Pet feeding and drinking all-in-one machine
By introducing suction cup structure and residual water treatment components into the pet feeding and drinking water all-in-one machine, the problem of drinking water being easily retained and not supported for wall hanging is solved, achieving safer, healthier and flexible placement of drinking water.
Patent Information
- Application Number
- CN202510222750.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2025-05-30
AI Technical Summary
The existing pet feeding and drinking water all-in-one machine has the potential to retain bacteria and breed water, and does not support wall mount use, which is easy to conflict with the sweeping robot.
A pet feeding and drinking water integrated machine is designed including a suction cup structure, a water dispenser body and a feeder body. The suction cup structure is allowed to be suspended and used. The water dispenser body is equipped with residual water treatment components and a circulating filtered water assembly to ensure the safe and healthy drinking water.
It achieves a safer and healthier drinking water, and supports suspension use, which is not easy to conflict with sweeping robots and is flexible to place.
Smart Images

Figure CN120052276A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of pet appliances, and particularly relates to a pet feeding and drinking integrated machine. Background Art
[0002] Since it is necessary to feed and water pets, pet feeders and water dispensers are required. For example, patent application No. 202311065819.1 discloses a pet feeding and drinking integrated machine, including an integrated machine body. The integrated machine body includes a feeding mechanism, a drinking mechanism, a housing and a base. The housing is connected to the base. One side inside the housing is provided with a feeding mechanism, and a material dredging structure for stirring and preventing material blockage is arranged inside the feeding mechanism. The other side inside the housing is provided with a drinking mechanism. One side of the base is provided with a blanking groove, and the other side of the base is provided with a drinking groove. A partition is arranged between the blanking groove and the drinking groove. Second push buttons and first push buttons for controlling the feeding of the feeding mechanism and the drinking of the drinking mechanism are respectively arranged on both sides of the housing. Although this pet feeding and drinking integrated machine can artificially set the quantity of pet drinking water and food, there are still problems in its application. Pet drinking water is prone to residue, which is easy to breed bacteria and insects. If it is recycled, it is easy to cause pets to get sick. Moreover, the existing pet feeding and drinking integrated machines do not support wall mounting. When there is a floor cleaning robot cleaning the housework at home, the pet feeding and drinking integrated machine is prone to conflict with the floor cleaning robot. Summary of the Invention
[0003] In order to solve the deficiencies in the prior art, the present invention provides a pet feeding and drinking integrated machine that can be hung for use and has safer and healthier drinking water.
[0004] To solve the above technical problems, the present invention adopts the following technical solutions:
[0005] A pet feeding and drinking integrated machine, comprising:
[0006] A first base;
[0007] A second base, detachably connected to the first base, and at least one suction cup structure is respectively arranged on the first base and the second base;
[0008] A feeder main body, arranged on the first base and used for feeding pets;
[0009] And a water dispenser main body, arranged on the second base and used for pets to drink water, and the water dispenser main body is also used to clean the residual water of pet drinking water;
[0010] Among them, the suction cup structure includes a suction cup, a spring, a suction and release sliding member, a suction cup hand-tightening wrench, and a screw. The first side of the suction cup is the adsorption surface, and a suction cup pull rod is provided on the second side of the suction cup. The suction cup pull rod passes through the spring and the suction and release sliding member and is connected to the screw. At least one spherical chute is provided on the side wall of the suction and release sliding member, and at least one spherical column is provided on the inner wall of the suction cup hand-tightening wrench. The spherical column is adapted to the spherical chute and the spherical column is clamped in the spherical chute and moves along the spherical chute. The suction cup hand-tightening wrench is sleeved on the suction and release sliding member, and the suction cup hand-tightening wrench drives the displacement of the suction and release sliding member through the adapted spherical column and spherical chute and drives the suction cup to adsorb or loosen.
[0011] The water dispenser main body includes a water dispenser box body and a water drinking basin. The water dispenser box body and the water drinking basin are both arranged on the second base. A drinking water supply component, a circulating filtered water component, and a residual water treatment component are provided between the water dispenser box body, the water drinking basin, and the second base. The residual water treatment component is arranged in the circulating filtered water component and one end of the residual water treatment component penetrates through the water drinking basin. An overflow tank is provided in the water drinking basin, and the overflow tank is connected to the circulating filtered water component. The circulating filtered water component is connected to the drinking water supply component. A water outlet and a sensor are provided on the water dispenser box body, and the water outlet is connected to the drinking water supply component and is arranged facing the water drinking basin.
[0012] Preferably, a first battery and a first PCB board are provided in the water dispenser main body. A first charging port and a first switch button are provided on the water dispenser box body, and a waterproof cover is provided on the first charging port. The first battery, the sensor, the first charging port, the first switch button, the drinking water supply component, and the residual water treatment component are all connected to the first PCB board.
[0013] Preferably, the drinking water supply component includes a clean water tank, a water channel, an electric water valve, and a submersible water pump. The clean water tank is connected to the circulating filtered water component and the submersible water pump through the water channel. The electric water valve is arranged on the water channel, and the submersible water pump is arranged in the water dispenser box body and is connected to the water outlet;
[0014] The circulating filtered water component includes a circulating water tank and a filtering tank. A filtering structure is detachably arranged in the filtering tank. The filtering tank is connected to the circulating water tank. The circulating water tank is connected to the water channel. The filtering tank is connected to the overflow tank.
[0015] Preferably, the residual water treatment component includes a water absorption cotton strip and an ultrasonic atomization structure. The water absorption cotton strip and the ultrasonic atomization structure are both arranged in the circulating water tank. One end of the ultrasonic atomization structure penetrates through the water drinking basin, and the ultrasonic atomization structure is connected to the water absorption cotton strip.
[0016] Preferably, a water volume observation window is provided on the water dispenser box body.
[0017] Preferably, the feeder body includes a feeding box body and a feeding basin. The feeding box body and the feeding basin are both arranged on the first base. A feeding component is provided between the feeding box body, the feeding basin and the first base. The feeding component includes a grain storage bin, a sub-grain bin, a grain-dividing rotating disk, a motor and a grain outlet. The grain outlet is arranged on the feeding box body and faces the feeding basin. The grain storage bin is connected to the sub-grain bin. The grain-dividing rotating disk is respectively connected to the sub-grain bin and the grain outlet. The motor is connected to the grain-dividing rotating disk and the motor drives the grain-dividing rotating disk to rotate and discharge grains.
[0018] Preferably, the feeder body further includes a second PCB board, a second battery, a second charging port and a second button. The second PCB board and the second battery are arranged in the feeding box body. The second charging port and the second button are arranged on the feeding box body. The second battery, the second charging port and the second button are all connected to the second PCB board.
[0019] Preferably, a pet food observation window is provided on the feeding box body.
[0020] Adopting the above technical solutions, the present invention has the following beneficial effects:
[0021] (1) The present invention is provided with a suction cup structure. When in use, it can be hung, and at this time, it does not conflict with the household floor sweeping robot, does not affect the household floor sweeping robot to clean the hygiene, does not damage the wall floor, and there is no sanitary dead angle when the household robot cleans, and it will not be knocked over by pets when hung;
[0022] (2) The present invention is provided with a first battery and a second battery, which can be charged through the first charging port and the second charging port. After charging, no wires are needed, avoiding the phenomenon that the pet damages the wires and causes the feeder to be unable to be used, and there will be no phenomenon that it cannot be used due to a power outage. Moreover, due to the arrangement of the first battery, the second battery and the suction cup structure, the present invention can be placed flexibly;
[0023] (3) The present invention is provided with a residual water treatment component and a circulating filtered water component. The circulating filtered water component can filter and reuse water to a certain extent. The residual water treatment component specifically adopts a water-absorbing cotton strip and an ultrasonic atomization structure. The ultrasonic atomization structure can ultrasonically atomize water, and can regularly clean the residual water or the filtered and recycled water, reducing the pet's intake of polluted recycled water and making the drinking water safer and healthier;
[0024] In summary, the present invention has the advantages of being able to be hung and having safer and healthier drinking water. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is a schematic structural diagram of the present invention;
[0026] Figure 2 is a schematic structural diagram of the first base and the second base of the present invention in another direction;
[0027] Figure 3 is a schematic structural view of the first base of the present invention in another direction;
[0028] Figure 4 is a schematic structural view of the first base of the present invention in another direction;
[0029] Figure 5 is Figure 4 a sectional view taken along the A-A direction in;
[0030] Figure 6 is a schematic structural view of the suction and release sliding member of the present invention in one direction;
[0031] Figure 7 is a schematic structural view of the suction and release sliding member of the present invention in another direction;
[0032] Figure 8 is a schematic structural view of the suction cup hand wrench of the present invention in one direction;
[0033] Figure 9 is a schematic structural view of the suction cup hand wrench of the present invention in another direction;
[0034] Figure 10 is a schematic structural view of the water dispenser main body of the present invention when cooperating with the first base;
[0035] Figure 11 is Figure 10 a sectional view of;
[0036] Figure 12 is a schematic structural view of the feeder main body of the present invention when cooperating with the second base;
[0037] Figure 13 is Figure 12 a sectional view of. Detailed implementation manners
[0038] Next, the technical solutions of the present invention will be clearly and completely described in conjunction with the accompanying drawings. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention.
[0039] Generally, the components of the embodiments of the present invention described and shown in the drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present invention provided in the drawings is not intended to limit the scope of the claimed invention, but merely represents selected embodiments of the present invention.
[0040] All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts fall within the scope of protection of the present invention.
[0041] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention. In addition, the terms "first", "second", "third" are only used for descriptive purposes and should not be construed as indicating or implying relative importance.
[0042] In the description of the present invention, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection", "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0043] Embodiment 1
[0044] In this embodiment, a pet feeding and drinking integrated machine is proposed. It can simultaneously have the functions of feeding and drinking, can filter and utilize water, can regularly clean the residual water, and can also be hung for use. It has various functions and a more reasonable design.
[0045] In the prior art, there are already devices such as pet feeders and pet water dispensers, but they have problems with power cords, floor placement, and pet drinking hygiene. Specifically, these existing devices usually need to be continuously installed with power cords, and the power cords are easily dragged and bitten by pets. Moreover, the placement position is often restricted by the socket and cannot be placed arbitrarily. When there is no socket at the placement position, a power strip needs to be used, and the power cords are messy. In addition, both the existing feeders and water dispensers are placed on the floor. When pets eat and drink, the spilled food and water will dirty the floor, and the footprints left by pets stepping on it, etc. Each time cleaning requires moving the product, which is very inconvenient. In some families, when using a floor cleaning robot, it is not easy to clean the sanitary dead corners formed by the placement of the product. Even more, the circulating water of the existing pet water dispensers is easily contaminated and deteriorated by pet hair and food residues, breeding bacteria and water insects, and pets are prone to getting sick when drinking. This application can solve these problems.
[0046] Such as Figure 1-13As shown in the figure, in an embodiment of the present invention, the integrated pet feeder and water dispenser of the present invention includes a first base 1, a second base 2, a feeder main body, and a water dispenser main body. Among them, the second base 2 is detachably connected to the first base 1. At least one sucker structure is provided on the first base 1 and the second base 2 respectively. The feeder main body is arranged on the first base 1 and is used for feeding pets. The water dispenser main body is arranged on the second base 2 and is used for pets to drink water. The water dispenser main body is also used to clean the residual water of the pet's drinking water. It can be understood that generally two sucker structures are provided on both the first base 1 and the second base 2. Taking the first base 1 as an example, one sucker structure is located at the rear side of the first base 1, and the other is located at the bottom side of the first base 1. In this way, when the first base 1 is specifically used, it can be adsorbed on the wall and the ground simultaneously through the two chassis structures. When it needs to be hung for use, it can be hung on the wall only through one sucker structure. Similarly, on the second base 2, one sucker structure is located at the rear side of the second base 2, and the other is located at the bottom side of the second base 2. In this way, when the second base 2 is specifically used, it can be adsorbed on the wall and the ground simultaneously through the two chassis structures. When it needs to be hung for use, it can be hung on the wall only through one sucker structure. The second base 2 and the first base 1 are detachably connected, and they can be used together or separately. The feeder main body and the water dispenser main body of the present invention can also be detachably connected, and they can also be used integrally or separately;
[0047] Specifically refer to Figures 2-9, the suction cup structure of the present invention includes a suction cup 3, a spring 4, a suction and release sliding member 5, a suction cup hand-tightening wrench 6, and a screw 7. The first side of the suction cup 3 is the adsorption surface. A suction cup pull rod 8 is provided on the second side of the suction cup 3. The suction cup pull rod 8 passes through the spring 4 (and also passes through the side wall of the first base 1 or the second base 2 at this time) and the suction and release sliding member 5 and is connected to the screw 7. One end of the suction cup pull rod 8 is connected to the suction cup 3. The second end of the suction cup pull rod 8 has a structure similar to a rectangle. A suction cup pull rod limit hole 9 is provided on the suction and release sliding member 5. The second end of the suction cup pull rod 8 is inserted into the suction cup pull rod limit hole 9. After the screw 7 is locked onto the suction cup pull rod 8, the nut of the screw 7 can abut against the suction and release sliding member 5. At this time, the limitation of the suction cup pull rod 8 is completed. At least one spherical chute 10 is provided on the side wall of the suction and release sliding member 5. At least one spherical column 11 is provided on the inner wall of the suction cup hand-tightening wrench 6. The spherical column 11 is adapted to the spherical chute 10 and the spherical column 11 is clamped in the spherical chute 10 and moves along the spherical chute 10. The suction cup hand-tightening wrench 6 is sleeved on the suction and release sliding member 5. The suction cup hand-tightening wrench 6 drives the suction and release sliding member 5 to displace through the adapted spherical column 11 and spherical chute 10 and drives the suction cup 3 to adsorb or release. The spherical chute 10 is inclined on the suction and release sliding member 5. One end of the spherical chute 10 extends towards the edge of the side wall of the suction and release sliding member 5 to form a notch 12. The notch 12 is slightly larger than the diameter of the spherical column 11, so as to facilitate the insertion of the spherical column 11 into the notch 12 and then slide along the spherical chute 10. Two corresponding protruding parts 13 are provided on the suction cup hand-tightening wrench 6, so as to facilitate the turning of the suction cup hand-tightening wrench 6. The suction cup 3 is convenient for fixing the present invention on relatively flat and smooth structures such as ceramic tiles and glass. In specific use, the volume of the suction cup 3 can be as large as possible to increase the adsorption force. The suction cup 3 can also be used as an anti-collision pad to play a role in protecting the present invention. When the suction cup 3 is specifically adsorbed on the wall, by turning the suction cup hand-tightening wrench 6, the suction and release sliding member 5 can be driven to displace, and the suction cup 3 can be further squeezed to discharge the air in the suction cup 3 so that the suction cup 3 is tightly adsorbed. When it is necessary to release, the suction cup hand-tightening wrench 6 can be turned in the reverse direction to move the suction and release sliding member 5 in the reverse direction, so as to remove the suction cup 3 from the wall. Since the spherical column 11 and the spherical chute 10 are adapted, when the suction cup hand-tightening wrench 6 is turned in the reverse direction, the spherical column 11 can still be displaced in the reverse direction into the notch 12 at this time, and then the suction cup hand-tightening wrench 6 is continuously turned. At this time, the suction and release sliding member 5 can still follow the rotation of the suction cup hand-tightening wrench 6;
[0048] Specifically refer to Figure 10 and Figure 11, the water dispenser main body of the present invention includes a water dispenser box body 14 and a drinking basin 15. The water dispenser box body 14 and the drinking basin 15 are both arranged on the second base 2. A drinking water supply component, a circulating filtered water component, and a residual water treatment component are provided between the water dispenser box body 14, the drinking basin 15, and the second base 2. That is, the water dispenser box body 14, the drinking basin 15, and the second base 2 enclose an installation cavity, and the drinking water supply component, the circulating filtered water component, and the residual water treatment component are installed in this cavity. The residual water treatment component is arranged inside the circulating filtered water component and one end of the residual water treatment component penetrates through the drinking basin 15. An overflow tank 16 is provided in the drinking basin 15, and the overflow tank 16 is connected to the circulating filtered water component. The circulating filtered water component is connected to the drinking water supply component. An outlet 17 and a sensor 18 are provided on the water dispenser box body 14. The outlet 17 is connected to the drinking water supply component and is arranged facing the drinking basin 15. An inlet is provided on the water dispenser box body 14 for adding clean water. A water quantity observation window 19 is provided on the water dispenser box body 14, and the water quantity observation window 19 is convenient for observing the water quantity. Specifically, when in use, the drinking water supply component supplies water, that is, transports clean water to the outlet 17, and pets drink water through the outlet 17. When too much water flows out, it flows into the circulating filtered water component through the overflow tank 16 for filtration and then continues to be transported to the outlet 17 for pets to drink. The residual water component can be set to start within a specific time period to treat the residual water (that is, the water that enters the circulating filtered water component through the overflow tank 16) to avoid continuous circulation;
[0049] Specifically, a first battery 20 and a first PCB board 21 are provided inside the water dispenser main body. A first charging port and a first switch button 22 are provided on the water dispenser box body 14. A waterproof cover 23 is provided on the first charging port. The first battery 20, the sensor 18, the first charging port, the first switch button 22, the drinking water supply component, and the residual water treatment component are all connected to the first PCB board 21. The drinking water supply component includes a clean water tank 24, a water channel 25, an electric water valve 26, and a submersible water pump 27. The electric water valve 26 and the submersible water pump 27 are both connected to the first PCB board 21. The clean water tank 24 is connected to the circulating filtered water component and the submersible water pump 27 through the water channel 25. The electric water valve 26 is arranged on the water channel 25. The submersible water pump 27 is arranged inside the water dispenser box body 14 and is connected to the outlet 17. The circulating filtered water component includes a circulating water tank 28 and a filtering tank 29. A filtering structure is detachably provided inside the filtering tank 29. The filtering tank 29 is connected to the circulating water tank 28. The circulating water tank 28 is connected to the water channel 25. The filtering tank 29 is connected to the overflow tank 16. The residual water treatment component includes a water absorption cotton strip 30 and an ultrasonic atomization structure 31. The water absorption cotton strip 30 and the ultrasonic atomization structure 31 are both arranged inside the circulating water tank 28. One end of the ultrasonic atomization structure 31 penetrates through the drinking basin 15. The ultrasonic atomization structure 31 is connected to the water absorption cotton strip 30. The ultrasonic atomization structure 31 is connected to the first PCB board 21;
[0050] The above structure is the specific structure of the main body of the water dispenser. Its specific operation mode is powered by the first battery 20 and controlled by the first PCB board 21. When in use, first add clean water that pets can drink through the water inlet on the water dispenser box body 14. When a pet approaches the drinking bowl 15 and is sensed by the sensor 18, both the electric water valve 26 and the submersible pump 27 are activated. The clean water reaches the electric water valve 26 through the water channel 25. There is a sensor in the circulating water tank 28. When it detects that the water level in the circulating water tank 28 is insufficient, the electric water valve 26 remains open, and the clean water reaches the circulating water tank 28 from the water channel 25. The submersible pump 27 is arranged close to the circulating water tank 28, and the submersible pump 27 sends the water into the water outlet 17 until the sensor detects that the water level has reached the set position, then the electric water valve 26 closes, and the submersible pump 27 continues to work to supply water for the pet to drink. When there is too much water in the drinking bowl 15, it will enter the filter bin 29 through the overflow tank 16. The filter bin 29 can filter impurities such as pet hair, and then flow into the circulating water tank 28 for reuse. The filtering structure in the filter bin 29 is detachable and can be disassembled and cleaned regularly. The first switch button 22 is used to control the overall startup of the main body of the water dispenser of the present invention. The first charging port can charge the first battery 20. The ultrasonic atomization structure 31 is set to start regularly, such as it can be set to start once every 12 / 24 hours, and can atomize the residual water to discharge, reducing the growth of bacteria. It is supplied with water through the absorbent cotton strip 30 and then atomizes all the water in the circulating water tank 28 by ultrasonic waves and discharges it (at this time, the electric water valve 26 on the water channel 25 is closed and no longer intakes water). Then, the clean water tank 24 replenishes clean water to the circulating water tank 28 again. When atomizing the residual water by ultrasonic waves, the user of the present invention can use disinfectants such as alcohol for sterilization or cooperate with ultraviolet lamps for sterilization.
[0051] Please refer to Figure 12 and Figure 13, the feeder body of the present invention includes a feeding box 32 and a feeding basin 33. The feeding box 32 and the feeding basin 33 are both arranged on the first base 1. A pet food observation window 34 is provided on the feeding box 32 to facilitate observing the quantity of pet food. A feeding component is arranged between the feeding box 32, the feeding basin 33 and the first base 1. The feeding component includes a storage granary 35, a distribution granary 36, a distribution rotating disk 37, a motor 38 and a grain outlet 39. The grain outlet 39 is arranged on the feeding box 32 and is oriented towards the feeding basin 33. The storage granary 35 is connected to the distribution granary 36. The distribution rotating disk 37 is respectively connected to the distribution granary 36 and the grain outlet 39. The motor 38 is connected to the distribution rotating disk 37 and the motor 38 drives the distribution rotating disk 37 to rotate and discharge grains. The feeder body further includes a second PCB board 40, a second battery 41, a second charging port 42 and a second button 43. The second PCB board 40 and the second battery 41 are arranged inside the feeding box 32. The second charging port 42 and the second button 43 are arranged on the feeding box 32. The second battery 41, the second charging port 42 and the second button 43 are all connected to the second PCB board 40;
[0052] The overall operation process of the feeder body is that the second battery 41 powers the feeder body, and the second PCB board 40 controls the operation. The feeder body is set for timed and quantitative feeding. A pet food inlet is provided on the feeding box 32 for loading pet food. The pet food first reaches the storage granary 35 and then reaches the distribution granary 36. When the motor 38 starts, it can drive the distribution rotating disk 37 to rotate and distribute grains, thereby conveying the pet food to the grain outlet 39 and finally conveying it into the feeding basin 33. During this process, the opening and closing of the feeder body can be controlled through the second button 43, and the second battery 41 can also be charged through the second charging port 42.
[0053] The present invention is powered by a battery, cancels the power cord, and adopts a suction cup 3 structure for wall-mounted installation. For example, it can be installed 12 cm in suspension, which is convenient for cleaning and allows a floor sweeping robot to pass through. The residual pet drinking water is atomized using an ultrasonic atomization solution and is no longer recycled for a long time. The overall placement is flexible, and the pet drinking water is safer and healthier.
[0054] This embodiment does not impose any formal restrictions on the shape, material, structure, etc. of the present invention. Any simple modification, equivalent change and modification made to the above embodiments based on the technical essence of the present invention all belong to the protection scope of the technical solution of the present invention.
Claims
1. Pet feeding and drinking machine, characterized by: include: First base; A second base is detachably connected to the first base, and at least one suction cup structure is provided on each of the first base and the second base; A feeder body is disposed on the first base and is used for feeding pets; and a water dispenser body, which is arranged on the second base and is used for pets to drink water, and is also used for cleaning residual water of pets; Among them, the suction cup structure includes a suction cup, a spring, a suction and release sliding part, a suction cup hand wrench and a screw. The first side of the suction cup is an adsorption surface, and the second side of the suction cup is provided with a suction cup pull rod, which passes through the spring and the suction and release sliding part and is connected to the screw. At least one spherical groove is provided on the side wall of the suction and release sliding part, and at least one spherical column is provided on the inner wall of the suction cup hand wrench. The spherical column is adapted to the spherical groove and the spherical column is clamped in the spherical groove and moves along the spherical groove. The suction cup hand wrench is provided on the suction and release sliding part, and the suction cup hand wrench drives the suction and release sliding part to move through the adapted spherical column and the spherical groove and drives the suction cup to adsorb or release.
2. The pet feeding and drinking machine according to claim 1, characterized in that: The water dispenser main body includes a water dispenser body and a drinking water basin, and the water dispenser body and the drinking water basin are both arranged on the second base. A drinking water supply component, a circulating filtered water component and a residual water treatment component are arranged between the water dispenser body, the drinking water basin and the second base. The residual water treatment component is arranged in the circulating filtered water component and one end of the residual water treatment component passes through the drinking water basin. An overflow trough is arranged in the drinking water basin, and the overflow trough is connected to the circulating filtered water component. The circulating filtered water component is connected to the drinking water supply component. A water outlet and a sensor are arranged on the water dispenser body, and the water outlet is connected to the drinking water supply component, and the water outlet is arranged toward the drinking water basin.
3. The pet feeding and drinking machine according to claim 2, characterized in that: A first battery and a first PCB board are arranged in the water dispenser body, a first charging port and a first switch button are arranged on the water dispenser case, a waterproof cover is arranged on the first charging port, and the first battery, the sensor, the first charging port, the first switch button, the drinking water supply component and the residual water treatment component are all connected to the first PCB board.
4. The pet feeding and drinking machine according to claim 3, characterized in that: The drinking water supply assembly includes a clean water tank, a waterway, an electric water valve and a submersible water pump. The clean water tank is connected to the circulating filtered water assembly and the submersible water pump through the waterway. The electric water valve is arranged on the waterway. The submersible water pump is arranged in the drinking machine housing and connected to the water outlet. The circulating filtered water assembly comprises a circulating water tank and a filter tank, wherein a detachable filter structure is provided in the filter tank, the filter tank is connected to the circulating water tank, the circulating water tank is connected to the waterway, and the filter tank is connected to the overflow tank.
5. The pet feeding and drinking machine according to claim 4, characterized in that: The residual water treatment component includes a water-absorbing cotton strip and an ultrasonic atomization structure, both of which are arranged in a circulating water tank, one end of the ultrasonic atomization structure passes through a drinking basin, and the ultrasonic atomization structure is connected to the water-absorbing cotton strip.
6. The pet feeding and drinking machine according to claim 2, characterized in that: A water volume observation window is arranged on the water dispenser housing.
7. The pet feeding and drinking machine according to claim 2, characterized in that: The feeder main body includes a feeding box and a feeding bowl, which are both arranged on a first base, and a feeding assembly is arranged between the feeding box, the feeding bowl and the first base, and the feeding assembly includes a grain storage bin, a grain distribution bin, a grain distribution rotating disk, a motor and a grain outlet, and the grain outlet is arranged on the feeding box and facing the grain feeding bowl, the grain storage bin is connected to the grain distribution bin, the grain distribution rotating disk is respectively connected to the grain distribution bin and the grain outlet, and the motor is connected to the grain distribution rotating disk, and the motor drives the grain distribution rotating disk to rotate and discharge grain.
8. The pet feeding and drinking machine according to claim 7, characterized in that: The feeder body also includes a second PCB board, a second battery, a second charging port and a second button. The second PCB board and the second battery are arranged in the feeding box body, the second charging port and the second button are arranged on the feeding box body, and the second battery, the second charging port and the second button are all connected to the second PCB board.
9. The pet feeding and drinking machine according to claim 7, characterized in that: The feeding box body is provided with a pet food observation window.
Citation Information
Patent Citations
Pet feeding and drinking all-in-one machine
CN117016413A