Drug tracing management system

By introducing a variety of collection equipment into the drug traceability management system to obtain the photo and image information of the box and binding it to the traceability code, the problem of incomplete traceability information in the existing technology is solved, and more advanced quality control is achieved.

CN223167118UActive Publication Date: 2025-07-29山东宏济堂制药集团股份有限公司
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Patent Information

Application Number
CN202421839636.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-07-29
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

During the packaging process of Angong Niuhuang Pills, the existing drug traceability management system can only associate and bind the traceability codes of brocade small boxes, medium boxes and large boxes. The traceability information is incomplete and quality control needs to be upgraded.

Method used

By introducing a first scanner and a second scanner into the drug traceability management system to obtain photos of the top and bottom surfaces of the middle box, and combining the first code reader and the fluoroscopic device to obtain the perspective image of the middle box, the processor is used to realize the binding association between the appearance photo of the middle box and the traceability code, and the third acquisition and processing unit generates a three-level traceability code.

Benefits of technology

The binding of the appearance photos and perspective detection images of the middle box are realized and the traceability code is achieved. By scanning the traceability code, the appearance photos and inspection images of the middle box can be viewed, improving the quality control level.

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Abstract

The utility model relates to a medicine traceability management system, which is characterized in that a first acquisition processing unit acquires a first-level traceability code, a second-level traceability code, a middle box top surface picture and a middle box bottom surface picture through a first scanner and a second scanner, and transmits the first-level traceability code, the second-level traceability code, the middle box top surface picture and the middle box bottom surface picture to a processor for correlation detection; the second acquisition and processing unit acquires relevant information of a perspective image of the middle box by arranging a first code reader and a scenograph and transmits the relevant information to the processor to perform association detection with a secondary traceability code; and the third acquisition and processing unit associates the secondary traceability code with a tertiary traceability code by arranging a second code reader and a box code generator. According to the medicine traceability management system, a conventional three-level correlation traceability function is realized, a binding relationship is formed between a middle box appearance picture, a middle box perspective detection image and a traceability code, the appearance picture and the detection image of the middle box can be looked up by scanning the traceability code, and the purpose of quality control upgrading is achieved.
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Description

Technical Field

[0001] The utility model relates to the field of drug packaging quality management, and particularly relates to a drug traceability management system. Background Art

[0002] A drug traceability system is an information system in which participants in the drug informatization traceability system collect and store traceability information in the processes of drug production, circulation, and use according to the requirements of quality management specifications, and is used to realize the collection, storage, and exchange of traceability information. When Angong Niuhuang Pills are packaged, usually the honey pills are first buckled into wax shells, then the wax shells are put into small brocade boxes, then multiple small brocade boxes are put into medium boxes, and finally multiple medium boxes are put into a packing box. The current drug traceability management system adopted by the Angong Niuhuang Pills packaging line uses three-level associated traceability. The currently adopted three-level associated traceability can only associate and bind the traceability codes of small brocade boxes, medium boxes, and large boxes. Although it achieves the purpose of quality control to a certain extent, the traceability information is still not perfect and needs to be further upgraded. Content of the Utility Model

[0003] In order to make up for the deficiencies of the prior art, the utility model provides a drug traceability management system, achieving the purpose of upgrading quality control.

[0004] The technical solution adopted by the utility model to solve the above technical problems is as follows:

[0005] A drug traceability management system includes:

[0006] A first acquisition and processing unit, which includes a first scanner and a second scanner. The second scanner is arranged at the bottom of the medium box in the open-box state to obtain a photo of the bottom surface of the medium box and identify the secondary traceability code at the bottom of the medium box and store it in the processor for binding and association. The first scanner is arranged above the medium box in the open-box state to obtain a photo of the top surface of the medium box and identify the primary traceability code on the small box in the medium box and store it in the processor for binding and association with the secondary traceability code;

[0007] A second acquisition and processing unit, which includes a first code reader and a fluoroscope. The first code reader is arranged at the bottom of the medium box in the lid-covered state to identify the secondary traceability code thereon. The fluoroscope is arranged behind the first code reader to obtain relevant information of the perspective image of the medium box and store it in the processor for binding and association with the secondary traceability code;

[0008] A third acquisition and processing unit, which includes a second code reader and a box code generator. The second code reader is arranged in front of the packing machine on the packaging line for reading the secondary traceability code of the medium box. The box code generator is arranged behind the packing machine on the packaging line to output a tertiary traceability code bound and associated with the secondary traceability code.

[0009] Further, the processor is configured to receive and process relevant information of the first-level traceability code, second-level traceability code, third-level traceability code, top surface photo of the middle box, bottom surface photo of the middle box, and perspective image of the middle box, and perform association detection on them.

[0010] Further, the processor processes the perspective image of the middle box to output a perspective image of the middle box with the second-level traceability code number watermark added for association detection with other information.

[0011] Further, both the first scanner and the second scanner adopt scanning cameras.

[0012] Further, the perspective instrument adopts an X-ray machine.

[0013] The present utility model adopts the above technical solutions, and the advantages are as follows: In addition to realizing the conventional three-level association traceability function, the drug traceability management system also realizes the binding relationship between the appearance photos of the middle box, the perspective detection images of the middle box and the traceability code. By scanning the traceability code, the appearance photos and inspection images of the middle box can be viewed, achieving the purpose of upgrading quality control. Description of the Drawings

[0014] Figure 1 It is a side view of one embodiment of the present utility model;

[0015] Figure 2 is Figure 1 a top view of some structures.

[0016] In the figure, 1. First scanner, 2. Second scanner, 3. Middle box, 4. First code reader, 5. Perspective instrument, 6. Processor, 7. Conveyor belt, 8. Second code reader, 9. Packing station, 10. Box code generator. Detailed Embodiments

[0017] To clearly illustrate the technical features of this solution, the present utility model will be described in detail below through specific embodiments in combination with the drawings. In the following description, many specific details are set forth in order to fully understand the present application. However, the present application may also be implemented in other ways different from those described herein. Therefore, the protection scope of the present application is not limited by the specific embodiments disclosed below.

[0018] In the description of this specification, the description referring to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms are not necessarily directed to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any one or more embodiments or examples in a suitable manner.

[0019] As Figure 1-2 shown, in this embodiment, the drug traceability management system includes a first acquisition and processing unit, a second acquisition and processing unit, and a third acquisition and processing unit; wherein, the first acquisition and processing unit includes a first scanner 1 and a second scanner 2. The second scanner 3 is disposed at the bottom of the middle box 3 in the open box state to obtain a photo of the bottom surface of the middle box and identify the secondary traceability code at the bottom of the middle box for storage and association with the processor 6. The first scanner 1 is disposed above the middle box 3 in the open box state to obtain a photo of the top surface of the middle box and identify the primary traceability code on the small box in the middle box for storage and binding association with the secondary traceability code in the processor 6; The second acquisition and processing unit includes a first code reader 4 and a fluoroscope 5. The first code reader 4 is disposed at the bottom of the middle box in the capping state to identify the secondary traceability code thereon. The fluoroscope 5 is disposed behind the first code reader 4 to obtain relevant information of the perspective image of the middle box for storage and binding association with the secondary traceability code in the processor 6; The third acquisition and processing unit includes a second code reader 8 and a box code generator 10. The second code reader 8 is disposed in front of the packing machine on the packaging line for reading the secondary traceability code of the middle box. The box code generator 10 is disposed behind the packing machine on the packaging line to output a tertiary traceability code bound and associated with the secondary traceability code.

[0020] The specific working process of the system on the Angong Niuhuang Pills drug packaging production line is as follows:

[0021] The first step: When the packaged brocade small box is placed into the middle box 3, the middle box 3 is in the open box state and is conveyed backward by the hollow or transparent conveyor belt 7 into the traceability system work station. At this time, a first scanner 1 and a second scanner 2 are respectively disposed above and below the middle box 3. The first scanner 1 simultaneously scans and identifies the primary traceability codes on multiple brocade boxes in the middle box 3. The second scanner 2 scans and identifies the secondary traceability code on the bottom surface of the middle box. Both are transmitted to the processor 6 for binding association. At the same time as scanning the codes, the first scanner 1 and the second scanner 2 also take photos of the top surface and the bottom surface of the middle box and transmit them to the processor 6 to bind and associate them with the secondary traceability code.

[0022] The second step: After the middle box 3 is capped and heat-sealed by the capping machine, it enters the middle box perspective detection work station. Before entering the perspective detection, the secondary traceability code on it is scanned and identified by the first code reader 4. Subsequently, it enters the perspective detection. On the one hand, the fluoroscope 5 outputs the perspective image of the middle box; on the other hand, it judges the detection result. If neither the brocade small box nor the pill in the middle box is missing, it outputs an OK signal. If any one is missing, it outputs an NG signal. Then, the perspective image of the middle box and the judgment result are transmitted to the processor for binding association with the secondary traceability code.

[0023] Step 3: When the middle box 3 enters the packing stage, a second barcode reader 8 is set in front of the packing station to read the secondary traceability code of the conveyed middle box. The processor 6 determines whether the middle box meets the following conditions:

[0024] Condition 1: Whether it has three pictures, namely the bottom picture of the middle box, the top picture of the middle box, and the perspective image of the middle box;

[0025] Condition 2: Whether the perspective detection result is qualified. If the corresponding result is OK, it is regarded as qualified; if the corresponding result is NG, it is regarded as unqualified.

[0026] When the middle box meets both of the above conditions, the middle box 3 enters the packing station 9; if it cannot meet both of the above conditions, the middle box is automatically removed, specifically by being pushed out laterally by a cylinder. After scanning the specified number of qualified middle boxes for packing, the box code generator located at the rear of the packing machine will automatically output the tertiary traceability code of the large box and paste it at the specified position on the box body to achieve the association of tertiary traceability. Thus, the working process of the drug traceability management system ends.

[0027] Regarding the processor, it can generally be set as an existing integrated industrial computer, which can be used in cooperation with the upper computer and is applicable to a variety of different application scenarios.

[0028] Through the technical solution provided by the present utility model, the primary traceability code of the brocade small box, the secondary traceability code of the middle box, and the tertiary traceability code of the large box are associated and bound, and the appearance photo of the middle box and the perspective detection image of the middle box form a binding relationship with the traceability code. By scanning the traceability code, the appearance photo and the perspective inspection image of the middle box can be viewed, achieving the purpose of upgrading quality control.

[0029] In one embodiment, in order to increase the characteristic of the black-and-white perspective image, the processor 6 will process the perspective image of the middle box and add the watermark of the secondary traceability code number information to it. The processor outputs the perspective image of the middle box that automatically displays the above information to be bound and associated with the secondary traceability code.

[0030] The watermark is used to mark the perspective image to facilitate the staff to identify the correspondence between the image and the physical box. For example, during sampling inspection, the traceability code can be scanned to view the perspective image and check whether the watermark code on it accurately corresponds to the physical box. If it corresponds accurately, it indicates that the production line is operating normally; if it cannot correspond, it indicates that the production line has an abnormality and needs to be investigated.

[0031] In one embodiment, both the first scanner 1 and the second scanner 2 adopt scanning cameras.

[0032] In one embodiment, the perspective instrument 5 adopts an X-ray machine.

[0033] The above specific embodiments shall not be construed as limiting the scope of protection of the present utility model. For those skilled in the art of this technology, any alternative improvements or transformations made to the embodiments of the present utility model shall fall within the scope of protection of the present utility model.

[0034] Where the present utility model is not described in detail, it is common knowledge to those skilled in the art of this technology.

Claims

1. A drug traceability management system, characterized in that, Including: A first scanner and a second scanner. The second scanner is disposed at the bottom of the middle box in the open box state to obtain a photo of the bottom surface of the middle box and identify the secondary traceability code at the bottom of the middle box, and store it in the processor for binding and association. The first scanner is disposed above the middle box in the open box state to obtain a photo of the top surface of the middle box and identify the primary traceability code on the small box in the middle box, and store it in the processor for binding and association with the secondary traceability code; A first code reader and a fluoroscope. The first code reader is disposed at the bottom of the middle box in the lid-closed state to identify the secondary traceability code thereon. The fluoroscope is disposed behind the first code reader to obtain relevant information of the perspective image of the middle box and store it in the processor for binding and association with the secondary traceability code; A second code reader and a box code generator. The second code reader is disposed in front of the box packing machine on the packaging line for reading the secondary traceability code of the middle box. The box code generator is disposed behind the box packing machine on the packaging line to output a tertiary traceability code bound and associated with the secondary traceability code.

2. The drug traceability management system according to claim 1, wherein, The processor is configured to receive and process the relevant information of the primary traceability code, secondary traceability code, tertiary traceability code, the photo of the top surface of the middle box, the photo of the bottom surface of the middle box, and the perspective image of the middle box, and perform association detection therewith.

3. The drug traceability management system according to claim 2, characterized in that The processor processes the perspective image of the middle box to output a perspective image of the middle box with a watermark of the secondary traceability code number for association detection with other information.

4. The drug traceability management system according to claim 1, wherein, Both the first scanner and the second scanner adopt scanning cameras.

5. The drug traceability management system according to claim 1, wherein The fluoroscope adopts an X-ray machine.