Intelligent medical kit system for first-aid product warehouse management and remote call for help
By adopting RFID technology and WIFI modules in laboratory medicine boxes, real-time monitoring and management of drug inventory is achieved, the problem of chaotic inventory management of traditional medicine boxes is solved and emergency response capabilities are improved.
Patent Information
- Application Number
- CN202421735747.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-22
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-07-22
AI Technical Summary
The traditional storage method of the existing laboratory first aid products has caused chaos in inventory management, and managers are unable to accurately obtain the quantity and expired conditions of the drug, and are unable to understand the situation in a timely manner and respond in a timely manner when the accident occurs.
RFID technology is used to paste RFID tags on the outer packaging of drugs, and real-time inventory inventory is achieved through a reader. At the same time, through the touch screen with WIFI module, uploading drug information to the back-end management platform, managers can remind stock status and replenishment strategies through text messages and emails.
Real-time monitoring and management of drug inventory is realized, ensuring the timely implementation of drug replenishment strategies, and improving emergency response capabilities in the event of an accident.
Smart Images

Figure CN222997994U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of laboratory medicine chest systems, in particular to an intelligent medicine chest system for the management of first-aid supplies storage and remote calling for help. Background Technique
[0002] First aid means emergency treatment. When any accident or acute illness occurs, before the medical staff arrive, the rescuer, in accordance with the principles of medical care, uses the on-site applicable materials to temporarily and appropriately conduct preliminary rescue and care for the injured and sick, and then quickly sends them to the hospital.
[0003] The drugs used in the first-aid process are called first-aid supplies, which are used to relieve the symptoms of patients in some emergency situations. Common first-aid supplies include gauze, bandage, tourniquet, iodophor disinfected cotton swab, band-aid, first-aid blanket, antipyretics, analgesics, muscle relaxants, antispasmodics, anticonvulsants, drugs for treating grand mal epilepsy, drugs for resuscitating cardiac arrest, vasopressors during shock, respiratory center stimulants, cardiotonics, drugs for treating coma with convulsions, drugs for treating coma, rapid antihypertensive drugs, antiarrhythmic drugs, antianginal drugs, etc. Due to the large quantity and variety of first-aid supplies, they are often stored in medicine chests.
[0004] The existing traditional medicine chests for storing laboratory first-aid supplies, although they can store different quantities and types of drugs, because their inventory status cannot be actively controlled, the following technical defects of chaotic inventory management need to be solved: (1) Managers cannot accurately obtain the quantity of first-aid supplies in the current medicine chest and whether the drugs are expired; (2) When an accident occurs, managers cannot actively understand the situation, and the injured cannot contact the managers in time to get a response from the managers. Content of the Utility Model
[0005] In order to overcome the deficiencies that the existing traditional medicine chests for laboratory first-aid use have chaotic inventory management, managers cannot accurately obtain the quantity of first-aid supplies in the current medicine chest and whether the drugs are expired, and when an accident occurs, managers cannot actively understand the situation, and the injured cannot contact the managers in time to get a response from the managers, the embodiments of the present application provide an intelligent medicine chest system for the management of first-aid supplies storage and remote calling for help. By adopting RFID technology, RFID tags are pasted on the outer packaging of drugs, and the reader can read and write drug information on the RFID tags, so as to realize real-time inventory counting. When the touch screen with a WIFI module can support the RFID tag information read and written by the reader, it is uploaded to the backend management platform, and the laboratory administrator sends text messages and emails, etc. to remind the administrator of the inventory situation and replenishment strategy.
[0006] The technical solution adopted by the embodiments of the present application to solve its technical problems is:
[0007] An intelligent medicine box system for first-aid supplies inventory management and remote calling for help, including an intelligent medicine box main body and first-aid supplies storage boxes. There are multiple first-aid supplies storage boxes, all of which are stored inside the intelligent medicine box main body. At the center of the top of the front of the intelligent medicine box main body, there is a touch screen. On one side of the top of the front of the intelligent medicine box main body, there is a walkie-talkie. On the other side of the top of the front of the intelligent medicine box main body, there is an emergency button. The back of the emergency button is connected to a pull rope. One end of the pull rope passes through the side of the intelligent medicine box main body. At the inner wall of the top of the intelligent medicine box main body, there is an assembled reader; on the surface of the outer package of the first-aid medicine, there is an RFID tag, and the RFID tag corresponds to the information of the medicine. The reader obtains the information recorded by the RFID tag from top to bottom. Inside the touch screen, there is a WIFI module. The touch screen is connected to the network through the WIFI module and uploads the medicine access information obtained by the reader to the backend management platform.
[0008] In a possible implementation, in the emergency system to which the emergency button belongs, there is an independent phone card and a power supply that supports the phone card and the corresponding communication module.
[0009] In a possible implementation, at the top of the back of the intelligent medicine box main body, there are heat dissipation holes. At both corners at the top of the back of the intelligent medicine box main body, there are formed hooks. At the four corners at the bottom of the intelligent medicine box main body, there are processed floor feet.
[0010] In a possible implementation, on one side of the front of the intelligent medicine box main body, there is a hinged medicine box door. One side of the medicine box door is fixedly connected to the other side of the front of the intelligent medicine box main body through a Hall magnetic switch, so as to store the first-aid supplies storage box inside the intelligent medicine box main body.
[0011] In a possible implementation, the intelligent medicine box main body is made of aluminum alloy material, and the medicine box door and the first-aid supplies storage box are both made of acrylic material.
[0012] In a possible implementation, the multiple first-aid supplies storage boxes include two extra-large storage boxes, two medium storage boxes, three large storage boxes, and four small storage boxes. The thicknesses of the extra-large storage box, medium storage box, large storage box, and small storage box are the same. The total length of the three large storage boxes is equal to the total length of the two extra-large storage boxes, the total length of the two medium storage boxes, and the total length of the four small storage boxes. The width of the large storage box is equal to the width of the extra-large storage box and the sum of the widths of the small storage box and the medium storage box. The two extra-large storage boxes are located at the bottom inside the intelligent medicine box main body to form a bottom layer area. The three large storage boxes are located in the middle inside the intelligent medicine box main body to form a middle area. The two medium storage boxes and the four small storage boxes are located at the top inside the intelligent medicine box main body to form a top layer area.
[0013] In a possible implementation, three layers of hanging racks are provided inside the main body of the intelligent medicine cabinet. Each of the three layers of hanging racks includes two erection seats symmetrically arranged on the left and right. Round rods are hung at the tops of both ends of the two erection seats.
[0014] In a possible implementation, the extra-large storage box, medium storage box, large storage box, and small storage box all include baffles at both ends and a U-shaped main body. U-shaped hooks are integrally formed at both ends of the U-shaped main body. The round rods are also hung in the middle of the two erection seats at the top layer, and the number of them is two. The openings of the U-shaped hooks are opposite to the openings of the U-shaped main bodies. The U-shaped hooks are buckled on the tops of the round rods.
[0015] In a possible implementation, two pulleys are assembled and connected at the inner wall of the top of one side of the main body of the intelligent medicine cabinet. The pull rope passes between the two pulleys.
[0016] In summary, the present utility model includes at least one of the following beneficial technical effects:
[0017] In this solution, by adopting RFID technology, pasting RFID tags on the outer packaging of medicines, and reading and writing medicine information on the RFID tags through a reader, real-time inventory checking can be achieved. Based on the touch screen with a WIFI module, when supporting the RFID tag information read and written by the reader, it can be uploaded to the backend management platform (and the system on this platform monitors the shelf life information of each commodity), and the laboratory administrator sends text messages and emails to remind the administrator of the inventory situation and replenishment strategy.
[0018] In this solution, by adopting a control method combining pressing the emergency button and pulling down the pull rope on one side of the main body of the intelligent medicine cabinet, the alarm work can be completed in the first time, quickly and efficiently. The pulling of the pull rope is guided by two pulleys, which can solve the force problem of completing the alarm operation through the pull rope.
[0019] In this solution, by setting an independent phone card and power supply in the emergency system to which the emergency button belongs, normal communication functions can be maintained during power failure and network disconnection, and it can avoid being unable to call for help in case of an accident.
[0020] In this solution, by flexibly hanging round rods between the tops of the left and right erection seats and hanging the medium storage box, small storage box, large storage box, and extra-large storage box between the two round rods, the flexible installation of storage boxes of different sizes can be completed, solving the storage and space optimization problems of first aid items.
[0021] In this solution, by using the main body of the intelligent medicine cabinet made of aluminum alloy material, the medicine cabinet door made of acrylic material, and the first aid item storage box made of acrylic material, the weight of the equipment in this application can be significantly reduced.
[0022] 1. In this solution, by assembling floor feet at the bottom of the intelligent medicine cabinet main body and setting hooks at two corners on the top of the back, the functions of wall mounting and desktop placement of this application can be achieved. Description of the Drawings
[0023] Figure 1 is a front structural schematic diagram of the present utility model;
[0024] Figure 2 is a bottom structural schematic diagram of the present utility model;
[0025] Figure 3 is a back structural schematic diagram of the present utility model;
[0026] Figure 4 is an internal structural schematic diagram of the present utility model.
[0027] Reference numerals: 1, intelligent medicine cabinet main body; 2, touch screen; 3, intercom; 4, medicine cabinet door; 5, Hall magnetic switch; 6, pull rope; 7, emergency button; 8, heat dissipation hole; 9, hook; 10, floor foot; 11, small storage box; 12, medium storage box; 13, round rod; 14, erection seat; 15, large storage box; 16, extra-large storage box; 17, pulley; 18, reader. Detailed Description of the Preferred Embodiments
[0028] The technical solutions in the embodiments of this application are to solve the problems in the above background technology, and the general idea is as follows:
[0029] Embodiment:
[0030] This embodiment introduces the specific structure of an intelligent medicine cabinet system for first-aid supplies inventory management and remote calling for help. Specifically, refer to Figures 1-4 as shown, including an intelligent medicine cabinet main body 1 and multiple internal first-aid supplies storage boxes all housed in the intelligent medicine cabinet main body 1. A touch screen 2 is provided at the center of the top of the front of the intelligent medicine cabinet main body 1, an intercom 3 is provided on one side of the top of the front of the intelligent medicine cabinet main body 1, an emergency button 7 is provided on the other side of the top of the front of the intelligent medicine cabinet main body 1, and a pull rope 6 is connected to the back of the emergency button 7;
[0031] Among them. One side of the front of the intelligent medicine cabinet main body 1 is hingedly connected with a medicine cabinet door 4, and one side of the medicine cabinet door 4 is fixedly connected to the other side of the front of the intelligent medicine cabinet main body 1 through a Hall magnetic switch 5, so as to house the first-aid supplies storage box inside the intelligent medicine cabinet main body 1;
[0032] Secondly, one end of the pull rope 6 passes through the side of the intelligent medicine cabinet main body 1 to form two control methods for the emergency system alarm with the emergency button 7 provided on the front top of the intelligent medicine cabinet main body 1:
[0033] The first method is to press the emergency button 7 in a conventional manner to realize the alarm function based on the existing emergency alarm technology;
[0034] The second method is to pull one end of the pull cord 6 to control the emergency button 7 to achieve a pressing action to complete the alarm work;
[0035] Secondly, in order to avoid the surface of the pull rope 6 from contacting with the structural parts on the intelligent medicine box body 1 and causing wear during the process of pulling the pull rope 6 to control the emergency button 7, and to avoid the large resistance generated during the process of pulling the pull rope 6, such as Figure 2 and Figure 4 As shown, two pulleys 17 are assembled and connected at the top inner wall of one side of the main body 1 of the smart medicine box. By passing the pull rope 6 between the two pulleys 17, when the pull rope 6 is pulled, the pulley 17 can be rolled to reduce the resistance of the pull rope 6 when it moves;
[0036] like Figure 2 and Figure 4 As shown, a reader 18 is assembled and connected to the top inner wall of the smart medicine box body 1, and an RFID tag is attached to the surface of the first aid medicine packaging bag; a WIFI module is arranged inside the touch screen 2;
[0037] Among them, by making the RFID tag correspond to the information of the medicine, the reader 18 obtains the information recorded by the RFID tag from the top to the bottom, and the medicine can be recorded when it is stored in the smart medicine box body 1 or taken out from the smart medicine box body 1;
[0038] At the same time, the touch screen 2 is connected to the Internet through the WIFI module, and the RFID tag information read and written by the reader can be stored in the smart medicine box system in a timely manner, and uploaded to the back-end management platform in a timely manner through the WIFI module. When the medicine in the database is about to expire, the system can send text messages and emails to the laboratory administrator to remind the administrator of the inventory status and replenishment strategy in a timely manner;
[0039] Secondly, the emergency system to which the emergency button 7 belongs is provided with an independent phone card and a power source supporting the phone card and the corresponding communication module. By providing power with the help of the independent phone card and the circuit supporting the phone card, even if the power is cut off or the network is disconnected, the phone card can be used to call for help, thus avoiding the inability to call for help in unexpected situations;
[0040] Furthermore, by timely communicating the injury through the intercom 3 (based on the existing communication circuits, components, etc. of the intercom 3), you can ask for help and take corresponding treatment measures in the shortest possible time;
[0041] In a possible implementation, a heat dissipation hole 8 is provided at the top of the back of the smart medicine box body 1, hooks 9 are formed at the two corners of the top of the back of the smart medicine box body 1, and feet 10 are processed at the four corners of the bottom of the smart medicine box body 1;
[0042] Based on the two hooks 9 on the back of the intelligent medicine box body 1 and the four feet 10 at the bottom, the intelligent medicine box body 1 can have two usage methods:
[0043] First, based on the two hooks 9, when the intelligent medicine box body 1 is hung on a nail or hook on the wall through the two hooks 9, the intelligent medicine box body 1 can be used in a suspended state;
[0044] Second, based on the four feet 10 at the four corners of the bottom of the intelligent medicine box body 1, by making the four feet 10 support on the desktop, the intelligent medicine box body 1 can be placed for use;
[0045] In a possible implementation, the intelligent medicine box body 1 is made of aluminum alloy material, and the medicine box door 4 and the first aid supplies storage box are both made of acrylic material. By utilizing the material properties of aluminum alloy and acrylic materials, based on the material properties of traditional metal medicine boxes, the effect of weight reduction can be achieved;
[0046] In a possible implementation, multiple first aid supplies storage boxes include two extra-large storage boxes 16, two medium storage boxes 12, three large storage boxes 15, and four small storage boxes 11;
[0047] Among them, by making the thicknesses of the extra-large storage box 16, the medium storage box 12, the large storage box 15, and the small storage box 11 the same, and the total length of the three large storage boxes 15 is equal to the total lengths of the two extra-large storage boxes 16, the two medium storage boxes 12, and the four small storage boxes 11, and the width of the large storage box 15 is equal to the width of the extra-large storage box 16 and the sum of the widths of the small storage box 11 and the medium storage box 12, three different regions (the upper, middle, and lower regions) can be formed inside the intelligent medicine box body 1 (the two extra-large storage boxes 16 are used in combination and installed at the bottom inside the intelligent medicine box body 1 to form the bottom-layer first aid supplies storage area; the three large storage boxes 15 are used in combination and installed in the middle inside the intelligent medicine box body 1 to form the middle-layer first aid supplies storage area; and the two medium storage boxes 12 and the four small storage boxes 11 are used in combination and installed at the top inside the intelligent medicine box body 1 to form the top-layer first aid supplies storage area) for storing first aid drugs of different sizes and types;
[0048] Secondly, in order to enable the two extra-large storage boxes 16, the two medium storage boxes 12, the three large storage boxes 15, and the four small storage boxes 11 to be flexibly installed inside the intelligent medicine box body 1, such as Figure 4As shown in the figure, there are three layers of hanging racks inside the main body 1 of the intelligent medicine box. Each of the three layers of hanging racks includes two erection seats 14 that are symmetrically arranged left and right. Round rods 13 are hung at the tops of both ends of the two erection seats 14. The extra-large storage box 16, the medium storage box 12, the large storage box 15, and the small storage box 11 all include baffles at both ends and a U-shaped main body. Both ends of the U-shaped main body are integrally formed with a U-shaped hook (the opening of the U-shaped hook is opposite to the opening of the U-shaped main body). By hanging two round rods 13 on the two erection seats 14 at the top layer (it can also be the middle layer and the bottom layer), and by making the U-shaped hook buckle on the top of the round rod 13, storage boxes of different sizes can be adapted.
[0049] Finally, it should be noted that: Obviously, the above embodiments are only examples for clearly explaining the present invention, rather than limitations on the implementation manners. For those of ordinary skill in the art, other different forms of changes or modifications can be made based on the above description. It is not necessary and impossible to list all the implementation manners here. And the obvious changes or modifications derived therefrom are still within the protection scope of the present invention.
Claims
1. An intelligent medicine box system for first aid storage management and remote rescue, characterized in that: include: Intelligent medicine box main body (1); A plurality of first aid storage boxes are provided and are all stored inside the intelligent medicine box body (1); A touch screen (2) is provided at the center of the top of the front of the smart medicine box body (1); an intercom (3) is provided on one side of the top of the front of the smart medicine box body (1); an emergency button (7) is provided on the other side of the top of the front of the smart medicine box body (1); a pull rope (6) is connected to the back of the emergency button (7); one end of the pull rope (6) passes through the side of the smart medicine box body (1); and a reader (18) is assembled and connected to the inner wall of the top of the smart medicine box body (1); An RFID tag is attached to the surface of the outer packaging of the first aid medicine, the RFID tag corresponds to the information of the medicine, and the reader (18) obtains the information recorded by the RFID tag from the top to the bottom; The touch screen (2) is provided with a WIFI module inside, and the touch screen (2) is connected to the network via the WIFI module to upload the drug access information acquired by the reader (18) to the back-end management platform.
2. The intelligent medicine box system for first aid storage management and remote rescue as claimed in claim 1, characterized in that: The emergency system to which the emergency button (7) belongs is provided with an independent telephone card and a power source supporting the telephone card and a corresponding communication module.
3. The intelligent medicine box system for first aid storage management and remote rescue as claimed in claim 1, characterized in that: The top of the back side of the smart medicine box main body (1) is provided with a heat dissipation hole (8), two corners of the top of the back side of the smart medicine box main body (1) are formed with hooks (9), and the four corners of the bottom side of the smart medicine box main body (1) are processed with feet (10).
4. The intelligent medicine box system for first aid storage management and remote rescue as claimed in claim 1, characterized in that: A medicine box door (4) is hingedly connected to one side of the front of the smart medicine box body (1), and one side of the medicine box door (4) is connected and fixed to the other side of the front of the smart medicine box body (1) via a Hall magnetic switch (5), so that the first aid storage box is stored inside the smart medicine box body (1).
5. The intelligent medicine box system for first aid storage management and remote rescue as claimed in claim 4, characterized in that: The intelligent medicine box body (1) is made of aluminum alloy material, and the medicine box door (4) and the first aid storage box are both made of acrylic material.
6. The intelligent medicine box system for first aid storage management and remote rescue as claimed in claim 1, characterized in that: The plurality of first aid storage boxes include two extra-large storage boxes (16), two medium storage boxes (12), three large storage boxes (15) and four small storage boxes (11); the thicknesses of the extra-large storage boxes (16), the medium storage boxes (12), the large storage boxes (15) and the small storage boxes (11) are all the same; the total length of the three large storage boxes (15) is equal to the total length of the two extra-large storage boxes (16), the total length of the two medium storage boxes (12) and the total length of the four small storage boxes (11); the width of the large storage box (15) is equal to the sum of the width of the extra-large storage box (16) and the width of the small storage box (11) and the medium storage box (12); The two extra-large storage boxes (16) are located at the bottom of the inner side of the smart medicine box body (1) to form a bottom area, the three large storage boxes (15) are located in the middle of the inner side of the smart medicine box body (1) to form a middle area, and the two medium storage boxes (12) and the four small storage boxes (11) are located at the top of the inner side of the smart medicine box body (1) to form a top area.
7. An intelligent medicine box system for first aid storage management and remote rescue as claimed in claim 6, characterized in that: A three-layer hanging rack is arranged on the inner side of the intelligent medicine box body (1), and each of the three-layer hanging racks comprises two mounting seats (14) arranged symmetrically on the left and right, and round rods (13) are hung on the tops of both ends of the two mounting seats (14); The extra-large storage box (16), the medium storage box (12), the large storage box (15) and the small storage box (11) all include baffles at both ends and a U-shaped body, and both ends of the U-shaped body are integrally formed with U-shaped hooks; The round rod (13) is also hung in the middle of two mounting seats (14) located on the top layer, and the number of the two mounting seats is two. The opening of the U-shaped hook faces opposite to the opening of the U-shaped body, and the U-shaped hook is buckled on the top of the round rod (13).
8. The intelligent medicine box system for first aid storage management and remote rescue as claimed in claim 1, characterized in that: Two pulleys (17) are assembled and connected to the top inner wall of one side of the intelligent medicine box body (1), and the pull rope (6) passes between the two pulleys (17).
Citation Information
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