Portable urine flow detection equipment

By designing a portable urine flow detection device, the problems of existing instruments requiring external power supply and insufficient wireless transmission are solved. The device achieves independent power supply and wireless data transmission, enhancing its portability and applicability to telemedicine.

CN223653836UActive Publication Date: 2025-12-12FERVID MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202422420225.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-12-12
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

Existing urine flow monitoring instruments require an external power supply and lack wireless transmission capabilities, resulting in insufficient portability and flexibility. They cannot achieve real-time data synchronization and remote monitoring, thus limiting their application in mobile testing and telemedicine.

Method used

A portable urine flow detection device has been designed, which includes a detachable detection platform and installation device, and is equipped with a battery compartment, data storage component, printing component and remote transmission component. It supports independent power supply and wireless data transmission, and realizes real-time data visualization and storage.

Benefits of technology

It enhances the portability and operational continuity of the device, supports continuous operation in environments without power, realizes real-time data transmission and remote diagnosis and treatment capabilities, and expands the application scenarios, especially its applicability in telemedicine and multi-point data transmission.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of medical instruments, and discloses a portable urine flow detection device which comprises a detection table and an installation device which are detachably connected, the installation device is a trolley or a seat, a detection main machine support and a trolley support are separated through the detachable split support design, and the detection main machine support and the trolley support are connected in a detachable mode. The device can be used for detection of female patients anytime and anywhere only through the host support, can achieve a unisex function on one device at the same time, can also facilitate detection of the female patients anytime and anywhere, integrates sitting posture detection of male and female patients and standing posture detection of male patients, and is convenient to use due to the function. The portable urine flow detection equipment can be conveniently and quickly popularized and used in different departments such as the birth and health center, the anorectal department, the obstetrics and gynecology department, the rehabilitation department and the physiotherapy department, and the worry of users on different use scenes is eliminated; meanwhile, due to the detachable design, the process assembly mode of the portable urine flow detection equipment is simpler, the manufacturing period can be shortened, and the manufacturing cost can be reduced.
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Description

Technical Field

[0001] This utility model relates to the field of medical device technology, and in particular to a portable urine flow detection device. Background Technology

[0002] Portable urine flow rate monitoring devices are suitable for plotting lower urinary tract urodynamic curves and measuring parameters such as maximum urine flow rate, average urine flow rate, voiding time, and voiding volume. It is a simple, non-invasive, and repeatable method for assessing lower urinary tract diseases. It can help diagnose common diseases such as benign prostatic hyperplasia, urethral stricture, and urinary incontinence, as well as monitor disease progression and treatment effectiveness, and guide the selection and adjustment of treatment plans.

[0003] Existing urine flow meters typically rely on wired connections or complex procedures to export data, making data transmission and processing cumbersome. Many devices also lack wireless transmission capabilities, hindering real-time data synchronization and remote monitoring. This significantly limits the usability of these devices for healthcare professionals who need to quickly view and process test results, especially in telemedicine or multi-point data transmission applications. Furthermore, most existing urine flow meters require an external power source to operate, restricting their use in environments without power or with inconvenient power access. This limits their applicability in mobile testing, outdoor testing, or home healthcare services. For scenarios requiring frequent relocation or providing healthcare services in remote areas, this design reduces the flexibility and convenience of the devices.

[0004] Therefore, a portable urine flow detection device is proposed to solve the above problems. Utility Model Content

[0005] The main objective of this invention is to provide a portable urine flow detection device, which aims to solve the problem that existing urine flow detection instruments are not portable due to the need for an external power supply and the defects in wireless transmission.

[0006] To achieve the above-mentioned utility model objectives, this utility model proposes a portable urine flow detection device, including a detection platform and an installation device for mounting the detection platform. The detection platform and the installation device are detachably connected. The detection platform includes a detection host and a detection bracket. The detection host is electrically connected to a weighing unit in the detection bracket.

[0007] The detection host is equipped with a battery compartment, control components, data storage components, and remote transmission components;

[0008] A battery compartment containing a removable power supply for powering the detector;

[0009] A printing component, electrically connected to both the control component and the data storage component, is used to print detection data.

[0010] A remote transmission component, electrically connected to the control component, is used to transmit detection data to an external data receiving device.

[0011] Furthermore, the detection bracket is made of plastic and includes a bracket body, which is electrically connected to the weighing unit.

[0012] Furthermore, the detection bracket is provided with an elastic positioning pin and a threaded hole, and the mounting device is provided with a positioning hole and a locking screw. When the elastic positioning pin is engaged with the positioning hole, the locking screw is bolted to the threaded hole.

[0013] Furthermore, the testing station also includes a urine collection unit, which is electrically connected to the main testing unit. The urine collection unit includes a urine collection cup and a cup sleeve, with the urine collection cup and the cup sleeve fitting together.

[0014] Furthermore, the testing platform also includes a funnel, the testing bracket is provided with a placement ring, the funnel is placed inside the placement ring, and the placement ring is provided with an inclined surface.

[0015] Furthermore, an anti-slip pad is provided at the connection between the testing bracket and the installation device, and a hand rest is provided on the side of the testing bracket near the testing host.

[0016] Furthermore, the installation device is a trolley, including a connecting block, a column and a movable base. The connecting block is detachably connected to the detection bracket, and the column is located between the connecting block and the movable base.

[0017] Furthermore, the column and the movable base are made of aluminum alloy.

[0018] Furthermore, the installation device is a chair, which includes a folding chair. The folding chair is located below the testing table and cooperates with the testing table.

[0019] Furthermore, the folding chair is equipped with an air cushion.

[0020] Beneficial effects:

[0021] This utility model discloses a portable urine flow detection device, including a testing platform and an installation device, which are detachably connected. The main unit includes a battery compartment for housing batteries, a data storage component, a printing component, and a remote transmission component. After urine flow detection is completed, the control component processes the data, and the data storage component stores the detected data in the cloud for backup. If printing is required, the printing component prints the test data. The remote transmission component is used to connect to an external data receiving device. The independent battery compartment and external power cord design ensure that the device can operate continuously even in environments without a power outlet or with unstable power. Combined with the remote transmission component, which connects to an external data receiving device, the test data can be immediately transmitted to an APP, enabling real-time data visualization and storage for convenient viewing and analysis by users or doctors. It also allows the device to work remotely from a power source or network and instantly transmit data to mobile devices, such as mobile phones and tablets, making the device's application scenarios more extensive and enhancing its applicability in remote medical care. Combining these two features, the device not only has better portability and continuous operation but also enhances the real-time data transmission and remote diagnosis capabilities. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the assembly of a stationary portable urine flow detection device according to an embodiment of the present invention;

[0023] Figure 2 This is an exploded view of a stationary portable urine flow detection device according to an embodiment of the present invention. Figure 1 ;

[0024] Figure 3 This is an exploded view of a stationary portable urine flow detection device according to an embodiment of the present invention. Figure 2 ;

[0025] Figure 4 This is a partially enlarged schematic diagram of a portable urine flow detection device trolley according to an embodiment of the present invention. Figure 1 ;

[0026] Figure 5 This is a partially enlarged schematic diagram of a portable urine flow detection device trolley according to an embodiment of the present invention. Figure 2 ;

[0027] Figure 6 This is a partially enlarged schematic diagram of the bracket of a portable urine flow detection device according to an embodiment of the present invention;

[0028] Figure 7 This is an assembly diagram of a seated portable urine flow detection device according to an embodiment of the present invention. Figure 1 ;

[0029] Figure 8This is an assembly diagram of a seated portable urine flow detection device according to an embodiment of the present invention. Figure 2 ;

[0030] Figure 9 This is a flowchart illustrating the operation method of a portable urine flow detection device according to an embodiment of the present invention.

[0031] in:

[0032] 100. Testing table; 101. Testing unit; 102. Support frame;

[0033] 1021. Bracket body; 10212. Placement ring; 10213. Threaded hole; 10214. Mounting hole; 10215. Elastic positioning pin; 10216. Anti-slip pad; 10217. Hand rest;

[0034] 1022. Weighing unit;

[0035] 103. Urine collection unit; 1031. Urine cup; 1032. Cup sleeve;

[0036] 104. Funnel;

[0037] 200, trolleys;

[0038] 201. Connecting block; 2011. Connecting plate; 2012. Locking screw; 2013. Mounting pin; 2014. Positioning hole;

[0039] 202. Column;

[0040] 203. Movable base;

[0041] 300. Chair;

[0042] 301, Folding chair; 3011, Air cushion;

[0043] 302. Installation ring;

[0044] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0045] It should be understood that the specific embodiments described herein are merely illustrative of the present invention and are not intended to limit the present invention.

[0046] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description. They do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of the stated features. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly and specifically defined.

[0047] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection, a direct connection, or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0048] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0049] Reference Figures 1 to 6A portable urine flow detection device according to a utility model includes a detection platform 100 and an installation device. The detection platform 100 is detachably connected to the installation device. The detection platform 100 includes a detection host 101, a urine collection unit 103, a detection bracket 102, and a funnel 104. The detection host 101 is located at one end of the detection bracket 102 and is electrically connected to the detection bracket 102. The funnel 104 is located at the other end of the detection bracket 102. The urine collection unit 103 is located below the funnel 104 and is electrically connected to the detection bracket 102.

[0050] The device includes a testing platform and an installation device for mounting the testing platform. The testing platform and the installation device are detachably connected. The testing platform includes a testing host and a testing bracket. The testing host 101 is electrically connected to the weighing unit 1022 in the testing bracket 102.

[0051] The detection host is equipped with a battery compartment, control components, data storage components, and remote transmission components;

[0052] A battery compartment containing a removable power supply for powering the detector;

[0053] A data storage component, electrically connected to the control component, is used to store detection data;

[0054] A printing component, electrically connected to both the control component and the data storage component, is used to print detection data.

[0055] A remote transmission component, electrically connected to the control component, is used to transmit detection data to an external data receiving device;

[0056] The detection bracket 102 is provided with an elastic positioning pin 10214 and a threaded hole 10212, and the mounting device is provided with a positioning hole 2014 and a locking screw 2012. When the elastic positioning pin 10214 is engaged with the positioning hole 2014, the locking screw 2012 is bolted to the threaded hole 10212.

[0057] The detection bracket 102 is made of plastic and includes a bracket 102 body. The bracket 102 body is electrically connected to the weighing unit 1022.

[0058] The urine collection unit 103 includes a urine collection cup 1031 and a cup sleeve 1032, wherein the urine collection cup 1031 is sleeved with the cup sleeve 1032.

[0059] The detection bracket 102 is provided with a placement ring 10211, and the placement ring 10211 is provided with an inclined surface;

[0060] An anti-slip pad 10215 is provided at the connection between the testing bracket 102 and the installation device, and a hand rest 10216 is provided on the side of the testing bracket 102 near the testing host 101.

[0061] The portable urine flow rate testing device comprises two components: a testing platform 100 and an installation device. In this embodiment, the installation device is a trolley 200. The testing platform 100 and the trolley 200 are detachably connected. Through the design of a detachable split bracket 102, the testing platform 100 and the trolley 200 bracket 102 can be separated. The testing platform 100 alone can be used for testing female patients anytime and anywhere, realizing the function of both men and women on one device. It is also convenient for female patients to conduct testing anytime and anywhere. This product design integrates the sitting posture testing of male and female patients (i.e., sitting) and the standing posture testing of male patients (i.e., standing). Because of this function, it is easy for the portable urine flow rate testing device to be quickly promoted and used in different departments such as maternal and child health centers, proctology departments, obstetrics and gynecology departments, rehabilitation departments, and physiotherapy departments, eliminating users' concerns about different usage scenarios.

[0062] The portable urine flow detection device of this embodiment includes a testing platform 100 and an installation device, which are detachably connected. The main testing unit 101 includes a battery compartment for accommodating batteries, a data storage component, a printing component, and a remote transmission component. After the urine flow detection is completed, the control component processes the data, and the data storage component stores the detected data in the cloud for backup. If printing is required, the printing component prints the test data. The remote transmission component is used to connect to an external data receiving device. The design of the independent battery compartment and external power cord ensures that the device can continue to operate in environments without a power outlet or with unstable power. Combined with the remote transmission component, which connects to an external data receiving device, the test data can be immediately transmitted to an APP, realizing real-time data visualization and storage, which is convenient for users or doctors to view and analyze. At the same time, it also allows the device to work and transmit data to mobile devices, such as mobile phones and tablets, even when it is far from a power source or network, making the device's application scenarios more extensive and enhancing its applicability to remote medical care. Combining these two features, the device not only has better portability and continuous operation, but also enhances the real-time data transmission and remote diagnosis and treatment capabilities.

[0063] In the portable urine flow rate testing device, the main components of the testing platform 100 are: the testing host 101, the support 102, the urine collection unit 103, and the funnel 104. The support 102 consists of two parts: the support 102 body and the weighing unit 1022. The portable urine flow rate testing device detects parameters as follows: as the patient urinates through the funnel 104, the weight of the urine in the urine collection unit 103 changes over time, transmitting the weight signal to the weighing unit 1022. The weighing unit 1022 then transmits the weight signal to the testing host 101. The testing host 101 further converts the received weight signal into digital signals, graphic signals, etc., and finally generates a urine flow rate detection curve, which is then printed out by the printing component in the testing host 101.

[0064] The bracket 102 consists of two parts: the main body of the bracket 102 and the weighing unit 1022. They are assembled by bolts. The bracket 102 is mainly made of plastic. The bottom of the bracket 102 contains an elastic positioning pin 10214, a mounting hole 10213, and a threaded hole 10212. The elastic positioning pin 10214 is made of metal and can be pressed to make it spring up and down. The mounting hole 10213 is racetrack-shaped and can cooperate with the elastic positioning pin 10214. The threaded hole 10212 of the connecting plate 2011 is designed with internal threads of metal.

[0065] The urine collection unit 103 is assembled from a urine collection cup 1031 and a cup sleeve 1032. The urine collection cup 1031 can be a disposable paper cup or a plastic cup. The cup sleeve 1032 is made of plastic. The design of the cup sleeve 1032 can reduce the probability of urine getting on the hands or spilling into the environment when the user moves the urine in the urine collection cup 1031, thus reducing the risk of environmental pollution during product use.

[0066] The bracket 102 has a placement ring 10211 with a slanted design. The funnel 104 is placed on the placement ring 10211. The slanted design serves as a positioning constraint when replacing the funnel 104, reducing the time required for manual adjustment of the funnel 104 opening to be vertically downward, improving usability, and eliminating concerns about the funnel 104 shaking during urine collection, thus improving stability. The funnel 104 can be disposable, facilitating cleaning and maintenance, solving hygiene issues, and is also low in cost.

[0067] The support 102 has a hand rest 10216 on top and an anti-slip pad 10215 on the bottom, which facilitates the handling and transportation of the testing table 100.

[0068] The portable urine flow testing device in this embodiment is made of plastic, making it easy to carry and move. It allows doctors or users to switch between different scenarios as needed. For example, for patients with mobility issues, the device can be easily transported and measured directly in their wards. Or, for doctors in remote towns or clinics who need to make home visits to perform necessary urine flow testing on some elderly patients, the device is particularly useful because the majority of those requiring urine flow testing are middle-aged and elderly people. This portability feature is essential for different scenarios, such as home or outpatient use.

[0069] The dimensions of the testing platform 100 are approximately 490*170*550 mm (length*width*height), with the height of the funnel 104 (i.e., the distance from the contact surface between the funnel 104 and the support 102 to the bottom of the support 102) being approximately 275 mm. The dimensions of the trolley 200 are approximately 400*440*350 mm (length*width*height). The design facilitates transporting the testing platform 100 and trolley 200 in a small car. The dimensions also ensure that after assembly, the height of the urine flow detection button is approximately 900 mm, and the height of the funnel 104 is approximately 625 mm, meeting the height requirements for urination for most male patients. In this embodiment, the trolley 200 can be designed with a slider for height adjustment, or the column 202 can be replaced with a different height to suit patients of varying heights from different countries.

[0070] The testing table 100 and the trolley 200 can be assembled and disassembled in a portable manner. The specific operation is as follows: When assembling, insert the two elastic positioning pins 10214 on the testing table 100 into the two positioning holes 2014 in the trolley 200, adjust the front and rear distance of the testing table 100 on the trolley 200 until the mounting pin 2013 on the trolley 200 can be inserted into the mounting hole 10213 in the testing table 100, and then assemble and lock it by tightening the locking screw 2012 with the threaded hole 10212; when disassembling, simply reverse the assembly sequence.

[0071] The trolley 200 includes a connecting block 201, a column 202 and a movable base 203. The connecting block 201 is detachably connected to the detection bracket 102, and the column 202 is located between the connecting block 201 and the movable base 203.

[0072] The movable base 203 is equipped with casters;

[0073] The column 202 and the movable base 203 are made of aluminum alloy.

[0074] The trolley 200 consists of a connecting block 201, a column 202, and a movable base 203. The column 202 and the movable base 203 are mainly made of metal, such as die-cast aluminum alloy or other metal materials. The movable base 203 includes movable casters. The connecting block 201 includes a connecting plate 2011, a mounting pin 2013, a locking screw 2012, and a positioning hole 2014. The connecting plate 2011 is connected to the mounting hole 10213 of the testing table 100 by a flexible positioning pin 10214 and to the testing table 100 by a bolt to the threaded hole 10212 by the locking screw 2012. The connecting plate 2011 can be made of metal or plastic. The mounting pin 2013 is made of metal and can be pressed to make it spring up and down. The locking screw 2012 is made of metal.

[0075] The installation device is a chair 300, which includes a folding chair 301. The folding chair 301 is located below the testing table 100 and cooperates with the testing table 100.

[0076] The folding chair 301 is equipped with an air cushion 3011.

[0077] Reference Figures 6 to 8 In another embodiment, the portable, seated urine flow testing device mainly consists of a testing platform 100 and a mounting device. In this embodiment, the mounting device is a chair 300, which comprises a folding chair 301 and a mounting ring 302. The folding chair 301 mainly consists of an aluminum alloy body and a plastic seat and armrests. The mounting ring 302 can be made of disposable paper or other fibrous materials that can directly contact the skin. The folding chair 301 has air cushions 3011 at its corners. In this embodiment, the air cushions 3011 are silicone pads. The main function of the silicone pads is to expel the air inside the pads under gravity when the patient sits on the chair. Combined with the contractility of the silicone, this creates negative pressure between the silicone pads and the ground, further increasing the adhesion between the chair and the ground and preventing instability. This design is particularly beneficial for test subjects who have limited access or difficulty sitting, allowing them to urinate alone in a private space without causing doctors or nurses to worry about the patient falling.

[0078] Since the test platform 100 in the stationary portable urine flow testing device can be assembled and disassembled with the trolley 200, the test platform 100 can be placed directly under the seat 300 by moving the side of the folding chair, and the center of the mounting ring 302 of the test platform 100 can be adjusted to be basically aligned with the center of the seat 300. Then, the leak hole is placed on the folding chair 301, and the installation of the stationary portable urine flow testing device can be completed.

[0079] The dimensions indicate that the space under the seat of chair 300 is approximately 400mm, while the hole height is 275mm. After testing, the testing table 100 can be moved out from under chair 300 via hand rest 10216, and the space design facilitates human operation.

[0080] Reference Figure 9 Based on the above embodiments, the operation method of the portable urine flow detection device is described. The detection host 101 can transmit data with the APP via Bluetooth, and the APP can transmit data with the cloud server. The detection host 101 has a voice chip prompt function and operation buttons "Detection Start", "Detection End" and "Print" on the detection host 101. The detection host 101 can work using a wireless lithium battery or can be charged while working by connecting an external power cord.

[0081] The specific operating procedures for testing and use are as follows:

[0082] Patients or medical staff can push the uroflowmetry system into the desired environment; place the paper cup on the collector and the paper funnel 104 on the funnel 104 holder to complete the pre-test preparation; when the patient is ready to urinate, the patient presses the "Test Start" button on the main unit to start the test, the main unit will give a voice prompt "Test Start", and the test light will light up, then the patient can start the urination test; after the patient finishes urinating, press the "Test End" button on the main unit (or wait 10 seconds), the main unit will give a voice prompt "Test End", that is, the entire test process is over.

[0083] After the test is completed, press the "Print" button on the main unit box and wait 5-8 seconds. The internal chip of the main unit box will automatically process the data. The doctor can choose to input the diagnostic conclusion through the APP, which will be reflected in the thermal print report. Alternatively, the doctor can print the test report by hand without inputting the diagnostic conclusion through the APP. The doctor can input the patient and doctor information through the APP and then print the report. After the test is completed, the doctor can save the report or print an A4 report through a laser printer. Historical reports can be filtered and searched locally. Test reports can be uploaded to the cloud for consultation. If there is a large database after machine learning, AI analysis can be used to assist doctors in diagnosing the test results.

[0084] This portable urine flow testing device is functionally designed to meet the testing needs of all situations, allowing for switching between standing and sitting testing methods. It is easy to carry and can test both male and female patients. It is also convenient to transport, as it can be easily dragged and carried, making it particularly suitable for elderly people with limited mobility. Furthermore, its plastic testing platform significantly reduces raw material, assembly, and maintenance costs, resulting in a more aesthetically pleasing appearance. This cost-saving design leads to higher commercial value for mass production and makes it more readily accepted by hospitals.

[0085] In summary, this portable urine flow rate testing device offers comprehensive functionality, providing users with a wider range of application scenarios. It is unisex, convenient for female patients, and suitable for middle-aged and elderly individuals or those with mobility issues. It avoids the possibility of false results due to environmental factors, psychological or emotional stress on the part of the test subject, leading to urinary retention, insufficient urine volume, or unnatural urination. Such results fail to provide a true and effective assessment of lower urinary tract function and thus cannot provide reliable diagnostic evidence for doctors. The portable urine flow rate testing device is highly convenient to transport and carry, allowing for testing anytime, anywhere, especially for patients with limited mobility, and can be used in any concealed space. The device's simple assembly process reduces manufacturing time and costs. It is clean, hygienic, and easy to maintain. After testing, reports can be printed individually using thermal printing or a combination of thermal and laser printing. Electronic reports can be saved, and historical reports can be searched and filtered. Patient and doctor information can be entered via an app before report printing. Test reports can be uploaded to the cloud for consultation. If a large database is available after machine learning, AI analysis can assist doctors in diagnosing the test results.

[0086] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural or procedural transformations made based on the content of the present utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of the present utility model.

Claims

1. A portable urine flow detection device, characterized in that, The device includes a testing platform (100) and an installation device for mounting the testing platform (100). The testing platform (100) and the installation device are detachably connected. The testing platform (100) includes a testing host (101) and a testing bracket (102). The testing host (101) is electrically connected to a weighing unit (1022) in the testing bracket (102). The detection host (101) is equipped with a battery compartment, a control component, a data storage component, and a remote transmission component; A battery compartment containing a removable power supply for powering the detector; A printing component, electrically connected to both the control component and the data storage component, is used to print detection data. A remote transmission component, electrically connected to the control component, is used to transmit detection data to an external data receiving device.

2. The portable urine flow detection device according to claim 1, characterized in that, The detection bracket (102) is made of plastic and includes a bracket body (1021), which is electrically connected to the weighing unit (1022).

3. The portable urine flow detection device according to claim 2, characterized in that, The detection bracket (102) is provided with an elastic positioning pin (10214) and a threaded hole (10212), and the mounting device is provided with a positioning hole (2014) and a locking screw (2012). When the elastic positioning pin (10214) is engaged with the positioning hole (2014), the locking screw (2012) is bolted to the threaded hole (10212).

4. The portable urine flow detection device according to claim 1, characterized in that, The testing station (100) also includes a urine collection unit (103), which is electrically connected to the testing host (101). The urine collection unit (103) includes a urine collection cup (1031) and a cup sleeve (1032), and the urine collection cup (1031) is fitted with the cup sleeve (1032).

5. The portable urine flow detection device according to claim 1, characterized in that, The testing platform (100) also includes a funnel (104), the testing bracket (102) is provided with a placement ring (10211), the funnel (104) is placed in the placement ring (10211), and the placement ring (10211) is provided with an inclined surface.

6. The portable urine flow detection device according to claim 1, characterized in that, An anti-slip pad (10215) is provided at the connection between the testing bracket (102) and the installation device, and a hand rest (10216) is provided on the side of the testing bracket (102) near the testing host (101).

7. The portable urine flow detection device according to claim 1, characterized in that, The installation device is a trolley (200), including a connecting block (201), a column (202) and a movable base (203). The connecting block (201) is detachably connected to the detection bracket (102), and the column (202) is located between the connecting block (201) and the movable base (203).

8. The portable urine flow detection device according to claim 7, characterized in that, The column (202) and the movable base (203) are made of aluminum alloy.

9. The portable urine flow detection device according to claim 1, characterized in that, The installation device is a chair (300), which includes a folding chair (301). The folding chair (301) is located below the testing table (100) and cooperates with the testing table (100).

10. The portable urine flow detection device according to claim 9, characterized in that, The folding chair (301) is equipped with an air cushion (3011).