Blood glucose monitoring device capable of storing medical instruments
By designing a storage mechanism and an ultraviolet lamp for the blood glucose monitoring device, the problems of storing and disinfecting various consumables have been solved, enabling the classified storage and continuous disinfection of consumables, and improving the convenience and safety of blood glucose monitoring.
Patent Information
- Application Number
- CN202620016561.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-08
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2036-01-08
AI Technical Summary
Existing blood glucose monitoring devices cannot integrate and store multiple medical devices, resulting in insufficient storage capacity and lack of sterilization functions, leading to inconvenience and safety risks.
A blood glucose monitoring device for storing medical supplies has been designed, comprising a storage mechanism, an ultraviolet lamp, and a limiting module, enabling the classified storage and disinfection of consumables. Power is supplied through a rotating shaft and a conductive slip ring to ensure that consumables are stored separately and continuously disinfected.
It enables standardized storage of consumables, simplifies operating procedures, reduces the risk of bacterial growth, improves safety and convenience of use, and meets emergency monitoring needs.
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Figure CN223900792U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to blood sugar monitoring technical field especially relates to a blood sugar monitoring device that can store medical appliances. BACKGROUND
[0002] Blood sugar monitoring is an important part of daily management for diabetic patients. Regularly checking blood sugar levels can help patients accurately control blood sugar changes, provide scientific guidance for lifestyle adjustments, activity arrangements, diet matching, and reasonable medication, and allow patients to promptly identify blood sugar abnormalities, so as to seek medical treatment as soon as possible, ensure blood sugar management effectiveness and physical health. During blood sugar monitoring, blood sugar monitoring devices, supporting medical consumables, and auxiliary tools are needed to complete the operation. Therefore, the practicality, storage convenience, and hygiene safety of the device directly affect the monitoring efficiency and patient experience.
[0003] Current blood sugar monitoring devices on the market have many drawbacks in actual application. On the one hand, the supporting medical materials (such as medical needles and test papers) of existing devices need to be stored separately in a storage box and cannot be integrated with the monitoring device, which leads to the need for patients to find the storage box when monitoring, making the operation cumbersome and prone to missing consumables. On the other hand, the test pen and detector of most devices are designed separately, which requires time to find the test pen when in use, especially in the case of carrying out or emergency monitoring, which is more inconvenient.
[0004] To improve the above problems, relevant fields have appeared improved schemes with integrated storage functions. For example, a blood sugar monitoring device with publication number "CN220961544U" is disclosed, which includes a blood sugar monitor. The monitor is provided with a display, control keys, and a key on the upper end, and is connected to a detection head at the rear end. The left end is fixed with a storage structure, and the right end is installed with a detection structure. Through the cooperation of the storage structure and the detection structure, the test pen, test paper, and detection needle can be stored and fixed with the monitor, which improves the convenience and portability to a certain extent. At the same time, through classified placement, it is convenient to take and supplement the consumables.
[0005] However, the blood glucose monitoring device disclosed in the patent still has significant defects. In terms of storage capacity, only two storage compartments are provided inside the storage box, which can only store two types of items. However, in the actual blood glucose monitoring process, in addition to the test pen, test paper, and needle, alcohol cotton pads, tourniquets, and other medical auxiliary tools are also needed. The existing storage structure cannot meet the simultaneous storage needs of multiple types of tools, and additional storage containers need to be carried, which does not completely solve the problem of scattered storage. From the perspective of hygiene and safety, the device lacks disinfection function. The medical consumables and auxiliary tools stored inside the storage box for a long time are prone to bacterial growth. These tools need to be directly in contact with the patient's skin (such as alcohol cotton pads for skin disinfection and tourniquets for blood vessel compression). Bacterial contamination may increase the risk of skin infection in patients, affecting the safety of use. In summary, the existing blood glucose monitoring device has deficiencies in storage capacity and disinfection function, which restricts its overall practicality and safety, and cannot meet the needs of patients for convenient and hygienic monitoring. Therefore, further improvement and optimization are needed. Practical new type content
[0006] In order to solve the above problems, the utility model provides a blood glucose monitoring device capable of storing medical tools to more accurately solve the above-mentioned problems.
[0007] The utility model realizes the following technical scheme:
[0008] The utility model provides a blood glucose monitoring device capable of storing medical tools, which comprises a blood glucose monitor, a storage mechanism is fixedly installed on the rear upper end of the blood glucose monitor, a display screen is arranged on the front upper end of the blood glucose monitor, and a control keyboard is arranged on one side of the front of the blood glucose monitor.
[0009] The storage mechanism comprises a storage cylinder, a storage module is rotatably connected inside the storage cylinder, a limiting module is fixedly installed at one end of the storage cylinder, a taking and placing slot is formed in the upper end of the rear side of the storage cylinder, a covering module is rotatably connected to the outer surface of the storage cylinder, the covering module covers the outer side of the taking and placing slot, and the outer ends of the covering module and the storage module are fixedly connected through the limiting module.
[0010] Further, the storage module comprises a rotating shaft, the rotating shaft is rotatably connected inside the storage cylinder, the rotating shaft penetrates the storage cylinder at both ends, the limiting module is fixedly installed at one end of the rotating shaft, and interval plates are fixedly installed on the outer surface of the rotating shaft in a ring-shaped arrangement at equal intervals.
[0011] Further, lamp sockets are fixedly connected to the inside of the storage slot at equal intervals on both sides.
[0012] Further, an electrically conductive slip ring is arranged at one end of the rotating shaft, and each ultraviolet lamp is powered through the electrically conductive slip ring.
[0013] Further, the covering module comprises a ring-shaped rail fixedly installed at two ends of the storage cylinder, the limiting module is rotationally connected to the inner side of one ring-shaped rail, a sliding ring is rotationally connected to the inside of the ring-shaped rail, a connecting arm is fixedly connected to the outer side of the sliding ring, a covering plate is fixedly installed at the rear side of the connecting arm, and the covering plate covers the outer side of the taking and placing slot.
[0014] Further, the limiting module comprises a guide rail and a first clamping hole, the guide rail is fixedly installed at one end of the rotating shaft, limiting springs are fixedly connected to the inside of both ends of the guide rail, sliding blocks are fixedly installed at the outer ends of the limiting springs, clamping pins are fixedly connected to the outer sides of the sliding blocks, the first clamping holes are arranged in a ring shape at equal intervals on the inner side of the ring-shaped rail, second clamping holes are arranged in a ring shape at equal intervals on the inner side of the sliding ring, and the end portions of the clamping pins are inserted into the second clamping holes in the sliding ring through the first clamping holes in the ring-shaped rail.
[0015] Further, the sliding block is fixedly connected to an adjusting pressing plate away from the storage cylinder, the outer end of the adjusting pressing plate is circularly arranged, and the outer surface of the adjusting pressing plate is circularly arranged at the corners.
[0016] The beneficial effects of the present application are as follows:
[0017] 1. During the application of the technical solution, the storage mechanism, the covering module and the limiting module are arranged, so that various medical consumables such as test paper, needles, alcohol cotton sheets and tourniquets can be classified and stored during use. The spacing plate in the storage mechanism divides an independent storage space, different consumables can be stored separately, confusion is avoided, the adjusting pressing plate is pressed to release the fixation and remove the covering plate during storage, the consumables can be placed in different storage grooves correspondingly, the covering plate is reset after storage and is fixed by the limiting module, an additional separate storage box is not needed, the effect of standardizing the storage of consumables, simplifying the taking process and improving the monitoring preparation efficiency is achieved, and the problems of separate storage of consumables of the blood glucose monitoring device in the prior art, classification confusion, complicated taking and easy omission, especially inconvenience when going out or in emergency monitoring, and insufficient storage capacity to comprehensively store medical instruments are solved.
[0018] 2、The technical scheme is applied during the application, the medical consumables stored can be effectively disinfected during use through the setting of the ultraviolet lamp, the conductive slip ring and the covering module and the limiting module, the ultraviolet lamp is powered on after new consumables are put in or taken out each time, the conductive slip ring provides stable power supply for the ultraviolet lamp, the disinfection process is ensured to continuously proceed, meanwhile, the covering module and the limiting module cooperate to isolate external pollution and keep the storage environment clean, thereby achieving the effects of reducing the bacterial growth on the surface of medical instruments, reducing the risk of use infection, and ensuring use safety, solving the problems in the prior art that blood glucose monitoring devices lack disinfection function, bacteria are easy to grow in long-term stored consumables, the risk of user skin infection may be increased, and consumables are easy to be polluted by the outside. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a whole structure schematic view of the utility model;
[0020] Figure 2 It is a rear view structure schematic view of the utility model;
[0021] Figure 3 It is a covering module split state structure schematic view of the utility model;
[0022] Figure 4 It is a whole split state structure schematic view of the utility model;
[0023] Figure 5 It is a storage module structure schematic view of the utility model;
[0024] Figure 6 It is a whole structure schematic view of the utility model; Figure 3 of the utility model.
[0025] In the figure: 1, blood glucose monitor; 2, storage mechanism; 21, storage cylinder; 22, storage module; 221, rotating shaft; 222, spacing plate; 223, storage groove; 224, lamp holder; 225, ultraviolet lamp; 226, conductive slip ring; 23, limiting module; 231, guide rail; 232, first clamping hole; 233, limiting spring; 234, sliding block; 235, clamping pin; 236, adjusting press plate; 237, second clamping hole; 24, taking and placing groove; 25, covering module; 251, annular rail; 252, sliding ring; 253, connecting arm; 254, covering plate; 3, display screen; 4, control keyboard. DETAILED DESCRIPTION
[0026] Clearly, the described embodiments are merely a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0027] Embodiment one, in combination Figures 1-6 As shown in the accompanying drawings of the embodiments of the present application, a blood glucose monitoring device capable of storing medical instruments comprises a blood glucose monitor 1, a storage mechanism 2 is fixedly installed on the upper end of the rear side of the blood glucose monitor 1, a display screen 3 is arranged on the front upper end of the blood glucose monitor 1, and a control keyboard 4 is arranged on one side of the front of the blood glucose monitor 1.
[0028] The storage mechanism 2 comprises a storage cylinder 21, a storage module 22 is rotatably connected inside the storage cylinder 21, a limiting module 23 is fixedly installed at one end of the storage cylinder 21, a taking and placing slot 24 is arranged on the upper end of the rear side of the storage cylinder 21, a covering module 25 is rotatably connected to the outer surface of the storage cylinder 21, the covering module 25 covers the outside of the taking and placing slot 24, and the outer end of the covering module 25 and the storage module 22 is clamped and fixed by the limiting module 23.
[0029] The storage module 22 comprises a rotating shaft 221, the rotating shaft 221 is rotatably connected inside the storage cylinder 21, the two ends of the rotating shaft 221 penetrate the storage cylinder 21, the limiting module 23 is fixedly installed at one end of the rotating shaft 221, the outer surface of the rotating shaft 221 is fixedly installed with interval plates 222 in a ring shape at equal intervals, storage grooves 223 are formed between each interval plate 222, lamp holders 224 are fixedly connected at equal intervals on the inner sides of the storage grooves 223, ultraviolet lamps 225 are fixedly connected to the inner sides of the lamp holders 224, one end of the rotating shaft 221 is provided with a conductive slip ring 226, and each ultraviolet lamp 225 is powered through the conductive slip ring 226.
[0030] The technical solution in the above-described embodiments of this application, through the setting of a storage module 22 and supporting lamp holder 224, ultraviolet lamp 225, and conductive slip ring 226, realizes the classified storage and disinfection of medical consumables. During storage, rotating the shaft 221 drives the partition plate 222 to rotate, adjusting the empty storage slot 223 to a suitable position, and placing different consumables according to type. The partition plate 222 can prevent consumables from being mixed up. During disinfection, the conductive slip ring 226 at one end of the shaft 221 supplies power to the ultraviolet lamp 225, and the lamp holder 224 fixes the lamp position, ensuring that the ultraviolet lamp 225 stably irradiates the consumables in the storage slot 223. When consumables need to be retrieved for blood glucose monitoring-related operations, the shaft 221 is rotated again to adjust the target storage slot 223 to a position for easy access. The above storage or disinfection operations can be repeated subsequently. This design solves the problems of chaotic storage and lack of effective disinfection methods for consumables in existing blood glucose monitoring devices.
[0031] Example 2, combined with Figures 3-4 and Figure 6 As shown, the covering module 25 includes an annular rail 251, which is fixedly installed at both ends of the storage cylinder 21. The limiting module 23 is rotatably connected to the inner side of one of the annular rails 251. A sliding ring 252 is rotatably connected inside the annular rail 251. A connecting arm 253 is fixedly connected to the outer side of the sliding ring 252. A cover plate 254 is fixedly installed on the rear side of the connecting arm 253, covering the outer side of the pick-and-place slot 24. The limiting module 23 includes a guide rail 231 and a first locking hole 232. The guide rail 231 is fixedly installed at one end of the rotating shaft 221. Limiting springs 233 are fixedly connected to both ends of the guide rail 231. The outer ends of the limiting springs 233 are fixedly installed with... There is a slider 234, and a locking pin 235 is fixedly connected to the outside of the slider 234. The first locking hole 232 is arranged in a ring at equal intervals on the inner side of the ring rail 251. The second locking hole 237 is arranged in a ring at equal intervals on the inner side of the sliding ring 252. The end of the locking pin 235 passes through the first locking hole 232 of the ring rail 251 and is inserted into the second locking hole 237 of the sliding ring 252. An adjusting pressing plate 236 is fixedly connected to the side of the slider 234 away from the storage cylinder 21. The outer end of the adjusting pressing plate 236 is circular and its outer surface corners are all arc-shaped. The outer surface corners of the blood glucose monitor 1 and the outer surface corners of the storage cylinder 21 are also arc-shaped.
[0032] The technical scheme in the embodiment of the application has the following advantages: in the initial state, the cover plate 254 of the covering module 25 tightly covers the taking and placing groove 24 of the storage cylinder 21, and the pin 235 of the limiting module 23 is inserted into the second clamping hole 237 to achieve fixation, so that the consumables can be prevented from falling or being contaminated. When the medical device is stored, the operator presses the adjusting pressing plate 236, drives the sliding block 234 to press the limiting spring 233, and the pin 235 is extracted from the second clamping hole 237 to release the fixation; the connecting arm 253 is pushed to move away the cover plate 254, the rotating shaft 221 of the storage module 22 is rotated, the empty storage groove 223 is aligned with the taking and placing groove 24, and the consumables such as test paper, a needle and an alcohol cotton sheet are classified and placed, and the interval plate 222 can prevent the consumables from being confused; after the storage is completed, the cover plate 254 is reset, the adjusting pressing plate 236 is loosened, the limiting spring 233 pushes the pin 235 to reset and insert into the second clamping hole 237, and the fixation is completed.
[0033] The use principle and advantages of the utility model are as follows: in the initial state, the cover plate 254 of the covering module 25 tightly covers the taking and placing groove 24 of the storage cylinder 21, and the pin 235 of the limiting module 23 is inserted into the second clamping hole 237 to achieve fixation, so that the consumables can be prevented from falling or being contaminated. When the medical device is stored, the operator presses the adjusting pressing plate 236, drives the sliding block 234 to press the limiting spring 233, and the pin 235 is extracted from the second clamping hole 237 to release the fixation; the connecting arm 253 is pushed to move away the cover plate 254, the rotating shaft 221 of the storage module 22 is rotated, the empty storage groove 223 is aligned with the taking and placing groove 24, and the consumables such as test paper, a needle and an alcohol cotton sheet are classified and placed, and the interval plate 222 can prevent the consumables from being confused; after the storage is completed, the cover plate 254 is reset, the adjusting pressing plate 236 is loosened, the limiting spring 233 pushes the pin 235 to reset and insert into the second clamping hole 237, and the fixation is completed.
[0034] When blood glucose monitoring is performed, the operator releases the fixation and moves away the cover plate 254 in the same way, rotates the rotating shaft 221 to take out the alcohol cotton sheet, the needle and the test paper in sequence, disinfects the blood sampling site with the alcohol cotton sheet, puts the needle on the test pen to sample blood, inserts the test paper into the detection interface of the blood glucose monitor 1, starts the monitoring program through the control keyboard 4, and blood glucose data is displayed on the display screen 3 in real time.
[0035] After each time of storing new consumables or taking the consumables, the disinfection function can be started by inputting an instruction or triggering a preset mode through the control keyboard 4, the conductive slip ring 226 stably supplies power for the ultraviolet lamp 225, the lamp holder 224 fixes the position of the lamp, and when disinfection is performed, rotating the rotating shaft 221 can make the consumables in each storage groove 223 be uniformly irradiated, and the conductive slip ring 226 can prevent the wire from being wound, so that the power supply is not interrupted; before the consumables are taken, the ultraviolet lamp 225 needs to be turned off through the control keyboard 4.
[0036] After the monitoring is completed, the operator processes the waste needle according to the specification, puts the remaining test paper back into the corresponding storage groove 223, rotates the rotating shaft 221 to make the storage grooves 223 away from the taking and placing groove 24, resets and fixes the cover plate 254, and ends the monitoring process;
[0037] The blood glucose monitor 1 of the device, the outer surface edges of the storage cylinder 21 and the outer end of the adjusting pressing plate 236 are all arc-shaped, which can avoid scratching the hands and facilitate cleaning. The scheme realizes centralized storage of consumables through the multiple storage grooves 223, simplifies the operation process, reduces the risk of bacterial growth through the ultraviolet lamp 225 disinfection function, protects the consumables through the cooperation of the covering module 25 and the limiting module 23, saves space through the rotating storage design, and meets the miniaturization and portability requirements.
[0038] The protection content of the present application does not involve the improvement of the electronic components of the device, and therefore the working principle of each electronic component is not described in detail here. The electronic components of the present application are all conventional electronic components applied in the prior art, which all belong to the conventional technical means of the prior art, and the prior art is very mature, so it is not repeated here.
[0039] Of course, the present application can also have other various embodiments, and other embodiments obtained by those skilled in the art based on the present embodiment without any creative labor belong to the scope protected by the present application.
Claims
1. A blood glucose monitoring device capable of housing a medical implement, characterized by, Including blood glucose monitor (1), the rear side upper end of blood glucose monitor (1) is fixedly installed with storage mechanism (2), the front upper end of blood glucose monitor (1) is equipped with display screen (3), the front side of blood glucose monitor (1) is equipped with control keyboard (4); The storage mechanism (2) includes a storage cylinder (21), a storage module (22) is rotatably connected inside the storage cylinder (21), a limiting module (23) is fixedly installed at one end of the storage cylinder (21), a taking and placing slot (24) is formed at the upper end of the rear side of the storage cylinder (21), a covering module (25) is rotatably connected to the outer surface of the storage cylinder (21), the covering module (25) covers the outside of the taking and placing slot (24), and the outer end of the covering module (25) and the storage module (22) is fixedly connected by the limiting module (23).
2. The blood glucose monitoring device capable of storing medical tools according to claim 1, wherein, The storage module (22) includes a rotating shaft (221), the rotating shaft (221) is rotatably connected inside the storage cylinder (21), the rotating shaft (221) penetrates the storage cylinder (21) at both ends, the limiting module (23) is fixedly installed at one end of the rotating shaft (221), and interval plates (222) are fixedly installed on the outer surface of the rotating shaft (221) in a ring-shaped arrangement at equal intervals.
3. The blood glucose monitoring device capable of storing medical tools according to claim 2, wherein, The inside of the storage groove (223) is fixedly connected with a lamp holder (224) at equal intervals on both sides in a linear arrangement, and the inner side of the lamp holder (224) is fixedly connected with an ultraviolet lamp (225).
4. The blood glucose monitoring device capable of storing medical tools according to claim 3, wherein, One end of the rotating shaft (221) is provided with a conductive slip ring (226), and each ultraviolet lamp (225) is powered through the conductive slip ring (226).
5. The blood glucose monitoring device capable of storing medical tools according to claim 1, wherein, The covering module (25) includes a ring-shaped rail (251), the ring-shaped rail (251) is fixedly installed at both ends of the storage cylinder (21), the limiting module (23) is rotatably connected to the inner side of one ring-shaped rail (251), the ring-shaped rail (251) is rotatably connected with a sliding ring (252) inside, the outer side of the sliding ring (252) is fixedly connected with a connecting arm (253), the rear side of the connecting arm (253) is fixedly installed with a covering plate (254), and the covering plate (254) covers the outer side of the taking and placing slot (24).
6. The blood glucose monitoring device capable of storing medical tools according to claim 5, wherein, The limiting module (23) includes a guide rail (231) and a first clamping hole (232), the guide rail (231) is fixedly installed at one end of the rotating shaft (221), the limiting spring (233) is fixedly connected at both ends inside the guide rail (231), the outer end of the limiting spring (233) is fixedly installed with a sliding block (234), the outer side of the sliding block (234) is fixedly connected with a clamping pin (235), the first clamping hole (232) is formed in a ring-shaped arrangement at equal intervals on the inner side of the ring-shaped rail (251), the second clamping hole (237) is formed in a ring-shaped arrangement at equal intervals on the inner side of the sliding ring (252), and the end of the clamping pin (235) penetrates the first clamping hole (232) of the ring-shaped rail (251) and is inserted into the second clamping hole (237) of the sliding ring (252).
7. The blood glucose monitoring device capable of storing medical tools according to claim 6, wherein, The slider (234) is fixedly connected with an adjusting pressing plate (236) away from one side of the storage cylinder (21), the outer end of the adjusting pressing plate (236) is circularly arranged, and the outer surface of the adjusting pressing plate (236) is circularly arranged at the corners, and the outer surface of the blood glucose monitor (1) and the outer surface of the storage cylinder (21) are also circularly arranged at the corners.
Citation Information
Patent Citations
A blood sugar monitoring device
CN220961544U