Self-service blood glucose monitoring equipment
By setting a buffer chamber and a buffer mechanism at the top angle of the self-service blood glucose monitoring device, combined with an L-shaped anti-collision piece, the problem of easy damage to the internal components of the equipment during impact and drop is solved, achieving higher impact resistance and stability of blood glucose monitoring.
Patent Information
- Application Number
- CN202422167619.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-09-04
AI Technical Summary
The existing self-service blood sugar monitoring equipment cannot effectively absorb impact force when facing shock and fall, which can easily lead to shifting or damage to the internal components of the equipment, affecting the accuracy and continuity of blood sugar monitoring.
A self-service blood glucose monitoring device is designed, and a buffer chamber is set at the top angle of the monitor, and a buffer mechanism is provided therein, including a movable component and an elastic member. It is combined with an L-shaped anti-collision member so that the equipment distributes external force through the anti-collision member when it is impacted or dropped by external impact, and distributes the impact force through the elastic deformation of the buffer mechanism and the articulated ball head of the movable component.
It effectively improves the impact resistance of the equipment, reduces the risk of internal components shift or damage, and ensures the accuracy and continuity of blood sugar monitoring.
Smart Images

Figure CN223004358U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of blood glucose monitoring, and more particularly to a self-service blood glucose monitoring device. Background Art
[0002] Diabetes is a chronic disease with a high incidence rate globally. Patients need to continuously monitor their blood glucose levels to effectively control the disease and prevent the occurrence of complications. For diabetic patients, self-service blood glucose monitoring devices are one of the indispensable tools in daily health management. Most self-service blood glucose monitoring devices are designed to be portable, facilitating patients to use them in non-medical environments such as at home and in the workplace. However, during frequent use and carrying in daily life, and usually requiring one-handed operation, the situation of the device accidentally falling or being externally impacted is relatively common in practical applications, which easily leads to device damage and affects the accuracy and continuity of blood glucose monitoring.
[0003] In order to have a certain anti-drop and anti-impact effect, existing blood glucose monitoring devices usually use high-strength plastics or lightweight metals as the shell material. Although the overall damage of the device can be avoided, when facing impacts and drops, the impact force cannot be effectively absorbed, easily leading to the displacement or damage of internal components of the device, thus affecting the normal use of the device.
[0004] Therefore, it is necessary to provide a self-service blood glucose monitoring device to solve the above problems. Summary of the Utility Model
[0005] The purpose of the utility model is to provide a self-service blood glucose monitoring device to solve the technical problems mentioned in the background art.
[0006] The utility model adopts the following technical solutions:
[0007] A self-service blood glucose monitoring device, comprising:
[0008] A monitor and an L-shaped anti-collision member. A buffer chamber is provided at the vertex angle of the monitor. The monitor is provided with a buffer opening corresponding to the buffer chamber. The anti-collision member is disposed outside the monitor corresponding to the buffer chamber, and the anti-collision member covers the buffer opening;
[0009] A buffer mechanism is disposed in the buffer chamber, including a movable component and an elastic member. Two ends of the movable component are respectively connected to the anti-collision member and the buffer chamber. The elastic member is sleeved on the periphery of the movable component. Among them, the movable component is provided with a hinge ball head that can bend and move.
[0010] Further, the movable component includes a first support rod and a second support rod. The first end of the first support rod is connected to the buffer chamber. The second end of the first support rod is movably connected to the second support rod through the articulated ball head. One end of the second support rod away from the articulated ball head is connected to the anti-collision member.
[0011] Further, the buffer mechanism further includes a support seat and a connection seat. The first end of the first support rod is fixedly connected to the support seat. The support seat is connected to the buffer chamber. One end of the second support rod away from the articulated ball head is fixedly connected to the connection seat. The connection seat is connected to the anti-collision member.
[0012] Further, the first support rod is a telescopic rod, including an inner rod portion and an outer rod portion. The first end of the inner rod portion is fixedly connected to the articulated ball head. The second end of the inner rod portion is slidably connected in the sliding cavity of the outer rod portion. The outer rod portion is fixedly connected to the support seat.
[0013] Further, both ends of the elastic member are fixedly connected to the support seat and the connection seat respectively.
[0014] Further, a test strip insertion port is provided at the top of the monitor. A guiding groove that gradually converges towards the monitor is provided in the test strip insertion port to guide the test strip into the interior of the monitor.
[0015] Further, a dust-proof plug is provided in the test strip insertion port. The dust-proof plug is in interference fit with the test strip insertion port. And the dust-proof plug is made of a flexible material. One end of the dust-proof plug is provided with a traction belt, and the traction belt is fixedly connected to the monitor.
[0016] Further, a display screen and a plurality of buttons are provided on one end face of the monitor. The display screen is recessed towards the body of the monitor. The buttons are arranged below the display screen.
[0017] Further, a storage box is provided at one end of the monitor facing away from the display screen. Both sides of the storage box are open. And sealing covers are provided on both sides of the storage box. One end of the sealing cover is rotatably connected to the storage box through a hinge. A pull ring is provided at one end of the sealing cover away from the hinge.
[0018] Further, a vertical partition board is provided in the storage box. One end of the storage box facing away from the display screen protrudes from the anti-collision member. And a buffer pad is provided at one end of the storage box facing away from the display screen. Opposite ends of the buffer pad extend and bend in opposite directions to wrap the storage box and connect to the monitor.
[0019] Beneficial effects:
[0020] The present utility model provides a self-service blood glucose monitoring device. By arranging a buffer chamber at the top corner of the monitor and arranging a buffer mechanism and an anti-collision member therein, when the device is subjected to external impact or dropping, the anti-collision member can first contact and disperse the external force, so as to avoid directly acting on the monitor; the elastic member in the buffer mechanism can absorb part of the impact force through elastic deformation, and provide a certain adjustment movement and a support with a certain movement range limit through the hinge ball head of the movable assembly, so as to effectively disperse the impact force, further improve the anti-impact performance of the device, and reduce the risk of displacement or damage of internal components. Brief Description of the Drawings
[0021] Figure 1 It is a schematic cross-sectional structure diagram of a self-service blood glucose monitoring device of the present utility model;
[0022] Figure 2 It is a schematic diagram of the buffer mechanism of a self-service blood glucose monitoring device of the present utility model;
[0023] Figure 3 It is a schematic diagram of the overall structure of a self-service blood glucose monitoring device of the present utility model;
[0024] Figure 4 It is an overall schematic diagram of a self-service blood glucose monitoring device of the present utility model in another direction;
[0025] Wherein: 1, monitor; 101, buffer chamber; 2, anti-collision member; 3, buffer mechanism; 31, movable assembly; 311, first support rod; 312, hinge ball head; 313, second support rod; 32, elastic member; 33, support seat; 34, connecting seat; 4, test strip insertion port; 5, dust-proof plug; 51, traction belt; 6, display screen; 7, button; 8, storage box; 9, sealing cover; 10, hinge; 11, pull ring; 12, buffer pad.
[0026] The realization, functional characteristics and advantages of the purpose of the present utility model will be further described with reference to the embodiments and the drawings. Specific Embodiments
[0027] It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0028] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of the said features. In the description of the present utility model, the meaning of "a plurality of" is two or more, unless otherwise specifically and clearly defined.
[0029] In the description of the present utility model, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection" and "coupling" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection or an integral connection; it may be a mechanical connection, a direct connection or an indirect connection through an intermediate medium, and it may be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0030] In the present utility model, unless otherwise clearly specified and limited, the first feature being "above" or "below" the second feature may include the direct contact between the first and second features, or may include the situation where the first and second features are not in direct contact but in contact through other features therebetween. Moreover, the first feature being "above", "over" and "on" the second feature includes that the first feature is directly above and obliquely above the second feature, or merely indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature being "below", "under" and "beneath" the second feature includes that the first feature is directly below and obliquely below the second feature, or merely indicates that the horizontal height of the first feature is lower than that of the second feature.
[0031] Referring to Figure 1 , the present utility model provides a self-service blood glucose monitoring device, comprising: a monitor 1 and an L-shaped anti-collision member 2. A buffer chamber 101 is formed at the vertex angle of the monitor 1. The monitor 1 is provided with a buffer opening corresponding to the buffer chamber 101. The anti-collision member 2 is disposed outside the monitor 1 corresponding to the buffer chamber 101, and the anti-collision member 2 covers the buffer opening.
[0032] A buffer mechanism 3 is provided in the buffer chamber 101, including a movable component 31 and an elastic member 32. Two ends of the movable component 31 are respectively connected to the anti-collision member 2 and the buffer chamber 101. The elastic member 32 is sleeved on the periphery of the movable component 31. Wherein, the movable component 31 is provided with a hinge ball head 312 capable of bending and moving.
[0033] In the above embodiment, a buffer opening is formed at each of the four top corners of the monitor 1 and extends inward to form a buffer chamber 101 for accommodating the buffer mechanism 3. The anti-collision member 2 has an L-shaped structure and is arranged on the outer side of the monitor 1. The front and rear ends of the anti-collision member 2 cover the front and rear end faces of the monitor 1, and the four anti-collision members 2 protect the four top corners of the monitor 1.
[0034] The buffer mechanism 3 mainly includes a movable component 31 and an elastic member 32. The movable component 31 enables relative movement between the anti-collision member 2 and the buffer chamber 101 of the monitor 1. The hinge ball head 312 of the movable component 31 allows the movable component 31 to flexibly bend and move in multiple directions on the basis of a certain support, enhancing the degree of freedom of the buffer mechanism 3.
[0035] The elastic member 32 is sleeved around the periphery of the movable component 31. When the device is impacted, the elastic member 32 absorbs and disperses the external impact force through its own elastic deformation, slowing down the acting force of the impact on the internal components of the device. At the same time, due to the bending and moving ability of the movable component 31, the impact force will not be concentrated at a certain point, but can be dispersed in multiple directions through the hinge ball head 312.
[0036] In summary, by providing a buffer chamber 101 at the top corner of the monitor 1 and arranging a buffer mechanism 3 in it to cooperate with the anti-collision member 2, when the device is externally impacted or dropped, the anti-collision member 2 can first contact and disperse the external force, thus avoiding direct action on the monitor 1; the elastic member 32 in the buffer mechanism 3 can absorb part of the impact force through elastic deformation, and provide certain adjustment movement and support with a certain movement range limit through the hinge ball head 312 of the movable component 31 to effectively disperse the impact force, further improving the anti-impact performance of the device and reducing the risk of displacement or damage of internal components.
[0037] Reference Figure 1 and Figure 2 In an embodiment, the movable component 31 includes a first support rod 311 and a second support rod 313. The first end of the first support rod 311 is connected to the buffer chamber 101. The second end of the first support rod 311 is movably connected to the second support rod 313 through the hinge ball head 312. The end of the second support rod 313 away from the hinge ball head 312 is connected to the anti-collision member 2.
[0038] In the above embodiments, the first support rod 311 and the second support rod 313 can be made of metal materials or high-strength plastic materials to ensure sufficient strength and toughness. The first support rod 311 and the second support rod 313 are movably connected through a hinge ball head 312. The hinge ball head 312 includes a sphere and a socket structure matching therewith. The sphere can freely rotate and swing within the socket, thereby allowing the first support rod 311 and the second support rod 313 to perform relative movements in multiple directions. At the same time, there is also a certain range limit for support and movement to prevent the movable assembly 31 from being excessively deformed.
[0039] In one embodiment, the buffer mechanism 3 further includes a support seat 33 and a connection seat 34. The first end of the first support rod 311 is fixedly connected to the support seat 33. The support seat 33 is connected to the buffer chamber 101. The end of the second support rod 313 far from the hinge ball head 312 is fixedly connected to the connection seat 34. The connection seat 34 is connected to the anti-collision member 2.
[0040] In the above embodiments, the support seat 33 and the connection seat 34 can be made of metal or plastic materials to ensure sufficient strength and stability. The support seat 33 is fixed on the inner wall of the buffer chamber 101 to ensure the stability and reliability of the movable assembly 31 within the buffer chamber 101. The connection seat 34 is fixed on the inner side of the anti-collision member 2 to ensure a firm connection between the movable assembly 31 and the anti-collision member 2. Through the fixing effects of the support seat 33 and the connection seat 34, the movable assembly 31 can effectively disperse the force when being impacted, while maintaining the stability of the overall structure.
[0041] In one embodiment, the first support rod 311 is a telescopic rod, including an inner rod portion and an outer rod portion. The first end of the inner rod portion is fixedly connected to the hinge ball head 312. The second end of the inner rod portion is slidably connected within the sliding cavity of the outer rod portion. The outer rod portion is fixedly connected to the support seat 33.
[0042] In the above embodiments, the telescopic rod enables the first support rod 311 to have a certain telescopic ability when being impacted, thereby further absorbing and dispersing the impact force. The relative sliding between the inner rod portion and the outer rod portion is realized through the sliding cavity, enabling the inner rod portion to freely expand and contract within the outer rod portion. The inner rod portion can slide within the outer rod portion. At the same time, due to the existence of the hinge ball head 312, the inner rod portion can be adjusted in multiple directions to adapt to impact forces in different directions, further improving the anti-impact performance of the device.
[0043] In one embodiment, the two ends of the elastic member 32 are respectively fixedly connected to the support seat 33 and the connection seat 34.
[0044] In the above embodiment, the elastic member 32 is preferably a compression spring, and its two ends are respectively and tightly fixed to the support base 33 and the connection base 34. When the device is impacted, the elastic member 32 absorbs and disperses the external impact force through its own elastic deformation, thereby protecting the internal components of the monitor 1 from damage. The fixing method of the elastic member 32 ensures that it will not fall off or displace during the impact, ensuring the stability and reliability of the buffer mechanism 3.
[0045] Refer to Figure 3 and Figure 4 , in one embodiment, a test strip insertion port 4 is provided at the top of the monitor 1, and a guiding groove that gradually converges towards the monitor 1 is provided in the test strip insertion port 4 to guide the test strip into the interior of the monitor 1.
[0046] In the above embodiment, the test strip insertion port 4 has an inclined surface structure that is convenient for user operation, making it smoother when inserting the blood glucose test strip. The shape and size of the guiding groove match the shape and size of the test strip, ensuring that the test strip will not bend or break during insertion. The inner wall of the guiding groove is coated with a low-friction material, further reducing the resistance when inserting the test strip and improving the convenience of operation.
[0047] In one embodiment, a dust plug 5 is provided in the test strip insertion port 4. The dust plug 5 has an interference fit with the test strip insertion port 4, and the dust plug 5 is made of a flexible material. One end of the dust plug 5 is provided with a traction belt 51, and the traction belt 51 is fixedly connected to the monitor 1.
[0048] In the above embodiment, the dust plug 5 can effectively prevent dust and dirt from entering the test strip insertion port 4, keep the interior of the monitor 1 clean, and prevent pollutants from affecting the detection accuracy. The flexible material of the dust plug 5 enables it to closely fit the shape of the test strip insertion port 4, ensuring that the socket can be completely closed when not in use and preventing the intrusion of external pollutants. The flexible dust plug 5 can also provide a certain degree of buffer protection to prevent damage and deformation of the test strip insertion port 4 caused by dropping.
[0049] The traction belt 51 makes it convenient to take out and re-place the dust plug 5, avoiding the inconvenience caused by losing the dust plug 5. The traction belt 51 is fixedly connected to the monitor 1, ensuring that the dust plug 5 will not be lost during use, and at the same time facilitating the user to quickly find and use the dust plug 5 when needed.
[0050] In one embodiment, a display screen 6 and several buttons 7 are provided on one end face of the monitor 1. The display screen 6 is recessed towards the body of the monitor 1, and the buttons 7 are arranged below the display screen 6.
[0051] In the above embodiments, the depression of the display screen 6 enables the edge of the display screen 6 to have a transition with the body of the monitor 1, reducing the direct damage to the screen of the monitor 1 when there is a collision. The layout of the buttons 7 is reasonable, facilitating the user to make selections and controls during operation. The size and spacing of the buttons 7 ensure the comfort and accuracy of the user during operation.
[0052] In one embodiment, a storage box 8 is provided at one end of the monitor 1 facing away from the display screen 6. Both sides of the storage box 8 are open, and sealing covers 9 are provided on both sides of the storage box 8. One end of the sealing cover 9 is rotatably connected to the storage box 8 through a hinge 10, and a pull ring 11 is provided at the end of the sealing cover 9 away from the hinge 10.
[0053] In the above embodiments, the storage box 8 facilitates the user to store and retrieve test strips or other small accessories. The open settings on both sides of the storage box 8 enable the user to easily put the test strips in or take them out without having to go around to the other side of the monitor 1. The sealing cover 9 is connected to the storage box 8 through the hinge 10, ensuring that it can be tightly closed when not in use, preventing dust and moisture from entering the interior of the storage box 8 and protecting items such as test strips from being contaminated. The pull ring 11 enables the user to conveniently open and close the sealing cover 9, even when wearing gloves. In addition, the edge of the sealing cover 9 is designed with a sealing strip to ensure a good sealing effect when closed, further improving the moisture-proof and dust-proof capabilities of the storage box 8.
[0054] In one embodiment, a vertical partition plate is provided inside the storage box 8. One end of the storage box 8 facing away from the display screen 6 protrudes from the anti-collision member 2, and a buffer pad 12 is provided at one end of the storage box 8 facing away from the display screen 6. The opposite ends of the buffer pad 12 extend and bend in opposite directions to wrap the storage box 8 and connect to the monitor 1.
[0055] In the above embodiments, the vertical partition plate divides the internal space of the storage box 8 into two independent storage areas for storing different types of test strips and blood collection needles, and each category is taken out through the opening of a separate sealing cover 9. The end of the storage box 8 facing away from the display screen 6 protrudes, making the storage box 8 more stable in the overall structure and increasing the storage space at the same time. The two ends of the buffer pad 12 extend and bend in opposite directions to form a protective layer surrounding the storage box 8. When the monitor 1 falls with the side of the storage box 8 or is subjected to external impact, to prevent the anti-collision member 2 from providing insufficient protection, the buffer pad 12 can absorb part of the impact force and protect the monitor 1 from being damaged. The connection of the buffer pad 12 to the monitor 1 ensures the stability and durability of the overall structure, and also provides additional protection for the monitor 1.
[0056] The above are only the preferred embodiments of the present utility model, and do not thus limit the patent scope of the present utility model. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, shall similarly be included within the patent protection scope of the present utility model.
Claims
1. A self-service blood glucose monitoring device, characterized in that: include: A monitor and an L-shaped anti-collision member, wherein a buffer chamber is provided at a top corner of the monitor, a buffer opening is provided on the monitor corresponding to the buffer chamber, the anti-collision member is provided on the outside of the monitor corresponding to the buffer chamber, and the anti-collision member covers the buffer opening; A buffer mechanism is arranged in the buffer chamber, including a movable component and an elastic member, wherein two ends of the movable component are respectively connected to the anti-collision member and the buffer chamber, and the elastic member is sleeved on the peripheral side of the movable component, wherein the movable component is provided with a hinged ball head that can be bent and moved.
2. A self-service blood glucose monitoring device according to claim 1, characterized in that: The movable component includes a first support rod and a second support rod, the first end of the first support rod is connected to the buffer chamber, the second end of the first support rod is movably connected to the second support rod through the hinged ball head, and the end of the second support rod away from the hinged ball head is connected to the anti-collision component.
3. A self-service blood glucose monitoring device according to claim 2, characterized in that: The buffer mechanism also includes a support seat and a connecting seat. The first end of the first support rod is fixedly connected to the support seat, and the support seat is connected to the buffer chamber. The end of the second support rod away from the articulated ball head is fixedly connected to the connecting seat, and the connecting seat is connected to the anti-collision component.
4. A self-service blood glucose monitoring device according to claim 3, characterized in that: The first support rod is a telescopic rod, including an inner rod portion and an outer rod portion, the first end of the inner rod portion is fixedly connected to the articulated ball head, the second end of the inner rod portion is slidably connected in the sliding cavity of the outer rod portion, and the outer rod portion is fixedly connected to the support seat.
5. The self-service blood glucose monitoring device according to claim 3, characterized in that: Two ends of the elastic member are fixedly connected to the supporting seat and the connecting seat respectively.
6. The self-service blood glucose monitoring device according to claim 1, characterized in that: A test paper insertion port is arranged on the top of the monitor, and a guide groove which gradually converges toward the monitor is arranged in the test paper insertion port to guide the monitoring test paper to be inserted into the monitor.
7. A self-service blood glucose monitoring device according to claim 6, characterized in that: A dust plug is provided in the test paper insertion port, the dust plug is interference fit with the test paper insertion port, and the dust plug is made of flexible material. A traction belt is provided at one end of the dust plug, and the traction belt is fixedly connected to the monitor.
8. The self-service blood glucose monitoring device according to claim 1, characterized in that: A display screen and a plurality of buttons are arranged on one end surface of the monitor, the display screen is recessed toward the body of the monitor, and the buttons are arranged below the display screen.
9. The self-service blood glucose monitoring device according to claim 8, characterized in that: A storage box is arranged at one end of the monitor facing away from the display screen, both sides of the storage box are opened, and both side covers of the storage box are provided with sealing covers, one end of the sealing cover is rotatably connected to the storage box through a hinge, and a pull ring is arranged at the end of the sealing cover away from the hinge.
10. The self-service blood glucose monitoring device according to claim 9, characterized in that: A vertical partition plate is arranged in the storage box, one end of the storage box facing away from the display screen protrudes from the anti-collision part, and a buffer pad is arranged at one end of the storage box facing away from the display screen, and two opposite ends of the buffer pad extend and bend in opposite directions to cover the storage box and connect to the monitor.