Fine anesthesia medicine management and control equipment
Through the design of isolation walls and circular guide rail circulation lines, combined with automatic doors and drug information collection equipment, the problems of inaccurate quantity and loss in the management of narcotic drugs have been solved, accurate management and real-time monitoring of drugs have been achieved, and management costs have been reduced.
Patent Information
- Application Number
- CN202422891993.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-26
AI Technical Summary
The existing management of narcotic drugs has problems such as inaccurate drug quantities, high risk of loss, and high cost of RFID scanning devices.
The design of isolation walls, circular guide rail circulation lines and drug carriers, combined with automatic doors, grating sensors and drug information collection equipment, can achieve accurate management and real-time inventory of drugs.
Ensure that the prescribed amount of medication is consistent with the actual amount taken, eliminate drug loss, reduce management costs, and achieve real-time monitoring of drug inventory.
Smart Images

Figure CN223377919U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a device for controlling and managing narcotic drugs. Background Art
[0002] Currently, the management and control of narcotics and narcotics often utilizes cabinets with multiple doors or drawers. This creates the risk that the amount of medication removed may exceed the prescribed quantity. Even if the system detects an anomaly and issues an alarm, drug loss has already occurred, potentially leading to drug abuse or regulatory errors. Furthermore, because the smallest unit of controlled medication is packaged with an RFID chip, numerous RFID scanners must be installed on every shelf or drawer of the medicine cabinet to ensure that all medications are scanned and counted, significantly increasing costs. Utility Model Content
[0003] The purpose of the utility model is to provide a narcotic drug control device that can manage "one drug, one code" more accurately and strictly, and prevent the loss of controlled drugs.
[0004] In order to solve the above problems, the technical solution of the utility model is:
[0005] A narcotic drug control device includes a partition wall, a circular guide rail circulation line is provided on one side of the partition wall, drug carriers are connected to each slider of the circular guide rail circulation line, a drug dispensing port is opened on the partition wall, an automatic door is provided on the drug dispensing port, and a drug information collection device is installed on the partition wall, the drug information collection device is connected to the input end of the control system, and the output end of the control system is connected to the automatic door and the circular guide rail circulation line.
[0006] The automatic door comprises a cylinder installed on the isolation wall and slides arranged on both sides of the medicine dispensing port, door panels are arranged in the slides, and the cylinder piston rod is connected to the door panels.
[0007] A grating sensor is provided in the medicine taking port and is connected to an input end of the control system.
[0008] A display screen is installed on the isolation wall on the side of the medicine dispensing port.
[0009] The drug information collection equipment is a camera and an RFID scanning device.
[0010] The beneficial effects of the present invention are: on the one hand, it can ensure that the prescribed quantity is completely consistent with the actual quantity taken from a physical level; on the other hand, it can automatically perform internal inventory of individual narcotic drugs by video image acquisition and RFID scanning in a patrol manner, ensuring real-time understanding of inventory status, empty bottle recycling, etc. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The present invention will be further described below with reference to the accompanying drawings:
[0012] Figure 1 This is a schematic diagram of the three-dimensional structure of the utility model.
[0013] Figure 2 This is a schematic diagram of the three-dimensional structure of the utility model.
[0014] Figure 3 This is a schematic diagram of the circuit structure of the utility model.
[0015] In the figure: isolation wall 1, circular guide rail circulation line 2, medicine carrier 3, slide 4, door panel 5, cylinder 6, medicine information collection equipment 7, grating sensor 8, display screen 9, medicine taking port 10. DETAILED DESCRIPTION
[0016] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described 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 creative efforts are within the scope of protection of the present invention.
[0017] A narcotic drug control device includes a partition wall 1, and a circular guide rail circulation line 2 is provided on one side of the partition wall 1. The circular guide rail circulation line 2 includes a slider, a track, a servo motor, a photoelectric switch and a correction cylinder 6, etc. A drug carrier 3 is connected to each slider of the circular guide rail circulation line 2, and the drug carrier 3 is a nylon block fixedly connected to the slider in the circular guide rail circulation line 2. 1 to 4 holes for inserting medicine bottles are provided on the nylon block. A drug dispensing port 10 is provided on the partition wall 1, and an automatic door is provided on the drug dispensing port 10. A drug information collection device 7 is installed on the partition wall 1, and the drug information collection device 7 is connected to the input end of the control system, and the output end of the control system is connected to the automatic door and the circular guide rail circulation line 2. The control system includes a PLC and a touch screen. The PLC controls each slider in the circular guide rail circulation line 2 to rotate to the side of the drug dispensing port 10 in sequence.
[0018] The automatic door includes a cylinder 6 installed on the isolation wall 1 and a slide 4 arranged on both sides of the medicine dispensing port 10. A door panel 5 is provided in the slide 4. The piston rod of the cylinder 6 is connected to the door panel 5. The cylinder 6 drives the door panel 5 to move up and down to control the opening and closing of the medicine dispensing port 10.
[0019] A photoelectric sensor 8 is located within the medicine dispensing port 10 and is connected to the input of the control system. When a person takes out or puts a medicine bottle in, the controller will control the cylinder 6 to lower the door panel 5 only if the photoelectric sensor 8 detects that the person's hand is no longer in the medicine dispensing port 10. This prevents the person's hand from being pinched by the door panel 5.
[0020] A display screen 9 is mounted on the partition wall 1 on one side of the medication dispensing port 10. The display screen 9 is a touch screen that is connected to and communicates with the hospital's medication management system. The hospital's medication management system transmits patient medication usage information to the touch screen, which then displays in real time information such as the quantity, type, user, medication quantity, inventory status, and empty bottle collection status of each medication carrier 3. The touch screen also transmits information collected by the medication information collection device 7 to the hospital's medication management system.
[0021] The drug information collection device 7 is a camera and an RFID scanning device. The camera and the RFID scanning device capture and scan the drug status in the drug carrier 3 and send the data information to the touch screen for display.
[0022] The use process of this utility model is:
[0023] Removal: When in the static state, the automatic door is closed. The medications in the medicine carrier 3 cannot be removed from the medicine removal port 10; they are protected. When the controller receives a removal command, the medication information collection device 7 photographs and scans the medication status in the storage trough and records it. Once the recording is complete, the automatic door opens, allowing the user to remove medications directly from the medicine carrier 3. After removal is complete, the automatic door closes and returns to the static state.
[0024] Storage action: The storage action is the opposite of the removal action. When the control system receives the storage instruction, it first checks whether there are any returned medicines or empty bottles that have been removed. If the medicine is newly placed, the medicine carrier 3, driven by the circular guide rail loop line 2, performs a circular motion according to a certain arrangement. A medicine carrier 3 without a record of medicine is selected and aligned with the external medicine removal port 10. The automatic door is opened, and the staff member places the medicine in the medicine carrier 3. After placement is completed, the automatic door closes. The medicine information collection device 7 photographs and scans the status of the medicine in the medicine carrier 3 and records it. If the medicine has been recorded and returned, the medicine carrier 3, driven by the mechanism, performs a circular motion according to a certain arrangement. The medicine carrier 3 corresponding to the original removal of the medicine is selected and aligned with the external medicine removal port 10. The automatic door is opened, and the staff member places the medicine in the medicine carrier 3. After placement is completed, the automatic door closes. The medicine information collection device 7 photographs and scans the status of the medicine in the medicine carrier 3 and records it.
[0025] Inventory action: According to the inventory instruction, the medicine carriers 3 are driven by the mechanism to perform circular motion in a certain arrangement, so that all medicine carriers 3 pass through the medicine information collection device 7 in turn, and the medicine information collection device 7 photographs and scans the status of the medicines in the storage tank and records it.
[0026] The contents described in the embodiments of this specification are merely an enumeration of the implementation forms of the utility model concept. The protection scope of the utility model should not be regarded as limited to the specific forms described in the embodiments. The protection scope of the utility model also extends to equivalent technical means that can be thought of by those skilled in the art based on the concept of the utility model.
Claims
1. A device for controlling narcotic drugs, characterized by: The invention comprises an isolation wall (1), a circular guide rail circulation line (2) is provided on one side of the isolation wall (1), a medicine carrier (3) is connected to each slider of the circular guide rail circulation line (2), a medicine dispensing port (10) is provided on the isolation wall (1), an automatic door is provided on the medicine dispensing port (10), a medicine information collection device (7) is installed on the isolation wall (1), the medicine information collection device (7) is connected to the input end of the control system, and the output end of the control system is connected to the automatic door and the circular guide rail circulation line (2).
2. The narcotic drug control device according to claim 1, characterized in that: The automatic door comprises a cylinder (6) mounted on a partition wall (1) and chutes (4) arranged on both sides of a medicine dispensing port (10); a door panel (5) is arranged in the chutes (4); and a piston rod of the cylinder (6) is connected to the door panel (5).
3. The narcotic drug control device according to claim 1, characterized in that: A grating sensor (8) is provided in the medicine taking port (10), and the grating sensor (8) is connected to an input end of the control system.
4. The narcotic drug control device according to any one of claims 1 to 3, characterized in that: A display screen (9) is installed on the partition wall (1) on one side of the medicine taking port (10).
5. The narcotic drug control device according to any one of claims 1 to 3, characterized in that: The drug information collection device (7) is a camera and an RFID scanning device.