Medicine traceability code scanning device
Patent Information
- Application Number
- CN202521825435.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-26
- Publication Date
- 2026-08-28
- Estimated Expiration
- 2035-08-26
AI Technical Summary
[0004]本实用新型的目的是解决以上缺陷,提供药品追溯码扫描装置,解决了现有扫码方式较为单一,缺乏有效的二次扫码机制,造成错误药品的流出的技术问题
[0012]The beneficial effects of this invention are as follows: Through its design, the drug traceability code scanning device achieves automatic drug box transport and accurate code scanning through the coordinated operation of various components, including the frame assembly, transparent cover lifting mechanism, rotating and flipping mechanism, upper scanner, side scanner, and drug box detection sensor. The drug box arrives at the flipping transparent platform via a conveyor belt and drug inlet slide. The drug box detection sensor detects the code in a timely manner. The upper scanner, side scanner, and lower scanner operate simultaneously. When the code is successfully scanned, the transparent cover lifting mechanism simultaneously lifts the transparent cover, allowing the drug box to slide smoothly to the dispensing port for easy access by the patient, completing the drug dispensing process. If the first scan fails, the rotating deceleration platform drives the flipping transparent platform to rotate back to its initial position, and the side scanner scans again, increasing the scanning opportunity. If the second scan is successful, the process is followed as if it were successful. If it still fails, the transparent cover lifting mechanism lifts the transparent cover, and the drug box slides to the unqualified recycling bin for easy refilling, effectively preventing the outflow of incorrect drugs and ensuring medication safety.
Smart Images

Figure CN224696351U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of scanning equipment, specifically to a drug traceability code scanning device. Background Technology
[0002] With the advancement of healthcare informatization, higher demands are being placed on the accuracy and efficiency of drug traceability. As a key information carrier for the entire drug traceability process, the rapid and accurate scanning of drug traceability codes is crucial for ensuring medication safety and improving pharmacy efficiency.
[0003] Existing drug traceability code scanning devices have certain shortcomings in their structural and functional design. On the one hand, the scanning method is relatively simple, usually relying on a scanner in a fixed position for scanning, making it difficult to ensure comprehensive scanning of traceability codes on medicine boxes at different positions and angles, resulting in a low scanning success rate and affecting drug distribution efficiency. On the other hand, the handling of medicine boxes that fail to be scanned is not flexible or intelligent enough, lacking an effective secondary scanning mechanism, which can easily lead to the outflow of incorrect drugs and fail to effectively guarantee patient medication safety. Therefore, those skilled in the art have provided a drug traceability code scanning device to solve the problems mentioned in the background art. Utility Model Content
[0004] The purpose of this invention is to address the above-mentioned shortcomings by providing a drug traceability code scanning device. This device solves the technical problem that existing scanning methods are relatively simple and lack an effective secondary scanning mechanism, leading to the leakage of incorrect drugs.
[0005] The objective of this utility model is achieved through the following means:
[0006] A drug traceability code scanning device includes a frame assembly. An upper scanner is mounted on the top of the frame assembly. A conveyor belt is mounted on the front side of the frame assembly. A transparent cover lifting mechanism is mounted on the rear inner wall of the frame assembly. The transparent cover lifting mechanism includes a lifting motor module. A transparent circular cover is mounted in front of the lifting motor module, and a drug inlet chute is connected to the front of the transparent circular cover. A rotation and flipping mechanism is located below the transparent cover lifting mechanism. The rotation and flipping mechanism includes a flipping sensor assembly, a rotation sensor assembly, and a flipping motor. A flipping transparent platform is mounted in front of the flipping motor. A scanning cylinder is located below the flipping transparent platform. A drug outlet chute is located on one side of the scanning cylinder. A lower scanner is located below the scanning cylinder. A rotation deceleration platform is mounted on the bottom side of the lower scanner. A rotation motor is mounted on the bottom side of the rotation deceleration platform. A medicine box detection sensor is mounted on the side wall of the frame assembly, and a side scanner is located on the opposite side of the medicine box detection sensor.
[0007] Furthermore, the flip sensor assembly is connected to the front side of the flip transparent platform, and the flip sensor assembly includes a flip sensor plate, with a correct scan flip sensor, a horizontal flip sensor, and a scan error flip sensor arranged around the flip sensor plate.
[0008] Furthermore, the rotation sensor assembly is connected to the front of the rotation deceleration platform. The rotation sensor assembly includes a rotation sensor plate, with a rotation origin sensor located on the front of the plate. A rotation limit column is vertically inserted into the rotation sensor plate. After the medicine box is transferred to the flipping transparent platform, it is detected by the medicine box detection sensor, which scans the medicine. If the scan is successful, the flipping transparent platform flips to the position where the scan is correct, and simultaneously, the transparent cover lifting mechanism lifts the transparent cover to the top. The medicine box then slides down the dispensing chute to the dispensing port, completing the medicine dispensing process. If the scan fails... The rotating deceleration platform will drive the flipping transparent platform to rotate one full circle to the rotation origin sensor position. The side scanner will then scan the traceability code on the side of the dynamic medicine box again. If the scan is successful, the flipping transparent platform will flip to the correct scan sensor, and the transparent cover lifting mechanism will lift the transparent cover to the top. The medicine box will then slide down the dispensing chute to the dispensing port, completing the medicine dispensing process. If the scan fails, the flipping transparent platform will flip to the incorrect scan sensor, and the transparent cover lifting mechanism will lift the transparent cover to the top. The medicine box will then slide down the dispensing chute into the unqualified recycling bin for re-dispensing.
[0009] Furthermore, the upper scanner is positioned above the flip-transparent platform, the lower scanner is positioned below the flip-transparent platform, and the side scanner is positioned on one side of the flip-transparent platform.
[0010] Furthermore, the drug inlet chute is inclined, with one end of the chute connected to the conveyor belt and the other end connected to the upper port of the transparent dome.
[0011] Furthermore, the dispensing chute is located below the medicine box detection sensor.
[0012] The beneficial effects of this invention are as follows: Through its design, the drug traceability code scanning device achieves automatic drug box transport and accurate code scanning through the coordinated operation of various components, including the frame assembly, transparent cover lifting mechanism, rotating and flipping mechanism, upper scanner, side scanner, and drug box detection sensor. The drug box arrives at the flipping transparent platform via a conveyor belt and drug inlet slide. The drug box detection sensor detects the code in a timely manner. The upper scanner, side scanner, and lower scanner operate simultaneously. When the code is successfully scanned, the transparent cover lifting mechanism simultaneously lifts the transparent cover, allowing the drug box to slide smoothly to the dispensing port for easy access by the patient, completing the drug dispensing process. If the first scan fails, the rotating deceleration platform drives the flipping transparent platform to rotate back to its initial position, and the side scanner scans again, increasing the scanning opportunity. If the second scan is successful, the process is followed as if it were successful. If it still fails, the transparent cover lifting mechanism lifts the transparent cover, and the drug box slides to the unqualified recycling bin for easy refilling, effectively preventing the outflow of incorrect drugs and ensuring medication safety. Attached Figure Description
[0013] Figure 1 This is a three-dimensional structural diagram of the drug traceability code scanning device of this utility model;
[0014] Figure 2 This is a schematic diagram of the transparent cover lifting mechanism in the drug traceability code scanning device of this utility model;
[0015] Figure 3 This is a schematic diagram of the rotating and flipping mechanism in the drug traceability code scanning device of this utility model;
[0016] Figure 4 This is a schematic diagram of the flip sensor assembly in the drug traceability code scanning device of this utility model;
[0017] Figure 5 This is a schematic diagram of the rotating sensor assembly in the drug traceability code scanning device of this utility model;
[0018] Figure 6 This is a schematic diagram of the operation of the drug traceability code scanning device of this utility model;
[0019] In the diagram: 1. Frame assembly; 2. Transparent cover lifting mechanism; 201. Lifting motor module; 202. Transparent circular cover; 203. Medicine feeding chute; 3. Conveyor belt; 4. Rotation and flipping mechanism; 401. Rotation deceleration platform; 402. Scanning cover cylinder; 403. Flipping transparent platform; 404. Flipping motor; 405. Flipping sensor assembly; 4051. Flipping sensor plate; 4052. Correct scanning flipping sensor; 4053. Horizontal flipping sensor; 4054. Incorrect scanning flipping sensor; 406. Rotation sensor assembly; 4601. Rotation sensor plate; 4602. Rotation origin sensor; 4603. Rotation limit column; 407. Lower scanner; 408. Rotation motor; 5. Upper scanner; 6. Side scanner; 7. Medicine box detection sensor; 8. Medicine dispensing chute. Detailed Implementation
[0020] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0021] In this embodiment, refer to Figures 1-6 The drug traceability code scanning device specifically implemented includes a frame assembly 1, an upper scanner 5 mounted on the top of the frame assembly 1, a conveyor belt 3 mounted on the front side of the frame assembly 1, a transparent cover lifting mechanism 2 mounted on the rear inner wall of the frame assembly 1, a lifting motor module 201 within the transparent cover lifting mechanism 2, a transparent circular cover 202 mounted on the front side of the lifting motor module 201, a drug inlet slide 203 connected to the front side of the transparent circular cover 202, a rotation and flipping mechanism 4 below the transparent cover lifting mechanism 2, a flipping sensor assembly 405, a rotation sensor assembly 406 and a flipping motor 404, a flipping transparent platform 403 mounted on the front side of the flipping motor 404, and a scanning cylinder 402 below the flipping transparent platform 403. A dispensing chute 8 is provided on one side. A lower scanner 407 is provided below the scanning cylinder 402. A rotary deceleration platform 401 is installed on the bottom side of the lower scanner 407. A rotary motor 408 is installed on the bottom side of the rotary deceleration platform 401. A medicine box detection sensor 7 is installed on the side wall of the frame assembly 1. A side scanner 6 is provided on the side opposite to the medicine box detection sensor 7. The upper scanner 5 is located above the flip transparent platform 403. The lower scanner 407 is located below the flip transparent platform 403. The side scanner 6 is located on one side of the flip transparent platform 403. The medicine feeding chute 203 is inclined. One end of the medicine feeding chute 203 is connected to the conveyor belt 3. The other end of the medicine feeding chute 203 is connected to the upper port of the transparent cylinder 202. The dispensing chute 8 is located below the medicine box detection sensor 7.
[0022] The flip sensor assembly 405 is connected to the front of the flip transparent platform 403. The flip sensor assembly 405 includes a flip sensor plate 4051. Around the flip sensor plate 4051 are a correct scan flip sensor 4052, a horizontal flip sensor 4053, and a scan error flip sensor 4054. The rotation sensor assembly 406 is connected to the front of the rotation deceleration platform 401. The rotation sensor assembly 406 includes a rotation sensor plate 4601. A rotation origin sensor 4602 is located on the front of the rotation sensor plate 4601. A rotation limit post 4603 is vertically inserted into the rotation sensor plate 4601. After the medicine box is transferred to the flip transparent platform 403, it is scanned by the upper scanner 5 and the side scanner 6. The scanner 407 scans the code. If the scan is successful, the transparent cover lifting mechanism 2 lifts the transparent cover 202 to the top, and the medicine box slides down to the medicine outlet through the medicine dispensing slide 8 to complete the medicine retrieval. If the scan fails, the rotary deceleration platform 401 will drive the flipping transparent platform 403 to rotate one revolution to the position of the rotation origin sensor 4062, and then scan the traceability code on the side of the dynamic medicine box again through the side scanner 6. If the scan is successful, the transparent cover lifting mechanism 2 lifts the transparent cover 202 to the top, and the medicine box slides down to the medicine outlet through the medicine dispensing slide 8 to complete the medicine retrieval. If the scan fails, the transparent cover lifting mechanism 2 lifts the transparent cover 202 to the top, and the medicine box slides down to the non-conforming recycling bin through the medicine dispensing slide 8.
[0023] The working principle of this device is as follows: The device consists of a frame assembly 1, a transparent cover lifting mechanism 2, a conveyor belt 3, a rotating and flipping mechanism 4, an upper scanner 5, a side scanner 6, a medicine box detection sensor 7, and a medicine dispensing chute 8. The medicine box is conveyed to the flipping transparent platform 403 via the conveyor belt 3 and the medicine inlet chute 203. At this time, the transparent platform is at the horizontal flipping sensor 4053 and is in a horizontal state. The transparent cover 202 covers the flipping transparent platform 403. After the medicine box is conveyed to the flipping transparent platform 403, it is detected by the medicine box detection sensor 7. Simultaneously, the upper scanner 5, the side scanner 6, and the lower scanner 407 scan the medicine. If the scan is successful, the flipping transparent platform 403 flips to the correct scan flipping sensor 4052, and at the same time, the transparent cover lifting mechanism 2 lifts the transparent cover 202 to the top. The medicine box slides down the dispensing chute 8 to the dispensing port, where the patient takes the medicine. If the scan fails, the rotating deceleration platform 401 will rotate the flipping transparent platform 403 one revolution to the rotation origin sensor 4062, and then scan the traceability code on the side of the dynamic medicine box again via the side scanner 6. If the scan is successful, the flipping transparent platform 403 flips to the correct scan flip sensor 4052, and at the same time, the transparent cover lifting mechanism 2 lifts the transparent round cover 202 to the top. The medicine box then slides down the dispensing chute 8 to the dispensing port, where the patient takes the medicine. If the scan fails, the flipping transparent platform 403 flips to the incorrect scan flip sensor 4054, and at the same time, the transparent cover lifting mechanism 2 lifts the transparent round cover 202 to the top. The medicine box then slides down the dispensing chute 8 into the unqualified recycling bin for re-dispensing.
[0024] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of the present invention, and all such modifications and substitutions should be considered within the scope of protection of the present invention.
Claims
1. A drug traceability code scanning device, comprising a frame assembly (1), characterized in that: A top scanner (5) is installed on the top of the frame assembly (1). A conveyor belt (3) is installed on the front side of the frame assembly (1). A transparent cover lifting mechanism (2) is installed on the rear inner wall of the frame assembly (1). The transparent cover lifting mechanism (2) includes a lifting motor module (201). A transparent circular cover (202) is installed on the front side of the lifting motor module (201). A drug inlet slide (203) is connected to the front side of the transparent circular cover (202). A rotation and flipping mechanism (4) is provided below the transparent cover lifting mechanism (2). The rotation and flipping mechanism (4) includes a flipping sensor assembly (405), a rotation sensor assembly (406), and a flipping sensor assembly (405). A rotating motor (404) is installed in front of the rotating motor (404) and a rotating transparent platform (403) is installed below the rotating transparent platform (403). A scanning hood (402) is provided below the rotating transparent platform (403). A medicine dispensing slide (8) is provided on one side of the scanning hood (402). A lower scanner (407) is provided below the scanning hood (402). A rotating deceleration platform (401) is installed on the bottom side of the lower scanner (407). A rotating motor (408) is installed on the bottom side of the rotating deceleration platform (401). A medicine box detection sensor (7) is installed on the side wall of the frame assembly (1). A side scanner (6) is provided on the side opposite to the medicine box detection sensor (7).
2. The drug traceability code scanning device according to claim 1, characterized in that: The flip sensor assembly (405) is connected to the front side of the flip transparent platform (403). The flip sensor assembly (405) includes a flip sensor plate (4051). A correct scan flip sensor (4052), a horizontal flip sensor (4053), and a scan error flip sensor (4054) are arranged around the flip sensor plate (4051).
3. The drug traceability code scanning device according to claim 1, characterized in that: The rotation sensor assembly (406) is connected to the front side of the rotation deceleration platform (401). The rotation sensor assembly (406) includes a rotation sensor plate (4601), a rotation origin sensor (4602) is provided on the front side of the rotation sensor plate (4601), and a rotation limit column (4603) is vertically inserted into the rotation sensor plate (4601).
4. The drug traceability code scanning device according to claim 1, characterized in that: The upper scanner (5) is located above the flip transparent platform (403), the lower scanner (407) is located below the flip transparent platform (403), and the side scanner (6) is located on one side of the flip transparent platform (403).
5. The drug traceability code scanning device according to claim 1, characterized in that: The drug inlet slide (203) is inclined, with one end of the drug inlet slide (203) connected to the conveyor belt (3) and the other end of the drug inlet slide (203) connected to the upper port of the transparent dome (202).
6. The drug traceability code scanning device according to claim 1, characterized in that: The dispensing chute (8) is located below the medicine box detection sensor (7).