Ampoule bottle tracing label

By using a flexible substrate and adhesive layers with different viscosities, the problems of ampoule labels lifting and being easily tampered with were solved, achieving a tight fit between the label and the medicine bottle and ensuring security, thereby improving production efficiency and reducing the risk of tampering.

CN223712178UActive Publication Date: 2025-12-23YICHANG HUMANWELL PHARMA CO LTD
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Patent Information

Application Number
CN202520199573.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-08
Publication Date
2025-12-23
Estimated Expiration
2035-02-08

AI Technical Summary

Technical Problem

In existing technologies, traditional RFID tags have poor adhesion in drug management, especially on small or highly curved ampoules, where they are prone to lifting, affecting identification and retrieval. Furthermore, excessive thickness can cause suction cups to fail to grasp the tags, making them easy to peel off and tamper with, posing a security risk.

Method used

The ampoule traceability label design utilizes a flexible substrate and an RFID component. The RFID component includes an antenna and an IC chip. The flexible substrate attaches the RFID component to the medicine bottle, while the IC chip is located outside the working area of ​​the vacuum suction cup. Different adhesive layers with varying viscosities and easy-tear lines are used to ensure the integrity and security of the label.

Benefits of technology

This achieves a tight fit between the label and the medicine bottle, reducing production waste, improving production efficiency, and preventing tampering by destroying the label's integrity, thus reducing security risks.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an ampoule bottle tracing label which is characterized by comprising an RFID label flexible substrate, an RFID label antenna, an RFID label IC chip, an adhesive layer, label bottom paper, a folding part, an easy-to-tear line and the like. The ampoule bottle traceability label has the advantages that the number of layers and the thickness of the ampoule bottle traceability label are reduced, when the label is attached to an ampoule bottle, the surface of the label is flat, the label can be completely attached to a bottle body of the ampoule bottle when a vacuum chuck grabs the ampoule bottle in the production process, the ampoule bottle cannot fall off, production loss is reduced, production efficiency is improved, and meanwhile the production cost is reduced. And hidden dangers of tampering and confusion are reduced.
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Description

TECHNICAL FIELD

[0001] The ampoule bottle traceability label relates to the precise management of toxic drugs in the medical field. BACKGROUND

[0002] At present, the ampoule bottle label plays a key role in the management process of precise toxic drugs. Currently, a layer of label containing an RFID chip is added to the back of the adhesive label, which is consistent or similar in size, to achieve the single ampoule bottle traceability function and ensure the traceability and safety of the drug flow process. However, in the actual implementation stage, for smaller specifications, such as common 1ml specification products, or ampoule bottles with large curvature, the labeling effect is not satisfactory, and many difficult problems arise.

[0003] On the one hand, the traditional RFID label has a complex structure and presents a multi-layer structure, making the overall thickness larger. When applied to ampoule bottles with large curvature or small specifications, the label edge is prone to lift after labeling, not only affecting the appearance, but worse, the lifted part is easy to stick to adjacent ampoule bottles, interfering with the accurate identification and use of drugs. Moreover, the thickened label is frequently rubbed on the surface during the circulation of drug packaging, handling, storage, etc., leaving many scratches, and in severe cases, it may even directly damage the internal IC chip and antenna, causing the traceability function to fail instantly, posing a huge risk to drug management.

[0004] On the other hand, the IC chip in the traditional RFID label protrudes outward, making the label lose its flatness. In the high-speed drug production line, when the vacuum suction cup is used to suck the ampoule bottle, the suction cup cannot closely adhere to the bottle body, frequently causing air leakage, which in turn causes the ampoule bottle to fall and break, not only causing drug loss, but also disrupting the production rhythm and reducing production efficiency.

[0005] In addition, the traditional RFID label also has a fatal security vulnerability, which can be relatively completely removed and is not easy to completely destroy, leaving the drug traceability information at high risk of malicious tampering and confusion. Once it flows into illegal channels, the consequences are unpredictable. INVENTION CONTENTS

[0006] The purpose of the present application is to provide a drug bottle traceability label to solve the problem of air leakage of the vacuum suction cup and the fact that the RFID label can be relatively completely removed and is not easy to completely destroy, leaving the drug traceability information at high risk of malicious tampering and confusion.

[0007] To solve the above problems, the technical scheme of the present application is as follows:

[0008] An ampoule trace label comprises a flexible substrate and an RFID part, the RFID part comprises an antenna and an IC chip, the flexible substrate attaches the RFID part on a medicine bottle, and the IC chip is located outside a vacuum chuck working area.

[0009] The vacuum chuck working area refers to a specific space range specially demarcated for the vacuum chuck to perform ampoule grabbing, carrying and positioning operations.

[0010] Preferably, the ampoule trace label comprises an RFID label flexible substrate, an RFID label antenna, an RFID label IC chip, a glue layer and a label base paper; the RFID label antenna and the RFID label IC chip are attached to the inner surface of the RFID label flexible substrate via the glue layer; the inner surface of the RFID label flexible substrate is connected to the label base paper via the glue layer; the RFID label IC chip is attached to the inner surface of the RFID label flexible substrate, and the attachment position is outside the ampoule vacuum chuck working area.

[0011] Preferably, the outer surface of the RFID label flexible substrate is provided with a text printing area.

[0012] Preferably, the RFID label flexible substrate is further provided with a folded part, and the RFID label IC chip is attached to the folded part.

[0013] Preferably, the glue layer is composed of different viscosity glues.

[0014] Preferably, the glue layer is composed of two different viscosity glues, and more preferably, the glue is an adhesive.

[0015] Preferably, the two different viscosity adhesives have different viscosities for the ampoule glass and the RFID label flexible substrate.

[0016] Preferably, the RFID label flexible substrate is further provided with a tear line.

[0017] Preferably, the tear line is further provided with a security mark printed by stitching, and the security mark is preferably a security code.

[0018] Preferably, the RFID label flexible substrate is an RFID label copper plate paper.

[0019] Preferably, the RFID label IC chip is an RFID label copper IC chip.

[0020] The beneficial effects of the present application are as follows:

[0021] 1. The adhesive layer attaches the RFID tag antenna and the RFID tag IC chip to the inner surface of the RFID tag flexible substrate, the inner surface of the RFID tag flexible substrate is connected with the label base paper through the adhesive layer, which reduces the number of layers of the ampoule traceability label and the thickness of the traditional RFID tag; the RFID tag IC chip is attached to the inner surface of the RFID tag flexible substrate, and the attachment position is outside the working area of the ampoule vacuum chuck, and in use, the inner surface of the RFID tag is attached to the ampoule through the adhesive layer, and when the ampoule vacuum chuck grabs the ampoule in the production process, it can be completely attached to the ampoule body, so that the ampoule will not fall off, reducing production loss and improving production efficiency.

[0022] 2. The adhesive with different viscosities is layered and coated, and when the ampoule traceability label attached to the ampoule is removed, part of the label is separated from the ampoule glass, and the other part remains on the ampoule glass, destroying the integrity of the label, so that the label cannot be completely removed and flow into illegal channels, and the label can be actively destroyed by simple operation after the ampoule is used, reducing the risk of tampering and confusion. BRIEF DESCRIPTION OF DRAWINGS

[0023] The utility model will be further described in connection with the drawings:

[0024] Figure 1 It is the inner surface structure schematic diagram of the utility model, and the adhesive layer is not drawn in the figure;

[0025] Figure 2 It is the main view schematic diagram of the utility model when adhering to the ampoule;

[0026] Figure 3 It is Figure 2 The cross-sectional structure schematic diagram of A-A in it;

[0027] Figure 4 It is the outer surface structure schematic diagram of the utility model;

[0028] Figure 5 It is the inner surface structure schematic diagram of the utility model;

[0029] The reference signs are: RFID tag flexible substrate 1, folding part 2, RFID tag IC chip 3, adhesive layer 4, RFID tag antenna 5, easy-to-tear line 6, anti-fake mark 7, text printing area 8, label base paper 9, ampoule 10, non-dry adhesive A 11, non-dry adhesive B 12. DETAILED DESCRIPTION

[0030] The content described in the embodiments of the specification is only a list of implementation forms of the utility model concept, and the protection scope of the utility model should not be regarded as limited to the specific forms stated in the embodiments, and the protection scope of the utility model also extends to equivalent technical means that can be thought of by those skilled in the art according to the utility model concept.

[0031] Embodiment 1:

[0032] An ampoule trace label comprises an RFID label flexible substrate 1, an RFID label antenna 5, an RFID label IC chip 3, and an adhesive layer 4; the RFID label antenna 5 and the RFID label IC chip 3 are attached to the inner surface of the RFID label flexible substrate 1 via the adhesive layer 4; the inner surface of the RFID label flexible substrate 1 is connected to a label backing paper 9 via the adhesive layer 4; in use, the inner surface of the RFID label flexible substrate 1 is attached to the ampoule via the adhesive layer 4; wherein the RFID label IC chip 3 is attached to the inner surface of the RFID label flexible substrate 1, and the attachment position is outside the working area of the ampoule vacuum chuck.

[0033] In use, the RFID label flexible substrate 1 is peeled off from the label backing paper 9, and the inner surface of the RFID label flexible substrate 1 is attached to the ampoule via the adhesive layer 4. The ampoule trace label has fewer layers and thinner thickness, and the surface of the ampoule is flat, so that when the ampoule vacuum chuck grabs the ampoule during the production process, the ampoule body is completely attached to the ampoule, the ampoule will not fall off, reducing production loss and improving production efficiency.

[0034] Embodiment 2:

[0035] The outer surface of the RFID label flexible substrate 1 is preferably provided with a text printing area 8, which can be used to print drug information.

[0036] Embodiment 3:

[0037] The RFID label flexible substrate 1 is also provided with a folded part 2, and the RFID label IC chip 3 is attached to the folded part 2.

[0038] Embodiment 4:

[0039] The RFID label adhesive layer 4 is a layered coating of two different viscosity adhesives (such as Figure 5 As shown in adhesive A11 and adhesive B12), the two different viscosity adhesives have different viscosities for the ampoule glass and the RFID label flexible substrate 1. One of the adhesives has a higher viscosity for the RFID label flexible substrate 1, the RFID label antenna 5, and the RFID label IC chip 3, and a lower viscosity for the ampoule glass, and the other adhesive has a higher viscosity for the RFID label antenna 5, the RFID label IC chip 3, and the ampoule glass, and a lower viscosity for the RFID label flexible substrate 1.

[0040] When the ampoule bottle traceability label is removed, part of the label is separated from the ampoule bottle glass, and the other part remains on the ampoule bottle glass, thereby destroying the integrity of the label, so as to avoid the label from flowing into illegal channels again after being completely removed. After the ampoule bottle is used, the label can be actively destroyed by simple operation, thereby reducing the risk of tampering and confusion.

[0041] Embodiment 5:

[0042] The RFID label flexible substrate 1 is further provided with a tear line 6, and the tear line 6 further stitches and prints a security identification 7, and the security identification is preferably a security code.

[0043] After the ampoule bottle is used, the user can remove it along the tear line 6, thereby destroying the integrity of the label and the integrity of the security identification 7, and further increasing the difficulty of tampering and confusing the label.

Claims

1. A traceability label for ampoule bottles, characterized in that, It includes an RFID tag flexible substrate (1), an RFID tag antenna (5), an RFID tag IC chip (3), an adhesive layer (4), and a tag backing paper (9); The RFID tag antenna (5) and RFID tag IC chip (3) are attached to the inner surface of the RFID tag flexible substrate (1) via an adhesive layer (4); The inner surface of the RFID tag flexible substrate (1) is connected to the tag backing paper (9) via an adhesive layer (4); The RFID tag IC chip (3) is attached to the inner surface of the RFID tag flexible substrate (1), and the attachment position is outside the working area of ​​the ampoule vacuum suction cup. The outer surface of the RFID tag flexible substrate (1) is provided with a text printing area (8).

2. The ampoule traceability label according to claim 1, characterized in that, The RFID tag flexible substrate (1) is also provided with a folding part (2), and the RFID tag IC chip (3) is attached to the folding part.

3. A traceability label for ampoule bottles according to claim 1 or 2, characterized in that, The adhesive layer (4) is composed of adhesives of different viscosities.

4. The ampoule traceability label according to claim 3, characterized in that, The adhesive layer (4) is composed of two adhesives of different viscosities and is a self-adhesive adhesive.

5. A traceability label for ampoule bottles according to claim 1 or 2, characterized in that, The flexible substrate (1) of the RFID tag is also provided with an easy-tear line (6).

6. The ampoule traceability label according to claim 5, characterized in that, The tear-off line (6) is further printed with an anti-counterfeiting mark along the seam, and the anti-counterfeiting mark is an anti-counterfeiting code.

7. The ampoule traceability label according to claim 1, characterized in that, The flexible substrate (1) of the RFID tag is coated paper for the RFID tag.

8. The ampoule traceability label according to claim 1, wherein the RFID tag IC chip (3) is an RFID tag copper IC chip.