Intelligent pet water dispenser
Patent Information
- Application Number
- CN202522356433.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-06
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-06
AI Technical Summary
[0002]随着宠物饲养精细化程度提升,宠物饮水机作为保障宠物饮水健康的核心设备,市场需求持续增长,但当前主流产品在核心功能设计上存在多维度缺陷,无法满足用户对“健康、便捷、安全、节约”的核心诉求,具体问题如下:
水质保障更全面:双芯净化系统:前置高密度微孔过滤及核心超级复合滤芯+ UV杀菌+超声波双重杀菌,滤除有害物质、灭活细菌,解决“水质净化不足”问题,水质达直饮标准。
Smart Images

Figure CN224775784U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of intelligent water dispenser technology, specifically relating to an intelligent water dispenser for pets. Background Technology
[0002] As pet care becomes more sophisticated, the market demand for pet water fountains, as a core device for ensuring pets' drinking health, continues to grow. However, current mainstream products suffer from multiple shortcomings in their core functional design, failing to meet users' core demands for "health, convenience, safety, and cost-effectiveness." Specific issues are as follows: Insufficient water purification capacity fails to guarantee the health of pets' drinking water. Current pet water fountains generally use a "single filter + simple filtration" purification mode, which can only intercept large particles such as hair and dust, and lacks the ability to deeply treat harmful substances in the water. On the one hand, they cannot remove residual chlorine (which can easily irritate the pet's respiratory and digestive tracts), heavy metals (such as lead and mercury, which can easily cause liver and kidney damage in pets with long-term intake), and microorganisms (such as E. coli and Salmonella) from tap water. After long-term use, bacteria can easily grow in the water tank, and the water will be cloudy and have an odor. On the other hand, some products that claim to "have purification functions" have inferior filter materials and low filtration precision (the filter pore size is mostly greater than 50μm), which cannot effectively intercept tiny particles and harmful microorganisms, resulting in health risks for pets after drinking the water. This is seriously out of touch with the core need of users to "ensure the safety of pet drinking water".
[0003] 2. The drinking water tray is inconvenient to clean, and it is easy for unsanitary corners and biofilm to form. Existing water trays often use a "fixed one-piece molding" or "simple snap-fit" design, which presents two major cleaning challenges: First, the complex structure and numerous gaps make it easy for pet saliva, food residue, and limescale to remain on the edges, bottom, and connection points with the main body. Regular wiping cannot thoroughly clean these areas, and long-term accumulation can lead to the formation of a biofilm (a sticky substance composed of bacterial colonies that can easily cause oral diseases in pets). Second, some products have a tight connection between the water tray and the main body, requiring tools for disassembly and making the cleaning process cumbersome. Users generally clean the trays less frequently than recommended (1-2 times per week), turning the water tray into a breeding ground for bacteria and posing a threat to pet health.
[0004] 3. Lack of intelligent interactive functions, failing to meet the needs of refined pet care. Most pet water fountains currently available only have a basic water circulation function and lack necessary intelligent monitoring and interactive design. Firstly, they lack a water consumption data monitoring module, meaning users cannot know their pet's daily water intake, frequency, or duration of each drink. This makes it difficult to assess a pet's health status based on drinking behavior (as diseases like kidney disease and diabetes can cause abnormal drinking), potentially leading to missed opportunities for early intervention. Secondly, they lack customizable control functions, with a fixed water flow mode (mostly continuous), making it impossible to adjust according to a pet's drinking habits (e.g., some cats prefer intermittent flow, while some dogs prefer high flow), resulting in some pets having low drinking intentions. Thirdly, they lack anomaly alerts; when the water tank is low, the filter fails, or the device malfunctions, there are no warnings or only simple indicator lights, which users may easily overlook, potentially leading to water shortages for the pet or damage to the device.
[0005] 4. The design of separating clean and dirty water is unreasonable, resulting in waste of resources and inconvenience in use. Some smart pet water fountains on the market employ a one-way clean-sewage separation design to avoid secondary pollution of the circulating water. This design directly classifies the water left over after the pet drinks as wastewater and stores it in a separate wastewater tank. While this design ensures the cleanliness of the drinking water to some extent, it significantly reduces water utilization—the unused "semi-clean water" is discarded directly as wastewater, resulting in substantial water waste over the long term (based on an average daily water consumption of 2L, this translates to an annual waste of 200-300L). Furthermore, the wastewater tank requires frequent cleaning, especially for large-capacity models, where users must manually empty it periodically. This not only contradicts energy conservation and environmental protection principles but also increases the inconvenience and cost of daily use.
[0006] 5. Lack of safety protection design, posing a risk of electrical leakage and equipment damage. Existing products have significant shortcomings in safety design: First, they do not achieve true "water-electricity separation." The distance between live components such as the water pump motor and control module and the water circuit is too close, and there is no sealed isolation structure. In humid environments (such as when water splashes during cleaning or when the water tank leaks), short circuits and electric leakage are easily caused, threatening the safety of pets and users. Second, the power cord is made of ordinary material, mostly PVC soft wire, which lacks anti-chewing protection. Pets (especially puppies and kittens) can easily damage the wires after chewing, causing electric shock or equipment failure. Third, there is no overload protection or anti-dry-burning function. When the water pump runs dry (when the water tank is empty) or the voltage fluctuates, the motor is easily burned out, shortening the service life of the equipment and increasing the user's maintenance costs.
[0007] 6. Insufficient visualization of interactive information and high operational threshold. Most products only provide vague status indications with a single indicator light (red light for low water, green light for normal operation). Users need to open the lid to check the water level and rely on a mobile app to know the water dispensing mode, which is difficult for elderly users or those unfamiliar with smart devices. Although some products have digital displays, they can only show the battery level and cannot be linked to drinking water data and device status, resulting in a lag in users' perception of the operating status.
[0008] Therefore, existing pet water fountains have significant shortcomings in five core dimensions: water purification, ease of cleaning, intelligent interaction, resource utilization, and safety protection. They cannot meet the current users' refined pet-raising needs for "health, convenience, intelligence, safety, and energy saving." There is an urgent need to develop a new type of intelligent pet water fountain that can solve the above problems through structural innovation and technological optimization. Utility Model Content
[0009] To address the aforementioned technical issues, this utility model proposes a smart pet water dispenser that combines high-density microporous filtration with a core super composite filter to achieve a sterile water circulation system. The built-in UV sterilization lamp and ultrasonic module have sterilization and self-cleaning functions, and the multi-functional external screen display interacts with an APP to achieve data transmission and intelligent operation.
[0010] To achieve the above objectives, this utility model provides the following technical solution: a smart pet water dispenser, comprising a clean water tank, a water storage tank, a smart control component, and a safety protection component, characterized in that: the clean water tank is located on the right side of the water dispenser, a lifting handle is provided on the upper inner side of the clean water tank, a water outlet is provided at the bottom and connected to the water supply component, a water level sensor and a clean water tank inlet are installed on the inner wall of the clean water tank, a clean water tank cover is provided on the top of the clean water tank, and a functional box is located on one side of the clean water tank; The functional box is divided into two parts by an isolation chamber that forms a safety protection component: a water supply component and a purification component. The top of the functional box is a drinking tray. The water supply component is located on the side closer to the clean water tank. The water supply component includes a control chamber and a DC water pump. The DC water pump is connected to the core super composite filter element. The inlet end of the core super composite filter element is connected to the outlet of the clean water tank. The outlet end is connected to a nozzle set on the upper part of the drinking tray through an arc-shaped water outlet pipe. A drinking tray outlet is provided on the side of the drinking tray opposite to the nozzle. The purification component is located on the side away from the clean water tank by the isolation chamber. The purification component includes a pre-filter with high density microporous pores. The pre-filter with high density microporous pores is located below the outlet of the drinking tray. A water storage tank is located below the pre-filter with a water storage tank outlet at the bottom. The water dispenser has an external screen assembly located at the top center, which is electrically connected to the intelligent control assembly. The external screen assembly includes an external display screen, which has functional indicator lights and buttons. The external display screen also contains a 4-digit LED digital tube. Preferably, a UV sterilization lamp is provided at the middle position of the inner side of the clean water tank cover, a wire clamping groove is provided on one side of the UV sterilization lamp near the side wall, and a charging probe is provided on one side wall of the right-angle side of the clean water tank cover.
[0011] Preferably, the side wall of the functional box is provided with an inspection port for installing the filter element compartment door at a position corresponding to the core super composite filter element, and a filter element cover is fitted on the end of the core super composite filter element away from the water outlet.
[0012] Preferably, the bottom outer wall of the clean water tank is provided with a charging port, and the clean water tank is made of 3.2L transparent food-grade ABS material.
[0013] Preferably, the drinking tray is made of stainless steel, and an ultrasonic module is embedded in the bottom of the drinking tray.
[0014] Preferably, the control chamber is equipped with an intelligent control component, which includes a main control chip, a radar monitoring module, a WI-FI module, an APP interaction module, and an alarm module that are electrically connected to each other. The intelligent component is also electrically connected to a water level sensor, a UV sterilization lamp, and an ultrasonic module. The APP interaction module is connected to a user-end APP to transmit drinking water data and receive control commands.
[0015] Preferably, the functional indicator lights include a power indicator light, a WIFI indicator light, a water consumption count indicator light, a low water level indicator light, a timed water dispensing indicator light, a radar sensor indicator light, and a continuous water dispensing indicator light.
[0016] Preferably, the drinking tray has a raised edge design, and a silicone handle is provided in the middle of the side near the drinking tray outlet.
[0017] Compared with the prior art, the beneficial effects of this utility model are as follows: More comprehensive water quality protection: Dual-core purification system: pre-filter high-density microporous filter and core super composite filter + UV sterilization + ultrasonic dual sterilization, filter out harmful substances and inactivate bacteria, solve the problem of "insufficient water purification", and the water quality meets the direct drinking standard.
[0018] Highly efficient water resource utilization: The combination of pre-filter high-density microporous filter and core super composite filter element realizes a sterile water circulation system, water resources are reused, and the problem of water waste during clean and dirty separation is solved, saving more than 200L of water per year.
[0019] Easy to clean: The detachable drinking tray and the ultrasonic module installed at its bottom enable the drinking tray to self-clean through vibration.
[0020] High safety level: The functional box is equipped with an isolation compartment that forms a safety protection component. The isolation compartment is made of waterproof and insulating material to achieve water and electricity separation. The power cord is wrapped with a special safety material that pets dislike, so as to prevent the power cord from being chewed off, thus solving the problem of potential safety hazards.
[0021] More comprehensive intelligent interaction: The external display shows core data in real time, combined with monitoring on the mobile APP, solving the problems of lack of interaction and insufficient information visualization, lowering the operation threshold and adapting to users of all ages; the buttons set on the external display realize mode switching, with a response speed of ≤0.5 seconds, which is better than pure APP control (affected by network latency) and meets the needs of instant operation. Attached Figure Description
[0022] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only for more clearly illustrating the technical solutions in the embodiments of this utility model or the prior art. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0023] Figure 1 This is an assembly drawing of the overall structure of this utility model; Figure 2 This is a schematic diagram of the overall internal water and electricity separation structure of this utility model; Figure 3 This is a schematic diagram of the installation structure of the ultrasonic module of this utility model; Figure 4 This is a schematic diagram of the dual-filter purification structure of this utility model; Figure 5 This is a schematic diagram of the external screen component structure of this utility model; Figure 6 This is a schematic diagram of the installation structure of the UV germicidal lamp of this utility model; Figure 7 This is a disassembly diagram of the pre-filter high-density filter element of this utility model; Figure 8 This is a disassembly diagram of the core super composite filter element of this utility model; In the diagram: 1-Filter cartridge compartment door, 2-Filter cartridge cover, 3-Clear water tank, 4-Lifting handle, 5-Clear water tank cover, 6-External screen assembly, 7-Button, 8-Nozzle, 9-Drinking tray, 10-Handle, 11-Pre-filter high-density microporous filter, 12-Charging port, 13-Water pump motor one, 14-Water pump motor two, 15-Control compartment, 16-Water storage tank, 17-Drinking tray outlet, 18-External screen display, 19-Water level sensor, 21-Ultrasonic module, 22-Clear water tank outlet 23-Water outlet of storage tank, 24-Pre-filter compartment, 25-Core super composite filter, 26-Clean water tank inlet, 27-Power indicator light, 28-WIFI indicator light, 29-Water consumption count indicator light, 30-Low water level indicator light, 31-Timed water dispensing indicator light, 32-Radar sensor light, 33-Continuous water dispensing indicator light, 34-Charging probe, 35-Wire slot, 36-UV sterilization lamp, 37-Sealing ring, 38-Water inlet end, 39-Water outlet end. Detailed Implementation
[0024] To enable those skilled in the art to better understand and implement the technical solution of this utility model, the present utility model will be further described below with reference to specific embodiments. However, the embodiments described are only for illustration and are not intended to limit the present utility model.
[0025] like Figures 1-8 The pet smart water dispenser shown mainly includes a clean water tank 3, a water storage tank, a water supply component, a purification component, a smart control component, and a safety protection component.
[0026] The clean water tank 3 is located on the right side of the water dispenser. A lifting handle 4 is provided on the upper inner side of the clean water tank 3, and a clean water tank outlet 22 is provided at the bottom, which is connected to the water supply component. A water level sensor 19 and a clean water tank inlet 26 are installed on the inner wall of the clean water tank 3. The water level sensor 19 is electrically connected to the intelligent control component to realize real-time monitoring of the water level. A charging port 12 is provided on the outer bottom wall of the clean water tank 3. The clean water tank 3 is made of 3.2L transparent food-grade ABS material. A clean water tank cover 5 is provided on the top of the clean water tank 3, and a functional box is located on one side of the clean water tank 3.
[0027] The functional box is divided into two parts by an isolation chamber that forms the safety protection components: a water supply component and a purification component. The top of the functional box is a drinking tray 9. The water supply component is located in the middle of the water dispenser. Specifically, the water supply component is located on the side of the isolation chamber near the clean water tank 3. The water supply component includes a control chamber 15 and two DC water pumps, driven by a pump motor 13 and a pump motor 14. The DC water pumps are connected to the core super composite filter element 25, and the water inlet 38 of the core super composite filter element 25 is connected to the core super composite filter element 25. Connected to the water outlet 22 of the clean water tank, the water outlet 39 is connected to the nozzle 8 set on the upper end of the drinking tray 9 through the arc-shaped water outlet pipe. The water flows into the drinking tray 9 through the arc-shaped water outlet pipe and the nozzle 8 after the DC water pump is turned on. The side wall of the functional box is provided with a maintenance port for installing the filter element compartment door 1 at the position corresponding to the core super composite filter element 25. The end of the core super composite filter element 25 away from the water outlet 38 is fitted with a filter element cover 2, which is designed with a hidden switch. It can be popped out with a light press. After popping out, the core super composite filter element can be replaced in a portable manner.
[0028] The purification component is located on the other side of the isolation chamber (on the left side of the water dispenser). A water outlet 17 is located on the side of the drinking tray 9 opposite to the nozzle 8. The purification component includes a pre-filter high-density microporous filter 11, which is integrated into a plastic component and connected to the water dispenser body via an upward-pull-up structure. The pre-filter high-density microporous filter 11 is located below the water outlet 17 and includes a pre-filter cartridge 24 and a sealing ring 37. A water storage tank 16 is located below the pre-filter high-density microporous filter 11. After the pet drinks, the remaining water on the drinking tray 9 flows into the purification component through the water outlet 17, passes through the pre-filter high-density microporous filter 11, and then flows into the water storage tank 16. A water storage tank outlet 23 is located at the bottom of the water storage tank 16. Water flows through the water storage tank outlet 23 and then through the core super composite filter 25 into the drinking tray 9, forming a water cycle.
[0029] A UV sterilization lamp 36 is provided in the middle of the inner side of the clean water tank cover 5. The UV sterilization lamp 36 shines downward on the water and is electrically connected to the intelligent control component, which controls the usage time. It can work intermittently. A wire slot 35 is provided on one side of the UV sterilization lamp 36 near the side wall. A charging probe 34 is provided on one side wall of the right-angle side of the clean water tank cover 5.
[0030] The drinking tray 9 is made of stainless steel. An ultrasonic module 21 is embedded in the bottom of the drinking tray 9. The water in the drinking tray 9 can separate stains through high-frequency vibration, and the drinking tray 9 can be cleaned by flushing with a large water flow.
[0031] The control chamber 15 is equipped with an intelligent control component, which includes a main control chip, a radar monitoring module, a WIFI module, an APP interaction module, and an alarm module that are electrically connected to each other. The intelligent component is also electrically connected to a water level sensor, a UV sterilization lamp, and an ultrasonic module to realize data acquisition and command execution. The APP interaction module is connected to the user terminal APP to transmit drinking water data and receive control commands.
[0032] The external screen component 6 is embedded in the middle of the top of the water dispenser and includes an external screen display 18. The external screen display 18 adopts a combination design of 4-digit LED digital tube and 6 functional indicator lights. It is operated in conjunction with the button 7 and electrically connected to the intelligent control component to realize two-way interaction of information display and command input. The character height of the digital tube is 8mm and the brightness is ≥300cd / m². The functional indicator lights include a power indicator light 27, a WIFI indicator light 28, a water drinking count indicator light 29, a low water level indicator light 30, a timed water dispensing indicator light 31, a radar sensor indicator light 32, and a continuous water dispensing indicator light 33, which correspond to the status of "battery power", "WIFI", "water drinking count", "water level", "timed water dispensing mode", "radar sensor", and "continuous water dispensing mode" respectively. The indicator lights are monochrome LEDs (red / green dual color) with a diameter of 5mm.
[0033] As a preferred embodiment, the drinking tray 9 has a splash-proof raised edge and an anti-slip pad at the bottom.
[0034] As a preferred option, the isolation chamber that forms the safety protection component achieves water and electricity separation, eliminating the risk of leakage. It completely isolates the live components such as the control chamber 15 and water pump motor from the water circuit components such as the water storage tank, drinking tray 9, and pre-filter chamber 24. The isolation chamber is made of waterproof and insulating material, and the power cord is a high-density reinforced type, with the outer layer wrapped in a special safety material that pets dislike. One end is connected to the power interface of the control chamber, and the other end is equipped with a national standard plug.
[0035] Working principle 1. Water replenishment and storage Users can remove the clean water tank by pulling the handle, add water, and then put it back in. The water level sensor monitors the water level in real time, and the data is transmitted to the intelligent control component. When the water level is low, the user is reminded to add water via the external screen indicator light and the mobile app.
[0036] 2. Water circulation and purification After the intelligent control component starts the water pump motor, the water in the clean water tank flows into the purification component through the bottom clean water tank outlet. The core super composite filter removes residual chlorine, heavy metals, and microorganisms. The purified water is then pumped to the drinking dish. The water left over after the pet drinks, or the water that has not been drunk, flows downward through the drinking dish outlet by gravity. Large particles of impurities are intercepted by the pre-filter high-density microporous filter and sent to the storage tank. The water in the storage tank is then pumped back to the clean water tank, thus achieving circulation and completing two filtration processes. This effectively removes impurities and microorganisms from the water, enabling water resource reuse and avoiding waste.
[0037] 3. Sterilization process The UV sterilization lamp can be set to work for as needed, for example, working for 10 minutes every 2 hours to sterilize the water flow in the clean water tank; the ultrasonic module continuously vibrates at high frequency to peel off the biofilm on the inner wall of the water tray and keep the water tray clean.
[0038] 4. Intelligent interaction and external screen operation Battery display The left-hand four-digit LED display shows the percentages (0%, 25%, 50%, 75%, 100%). Two bars displayed + green light on = current battery level 25%. WIFI access status The WiFi indicator light (blinking green = connecting; solid green = connected; solid red = not connected) does not require a digital display. Flashing green light = Connecting to home Wi-Fi Number of times to drink water The two-digit display on the right shows the cumulative number of times the pet drinks water that day (00-99). The number is automatically incremented by 1 each time the pet drinks water (triggered by a radar sensor below the water tray). The display "12" means the pet has drunk water 12 times that day. Water level monitoring A solid blue indicator light means everything is normal; a solid red indicator light indicates a low water level warning. A red light indicates that the water needs to be changed. Water output mode The "Mode Indicator" has 3 groups of icons corresponding to 3 modes (Continuous water output = Icon 1; Radar water output = Icon 2; Timed water output = Icon 3), and the digital tube displays the mode code simultaneously ("C" = Continuous; "R" = Radar; "T" = Timed). The display of "icon one" + solid blue indicates that the current mode is continuous water flow. As an alternative: The core super composite filter element can be replaced with an RO reverse osmosis filter element to improve purification accuracy and is suitable for areas with poor water quality; however, the RO filter element is more expensive and requires regular rinsing, so it can be considered a high-end solution.
[0039] The ultrasonic module can be replaced with an ozone sterilization module, which sterilizes through low-concentration ozone. The ozone concentration needs to be controlled to avoid irritating pets, making it suitable for scenarios where people have low tolerance for ultrasonic technology.
[0040] The radar sensing module can be replaced with an infrared recognition module to adapt to different scenario requirements.
[0041] The clean water tank can be replaced with a water tank of any size, and stainless steel can also be used to improve corrosion resistance. However, when using a stainless steel water tank, a viewing window must be opened on the side wall to ensure that the water level can be seen clearly.
[0042] The above description is merely a preferred embodiment of this utility model and is not limited to the description in the specification and embodiments. Therefore, all equivalent changes or modifications made to the structure, features, and principles described in the claims of this utility model should be included within the scope of this utility model patent application.
Claims
1. A smart pet water fountain, comprising a clean water tank, a water storage tank, a smart control component, and a safety protection component, characterized in that: The clean water tank is located on the right side of the water dispenser. A lifting handle is provided on the upper inner side of the clean water tank, and a clean water tank outlet is provided at the bottom, which is connected to the water supply component. A water level sensor and a clean water tank inlet are installed on the inner wall of the clean water tank. A clean water tank cover is provided on the top of the clean water tank, and a functional box is located on one side of the clean water tank. The functional box is divided into two parts by an isolation chamber that forms a safety protection component: a water supply component and a purification component. The top of the functional box is a drinking tray. The water supply component is located on the side of the isolation chamber near the clean water tank. The water supply component includes a control chamber and a DC water pump. The DC water pump is connected to the core super composite filter element. The inlet of the core super composite filter element is connected to the outlet of the clean water tank. The outlet is connected to a nozzle set on the upper part of the drinking tray through an arc-shaped outlet pipe. The drinking tray has a drinking tray outlet on the side opposite to the nozzle. The purification component is located on the other side of the isolation chamber. The purification component includes a pre-filter high-density microporous filter. The pre-filter high-density microporous filter is located below the drinking tray outlet and includes a pre-filter chamber and a sealing ring. A water storage tank is located below the pre-filter high-density microporous filter. A water storage tank outlet is opened at the bottom of the water storage tank.
2. The intelligent pet water fountain according to claim 1, characterized in that: The water dispenser has an external screen assembly at the top center that is electrically connected to the intelligent control assembly. The external screen assembly includes an external display screen, which has functional indicator lights and buttons. The external display screen also has a 4-digit LED digital tube inside.
3. The intelligent pet water fountain according to claim 1, characterized in that: A UV sterilization lamp is provided in the middle of the inner side of the clean water tank cover. A wire-holding groove is provided on one side of the UV sterilization lamp near the side wall. A charging probe is provided on one side wall of the right-angled edge of the clean water tank cover.
4. The intelligent pet water fountain according to claim 1, characterized in that: The side wall of the functional box is provided with an inspection port for installing the filter cartridge compartment door at the position corresponding to the core super composite filter cartridge, and a filter cartridge cover is fitted on the end of the core super composite filter cartridge away from the water outlet.
5. A smart pet water dispenser according to claim 1, characterized in that: The bottom outer wall of the clean water tank has a charging port, and the clean water tank is made of 3.2L transparent food-grade ABS material.
6. A smart pet water dispenser according to claim 1, characterized in that: The drinking tray is made of stainless steel, and an ultrasonic module is embedded in the bottom of the drinking tray.
7. A smart pet water dispenser according to claim 1, characterized in that: The control chamber is equipped with an intelligent control component, which includes a main control chip, a radar monitoring module, a WIFI module, an APP interaction module, and an alarm module that are electrically connected to each other. The intelligent component is also electrically connected to a water level sensor, a UV sterilization lamp, and an ultrasonic module. The APP interaction module is connected to a user-end APP to transmit drinking water data and receive control commands.
8. A smart pet water fountain according to claim 1, characterized in that: The functional indicator lights include a power indicator, a WIFI indicator, a water consumption count indicator, a low water level indicator, a timed water dispensing indicator, a radar sensor indicator, and a continuous water dispensing indicator.
9. A smart pet water dispenser according to claim 1, characterized in that: The drinking tray has a raised edge design, and a handle is provided in the middle of the side near the drinking tray outlet.