Test tool of test strip tester

The test strip instrument testing fixture addresses the complexity and cost issues of existing systems by using a core board with dedicated keys for direct data input, enhancing operational efficiency and reducing costs.

CN223107829UActive Publication Date: 2025-07-15SINOCARE
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421393455.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-18
Publication Date
2025-07-15
Estimated Expiration
2034-06-18

AI Technical Summary

Technical Problem

When existing test strip testers require password recognition function and accuracy testing during production, they are inconvenient and costly, especially the lack of convenient testing tooling to reduce costs and improve efficiency.

Method used

A test tool for a test strip tester is designed, including a core board, a standard strip interface, a key component and an indicator light. The key component triggers the core board to output the test value to the tester, realizing automatic identification of standard strips and password cards, simplifying the operation process and reducing costs.

Benefits of technology

It improves operational convenience and testing efficiency, reduces testing costs, and does not require setting up a host computer, and can complete the identification and verification of multiple test items at the same time.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223107829U_ABST
    Figure CN223107829U_ABST
Patent Text Reader

Abstract

The utility model provides a test tool of a test strip tester, comprising a core board which is respectively connected with a standard strip interface, a first button assembly and a standard strip output interface; the standard strip interface is used for being in butt joint with a standard strip and reading data stored in the standard strip, and a first test item concentration test value is stored in the standard strip; the standard strip output interface is matched with a test strip socket of a to-be-tested strip tester; and the first key assembly is used for triggering the core board to output a first test item concentration test value to the to-be-tested strip tester. After a user presses the first key assembly, the to-be-tested strip tester receives a concentration test value of a first test item, identifies the concentration test value and displays a feedback value on the display screen, so that a standard strip test can be completed, and the operation convenience is improved; and an upper computer is not needed, so that the test cost is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of medical devices, in particular to a test tooling for a test strip tester. Background Art

[0002] At present, a test strip tester generally includes a central processing module, a current sampling module connected to the central processing module, and a display. Its working principle is as follows: A test strip with blood is inserted into the test strip socket of the test strip tester. The current sampling module collects the current formed by the electrons generated by the test strip and calculates the current value to give it to the central processing module. The central processing module calculates the concentration according to the linear relationship between the current value and the concentration of the index to be measured, and then displays the result through the display. There are single-function testers on the market, such as blood glucose testers, uric acid testers, glycosylated hemoglobin testers, etc.; there are also multi-function testers, such as blood glucose and uric acid testers, glycosylated hemoglobin and blood glucose testers, etc.

[0003] During the production process of the test strip tester, it is generally necessary to test the password recognition function and accuracy of the instrument, including two processes: password card test and standard strip test. For example, a Chinese patent with the publication number CN212964969U discloses a test tooling for a blood glucose meter, including a control unit, a processing unit, a display unit, and a comparison unit; the control unit is connected to the processing unit and is used to control the processing unit to output a test value; the processing unit is connected to the blood glucose meter to be tested, and the blood glucose meter to be tested forms a feedback value according to the test value; the comparison unit is connected to the control unit and is used to form a comparison result according to the test value and the feedback value; the display unit is connected to the control unit and is used to display the comparison result; in actual use, the control unit is controlled by a host computer to send a control command to the processing unit, and the processing unit outputs a test value to the blood glucose meter to be tested according to the control command. The above test tooling is triggered by the control command through the host computer, which is not conducive to reducing the test cost and is not convenient to operate.

[0004] Therefore, the prior art still needs to be improved and developed. Summary of the Utility Model

[0005] The purpose of the utility model is to provide a test tooling for a test strip tester in view of the defects and deficiencies of the prior art.

[0006] In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:

[0007] The utility model provides a test tooling for a test strip tester, which includes a core board. The core board is respectively connected to a standard strip interface, a first button assembly and a standard strip output interface. The standard strip interface is used to dock with a standard strip and read the data stored in the standard strip. The first test item concentration test value is stored in the standard strip. The standard strip output interface is matched with the test strip socket of the test strip tester to be tested. The first button assembly is used to trigger the core board to output the first test item concentration test value to the test strip tester to be tested.

[0008] Through the above structural settings, after the user presses the first button assembly, the test strip tester to be tested receives the first test item concentration test value for identification and displays the feedback value on the display screen, and the standard strip test can be completed, which is beneficial to improving the operation convenience. Moreover, there is no need to set up a host computer, which is beneficial to reducing the test cost.

[0009] According to the above solution, the first test item concentration test value includes three different first test values, second test values and third test values. The first button assembly includes a first button, a second button and a third button. The first button, the second button and the third button are respectively used to trigger the core board to output the corresponding first test value, second test value and third test value to the test strip tester to be tested.

[0010] It can be understood that in order to improve the accuracy of the standard strip test, the first test value, the second test value and the third test value are respectively set as the high concentration, medium concentration and low concentration test values of the first test item. The high concentration of the first test item refers to the highest concentration of the first test item that the test strip tester to be tested can detect. The low concentration of the first test item refers to the lowest concentration of the first test item that the test strip tester to be tested can detect. The medium concentration of the first test item is the average value of the high concentration and the low concentration of the first test item.

[0011] In the prior art test process, three different test values are cyclically output to the test strip tester to be tested. If an abnormality occurs during the test of one of the test values and needs to be retested, it needs to be tested from the beginning, which affects the test efficiency. By setting buttons corresponding to three different test values in the utility model, when an abnormality occurs during the test of one of the test values and needs to be retested, only the corresponding button needs to be pressed, which is beneficial to improving the test efficiency.

[0012] According to the above solution, it further includes a password plate interface and a password plate output interface. The password plate interface is used to dock with a password plate and read the data stored in the password plate. The first test item password test value is stored in the password plate. The password plate output interface is matched with the password plate socket of the test strip tester to be tested. The first button assembly is also used to trigger the core board to output the first test item password test value to the test strip tester to be tested.

[0013] With the above structural arrangement, after the user presses the first button assembly, the test strip tester receives the password test value of the first test item for identification and displays the feedback value on the display screen, thus completing the password plate test of the first test item. That is, by pressing the first button assembly, the standard strip test and the password plate test of the first test item can be completed simultaneously, with convenient operation and high test efficiency.

[0014] It can be understood that in some embodiments, the test strip tester can only perform the test of one test item. Then, only the concentration test value of the first test item is stored in the standard strip, and only the password test value of the first test item is stored in the password plate. In some embodiments, the test strip tester can perform the tests of multiple test items. Then, the concentration test values of the corresponding test items are stored in the standard strip, and the password test values of the corresponding test items are stored in the password plate.

[0015] In some embodiments, a second button assembly is further included. The core board is connected to the second button assembly, and the concentration test value of the second test item is further stored in the standard strip. The second button assembly is used to trigger the core board to output the concentration test value of the second test item to the test strip tester.

[0016] The concentration test values of the first test item and the second test item are both stored on the same standard strip, which is beneficial to reducing the test cost. After the user presses the second button assembly, the test strip tester receives the concentration test value of the second test item for identification and displays the feedback value on the display screen, thus completing the standard strip test, which is beneficial to improving the test efficiency.

[0017] According to the above solution, the concentration test value of the second test item includes three different fourth test values, fifth test values, and sixth test values. The second button assembly includes a fourth button, a fifth button, and a sixth button. The fourth button, the fifth button, and the sixth button are respectively used to trigger the core board to output the corresponding fourth test value, fifth test value, and sixth test value to the test strip tester.

[0018] It can be understood that in order to improve the accuracy of the standard strip test, the fourth test value, the fifth test value, and the sixth test value are respectively set as the high concentration, medium concentration, and low concentration test values of the second test item. The high concentration of the second test item refers to the highest concentration of the second test item that the test strip tester can detect. The low concentration of the second test item refers to the lowest concentration of the second test item that the test strip tester can detect. The medium concentration of the second test item is the average value of the high concentration of the first test item and the low concentration of the second test item.

[0019] According to the above solution, a second test item password test value is also stored in the password plate; the second button assembly is further configured to trigger the core board to output the second test item password test value to the test strip tester to be tested.

[0020] The first test item password test value and the second test item password test value are both stored on the same password plate, which is beneficial to reducing the test cost; after the user presses the second button assembly, the test strip tester to be tested receives the second test item password test value for identification and displays a feedback value on the display screen, and the password plate test of the second test item can be completed; that is, by pressing the second button assembly, the standard strip test and the password plate test of the second test item can be completed simultaneously, with convenient operation and high test efficiency.

[0021] According to the above solution, an indicator light is further included, and the indicator light is connected to the core board; the indicator light is used to display the test status of the standard strip.

[0022] Through the above structural arrangement, the user can intuitively know the test status of the standard strip and the password plate through the first indicator light and the second indicator light. It can be understood that the core board outputs a test value to the test strip tester to be tested. After receiving the test value, the test strip tester to be tested identifies it to obtain a feedback value and transmits the feedback value to the core board. If the feedback value is inconsistent with the test value output by the core board to the test strip tester to be tested, the core board will control the indicator light to turn on a red light; if the feedback value is consistent with the test value output by the core board to the test strip tester to be tested, the core board will control the indicator light to turn on a green light.

[0023] According to the above solution, a plurality of core boards are provided, and the first button assembly and the second button assembly are respectively connected to the plurality of core boards.

[0024] Through the above structural arrangement, when the first button assembly is pressed, a plurality of core boards can be triggered to respectively output the first test item concentration test value and the first test item password test value to the test strip tester to be tested corresponding to the connection with the core board; when the second button assembly is pressed, a plurality of core boards can be triggered to respectively output the second test item concentration test value and the second test item password test value to the test strip tester to be tested corresponding to the connection with the core board, so that the test fixture can realize the simultaneous test of a plurality of test strip testers to be tested.

[0025] According to the above solution, a fuselage is further included, and a fixture for fixing the test strip tester to be tested is provided on the fuselage; the core board is arranged inside the fuselage.

[0026] According to the above solution, a power supply board and a power supply module are further included, and the power supply board is electrically connected to the power supply module and the core board respectively. Through the above structural arrangement, the power supply module supplies power to the core board through the power supply board.

[0027] It is understandable that the user presses different buttons to give different control instructions to the core board, and the core board outputs the read data to the test strip tester according to the control instructions.

[0028] The beneficial effects of the present utility model are as follows:

[0029] The present utility model is provided with a core board respectively connected to a standard strip interface, a first button assembly, and a standard strip output interface; the standard strip interface is used to dock with a standard strip and read the data stored in the standard strip, and the first test item concentration test value is stored in the standard strip; the standard strip output interface is matched with the test strip socket of the test strip tester to be tested; the first button assembly is used to trigger the core board to output the first test item concentration test value to the test strip tester to be tested; after the user presses the first button assembly, the test strip tester to be tested receives the first test item concentration test value for identification and displays a feedback value on the display screen, and the standard strip test can be completed, which is beneficial to improving the operation convenience; moreover, there is no need to set up a host computer, which is beneficial to reducing the test cost. Description of the Drawings

[0030] Figure 1 is the structural schematic diagram of the present utility model Figure 1 ;

[0031] Figure 2 is the structural schematic diagram of the present utility model Figure 2 ;

[0032] Figure 3 is the structural schematic diagram of the present utility model Figure 3 .

[0033] In the figure: 1. Power supply module; 11. Power supply board; 2. Core board; 21. First indicator light; 22. Second indicator light; 3. Standard strip interface; 31. Standard strip; 4. Password plate interface; 41. Password plate; 5. Standard strip output interface; 6. Password plate output interface; 7. Test strip tester to be tested; 71. Test strip socket; 72. Password plate socket; 8. First button assembly; 81. First button; 82. Second button; 83. Third button; 9. Second button assembly; 91. Fourth button; 92. Fifth button; 93. Sixth button; 10. Body; 101. Fixture. Detailed Embodiments

[0034] The technical solutions of the present utility model will be described below in conjunction with the drawings and embodiments.

[0035] In order to better understand the technical solutions of the present utility model, taking the test strip tester 7 to be a blood glucose and uric acid tester as an example for description, the first test item is blood glucose and the second test item is uric acid.

[0036] AsFigures 1-3 As shown, a test tooling for a test strip tester according to the present utility model includes a core board 2, which is respectively connected to a standard strip interface 3, a first button assembly 8, a second button assembly 9, and a standard strip output interface 5. The standard strip interface 3 is used to dock with a standard strip 31 and read the data stored in the standard strip 31, and the standard strip 31 stores blood glucose concentration test values and uric acid concentration test values. The standard strip output interface 5 cooperates with a test strip socket 71 of the test strip tester 7 to be tested. The first button assembly 8 is used to trigger the core board 2 to output the blood glucose test value to the test strip tester 7 to be tested. The second button assembly 9 is used to trigger the core board 2 to output the uric acid concentration test value to the test strip tester 7 to be tested.

[0037] With the above structural arrangement, after the user presses the first button assembly 8, the test strip tester 7 to be tested receives the blood glucose concentration test value for identification and displays a feedback value on the display screen. After the user presses the second button assembly 9, the test strip tester 7 to be tested receives the uric acid concentration test value for identification and displays a feedback value on the display screen. That is, by pressing the first button assembly 8 and the second button assembly 9, the test of the standard strip 31 can be completed, which is beneficial to improving the operation convenience. Moreover, there is no need to set up a host computer, which is beneficial to reducing the test cost.

[0038] Furthermore, the blood glucose concentration test value includes three different first test values, second test values, and third test values. The first button assembly 8 includes a first button 81, a second button 82, and a third button 83. The first button 81, the second button 82, and the third button 83 are respectively used to trigger the core board 2 to output the corresponding first test value, second test value, and third test value to the test strip tester 7 to be tested. The first test value, the second test value, and the third test value are respectively a high blood glucose concentration test value, a medium blood glucose concentration test value, and a low blood glucose concentration test value. The high blood glucose concentration refers to the highest concentration of blood glucose that the test strip tester 7 to be tested can detect, the low blood glucose concentration refers to the lowest concentration of blood glucose that the test strip tester 7 to be tested can detect, and the medium blood glucose concentration is the average value of the above highest concentration and lowest concentration.

[0039] Furthermore, the uric acid concentration test values include three different fourth test values, fifth test values, and sixth test values. The second button assembly 9 includes a fourth button 91, a fifth button 92, and a sixth button 93. The fourth button 91, the fifth button 92, and the sixth button 93 are respectively used to trigger the core board 2 to output the corresponding fourth test value, fifth test value, and sixth test value to the test strip tester 7. The fourth test value, the fifth test value, and the sixth test value are respectively the high uric acid concentration test value, the medium uric acid concentration test value, and the low uric acid concentration test value. The high uric acid concentration refers to the highest concentration of uric acid that the test strip tester 7 can detect. The low uric acid concentration refers to the lowest concentration of uric acid that the test strip tester 7 can detect. The medium uric acid concentration is the average value of the above highest concentration and lowest concentration.

[0040] By setting buttons corresponding to different test values, when an abnormality occurs during the testing of one of the test values and retesting is required, simply pressing the corresponding button is sufficient, which is beneficial to improving the testing efficiency.

[0041] Furthermore, it also includes a password card interface 4 and a password card output interface 6. The password card interface 4 is used to dock with the password card 41 and read the data stored in the password card 41. The password card 41 stores blood glucose password test values and uric acid password test values. The password card output interface 6 cooperates with the password card socket 72 of the test strip tester 7. The first button assembly 8 is also used to trigger the core board 2 to output the blood glucose password test value to the test strip tester 7. The second button assembly 9 is also used to trigger the core board 2 to output the uric acid password test value to the test strip tester 7.

[0042] Through the above structural settings, after the user presses the first button assembly 8, the test strip tester 7 can receive both the blood glucose concentration test value and the blood glucose password test value for testing. After pressing the second button assembly 9, the test strip tester 7 can receive both the blood glucose concentration test value and the blood glucose password test value for testing. That is, by pressing the first button assembly 8 and the second button assembly 9, the standard strip 31 test and the password card 41 test can be completed simultaneously, with convenient operation and high testing efficiency.

[0043] Furthermore, it also includes a first indicator light 21 and a second indicator light 22, and the first indicator light 21 and the second indicator light 22 are respectively connected to the core board 2; the first indicator light 21 is used to display the test status of the standard strip 31, and the second indicator light 22 is used to display the test status of the password plate 41. The core board 2 outputs a test value to the test strip tester 7 to be tested. After receiving this test value, the test strip tester 7 to be tested identifies it to obtain a feedback value and transmits this feedback value to the core board 2. If this feedback value is inconsistent with the test value output by the core board 2 to the test strip tester 7 to be tested, the core board 2 will control the corresponding indicator light to turn on a red light; if the feedback value is consistent with the test value output by the core board 2 to the test strip tester 7 to be tested, the core board 2 will control the corresponding indicator light to turn on a green light.

[0044] Furthermore, a plurality of core boards 2 are provided, and the first button assembly 8 and the second button assembly 9 are respectively connected to the plurality of core boards 2.

[0045] Through the above structural settings, when pressing the first button assembly 8, a plurality of core boards 2 can be triggered to respectively output the blood glucose concentration test value and the blood glucose password test value to the test strip tester 7 corresponding to the connection with the core board 2; when pressing the second button assembly 9, a plurality of core boards 2 can be triggered to respectively output the uric acid concentration test value and the uric acid password test value to the test strip tester 7 corresponding to the connection with the core board 2, so that the test tooling can simultaneously test a plurality of test strip testers 7.

[0046] It can be understood that the number of the core boards 2 can be set according to actual needs, such as Figure 1 shows that 2 core boards 2 are set, Figures 2-3 shows that 4 core boards 2 are set, and the present utility model is not limited thereto. When a plurality of core boards 2 are set, the connection relationship between the core board 2 and each component is the same as Figure 1 the same.

[0047] Furthermore, it also includes a fuselage 10, and a fixture 101 for fixing the test strip tester 7 is provided on the fuselage 10; the core board 2 is arranged inside the fuselage 10.

[0048] Furthermore, it also includes a power supply board 11 and a power supply module 1, and the power supply board 11 is electrically connected to the power supply module 1 and the core board 2 respectively. Through the above structural settings, the power supply module 1 supplies power to the core board 2 through the power supply board 11.

[0049] When the test tooling of the test strip tester described in the utility model is in use, first fix a plurality of test strip testers 7 to be tested on the fixture 101 respectively, then insert the standard strips 31 and password plates 41 connected to the plurality of core boards 2 into the standard strip interface 3 and the password plate interface 4 respectively, and insert the standard strip output interfaces 5 and password plate output interfaces 6 connected to the plurality of core boards 2 into the test strip sockets 71 and password plate sockets 72 of the corresponding test strip testers 7 to be tested respectively; press one of the buttons, after the test process is completed, if an abnormality occurs, the corresponding indicator light will turn on a red light, and if the test is normal, the corresponding indicator light will turn on a green light; then press the other buttons in sequence to complete the test.

[0050] The above is only the preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made according to the structure, features and principles described in the scope of the patent application of the present utility model are included in the scope of the patent application of the present utility model.

Claims

1. A test tooling for a test strip tester, comprising a core board (2), characterized in that the core board (2) is respectively connected to a standard strip interface (3), a first button assembly (8) and a standard strip output interface (5); the standard strip interface (3) is used to dock with a standard strip (31) and read the data stored in the standard strip (31), and a first test item concentration test value is stored in the standard strip (31); the standard strip output interface (5) cooperates with a test strip socket (71) of a test strip tester to be tested (7); the first button assembly (8) is used to trigger the core board (2) to output the first test item concentration test value to the test strip tester to be tested (7).

2. The test tooling of the test strip tester according to claim 1, characterized in that, The first test item concentration test value includes three different first test values, second test values, and third test values. The first button assembly (8) includes a first button (81), a second button (82), and a third button (83); the first button (81), the second button (82), and the third button (83) are respectively used to trigger the core board (2) to output the corresponding first test value, second test value, and third test value to the test strip tester to be tested (7).

3. The test tooling of the test strip tester according to claim 1, characterized in that, It further includes a password token interface (4) and a password token output interface (6). The password token interface (4) is used to dock with a password token (41) and read the data stored in the password token (41), and a first test item password test value is stored in the password token (41); the password token output interface (6) cooperates with a password token socket (72) of the test strip tester to be tested (7); the first button assembly (8) is further used to trigger the core board (2) to output the first test item password test value to the test strip tester to be tested (7).

4. The test tooling of the test strip tester according to claim 3, characterized in that, It further includes a second button assembly (9). The core board (2) is connected to the second button assembly (9), and a second test item concentration test value is further stored in the standard strip (31); the second button assembly (9) is used to trigger the core board (2) to output the second test item concentration test value to the test strip tester to be tested (7).

5. The test tooling of the test strip tester according to claim 4, characterized in that The second test item concentration test value includes three different fourth test values, fifth test values, and sixth test values. The second button assembly (9) includes a fourth button (91), a fifth button (92), and a sixth button (93); the fourth button (91), the fifth button (92), and the sixth button (93) are respectively used to trigger the core board (2) to output the corresponding fourth test value, fifth test value, and sixth test value to the test strip tester to be tested (7).

6. The test tooling of the test strip tester according to claim 4, characterized in that, A second test item password test value is further stored in the password token (41); the second button assembly (9) is further used to trigger the core board (2) to output the second test item password test value to the test strip tester to be tested (7).

7. The test fixture of the test strip tester according to claim 6, characterized in that, It further includes a first indicator light (21) and a second indicator light (22), and the first indicator light (21) and the second indicator light (22) are respectively connected to the core board (2); the first indicator light (21) is used to display the test status of the standard strip (31), and the second indicator light (22) is used to display the test status of the password plate (41).

8. The test tooling of the test strip tester according to claim 4, characterized in that, A plurality of the core boards (2) are provided, and the first button assembly (8) and the second button assembly (9) are respectively connected to the plurality of core boards (2).

9. The test tooling of the test strip tester according to claim 1, characterized in that, It further includes a fuselage (10), and a fixture (101) for fixing the test strip tester (7) is provided on the fuselage (10); the core board (2) is arranged inside the fuselage (10).

10. The test tooling of the test strip tester according to claim 1, characterized in that, It further includes a power supply board (11) and a power supply module (1), and the power supply board (11) is electrically connected to the power supply module (1) and the core board (2) respectively.