A workflow of a urine test toilet

By designing an automated process for urine testing toilets, the problem of difficulty in conducting health tests in daily life has been solved, achieving automatic urine testing and accurate results, and improving the convenience and timeliness of health monitoring.

CN119606434BActive Publication Date: 2026-04-14XIAMEN R&T PLUMBING TECH
View PDF 3 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

In the current technology, people lack urine testing equipment that can be conveniently and intelligently used for health monitoring in daily life, especially for the early detection of liver and gallbladder diseases. This results in low frequency of health monitoring and an inability to provide timely warnings of potential health problems.

Method used

Design a urine testing toilet equipped with a water seal, detection hole, detection element, and plug. It realizes urine detection through a series of automated processes, including status detection, emptying the water seal, element movement, urine collection, data acquisition, and reset. The drive components and sensors ensure the smooth operation of the test.

Benefits of technology

It enables automatic urine detection during excretion, facilitating user monitoring of health status, ensuring the accuracy and intelligence of test results, increasing the frequency and timeliness of health monitoring, and reducing the burden on medical care.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119606434B_ABST
    Figure CN119606434B_ABST
Patent Text Reader

Abstract

The application relates to the technical field of intelligent toilets in bathrooms, and provides a working process of a urine test toilet, the toilet is provided with a water seal, a detection hole is arranged at the water seal; a urine test mechanism is provided with a detection element and a plug, the detection element can be extended from the detection hole of the toilet to collect urine, and the plug is used for sealing the detection hole; the working process comprises the following steps: S1: a mainboard receives a urine test instruction, and starts to check the state of a urine test device and / or the toilet; S2: when the state is qualified, a urine test program is entered, a water seal emptying program is started, and the water seal liquid level is not higher than the detection hole of the toilet; S3: the plug is moved to open the detection hole; S4: the detection element is moved to a position for collecting urine; S5: urine is collected on the detection element to collect urine; S6: after the urine collection is completed, the detection element is moved to a data collection position to collect reaction data after reaction; and S7: after the collection is completed, a reset program is executed. Therefore, people can conveniently perform urine tests at home.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of smart toilets in bathrooms, and more particularly to the workflow of a urine testing toilet. Background Technology

[0002] The fast pace of modern life has indeed brought considerable challenges to the health of urban residents, especially diseases such as liver and gallbladder disorders, which are difficult to detect in their early stages and have become a significant threat to people's health. Therefore, the construction and promotion of healthy communities is no longer a local initiative but has risen to the level of a national strategy. Against this backdrop, the sanitary ware industry is leveraging the convenient waste collection feature of toilets to vigorously develop health-monitoring toilets. These toilets can conveniently and intelligently perform health monitoring, and the results are clearly and accurately interpreted, which is of great significance for increasing the frequency of health monitoring and preventing diseases.

[0003] Urine testing toilets allow users to easily complete routine urine tests at home, which will undoubtedly greatly raise people's health awareness and make them pay more attention to their physical condition. Furthermore, the emergence of this type of toilet can effectively solve the problem of modern people not having time for physical examinations due to their fast-paced lifestyles, allowing people to complete basic health checks in their daily lives.

[0004] More importantly, urine tests on toilets can provide early warnings of changes in people's bodies, helping them to detect potential health problems in a timely manner and avoid waiting until the condition becomes severe before seeking medical attention. This has a positive effect on reducing the burden on medical care and improving people's quality of life.

[0005] Therefore, this application provides a workflow for a urine testing toilet, which enables people to conveniently perform urine tests at home and monitor their health status in real time. Summary of the Invention

[0006] To enable people to conveniently perform urine tests at home and monitor their health status in real time, this application provides a workflow for a urine testing toilet.

[0007] The workflow of a urine testing toilet provided in this application adopts the following technical solution:

[0008] A workflow for a urine testing toilet, the toilet having a water seal with a detection hole at the water seal; the urine testing mechanism having a detection element and a plug, the detection element extending from the detection hole of the toilet to collect urine, and the plug for sealing the detection hole;

[0009] The workflow includes the following:

[0010] S1: The motherboard receives the urine test command and begins to check the status of the urine test device and / or the toilet.

[0011] S2: If the status test is qualified, proceed to the urine test procedure and start the water seal emptying procedure to ensure that the water seal liquid level is not higher than the detection hole of the toilet.

[0012] S3: After the water seal clearance procedure is successful, move the plug to open the test hole;

[0013] S4: Move the detection element to the urine collection location;

[0014] S5: Begin collecting urine by rinsing the detection element with urine;

[0015] S6: After urine collection is completed, wait for the detection element to react. After the reaction, move the detection element to the data acquisition position and collect the reaction data.

[0016] S7: After data acquisition is complete, execute the reset procedure.

[0017] By adopting the above technical solution, urine can be automatically detected during the excretion process, allowing people to conveniently monitor their health status through urine test results.

[0018] Optionally, the detection element consists of a detection element box and a detection part, wherein the detection part is telescopically movable within the detection element box; step S4 further includes: extending the detection element box of the detection element into the detection hole to seal the detection hole, and pushing the detection part out of the detection element box to the position for collecting urine.

[0019] Optionally, the urine testing procedure may be terminated if the urine testing device and / or toilet are found to be in an unqualified state; wherein, the unqualified state of the urine testing device includes: the urine testing device is not installed properly; and the unqualified state of the toilet includes: the toilet is in use.

[0020] Optionally, the urine test toilet uses a water seal level detection sensor to detect the water level height. The water level is set to a threshold height that is not higher than the detection hole. If the water seal level is higher than the threshold height, it is determined that the water seal clearance has failed. If the water seal level is lower than or equal to the set threshold height, it is determined that the water seal clearance has been successful.

[0021] Optionally, the movement of the plug is driven by a drive component, the speed of which is adjustable. During the plug recovery process, the drive component slows down before the plug leaves the sealing position of the detection hole (when resistance is high), and speeds up after the plug leaves the sealing position of the detection hole (when resistance is low); or the drive component speeds up before the plug enters the plug storage position (when resistance is low), and slows down when the plug enters the plug storage position (when resistance is high).

[0022] Optionally, the movement of the detection element is driven by a driving component, the speed of which is adjustable; the driving component operates at a fast speed when it drives the detection element to extend out of the detection element compartment or before extending the detection element to the urine collection position; the driving component operates at a slow speed when it drives the detection part of the detection element to extend out of the detection element box.

[0023] Optionally, in step S3, during the process of moving the plug to open the detection hole; or, in step S4, if the toilet is detected to be in use during the process from selecting the detection element to moving it to the urine collection position, the urine test procedure is interrupted, the plug is reset, the detection hole is sealed with the plug, the water seal is filled with a brush, and the urine test ends; or the detection hole is sealed with the detection element, the water seal is filled with a brush, and the urine test ends.

[0024] Optionally, in step S4, before the detection element reaches the location for collecting urine, the sterilization system or drying system of the ceramic pot surface is activated.

[0025] Optionally, in step S6, after urine collection is completed, a second water seal emptying procedure is performed. After the water seal is emptyed, wait for the detection element to react.

[0026] Optionally, in step S1, if the first water seal clearing procedure fails, a water seal replenishment procedure is performed, and the urine test ends; in step S6, if the second water seal clearing procedure fails, a third water seal clearing procedure is executed; if the third water seal clearing procedure succeeds, a reset procedure is initiated; if the third water seal clearing procedure fails, the plug is used to seal the detection hole, prompting the user to test the equipment or prompting the user to report a repair.

[0027] Optionally, in step S6, after the detection part of the detection element has completed its reaction, the detection part of the detection element is first pushed to the urine collection position, then pulled back into the detection element box to drain excess urine from the detection part before starting to collect reaction data.

[0028] Optionally, in step S6, if the toilet is detected to be in use during the reaction data acquisition process,

[0029] If the urine test procedure or reaction data collection procedure is interrupted, the detection element and / or plug are reset, the plug is used to seal the detection hole, the water seal is filled with a brush ring, and the urine test is ended; or the detection element is extended again to seal the detection hole, and the reset procedure is executed after the toilet is no longer in use.

[0030] Optionally, the reset procedure includes pulling back the extended detection element, repositioning the plug back into the detection hole, closing the detection hole, then replenishing water to the brush ring or performing a flushing function to end the detection and restore the toilet to normal function.

[0031] In summary, this application includes at least one of the following beneficial technical effects:

[0032] 1. The system can automatically detect urine during the excretion process, allowing people to easily monitor their health status through urine test results;

[0033] 2. By judging whether the toilet is unqualified during use through each step, the system will initiate a reset and automatically resolve any abnormalities during the test, thus ensuring the smooth completion of the test process and the accuracy of the test results;

[0034] 3. The use of multiple functions, such as urine sensing sensors, makes the urine testing process more intelligent and convenient, allowing people to more easily view and monitor the urine testing process and results. Attached Figure Description

[0035] Figure 1 This is a flowchart illustrating the workflow of the urine testing toilet according to Embodiment 1 of this application;

[0036] Figure 2 This is a cross-sectional schematic diagram illustrating the state before starting a urine test in the workflow of the urine test toilet according to an embodiment of this application.

[0037] Figure 3 This is a cross-sectional schematic diagram showing the emptying of the water seal during the workflow of the urine testing toilet according to an embodiment of this application.

[0038] Figure 4 This is a cross-sectional schematic diagram illustrating the opening of the detection hole in the workflow of the urine testing toilet according to an embodiment of this application;

[0039] Figure 5 This is a cross-sectional schematic diagram illustrating the selection of detection elements during the workflow of the urine testing toilet according to an embodiment of this application;

[0040] Figure 6 This is a cross-sectional schematic diagram showing the detection element extending out of the detection hole in the working process of the urine testing toilet according to the embodiments of this application;

[0041] Figure 7 This is a cross-sectional schematic diagram showing the state of the detection element retracting into the detection hole during the workflow of the urine testing toilet according to the embodiments of this application;

[0042] Figure 8 This is a schematic cross-sectional view of the state of the urine test toilet in the workflow of the embodiment of this application, showing the water seal level detection sensor detecting the emptying of the water seal.

[0043] Figure 9 This is a cross-sectional schematic diagram showing the detection element located at the reaction position in the workflow of the urine testing toilet according to an embodiment of this application;

[0044] Figure 10 This is a cross-sectional schematic diagram showing the detection element being pulled back from the detection position during the workflow of the urine testing toilet according to an embodiment of this application;

[0045] Figure 11 This is a cross-sectional schematic diagram illustrating the repositioning and sealing of the detection hole in the workflow of the urine testing toilet according to the application embodiment;

[0046] Figure 12 This is a cross-sectional schematic diagram illustrating the program reset and exit of the urine test function in the workflow of the urine test toilet in the application embodiment;

[0047] Figure 13 This is a flowchart illustrating the workflow of the urine testing toilet according to Embodiment 2 of this application.

[0048] Reference numerals: 1. Detection hole; 2. Plug; 3. Water seal level detection sensor; 4. Main flushing port; 5. Storage compartment; 6. Detection element; 61. Detection element box; 62. Detection section; 7. Urine detection sensor. Detailed Implementation

[0049] The following is in conjunction with the appendix Figure 1-13 This application will be described in further detail.

[0050] Example 1:

[0051] Embodiment 1 of this application discloses the workflow of a urine testing toilet. (Refer to...) Figure 1 The workflow of the urine testing toilet includes: the toilet has a water seal, and the water seal has a detection hole 1; the urine testing mechanism has a detection element 6 and a plug 2. The detection element 6 can extend from the detection hole 1 of the toilet to collect urine, and the plug is used to seal the detection hole 1.

[0052] It also includes the following workflows:

[0053] S1: Cooperation Figure 2 The motherboard receives the urine test command and begins to check the status of the urine test device and / or the toilet.

[0054] S2: Cooperation Figure 3 If the condition check is passed, the urine test procedure begins. The water seal emptying procedure is then initiated, ensuring the water seal level is no higher than detection hole 1 on the toilet bowl. This includes situations where the water seal level is below detection hole 1 or where the water seal level and the lowest point of detection hole 1 are aligned in a straight line. The water seal emptying procedure includes either using the main flush to activate the siphon, removing water from the water seal and lowering the water seal level; or first activating the brush ring to clean the bowl, raising the water seal level, and then using the main flush to activate the siphon, removing water from the water seal and lowering the water seal level.

[0055] S3: Cooperation Figure 4 After the water seal is cleared and the procedure is completed successfully, move the plug 2 to open the test hole 1.

[0056] S4: Cooperation Figure 5 and Figure 6 Move the detection element 6 to the urine collection location, i.e., the water seal storage location inside the toilet.

[0057] S5: Cooperation Figure 7 and Figure 8 The urine collection process begins by rinsing the detection element 6 with urine.

[0058] S6: Cooperation Figure 9 After urine collection is completed, wait for the detection element 6 to react. After the reaction, move the detection element 6 to the data acquisition position and collect the reaction data. In this embodiment, a total of seven detection positions are set, and two sets of color block data are collected at each detection position.

[0059] S7: Cooperation Figure 10 , Figure 11 and Figure 12 After data collection is complete, a reset procedure is executed. In this embodiment, the collected reaction data is analyzed using an algorithm to obtain the indicators of the detection items.

[0060] The implementation principle of the urine test toilet in Embodiment 1 of this application is as follows: after receiving a signal from the main board and passing the test, the urine test program is started. During the excretion process, the urine is automatically selected by the detection element 6, collected, and the reaction data is collected by the detection element 6. The urine test results can be obtained conveniently, saving time and effort. Therefore, people can conveniently conduct urine tests at home and monitor their health status in real time.

[0061] Example 2:

[0062] This second embodiment discloses a workflow for a urine testing toilet. Except for the differences from the first embodiment, this embodiment is identical to the first embodiment.

[0063] Reference Figure 13 The difference between this embodiment and Embodiment 1 is that: [The following is a description of the combination of different elements] Figure 9 In some embodiments, the detection element 6 consists of a detection element box 61 and a detection part 62, the detection part 62 being telescopically movable within the detection element box 61; step S4 further includes: extending the detection element box 61 of the detection element 6 into the detection hole 1 to seal the detection hole 1, and pushing the detection part 62 out of the detection element box 61 to the position for collecting urine.

[0064] In some embodiments, the urine testing procedure is terminated when the urine testing device and / or toilet malfunctions; wherein malfunctions of the urine testing device include: the urine testing device is not properly installed; malfunctions of the toilet malfunction include: the toilet is in use. Therefore, terminating the urine testing procedure based on malfunctions can promptly prevent invalid tests.

[0065] Cooperate Figure 3 In some embodiments, the urine test toilet uses a water seal level detection sensor 3 to detect the water level. In this embodiment, the water seal level detection sensor 3 is located above the main flush port 4 and has two electrodes to detect conductivity. The water level is set to a threshold height that is not higher than the detection port 1; if the water seal level is higher than the threshold height, it is determined that the water seal emptying has failed; if the water seal level is lower than or equal to the set threshold height, it is determined that the water seal emptying has been successful. In this embodiment, during the main flushing process, when the signal from the water seal level detection sensor 3 is less than the threshold, it is determined to be an air signal, indicating that the water seal has been successfully emptyed.

[0066] Cooperate Figure 4 In some embodiments, the movement of the plug 2 is driven by a drive component. In this embodiment, the drive component is a drive motor, and the speed of the drive motor is adjustable. During the process of retrieving the plug 2, the drive motor speed slows down before the plug 2 leaves the sealed position of the detection hole 1 (when the resistance is high), and the drive motor speed speed increases after the plug 2 leaves the sealed position of the detection hole 1 (when the resistance is low). When the detection element 6 is taken out, the drive motor speed is fast. Alternatively, the drive component speed increases before the plug 2 enters the plug 2 storage position (when the resistance is low), and the drive component speed slows down when the plug 2 enters the plug 2 storage position (when the resistance is high).

[0067] In some embodiments, the speed of the driving member is adjustable as the driving member drives the movement of the detection element 6. The driving member operates at a fast speed when the driving member drives the detection element 6 to extend out of the detection element compartment or before extending the detection element 6 to the urine collection position. The driving member operates at a slow speed when the driving member drives the detection part 62 of the detection element 6 to extend out of the detection element box 61.

[0068] In this embodiment, the drive motors for the plug 2 and the detection element 6 are the same motor. In other embodiments, the drive motors for the plug 2 and the detection element 6 can be different motors. According to the formula P=FV, under the same power, F (resistance) is inversely proportional to V (speed). The force required at the sealing position of the detection hole 1 is greater. Therefore, the required force is provided by reducing the speed of the motor to accurately control the drive position.

[0069] Cooperate Figure 5 In this embodiment, after the plug 2 is removed from the detection hole 1, it is placed into the storage compartment 5, which is located inside the detection element compartment. Therefore, after the plug 2 is moved into the storage compartment 5, the detection element 6 can be easily removed from the detection element compartment.

[0070] In some embodiments, during step S3, when the plug 2 is moved to open the detection hole 1; or during step S4, when the toilet is detected to be in use while the detection element 6 is being selected and moved to the urine collection position, the urine test procedure is interrupted, the plug 2 is reset, the detection hole 1 is sealed with the plug 2, the water seal is filled with a brush ring, and the urine test ends; or the detection hole 1 is sealed with the detection element 6, the water seal is filled with a brush ring, and the urine test ends. That is, if the toilet is still in use while the plug 2 is being moved or the detection element 6 is being selected, the action of moving the plug 2 or selecting the detection element 6 will fail, meaning the urine test cannot be performed. At this time, the plug 2 seals the detection hole 1, the detection element 6 is pulled back into the detection element compartment, and the urine test procedure ends. In this embodiment, the toilet's usage status includes human actions such as someone sitting down, someone urinating, or someone opening the lid, as well as using the smart toilet's bidet function, drying function, and flushing function. In this embodiment, the plug 2 and the detection element 6 achieve sealing of the detection hole 1 through an interference fit.

[0071] In some embodiments, during step S4, before the detection element 6 reaches the location for urine collection, the sterilization or drying system of the ceramic pot surface is activated. That is, the toilet bowl environment is sterilized before the detection element 6 collects urine, thereby reducing the impact on the urine test results.

[0072] In some embodiments, in step S6, after urine collection is completed, a second water seal emptying procedure is performed, and after the water seal is emptyed, the detection element 6 is waited for to react.

[0073] In some embodiments, in step S1, if the first water seal clearing procedure fails, a water seal replenishment process is performed, and the urine test ends; in step S6, if the second water seal clearing procedure fails, a third water seal clearing procedure is executed; if the third water seal clearing procedure succeeds, the device reset procedure is initiated; if the third water seal clearing procedure fails, the plug 2 is used to seal the detection hole 1, prompting the user to check the device or report a repair. The urine test function cannot be initiated at this time.

[0074] In some embodiments, in step S6, after the detection portion 62 of the detection element 6 has completed its reaction, the detection portion 62 of the detection element 6 is first pushed to the urine collection position, then pulled back into the detection element box 61 to drain the excess urine from the detection portion 62, and then the reaction data collection begins.

[0075] In some embodiments, during step S6, if the toilet is detected to be in use during the process of collecting reaction data, the urine test procedure or the reaction data collection procedure is interrupted, the detection element 6 and / or the plug 2 are reset, the plug 2 is used to seal the detection hole 1, the water seal is filled with the brush ring, and finally the urine test is ended; or the detection element 6 is extended again to seal the detection hole 1, and the reset procedure is executed after the toilet is no longer in use.

[0076] In this embodiment, in step S6, before starting to collect reaction data, the detection element 6 is first pulled back to the zero position. This ensures the accuracy of the collected data.

[0077] In this embodiment, the reset procedure includes pulling the extended detection element 6 back into the detection element compartment, repositioning the plug 2 back into the detection hole 1, and closing the detection hole 1; then replenishing water to the brush ring or performing the flushing function to end the detection and restore the toilet to normal function.

[0078] In some embodiments, if the urine test is terminated prematurely before the detection element 6 is removed from the detection element compartment, the number of tests will not be reduced after the urine test is terminated; if the urine test is terminated prematurely or normally after the detection element 6 is removed from the detection element compartment, the number of tests will be reduced after the urine test is terminated.

[0079] In some embodiments, the urine testing device provides operational instructions or warnings of erroneous operations through a broadcast system. This facilitates user understanding of the testing procedures and correction of errors.

[0080] Cooperate Figure 7 In this embodiment, the urine detection device detects the amount of urine using a urine sensing sensor and checks if urine is dripping into the remaining water seal. A timing period begins when urine drips in. If there is no sitting signal during urine collection, it is determined that the person is urinating while standing. Alternatively, if there is a sitting signal but a leaving signal appears within 10 seconds, the urine volume is considered insufficient. Or, if there is a sitting signal but no leaving signal appears after 50 seconds, the urine volume is considered excessive. If no excrement is detected within 3 minutes, it is considered a timeout failure, and urine collection is deemed a failure. After leaving the seat, a reset procedure is executed. In this embodiment, the urine sensing sensor is positioned above the main outlet 4 and includes two electrodes to detect conductivity. During urine collection, if the signal from the urine detection sensor 7 exceeds a threshold, it is determined that someone is urinating, indicating successful collection. After successful urine collection, the detection element 6 is immediately or after a delay retracted into the detection element box 61.

[0081] In some embodiments, the urine test toilet displays the current step of the urine test process or the results of health monitoring test indicators via a display system. This allows users to easily view the urine test steps.

[0082] In some embodiments, the urine test toilet uses an identity recognition system to bind and store the identified identity with the test results one by one.

[0083] The implementation principle of the urine testing toilet in Embodiment 2 of this application is as follows: by judging the failure of each step during use, a reset procedure is entered. After the qualified conditions are met, the urine test is performed again, automatically resolving abnormal problems in the test, so that the test can be completed smoothly and the reliability of the test data can be guaranteed.

[0084] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A workflow for a urine testing toilet, characterized in that: The toilet has a water seal with a detection hole at the water seal; the urine testing device has a detection element and a plug, the detection element can extend from the detection hole of the toilet to collect urine, and the plug is used to seal the detection hole; The workflow includes the following: S1: The motherboard receives the urine test command and begins to check the status of the urine test device and / or the toilet. S2: If the status test is qualified, proceed to the urine test procedure and start the water seal emptying procedure to ensure that the water seal liquid level is not higher than the detection hole of the toilet. S3: After the water seal clearance procedure is successful, move the plug to open the test hole; S4: Move the detection element to the urine collection location; S5: Begin collecting urine by rinsing the detection element with urine; S6: After urine collection is completed, wait for the detection element to react. After the reaction, move the detection element to the data acquisition position and collect the reaction data. S7: After data acquisition is complete, execute the reset procedure; The detection element consists of a detection element box and a detection part, wherein the detection part is telescopically movable and disposed within the detection element box; S4 also includes: extending the detection element box of the detection element into the detection hole to seal the detection hole, and pushing the detection part out of the detection element box to the position for collecting urine; The movement of the plug is driven by a drive component, the speed of which is adjustable. During the plug recovery process, the drive component slows down before the plug leaves the detection hole sealing position and speeds up after the plug leaves the detection hole sealing position; or the drive component speeds up before the plug enters the plug storage position and slows down when the plug enters the plug storage position. And / or, the movement of the detection element is driven by a drive member, the speed of which is adjustable; the drive member operates at a fast speed when it drives the detection element out of the detection element compartment or before it extends the detection element to the urine collection position; the drive member operates at a slow speed when it drives the detection part of the detection element to extend out of the detection element box.

2. The workflow of a urine testing toilet according to claim 1, characterized in that: The urine testing procedure ends when the urine testing device and / or toilet are found to be in an unqualified state. The unqualified state of the urine testing device includes situations where the device is not properly installed; the unqualified state of the toilet includes situations where the toilet is in use.

3. The workflow of a urine testing toilet according to claim 1, characterized in that: The urine test toilet uses a water seal level detection sensor to detect the water level. The water level is set to a threshold height that is not higher than the detection hole. If the water seal level is higher than the threshold height, the water seal is considered to have failed to be cleared. If the water seal level is lower than or equal to the set threshold height, the water seal is considered to have been cleared successfully.

4. The workflow of a urine testing toilet according to claim 1, characterized in that: In step S3, during the process of moving the plug to open the detection hole; or, in step S4, during the process from selecting the detection element to moving it to the urine collection position, if the toilet is detected to be in use, the urine test procedure is interrupted, the plug is reset, the detection hole is sealed with the plug, the water seal is filled with a brush, and finally the urine test ends; or the detection hole is sealed with the detection element, the water seal is filled with a brush, and finally the urine test ends.

5. The workflow of a urine testing toilet according to claim 1, characterized in that: In step S4, before the detection element reaches the location for collecting urine, the sterilization or drying system of the ceramic pot surface is activated.

6. The workflow of a urine testing toilet according to claim 1, characterized in that: In step S6, after urine collection is completed, a second water seal emptying procedure is performed. After the water seal is emptyed, wait for the detection element to react.

7. The workflow of a urine testing toilet according to claim 6, characterized in that: In step S1, if the first water seal clearing procedure fails, the water seal is replenished by brushing the ring, and the urine test ends; in step S6, if the second water seal clearing procedure fails, the third water seal clearing procedure is executed; if the third water seal clearing procedure succeeds, the reset procedure is started; if the third water seal clearing procedure fails, the plug is used to seal the detection hole, prompting the user to test the equipment or prompting the user to report a repair.

8. The workflow of a urine testing toilet according to claim 1, characterized in that: In step S6, after the detection part of the detection element has completed its reaction, the detection part of the detection element is first pushed to the urine collection position, then pulled back into the detection element box to drain the excess urine from the detection part, and then the reaction data collection begins.

9. The workflow of a urine testing toilet according to claim 1, characterized in that: In step S6, during the data collection process, if the toilet is detected to be in use, If the urine test procedure or reaction data collection procedure is interrupted, the detection element and / or plug are reset, the plug is used to seal the detection hole, the water seal is filled with a brush ring, and the urine test is ended; or the detection element is extended again to seal the detection hole, and the reset procedure is executed after the toilet is no longer in use.

10. The workflow of a urine testing toilet according to claim 1, characterized in that: The reset procedure includes pulling back the extended detection element, repositioning the plug back into the detection hole, and closing the detection hole; then replenishing water to the brush ring or performing a flushing function to end the detection and restore the toilet to normal function.

Citation Information

Patent Citations

  • Intelligent urinalysis method for 5G intelligent toilet

    CN113884669A

  • Closestool

    CN117403751A

  • Health monitoring apparatus and health monitoring toilet

    WO2024012494A1