Detection device for quantitatively detecting HCG (human chorionic gonadotropin)
By designing an HCG detection device to prevent the detection cup from being knocked over and urine dripping, the problem of poor user experience in the prior art is solved, and the stability and cleanliness of the device are achieved.
Patent Information
- Application Number
- CN202510948696.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-10
- Publication Date
- 2025-08-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During use, existing HCG detection devices can easily cause the detection cup to be knocked over and urine dripped on the desktop, reducing the user's user experience.
A detection device including a plate, a detection cup, a box and a support assembly is designed to prevent the detection cup from being overturned by the support assembly, and to prevent urine from dripping by using a placement port and a receptacle structure, combining the cleaning of the replaceable inclined plate and the receptacle retaining device.
Effectively prevent the detection cup from being knocked over and urine dripping on the desktop, improving the user's user experience and keeping the device clean and hygienic.
Smart Images

Figure CN120446503A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of HCG detection, and in particular to a detection device for quantitatively detecting HCG. Background Art
[0002] The detection device for quantitative detection of HCG, namely the HCG semi-quantitative detection card, is a tool for detecting the HCG content in blood or urine through chemiluminescence immunoassay or test strip color comparison. Its main structure includes a board card and a test strip installed in the board card. A detection port for liquid to contact the test strip is opened on one side of the board card, and an observation port for exposing the test area of the test strip is opened in the middle of the board card. The method of use is to use a test cup to collect the urine of the person being tested, and then insert the board card with the detection port facing down into the test cup, wait for a while, allow the urine to enter the detection port and be absorbed by the test strip, and then lay the board card flat so that the urine is absorbed by the test strip into the test area of the test strip to complete the test.
[0003] However, since the person being tested needs to be tested multiple times during pregnancy, when the person being tested inserts the card into the test cup during the test, the test cup may be knocked over if the person is too forceful. In addition, when the person being tested places the card flat on the test cup, urine stuck on the card may drip onto the table. Both of the above situations will require the person being tested to clean the table, which reduces the user experience. For this reason, the present application proposes a detection device for quantitatively detecting HCG, which is used to prevent the test cup from being knocked over and the card from being placed flat on the test cup, causing urine to drip onto the table, so as to improve the user experience of the person being tested. Summary of the Invention
[0004] In view of the shortcomings of the existing technology, the purpose of this application is to provide a detection device for quantitative detection of HCG, which is used to prevent the detection cup from being overturned and the board card from being placed flat on the detection cup, causing urine to drip onto the table, so as to improve the user experience of the person being tested.
[0005] The above-mentioned purpose of the present application is achieved through the following technical solutions: A detection device for quantitative detection of HCG, comprising a board card, a test strip installed in the board card, a detection cup, a box for placing the board card, a support assembly arranged in the box for placing the detection cup, and a placement opening opened above the box and passing through the inside of the box, a detection opening for allowing liquid to contact the test strip on one side of the board card, an observation opening for exposing the test area of the test strip in the middle of the board card, and an operation opening for user convenience on one side of the box.
[0006] Furthermore, the support assembly includes support plates arranged in the box and opposite to each other, slide grooves opened at the upper ends of opposite sides of the two support plates, a placement plate arranged between the two support plates and inserted into the slide grooves on both sides, and a placement groove opened on the upper surface of the placement plate near one end of the placement port and passing through the placement plate, and abutment pieces for abutting the placement plates are provided on both sides of the upper end of the detection cup, and the detection cup is placed in the placement groove through the abutment pieces.
[0007] By adopting the above technical solution, when the user needs to conduct a test, he first uses the test cup to collect urine, then places the test cup in the placement slot, and pushes the placement plate so that the placement plate slides along the slide slot, driving the test cup to move to just below the placement port. At this time, the user can insert the board card into the test cup with the detection port facing down (because the abutment piece abuts against the placement plate, even if the user uses too much force, the test cup will not be overturned due to the support of the placement plate), and then wait for a while for the urine to enter the detection port and be absorbed by the test strip. At this time, the user can take out the board card and place the board card on the box so that the end of the board card that contacts the urine is above the placement port, so that the urine stuck on the board card will drip into the test cup, thereby preventing the test cup from being overturned and the board card from being placed flat on the test cup, causing urine to drip onto the table, so as to improve the user experience of the person being tested.
[0008] Furthermore, a receiving structure for receiving a board or card is provided on one side of the support plate close to one end of the placement opening.
[0009] Furthermore, the receiving structure includes an inclined plate with one end mounted on the upper end of the support plate and the other end abutting against the bottom surface of the inside of the box away from the support plate, a receiving port opened on the side of the box away from the support plate and passing through the box, and a receiving plate arranged on the outside of the box facing the receiving port, a receiving groove is provided on the upper surface of the inclined plate, the receiving groove passes through the highest end and the bottom end of the inclined plate, and a limiting groove is provided on the upper surface of the receiving plate facing the receiving port.
[0010] By adopting the above technical solution, although placing the board card on the box so that the end of the board card that contacts the urine is located above the placement port can prevent the urine from dripping onto the table, the board card placed on the box may be affected by vibration or collision and fall onto the table or inside the box, making it very troublesome for the subsequent user to clean up. The setting of the receiving structure solves this technical problem. Through the setting of the receiving structure, after the urine enters the detection port and is absorbed by the test strip, the user lifts the board card and aligns the bottom end of the board card with the receiving groove of the inclined plate, and then pushes the board card so that the board card slides along the receiving groove through the receiving port and moves to the limiting groove of the receiving plate to be placed flat, so that the urine is absorbed by the test strip into the testing area of the test strip, and the test is completed. During the whole process, the board card is restricted by the receiving groove and the limiting groove, so that the board card is stably limited on the receiving plate regardless of the collision or vibration of the box, thereby preventing the board card placed on the box from being affected by vibration or collision and falling onto the table or inside the box, making it very troublesome for the subsequent user to clean up.
[0011] Furthermore, a connecting structure is provided on one side of the support plate on which the inclined plate is installed, and the inclined plate is installed on the support plate through the connecting structure. The connecting structure includes a mounting groove opened along the length direction of the support plate and a mounting piece arranged on one side of the inclined plate close to the support plate and inserted into the mounting groove.
[0012] By adopting the above technical solution, although the setting of the inclined plate can prevent the board from being affected by vibration or collision, after using the inclined plate for a long time, dirt will appear in its receiving groove, affecting the sanitary environment inside the box. The setting of the connecting structure solves this technical problem. Through the setting of the connecting structure, after the user has used the inclined plate, he can take the inclined plate from the bottom surface of the inclined plate, and then pull the inclined plate out of the box so that the inclined plate slides out of the box along the installation groove, and then take a new inclined plate, align the mounting piece of the new inclined plate with the mounting groove, and then push the new inclined plate into the box for replacement, so as to keep the sanitary environment inside the box clean.
[0013] Furthermore, a clamping structure is provided at the receiving plate installation location of the box body, and the receiving plate is installed on the box body through the clamping structure. The clamping structure includes a card interface opened on the box body on both sides of the receiving port and a clamping block arranged on the end face of the receiving plate.
[0014] By adopting the above technical solution, although the setting of the access plate can prevent the board and card from being affected by vibration or collision, after using the access plate for a long time, dirt will appear in its limit groove, which can easily affect the sanitary environment of the desktop. The setting of the card structure solves this technical problem. Through the setting of the card structure, after the user uses the access plate, he can pull the access plate away from the box body to make the card block on the access plate disengage from the card interface, and then take a new access plate, align the card block of the new access plate with the card interface, and then push the new access plate toward the box body so that the card block of the new access plate is inserted into the card interface for replacement, thereby keeping the sanitary environment of the desktop clean.
[0015] Furthermore, the receiving plate and the inclined plate are both made of polypropylene.
[0016] By adopting the above technical solution, the access plate and the inclined plate made of polypropylene not only have low cost, but also have a high surface smoothness, making the board easier to slide.
[0017] Furthermore, a pulling handle is provided at one end of the receiving plate away from the clamping block.
[0018] By adopting the above technical solution, it is convenient for users to replace the access plate.
[0019] Furthermore, limiting structures for limiting boards and cards are provided on both sides of the placement opening.
[0020] Furthermore, the limiting structure includes limiting blocks arranged on the front and rear sides of the placement port and opposite to each other, limiting grooves opened on the upper surfaces of the limiting blocks and passing through the opposite sides of the two limiting blocks, and limiting plates arranged on both sides of the upper end of the board for abutting the limiting blocks.
[0021] By adopting the above technical solution and setting up the limiting structure, when the user inserts the board card into the test cup with the detection port facing downward, the board card is placed in such a way that the limiting piece is aligned with the limiting groove, so that the limiting piece is located in the limiting groove and abuts against the limiting block. In this way, the user does not need to hold the board card all the time while waiting for the urine to enter the detection port and be absorbed by the test strip, thereby improving the user experience.
[0022] In summary, this application includes at least one of the following beneficial technical effects: Through the arrangement of the box body and the support assembly, when the user needs to conduct a test, he first uses the test cup to collect urine, then places the test cup in the placement slot, and pushes the placement plate so that the placement plate slides along the slide slot, driving the test cup to move to just below the placement port. At this time, the user can insert the board card into the test cup with the detection port facing downward (because the abutment piece abuts against the placement plate, even if the user uses too much force, the test cup will not be overturned due to the support of the placement plate), and then wait for a while for the urine to enter the detection port and be absorbed by the test strip. At this time, the user can take out the board card and place the board card on the box body so that the end of the board card contacting the urine is above the placement port, so that the urine stuck on the board card will drip into the test cup, thereby preventing the test cup from being overturned and the board card from being placed flat on the test cup, causing urine to drip onto the table, so as to improve the user experience of the person being tested. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 1 is a schematic diagram of the overall structure of the embodiment; Figure 2 yes Figure 1 Enlarged view of part A in the middle; Figure 3 yes Figure 1 Enlarged view of middle part B; Figure 4 yes Figure 1 Enlarged view of part C in the middle.
[0024] Figure numerals: 1. Board; 2. Detection cup; 20. Abutment piece; 3. Box body; 30. Placement port; 31. Operation port; 4. Support assembly; 40. Support plate; 41. Slide groove; 42. Placement plate; 43. Placement groove; 5. Receiving structure; 50. Inclined plate; 51. Receiving port; 52. Receiving plate; 53. Receiving groove; 54. Limiting groove; 55. Pull handle; 6. Connecting structure; 60. Mounting groove; 61. Mounting piece; 7. Card structure; 70. Card interface; 71. Card block; 8. Limiting structure; 80. Limiting block; 81. Limiting groove; 82. Limiting piece. DETAILED DESCRIPTION
[0025] The present application is further described in detail below with reference to the accompanying drawings.
[0026] Example, see Figure 1, a detection device for quantitative detection of HCG, comprising a board card 1, a test strip installed in the board card 1, a test cup 2, a box body 3 for placing the board card 1, a support assembly 4 arranged in the box body 3 for placing the test cup 2, and a placement opening 30 opened above the box body 3 and passing through the interior of the box body 3, a detection opening for allowing liquid to contact the test strip is opened on one side of the board card 1, an observation opening for exposing the test area of the test strip is opened in the middle of the board card 1, and an operation opening 31 for user operation is opened on one side of the box body 3, the support assembly 4 comprises support plates 40 arranged in the box body 3 and arranged opposite to each other, a slide groove 41 opened at the upper ends of opposite sides of the two support plates 40, a placement plate 42 arranged between the two support plates 40 and inserted into the slide groove 41 on both sides, and a placement groove 43 opened on the upper surface of the placement plate 42 near the placement opening 30 and passing through the placement plate 42, abutment pieces 20 for abutting the placement plate 42 are provided on both sides of the upper end of the test cup 2, and the test cup 2 is pressed against the placement plate 42 through the abutment pieces When the test strip 2 is in the container 43, the user can put the container 42 in the container 43 so that the container 43 does not fall into the container 43. When the test strip 2 is in the container 43, the user can put the container 42 in the container 43 so that the container 43 does not fall into the container 43.
[0027] The drawer 3 is provided with a support plate 40 which is provided with a support plate 50 which is provided on the drawer 3 and is provided with a support plate 51 which is provided on the drawer 3 and is provided with a support plate 52 which is provided on the drawer 3 and is provided with a support plate 53 which is provided on the drawer 3 and is provided with a support plate 50 which is provided on the drawer 3 and is provided with a support plate 50 which is provided on the drawer 3 and is provided with a support plate 51 which is provided on the drawer 3 and is provided with a support plate 51 which is provided on the drawer 3 and is provided with a support plate 51 which is provided on the drawer 3 and is provided with a support plate 51 which is provided on the drawer 3 and is provided with a support plate 51 which is provided on the drawer 3 and is provided with a support plate 51 which is provided on the drawer 3 and is provided with a support plate 51 which is provided on the drawer 3 and is provided with a support plate 51 which is provided on the drawer 3 and is provided with a support plate 51 which is provided on the drawer 3 and is provided with a support plate 51 which is provided on the drawer 3 and is provided with a support plate The top and bottom ends of the receiving plate 52 are provided with a limiting groove 54 which is aligned with the receiving port 51. Through the setting of the receiving structure 5, when urine enters the detection port and is absorbed by the test strip, the user lifts the board card 1 and aligns the bottom end of the board card 1 with the receiving groove 53 of the inclined plate 50, and then pushes the board card 1 so that the board card 1 slides along the receiving groove 53 through the receiving port 51 and moves into the limiting groove 54 of the receiving plate 52 to be laid flat, so that urine is absorbed by the test strip into the testing area of the test strip, and the test is completed. During the whole process, the board card 1 is restricted by the receiving groove 53 and the limiting groove 54, so that the box body 3 is stably limited on the receiving plate 52 regardless of collision or vibration, thereby preventing the board card 1 placed on the box body 3 from being affected by vibration or collision and falling onto the desktop or the box body 3, which makes it very troublesome for the user to clean up later.
[0028] Although the setting of the inclined plate 50 can prevent the board 1 from being affected by vibration or collision, after long-term use of the inclined plate 50, dirt will appear in the receiving groove 53, affecting the sanitary environment inside the box 3. In order to solve this technical problem, refer to Figure 2 In this embodiment, a connecting structure 6 is provided on one side of the support plate 40 where the inclined plate 50 is installed. The inclined plate 50 is installed on the support plate 40 through the connecting structure 6. The connecting structure 6 includes a mounting groove 60 opened along the length direction of the support plate 40 and a mounting piece 61 provided on the side of the inclined plate 50 close to the support plate 40 and inserted into the mounting groove 60. Through the setting of the connecting structure 6, after the user has used the inclined plate 50, the user can take the inclined plate 50 from the bottom surface of the inclined plate 50, and then pull the inclined plate 50 outside the box body 3 so that the inclined plate 50 slides out of the box body 3 along the mounting groove 60, and then take a new inclined plate 50 so that the mounting piece 61 of the new inclined plate 50 is aligned with the mounting groove 60, and then push the new inclined plate 50 into the box body 3 for replacement, so that the sanitary environment inside the box body 3 can be kept clean.
[0029] Although the receiving plate 52 is provided to prevent the board 1 from being affected by vibration or collision, after long-term use of the receiving plate 52, dirt will appear in the limiting groove 54, which will easily affect the sanitation environment of the desktop. In order to solve this technical problem, referring to Figure 3 In this embodiment, a clamping structure 7 is provided at the receiving plate 52 installed in the box body 3, and the receiving plate 52 is installed on the box body 3 through the clamping structure 7. The clamping structure 7 includes a clamping interface 70 opened on the box body 3 on both sides of the receiving port 51 and a clamping block 71 provided on the end face of the receiving plate 52. Through the setting of the clamping structure 7, after the user has finished using the receiving plate 52, he can pull the receiving plate 52 away from the box body 3 so that the clamping block 71 on the receiving plate 52 is disengaged from the clamping interface 70, and then take a new receiving plate 52, align the clamping block 71 of the new receiving plate 52 with the clamping interface 70, and then push the new receiving plate 52 toward the box body 3 so that the clamping block 71 of the new receiving plate 52 is inserted into the card interface 70 for replacement, thereby keeping the desktop environment clean.
[0030] In this embodiment, the receiving plate 52 and the tilting plate 50 are both made of polypropylene. The receiving plate 52 and the tilting plate 50 made of polypropylene are not only low in cost but also have a smoother surface, making the board 1 easier to slide.
[0031] In this embodiment, a pulling handle 55 is provided at one end of the access plate 52 away from the clamping block 71 . Pulling the handle 55 allows the user to easily replace the access plate 52 .
[0032] Reference Figure 4 In this embodiment, a limiting structure 8 for limiting the board card 1 is provided on both sides of the placement port 30. The limiting structure 8 includes limiting blocks 80 arranged on the front and rear sides of the placement port 30 and opposite to each other, a limiting groove 81 opened on the upper surface of the limiting block 80 and passing through the opposite sides of the two limiting blocks 80, and limiting pieces 82 arranged on both sides of the upper end of the board card 1 for abutting the limiting blocks 80. Through the setting of the limiting structure 8, when the user inserts the board card 1 into the detection cup 2 with the detection port facing downward, the board card 1 is placed with the limiting piece 82 aligned with the limiting groove 81, so that the limiting piece 82 is located in the limiting groove 81 and abuts the limiting block 80. In this way, when waiting for urine to enter the detection port and be absorbed by the test strip, the user does not need to hold the board card 1 all the time, thereby improving the user experience.
[0033] Specific implementation process: When the user needs to conduct a test, he first uses the test cup 2 to collect urine, and then places the test cup 2 in the placement groove 43, and then pushes the placement plate 42 to make the placement plate 42 slide along the slide groove 41, driving the test cup 2 to move to the bottom of the placement port 30. At this time, the user can face the detection port of the board card 1 downward and align the limiting piece 82 with the limiting groove 81, and then place the board card 1 and wait for a while for the urine to enter the detection port and be absorbed by the test strip. At this time, the user can advance the board card 1 and place the board card 1 into the box body 3 from the position where the limiting block 80 is not set at the placement port 30, and then align the bottom end of the board card 1 with the receiving groove 53 of the inclined plate 50, and then push the board card 1 so that the board card 1 slides along the receiving groove 53 through the receiving port 51 and moves to the limiting groove 54 of the receiving plate 52 to be flat, so that the urine is absorbed by the test strip into the test area of the test strip, and the test is completed.
[0034] The embodiments of this specific implementation method are all preferred embodiments of the present application and are not intended to limit the scope of protection of the application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A detection device for quantitative detection of HCG, characterized in that: The invention comprises a board (1), a test strip installed in the board (1), a test cup (2), a box (3) for placing the board (1), a support assembly (4) arranged in the box (3) for placing the test cup (2), and a placement opening (30) opened above the box (3) and passing through the inside of the box (3); a detection opening for allowing liquid to contact the test strip is opened on one side of the board (1); an observation opening for exposing a test area of the test strip is opened in the middle of the board (1); and an operation opening (31) for user operation is opened on one side of the box (3).
2. A detection device for quantitative detection of HCG according to claim 1, characterized in that: The support assembly (4) comprises support plates (40) arranged in the box body (3) and arranged opposite to each other, a slide groove (41) provided at the upper ends of opposite sides of the two support plates (40), a placement plate (42) provided between the two support plates (40) and inserted into the slide groove (41) on both sides, and a placement groove (43) provided on the upper surface of the placement plate (42) near one end of the placement opening (30) and passing through the placement plate (42), and abutment sheets (20) for abutting the placement plates (42) are provided on both sides of the upper end of the detection cup (2), and the detection cup (2) is placed in the placement groove (43) through the abutment sheet (20).
3. A detection device for quantitative detection of HCG according to claim 2, characterized in that: A receiving structure (5) for receiving a board (1) is provided on one side of the support plate (40) close to one end of the placement opening (30).
4. A detection device for quantitative detection of HCG according to claim 3, characterized in that: The receiving structure (5) comprises an inclined plate (50) with one end mounted on the upper end of the support plate (40) and the other end abutting against the bottom surface of the box body (3) away from the support plate (40), a receiving port (51) provided on the side of the box body (3) away from the support plate (40) and passing through the box body (3), and a receiving plate (52) provided on the outside of the box body (3) facing the receiving port (51), a receiving groove (53) provided on the upper surface of the inclined plate (50), the receiving groove (53) passing through the highest end and the lowest end of the inclined plate (50), and a limiting groove (54) provided on the upper surface of the receiving plate (52) facing the receiving port (51).
5. A detection device for quantitative detection of HCG according to claim 4, characterized in that: A connecting structure (6) is provided on one side of the support plate (40) on which the inclined plate (50) is mounted. The inclined plate (50) is mounted on the support plate (40) via the connecting structure (6). The connecting structure (6) comprises a mounting groove (60) provided along the length direction of the support plate (40) and a mounting piece (61) provided on a side of the inclined plate (50) close to the support plate (40) and inserted into the mounting groove (60).
6. A detection device for quantitatively detecting HCG according to claim 4, characterized in that: The box body (3) is provided with a clamping structure (7) at the location where the receiving plate (52) is installed. The receiving plate (52) is installed on the box body (3) via the clamping structure (7). The clamping structure (7) comprises a clamping interface (70) located on both sides of the receiving port (51) and opened on the box body (3), and a clamping block (71) provided on the end surface of the receiving plate (52).
7. A detection device for quantitatively detecting HCG according to claim 4, characterized in that: The receiving plate (52) and the inclined plate (50) are both made of polypropylene material.
8. A detection device for quantitatively detecting HCG according to claim 6, characterized in that: A pulling handle (55) is provided at one end of the receiving plate (52) away from the clamping block (71).
9. The detection device for quantitatively detecting HCG according to claim 1, characterized in that: Restriction structures (8) for restricting the board (1) are provided on both sides of the placement opening (30).
10. A detection device for quantitative detection of HCG according to claim 9, characterized in that: The limiting structure (8) comprises limiting blocks (80) arranged on the front and rear sides of the placement opening (30) and facing each other, limiting grooves (81) formed on the upper surfaces of the limiting blocks (80) and penetrating the opposite sides of the two limiting blocks (80), and limiting plates (82) arranged on both sides of the upper end of the board (1) for contacting the limiting blocks (80).