Intelligent toilet

By arranging water storage components around the toilet body and leaving space to accommodate the water storage unit, the problem of limited water storage capacity in a small space for the water tank and cleaning device is solved, thus achieving efficient water use and energy-saving cleaning in smart toilets.

CN117005503BActive Publication Date: 2026-05-01XIAMEN JIAYU INTELLIGENT SANITARY WARE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
XIAMEN JIAYU INTELLIGENT SANITARY WARE CO LTD
Filing Date
2023-08-22
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

When existing smart toilets are installed in compact spaces, the water storage capacity of the tank and the washing device is limited, making them difficult to adapt to small installation environments.

Method used

The water storage device is installed around the inner wall of the toilet body, without being flush with the wall, leaving space to accommodate the water storage part of the smart device, and the water is discharged together with the sewage device, making reasonable use of the internal space of the toilet.

Benefits of technology

It expands the water storage space, ensures the stability and independence of water use, realizes intelligent cleaning function, and saves installation space and energy consumption.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN117005503B_ABST
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Abstract

The application relates to the field of bathroom equipment, and provides an intelligent closestool, which comprises a cover body, a closestool body, a rear box, a sewage discharging piece, a water storage piece and an intelligent device; the closestool body is connected to a wall surface; one end of the rear box is connected to the closestool body, and the other end is connected to the wall surface; the cover body is movably connected to the rear box and covers the closestool body; the sewage discharging piece is communicated with the closestool body; the water storage piece is installed around the closestool body along the vertical direction of the closestool body, is located at one end of the closestool body away from the rear box, and is communicated with the closestool body to provide flushing water for the closestool body; the water storage piece is not close to the wall surface, so that a spacing space is formed between the rear box and the water storage piece; and the intelligent device is installed in the rear box. The application has the effects of reducing the required installation area and separating water to stabilize the water consumption of each part.
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Description

A smart toilet Technical Field

[0001] This application relates to the field of bathroom equipment, and in particular to a smart toilet. Background Technology

[0002] A toilet, also known as a commode, is a sanitary appliance belonging to the field of building water supply and drainage materials. It is used to store and discharge the excrement of the user's body. Smart toilets are a product that has evolved from ordinary toilets with the advancement of technology.

[0003] Toilets require a water tank, which stores water for flushing. Existing water tanks are mainly located on the side of the toilet closest to the wall. In addition, smart toilets will also be equipped with a washing device for cleaning the user's genitals, and the water used for the washing device is independent of the water tank.

[0004] If a water tank and pump structure is adopted, and some water tanks are installed on the side of the toilet close to the wall, the smart toilet will also have a cleaning device, which will result in the water tank and cleaning device being installed in a compact manner. The compact installation in a limited space will make it unsuitable for the water tank volume and the cleaning device to be large, and the water storage capacity of the water tank and the cleaning device will be limited. Using a large volume water tank and cleaning device is also difficult to apply to installation environments with small usage areas. Summary of the Invention

[0005] To address the aforementioned issues, this application provides a smart toilet.

[0006] The smart toilet provided in this application adopts the following technical solution:

[0007] A smart toilet includes a lid, a toilet body, a rear compartment, a drain valve, a water storage compartment, and a smart device. The toilet body is connected to a wall. One end of the rear compartment is connected to the toilet body, and the other end is connected to the wall. The lid is movably connected to the rear compartment and covers the toilet body. The drain valve communicates with the toilet body. The water storage compartment is installed vertically around the toilet body, located at the end of the toilet body furthest from the rear compartment, and communicates with the toilet body to provide flushing water. The water storage compartment is not close to the wall, creating a space between the rear compartment and the water storage compartment. The smart device is installed inside the rear compartment and includes a water reservoir located within the space. Water used by the water storage compartment and the water reservoir is discharged through the drain valve.

[0008] By adopting the above technical solution, the water storage component is located inside the toilet body and is installed around the inner wall of the toilet body. It is not attached to the wall and does not occupy external installation space. It is located inside the toilet body and there is a space between it and the back box. The space can be used to store the water storage part of the smart device, thereby expanding the water storage space of the water storage part and ensuring the stability of water use. The water storage component and the water storage component are set separately and do not affect each other. The internal space of the toilet body is rationally utilized to reduce the overall space occupied by the toilet. After use, the water used by both can be discharged together through the sewage discharge component.

[0009] Optionally, the water storage component includes a water storage part, a connecting part, and a water delivery part; the water storage part is disposed around the inner wall of the toilet body and is connected to the inner wall surface of the toilet body at the end away from the rear compartment through the connecting part; the water delivery part is installed at the end of the water storage part away from the rear compartment and communicates with the water storage part.

[0010] By adopting the above technical solution, the water storage part can be detachably connected to the toilet body through the connecting part, which is convenient for replacement when the water storage part is damaged, and also convenient for separate transportation before installation, reducing the weight during overall handling and making transportation more convenient. The water supply part can deliver the flushing water in the water storage part to the toilet body to flush and excrete waste, providing stable water pressure.

[0011] Optionally, the water storage component further includes a water-saving section and an adjustment section; the water-saving section is located inside the water storage section; the adjustment section is installed in the water-saving section and extends outward through the toilet body.

[0012] By adopting the above technical solution, the size of the water-saving part can be adjusted by using the adjustment unit. Different sizes of the water-saving part allow the water storage space inside the water storage part to be adjusted, thereby adjusting the amount of water used for a single flush.

[0013] Optionally, the intelligent device further includes an installation section, a pumping section, a control panel, a heating section, and a water outlet section; the water storage section is installed on the installation section; the pumping section is installed on the outer side wall of the water storage section and communicates with the water storage section; the control panel is installed on the installation section; the heating section is installed on the installation section and spaced apart from the control panel; the water outlet section is connected to the pumping section and also connected to the heating section.

[0014] By adopting the above technical solution, when the smart device is needed, the smart device is turned on, the water pumping unit draws out the cleaning water in the water storage unit and transports it through the water outlet unit. During the transportation process, the water in the water outlet pipe is heated by the heating unit to turn the cleaning water into warm water, and the warm water is moved into the toilet body to rinse the area around the user's anus, so as to achieve the effect of intelligent use.

[0015] Optionally, the water outlet is connected to the heating unit after passing through the control panel.

[0016] By adopting the above technical solution, when the water outlet is conveying cleaning water, the heat generated by the control panel is used to preheat the cleaning water before it is conveyed to the heating section for heating. This can both cool the control panel and preheat the cleaning water, thereby reducing the energy consumption of the heating section and saving electricity.

[0017] Optionally, the toilet body is further provided with a transition piece; the transition piece is installed at one end of the water storage piece near the rear compartment, and the transition piece has an overflow outlet; the transition piece is connected to the toilet body through the overflow outlet; the water storage piece is connected to the transition piece; the rear compartment is further provided with a water inlet, the water inlet is connected to a water supply pipe, and the water inlet is connected to the transition piece.

[0018] By adopting the above technical solution, the transition piece can provide additional water storage function, which can prevent excess rinsing water from overflowing and being wasted after the water storage piece is full, and at the same time provide the transition piece with the function of supplementing rinsing water.

[0019] Optionally, the water storage section is connected to the transition member.

[0020] By adopting the above technical solution, after the water storage section is connected to the transition piece, the intelligent device can use the transition piece to prevent excessive water supply and overflow when using water independently through the water storage section.

[0021] Optionally, the rear box is further provided with a detection unit; the detection unit is provided with a detection end, and the detection end faces the transition member.

[0022] By adopting the above technical solution, the testing department can provide water level detection to prevent excessive water level in the transition component from causing flushing water to overflow and damage the intelligent equipment.

[0023] Optionally, the rear box is further provided with a splash guard; one end of the splash guard is connected to the rear box, and the other end extends into the transition member, and the detection part is located inside the splash guard near one end of the rear box.

[0024] By adopting the above technical solution, the detection unit is wrapped with a splash-proof part, which separates the detection unit from the transition part, thus reducing the occurrence of false alarms caused by the detection unit being splashed by rinsing water.

[0025] Optionally, the toilet body is provided with a cable outlet and a drain hole.

[0026] By adopting the above technical solution, the power cord of the smart device is managed and routed through the outlet hole. When the sewage or water storage parts inside the toilet break and cause water leakage into the toilet body, the water can be drained through the drain hole.

[0027] In summary, this application includes at least one of the following beneficial technical effects:

[0028] 1. The water storage component is located inside the toilet body and is installed around the inner wall of the toilet body. It is not flush with the wall and does not occupy external installation space. It is located inside the toilet body and there is a space between it and the back box. The space can be used to store the water storage unit of the smart device, thereby expanding the water storage space of the water storage unit and ensuring the stability of water use. It is separated from the water storage component and the water storage component. The two do not affect each other. It makes reasonable use of the internal space of the toilet body to reduce the overall space occupied by the toilet. After use, the water used by both can be discharged together through the sewage discharge component.

[0029] 2. When the smart device is needed, turn it on. The pump will draw out the cleaning water from the water storage section and deliver it through the water outlet section. During the delivery process, the heating section heats the water in the water outlet pipe to make the cleaning water warm water. The warm water is then moved into the toilet body to rinse the area around the user's anus, thus achieving the effect of smart use.

[0030] 3. The transition piece can provide additional water storage, which can prevent excess rinsing water from overflowing and being wasted after the water storage piece is full. At the same time, the transition piece can provide supplemental rinsing water.

[0031] 4. The testing department can provide water level detection to prevent excessive water level in the transition parts from causing flushing water to overflow and damage the intelligent equipment. Attached Figure Description

[0032] Figure 1 is an exploded structural diagram of a smart toilet according to an embodiment of this application;

[0033] Figure 2 is a top view of the hidden cover of the smart toilet in some embodiments of this application;

[0034] Figure 3 is a first exploded structural diagram of a smart toilet from another perspective in some embodiments of this application;

[0035] Figure 4 is a three-dimensional structural schematic diagram of the water storage component and the transition component in some embodiments of this application;

[0036] Figure 5 is a three-dimensional structural diagram of a smart device in some embodiments of this application;

[0037] Figure 6 is a three-dimensional structural diagram of the transition piece and the smart device in some embodiments of this application;

[0038] Figure 7 is a second exploded structural diagram of a smart toilet from another perspective in some embodiments of this application;

[0039] Figure 8 is a cross-sectional structural diagram of the water storage component and the toilet body in some embodiments of this application;

[0040] The labels in the attached diagram are as follows: 1. Cover, 2. Toilet body, 3. Rear compartment, 31. Water inlet, 32. Detection unit, 33. Splash protector, 4. Sewage discharge component, 5. Water storage component, 51. Water storage unit, 52. Connection unit, 53. Water supply unit, 54. Water-saving unit, 55. Adjustment unit, 6. Smart device, 61. Installation unit, 62. Water storage unit, 621. Overflow outlet, 622. Filling box, 623. Pressure sensor, 63. Pumping unit, 64. Control panel, 65. Heating unit, 66. Water outlet, 7. Transition component, 71. Overflow outlet, 21. Cable outlet, 22. Drain hole. Detailed Implementation

[0041] The following specific examples illustrate the implementation methods of this application. Those skilled in the art can easily understand other advantages and effects of this application from the information disclosed herein. This application can also be implemented or applied through other different specific embodiments, and various details in this application can be modified or changed according to different viewpoints and application systems without departing from the spirit of this application. It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other.

[0042] The embodiments of this application will now be described in detail with reference to the accompanying drawings, so that those skilled in the art can easily implement the application. This application may be embodied in many different forms and is not limited to the embodiments described herein.

[0043] In this application, the terms "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics represented in connection with that embodiment or example, which are included in at least one embodiment or example of this application. Furthermore, the specific features, structures, materials, or characteristics represented may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate different embodiments or examples represented in this application, as well as features of different embodiments or examples.

[0044] Furthermore, the terms "first" and "second" are used only to indicate an objective and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the representation of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0045] Throughout this specification, when it is said that a device is "connected" to another device, this includes not only "direct connection" but also "indirect connection" by placing other components in between. Furthermore, when it is said that a device "comprises" a certain constituent element, unless otherwise stated otherwise, this does not exclude other constituent elements, but rather implies that other constituent elements may be included.

[0046] The present application will be further described in detail below with reference to Figures 1-8.

[0047] This application discloses an intelligent toilet.

[0048] A smart toilet, as shown in Figure 1, includes a lid 1, a toilet body 2, a rear compartment 3, a waste discharge component 4, a water storage component 5, and a smart device 6. The rear compartment 3 is connected to the toilet body 2, and the lid 1 is movably connected to the rear compartment 3 and covers the toilet body 2. Both the toilet body and the compartment need to be installed flush against the wall. The toilet body 2 and the rear compartment 3 can be made of any material such as ceramic, marble, or fiberglass. The toilet body 2 adopts a U-shaped long barrel structure, with the top surface being a flat surface for the user to sit on. The top surface has a bend along the U-shaped long barrel structure, and the bend is a flushing outlet connected to the flushing water, which is the discharge point for the flushing water. The toilet body 2 has an inner recess for storing the user's excrement. The rear compartment 3 includes a compartment body and a cover. The compartment body is used to install and store the smart device 6, and the cover is equipped with smart switches for flushing, washing, and drying.

[0049] The cover 1 may include a toilet seat, a toilet seat, and a hinge. The toilet seat and the toilet seat are installed on the outside of the rear box 3 by the hinge. Both the toilet seat and the toilet seat can be flipped along the rear box 3 by the hinge. The toilet seat is used to cover the groove of the inner recess to prevent the odor of excrement from escaping. The toilet seat is used to provide a support point for sitting on the toilet.

[0050] The drain component 4 is connected to the toilet body 2. The drain component 4 uses a drain pipe, which is a bent pipe with a water trap at the bend. The opening of the drain pipe is connected to the inner recess of the toilet body 2, so that the excrement stored in the inner recess can be discharged through the drain pipe.

[0051] The water storage component 5 is not close to the wall, creating a gap between the rear tank 3 and the water storage component 5. The water storage component 5 is installed vertically along the inner wall of the toilet body 2 at the end away from the rear tank 3. The water storage component 5 matches and communicates with the toilet body 2. The water storage component 5 can be a water tank to store water for flushing excrement. The water storage component 5 adopts a U-shaped long barrel structure, cut off at the end near the rear tank, creating a gap between the wall and the water tank. The outer wall size of the water tank is slightly smaller than that of the toilet body 2, allowing the water storage component 5 to be installed tightly against the inner wall of the toilet body 2. Furthermore, the outer top surface of the water tank is connected to the bottom surface of the outer wall of the inner groove, allowing it to be installed tightly against the bottom surface of the outer wall of the inner groove. This allows the water tank to be independently installed inside the toilet body 2, without occupying other external installation space, reducing the required installation area, and making it suitable for installing toilets in small spaces.

[0052] As a device that provides intelligent applications for users, the intelligent device 6 is mainly used to intelligently wash and dry the area around the anus after the user defecates. This eliminates the need to manually wipe away residual excrement around the anus with toilet paper or other items, thus achieving intelligent cleaning of residual excrement around the anus. Furthermore, the water storage component 5 and the water storage unit 62 of the intelligent device 6 are separated from each other. After reducing the required installation space of the water storage component 5, the space between the water storage component 5 and the wall and the back box can provide storage for the water storage unit 62. This allows the intelligent device 6 to use water independently from the water storage unit 62 without occupying the water used by the water storage component 5 for washing excrement, and the two do not affect each other.

[0053] The intelligent device 6 is installed inside the rear compartment 3. The water storage component 5 is separated from the intelligent device 6. The intelligent device 6 includes a water storage section 62, which is located in the partition space, allowing the water storage section 62 to expand its volume using the partition space. The water storage section 62 can independently store cleaning water.

[0054] Specifically, the water storage component 5 is located inside the toilet body 2 and is installed around the inner wall of the toilet body 2. It is not attached to the wall, so that when the water storage component 5 stores flushing water, it is not set in the external space but is set inside the toilet body 2. There is a gap between it and the rear compartment 3, so that the gap space can accommodate the water storage part 62 of the smart device 6. This expands the water storage space of the water storage part 62, ensuring the stability of water use. Furthermore, the water storage component 5 and the water storage component 5 are set separately and do not affect each other. This makes reasonable use of the internal space of the toilet body 2 and reduces the overall usable space required by the toilet.

[0055] Referring to Figure 2, the smart device 6 includes an installation section 61, a water storage section 62, a pumping section 63, a control panel 64, a heating section 65, and a water outlet section 66. The water storage section 62 is installed on the installation section 61 and is equipped with a water storage cover. The water storage section 62 can be a water storage tank for storing cleaning water separately, which is separated from the water storage component 5 so that the two do not affect each other. The water storage tank is also equipped with a water inlet for conveying cleaning water, an inlet filter, and an inlet pipe. The filter purifies the tap water into cleaning water. The water inlet pipe is used to fill the water storage tank through the inlet. The installation section 61 can be an installation panel, which provides for the installation of other components of the smart device 6. The installation panel is installed inside the rear box 3, while the switch of the smart device 6 can be located outside the rear box 3 for the user to touch or press to turn it on.

[0056] The pumping unit 63 is installed on the outer side wall of the water storage unit 62 and is connected to the water storage unit 62. The pumping unit 63 can be a water pump, which is used to extract the cleaning water in the water storage tank and provide water pressure.

[0057] The control panel 64 is installed inside the mounting section 61 and is used to provide data reception and command control, such as controlling the inlet and outlet water volume. The heating section 65 is installed in the mounting section 61 and spaced apart from the control panel 64. The heating section 65 may include a heater and a drying device. The heater is used to heat the cleaning water so that the cleaning water is closer to the user's body temperature. When rinsing the area around the user's anus, the water temperature is closer to the user's body temperature, which makes the user more comfortable and improves the user experience. The control panel 64 can control the heating temperature and heating time of the heater to ensure that the water temperature is suitable. The drying device uses a drying fan and other driving components. The drying fan runs synchronously with the heater, and the hot air blown out can dry the user's moist skin after cleaning the area around the anus, providing an intelligent effect. The control panel 64 also includes a backup power supply to provide power to the control panel 64 and various driving components in the event of an external power outage.

[0058] The drying device can be separately installed on the mounting panel on the side of the control panel 64 away from the control panel 64 to avoid excessive heat affecting the operation of the control panel 64.

[0059] The water outlet 66 is connected to the water pumping unit 63 and the heating unit 65. The water outlet 66 may include a water outlet pipe and a telescopic device. The first half of the water outlet pipe may be a metal flexible hose to provide stretchability. An additional section may be reserved for subsequent pipe extension. The second half may be a plastic straight pipe or a corrosion-resistant metal straight pipe. A spray head is provided at the end of the straight pipe away from the flexible hose to spray cleaning water around the user's anus to wash away residual excrement. The telescopic device may be driven by an electric push rod, cylinder, or other drive element. The telescopic device is controlled by the control panel 64 and is connected to the control panel 64 by a signal. The telescopic device is used to extend the straight pipe and the spray head out of the rear box 3 until the spray head is located in the inner recess and opposite the user's anus. The spray head can then be used to provide cleaning. After cleaning, the telescopic device is retracted. During extension, the flexible hose in the first half provides a moving extension effect, so that the water delivery of the straight pipe is not affected.

[0060] Specifically, when the smart device 6 is needed, the user turns it on by switching on the switch. The water pump draws out the cleaning water from the water tank and transports it through the water outlet pipe. During the transportation process, the water in the water outlet pipe is heated by the heater to make the cleaning water warm. The water outlet pipe is extended out of the rear box 3 by the telescopic device and moved into the inner groove. The water spray head is used to rinse the area around the user's anus. After rinsing, the water outlet pipe is retracted, and the drying fan is used in conjunction with the heater to blow dry the user's anus, so as to achieve the effect of intelligent use.

[0061] Furthermore, the water outlet 66 connects to the heating unit 65 after passing through the control panel 64. That is, the first half of the water outlet pipe can coil several times after passing through the control panel 64 before extending to the heating unit 65. The water outlet pipe can be made of metal, which can absorb heat from the control panel 64 and provide a cooling effect by absorbing the heat generated by the control panel 64 during operation. When the water outlet pipe is transporting cleaning water, it can absorb the heat from the control panel 64 and transfer it to the cleaning water. The heat generated by the control panel 64 is used to preheat the flowing cleaning water before it is transported to the heating unit 65 for heating. In this way, the control panel 64 can be cooled and the cleaning water can be preheated, which can reduce the energy consumption of the heating unit 65 and save electricity.

[0062] Referring to Figure 3, the water storage component 5 includes a water storage part 51, a connecting part 52, and a water conveying part 53. The water storage part 51 matches the toilet body 2 and is connected to the inner wall of the toilet body 2 away from the rear compartment 3 via the connecting part 52. The water storage part 51 can be a water tank, and the shape of the water tank is consistent with the inner wall of the toilet body 2, and it is set close to the bottom surface of the inner groove. The connecting part 52 can be a connecting bracket, and the water tank is connected to the inner wall of the toilet body 2 via the connecting bracket. The connecting bracket is a Z-shaped bracket, and the surface is provided with connecting holes. One end of the frame is connected to the water tank through a connecting hole via bolts or self-locking screws, and the other end is connected to the toilet body 2 through a connecting hole via bolts or self-locking screws. At least three connecting frames are provided, which are installed at three points on the outer wall of the water tank to form a three-point support. Setting more than three frames can improve the stability of the support. The connecting frames allow the water tank and the toilet body 2 to be detachably connected, which is convenient for replacing the water tank when it is damaged. They also make it easy to transport them separately before installation, reducing the weight during overall handling and making transportation more convenient.

[0063] The water supply unit 53 is installed at the end of the water storage unit 51 away from the rear box 3. The water supply unit 53 can be a water pump and a water pipe. One end of the water pump is connected to the water storage tank, and the other end is connected to the inner groove body through the water pipe. Specifically, the water pipe can be connected to the flushing port at the bend on the top surface of the toilet body 2. The water pump draws out the flushing water in the water storage tank and delivers it to the flushing port through the delivery pipe. The flushing water is flushed into the inner groove body from the flushing port, so that the excrement in the inner groove body and the flushing water are flushed into the drain pipe for discharge. The water storage tank is connected to the external water supply pipe to replenish the flushing water after flushing. The water pump is connected to the control panel 64 by signal. The control panel 64 can be controlled by the switch outside the rear box 3, so that the control panel 64 issues a flushing command to the water pump to perform the flushing step.

[0064] In some embodiments, referring to Figure 4, the toilet body 2 is further provided with a transition piece 7; the transition piece 7 is installed at one end of the water storage piece 5 near the rear tank 3, and the transition piece 7 has an overflow outlet 71. The transition piece 7 communicates with the inside of the toilet body 2 through the overflow outlet 71. The water storage piece 5 is connected to the transition piece 7. Taking the water storage piece 5 as an example, the transition piece 7 can adopt a storage box structure such as a transition box or transition container. In this embodiment, a transition box is used as an example. The function of the transition box is to play a transition role during the filling of the water storage tank for flushing. The rear tank 3 is provided with a water inlet 31. 1. An inlet or a water inlet cylinder can be used. Taking the water inlet cylinder as an example, the water inlet cylinder is a cylindrical structure with openings at both ends. One end of the water inlet cylinder is connected to an external water supply pipe, and the other end is connected to a transition box. When the external water supply pipe delivers flushing water through the water inlet cylinder to the transition box, the transition box delivers the flushing water to the water storage tank. When the water storage tank is full, the transition box will retain some extra water. When the transition box is full, the excess flushing water can be diverted to the inner groove of the toilet body 2 through the overflow outlet 71 or directly discharged into the drain pipe to avoid the flushing water overflowing and affecting the smart device 6.

[0065] The transition box is equipped with a cover. The location of the water inlet 31 is not limited and can also be set on the cover of the transition box without affecting the delivery of flushing water.

[0066] The transition box provides additional water storage, preventing excess flushing water from overflowing and being wasted when the water tank is full. It also serves to replenish flushing water if the water in the water tank is insufficient. In cases of excessive excrement, the normal flushing volume may not be enough to completely flush the excrement into the drain pipe, or if the drain pipe is blocked, requiring more flushing water, the water in the transition box will be used. Pressing and holding the switch on the outside of the rear compartment 3 will provide continuous flushing.

[0067] The transition box can also add an extra flushing process, providing water for a second flush. If the user's excrement is too viscous and cannot be completely flushed into the drain pipe in one flush, a second flush is required. The extra flushing water in the transition box is poured into the water tank for a second flush, which can shorten the time required for the water inlet pipe to deliver flushing water. The transition box can be used to replenish flushing water, so as to achieve the effect of quick second flushing.

[0068] Furthermore, the water storage unit 62 of the smart device 6 is connected to the transition piece 7. Specifically, the water storage tank for storing water to clean the area around the user's anus is connected to the transition box. An overflow outlet 621 is provided at the water storage tank so that when there is too much water stored for cleaning, it can overflow into the transition box, preventing the water from overflowing from the water storage tank and flowing to other smart devices 6, which could damage the smart devices 6. The water overflowing from the water storage tank can be used to replenish the water in the transition box, such as to make rinsing water. If there is too much water in the transition box, it can also flow into the inner groove or drain pipe through the overflow outlet 71. The horizontal height of the overflow outlet 621 is higher than that of the overflow outlet 71, so that the overflowing cleaning water can flow smoothly into the transition box.

[0069] Furthermore, referring to Figure 5, an infusion box 622 is also provided at the overflow port 621 of the water storage tank. The bottom of the infusion box 622 has a small drip hole. The infusion box 622 is connected to the overflow port 621 through a pressure sensor 623. The pressure sensor 623 is used to detect the weight of the infusion box 622. When excess cleaning water flows out from the overflow port 621, it will first enter the infusion box 622. Only when the infusion box 622 is full will the cleaning water overflow into the transition box.

[0070] The main function of the filling box 622 is to prevent excessive water overflow from the water storage tank, which would lead to water waste. Therefore, when there is too much water in the filling box 622, the weight of the filling box 622 will change. The pressure sensor 623 will detect the abnormal weight and send it to the control panel 64, indicating that the water flow in the water storage tank is abnormal and promptly notifying the user to carry out maintenance. When the amount of overflowing water is insufficient to trigger the pressure sensor 623, the overflowing water will slowly drip into the transition box through the drip nozzle.

[0071] The pumping unit 63 can also be connected to the transition piece 7, that is, the pump can be connected to the transition box through the pumping pipe, so that the water in the transition box becomes public water, which can be used as flushing water or cleaning water, and can be used in emergencies when power or water is cut off, so as to avoid the situation where there is no water in the water storage tank when power or water is cut off.

[0072] Furthermore, referring to Figure 6, the rear box 3 is also provided with a detection unit 32; the detection unit 32 is connected to the rear box 3, and the detection unit 32 has a detection end, which faces the transition piece 7. The position of the detection unit 32 is not limited, and it can also be directly connected to the control panel 64. The detection unit 32 can be a liquid level sensor or a probe-type water level sensor. Taking the probe-type water level sensor as an example, the water level sensor body is located inside the smart device 6 and connected to the control panel 64, and can generate an electrical signal to the control panel 64. The detection end of the water level sensor has a probe-type structure. The probe-type structure is used to detect the water level in the transition box. When the water level in the transition box reaches the specified water level, the water level sensor sends a full water signal to the control panel 64. The control panel 64 can then send a shut-off command to the electronic valve or water pump that controls the external water supply pipe to stop the water supply for rinsing. The water level sensor can accurately determine the water level in the transition box, avoiding the situation where too much rinsing water overflows from the overflow outlet and wastes water. A water level sensor can also be installed in the water storage tank, or an additional set of probe-type structures can be extended from a single water temperature sensor to the water storage tank.

[0073] The rear box 3 is also equipped with a splash guard 33. One end of the splash guard 33 is connected to the rear box 3, and the other end extends into the transition piece 7. The detection part 32 is located inside the splash guard 33 near one end of the rear box 3. The splash guard 33 can also be located on the cover of the transition box. The splash guard 33 can be a splash guard cylinder, which can be a rectangular or square long cylindrical structure with openings at both the top and bottom. The splash guard cylinder is installed in the rear box 3 or the cover, and the lower end extends into the transition box. Because the lower end is open, the water level will gradually rise from the splash guard through the lower opening. The inner wall of the splash tube rises to the opening at the top of the splash guard. The probe-type structure of the water level sensor can be set on the inner wall of the splash guard. When the water level rises along the splash guard, the probe-type structure detects that the water level has risen to a specified height, and the water level sensor sends an electrical signal to the control panel 64. The function of the splash guard is to prevent false alarms when the water inlet tube delivers rinsing water to the transition box. If the rinsing water splashes onto the probe-type structure, it will cause false alarms. Therefore, the splash guard separates the probe-type structure from the transition box, which can reduce the occurrence of false alarms.

[0074] In some embodiments, referring to FIG7, the toilet body 2 has a cable outlet 21 and a drain hole 22. The cable outlet 21 is used to organize and guide the power cord of the smart device 6. The drain hole 22 is connected to the inside of the toilet body 2. When the drain pipe, sewage pipe, water tank or water storage tank or other components inside the toilet are broken or damaged, causing water leakage into the toilet body 2, the water can be discharged through the drain hole 22 to avoid affecting the normal operation of the smart device 6.

[0075] In some embodiments, referring to FIG8, the water storage component 5 further includes a water-saving part 54 and an adjusting part 55. The water-saving part 54 is located inside the water storage part 51 and matches the internal space of the water storage part 51. The adjusting part 55 is installed on the water-saving part 54 and extends outward through the toilet body 2. The water-saving part 54 may be an inflatable bladder made of plastic, rubber, or silicone, and the shape of the inflatable bladder matches the internal structure of the water tank. The adjusting part 55 may be an air valve, which is a small one-way valve used for... Inflate the air bladder. The air valve extends outward through the toilet body 2, allowing the user to inflate the air bladder using an air pump or other external tools. The degree of inflation of the air bladder varies depending on the amount of air added. When the air bladder is inflated, it occupies space in the water tank, thus adjusting the size of the water tank and the amount of flushing water stored. When using flushing water, the amount of water used per flush can be adjusted via the air valve.

[0076] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, all equivalent changes made to the structure, shape, and principle of this application should be covered within the scope of protection of this application.

Claims

1. A smart toilet, characterized in that, The toilet includes a lid (1), a toilet body (2), a rear compartment (3), a drain assembly (4), a water storage assembly (5), and a smart device (6). The toilet body (2) is connected to the wall, and the toilet body (2) has an internal recess for storing the user's excrement. One end of the rear compartment (3) is connected to the toilet body (2), and the other end is connected to the wall. The lid (1) is movably connected to the rear compartment (3) and covers the toilet body (2). The drain assembly (4) is connected to the toilet body (2). The water storage assembly (5) is installed vertically around the toilet body (2) along the vertical direction, located at the end of the toilet body (2) away from the rear compartment (3), and the water storage assembly... (5) It is connected to the toilet body (2) to provide flushing water for the toilet body (2); the water storage component (5) is not close to the wall, so that there is a gap between the back box (3) and the water storage component (5); both the toilet body (2) and the water storage component (5) adopt a U-shaped long barrel structure; the outer wall size of the water storage component is smaller than that of the toilet body (2), so that the water storage component (5) can be installed close to the inner wall of the toilet body (2), and the outer top surface of the water storage component (5) is connected to the bottom surface of the outer wall of the inner groove, so that it can be installed close to the bottom surface of the outer wall of the inner groove, thereby making the water storage component (5) independently set in the toilet body (2); the intelligent device (6) is installed in the back box (3), and the intelligent device (6) includes a water storage part (62) The water storage part (62) is located within the space between the two parts. Water used by the water storage part (5) and the water storage part (62) is discharged through the drain part (4). The water storage part (5) includes a water storage part (51), a connecting part (52), and a water conveying part (53). The water storage part (51) is arranged around the inner wall of the toilet body (2) and is connected to the inner wall surface of the toilet body (2) away from the rear box (3) through the connecting part (52). The water conveying part (53) is installed at the end of the water storage part (51) away from the rear box (3) and communicates with the water storage part (51). The toilet body (2) is also provided with a transition part (7). The transition part (7) is installed on the water storage part (5) near the rear box. (3) One end, and the transition piece (7) is provided with an overflow outlet (71); the transition piece (7) is connected to the toilet body (2) through the overflow outlet (71); the water storage piece (5) is connected to the transition piece (7); the rear box (3) is also provided with a water inlet (31), the water inlet (31) is connected to a water supply pipe, and the water inlet (31) is connected to the transition piece (7); the transition piece (7) provides additional water storage function. If the flushing water in the water storage piece (5) is insufficient during the flushing process, the flushing water in the transition piece (7) is used to supplement it, or the extra flushing water in the transition piece (7) is poured into the water storage piece (5) for secondary flushing, thereby shortening the time required to transport flushing water.

2. The smart toilet according to claim 1, characterized in that, The water storage component (5) also includes a water-saving part (54) and an adjustment part (55); the water-saving part (54) is located inside the water storage part (51); the adjustment part (55) is installed on the water-saving part (54) and extends outward through the toilet body (2).

3. The smart toilet according to claim 1, characterized in that, The intelligent device (6) further includes an installation part (61), a pumping part (63), a control panel (64), a heating part (65), and a water outlet part (66); the water storage part (62) is installed on the installation part (61); the pumping part (63) is installed on the outer side wall of the water storage part (62) and communicates with the water storage part (62); the control panel (64) is installed on the installation part (61); the heating part (65) is installed on the installation part (61) and spaced apart from the control panel (64); the water outlet part (66) is connected to the pumping part (63) and to the heating part (65).

4. A smart toilet according to claim 3, characterized in that, The water outlet (66) is connected to the heating unit (65) after passing through the control panel (64).

5. A smart toilet according to claim 1, characterized in that, The water storage section (62) is connected to the transition piece (7).

6. A smart toilet according to claim 1, characterized in that, The rear box (3) is also provided with a detection unit (32); the detection unit (32) is provided with a detection end, which faces the transition piece (7).

7. A smart toilet according to claim 6, characterized in that, The rear box (3) is also provided with a splash guard (33); one end of the splash guard (33) is connected to the rear box (3), and the other end extends into the transition piece (7), and the detection part (32) is located inside the splash guard (33) near one end of the rear box (3).

8. A smart toilet according to any one of claims 1-7, characterized in that, The toilet body (2) has a cable outlet (21) and a drain hole (22).

Citation Information

Patent Citations

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