Wearable electronic information health monitoring integrated device
By integrating monitoring components and integrated components into wearable health monitoring devices and using sensor modules and injection needles controlled by repelling electromagnets, the problem that existing equipment cannot provide timely treatment is solved, timely drug injection in emergency situations is achieved, and the success rate of first aid and user sense of security are improved.
Patent Information
- Application Number
- CN202510071337.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2045-01-16
AI Technical Summary
Existing wearable health monitoring devices are unable to provide timely treatment in emergency situations, resulting in delayed treatment and safety hazards.
A wearable electronic information health monitoring integrated device was designed, which integrates a monitoring component and an integration component. The monitoring component monitors body data in real time through a sensor module and automatically injects emergency medicine in critical conditions. It includes an action mechanism and a liquid medicine mechanism, and uses repulsive electromagnets to control the movement of the injection needle.
It enables timely injection of first aid medicines in emergency situations, prolongs the effective treatment time, improves the success rate of first aid, and enhances the user's sense of security and practicality.
Smart Images

Figure CN119770054B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of health monitoring devices, in particular to a wearable electronic information health monitoring integrated device. BACKGROUND
[0002] Wearable health monitoring devices refer to those electronic devices that can be worn on the body, which usually integrate sensors, processors and wireless communication functions. These devices can collect users' physiological data such as heart rate, blood pressure, body temperature, blood oxygen saturation, etc. in real time, and can provide real-time health monitoring for people.
[0003] However, as for the existing wearable health monitoring devices, they only have the function of monitoring various data of the body and triggering an alarm signal when an emergency occurs, but this cannot provide timely treatment for the patient, and still needs medical personnel to arrive on the scene to inject emergency drugs for treatment. The time before the medical personnel arrive is wasted, and it is easy to cause critical illness due to the delay in treatment, and the practicality is not high. SUMMARY
[0004] The present application relates to the technical field of health monitoring devices, in particular to a wearable electronic information health monitoring integrated device.
[0005] The first aspect of the present disclosure provides a wearable electronic information health monitoring integrated device, which specifically comprises a wearable vest and a monitoring assembly, wherein the monitoring assembly comprises a mounting seat, a monitoring inner disc and a fixed outer disc, the monitoring inner disc is fixedly installed on the outer side of the mounting seat, and the fixed outer disc is inserted into the outside of the mounting seat, the mounting seat penetrates through the wearable vest, and the monitoring inner disc and the fixed outer disc are fixedly installed on the inner side and the outer side of the wearable vest respectively; the integrated assembly is further provided, and the integrated assembly comprises a movement mechanism and a liquid medicine mechanism; the movement mechanism is arranged in the inside of the mounting seat, and the movement mechanism comprises a retainer, an injection needle, a blocking rubber seat and an energy storage seat, the retainer is inserted into the inside of the mounting seat, the injection needle is fixedly installed on the side surface of the retainer, the blocking rubber seat is fixedly installed in the inside of the mounting seat, the needle body of the injection needle penetrates through the inside of the blocking rubber seat, and the energy storage seat is inserted into the side surface of the retainer; the liquid medicine mechanism is arranged in the inside of the mounting seat, and the liquid medicine mechanism comprises a medicine storage seat, a movement piston, a linkage frame and a blocking plug, the medicine storage seat is fixedly installed in the inside of the mounting seat, the movement piston is inserted into the top of the medicine storage seat, the linkage frame is fixedly installed on the side surface of the movement piston, and the blocking plug is detachably fixedly installed on the top of the movement piston.
[0006] In at least some embodiments, the inside of the monitoring inner disc is provided with a sensor module, and the sensor module comprises an electrocardio sensor, a blood pressure sensor and the like, and the sensor module is electrically connected with a control device and a battery arranged in the inside of the fixed outer disc.
[0007] In at least some embodiments, the side surface of the retainer is provided with a hidden tension spring, and the two ends of the hidden tension spring are fixedly connected with the side surface of the retainer and the inside of the mounting seat respectively.
[0008] In at least some embodiments, the side surface of the retainer and the inside of the mounting seat are both provided with a repelling electromagnet, and the two repelling electromagnets are on the same straight line, when the repelling electromagnets are electrified, the two repelling electromagnets repel each other, and the repelling force is greater than the elastic force of the hidden tension spring, when the repelling electromagnets are not electrified, the injection needle is hidden in the inside of the mounting seat under the action of the hidden tension spring.
[0009] In at least some embodiments, the two ends of the injection needle are designed to be blocked, the two sides of the internal passage of the injection needle are respectively provided with a multi-purpose hole and a medicine injection hole, one side of the top of the blocking rubber seat is provided with a communication hole, the communication hole is communicated with a cavity in the inside of the medicine storage seat, and the multi-purpose hole and the communication hole are communicated when the repelling electromagnets are not electrified under the action of the hidden tension spring.
[0010] In at least some embodiments, the side surface of the movement piston is provided with a reset top spring, and the two ends of the reset top spring are respectively abutted against the side surface of the movement piston and the inside of the side surface of the medicine storage seat.
[0011] In at least some embodiments, an energy storage top spring is provided inside the energy storage seat, and two ends of the energy storage top spring respectively abut against the inside of the energy storage seat and the side of the linkage frame, and the energy storage seat can only move linearly outside the retaining frame.
[0012] In at least some embodiments, an injection lever is provided on the side of the energy storage seat, and an inclined injection pressure groove is provided inside the linkage frame. The injection pressure groove is open at one end facing the injection lever, and the position of the open end of the injection pressure groove is located on the moving path of the injection lever.
[0013] The wearable electronic information health monitoring integrated device provided by the present invention has the following beneficial effects.
[0014] The monitoring component is worn on the human body through a vest. It can monitor various physical data of the patient through the built-in sensor module, and the integrated component is integrated inside the monitoring component. When a critical condition occurs, the monitoring component can send an alarm signal in time, and at the same time, it can also inject the first aid medicine inside the integrated component into the human body, thereby extending the effective treatment time, significantly improving the timeliness of emergency treatment, increasing the success rate of first aid, enhancing the user's sense of security when using it, and improving the flexibility and practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.
[0016] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.
[0017] In the attached figure:
[0018] Figure 1 It is a schematic structural diagram of the present invention as a whole.
[0019] Figure 2 It is a structural diagram of the monitoring component of the present invention.
[0020] Figure 3 This invention Figure 2 Schematic diagram of the internal structure.
[0021] Figure 4 This invention Figure 3 Schematic diagram of the enlarged structure of part A in the middle.
[0022] Figure 5 This invention Figure 3 Schematic diagram of the enlarged structure of part B in the middle.
[0023] Figure 6 It is a schematic structural diagram of the disassembled action mechanism of the present invention.
[0024] Figure 7 is the structural schematic diagram of the disassembled liquid medicine mechanism of the present application.
[0025] Figure 8 is the structural schematic diagram of the inside of the integrated assembly of the present application when the injection needle does not completely extend from the mounting seat during the action of injecting emergency medicine.
[0026] Figure 9 is the structural schematic diagram of the enlarged C part in the present application. Figure 8
[0027] Figure 10 is the structural schematic diagram of the inside of the integrated assembly of the present application after the action of injecting emergency medicine is completed.
[0028] Figure 11 is the structural schematic diagram of the enlarged D part in the present application. Figure 10
[0029] List of reference signs
[0030] 1. Wearable vest;
[0031] 2. Monitoring assembly; 201, mounting seat; 2011, repelling electromagnet; 202, monitoring inner disc; 203, fixed outer disc;
[0032] 3. Action mechanism; 301, retainer; 3011, hidden tension spring; 302, injection needle; 3021, multi-purpose hole; 3022, medicine injection hole; 303, blocking rubber seat; 3031, communication hole; 304, energy storage seat; 3041, energy storage top spring; 3042, injection lever;
[0033] 4. Liquid medicine mechanism; 401, medicine storage seat; 402, action piston; 4021, reset top spring; 403, linkage frame; 4031, injection pressure groove; 404, blocking plug. DETAILED DESCRIPTION
[0034] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme of the embodiments of the present application will be described clearly and completely below in combination with the drawings of the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those of ordinary skill in the art without any creative effort belong to the scope of protection of the present application.
[0035] Please refer to Figures 1 to 11 shown:
[0036] The embodiment 1 provides a wearable electronic information health monitoring integrated device, which comprises a wearable vest 1 and a monitoring assembly 2, the monitoring assembly 2 comprises a mounting seat 201, a monitoring inner disc 202 and a fixed outer disc 203, the monitoring inner disc 202 is fixedly installed on the outer side of the mounting seat 201, and the fixed outer disc 203 is inserted on the outside of the mounting seat 201, the mounting seat 201 penetrates through the wearable vest 1, and the monitoring inner disc 202 and the fixed outer disc 203 are fixedly installed on the inner side and the outer side of the wearable vest 1 respectively; further comprising an integrated assembly, the integrated assembly comprises a motion mechanism 3 and a liquid medicine mechanism 4; the motion mechanism 3 is arranged in the inside of the mounting seat 201, and the motion mechanism 3 comprises a retainer 301, an injection needle 302, a blocking rubber seat 303 and an energy storage seat 304, the retainer 301 is inserted in the inside of the mounting seat 201, the injection needle 302 is fixedly installed on the side surface of the retainer 301, the blocking rubber seat 303 is fixedly installed in the inside of the mounting seat 201, and the needle body of the injection needle 302 penetrates through the inside of the blocking rubber seat 303, and the energy storage seat 304 is inserted on the side surface of the retainer 301; the liquid medicine mechanism 4 is arranged in the inside of the mounting seat 201, and the liquid medicine mechanism 4 comprises a medicine storage seat 401, a motion piston 402, a linkage frame 403 and a blocking plug 404, the medicine storage seat 401 is fixedly installed in the inside of the mounting seat 201, the motion piston 402 is inserted on the top of the medicine storage seat 401, the linkage frame 403 is fixedly installed on the side surface of the motion piston 402, and the blocking plug 404 is detachably fixedly installed on the top of the motion piston 402.
[0037] In the embodiment of the present disclosure, the inside of the monitoring inner disc 202 is provided with a sensor module, and the sensor module comprises an electrocardio sensor, a blood pressure sensor and the like, the sensor module is electrically connected with a control device and a battery arranged in the inside of the fixed outer disc 203, in use, a user can wear the monitoring assembly 2 on the body through the wearable vest 1 for monitoring use, and the sensor module integrates the electrocardio sensor, the blood pressure sensor and the like, can capture key parameters such as human heart electrical activity and blood pressure change in real time and accurately, realizes electrical connection and signal transmission with the control device and the battery in the inside of the fixed outer disc 203, ensures the continuity and reliability of data transmission, the control device is responsible for receiving original data from the sensor module, through efficient processing of a built-in algorithm, converts complex electrocardio waveforms, blood pressure values and the like into a form easy to understand and analyze, and the battery provides durable and stable energy support for the whole system, ensures that the monitoring activity is not limited by time and place, and realizes all-weather health monitoring.
[0038] The side of the retainer 301 is provided with a hidden tension spring 3011, and the two ends of the hidden tension spring 3011 are fixedly connected to the side of the retainer 301 and the inside of the mounting seat 201 respectively. In use, when the integrated assembly is in normal use (the monitoring assembly 2 monitors that the human body is in a normal level), the control device does not supply power to the two repelling electromagnets 2011, so that at this time, under the action of the hidden tension spring 3011, the injection needle 302 is in a state of being hidden in the inside of the mounting seat 201, avoiding the discomfort caused by the injection needle 302 mistakenly pricking the human body in normal use, and the use is stable. Both ends of the injection needle 302 are designed to be blocked, and the two sides of the internal passage of the injection needle 302 are respectively provided with a multi-purpose hole 3021 and a medicine injection hole 3022. One side of the top of the blocking rubber seat 303 is provided with a communication hole 3031, and the communication hole 3031 and the cavity inside the medicine storage seat 401 are communicated. When the repelling electromagnet 2011 is not powered, under the action of the hidden tension spring 3011, the multi-purpose hole 3021 and the communication hole 3031 are communicated. The side of the action piston 402 is provided with a reset top spring 4021, and the two ends of the reset top spring 4021 are respectively abutted against the side of the action piston 402 and the inside of the side of the medicine storage seat 401. At this time, under the action of the reset top spring 4021, the action piston 402 is in an upper position and does not compress the first-aid medicine liquid inside the medicine storage seat 401, and at this time, the multi-purpose hole 3021 and the communication hole 3031 are communicated. Since the medicine injection hole 3022 is blocked by the blocking rubber seat 303 at this time, the inner cavity of the medicine storage seat 401 is in a closed state at this time, which can effectively avoid the pollution of foreign matters, bacteria and the like to the first-aid medicine liquid inside the medicine storage seat 401, and guarantee the stable performance of the first-aid medicine, and can stably play a first-aid role in use.
[0039] The side surface of the retainer 301 and the interior of the mounting base 201 are each provided with a repelling electromagnet 2011, and the two repelling electromagnets 2011 are on the same straight line. When the repelling electromagnets 2011 are powered, the two repelling electromagnets 2011 repel each other, and the repelling force is greater than the elastic force of the hidden tension spring 3011. When the repelling electromagnets 2011 are not powered, the injection needle 302 is hidden in the interior of the mounting base 201 under the action of the hidden tension spring 3011. In use, when the monitoring assembly 2 monitors a critical condition or a parameter anomaly requiring first aid, the monitoring assembly 2 can timely send an alarm signal and also can link the integrated assembly to perform first aid operation, thereby prolonging the effective treatment time, significantly improving the timeliness of emergency treatment, and improving the success rate of first aid. When the monitoring assembly 2 monitors a critical condition or a parameter anomaly requiring first aid, the control device simultaneously supplies power to the two repelling electromagnets 2011. After the two repelling electromagnets 2011 are powered, they repel each other, thereby driving the retainer 301 to move and push the injection needle 302 out of the interior of the mounting base 201 and complete the injection of the first aid medicine. In the injection of the first aid medicine, the medicine liquid mechanism 4 pumps the medicine into the interior of the injection needle 302 after the injection needle 302 is first pushed out of the mounting base 201 and penetrates into the human body, thereby avoiding the phenomenon that the first aid medicine is sprayed and leaked when the injection needle 302 does not penetrate into the human body, and use is stable.
[0040] In the embodiment of the present disclosure, the interior of the energy storage seat 304 is provided with an energy storage top spring 3041, and the two ends of the energy storage top spring 3041 are respectively abutted against the interior of the energy storage seat 304 and the side surface of the linkage frame 403. The energy storage seat 304 can only move linearly outside the retainer 301. In use, when the two repelling electromagnets 2011 drive the retainer 301 to move at the initial stage after being powered, the retainer 301 drives the injection needle 302 to move synchronously and push out of the mounting base 201 and penetrate into the human body. When the injection needle 302 does not completely extend out of the interior of the mounting base 201, at this time, the injection hole 3022 is always blocked by the blocking rubber seat 303, and the multiple use hole 3021 of the injection needle 302 is out of position with the communication hole 3031 after moving, so that the inner cavity of the medicine storage seat 401 is always in a closed state and will not leak medicine. At the same time, the retainer 301 also drives the energy storage seat 304 to move synchronously when moving, so that the injection rod 3042 on the side surface of the energy storage seat 304 is inserted into the interior of the injection pressure groove 4031. However, because the inner cavity of the medicine storage seat 401 is always in a closed state at this time, and liquid cannot be compressed, this leads to infinite resistance to the downward movement of the action piston 402 at this time, so that the energy storage seat 304 cannot continue to move with the retainer 301, so that the energy storage top spring 3041 can be compressed when the retainer 301 continues to move thereafter, for subsequent injection use.
[0041] In the embodiments of the present disclosure, the side surface of the energy storage seat 304 is provided with an injection lever 3042, and the inside of the linkage frame 403 is provided with an inclined injection pressing groove 4031, the end of the injection pressing groove 4031 towards the injection lever 3042 is designed as an open end, and the position of the open end of the injection pressing groove 4031 is located on the movement path of the injection lever 3042. In use, only when the injection needle 302 is completely stretched out of the inside of the mounting seat 201, the injection operation is triggered, which can avoid the leakage and waste of the medicament during injection, and also can ensure that the injection needle 302 can be stably inserted into the human body for injection. When the injection needle 302 is completely stretched out of the inside of the mounting seat 201, at this time the multi-purpose hole 3021 is located in the human tissue, and the injection hole 3022 is communicated with the communication hole 3031, the closed state of the medicine storage seat 401 is released, that is, the resistance of the downward movement of the action piston 402 is reduced to the normal state. After that, the compressed energy storage top spring 3041 is elongated and reset to drive the energy storage seat 304 to move, the injection lever 3042 can drive the action piston 402 to move downward and compress the reset top spring 4021 through the injection pressing groove 4031, so that the first-aid medicament in the medicine storage seat 401 is injected into the human body through the communication hole 3031, the injection hole 3022 and the multi-purpose hole 3021 in turn for first-aid, which is stable in use and can be used for efficient first-aid, prolongs the effective treatment time and improves the success rate of first-aid. After the medical staff arrives, the vest 1 is taken off, and the total power supply of the monitoring assembly 2 is cut off, the integrated assembly can be automatically reset, and the blocking plug 404 is designed to be detachable, which makes the inside of the medicine storage seat 401 can be repeatedly filled with first-aid liquid for use, and the use cost is reduced.
[0042] Specific usage and function of this embodiment: In the present invention, the user can wear the monitoring component 2 on the body for monitoring by wearing the vest 1, and the sensor module integrates components such as electrocardiogram sensors and blood pressure sensors, which can capture key parameters such as human heart electrical activity and blood pressure changes in real time and accurately, and realize electrical connection and signal transmission with the control device and battery inside the fixed outer disk 203, ensuring the continuity and reliability of data transmission. The control device is responsible for receiving the raw data from the sensor module, and through efficient processing by the built-in algorithm, converts complex electrocardiogram waveforms, blood pressure values and other information into a form that is easy to understand and analyze. The battery provides long-lasting and stable energy support for the entire system, ensuring that monitoring activities are not restricted by time and place. , achieving all-weather health monitoring. When the integrated component is in normal use (the monitoring component 2 detects that the human body is at a normal level), the control device will not power the two repelling electromagnets 2011. Therefore, under the action of the hidden tension spring 3011, the injection needle 302 is hidden inside the mounting seat 201, avoiding the injection needle 302 from accidentally piercing the human body during normal use and causing discomfort. The use is stable, and at this time, under the action of the reset top spring 4021, the action piston 402 is in the upper state and will not compress the first aid liquid inside the medicine storage seat 401. At this time, the multi-use hole 3021 is connected to the connecting hole 3031. Since the injection hole 3022 is blocked by the blocking rubber seat 303 at this time, the inner cavity of the medicine storage seat 401 is in a closed state. It can effectively prevent external impurities, bacteria, etc. from contaminating the first aid liquid inside the medicine storage seat 401, ensure the stable performance of the first aid medicine, and stably play the first aid role when in use. When the monitoring component 2 detects a critical condition or abnormal parameters that require first aid, the monitoring component 2 can send an alarm signal in time and can also link the integrated component to perform first aid operations, thereby extending the effective treatment time, significantly improving the timeliness of emergency treatment, and improving the success rate of first aid. When the monitoring component 2 detects a critical condition or abnormal parameters that require first aid, the control device will simultaneously power the two repelling electromagnets 2011. The two repelling electromagnets 2011 will repel each other after being energized, thereby driving the retaining frame 301 to move and push the injection needle 302 out of the interior of the mounting seat 201. The action of injecting the first aid medicine is completed. During the injection of the first aid medicine, the injection needle 302 is first pushed out of the mounting seat 201 and penetrates into the human body. Then the medicine liquid mechanism 4 pumps the medicine into the interior of the injection needle 302, so as to avoid the phenomenon that the first aid medicine is sprayed and leaked when the injection needle 302 has not penetrated the human body. When the two repelling electromagnets 2011 drive the retaining frame 301 to move in the early stage after being energized, the retaining frame 301 will drive the injection needle 302 to move synchronously and push out the mounting seat 201 and penetrate into the human body. When the injection needle 302 has not completely extended out of the interior of the mounting seat 201, at this time, since the injection hole 3022 is always blocked by the blocking rubber seat 303, and the multi-use hole 3021 will be misaligned with the connecting hole 3031 after the injection needle 302 moves.Therefore, the inner cavity of the medicine storage seat 401 is always closed at this time, and the medicine will not leak. At the same time, the holder 301 also drives the energy storage seat 304 to move synchronously when moving, so that the injection rod 3042 on the side of the energy storage seat 304 is inserted into the inside of the injection pressure groove 4031. However, since the inner cavity of the medicine storage seat 401 is always closed at this time, and the liquid cannot be compressed, it leads to infinite resistance to the downward movement of the action piston 402 at this time, so that the energy storage seat 304 cannot continue to move with the holder 301, so that the holder 301 can continue to move to compress the energy storage spring 3041 for subsequent injection use. Only when the injection needle 302 is completely stretched out of the inside of the mounting seat 201, the medicine injection operation can be triggered, which can avoid the waste of medicine leakage during injection, and also can ensure that the injection needle 302 can be stably inserted into the human body for injection use. When the injection needle 302 is completely stretched out of the inside of the mounting seat 201, the multi-hole 3021 is located in the human tissue at this time, and the medicine injection hole 3022 is in communication with the communication hole 3031, and the closed state of the inside of the medicine storage seat 401 is released, that is, the resistance of the downward movement of the action piston 402 is reduced to the normal state. After that, the energy storage seat 304 is moved by the stretched and reset energy storage spring 3041, and the injection rod 3042 can drive the action piston 402 to move downward and compress the reset spring 4021 through the injection pressure groove 4031 when the energy storage seat 304 moves, so that the first-aid medicine in the inside of the medicine storage seat 401 is injected into the human body through the communication hole 3031, the medicine injection hole 3022 and the multi-hole 3021 in sequence for first-aid. After the medical staff arrives, the vest 1 is taken off, and the total power supply of the monitoring assembly 2 is cut off, the integrated assembly can be automatically reset, and the blocking plug 404 is designed to be detachable. Therefore, the inside of the medicine storage seat 401 can be repeatedly filled with first-aid medicine for use.
[0043] In this paper, the following points need attention:
[0044] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the general design.
[0045] 2. In the case of no conflict, the embodiments of the present disclosure and the features in the embodiments can be combined to obtain new embodiments.
[0046] The above is only a specific implementation of the present disclosure, but the protection scope of the present disclosure is not limited thereto. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. Wearable electronic information health monitoring integrated equipment, including: A wearable vest (1) and a monitoring assembly (2), wherein the monitoring assembly (2) comprises a mounting seat (201), a monitoring inner disk (202) and a fixed outer disk (203), wherein the monitoring inner disk (202) is fixedly mounted on the outside of the mounting seat (201), and the fixed outer disk (203) is plugged into the outside of the mounting seat (201), wherein the mounting seat (201) passes through the wearable vest (1), and the monitoring inner disk (202) and the fixed outer disk (203) are fixedly mounted on the inside and outside of the wearable vest (1), respectively; wherein the monitoring assembly (2) further comprises an integrated assembly, wherein the integrated assembly comprises an action mechanism (3) and a liquid medicine mechanism (4); wherein the action mechanism (3) is arranged inside the mounting seat (201), and the action mechanism (3) comprises a retaining frame (301), an injection needle (302), a sealing rubber seat (303) and an energy storage seat (304), wherein the retaining frame (301) is plugged into the mounting seat (201), and the injection needle (302) is fixedly mounted on the side of the retaining frame (301), the blocking rubber seat (303) is fixedly mounted on the inside of the mounting seat (201), and the needle body of the injection needle (302) passes through the inside of the blocking rubber seat (303), and the energy storage seat (304) is plugged into the side of the retaining frame (301); the liquid medicine mechanism (4) is arranged inside the mounting seat (201), and the liquid medicine mechanism (4) includes a medicine storage seat (401), an actuating piston (402), a linkage frame (403) and a sealing plug (404), the medicine storage seat (401) is fixedly mounted on the inside of the mounting seat (201), and the actuating piston (402) is plugged into the top of the medicine storage seat (401), the linkage frame (403) is fixedly mounted on the side of the actuating piston (402), and the sealing plug (404) is detachably fixedly mounted on the top of the actuating piston (402); A hidden tension spring (3011) is provided on the side of the retaining frame (301), and a repulsive electromagnet (2011) is provided on the side of the retaining frame (301) and inside the mounting seat (201); Both ends of the injection needle (302) are designed to be blocked, and a multi-purpose hole (3021) and a drug injection hole (3022) are respectively provided on both sides of the internal channel of the injection needle (302). A connecting hole (3031) is provided on the top of one side of the blocking rubber seat (303), and the connecting hole (3031) is connected to the cavity inside the drug storage seat (401). When the repulsive electromagnet (2011) is not energized, the multi-purpose hole (3021) and the connecting hole (3031) are connected under the action of the hidden tension spring (3011); An energy storage spring (3041) is provided inside the energy storage seat (304), and two ends of the energy storage spring (3041) respectively abut against the inside of the energy storage seat (304) and the side of the linkage frame (403), and the energy storage seat (304) can only move linearly outside the retaining frame (301); An injection lever (3042) is provided on the side of the energy storage seat (304), and an inclined injection pressing groove (4031) is provided inside the linkage frame (403). The injection pressing groove (4031) is designed to be open at one end facing the injection lever (3042), and the position of the open end of the injection pressing groove (4031) is located on the moving path of the injection lever (3042).
2. The wearable electronic information health monitoring integrated device according to claim 1, characterized in that: A sensor module is provided inside the monitoring inner disk (202), and the sensor module includes an electrocardiogram sensor and a blood pressure sensor. The sensor module is electrically connected to a control device and a battery provided inside the fixed outer disk (203).
3. The wearable electronic information health monitoring integrated device according to claim 2, characterized in that: The two ends of the hidden tension spring (3011) are respectively fixedly connected to the side surface of the retaining frame (301) and the inside of the mounting seat (201).
4. The wearable electronic information health monitoring integrated device according to claim 3, characterized in that: The two repelling electromagnets (2011) are located on the same straight line. When the repelling electromagnets (2011) are energized, the two repelling electromagnets (2011) repel each other, and the repulsive force is greater than the elastic force of the hidden tension spring (3011). When the repelling electromagnets (2011) are not energized, the injection needle (302) is hidden inside the mounting seat (201) under the action of the hidden tension spring (3011).
5. The wearable electronic information health monitoring integrated device according to claim 4, characterized in that: A return spring (4021) is provided on the side of the actuating piston (402), and two ends of the return spring (4021) respectively abut against the side of the actuating piston (402) and the inside of the side of the medicine storage seat (401).
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