Multifunctional alternate glucometer

By integrating blood collection components and test strip storage components, the multifunctional blood glucose meter solves the problems of test strip contamination and complex operation, enabling convenient blood glucose testing and reducing economic burden and environmental impact.

CN223551729UActive Publication Date: 2025-11-14NANJING UNIV OF SCI & TECH
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Patent Information

Application Number
CN202422504633.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-11-14
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

The current practice of storing test strips separately from the blood glucose meter makes them susceptible to contamination, affecting the accuracy of the test. In addition, the operation steps are complicated, increasing the inconvenience and economic burden of use, and the measurement accuracy is affected by environmental factors.

Method used

A multifunctional, reusable blood glucose meter is designed, which integrates the blood collection component and the test strip storage component within the base shell. Through the cooperation of the limiting rod and the push plate, the blood collection needle is automatically pushed out and replaced, and the test strip is removed by the pop-out component, simplifying the operation steps.

Benefits of technology

The test strips have improved their anti-contamination properties, simplified the operation process, and enhanced the user experience, especially the convenience for elderly users, while also reducing test strip waste and economic costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multifunctional alternate glucometer, and belongs to the technical field of glucometers. Comprising a base shell, a display screen is installed on the side face of the top end of the base shell, a hole is formed in the side wall, opposite to the display screen, of the top end of the base shell, a blood sampling assembly is installed in the top end of the base shell, the blood sampling assembly is locally located on the side wall of the base shell, and a limiting cover sleeves the hole; a pop-up assembly is installed below the base shell, one end of the pop-up assembly is installed on the base shell, the other end of the pop-up assembly is arranged in a test paper storage assembly, the pop-up assembly operationally moves blood sampling test paper out of the test paper storage assembly through a paper outlet, a blood glucose circuit module and a battery box are installed in the base shell, and the display screen, the battery box and the blood glucose circuit module are in communication connection. The blood glucose circuit module is opposite to the test paper storage assembly. The blood glucose detector can realize blood glucose detection, simplify operation steps and improve the use experience of elderly users.
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Description

Technical Field

[0001] This utility model belongs to the field of blood glucose meter technology, specifically relating to a multi-functional rotating blood glucose meter. Background Technology

[0002] A blood glucose meter is a portable medical device used to quickly measure the concentration of glucose in the blood, helping diabetic patients and health-conscious individuals monitor their blood sugar levels and adjust their diet or treatment plans accordingly. Currently, home blood glucose products mainly include a lancing device, disposable lancets, test strips, and the blood glucose meter. To measure, first insert the disposable lancet into the lancing device, press down to cock it, and then tighten the lancing device head. Take out the blood glucose test strip, correctly identify the front and back, and insert it into the blood glucose meter. After sterilization, quickly prick your fingertip with the lancet, align the absorbent area of ​​the test strip with the blood droplet, ensuring the blood fully covers the test area, and complete the measurement.

[0003] Existing blood glucose meters offer real-time monitoring and great convenience for users. However, the test strips are stored separately from the meter, making them susceptible to contamination and affecting the accuracy of blood glucose readings. Furthermore, accidental spillage can occur each time a test strip is opened, increasing inconvenience and waste. The high cost of test strips and consumables can also impose a financial burden on users. Additionally, the measurement accuracy of blood glucose meters is affected by environmental factors, potentially leading to unstable data. Moreover, multiple operating steps can be confusing for new users, impacting the overall user experience. Utility Model Content

[0004] Purpose of the utility model: To provide a multifunctional rotating blood glucose meter that solves the above-mentioned problems existing in the prior art.

[0005] Technical Solution: A multifunctional reusable blood glucose meter includes a base shell, a display screen mounted on the top side of the base shell, an opening on the side wall opposite the display screen at the top of the base shell, a blood collection component installed inside the top of the base shell, a portion of the blood collection component located on the side wall of the base shell, a limit cap fitted over the opening, a test strip storage component installed inside the lower end of the base shell for storing blood test strips, a pop-out component installed below the base shell, one end of the pop-out component mounted on the base shell, the other end of the pop-out component located inside the test strip storage component, the pop-out component operablely removing the blood test strips through the paper outlet from the test strip storage component, a blood glucose circuit module and a battery compartment installed inside the base shell, the display screen, battery compartment and blood glucose circuit module being communicatively connected, the blood glucose circuit module being opposite the test strip storage component.

[0006] Preferably, the blood collection assembly includes a needle cam disk disposed within the opening. The needle cam disk has a plurality of placement holes arranged in a circumferential array. Blood collection needles are placed within the placement holes. A rotating shaft is mounted on the needle cam disk. The outer wall of the rotating shaft has a corrugated path with connected ends. A positioning shaft is sleeved on the rotating shaft and mounted on the base shell. A movable part is sleeved on the positioning shaft, and a spring is sleeved on the positioning shaft. One end of the spring abuts against the movable part, which is partially located within the corrugated path. The other end of the spring abuts against the rotating shaft. The movable part is connected to a push rod, and a push plate is installed longitudinally at the end of the push rod near the display screen. A limit rod is installed at the center of the side of the push plate near the inner wall of the base shell. The limit rod passes through the base shell, and a return spring is sleeved on the limit rod. One end of the return spring is connected to the inner wall of the base shell, and the other end of the return spring is connected to the push plate. A blood collection button is installed at the end of the limit rod. By applying external force to the blood collection button, the movable part and the push rod are moved under the cooperation of the limit rod and the push plate, pushing out the blood collection needle in the needle cam plate and causing the needle cam plate to rotate.

[0007] Preferably, the test strip storage assembly includes a placement shell, which is installed inside the base shell via a connector. The placement shell is a hollow structure with an open top. A paper outlet is provided at the bottom of the placement shell, away from the connector. A push hole is provided on the side wall of the placement shell near the inner wall of the base shell. A small push rod is installed on the inner wall of the base shell. One end of the small push rod is installed on the inner wall of the base shell. The small push rod is communicatively connected to a blood glucose circuit module. A distance sensor is installed on the moving end of the small push rod, and the distance sensor is communicatively connected to the blood glucose circuit module. The moving end of the small push rod is operably inserted into the push hole. Baffles are installed on both sides of the lower end of the paper outlet.

[0008] Preferably, the pop-up component includes a movable block slidably mounted on the base shell. A connecting rod is installed at the end of the movable block located inside the base shell. A rectangular frame is installed at the end of the connecting rod near the test strip storage component. The rectangular frame is operably disposed within the test strip storage component.

[0009] Preferably, the base shell has a first opening on the side wall near the battery box, and a cover plate can be detachably installed on the first opening.

[0010] Preferably, the base shell has a second opening on the side wall near the test strip storage assembly, and a movable plate is detachably installed on the second opening.

[0011] Beneficial effects: This utility model relates to a multifunctional interchangeable blood glucose meter, in which the blood collection component and the test strip storage component are both installed in the base shell, which facilitates the carrying and storage of the blood glucose meter, and at the same time reduces the chance of blood test strip contamination. By applying external force to the blood collection button in the blood collection component, the moving part and the push rod are moved under the cooperation of the limiting rod and the push plate, so that the blood collection needle in the blood collection component can be pushed out to collect blood. At the same time, after the blood collection needle in the needle cam plate is pushed out, the needle cam plate is rotated to complete the replacement of the blood collection needle.

[0012] Secondly, with the cooperation of the pop-up component and the test strip storage component, the blood test strip placed in the test strip storage component is removed through the paper outlet. With the cooperation of the baffle, the removed blood test strip is limited within the rectangular frame. At this time, the blood test strip comes into contact with the blood glucose circuit template, and blood glucose can be detected. This simplifies the operation steps and improves the user experience for elderly users. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0014] Figure 2 This is a schematic diagram of the internal structure of the base shell of this utility model;

[0015] Figure 3 This is a schematic diagram of the blood collection component structure of this utility model;

[0016] Figure 4 This is a partial schematic diagram of the pop-up component of this utility model;

[0017] Figure 5 This is a partial schematic diagram of the test paper storage component of this utility model;

[0018] Figures 1 to 5 The attached diagram is labeled as follows: 1. Base shell; 2. Display screen; 3. Blood collection assembly; 4. Limiting cover; 5. Test strip storage assembly; 6. Pop-up assembly; 7. Blood glucose circuit module; 8. Battery box; 9. Cover plate; 10. Movable plate;

[0019] 301. Needle cam plate; 302. Placement hole; 303. Rotating shaft; 304. Corrugated path; 305. Positioning shaft; 306. Moving part; 307. Push rod; 308. Push plate; 309. Limiting rod; 310. Return spring; 311. Blood collection button;

[0020] 501. Housing; 502. Paper outlet; 503. Push hole; 504. Small push rod; 505. Baffle;

[0021] 601. Moving block; 602. Connecting rod; 603. Rectangular frame. Detailed Implementation

[0022] like Figures 1 to 5 As shown, this utility model provides a technical solution: a multifunctional interchangeable blood glucose meter, including a base shell 1, a display screen 2, a blood collection component 3, a test strip storage component 5, and a blood glucose circuit module 7, as follows. Figure 2As shown, the display screen 2 is mounted on the top side of the base shell 1. An opening is formed on the side wall opposite to the display screen 2 at the top of the base shell 1. A blood collection component 3 is installed inside the top of the base shell 1, with a portion of the blood collection component 3 located on the side wall of the base shell 1. A limiting cap 4 is fitted onto the opening. In this embodiment, the limiting cap 4 is installed at the opening of the base shell 1 via a threaded connection. A test strip storage component 5 is installed inside the lower end of the base shell 1. The test strip storage component 5 is used to store blood collection test strips. Both the blood collection component 3 and the test strip storage component 5 are installed inside the base shell 1. To facilitate the carrying and storage of the blood glucose meter and reduce the chance of blood test strip contamination, a pop-out component 6 is installed below the base shell 1. One end of the pop-out component 6 is installed on the base shell 1, and the other end is located inside the test strip storage component 5. The pop-out component 6 can operatively remove the blood test strip from the test strip storage component 5 through the paper outlet 502. A blood glucose circuit module 7 and a battery box 8 are installed inside the base shell 1. The display screen 2, the battery box 8, and the blood glucose circuit module are communicatively connected. The blood glucose circuit module 7 is opposite to the test strip storage component 5.The blood glucose circuit module 7 can be an LR-SP-A21 model, which supports 5D blood glucose, blood ketone body, and blood uric acid detection and has the functions of ultra-micro blood collection and 5-second rapid detection. However, the blood glucose circuit module 7 is not limited to this type of module. The blood collection component 3 includes a needle cam disk 301, which is disposed in the opening. The needle cam disk 301 has several placement holes 302 arranged in a circumferential array. A blood collection needle is placed in the placement hole 302. A rotating shaft 303 is mounted on the cam disk 301. The outer wall of the rotating shaft 303 has a corrugated path 304 with interconnected ends. A positioning shaft 305 is sleeved on the rotating shaft 303 and mounted on the base shell 1. A moving part 306 is sleeved on the positioning shaft 305, and a spring is sleeved on the positioning shaft 305. One end of the spring abuts against the moving part 306, which is partially located within the corrugated path 304. The other end of the spring abuts against the rotating shaft 303. A push rod 3 is inserted into the moving part 306. 07. A push plate 308 is longitudinally mounted on the end of the push rod 307 near the display screen 2. A limit rod 309 is mounted on the center of the side of the push plate 308 near the inner wall of the base shell 1. The limit rod 309 penetrates the base shell 1. A return spring 310 is sleeved on the limit rod 309. One end of the return spring 310 is connected to the inner wall of the base shell 1, and the other end of the return spring 310 is connected to the push plate 308. A blood collection button 311 is mounted on the end of the limit rod 309. By applying external force to the blood collection button 311, the limit rod 309 can be used to release the blood collection button. With the cooperation of the position lever 309 and the push plate 308, the moving part 306 and the push rod 307 are moved, pushing out the blood collection needle in the needle cam plate 301 and causing the needle cam plate 301 to rotate. By applying external force to the blood collection button 311 in the blood collection assembly 3, with the cooperation of the limit lever 309 and the push plate 308, the moving part 306 and the push rod are moved, thus pushing out the blood collection needle in the blood collection assembly 3 to collect blood. At the same time, after pushing out the blood collection needle in the needle cam plate 301, the needle cam plate 301 is rotated to complete the replacement of the blood collection needle.

[0023] In a further embodiment, the test strip storage assembly 5 includes a placement shell 501, a paper outlet 502, a small push rod 504, and a baffle 505. The placement shell 501 is installed inside the base shell 1 via a connector. The placement shell 501 is a hollow structure with an open top. The paper outlet 502 is located at the bottom of the placement shell 501 and is located away from the connector. A push hole 503 is provided on the side wall of the placement shell 501 near the inner wall of the base shell 1. A small push rod 504 is installed on the inner wall of the base shell 1. One end of the small push rod 504 is installed on the inner wall of the base shell 1. The small push rod 504 is communicatively connected to the blood glucose circuit module 7. A distance sensor is installed on the moving end of the small push rod 504 and is communicatively connected to the blood glucose circuit module 7. The distance sensor detects the distance between the moving end of the small push rod 504 and the inner wall of the placement shell 501 to determine whether there are still blood test strips inside the placement shell 501. The mobile terminal is operablely inserted into the push hole 503. Baffles 505 are installed on both sides of the lower end of the paper outlet 502. The ejection component 6 includes a moving block 601, a connecting rod 602, and a rectangular frame 603. The moving block 601 is slidably mounted on the base shell 1. The connecting rod 602 is installed at the end of the moving block 601 located inside the base shell 1. The rectangular frame 603 is installed at the end of the connecting rod 602 near the test strip storage component 5. The rectangular frame 603 is operably positioned on the test strip storage component 5. Within component 5, by applying a pushing force to the moving block 601, the rectangular frame 603 is moved towards the paper outlet 502 in cooperation with the connecting rod 602. This allows the blood test strip, which has moved into the rectangular frame 603, to be removed from the placement shell 501. With the cooperation of the baffle 505, the removed blood test strip is confined within the rectangular frame 603. This enables the blood glucose test to be completed by the blood glucose circuit module 7 after blood collection, simplifying the operation steps and improving the user experience for elderly users.

[0024] In a further embodiment, the base shell 1 has a first opening on the side wall near the battery box 8, and a cover plate 9 is detachably installed on the first opening. By removing the cover plate 9, the battery in the battery box 8 can be quickly replaced. The base shell 1 has a second opening on the side wall near the test strip storage assembly 5, and a movable plate 10 is detachably installed on the second opening. By removing the movable plate 10, blood test strips can be added to the test strip storage assembly 5.

[0025] The preferred embodiments of the present invention have been described in detail above. However, the present invention is not limited to the specific details of the above embodiments. Within the scope of the technical concept of the present invention, various equivalent transformations can be made to the technical solutions of the present invention, and all such equivalent transformations fall within the protection scope of the present invention.

Claims

1. A multifunctional rotating blood glucose meter, characterized in that, The system includes a base shell (1), a display screen (2) mounted on the top side of the base shell (1), an opening on the side wall opposite to the display screen (2) at the top of the base shell (1), a blood collection component (3) installed inside the top of the base shell (1), the blood collection component (3) being partially located on the side wall of the base shell (1), a limit cap (4) fitted onto the opening, a test strip storage component (5) installed inside the lower end of the base shell (1), the test strip storage component (5) being used to store blood test strips, and a pop-out component (6) installed below the base shell (1). One end of the pop-out component (6) is installed on the base shell (1), and the other end of the pop-out component (6) is located inside the test strip storage component (5). The pop-out component (6) can operatively remove the blood test strip from the test strip storage component (5) through the paper outlet (502). The base shell (1) is equipped with a blood glucose circuit module (7) and a battery box (8). The display screen (2), the battery box (8) and the blood glucose circuit module are communicatively connected. The blood glucose circuit module (7) is opposite to the test strip storage component (5).

2. The multifunctional rotating blood glucose meter according to claim 1, characterized in that, The blood collection assembly (3) includes a needle cam disk (301), which is disposed in the opening. The needle cam disk (301) has several placement holes (302) arranged in a circumferential array. Blood collection needles are placed in the placement holes (302). A rotating shaft (303) is mounted on the needle cam disk (301). A corrugated path (304) with the ends connected is opened on the outer wall of the rotating shaft (303). The rotating shaft (303) is sleeved with a positioning shaft (305). The positioning shaft (305) is mounted on the base shell (1). A moving part (306) is sleeved on the positioning shaft (305). A spring is sleeved on the positioning shaft (305). One end of the spring abuts against the moving part (306). The moving part (306) is partially located in the corrugated path (304). The other end of the spring abuts against the rotating shaft (303). A push rod (307) is inserted into the screen (2). A push plate (308) is installed longitudinally at the end of the push rod (307) near the display screen (2). A limit rod (309) is installed at the center of the side of the push plate (308) near the inner wall of the base shell (1). The limit rod (309) passes through the base shell (1). A return spring (310) is sleeved on the limit rod (309). One end of the return spring (310) is connected to the inner wall of the base shell (1), and the other end of the return spring (310) is connected to the push plate (308). A blood collection button (311) is installed at the end of the limit rod (309). By applying external force to the blood collection button (311), the moving part (306) and the push rod (307) are moved under the cooperation of the limit rod (309) and the push plate (308), and the blood collection needle in the needle cam plate (301) is pushed out and the needle cam plate (301) is rotated.

3. A multifunctional rotating blood glucose meter according to claim 1, characterized in that, The test strip storage assembly (5) includes a placement shell (501), which is installed inside the base shell (1) via a connector. The placement shell (501) is a hollow structure with an open top. A paper outlet (502) is provided at the bottom of the placement shell (501), which is away from the connector. A push hole (503) is provided on the side wall of the placement shell (501) near the inner wall of the base shell (1). A small... A small push rod (504) is installed at one end on the inner wall of the base shell (1). The small push rod (504) is communicatively connected to the blood glucose circuit module (7). A distance sensor is installed on the moving end of the small push rod (504). The distance sensor is communicatively connected to the blood glucose circuit module (7). The moving end of the small push rod (504) is operably inserted into the push hole (503). Baffles (505) are installed on both sides of the lower end of the paper outlet (502).

4. A multifunctional rotating blood glucose meter according to claim 1, characterized in that, The pop-up component (6) includes a movable block (601), which is slidably mounted on the base shell (1). A connecting rod (602) is installed at the end of the movable block (601) located inside the base shell (1). A rectangular frame (603) is installed at the end of the connecting rod (602) near the end of the test strip storage component (5). The rectangular frame (603) is operably located inside the test strip storage component (5).

5. A multifunctional rotating blood glucose meter according to claim 1, characterized in that, The base shell (1) has a first opening on the side wall near the battery box (8), and a cover plate (9) is detachably installed on the first opening.

6. A multifunctional rotating blood glucose meter according to claim 1, characterized in that, The base shell (1) has a second opening on the side wall near the test strip storage assembly (5), and a movable plate (10) is detachably installed on the second opening.