (100), and the recognition unit includes two voice recognition modules (102) and a face and image recognition module (106). The display unit (103), the two voice recognition modules (102) and the face and image recognition module (106) are located in front of the interactive drinking water machine (100).
4. The IoT-based AI interactive direct drinking water machine according to claim 3, characterized in that, The interactive direct drinking water machine (100) has a pressure sensor (105) installed on the lower wall of the water inlet, and a metering module (107) installed at the water outlet.
5. The IoT-based AI interactive direct drinking water machine according to claim 4, characterized in that, The piston assembly (206) includes a fixed side cylinder (2062) which is mounted on the protective rear guard (203). A first piston rod (2061) is provided inside the fixed side cylinder (2062). A return spring (2063) is fixedly connected between the first piston rod (2061) and the side wall of the fixed side cylinder (2062). The first piston rod (2061) extends out of the fixed side cylinder (2062) and is fixedly connected to the waterproof front guard (201).
6. The IoT-based AI interactive direct drinking water machine according to claim 5, characterized in that, The air pressure regulating component (207) includes a fixed upper cylinder (2072), which is fixedly connected to the water inlet of the interactive direct drinking water machine (100). A second piston rod (2071) is provided inside the fixed upper cylinder (2072). A conveying pipe (2073) is connected to the bottom of the fixed upper cylinder (2072). The conveying pipe (2073) is connected to three fixed side cylinders (2062) through three solenoid valves (2074).
7. The IoT-based AI interactive direct drinking water machine according to claim 1, characterized in that, The clamping assembly (202) includes a fixed base (2021), which is fixedly connected to the rear of the waterproof front cover (201). An electric push rod (2022) is installed on the fixed base (2021). A slider (2023) is fixedly connected to one end of the electric push rod (2022). A cup holder (2024) is fixedly connected to one side of the slider (2023). The slider (2023) is slidably connected in a sliding opening, which is opened on the waterproof front cover (201).
8. The IoT-based AI interactive direct drinking water machine according to claim 1, characterized in that, The protective rear guard (203) is fixedly connected with a guide slide (205), and the waterproof front guard (201) has guide slide grooves (204) on both sides, and the guide slide grooves (204) are slidably connected to the guide slide (205).
9. A direct drinking water machine based on IoT AI interactive technology according to claim 6, characterized in that, The control device (104) includes a central processing unit, a judgment module, a water outlet module, a temperature control module, and a control module. The judgment module and the pressure sensor (105) are electrically connected to the central processing unit. The central processing unit is electrically connected to the temperature control module, the solenoid valve (2074), the control module, and the metering module (107). The temperature control module is electrically connected to the water outlet module. The control module, the metering module (107), and the water outlet module are electrically connected to the display unit (103).
10. A direct drinking water machine based on IoT AI interactive technology according to claim 9, characterized in that, The identification unit is electrically connected to the judgment module, and the judgment module is electrically connected to the display unit (103). The display unit (103) includes a display screen and a sound module.