Urinalysis closestool for urine pouring detection

By using a calibration element to obtain calibration values ​​in a urine testing toilet and determining preset values, the accuracy problem of smart toilet testing systems is solved, resulting in more reliable health testing results.

CN223679176UActive Publication Date: 2025-12-16XIAMEN R&T PLUMBING TECH
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Patent Information

Application Number
CN202520316493.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-12-16
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

The accuracy of existing health detection systems for smart toilets is insufficient due to batch differences in lighting components and sensors, as well as the influence of installation location and environmental factors.

Method used

The urine test toilet uses a calibrator to obtain a calibration value before testing, determines a preset value, and uses a photoelectric sensor to collect information from the calibration and acquisition elements. The test value is then compared with the preset value, and the test result is output.

Benefits of technology

This improves the accuracy of health testing and ensures the reliability and precision of test results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of intelligent closestools, and provides a urinalysis closestool for urine pouring detection, which comprises a closestool body, a detection assembly and a urinalysis device, the closestool body is provided with a detection hole; the detection assembly comprises a photoelectric sensor; the urinalysis device comprises a container body and a calibration element, the container body is provided with a containing cavity for storing a collection element, and the collection element can stretch out of the detection hole to collect excrement; wherein when the calibration element moves to a detection position corresponding to the detection assembly, the detection assembly can collect information on the calibration element through the photoelectric sensor and obtain a calibration value, and a preset value is determined according to the calibration value; when the acquisition element moves to a detection position corresponding to the detection assembly, the detection assembly can acquire information on the acquisition element through the photoelectric sensor and obtain a detection value; and after comparing the detection value with the preset value, outputting a detection result. Based on this, more accurate health detection information can be provided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of intelligent toilet, in particular to a urine test toilet for urine detection. BACKGROUND

[0002] The intelligent toilet not only has the basic function of cleaning excrement of the traditional toilet, but also integrates advanced health detection technology to obtain the health information of the user through the detection system. The detection system combines light and sensor technology. When the detection system is operating, light of a specific wavelength is emitted by the light source and accurately irradiates the area containing the test agent and the excrement reaction. In this reaction area, the specific components in the excrement and the test agent undergo a chemical reaction, causing changes in light absorption, reflection or scattering characteristics. The sensor captures the changed reflected light and converts it into a corresponding electrical signal. In order to evaluate the health status of the user, the system compares the calculated detection value with the pre-set health index threshold (preset value) to help judge the index information of the specified material content of the detector.

[0003] However, due to slight changes in the production process, different batches of light components and sensors may have performance differences, which may cause the detection results of the same excrement sample on different batches of equipment to be biased; the installation position, angle of the detection system and the interaction with environmental factors may affect the interaction efficiency of light and sensors, thereby affecting the accuracy of the detection results.

[0004] Therefore, how to provide more accurate health detection information is a problem to be solved. CONTENT OF THE UTILITY MODEL

[0005] In order to provide more accurate health detection information, the present application provides a urine test toilet for urine detection.

[0006] The urine test toilet for urine detection provided by the present application adopts the following technical solution:

[0007] A urine test toilet for urine detection, comprising a toilet body, a detection assembly and a urine test device;

[0008] The toilet body has a detection hole;

[0009] The detection assembly comprises a photoelectric sensor;

[0010] The urine test device comprises a container body and a calibration element, the container body has a containing cavity for storing a collection element, and the collection element can extend out of the detection hole to collect excrement;

[0011] When the calibration element moves to a detection position corresponding to the detection assembly, the detection assembly can acquire information on the calibration element through the photoelectric sensor and obtain a calibration value, and the preset value is determined according to the calibration value.

[0012] When the acquisition element moves to a detection position corresponding to the detection assembly, the detection assembly can acquire information on the acquisition element through the photoelectric sensor and obtain a detection value; after comparing the detection value with the preset value, a detection result is output.

[0013] By using the above technical solution, the calibration element obtains a calibration value before detection, the preset value is determined according to the calibration value, the reliability of the detection result is ensured, the system compares the detection value with the preset value after detection, and the detection result is output according to the comparison result, so that more accurate health detection information can be provided.

[0014] Optionally, the calibration element has a calibration area, the photoelectric sensor identifies the light signal returned from the calibration area and converts it into an electrical signal, and then the calibration value is obtained, and the preset value is obtained by algorithm conversion according to the calibration value; the calibration area is white.

[0015] By using the above technical solution, the calibration area is white, white can reflect stable and high-intensity light signals, so that the light signals can be more accurately captured by the photoelectric sensor in the detection assembly and converted into electrical signals as the calibration value.

[0016] Optionally, the calibration value has a preset interval, and there is an initial preset value corresponding thereto; if the calibration value is less than the preset interval, the initial preset value is reduced by a compensation value to obtain a new preset value; if the calibration value is greater than the preset interval, the initial preset value is added by a compensation value to obtain a new preset value.

[0017] Optionally, the calibration element and the acquisition element are independently arranged; or, the calibration element is arranged on the acquisition element.

[0018] Optionally, it further comprises a plugging element for sealing the detection hole; the calibration element, the acquisition element and the plugging element are independently arranged; or, the acquisition element is independently arranged, and the calibration element is arranged on the plugging element; or, the plugging element is independently arranged, and the calibration element is arranged on the acquisition element.

[0019] Optionally, after determining the preset value once, the acquisition element is used for detection several times; or, the preset value is determined once, and the acquisition element is used for detection once.

[0020] Optionally, after the detection assembly collects a plurality of the collection elements, the detection assembly must collect the calibration element once to re-determine the preset value before it can continue to collect the collection elements; or, after the detection assembly collects one collection element, the detection assembly must collect the calibration element once to re-determine the preset value before it can continue to collect the collection elements.

[0021] Optionally, the container body is detachably arranged, and each time the container body is detached or installed, the calibration element must be moved to the detection position to confirm the preset value before the detection assembly can detect the collection element.

[0022] Optionally, it further comprises a start button for starting the urine test of the closestool, the calibration element can be moved to the detection position to confirm the preset value after the start button is started once or multiple times; and / or, it further comprises a timing module, the calibration element can be moved to the detection position to confirm the preset value after the timing module is timed for a preset time.

[0023] Optionally, the collection element comprises a shell, a support and a color block, the color block is arranged on the support and sealed in the shell, and the shell contains a desiccant.

[0024] Optionally, the collection element comprises a shell, a support and a color block, each color block corresponds to at least one initial preset value, the color block is arranged on the support and sealed in the shell, the color block is arranged along the support in a plurality of ways, each color block is a detection area and is used in turn to collect the detection value for the detection assembly; and / or, the color block is arranged in at least two rows, each row is arranged with at least two detection areas, and the photoelectric sensor can collect signals of one color block or multiple color blocks.

[0025] In summary, the present application has the following beneficial technical effects:

[0026] 1. The calibration element obtains the calibration value before detection, and then determines the preset value according to the calibration value, to ensure the reliability of the detection result, the collection element collects the excrement and obtains the detection value after detection, the system compares the detection value with the preset value, outputs the detection result according to the comparison result, and thus more accurate health detection information can be provided;

[0027] 2. The calibration element has a white calibration area, the white color can reflect stable and high-intensity light signals, so that the light signals can be more accurately captured by the photoelectric sensor in the detection assembly and converted into electrical signals as the calibration value. BRIEF DESCRIPTION OF DRAWINGS

[0028] In order to make the technical solutions in the embodiments of the present application or the prior art clearer, the accompanying drawings needed in the embodiments or prior art description will be briefly introduced. Obviously, the accompanying drawings in the following description only only some embodiments of the present application, and for those skilled in the art, other embodiments can be obtained without creative labor on the basis of these drawings.

[0029] In the drawings:

[0030] Figure 1 is the state diagram of the blocking element in the urine detection toilet of the urine detection of the embodiment of the present application in the detection hole position;

[0031] Figure 2 is the state diagram of the collection element in the urine detection toilet of the urine detection of the embodiment of the present application in the detection position;

[0032] Figure 3 is the schematic diagram of the relationship between the calibration value, the preset value and the detection value in the urine detection toilet of the urine detection of the embodiment of the present application;

[0033] Figure 4 is the cross-sectional view of the calibration element in the urine detection toilet of the urine detection of the embodiment of the present application;

[0034] Figure 5 is the flowchart when the calibration element, the collection element and the blocking element are independently set in the urine detection toilet of the urine detection of the embodiment of the present application;

[0035] Figure 6 is the cross-sectional view of the collection element in the urine detection toilet of the urine detection of the embodiment of the present application in the storage state;

[0036] Figure 7 is the cross-sectional view of the calibration element in the urine detection toilet of the urine detection of the embodiment of the present application when the calibration element is set on the collection element;

[0037] Figure 8 is the state diagram of the collection element in the urine detection toilet of the urine detection of the embodiment of the present application when collecting the excretion;

[0038] Figure 9 is the state diagram of the collection element in the urine detection toilet of the urine detection of the embodiment of the present application in the detection hole position;

[0039] Figure 10 A is the cross-sectional view of the blocking element in the urine detection toilet of the urine detection of the embodiment of the present application;

[0040] Figure 10 B is the cross-sectional view of the calibration element in the urine detection toilet of the urine detection of the embodiment of the present application when the calibration element is set on the blocking element.

[0041] Label: 1, collection element; 101, shell; 102, support; 103, color block; 2, driving element; 3, closestool body; 4, detection hole; 5, container body; 6, calibration element; 7, detection assembly; 8, plugging element. DETAILED DESCRIPTION

[0043] The following will be described in detail in combination with the accompanying Figures 1-10 The application is further described in detail.

[0044] The application discloses a urine test closestool for urination detection. Referring to Figure 1 The urine test closestool for urination detection comprises a closestool body, a detection assembly and a urine test device. The closestool body has a detection hole. The detection assembly comprises a photoelectric sensor. The urine test device comprises a container body and a calibration element. The container body has a containing cavity for storing a collection element. The collection element can extend out of the detection hole to collect excrement. The urine test device further comprises a driving element which can be composed of a motor and a gear set. The driving element is used to drive the collection element to move.

[0045] When the calibration element moves to a detection position corresponding to the detection assembly, the detection assembly can collect information on the calibration element through the photoelectric sensor and obtain a calibration value. According to the calibration value, a preset value can be determined. Generally, the larger the calibration value, the larger the preset value. In combination Figure 2 When the collection element moves to a detection position corresponding to the detection assembly, the detection assembly can collect information on the collection element through the photoelectric sensor and obtain a detection value. After comparing the detection value with the preset value, a detection result is output. The calibration element is used to obtain a calibration value before detection to determine a preset value, thereby ensuring the reliability of the detection result.

[0046] Referring to Figure 4 In this embodiment, the calibration element has a calibration area. The photoelectric sensor is used to identify a light signal returned from the calibration area and convert the light signal into an electrical signal, thereby obtaining a calibration value. According to the calibration value, a preset value is obtained through internal calibration. The calibration area is white. White can reflect a stable and high-intensity light signal, so that the light signal can be more accurately captured by the photoelectric sensor in the detection assembly and converted into an electrical signal as a calibration value.

[0047] In the embodiment, the preset value is obtained by algorithm conversion according to the calibration value, the calibration value has a preset interval, and the initial preset value is obtained according to the calibration value. If the calibration value is less than the preset interval, the initial preset value is subtracted by a compensation value to obtain a new preset value. If the calibration value is greater than the preset interval, the initial preset value is added by a compensation value to obtain a new preset value. In other embodiments, the initial preset value can not be provided, and the preset value is directly obtained in the calibration process. Specifically, refer to Figure 3 , the calibration value has a preset interval, which is

A-B; A+B

[0048] In the embodiment, the preset value is determined by the calibration value once, and the acquisition element is detected several times; or, the preset value is determined by the calibration value once, and the acquisition element is detected once.

[0049] In the embodiment, after the detection assembly acquires several acquisition elements, the detection assembly must acquire the calibration element once to redetermine the preset value before continuing to acquire the acquisition element; or, after the detection assembly acquires an acquisition element, the detection assembly must acquire the calibration element once to redetermine the preset value before continuing to acquire the acquisition element.

[0050] In the embodiment, the container body is detachably arranged. After the container body is detached or installed once, the calibration element is moved to the detection position to obtain a calibration value to confirm the preset value, and then the detection assembly can detect the acquisition element.

[0051] In the embodiment, the urine test toilet for urinating detection further comprises a start button, the start button is used to start the urine test of the toilet, the start button is started once or multiple times, and the calibration element can be moved to the detection position to confirm the preset value; and / or, further comprising a timing module, the calibration element can be moved to the detection position to confirm the preset value after the timing module is timed for a preset time.

[0052] Refer to Figure 6 In the embodiment, the detection element acquisition element comprises a shell, a support and a color block. Each color block corresponds to at least one initial preset value. The color block is arranged on the support and sealed in the shell. The color block is arranged along the support. Each color block is a detection area. The color block is used for the detection assembly to acquire detection values in sequence by the driving element. And / or, the color block is arranged in at least two rows, and each row is arranged with at least two detection areas. The photoelectric sensor can acquire signals of one color block or multiple color blocks.

[0053] In the embodiment, referring to Figure 6 , the color block is stored in the shell when the collection element is in the storage state; referring to Figure 9 , the color block is extended out of the shell to collect the excrement when the collection element is in the detection hole position; referring to Figure 2 , the color block is sealed in the shell when the collection element is in the detection position, the shell is transparent, and the detection assembly can collect the signal of the color block through the shell.

[0054] Referring to Figure 1 , in the embodiment, the urine test toilet for urinating detection further comprises a blocking element, and the blocking element is used to seal the detection hole.

[0055] In the embodiment, the container body has a plurality of accommodation cavities, and the calibration element, the collection element and the blocking element are independently arranged and can be stored in the plurality of accommodation cavities. Referring to Figure 5 , when the calibration element, the collection element and the blocking element are independently arranged in the accommodation cavities, the working process is as follows:

[0056] S11, the driving element drives the blocking element to move away from the detection hole, and the sealing of the detection hole is released, and then the blocking element can be withdrawn into the accommodation cavity;

[0057] S12, the driving element first drives the calibration element to the detection position, the detection assembly collects the electrical signal returned by the calibration element to obtain a calibration value, and the preset value is determined according to the calibration value;

[0058] S13, the driving element drives the collection element to collect the excrement, and then the collection element returns to the detection position to collect a detection value, the detection value is compared with the preset value, and a detection result is output;

[0059] S14, finally, the collection element returns to the container body, and the driving element drives the blocking element to return to the detection hole position to seal the detection hole.

[0060] In other embodiments, when the calibration element is arranged on the collection element, the blocking element is independently arranged. The working process is as follows:

[0061] S21, the driving element drives the blocking element to move away from the detection hole, and then the driving element drives the collection element to be located in the detection position first, the detection assembly collects the calibration value of the calibration element on the collection element, and the preset value is confirmed according to the calibration value;

[0062] S22, the driving element drives the bracket of the collection element to drive the color block to move to the detection hole position to collect the excrement;

[0063] S23, the collection element returns to the detection position to collect a detection value, and a detection result is output; finally, the collection element returns to the container body.

[0064] In other embodiments, referring toFigure 1 with Figure 10 , the collection element is independently arranged, when the calibration element is arranged on the blocking element, the working process is the following steps:

[0065] S31: the blocking element first seals the detection hole at the detection hole position;

[0066] S32: the driving element drives the blocking element to move from the detection hole to the detection position, the detection assembly collects the calibration value of the calibration element on the blocking element, and confirms the preset value according to the calibration value;

[0067] S33: the driving element drives the blocking element to move from the detection position to the storage in the container body again;

[0068] S34: the driving element drives the collection element to move from the container body to the detection hole position, collects the excrement, and then moves to the detection position to collect the detection value, compares the detection value with the preset value, and outputs the detection result;

[0069] S35: the driving element drives the collection element to return to the storage in the container body, and moves the blocking element from the container body to the sealing detection hole position to seal the detection hole.

[0070] Alternatively, the working process further includes the following steps: S41, the blocking element first seals the detection hole at the detection hole position, the driving element drives the blocking element to the detection position to collect the calibration value, and confirms the preset value according to the calibration value; S42, finally, the blocking element returns to the sealing position to seal the detection hole.

[0071] In other embodiments, the urine test toilet for urination detection further comprises an emptying water seal assembly for lowering the height of the ceramic water seal surface below the detection hole; a flushing assembly for washing the ceramic pot surface and filling the ceramic water seal;

[0072] When the detection hole is below the water seal liquid surface, the following working steps are included:

[0073] S51: emptying the water seal assembly to make the water seal surface below the detection hole;

[0074] S52: the driving element drives the blocking element into the container body to release the sealing of the detection hole;

[0075] S53: the driving element drives the calibration element to the detection position, and the collection element acquires the calibration value to determine the preset value;

[0076] S54: the driving element drives the collection element to the detection hole position to collect the excrement;

[0077] S55: the driving element drives the collection element to the detection position to collect the detection value and output the detection result;

[0078] S56: the driving element drives the collecting element back into the container body, and the blocking element seals the detection hole;

[0079] S57: the flushing assembly washes the ceramic and replenishes the water seal.

[0080] The implementation principle of the urine detection toilet according to the embodiment of the application is as follows: a calibration element is used to obtain a calibration value before detection, and then a preset value is determined; the larger the calibration value is, the larger the preset value is, so as to ensure the reliability of the detection result; after detection, the system compares the detection value with the preset value, and outputs the detection result according to the comparison result, so as to provide more accurate health detection information.

[0081] The above is the exemplary embodiment disclosed by the application, but it should be noted that various changes and modifications can be made without departing from the scope of the embodiments disclosed by the application defined in the claims. The functions, steps and / or acts of the method claims described herein need not be performed in any particular order. Furthermore, although the elements of the embodiments disclosed by the application can be described or claimed in individual form, unless explicitly restricted, they can also be implemented in multiple forms.

[0082] It should be understood that, as used herein, the singular forms "a", "an" and "the" are intended to include plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms "comprises" and / or "comprising", when used in this specification, specify the presence of stated features, integers, steps, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups thereof. The embodiment number of the embodiments disclosed by the application above is only for description, and does not represent the advantages and disadvantages of the embodiments.

[0083] Those skilled in the art should understand that the above discussion of any embodiment is only exemplary, and is not intended to limit the scope of the embodiments disclosed by the application (including the claims) to these examples; under the idea of the embodiments disclosed by the application, the technical features of the above embodiments or different embodiments can also be combined, and there are many other changes of different aspects of the embodiments disclosed by the application as above. In order to be brief, they are not provided in details. Therefore, any omission, modification, equivalent replacement, improvement, etc. made in the spirit and principle of the embodiments disclosed by the application should be included in the protection scope of the embodiments disclosed by the application.

Claims

1. A dipstick toilet for the detection of urination, characterized in that: The toilet body, the detection assembly and the urine testing device are included. The toilet body has a detection hole. The detection assembly includes a photoelectric sensor. The urine testing device includes a container body and a calibration element, the container body has a containing cavity for storing a collection element, and the collection element can extend out of the detection hole to collect excrement. When the calibration element moves to a detection position corresponding to the detection assembly, the detection assembly can collect information on the calibration element through the photoelectric sensor and obtain a calibration value, and a preset value can be determined according to the calibration value. When the collection element moves to a detection position corresponding to the detection assembly, the detection assembly can collect information on the collection element through the photoelectric sensor and obtain a detection value, and a detection result can be output after comparing the detection value with the preset value.

2. A urine testing toilet for detecting urination according to claim 1, characterized in that: The calibration element has a calibration area, the photoelectric sensor can identify a light signal returned from the calibration area and convert it into an electrical signal, and then a calibration value can be obtained, and a preset value can be obtained by algorithm conversion according to the calibration value; the calibration area is white.

3. A urine testing toilet for shower urination detection according to claim 2, characterized in that: The calibration value has a preset interval, and there is an initial preset value corresponding to the preset interval, if the calibration value is less than the preset interval, the initial preset value is reduced by a compensation value to obtain a new preset value, if the calibration value is greater than the preset interval, the initial preset value is added by a compensation value to obtain a new preset value.

4. The urine test toilet for urination detection according to claim 1, characterized in that: The calibration element and the collection element are relatively independently arranged; or the calibration element is arranged on the collection element.

5. The urine testing toilet for urinating detection according to claim 1, characterized in that: It further includes a blocking element for sealing the detection hole; the calibration element, the collection element and the blocking element are relatively independently arranged; or the collection element is independently arranged, and the calibration element is arranged on the blocking element; or the blocking element is independently arranged, and the calibration element is arranged on the collection element. After the preset value is determined once, the collection element is used for detection several times; or the preset value is determined once, and the collection element is used for detection once.

6. A urine testing toilet according to claim 1, wherein: After the detection assembly collects several collection elements, the detection assembly must collect the calibration element once to redetermine the preset value before continuing to collect the collection element.

7. A urine testing toilet according to claim 6, wherein: Or, after the detection assembly collects one collection element, the detection assembly must collect the calibration element once to redetermine the preset value before continuing to collect the collection element. The container body can be detachably arranged, and after the container body is detached or installed once, the calibration element moves to the detection position to confirm the preset value, and then the detection assembly can detect the collection element.

8. The urine test toilet for shower for detecting urination according to claim 1, wherein: It further includes a start button for starting urine testing of the toilet, the calibration element can move to the detection position to confirm the preset value after the start button is started once or multiple times; and / or, it further includes a timing module, the calibration element can move to the detection position to confirm the preset value after the timing module is timed for a preset time.

9. The urine test toilet for shower for detecting urination according to claim 1, wherein: ​ 10. The urine testing toilet according to claim 1, wherein: The collecting element comprises a shell, a support and color blocks, each color block corresponds to at least one initial preset value, the color blocks are arranged on the support and sealed in the shell, a plurality of color blocks are arranged along the support, each color block is a detection area and is used for collecting detection values for the detection assembly in sequence; and / or, the color blocks are arranged in at least two rows, at least two detection areas are arranged in each row, and the photoelectric sensor can collect signals of one color block or a plurality of color blocks.