A new wireless intelligent inductive water pump
By designing a wireless intelligent induction water pump, using a rechargeable battery power supply and a water-electricity separation structure, the problems of wires being submerged in water and insufficient sterilization function in existing pet water fountains are solved, achieving safe and reliable automatic water supply and sterilization effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 谢东清
- Filing Date
- 2025-08-21
- Publication Date
- 2026-07-21
AI Technical Summary
Existing pet water fountains require submersible pumps to be connected to electrical components via wires, posing a risk of water ingress, and lack sterilization functionality.
Design a wireless intelligent sensor water pump that is powered by a rechargeable battery. The pump assembly is separated from the main control circuit board, the sensor is exposed on the surface of the housing, and the germicidal lamp is set on the side of the lower housing to achieve water-electricity separation and sterilization functions.
It achieves complete isolation between the water pump and the circuit board, preventing moisture from entering and improving safety and lifespan. It also features automatic water supply and sterilization capabilities, and has a neat and aesthetically pleasing structure.
Smart Images

Figure CN224533004U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of water pump products, and specifically to a new type of wireless intelligent sensor water pump. Background Technology
[0002] As people's living standards improve, many enjoy keeping pets. Pets bring joy, especially in cities where daily walks are essential, reflecting a harmonious relationship between humans and animals. However, since owners cannot be with their pets 24 / 7, especially when out, they need to leave them alone at home and provide them with sufficient water to drink at any time.
[0003] Chinese utility model application No. 202322268141.9 discloses a multifunctional pet water fountain, including a base, a water tank shell fixedly connected to the base, a water storage tank fixedly installed inside the water tank shell, a water supply component fixedly installed inside the water storage tank, a heating component fixedly installed on the outer bottom surface of the water storage tank, a water basin bracket fixedly installed on the top of the water tank shell, a water basin fixedly connected to the water basin bracket, a filter component fixedly connected to the lower end of the water basin bracket, a control front cover and a control rear cover fixedly connected to the upper end of the water tank shell, with a gap between the control front cover and the control rear cover, a control component fixedly installed on the upper end of the water tank shell, a water replenishment component fixedly installed between the water storage tank and the water tank shell, and a power component fixedly installed on the water tank shell. The water supply component includes a submersible pump, which is installed on the inner bottom surface of the water storage tank; the power component includes a power interface, which is fixedly connected to the side of the water tank shell, and the power interface is electrically connected to the power-consuming components in the water supply component, the water replenishment component, and the heating component, as well as the lithium battery, via wires.
[0004] While the aforementioned multi-functional pet water fountain offers advantages such as automatic water filling and providing pets with a constant supply of warm water, it also has the following drawbacks: The submersible pump is installed on the inner bottom of the water tank, and the entire pump is submerged in water. After installation, the pump needs to be electrically connected to the power supply via wires. Considering the wiring issues, the entire wiring path must be submerged in water. This method does not truly achieve water-electricity separation and wireless power supply, posing a risk of water ingress and causing significant inconvenience to the user. Furthermore, the aforementioned multi-functional pet water fountain lacks a sterilization function, failing to meet the diverse usage requirements of users.
[0005] In view of the above, the inventors propose the following technical solution. Utility Model Content
[0006] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a new type of wireless intelligent induction water pump.
[0007] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: The novel wireless intelligent induction water pump includes a housing, a water pump assembly installed and sealed at the lower end of the housing, a main control circuit board and a rechargeable battery disposed inside the housing, and the water pump assembly and the rechargeable battery are electrically connected to the main control circuit board; the main control circuit board is provided with a sensor for sensing the approach of a pet, the sensor being exposed on the surface of the housing and forming a sealed assembly with the surface of the housing; the water pump assembly includes: a lower housing having a mutually separated mounting cavity and a water supply channel, and the lower part of the lower housing is also provided with a pumping chamber communicating with the water supply channel; the upper end of the lower housing is sealed to the lower end of the housing, and the lower end of the lower housing is provided with a water inlet hole communicating with the pumping chamber; a motor, which is installed in the mounting cavity, the impeller connected to the rotating shaft of the motor is placed in the pumping chamber for pumping water in the pumping chamber into the water supply channel.
[0008] Furthermore, in the above technical solution, the lower end of the lower shell is also covered with a sand-proof cover, and the lower periphery of the sand-proof cover is provided with a plurality of water inlet holes.
[0009] Furthermore, in the above technical solution, a filter sponge is also provided inside the sand-proof cover. The filter sponge blocks all the water inlet pores. The filter sponge is square-shaped with a through-hole in the middle that runs through the upper and lower ends. The through-hole is located at the lower end of the water inlet and is connected to it. A limiting piece is formed on the inner side of the sand-proof cover. The limiting piece abuts against the inner side of the through-hole in the filter sponge.
[0010] Furthermore, in the above technical solution, a stepped groove is provided at the lower end of the lower housing, and a strip-shaped slot is provided in the stepped groove. A strip-shaped clip is provided on the inner wall of the upper end of the sand-proof cover. The strip-shaped clip is fixed to the strip-shaped slot, so that the sand-proof cover is detachably installed at the lower end of the lower housing, and the lower end of the lower housing also presses against the outer edge of the upper end of the filter sponge.
[0011] Furthermore, in the above technical solution, the lower housing includes: a bottom shell fixed to the lower end of the outer shell by ultrasonic welding to form a sealed assembly, the bottom shell having the mounting cavity and water supply channel, and a pump water tank communicating with the water supply channel is also provided at the lower part of the bottom shell; a water blade cover, which is fixed to the lower end of the bottom shell and covers the pump water tank to form the pump water chamber, and an inclined drainage channel communicating with the pump water chamber and the water supply channel is also formed between the water blade cover and the bottom shell; the water blade cover is provided with the water inlet hole.
[0012] Furthermore, in the above technical solution, a circuit board is also provided in the mounting cavity of the lower housing. The circuit board is electrically connected to the main control circuit board and the motor. A germicidal lamp is also provided on the side of the lower housing, and the germicidal lamp forms a sealed assembly with the lower housing.
[0013] Furthermore, in the above technical solution, the germicidal lamp includes a mounting cylinder, a germicidal lamp bead mounted at the rear end of the mounting cylinder, and a lens sealed and mounted at the front end of the mounting cylinder. The germicidal lamp bead is electrically connected to the circuit board, and the mounting cylinder forms a sealed assembly with the first mounting hole on the side of the lower housing, and the lens is exposed on the side of the lower housing.
[0014] Furthermore, in the above technical solution, a water outlet pipe is provided on one side of the upper end of the housing, and a water outlet channel is opened on the side of the housing to pass through the water outlet pipe. The water outlet channel is connected to the water supply channel of the water pump assembly. A second mounting hole is provided at the upper end of the housing. The sensor is embedded in the second mounting hole and sealed and fixed with waterproof glue. The sensor is located above the water outlet pipe.
[0015] Furthermore, in the above technical solution, the outer shell includes a main shell and a cover that is sealed and installed on the upper end of the main shell by a sealing ring. The main control circuit board is fixed to the lower end of the cover, and the cover is provided with several indicator light holes and a touch area located next to the indicator light holes. The indicator lights provided on the main control circuit board are exposed in the indicator light holes, and the induction coils provided on the main control circuit board are correspondingly assembled with the touch area.
[0016] Furthermore, in the above technical solution, the main control circuit board is provided with a charging interface, which is exposed in a window provided on the outside of the main housing. A waterproof plug is also connected to the outside of the main housing. The waterproof plug is inserted into both the window and the charging interface and forms a sealed contact with both the window and the charging interface.
[0017] After adopting the above technical solution, this utility model has the following beneficial effects compared with the prior art: This utility model uses a rechargeable battery for power supply, which eliminates the need for external guides to achieve power connection. Simultaneously, the lower housing of the water pump assembly uses mutually separated mounting cavities and water supply channels to install electrical components and supply water, ensuring no interference between them and guaranteeing excellent waterproof performance of the electrical components, thus improving service life and making it safer and more reliable to use. Specifically, the motor in this utility model is installed in the mounting cavity of the lower housing, completely isolated from water, and the connecting wires do not need to be submerged in water but are placed within the mounting cavity and the inner cavity of the outer shell, truly achieving water-electricity separation and wireless power supply. Furthermore, the sensor is exposed on the surface of the outer shell and forms a sealed assembly with the outer shell surface, effectively achieving waterproofing. During operation, the sensor detects whether a pet is approaching. If a pet is detected, a signal is transmitted to the main control circuit board, which then controls the water pump assembly to operate, achieving automatic water supply / filling, making it extremely convenient to use. The exposed components of this utility model are waterproofed by ultrasonic welding, sealing rings, or waterproof adhesive / glue, achieving overall waterproofing. This utility model can be rinsed with water, and the overall structure is an integrated design, which is neat and beautiful, and can be adapted to various water dispenser shells. Attached Figure Description
[0018] Figure 1 This is a perspective view of the present invention;
[0019] Figure 2 This is a perspective view of the present invention from another angle;
[0020] Figure 3 This is a cross-sectional view of the present invention;
[0021] Figure 4 This is an exploded perspective view of the present invention;
[0022] Figure 5 This is a perspective view of the main housing in this utility model;
[0023] Figure 6 This is an assembly drawing of the water pump assembly and the sand-proof cover in this utility model;
[0024] Figure 7 This is a perspective view of the utility model after the sand-proof cover has been removed;
[0025] Figure 8 This is an assembly drawing of the face cover and the main control circuit board in this utility model;
[0026] Figure 9 This is a perspective view of the bottom shell of this utility model;
[0027] Figure 10 This is a perspective view of the bottom shell of this utility model from another angle. Detailed Implementation
[0028] The present invention will be further described below with reference to specific embodiments and accompanying drawings.
[0029] See Figure 1-10 As shown, a novel wireless intelligent induction water pump includes a housing 1, a water pump assembly 200, a main control circuit board 3, and a rechargeable battery 4.
[0030] The water pump assembly 200 is installed at the lower end of the housing 1 and sealed, effectively achieving waterproofing. The main control circuit board 3 and the rechargeable battery 4 are both located inside the housing 1, separated from the water pump assembly 200, effectively preventing water or moisture from entering the inner cavity of the housing 1 and affecting the main control circuit board 3 and the rechargeable battery 4. The water pump assembly 200 and the rechargeable battery 4 are electrically connected to the main control circuit board 3. The main control circuit board 3 is equipped with a sensor 31 (in this embodiment, an infrared sensor) for sensing the approach of a pet. The sensor 31 is exposed on the surface of the housing 1 and forms a sealed assembly with the surface of the housing 1, effectively achieving waterproofing. During operation, the sensor 31 detects whether a pet is approaching. If a pet is detected, a signal is transmitted to the main control circuit board 3, which then controls the water pump assembly 200 to operate, achieving automatic water supply / filling, making it extremely convenient to use.
[0031] This invention can realize infrared sensing mode, timed mode, and continuous water supply mode. The infrared sensing mode is implemented by sensor 31, that is, water supply / addition is only realized when a pet is detected approaching. The timed mode is implemented by the main control circuit board 3 controlling the water pump assembly 200, for example, controlling the water pump assembly 200 to work every hour to supply water. The continuous water supply mode is implemented by the main control circuit board 3 controlling the water pump assembly 200 to work continuously to supply water.
[0032] The following provides a detailed description of the specific structure of the water pump assembly 200.
[0033] The water pump assembly 200 includes: a lower housing 2, which has a mutually separated mounting cavity 201 and a water supply channel 202, and the lower part of the lower housing 2 is also provided with a pumping chamber 203 communicating with the water supply channel 202; the upper end of the lower housing 2 is sealed to the lower end of the outer housing 1, and the lower end of the lower housing 2 is provided with a water inlet 204 communicating with the pumping chamber 203; a motor 5 (an electrical device), which is installed in the mounting cavity 201, and the impeller 51 connected to the rotating shaft of the motor 5 is placed in the pumping chamber 203 for pumping water in the pumping chamber 203 into the water supply channel 202. In other words, the lower housing 2 uses the mutually separated mounting cavity 201 and water supply channel 202 to realize the installation of electrical devices and water supply, which do not interfere with each other, ensure excellent waterproof performance of electrical devices, improve service life, and make use safer and more reliable. In this invention, the motor 5 is installed inside the mounting cavity 201 of the lower housing 2, which is completely isolated from water. Furthermore, the connecting wires do not need to be submerged in water; instead, they are placed within the mounting cavity 201 and the inner cavity of the outer housing 1, thus truly achieving water-electricity separation and wireless power supply.
[0034] The lower housing 2 includes a bottom housing 21 and a water leaf cover 22.
[0035] The bottom shell 21 is fixed to the lower end of the outer shell 1 by ultrasonic welding to form a sealed assembly, which not only has stable assembly, but also has an ideal waterproof effect. The bottom shell 21 has the mounting cavity 201 and the water supply channel 202, and the lower part of the bottom shell 21 is also provided with a pump water tank 211 that connects to the water supply channel 202.
[0036] The water leaf cover 22 is fixed to the lower end of the bottom shell 21 and covers the pump water tank 211 to form the pump water chamber 203. An inclined drainage channel 207 connecting the pump water chamber 203 and the water supply channel 202 is also formed between the water leaf cover 22 and the bottom shell 21. The water leaf cover 22 is provided with the water inlet hole 204.
[0037] When the water pump assembly 200 is working, the impeller 51 is driven to rotate by the motor 5. When the impeller 51 rotates, it pumps the water in the pump chamber 203 into the diversion channel 207 and transmits it to the water supply channel 202. After passing through the water outlet channel 102 set in the housing 1, the water flows out from the water outlet pipe 101 on the upper side of the housing 1 to realize automatic water outlet / water supply.
[0038] The mounting cavity 201 of the lower housing 2 also houses a circuit board 23 (an electrical component). This circuit board 23 is electrically connected to the main control circuit board 3 and the motor 5, with all electrical connections achieved via wires. A germicidal lamp 24 is also installed on the side of the lower housing 2, forming a sealed assembly with the lower housing 2. The germicidal lamp 24 is exposed on the side of the lower housing 2 and can be submerged in water (e.g., in a water tank / basin) or exposed on the water surface. The light emitted by the germicidal lamp 24 can kill some bacteria in the water, further improving water quality. In this embodiment, the germicidal lamp 24 is an ultraviolet germicidal lamp, which achieves the effect of ultraviolet sterilization.
[0039] The germicidal lamp 24 has the following structure: it includes a mounting cylinder 241, a germicidal lamp bead 242 mounted at the rear end of the mounting cylinder 241, and a lens 243 sealed at the front end of the mounting cylinder 241. The germicidal lamp bead is electrically connected to the circuit board 23. During operation, the germicidal lamp bead 242 emits germicidal light, which passes through the lens 243 and irradiates the water to achieve the sterilization function. The germicidal lamp bead 242 is an ultraviolet lamp bead. The mounting cylinder 241 forms a sealed assembly with the first mounting hole 208 on the side of the lower housing 2, achieving a waterproof effect. The lens 243 is exposed on the side of the lower housing 2. The mounting cylinder 241 and the first mounting hole 208 of the lower housing 2 are sealed and fixed with waterproof adhesive, which improves the stability of the assembly structure and enhances the waterproof performance. An annular groove is also provided on the outside of the mounting cylinder 241, and waterproof adhesive is filled into the annular groove, further improving the structural stability and waterproof effect. The mounting cylinder 241 has an inlay groove at its front end, and the outer edge of the lens 243 is inlaid and fixed in the inlay groove and sealed with glue.
[0040] A water outlet pipe 101 is provided on one side of the upper end of the outer casing 1, and a water outlet channel 102 is provided on the side of the outer casing 1, which is connected to the water supply channel 202 of the water pump assembly 200. A second mounting hole 103 is provided at the upper end of the outer casing 1, and the sensor 31 is embedded in the second mounting hole 103 and sealed and fixed with waterproof glue, thus forming an effective waterproof effect. The sensor 31 is located above the water outlet pipe 101. The water outlet pipe 101 can be connected to a water pipe to guide water to the required location (e.g., a pet water bowl).
[0041] The outer casing 1 includes a main casing 11 and a face cover 12 that is sealed and installed on the upper end of the main casing 11 by a sealing ring. The main control circuit board 3 is fixed to the lower end of the face cover 12, and the face cover 12 is provided with a plurality of indicator light holes 121 and a touch area 122 located next to the indicator light holes 121. The indicator lights provided on the main control circuit board 3 are exposed in the indicator light holes 121, and the induction coil 32 provided on the main control circuit board 3 is correspondingly assembled with the touch area 122.
[0042] The main control circuit board 3 is provided with a charging interface 33, which is exposed in the window 110 on the outside of the main housing 11. A waterproof plug 13 is also connected to the outside of the main housing 11. The waterproof plug 13 is inserted into both the window 110 and the charging interface 33, and forms a sealed contact with both the window 110 and the charging interface 33, which can achieve an excellent waterproof effect.
[0043] The lower end of the lower housing 2 is also covered with a sand-proof cover 6, and the lower periphery of the sand-proof cover 6 is provided with a plurality of water inlet holes 61. In use, the sand-proof cover 6 stands upright in the water tank / basin. During operation, the water pump assembly 200 draws water from the water tank / basin through the water inlet holes 61, making the water intake method bottom-intake, thereby achieving an ultra-low water level pumping effect, making it more convenient to use. The water inlet holes 61 of the sand-proof cover 6 not only realize the water intake function, but also prevent foreign objects such as sand and gravel from entering, avoiding damage to the water pump assembly 200.
[0044] The water inlet pore 61 is L-shaped and extends to the ground and outer side of the sand barrier cover 6.
[0045] In addition, to improve the filtration effect, the following design was made: a filter sponge 25 is also provided inside the sand-proof cover 6. The filter sponge 25 blocks all the water inlet pores 61. The filter sponge 25 can filter out small objects and improve the quality of the incoming water.
[0046] The filter sponge 25 is square in shape, with a through opening 251 in the middle that runs through the upper and lower ends. The through opening 251 is located at the lower end of the water inlet 204 and is connected to it. The sand-proof cover 6 has a limiting piece 62 formed inside. The limiting piece 62 abuts against the inner side of the through opening 251 in the filter sponge 25, thereby ensuring that the filter sponge 25 is stably installed inside the sand-proof cover 6.
[0047] The lower housing 2 has a stepped groove 205 at its lower end, and a strip-shaped slot 206 is provided within the stepped groove 205. A strip-shaped retaining strip 63 is provided on the inner wall of the upper end of the sand-separating cover 6. The strip-shaped retaining strip 63 is engaged and fixed with the strip-shaped slot 206, allowing the sand-separating cover 6 to be detachably installed at the lower end of the lower housing 2. This means that after a period of use, the quality of the incoming water can be further improved by replacing the filter sponge 25. Furthermore, the assembly structure of the sand-separating cover 6 and the lower housing 2 is stable and easy to assemble and disassemble. At this time, the lower end of the lower housing 2 also presses against the outer edge of the upper end of the filter sponge 25, further improving the stability of the filter sponge 25 assembly structure.
[0048] In summary, this utility model uses a rechargeable battery 4 for power supply, eliminating the need for external guides for power connection. Simultaneously, the lower housing 2 of the water pump assembly 200 utilizes a mutually separated mounting cavity 201 and water supply channel 202 to install electrical components and supply water, ensuring no interference between them and guaranteeing excellent waterproof performance of the electrical components, extending their service life, and making them safer and more reliable to use. Specifically, the motor 5 in this utility model is installed within the mounting cavity 201 of the lower housing 2, completely isolated from water, and the connecting wires do not need to be submerged in water but are placed within the mounting cavity 201 and the inner cavity of the outer housing 1, truly achieving water-electricity separation and wireless power supply. Furthermore, the sensor 31 is exposed on the surface of the outer housing 1 and forms a sealed assembly with the surface of the outer housing 1, effectively achieving waterproofing. During operation, the sensor 31 detects whether a pet is approaching. If a pet is detected, a signal is transmitted to the main control circuit board 3, which then controls the water pump assembly 200 to operate, achieving automatic water supply / filling, making it extremely convenient to use. The exposed components of this utility model are waterproofed by ultrasonic welding, sealing rings, or waterproof adhesive / glue, achieving overall waterproofing. This utility model can be rinsed with water, and the overall structure is an integrated design, which is neat and beautiful, and can be adapted to various water dispenser shells.
[0049] Of course, the above description is only a specific embodiment of the present utility model and is not intended to limit the scope of the present utility model. All equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model should be included in the scope of the claims of the present utility model.
Claims
1. A novel wireless intelligent induction water pump, characterized in that: It includes a housing (1), a water pump assembly (200) installed and sealed at the lower end of the housing (1), a main control circuit board (3) disposed inside the housing (1), and a rechargeable battery (4). The water pump assembly (200) and the rechargeable battery (4) are electrically connected to the main control circuit board (3). The main control circuit board (3) is provided with a sensor (31) for sensing the approach of a pet. The sensor (31) is exposed on the surface of the housing (1) and forms a sealed assembly with the surface of the housing (1). The water pump assembly (200) includes: The lower housing (2) has a mounting cavity (201) and a water supply channel (202) that are separated from each other, and the lower part of the lower housing (2) is also provided with a pump water chamber (203) that communicates with the water supply channel (202); the upper end of the lower housing (2) forms a sealed assembly with the lower end of the outer shell (1), and the lower end of the lower housing (2) is provided with a water inlet (204) that communicates with the pump water chamber (203). The motor (5) is installed in the mounting cavity (201). The impeller (51) connected to the rotating shaft of the motor (5) is placed in the water pumping cavity (203) to pump the water in the water pumping cavity (203) into the water supply channel (202).
2. The novel wireless intelligent induction water pump according to claim 1, characterized in that: The lower end of the lower shell (2) is also covered with a sand-proof cover (6), and the lower periphery of the sand-proof cover (6) is provided with a plurality of water inlet holes (61).
3. A novel wireless intelligent induction water pump according to claim 2, characterized in that: The sand-proof cover (6) is also provided with a filter sponge (25), which blocks all the water inlet holes (61). The filter sponge (25) is square-shaped and has a through-hole (251) in the middle that runs through the upper and lower ends. The through-hole (251) is located at the lower end of the water inlet hole (204) and is connected to it. The sand-proof cover (6) has a limiting piece (62) formed on the inner side. The limiting piece (62) abuts against the inner side of the through-hole (251) in the filter sponge (25).
4. A novel wireless intelligent induction water pump according to claim 3, characterized in that: The lower housing (2) is provided with a stepped groove (205) at its lower end, and a strip groove (206) is provided in the stepped groove (205). A strip strip (63) is provided on the inner wall of the upper end of the sand-proof cover (6). The strip strip (63) is fixed to the strip groove (206), so that the sand-proof cover (6) is installed at the lower end of the lower housing (2) in a detachable manner, and the lower end of the lower housing (2) also presses against the outer edge of the upper end of the filter sponge (25).
5. A novel wireless intelligent induction water pump according to any one of claims 1-4, characterized in that: The lower housing (2) includes: A bottom shell (21) is fixed to the lower end of the outer shell (1) by ultrasonic welding to form a sealed assembly. The bottom shell (21) has the mounting cavity (201) and the water supply channel (202), and a pump water tank (211) communicating with the water supply channel (202) is also provided at the lower part of the bottom shell (21). A water leaf cover (22) is fixed to the lower end of the bottom shell (21) and covers the pump water tank (211) to form the pump water chamber (203). An inclined drainage channel (207) connecting the pump water chamber (203) and the water supply channel (202) is also formed between the water leaf cover (22) and the bottom shell (21). The water leaf cover (22) is provided with the water inlet hole (204).
6. A novel wireless intelligent induction water pump according to any one of claims 1-4, characterized in that: The mounting cavity (201) of the lower housing (2) is also provided with a circuit board (23), which is electrically connected to the main control circuit board (3) and the motor (5). The side of the lower housing (2) is also provided with a germicidal lamp (24), which forms a sealed assembly with the lower housing (2).
7. A novel wireless intelligent induction water pump according to claim 6, characterized in that: The germicidal lamp (24) includes a mounting cylinder (241), a germicidal lamp bead (242) mounted at the rear end of the mounting cylinder (241), and a lens (243) sealed and mounted at the front end of the mounting cylinder (241). The germicidal lamp bead is electrically connected to the circuit board (23), and the mounting cylinder (241) forms a sealed assembly with the first mounting hole (208) on the side of the lower housing (2), and the lens (243) is exposed on the side of the lower housing (2).
8. A novel wireless intelligent induction water pump according to any one of claims 1-4, characterized in that: The outer casing (1) has a water outlet pipe (101) on one side of its upper end, and a water outlet channel (102) is provided on the side of the outer casing (1) to pass through the water outlet pipe (101). The water outlet channel (102) is connected to the water supply channel (202) of the water pump assembly (200). The upper end of the outer casing (1) has a second mounting hole (103). The sensor (31) is embedded in the second mounting hole (103) and sealed and fixed with waterproof glue. The sensor (31) is located above the water outlet pipe (101).
9. A novel wireless intelligent induction water pump according to claim 8, characterized in that: The outer casing (1) includes a main casing (11) and a face cover (12) that is sealed and installed on the upper end of the main casing (11) by a sealing ring. The main control circuit board (3) is fixed to the lower end of the face cover (12), and the face cover (12) is provided with several indicator light holes (121) and a touch area (122) located next to the indicator light holes (121). The indicator lights provided on the main control circuit board (3) are exposed in the indicator light holes (121), and the induction coil (32) provided on the main control circuit board (3) is correspondingly assembled with the touch area (122).
10. A novel wireless intelligent induction water pump according to claim 9, characterized in that: The main control circuit board (3) is provided with a charging interface (33), which is exposed in the window (110) provided on the outside of the main housing (11). A waterproof plug (13) is also connected to the outside of the main housing (11). The waterproof plug (13) is inserted into both the window (110) and the charging interface (33) and forms a sealed contact with both the window (110) and the charging interface (33).