Blood glucose measurement device

By designing the sensor and transmitter of the blood glucose testing device as detachable structures and using quick-release components to achieve detachable connection, the inconvenience caused by the integrated structure of the sensor and transmitter is solved, and the convenience and stability of user operation are improved.

CN119970021BActive Publication Date: 2025-10-10GOERTEK INC
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Patent Information

Application Number
CN202510360537.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2025-10-10
Estimated Expiration
2045-03-25

AI Technical Summary

Technical Problem

In existing blood glucose detection devices, the sensor and transmitter are integrated into one structure, resulting in a large structure size, which is inconvenient for users to disassemble and assemble, increases the cost of use and the foreign body sensation when wearing, affecting the comfort and convenience of use.

Method used

A blood glucose detection device is designed, in which the sensor and transmitter are detachable structures, and the detachable connection is achieved through a quick-release assembly including a first clamping part and a button. The button is pressed to drive the clamping part to move to achieve connection or separation of the sensor and the transmitter, thereby enhancing stability and convenience.

Benefits of technology

The sensor and transmitter are detachably connected, which reduces the cost of use, reduces the weight and wearing discomfort of the transmitter, and improves the convenience and stability of user operation.

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Abstract

The application discloses a blood glucose detection device, and relates to the technical field of blood glucose detection.The blood glucose detection device comprises a sensor, a transmitter and a quick-release assembly.The quick-release assembly comprises a first clamping piece and a button.The button comprises a button part and a clamping part which are connected.The button part is arranged in one of the sensor and the transmitter.The first clamping piece is arranged in the other one of the sensor and the transmitter.The first clamping piece is clamped with the clamping part to make the sensor and the transmitter detachably connected.The button part is configured to drive the clamping part to move close to or away from the first clamping piece by pressing.The application aims to improve the convenience and stability of the user when operating with one hand on the basis of improving the detachable connection stability of the transmitter and the sensor in the blood glucose detection device.
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Description

Technical Field

[0001] The present invention relates to the technical field of blood sugar detection, and in particular to a blood sugar detection device. Background Art

[0002] A blood glucose monitoring device is a blood glucose monitoring system consisting of a microelectrode biosensor (hereinafter referred to as the sensor) and a transmitter. It can continuously monitor blood glucose through electrochemical reactions for a long period of time (e.g., 7 days, 14 days, or up to 21 days) to determine health status.

[0003] In existing blood glucose detection devices, the sensor and transmitter are integrated into one structure, which is not only large in size but also inconvenient for users to disassemble and assemble in daily operations. Summary of the Invention

[0004] The main purpose of the present invention is to propose a blood glucose detection device, which aims to improve the connection stability between the transmitter and the sensor in the blood glucose detection device, facilitate user disassembly and assembly, and improve the convenience and stability of the user when operating with one hand.

[0005] To achieve the above-mentioned objectives, the present invention proposes a blood glucose detection device, which includes a sensor, a transmitter and a quick-release assembly, the quick-release assembly including a first clip and a button, the button including a button portion and a clip portion connected to each other, the button portion being inserted through one of the sensor and the transmitter, the first clip being provided in the other of the sensor and the transmitter, the first clip being engaged with the clip portion so that the sensor and the transmitter are detachably connected; the button portion is configured to drive the clip portion to move closer to or away from the first clip by pressing.

[0006] In one embodiment, the quick-release assembly includes at least two first clamping members, each of which is provided at two opposite side edges of the sensor or the transmitter;

[0007] And / or, the quick-release assembly includes at least two buttons, and each button is respectively arranged at two opposite side edges of the sensor or the transmitter.

[0008] In one embodiment, the quick-release assembly further includes a second clamping member, and the second clamping member is provided on one of the sensor and the transmitter;

[0009] The other of the sensor and the transmitter is provided with a limiting groove, and the second clamping member is limited in the limiting groove.

[0010] In one embodiment, the second clamping member is provided at an edge of the sensor and is located between two oppositely disposed first clamping members.

[0011] In one embodiment, the sensor includes a sensor body and a conductive seat, wherein the sensor body is provided with a mounting surface;

[0012] The conductive seat, the first clamping member and the second clamping member are arranged on the mounting surface, and the second clamping member and at least a portion of the first clamping member are arranged around the conductive seat.

[0013] In one embodiment, the button is provided on the transmitter, and the first clamping member is provided on the sensor.

[0014] In one embodiment, the button further includes:

[0015] a carrying portion, wherein the carrying portion and the button portion are spaced apart, and the clamping portion is slidably connected to the carrying portion; and

[0016] An elastic member, one end of which is connected to the button portion, and the other end of which is connected to the bearing portion.

[0017] In one embodiment, the bearing portion is provided with a guide groove, and the clamping portion is slidably arranged in the guide groove;

[0018] The clamping portion is provided with a limiting space, the limiting space is communicated with the guide groove, and the first clamping member extends into the limiting space and abuts against the clamping portion in a limiting manner.

[0019] In one embodiment, the clamping portion includes a connecting section and a limiting section, and the connecting section and the limiting section enclose the limiting space;

[0020] The connecting section is spaced apart from the side wall of the guide groove, and the first clamping member is in a limiting contact with the limiting section.

[0021] In one embodiment, the guide groove is provided with sliding grooves on both side walls along the sliding direction of the connecting section, and the side walls of the sliding grooves are continuous cylindrical surfaces;

[0022] The connecting section is slidably arranged in the chute, and the side of the connecting section facing the chute is a continuous cylindrical surface;

[0023] And / or, the bearing portion is further provided with a clearance groove, and the clearance groove is located on the side wall of the guide groove along the direction in which the first clamping member extends into the limiting space.

[0024] The blood glucose detection device of the technical scheme of the present application comprises a sensor, a transmitter and a quick release assembly, the quick release assembly comprises a first clamping piece and a button, the button comprises a button part and a clamping part connected with each other, the button part is arranged in one of the sensor and the transmitter, the first clamping piece is arranged in the other one of the sensor and the transmitter, the first clamping piece is clamped and matched with the clamping part, so that the sensor and the transmitter are detachably connected; the button part is configured to be driven to move by pressing, and by arranging the button and the first clamping piece, the stability of detachable connection of the transmitter and the sensor is improved, and one-handed operation of the user is also facilitated, and the convenience and stability of the user in the use process are improved. BRIEF DESCRIPTION OF DRAWINGS

[0025] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained according to the structures shown in the drawings without creative labor for those skilled in the art.

[0026] Figure 1 It is a structural schematic diagram of the blood glucose detection device in an embodiment of the present application.

[0027] Figure 2 It is an exploded schematic diagram of the blood glucose detection device in an embodiment of the present application.

[0028] Figure 3 It is a sectional view schematic diagram of the blood glucose detection device in an embodiment of the present application.

[0029] Figure 4 It is a structural schematic diagram of the button in an embodiment of the present application.

[0030] Figure 5 It is an exploded schematic diagram of the button in an embodiment of the present application.

[0031] Figure 6 It is a structural schematic diagram of the bearing part in an embodiment of the present application.

[0032] Figure 7 It is a sectional view schematic diagram of the button in an embodiment of the present application.

[0033] BRIEF DESCRIPTION OF DRAWINGS

[0034] 100. Blood glucose detection device; 1. Sensor; 11. Sensor body; 111. Mounting surface; 12. Mounting plate; 13. Conductive seat; 14. Flexible circuit board; 2. Transmitter; 21. Transmitter body; 3. Quick-release assembly; 31. First clamping member; 32. Button; 321. Carrying part; 3211. Carrying body; 3212. Limiting block; 3213. Guide groove; 3213a. Slide groove; 3213b. Give way groove; 322. Button part; 3221. Pressing surface; 3222. Clamping part; 3222a. Connecting section; 3222b. Limiting section; 3222c. Limiting space; 3223. Elastic member; 3224. Limiting part; 3224a. Limiting groove; 33. Second clamping member; 4. Side edge; 5. Middle edge; 6. Limiting groove.

[0035] The purpose, features and advantages of the present invention will be further described with reference to the accompanying drawings and in conjunction with the embodiments. DETAILED DESCRIPTION

[0036] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts shall fall within the scope of protection of the present invention.

[0037] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture. If the specific posture changes, the directional indications will also change accordingly.

[0038] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or suggesting their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited to "first" and "second" may explicitly or implicitly include at least one of such features. In addition, if "and / or" or "and / or" appears in the full text, its meaning includes three parallel solutions. Taking "A and / or B" as an example, it includes solution A, solution B, or solutions that satisfy both A and B. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the ability of ordinary technicians in this field to implement. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0039] The present invention proposes a blood glucose detection device 100, please refer to Figures 1 to 7 As shown, the blood glucose detection device 100 comprises a sensor 1, a transmitter 2 and a quick-release assembly 3, the quick-release assembly 3 comprises a first clamping member 31 and a button 32, the button 32 comprises a button part 322 and a clamping part 3222 connected together, the button part 322 is arranged in one of the sensor 1 and the transmitter 2, the first clamping member 31 is arranged in the other one of the sensor 1 and the transmitter 2, the first clamping member 31 is clamped and matched with the clamping part 3222, so that the sensor 1 and the transmitter 2 are detachably connected; the button part 322 is configured to drive the clamping part 3222 to move close to or away from the first clamping member 31 by pressing.

[0040] In this embodiment, the blood glucose detection device 100 is a medical device capable of monitoring blood glucose level, which can continuously and real-timely detect the daily blood glucose change of a diabetic patient and record the blood glucose data in real time, and is widely used in the daily blood glucose management of diabetic patients, which is different from the traditional finger blood test. The sensor 1 in the blood glucose detection device 100 is attached to the skin to realize continuous blood glucose detection.

[0041] Specifically, the blood glucose detection device 100 generally comprises a sensor 1 and a transmitter 2, the sensor 1 is generally attached to the human skin, such as the upper arm or abdomen, and a glucose oxidase is arranged inside the sensor 1, which can react with glucose in the tissue fluid to measure the glucose concentration in the tissue fluid and convert the detected glucose concentration into an electrical signal, and the transmitter 2 is electrically connected with the sensor 1 to obtain the electrical signal about the glucose concentration in the sensor 1, and wirelessly transmit the obtained blood glucose data to an external signal receiving device, such as a smart phone, a smart watch, a special monitoring instrument, etc., to facilitate the user to view, analyze and trace back the data.

[0042] It can be understood that after a long time of use of the sensor 1, the glucose oxidase in the sensor 1 for detecting blood glucose will gradually be consumed, or the adhesive tape in the sensor 1 for adhering to the skin of the user will gradually lose adhesion and cause the sensor 1 to fail to closely adhere to the skin for blood glucose detection, resulting in a decrease in detection accuracy.

[0043] That is, the sensor 1 needs to be replaced at this time, and in the traditional blood glucose detection device 100, the sensor 1 and the transmitter 2 are in an integrated structure, such as sharing the same packaging structure and the same circuit system, so that the sensor 1 needs to be replaced together with the transmitter 2, causing waste of the related structures and components of the transmitter 2 and increasing the use cost of the blood glucose detection device 100; at the same time, the integrated structure of the transmitter 2 and the sensor 1 also makes the overall blood glucose detection device 100 have a large structure size, and the user has a strong foreign body sensation and discomfort in daily wearing, affecting the comfort and convenience of daily use.

[0044] Based on the above problems, the sensor 1 and transmitter 2 in the blood glucose detection device 100 are configured as detachable structures, and the sensor 1 and transmitter 2 are detachably connected. For example, the above-mentioned button 32 is provided on the transmitter 2, and a buckle or slot structure is provided on the corresponding button 32 of the sensor 1. When the user presses the button 32, the button 32 is connected or separated from the buckle or slot.

[0045] By setting the sensor 1 and the transmitter 2 as two separable components, on the one hand, when the glucose oxidase inside the sensor 1 is exhausted or the adhesion to the skin decreases, only the sensor 1 can be replaced and the original transmitter 2 can be retained to improve the recycling of the transmitter 2 and reduce the overall use cost of the blood glucose detection device 100. On the other hand, after the user attaches the sensor 1 to the skin, the transmitter 2 can be installed when blood glucose information needs to be obtained. When not needed, the transmitter 2 can be removed through a detachable structure such as a button 32 to reduce the weight and discomfort caused by wearing and improve the comfort and convenience of use.

[0046] In this embodiment, the sensor 1 includes a mounting plate 12, a flexible circuit board 14, a conductive elastic pin and other structures. The flexible circuit board 14 and the conductive elastic pin are arranged on the mounting plate 12, and the conductive elastic pin is electrically connected to the flexible circuit board 14. At the same time, the flexible circuit board 14 is also provided with a detection electrode for detecting the user's blood sugar level. The clip is provided on the mounting plate 12. At the same time, the transmitter 2 includes a base shell, a circuit board and a conductive terminal. The circuit board and the conductive terminal are provided in the base shell. The circuit board is provided with a transmitter electrically connected to the conductive terminal, such as a Bluetooth transmitter, a radio frequency transmitter, a Zigbee transmitter 2, etc., which is not limited here. When the sensor 1 and the transmitter 2 are connected, the conductive terminal is electrically connected to the conductive elastic pin in the sensor 1 to obtain the blood sugar data in the sensor 1 and transmit it to an external signal receiving device through the transmitter.

[0047] In this embodiment, the blood glucose detection device 100 also includes a quick-release assembly 3, which includes a first snap-fit ​​component 31 and a button 32. The button 32 includes a button portion 322 and a snap-fit ​​portion 3222 connected to each other. One of the sensor 1 and the transmitter 2 is provided with a mounting hole. The button portion 322 is movably arranged in the mounting hole, and the button portion 322 can be elastically connected to the sensor 1 or the transmitter 2 to provide the user with a better pressing experience. The snap-fit ​​portion 3222 is connected to the button portion 322, and the snap-fit ​​portion 3222 can be snap-fitted with the first snap-fit ​​component 31 to achieve a detachable connection between the sensor 1 and the transmitter 2.

[0048] It can be understood that when the sensor 1 and the transmitter 2 are connected to each other, the button portion 322 of the button 32 is pressed to connect or separate the clamping portion 3222 from the first clamping member 31. If two buttons 32 are provided, by pressing the two buttons 32, the two buttons 32 produce relative movement to change the relative distance between the two, so that the first clamping member 31 extends into the clamping portion 3222 and is clamped with the clamping portion 3222. The first clamping member 31 can be a hook-shaped hook, or a structure such as a clamping protrusion or a limiting protrusion, so that the first clamping member 31 limits the button 32 to maintain the mutual connection between the first clamping member 31 and the button 32, thereby realizing the mutual connection between the sensor 1 and the transmitter 2.

[0049] By setting two buttons 32 arranged opposite to each other, on the one hand, the user needs to press both buttons 32 at the same time to unlock the sensor 1 and the transmitter 2, avoiding the single button 32 being easily triggered during daily use and causing abnormal separation of the sensor 1 and the transmitter 2, reducing the risk of loss or damage of the transmitter 2 or the sensor 1, and on the other hand, it is convenient for the user to operate the two buttons 32 with one hand, such as using two fingers to press the buttons 32 at the same time, effectively improving the convenience and stability of one-handed operation.

[0050] In another embodiment of the present invention, the button portion 322 is provided with a pressing surface 3221, and the user presses the button portion 322 and the key 32 by contacting the pressing surface 3221. The pressing surface 3221 can be a curved surface, such as a curved surface with convex ends and a concave middle, to facilitate the user to quickly locate it, or it can be an inclined surface to facilitate the user to hold it with both hands and quickly press the key 32.

[0051] The blood glucose detection device 100 of the technical solution of the present invention includes a sensor 1, a transmitter 2 and a quick-release assembly 3. The quick-release assembly 3 includes a first snap-in component 31 and a button 32. The button 32 includes a button portion 322 and a snap-in component 3222 connected to each other. The button portion 322 is inserted into one of the sensor 1 and the transmitter 2, and the first snap-in component 31 is provided in the other of the sensor 1 and the transmitter 2. The first snap-in component 31 is snap-fitted with the snap-in component 3222 to make the sensor 1 and the transmitter 2 detachable. The button portion 322 is configured to move by pressing the snap-in component 3222. By setting the button 32 and the first snap-in component 31, on the basis of improving the stability of the detachable connection between the transmitter 2 and the sensor 1, it is also convenient for the user to operate with one hand, thereby improving the convenience and stability of the user during use.

[0052] In one embodiment, if Figure 2 and Figure 3As shown, the quick-release assembly 3 includes at least two first clips 31, and each first clip 31 is respectively arranged at two opposite side edges 4 of the sensor 1 or the transmitter 2; optionally, the quick-release assembly 3 includes at least two buttons 32, and each button 32 is respectively arranged at two opposite side edges 4 of the sensor 1 or the transmitter 2.

[0053] In this embodiment, the quick-release assembly 3 includes at least two first clamping members 31, and the sensor 1 or the transmitter 2 has two opposite side edges 4. For example, the sensor body 11 of the sensor 1 or the transmitter body 21 of the transmitter 2 is a plate-shaped or sheet-shaped structure, and the two opposite side edges 4 extend in roughly the same direction. Each first clamping member 31 is respectively arranged at the two opposite side edges 4 of the sensor body 11 or the transmitter body 21, so that the first clamping members 31 located on the two opposite side edges 4 are arranged oppositely. At the same time, the edge extension directions of the transmitter body 21 and the sensor body 11 are roughly consistent, so that the transmitter body 21 also has two opposite edges. Two buttons 32 are arranged at the two opposite edges of the transmitter body 21 or the sensor body 11, and each button 32 is clamped with at least one first clamping member 31 on one side edge, and the two buttons 32 are simultaneously clamped with the first clamping members 31 located on the two opposite edges.

[0054] It can be understood that the two buttons 32 are respectively arranged at the two opposite side edges 4 of the transmitter body 21 or the sensor body 11, so that the two buttons 32 can be arranged relatively spaced apart. Correspondingly, the first clips 31 are also relatively arranged at the two opposite edges of the sensor body 11 or the transmitter body 21, so that each button 32 can be simultaneously clipped with one or more first clips 31, and the two buttons 32 can realize a detachable connection with each first clip 31, thereby realizing the mutual connection and separation of the transmitter 2 and the sensor 1.

[0055] In particular, when it is inconvenient for the user to operate with both hands or to directly observe the position of the button 32, the user can quickly use the thumb and index finger of one hand (other fingers can also be used, only the thumb and index finger are used as examples, not limited here) to locate the two opposite side edges 4 of the sensor body 11 or the transmitter body 21, so as to quickly locate the button 32, and by pressing the buttons 32 at the same time, each button 32 can be disconnected from or connected to the corresponding first clamping member 31, thereby facilitating the user to quickly locate and disassemble the transmitter 2 with one hand, effectively improving the convenience and stability of operation.

[0056] In one embodiment, if Figure 2As shown, the quick-release assembly 3 also includes a second clamping member 33, which is provided on one of the sensor 1 and the transmitter 2; the other of the sensor 1 and the transmitter 2 is provided with a limiting groove 6, and the second clamping member 33 is limited in the limiting groove 6.

[0057] It can be understood that the first clamping member 31 and the second clamping member 33 have different functions, wherein the first clamping member 31 is used to connect with the button 32, such as providing a card slot or a card hole that is engaged with the first clamping member 31 in the button 32, so as to realize the detachable connection between the first clamping member 31 and the button 32, thereby realizing the detachable connection between the transmitter 2 and the sensor 1, and at the same time, the second clamping member 33 is connected with the transmitter body 21 or the sensor body 11 in a limiting manner, such as providing a limiting groove 6 on the transmitter body 21 or the sensor body 11, and the second clamping member 33 can extend into the limiting groove 6, and abut and / or engage with the limiting groove 6 in a limiting manner, and the second The snap connector 33 can limit the position of the transmitter 2 and the sensor 1, maintain a tight connection between the sensor 1 and the transmitter 2, and compensate for the connection gap between the first snap connector 31 and the button 32. By setting the first snap connector 31 and the second snap connector 33, the tight connection between the transmitter 2 and the sensor 1 can be maintained on the basis of realizing a detachable connection between the sensor 1 and the transmitter 2, that is, the stable connection of the circuit conduction structure between the transmitter 2 and the sensor 1 is ensured, avoiding the possible existence of voids and gaps due to the separate setting of the first snap connector 31, so as to ensure the continuity, stability and detection accuracy of the blood glucose detection device 100 during operation.

[0058] At the same time, when the user accidentally touches the button 32, causing the button 32 and the first clamping member 31 to be abnormally separated, the sensor 1 and the transmitter 2 are still connected to each other through the second clamping member 33, thereby preventing the transmitter 2 from being directly separated from the sensor 1 and reducing the risk of loss and damage of the transmitter 2.

[0059] In one embodiment, if Figure 2 As shown, the second clamping member 33 is provided at the edge of the sensor body 11 or the transmitter body 21 and is located between the two first clamping members 31 that are oppositely disposed.

[0060] In this embodiment, the sensor body 11 or the transmitter body 21 also has a middle edge 5 connecting the two side edges 4. The middle edge 5 and the side edges 4 together form the boundary of the sensor body 11. The second clip 33 is arranged at the middle edge 5, and the second clip 33 is located between the two oppositely arranged first clips 31. At the same time, the clip may include at least two second clips 33, and at least two second clips 33 are located at the same middle edge 5, so that each second clip 33 and each first clip 31 can be arranged at intervals on the edge of the sensor body 11 in a fully surrounded or semi-enclosed manner to connect with the transmitter 2.

[0061] It can be understood that when the user disassembles the sensor 1 and the transmitter 2, after the user presses the buttons 32 on both sides in a clamping manner, the connection relationship between the second clip 33 and the transmitter body 21 is still retained, preventing the sensor 1 and the transmitter 2 from directly detaching, or when the user accidentally touches the button 32, causing the button 32 and the first clip 31 to be abnormally detached, the sensor 1 and the transmitter 2 are still connected to each other through the second clip 33, thereby preventing the transmitter 2 from directly detaching from the sensor 1 and reducing the risk of loss or damage to the transmitter 2. In addition, arranging the second clip 33 between the two oppositely arranged first clips 31 does not affect the normal connection and disassembly of the first clip 31 and the button 32. At the same time, each second clip 33 cooperates with the first clip 31. While the first clip 31 and the button 32 are clamped to each other, the second clip 33 can also connect and limit the edges of the sensor 1 and the transmitter 2, thereby ensuring the stability of the connection between the transmitter 2 and the sensor 1.

[0062] In one embodiment, the height of the first clamping member 31 along the direction perpendicular to the mounting surface 111 is greater than the height of the second clamping member 33 along the direction perpendicular to the mounting surface 111 .

[0063] It can be understood that a limiting groove 6 is provided on one side edge of the transmitter body 21 or the sensor body 11. When the first clip 31 is connected to the button 32, the second clip 33 is limited in the limiting groove 6. At the same time, the main body of the first clip 31 and the main body of the second clip 33 are both provided on the mounting surface 111 and extend in a direction away from the mounting surface 111. At the same time, the height of the first clip 31 in a direction perpendicular to the mounting surface 111 is greater than the height of the second clip 33 in a direction perpendicular to the mounting surface 111. When connected and installed with the sensor 1, the first clip 31 can first contact the button 32, and then perform secondary limiting with the second clip 33 through the limiting groove 6. When the sensor 1 and the transmitter 2 are separated from each other, the second clip 33 with a lower height can also be separated from the limiting groove 6 more quickly and conveniently, which is convenient for users to operate with one hand, avoiding the second clip 33 still being limited and restrained after the separation from the first clip 31 has been achieved through the button 32, thereby improving the stability and convenience of one-handed operation.

[0064] In one embodiment, if Figures 1 to 3 As shown, the sensor 1 includes a sensor body 11 and a conductive seat 13. The sensor body 11 is provided with a mounting surface 111. The conductive seat 13, the first clip 31 and the second clip 33 are provided on the mounting surface 111. The second clip 33 and at least part of the first clip 31 are arranged around the conductive seat 13.

[0065] In this embodiment, a sensor body 11 is provided in a plate-like or sheet-like shape, which is provided with a mounting surface 111. Each first clip 31 and each second clip 33 are provided on the mounting surface 111. Specifically, the sensor 1 includes a mounting plate 12 and a flexible circuit board 14. The mounting plate 12 is used to mount and place the flexible circuit board 14. The mounting plate 12 is a plate-like or sheet-like structure. The mounting plate 12 has the largest board area as the mounting surface 111. The flexible circuit board 14 is provided on the side of the mounting plate 12 facing away from the mounting surface 111. At the same time, the mounting plate 12 is provided with a conductive seat 13. The conductive seat 1 3 is provided on the mounting surface 111 of the mounting base. A conductive spring pin (which may also be a conductive capsule) is provided in the mounting base. The transmitter 2 is provided with a conductive contact, which is provided on the transmitter body 21. One end of the conductive spring pin can be electrically connected to the conductive contact circuit when the transmitter 2 is connected to the sensor 1, and the other end of the conductive spring pin is electrically connected to the flexible circuit board 14. The conductive base 13 is provided in the middle position of the mounting plate 12 or at the end or edge of the mounting plate 12, and the first clamping member 31 and the second clamping member 33 provided on the mounting plate 12 are arranged around the conductive base 13.

[0066] It can be understood that the sensor 1 includes multiple conductive elastic pins, which are arranged in the conductive seat 13 to conduct the circuit with the transmitter 2 when the transmitter 2 is connected to the sensor 1. On the basis of the connection between the button 32 and the first clamping member 31, the transmitter body 21 and the second clamping member 33 are also limitedly connected to each other. On the basis of keeping the sensor 1 and the transmitter 2 tightly connected, the first clamping member 31 and the second clamping member 33 surrounding the conductive seat 13 can make the area of ​​the transmitter 2 corresponding to the conductive seat 13 tightly abut against the conductive seat 13, thereby ensuring that the conductive elastic pins located in the conductive seat 13 enclosed by the first clamping member 31 and the second clamping member 33 are tightly abutted against the conductive contacts, so as to ensure a stable circuit connection between the conductive contacts and the conductive elastic pins, avoid virtual connection, and ensure the connection stability and detection continuity of the sensor 1 and the transmitter 2.

[0067] In one embodiment, if Figure 4 、 Figure 5 as well as Figure 7 As shown, the button 32 also includes a bearing portion 321 and an elastic member 3223. The bearing portion 321 and the button portion 322 are spaced apart. The clamping portion 3222 is slidably connected to the bearing portion 321. One end of the elastic member 3223 is connected to the button portion 322, and the other end of the elastic member 3223 is connected to the bearing portion 321.

[0068] In this embodiment, the button 32 includes a bearing portion 321, a button portion 322, a clamping portion 3222 and an elastic member 3223. The bearing portion 321 of the button 32 is arranged on the sensor body 11 or the transmitter body 21. The bearing portion 321 is the main supporting structure of the button 32 for installing the button portion 322. The bearing portion 321 can be a mounting frame, a mounting table, a mounting plate 12 and other structures, which are not limited here.

[0069] The clamping portion 3222 and the elastic member 3223 are connected to the button portion 322, wherein the clamping portion 3222 is slidably connected to the bearing portion 321, such as one of the bearing portion 321 and the clamping portion 3222 is provided with a guide groove, a slide groove 3213a, a sliding sleeve and the like, and the other of the bearing portion 321 and the clamping portion 3222 is a guide column, a guide bar, a guide block, a shaft, a roller and the like, and the above-mentioned guide column, guide bar, guide block, shaft, roller can be extended into the guide groove, the slide groove 3213a, the sliding sleeve to realize the bearing portion 321 and the clamping portion 322 2 sliding connection; the elastic member 3223 is elastically connected to the bearing portion 321, and the elastic member 3223 can be elastically connected to the bearing portion 321 through an elastic structure such as a spring, a spring sheet, or an elastomer. When the user presses the button portion 322, the elastic structure between the elastic member 3223 and the bearing portion 321 produces elastic deformation. At the same time, the snap-fit ​​portion 322 slides relative to the bearing portion 321, so that the overall position of the button portion 322 changes, thereby realizing connection or separation with the buckle or slot in the external device (such as the sensor 1).

[0070] Furthermore, the button portion 322 includes at least two elastic members 3223, and each elastic member 3223 is centrally symmetrically arranged around the clamping portion 3222, that is, each elastic member 3223 is located around the clamping portion 3222 and is evenly spaced around the clamping portion 3222 as the center. For example, the button portion 322 includes two elastic members 3223, and the two elastic members 3223 are located on both sides of the clamping portion 3222 and are symmetrically arranged around the clamping portion 3222 as the center. At this time, the button portion 322 is arranged in a long strip structure, the two elastic members 3223 are located at both ends, and the clamping portion 3222 is located in the middle; or the button portion 322 includes four elastic members 3223, and the four elastic members 3223 are located around the clamping portion 3222 and are symmetrically spaced around the clamping portion 3222 as the center. At this time, the button portion 322 is arranged in a circular or square structure.

[0071] It is understandable that the sensor 1 is attached to the user's arm or abdomen, and the user typically operates the button 32 with one hand to separate or connect the transmitter 2 and the sensor 1. Furthermore, it is not convenient for the user to visually observe the position of the button 32. The user typically locates the button 32 directly by touch and presses it to separate or connect the transmitter 2 and the sensor 1. During the press, the elastic members 3223 are centrally symmetrically arranged around the clipping portion 3222, thereby maintaining the stability and balance of the connection between the button portion 322 and the support portion 321. Regardless of whether the user presses the button portion 322 to a specific location or to an extreme position such as an end or side, the clipping portion 3222 located in the middle of the elastic member 3223 can be driven to slide relative to the support portion 321, thereby achieving precise positional changes of the button portion 322 relative to the support portion 321. This reduces the probability of deflection and jamming of the button portion 322 when pressed, improves the stability and smoothness of the button portion 322 relative to the support portion 321, and enhances the convenience and comfort of the user's direct touch operation.

[0072] The button 32 of the technical solution of the present invention includes a bearing portion 321, a button portion 322, a clamping portion 3222 and an elastic member 3223. The bearing portion 321 is the main supporting structure of the button 32, and is used to support the button portion 322. The button portion 322 includes a clamping portion 3222 and at least two elastic members 3223. The clamping portion 3222 is slidably connected to the bearing portion 321, and the elastic members 3223 are elastically connected to the bearing portion 321 and the button portion 322. The elastic members 3223 are symmetrically arranged around the center of the clamping portion 3222. By arranging the elastic members 3223 elastically connected to the bearing portion 321 around the clamping portion 3222, the surrounding elastic members 3223 can all provide stable support, ensuring the smoothness and stability of the clamping portion 3222 and the bearing portion 321 when sliding relative to each other, thereby improving the stability and smoothness of the button portion 322 when moving relative to the bearing portion 321, reducing the jamming caused by uneven force, and improving the user experience.

[0073] In one embodiment, if Figures 4 to 7 As shown, the bearing portion 321 is provided with a guide groove 3213, and the clamping portion 3222 is slidably provided in the guide groove 3213; the clamping portion 3222 is provided with a limiting space 3222c, and the limiting space 3222c is connected to the guide groove 3213, and the first clamping member 31 extends into the limiting space 3222c and limits and abuts against the clamping portion 3222.

[0074] It can be understood that the bearing portion 321 is provided with a guide groove 3213, and the clamping portion 3222 is slidably arranged in the guide groove 3213. At the same time, when the button portion 322 is pressed, the direction of elastic compression of the elastic member 3223 relative to the bearing portion 321 is consistent with the sliding direction of the clamping portion 3222 relative to the guide groove 3213, so that in the process of pressing the button portion 322, the button portion 322 maintains a single movement direction relative to the bearing portion 321, avoiding the user from pressing the button portion 322 to produce movement in other directions, and the single movement direction also makes the pressing feel clear and consistent, giving the user faster and clearer pressing feedback, making the pressing process more linear, ensuring the user's convenience in one-handed operation and in situations where visual observation is not possible, so that the user can more easily perceive the triggering of the button 32 and avoid situations such as jamming or tilting during the pressing process.

[0075] In one embodiment, if Figure 7 As shown, the clamping portion 3222 includes a connecting section 3222a and a limiting section 3222b, which together form a limiting space 3222c; the connecting section 3222a is spaced apart from the side wall of the guide groove 3213, and the first clamping member 31 is limitedly abutted against the limiting section 3222b.

[0076] When the locking cam 322 is in the unlocking state, the locking cam 3222 is in the unlocking state, and the first locking cam 322 is in the unlocking state, so that the first locking cam 322 is unlocked and the first locking cam 322 is unlocked.

[0077] In one embodiment, if Figure 6As shown, the guide groove 3213 is provided with a sliding groove 3213a on both sides of the sliding direction of the connecting section 3222a, and the side wall of the sliding groove 3213a is a continuous cylindrical surface; the connecting section 3222a is slidably arranged in the sliding groove 3213a, and the side of the connecting section 3222a facing the sliding groove 3213a is a continuous cylindrical surface; it can be understood that the guide surface is set as a cylindrical surface, and the guide groove 3213 corresponds to the guide surface of the cylindrical surface structure, and is also provided with a guide groove side wall of a cylindrical surface structure, so that the clamping portion 3222 is limited and slidably arranged on the guide groove By providing a cylindrical guide surface in the groove 3213, the installation accuracy of the clamping portion 3222 and the guide groove 3213 can be improved, the alignment ability of the clamping portion 3222 and the guide groove 3213 can be improved, and the clamping portion 3222 can slide in a straight line along the guide groove 3213, ensuring the smoothness and stability of the clamping portion 3222 and the supporting portion 321 when sliding relative to each other, thereby improving the stability and smoothness of the button portion 322 when moving relative to the supporting portion 321, reducing the jamming caused by uneven force, and improving the user experience. Optionally, the supporting portion 321 is further provided with a clearance groove 3213b, which is located on the side wall of the guide groove 3213 along the direction in which the first clamping member 31 extends into the limited space 3222c. By providing the clearance groove 3213b to avoid the first clamping member 31, the first clamping member 31 and the clamping portion 3222 are facilitated to engage with each other.

[0078] In one embodiment, if Figure 4 、 Figure 5 as well as Figure 7 As shown, the button portion 322 further includes at least two limiting portions 3224 , which are slidingly connected to the bearing portion 321 . Each limiting portion 3224 is provided corresponding to an elastic member 3223 and is centrally symmetrically arranged around the clamping portion 3222 .

[0079] In this embodiment, the limiting portion 3224 is connected to the bearing portion 321 in a limiting sliding manner so as to gradually compress the pressing gap when the button portion 322 is pressed. The limiting portion 3224 and the clamping portion 322 slide relative to the bearing portion 321 at the same time. After the pressing is completed, under the action of the elastic force between the elastic member 3223 and the bearing portion 321, the button portion 322 is reset relative to the bearing portion 321 as a whole, and the pressing gap between the button portion 322 and the bearing portion 321 is restored. At this time, the limiting portion 3224 is connected to the bearing portion 321 in a limiting manner to limit the button portion 322 as a whole, ensuring that the button portion 322 moves within a certain range relative to the bearing portion 321, thereby avoiding excessive movement or separation of the button portion 322 and the bearing portion 321.

[0080] Among them, the limited sliding connection between the limiting part 3224 and the bearing part 321 can be to set a slide groove 3213a, a guide groove and other structures on one of the bearing part 321 or the limiting part 3224, and set a slider on the other of the bearing part 321 or the limiting part 3224, when the slider slides in the slide groove 3213a and has an extreme position in the groove extension direction of the slide groove 3213a to limit the sliding distance of the slider in the slide groove 3213a, thereby limiting the sliding distance of the limiting part 3224 and the overall button part 322 relative to the bearing part 321, so as to maintain the connection between the button part 322 and the bearing part 321 under the action of the elastic force of the elastic connection between the elastic member 3223 and the bearing part 321.

[0081] Furthermore, the button portion 322 includes at least two limiting portions 3224, each limiting portion 3224 is provided corresponding to an elastic member 3223, and at the same time, each limiting portion 3224 is provided symmetrically around the clamping portion 3222 like the elastic member 3223. When the button 32 is pressed, the clamping portion 3222 slides relative to the bearing portion 321, and at the same time, the limiting portions 3224 located around the clamping portion 3222 also slide synchronously and in the same direction, thereby ensuring the stability and smoothness of the entire button portion 322 when pressed. In addition, each limiting portion 3224 is provided corresponding to an elastic member 3223, which also That is, each limiting portion 3224 is arranged around an elastic member 3223, such as the limiting portion 3224 is arranged between the elastic member 3223 and the clamping portion 3222, or the elastic member 3223 is located between the limiting portion 3224 and the clamping portion 3222, so that no matter where the user touches the button portion 322, it can ensure that there is a uniform elastic compression deformation between each elastic member 3223 and the bearing portion 321, and the elastic force can be dispersed, so that the entire button portion 322 moves relative to the bearing portion 321 with a uniform force and direction, reducing the jamming caused by uneven force and improving the user experience.

[0082] Specifically, the bearing part 321 includes a bearing body 3211 and a limiting member, and the limiting member is arranged on the bearing body 3211; the limiting part 3224 is provided with a limiting groove 3224a, and at least part of the limiting member is slidingly arranged in the limiting groove 3224a. The limiting member can be a limiting block 3212 or a limiting protrusion, etc. The limiting member extends into the limiting groove 3224a and can slide in the limiting groove 3224a, and the groove wall of the limiting groove 3224a also limits the sliding distance of the limiting member.

[0083] In another embodiment of the present invention, the supporting body 3211 is provided with at least two mounting grooves, and each mounting groove is symmetrically arranged around the center of the clamping portion 3222; the elastic member 3223 is limited in the mounting groove, and at least part of the elastic member 3223 extends into the mounting groove. By setting the mounting groove, the elastic member 3223 can be limited and guided, so that the elastic member 3223 is compressed in a predetermined direction so that the button portion 322 moves toward or away from the supporting portion 321, thereby improving the stability and guidance of the button 32 during the pressing process.

[0084] In one embodiment, each elastic member 3223 is located between the engaging portion 3222 and a limiting portion 3224 .

[0085] It is understood that during the process of pressing the button 32, the elastic connection between the elastic member 3223 of the button 32 and the supporting portion 321 is subjected to greater force. Positioning each elastic member 3223 between the clamping portion 3222 and a limiting portion 3224 effectively disperses the elastic force of the clamping portion 3222 and the limiting portion 3224 on either side of the elastic member 3223, thereby effectively dispersing the pressure during pressing and reducing stress concentration at the connection point between the individual elastic member 3223 and the supporting portion 321. This enhances the stability of the entire button 32 during pressing. Furthermore, positioning the elastic member 3223 closer to the clamping portion 3222 relative to the limiting portion 3224 also reduces the force required by the user to press the button 32, improving the ease of one-handed operation.

[0086] In one embodiment, the engaging portion 3222 , the elastic members 3223 , and the limiting portions 3224 are spaced apart along a straight line.

[0087] In this embodiment, each elastic member 3223 is located on both sides of the clamping portion 3222, and at the same time, each limiting portion 3224 is located on the side of the elastic member 3223 away from the clamping portion 3222, so that the clamping portion 3222, each elastic member 3223 and each limiting portion 3224 are arranged at intervals along a straight line, and the direction in which the clamping portion 3222, each elastic member 3223 and each limiting portion 3224 are arranged at intervals is defined as a first direction. The transmitter 2 and the sensor 1 have a thickness direction, which is roughly parallel to the skin surface of the user, wherein the first direction is set at an angle to the thickness direction, such as the first direction is parallel or perpendicular to the thickness direction. Preferably, the first direction is perpendicular to the thickness direction.

[0088] It can be understood that the clamping portion 3222, each elastic member 3223 and each limiting portion 3224 are arranged at intervals along a straight line, and preferably, the clamping portion 3222, each elastic member 3223 and each limiting portion 3224 are arranged at intervals roughly in a direction perpendicular to the thickness of the transmitter 2, thereby improving the compactness of the button 32, reducing the space occupied by the transmitter in the thickness direction, and reducing the size of the transmitter 2 protruding away from the user's skin, so that the transmitter 2 fits the user's skin better, and reducing the foreign body sensation and dragging sensation generated by the user when wearing the transmitter 2, thereby improving the comfort of use.

[0089] In addition, the clamping portion 3222, the elastic members 3223 and the limiting portions 3224 are arranged at intervals along a straight line, which can also make the button 32 distributed in a long strip shape at the side edge 4 of the transmitter, making it convenient for the user to touch the button 32 with one hand without direct visual contact. Even if a local area of ​​the button 32 is touched, the button 32 can be more easily perceived and triggered, thereby improving the fault tolerance of the use of the button 32.

[0090] In one embodiment, if Figure 4 、 Figure 5 as well as Figure 7 As shown, the button 32 also includes an elastic member 3223, which is connected to the limiting portion 3224 and sleeved on the limiting portion 3224; one end of the elastic member 3223 is connected to the bearing portion 321, and the other end of the elastic member 3223 is connected to the elastic member 3223.

[0091] In this embodiment, the elastic member 3223 is connected to the limiting portion 3224. At this time, the elastic member 3223 and the limiting portion 3224 are both located around the clamping portion 3222. Moreover, the elastic member 3223 can be located between the limiting portion 3224 and the supporting body 3211, or the limiting portion 3224 can be located between the elastic member 3223 and the supporting body 3211. No limitation is made here.

[0092] At the same time, the button 32 also includes an elastic member 3223, which can be a spring or an elastomeric material structure with elastic ability. One end of the elastic member 3223 is connected to the elastic member 3223, and the other end of the elastic member 3223 is connected to the supporting body 3211 of the supporting part 321, and the elastic member 3223 is provided with an elastic cavity, and the limiting part 3224 is set to a columnar or strip structure so that the elastic member 3223 is sleeved on the limiting part 3224.

[0093] It can be understood that when the button 32 is pressed, the elastic member 3223 is compressed, and the button portion 322 moves relative to the bearing portion 321. During the compression of the elastic member 3223, the limiting portion 3224 also slides relative to the bearing portion 321. By sleeved the elastic member 3223 on the periphery of the limiting portion 3224, the compression movement direction of the elastic member 3223 is consistent with the relative sliding direction of the limiting portion 3224 and the bearing portion 321, and they move together along the same axis, not only the elastic connection between the elastic member 3223 and the bearing portion 321 is strengthened, but also the elastic connection between the elastic member 3223 and the bearing portion 321 is strengthened. The limiting sliding structure of the limiting portion 3224 and the bearing portion 321 are arranged on the same axis, which effectively improves the structural compactness of the button 32, so as to effectively improve the miniaturization of the transmitter 2 and the blood glucose detection device 100. At the same time, the elastic movement of the elastic member 3223 and the sliding movement of the limiting portion 3224 move along the same axis, which can also improve the movement stability and smoothness of the button 32 during the pressing process, reduce the probability of deflection and jamming of the button portion 322 when pressed, and improve the convenience and comfort of the user's direct touch operation.

[0094] The above description is merely an exemplary embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformation made by utilizing the contents of the present invention's description and drawings under the technical concept of the present invention, or directly / indirectly applied in other related technical fields, is included in the patent protection scope of the present invention.

Claims

1. A blood sugar detection device, characterized in that: The blood sugar detection device comprises: sensor; transmitter; and A quick-release assembly, the quick-release assembly comprising a first clip and a button, the button comprising a button portion and a clip portion connected to each other, the button portion being provided through one of the sensor and the transmitter, the first clip being provided on the other of the sensor and the transmitter, the first clip engaging with the clip portion to detachably connect the sensor and the transmitter; the button portion being configured to drive the clip portion to move closer to or away from the first clip by being pressed; the quick-release assembly further comprising a second clip, the second clip being provided on one of the sensor and the transmitter; The other of the sensor and the transmitter is provided with a limiting groove, and the second clamping member is limited in the limiting groove.

2. The blood glucose monitoring device according to claim 1, wherein The quick-release assembly includes at least two first clamping members, each of which is respectively provided at two opposite side edges of the sensor or the transmitter; And / or, the quick-release assembly includes at least two buttons, and each button is respectively arranged at two opposite side edges of the sensor or the transmitter.

3. The blood glucose monitoring device according to claim 1, wherein The second clamping member is provided at an edge of the sensor and is located between two oppositely arranged first clamping members.

4. The blood glucose detection device according to claim 1, wherein The sensor comprises a sensor body and a conductive seat, wherein the sensor body is provided with a mounting surface; The conductive seat, the first clamping member and the second clamping member are arranged on the mounting surface, and the second clamping member and at least a portion of the first clamping member are arranged around the conductive seat.

5. The blood glucose monitoring device according to any one of claims 1 to 4, wherein: The button is arranged on the transmitter, and the first clamping component is arranged on the sensor.

6. The blood glucose monitoring device according to any one of claims 1 to 4, wherein: The button also includes: a carrying portion, wherein the carrying portion and the button portion are spaced apart, and the clamping portion is slidably connected to the carrying portion; and An elastic member, one end of which is connected to the button portion, and the other end of which is connected to the bearing portion.

7. The blood glucose detection device according to claim 6, wherein: The bearing portion is provided with a guide groove, and the clamping portion is slidably arranged in the guide groove; The clamping portion is provided with a limiting space, the limiting space is communicated with the guide groove, and the first clamping member extends into the limiting space and abuts against the clamping portion in a limiting manner.

8. The blood glucose detection device according to claim 7, wherein: The clamping portion includes a connecting section and a limiting section, and the connecting section and the limiting section enclose the limiting space; The connecting section is spaced apart from the side wall of the guide groove, and the first clamping member is in a limiting contact with the limiting section.

9. The blood glucose detection device according to claim 8, wherein: The guide groove is provided with sliding grooves on both side walls along the sliding direction of the connecting section, and the side walls of the sliding grooves are continuous cylindrical surfaces; The connecting section is slidably arranged in the chute, and the side of the connecting section facing the chute is a continuous cylindrical surface; And / or, the bearing portion is further provided with a clearance groove, and the clearance groove is located on the side wall of the guide groove along the direction in which the first clamping member extends into the limiting space.

Citation Information

Patent Citations

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    CN112120709A

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