Slide-type spacing-adjustable electronic tag system and storage device

By incorporating slide rails and removable plugs on a strip carrier, the sliding label system solves the problems of complex processing and poor adaptability in traditional label applications, achieving efficient asset management and information statistics while reducing costs.

CN224176978UActive Publication Date: 2026-04-28HUNAN LUCHENG TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN LUCHENG TECHNOLOGY CO LTD
Filing Date
2025-01-10
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Traditional labeling applications in asset management suffer from problems such as complex processing technology, poor timeliness, troublesome design modifications, inability to handle short-run jobs, and decreased market competitiveness. In particular, when faced with different product spacing and sizes, labels are difficult to coordinate efficiently, reducing asset management efficiency.

Method used

A sliding adjustable spacing electronic tag system was designed. Multiple tag components are slidably set by setting slide rails and detachable plugs on a strip carrier. The tag positions are fixed by magnetic blocks and snap-fit ​​connection structures. The detachable design can adapt to different product spacing and size.

Benefits of technology

It improves label recognition efficiency, enhances asset management and information statistics efficiency, reduces costs, adapts to application needs in different scenarios, and avoids the problem of label position mismatch.

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Abstract

The utility model provides a sliding-type spacing-adjustable electronic tag system and a storage device, which have the following technical effects that a plurality of electronic tags are arranged on one sliding rail in a sliding manner, so that the tags can be matched with the spacing between products and the size of objects, the identification efficiency of the tags can be improved, and the product quality can be improved. Therefore, the overall efficiency of asset management and asset information statistics is improved; through the arrangement of a magnetic attraction block structure and the connection mode of a buckle type raised head and a clamping groove, the position of a label can be fixed, and the problem that the label slides on a sliding rail due to external factors, so that the matching between a commodity and the label is careless is solved; the tag assembly is designed to be of a detachable structure, so that the electronic tag can be detached from the base, when the base or the electronic tag goes wrong independently, part of the base or the electronic tag can be replaced and maintained, and cost is saved; the whole electronic tag system can be repeatedly used and applied to different scenes, the utilization rate is high, and the cost is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of tag application technology in asset information management, and more specifically, to a sliding adjustable spacing electronic tag system and a storage device. Background Technology

[0002] The application of tags extends to areas such as asset management systems, asset information management, and defined port and fixed location information, including the digital definition of ODF ports and fiber optic pigtails in communication transmission. The primary functions of tags include monitoring and tracking, improving efficiency, reducing errors, precise positioning, cargo classification management, and enhanced security. However, traditional tag applications suffer from several drawbacks, including complex processing techniques, poor timeliness, cumbersome design modifications, inability to handle short-run orders, and decreased market competitiveness.

[0003] With the continuous progress and development of society, electronic tag technologies, including Radio Frequency Identification (RFID) and Near Field Communication (NFC), are being increasingly widely applied in various fields, especially in the process of digital transformation, where they play a crucial role. The use of RFID / NFC tags is becoming increasingly common in asset management systems, asset information management, additional location definition, and data exchange. Currently, RFID / NFC tags are typically used as identification for individual products, but when dealing with rows or columns of products, a solution that can carry multiple tags in a strip format is particularly important. However, in practical applications, due to varying factors such as the spacing between products and the size of objects, directly attaching a single tag to the storage device or equipment becomes cumbersome and inefficient, hindering efficient asset management and asset information management and reducing work efficiency. Therefore, there is an urgent need to design a strip-shaped electronic tag with adjustable spacing according to actual needs to better adapt to various application scenarios. Summary of the Invention

[0004] In view of this, the present invention proposes a sliding adjustable spacing electronic tag system, comprising:

[0005] A label carrier is a strip carrier equipped with a slide rail. The slide rail is arranged along its strip extension direction. One end of the slide rail is a closed structure, and the other end is equipped with a detachable slide rail plug.

[0006] A tag assembly, comprising multiple tags, is slidably disposed within the slide rail. The tag assembly includes a slide base, a tag plate, and an electronic tag. The slide base and the tag plate are connected by a connecting member. The electronic tag is disposed on the tag plate. The slide base can slide along the slide rail, thereby adjusting the position of the electronic tag on the tag carrier.

[0007] Specifically, the slide rail plug can seal the other end of the slide rail, preventing the label components inside from falling out. This electronic label system, with multiple label components that can slide within the slide rail, allows the labels to adapt to the spacing between products and the size of objects, improving label recognition efficiency and thus enhancing the overall efficiency of asset management and asset data statistics.

[0008] Preferably, the slide rail is a groove-shaped slide rail, the slide block is engaged within its groove structure and can slide along its extension direction, the connecting member slides with the slide block within the slide opening of the slide rail, and the label plate is located on the slide rail. Specifically, this design structure can improve the sliding stability of the label assembly within the slide rail and prevent it from easily falling off.

[0009] Preferably, the bottom of the slide block is provided with a first connecting structure, and the bottom of the slide rail has a plurality of pre-set second connecting structures. When the slide block slides to a preset position within the slide rail, it can be fixed to the preset position of the slide rail through the cooperation of the first and second connecting structures, thereby achieving the fixation of the electronic tag position. Specifically, the first and second structures provide a design structure for fixing the position of the tag component, avoiding mismatch between the tag component and the product position due to external factors causing it to slide.

[0010] Preferably, both the first and second connecting structures are magnetic blocks, namely a first magnetic block and a second magnetic block, which are connected by magnetic attraction to achieve control over the position of the electronic tag.

[0011] Preferably, the first connecting structure is a protrusion, and the second connecting structure is a slot. The protrusion can be engaged in the slot, thereby fixing the slide block to a preset position on the slide rail and controlling the position of the electronic tag.

[0012] Specifically, the magnetic block structure and the snap-on connection between the protrusion and the slot can fix the position of the label, preventing the label from sliding on the slide rail due to external factors, thus avoiding mismatch between the product and the label.

[0013] Preferably, the slide is a rectangular base. When the long side of the slide is aligned with the extension direction of the slide rail, the label assembly can be removed from the slide rail. When the short side of the slide is aligned with the extension direction of the slide rail, the slide is engaged within the slide rail and can slide along the slide rail, thereby allowing the label assembly to slide along the slide rail.

[0014] Preferably, the label assembly includes two detachable parts, one part being the label plate and the connector, and the other part being the slide; the connector is provided with a square retaining plate, and the top of the slide is provided with a corresponding square fitting structure, the square retaining plate being able to fit into the fitting structure, thereby realizing the disassembly or assembly of the label assembly.

[0015] Specifically, by designing the tag components as a detachable structure, the electronic tags can be separated from the base. When the slide or the electronic tag alone malfunctions, it can be partially replaced and repaired, saving costs.

[0016] Preferably, the electronic tag is an RFID / NFC tag.

[0017] Preferably, the electronic tag is any shape among bar, L-shape, and circle.

[0018] Furthermore, each side of the slide block is provided with an arc-shaped block, which is connected to both ends of a spring that runs through the slide block. The arc-shaped block can be pushed against the two sides of the slide rail by the elastic force of the spring, thereby locking the slide block in a preset position on the slide rail. Each arc-shaped block is also provided with an auxiliary component on both sides of the spring. The free end of the auxiliary component can slide through the inside of the slide block and can provide limiting support for the arc-shaped block.

[0019] Specifically, by using a spring in conjunction with the arc-shaped block, the slide block can be fixed at different positions on the slide rail, thereby better matching the goods on the storage device and avoiding the problem of labels not matching due to factors such as product spacing and item size.

[0020] Preferably, the arc-shaped block has a parallel side structure in the middle, so that when the arc-shaped block is locked inside the slide rail, it is not easy to slip off the rail, making the locking more stable.

[0021] Preferably, the arc-shaped block is further provided with an auxiliary block, which can change the distance between the two arc-shaped blocks by squeezing the auxiliary block, thereby locking the slide block in the slide rail.

[0022] Furthermore, the auxiliary component includes an auxiliary rod and an auxiliary head. One end of the auxiliary rod is connected to the arc-shaped block, and the other end is connected to the auxiliary head. The slide block has a first sliding groove of a matching size corresponding to the auxiliary head. Two first sliding grooves are provided, each located on one side of the spring. The corresponding auxiliary heads located at both ends of the slide block share a corresponding first sliding groove. The slide block has auxiliary grooves extending to the edge of the slide block at both ends of the first sliding groove. The auxiliary rod slides within the auxiliary groove, and the width of the auxiliary groove is smaller than the width of the first sliding groove, thus controlling the auxiliary head to slide within the first sliding groove. Specifically, the auxiliary component allows the distance between the two arc-shaped blocks to be maintained within a preset range under the elastic force of the spring, enabling it to be fitted into slide rails of different widths, thus improving adaptability.

[0023] Furthermore, the slide block has a second groove that passes through the slide block corresponding to the spring, and the spring passes through the second groove. Preferably, the diameter of the second groove is adapted to the diameter of the spring to avoid excessive twisting of the spring within the second groove and reduction of elasticity.

[0024] This utility model provides a sliding adjustable spacing electronic tag system with the following advantages: By slidably setting multiple electronic tags on a slide rail, the tags can be adapted to the spacing between products and the size of objects, improving tag recognition efficiency and thus enhancing overall asset management or asset information management efficiency; the magnetic block structure and the snap-fit ​​connection between the protrusion and the slot can fix the position of the tags, preventing them from sliding on the slide rail due to external factors, thus avoiding mismatches between goods and tags; the detachable tag assembly allows the electronic tags to be separated from the slide base, enabling partial replacement and repair when either the slide base or the electronic tag malfunctions, saving costs; the entire electronic tag system is reusable and can be applied to different scenarios, resulting in high utilization and reduced costs.

[0025] Another aspect of the present invention provides a storage device, which includes a sliding adjustable spacing electronic tag system as described in any one of the above descriptions.

[0026] This utility model provides a storage device that uses a sliding, adjustable-spacing electronic tag system to adapt the tags to the spacing between products and the size of objects, thereby improving tag recognition efficiency and enhancing the overall efficiency of asset management and asset information statistics. This device can be applied to different scenarios, has a high utilization rate, and reduces costs. Attached Figure Description

[0027] Various other advantages and benefits will become apparent to those skilled in the art upon reading the following detailed description of preferred embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of the invention. Furthermore, the same reference numerals denote the same parts throughout the drawings. In the drawings:

[0028] Figure 1 This is a schematic diagram of the overall structure of the label system provided in an embodiment of the present utility model;

[0029] Figure 2 This is a schematic diagram of the structure of the label assembly provided in an embodiment of the present utility model;

[0030] Figure 3 This is a schematic diagram of the slide rail provided in an embodiment of the present utility model;

[0031] Figure 4 Corresponding structural diagrams of the first and second connection structures provided in the embodiments of this utility model Figure 1 In the figure: 4-1, side view of the slide block; 4-2, top view of the slide block; 4-3, top view of the slide rail.

[0032] Figure 5 Corresponding structural diagrams of the first and second connection structures provided in the embodiments of this utility model Figure 2 In the figure: 5-1, side view of the slide block; 5-2, top view of the slide rail;

[0033] Figure 6 This is a schematic diagram showing the slide block in different states on the slide rail according to an embodiment of the present utility model;

[0034] Figure 7 The following is a schematic diagram of the label assembly provided in the embodiment of this utility model when it is a detachable structure. In the figure: 7-1, schematic diagram of the slide structure; 7-2, schematic diagram of the connector structure.

[0035] In the diagram, 1 is the label carrier, 2 is the label assembly, and 3 is the slide rail plug.

[0036] 11. Slide rail; 12. Slide opening; 13. Second connecting structure; 131. Second magnetic block; 132. Card slot; 21. Slide base; 22. Connector; 23. Label plate; 24. First connecting structure; 241. First magnetic block; 242. Protrusion; 25. Square card plate; 26. Fitting structure; 27. Electronic tag. Detailed Implementation

[0037] Exemplary embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the disclosure to those skilled in the art. It should be noted that, unless otherwise specified, embodiments and features of the present invention can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0038] See Figure 1-7 This invention discloses a sliding adjustable spacing electronic tag system, comprising a tag carrier 1 and a tag assembly 2. The tag carrier 1 is a strip-shaped carrier with a slide rail 11. The slide rail 11 is arranged along its strip-shaped extension direction. One end of the slide rail 11 is a closed structure, and the other end is equipped with a detachable slide rail plug 3. The slide rail plug can seal the other end of the slide rail 11 to prevent the tag assembly 2 inside from falling off. The tag assembly 2 includes multiple components and can be slidably disposed within the slide rail 11. The tag assembly 2 includes a slide base 21, a tag plate 23, and an electronic tag 27. The slide base 21 and the tag plate 23 are connected by a connector 22. The electronic tag 27 is disposed on the tag plate 23. The slide base 21 can slide along the slide rail 11 to adjust the position of the electronic tag 27 on the tag carrier 1.

[0039] Specifically, the electronic tag system disclosed in this embodiment has multiple tag components that can be slidably disposed within the slide rail, so that the electronic tag can be adapted to the spacing between products and the size of objects, thereby improving the recognition efficiency of the electronic tag and thus improving the efficiency of asset management and asset information statistics.

[0040] Reference Figure 1 , 3 As shown in Figure 6, the slide rail 11 is a groove-shaped slide rail. The slide block 21 is engaged within its groove structure and can slide along its extension direction. The connecting member 22 slides with the slide block 21 within the sliding opening 12 of the slide rail 11. The label plate 23 is located on the slide rail 11, meaning that the electronic label 27 is also located on the slide rail 11. Specifically, this groove-shaped design structure can improve the sliding stability of the label assembly within the slide rail, making it less prone to falling off.

[0041] Reference Figure 6As shown, the bottom of the slide block 21 is provided with a first connecting structure 24, and the bottom of the slide rail 11 has a plurality of pre-set second connecting structures 13. When the slide block 21 slides to a preset position within the slide rail 11, it can be fixed to the preset position of the slide rail 11 through the cooperation of the first connecting structure 24 and the second connecting structures 13, thereby achieving the fixation of the position of the electronic tag 27. Specifically, the first and second structures provide a design structure for fixing the position of the tag component, avoiding the situation where the tag component slides due to external factors and does not match the position of the product.

[0042] Reference Figure 4 , 6 As shown, the first connecting structure 24 and the second connecting structure 13 are both magnetic blocks, namely the first magnetic block 241 and the second magnetic block 131. The two are connected by magnetic attraction, thereby realizing the control of the position of the electronic tag 27.

[0043] Reference Figure 5-6 As shown, the first connecting structure 24 is a protrusion 242, and the second connecting structure 13 is a slot 132. The protrusion 242 can be locked in the slot 132, thereby fixing the slide block 21 to the preset position of the slide rail 11 and realizing the control of the position of the electronic tag 27.

[0044] Specifically, the magnetic block structure and the snap-fit ​​connection between the protruding head and the slot can fix the label in place, preventing the label from sliding on the slide rail due to external factors and thus avoiding mismatches between the product and the label.

[0045] Reference Figure 6 As shown, the slide 21 is a rectangular base. When the long side of the slide 21 is aligned with the extension direction of the slide rail, the label assembly 2 can be removed from the slide rail. (Refer to the attached...) Figure 6 The right-hand slide 21; when the short side of the slide 21 is aligned with the extending direction of the slide rail 11, refer to the attached... Figure 6 The left-hand slide 21 is engaged within the slide rail 11 and can slide along the slide rail 11, thereby allowing the label assembly 2 to slide along the slide rail or be fixed to the second connecting structure 13.

[0046] Reference Figure 7As shown, the label assembly 2 comprises two detachable parts: one part is the combined label plate 23 and the connector 22, and the other part is the slide 21. The connector 22 has a square retaining plate 25, and the top of the slide 21 has a corresponding square fitting structure 26. The square retaining plate 25 can fit into the fitting structure 26, thereby enabling the label assembly 2 to be disassembled or reassembled. Specifically, by designing the label assembly as a detachable structure, the electronic tag can be separated from the base. When either the base or the electronic tag malfunctions, partial replacement and repair are possible, saving costs.

[0047] In another embodiment of this utility model, an arc-shaped block is provided on each of the two sides of the slide block. The arc-shaped block is connected to both ends of a spring that passes through the slide block. The elastic thrust of the spring can cause the arc-shaped block to abut against the two sides of the slide rail, thereby locking the slide block in a preset position on the slide rail. Each arc-shaped block is also provided with an auxiliary component on both sides of the spring. The free end of the auxiliary component can slide through the inside of the slide block and can provide limiting support for the arc-shaped block.

[0048] Specifically, by using a spring in conjunction with the arc-shaped block, the slide block can be fixed at different positions on the slide rail, thereby better matching the goods on the storage device and avoiding the problem of labels not matching due to factors such as product spacing and item size.

[0049] In this embodiment, the arc-shaped block has a parallel side structure in the middle, which makes it less likely for the arc-shaped block to slide when it is locked inside the slide rail, thus making the locking more stable.

[0050] In this embodiment, the arc-shaped block is also provided with an auxiliary block, which can change the distance between the two arc-shaped blocks by squeezing the auxiliary block, thereby locking the slide block in the slide rail.

[0051] In this embodiment, the auxiliary component includes an auxiliary rod and an auxiliary head. One end of the auxiliary rod is connected to the arc-shaped block, and the other end is connected to the auxiliary head. The slide block has a first sliding groove of a matching size corresponding to the auxiliary head. Two first sliding grooves are provided, each located on one side of the spring. The corresponding auxiliary heads located at both ends of the slide block share a single first sliding groove. The slide block has auxiliary grooves extending to the edge of the slide block at both ends of the first sliding groove. The auxiliary rod slides within the auxiliary groove, and the width of the auxiliary groove is smaller than the width of the first sliding groove, thus controlling the auxiliary head to slide within the first sliding groove. Specifically, the auxiliary component allows the distance between the two arc-shaped blocks to be maintained within a preset range under the elastic force of the spring, enabling it to be fitted into slide rails of different widths, thus improving adaptability.

[0052] In this embodiment, a second groove is provided on the slide block corresponding to the spring, and the spring passes through the second groove. Preferably, the diameter of the second groove is adapted to the diameter of the spring to avoid excessive twisting of the spring within the second groove and reduction of elasticity.

[0053] In this embodiment, the electronic tag 27 is an RFID / NFC tag.

[0054] In this embodiment, the shape of the electronic tag 27 can be any strip shape such as bar, L-shape, or circle, which has wide applicability and flexibility.

[0055] In this embodiment, the label carrier and label assembly can be made of any molding material such as PVC, metal, resin, and acrylic, providing a wide range of material choices and durability.

[0056] In this embodiment, the slide rail can be any snap-fit ​​shape such as T-shaped or L-shaped, ensuring the stability and ease of operation of the label.

[0057] In this embodiment, the electronic tag can be any carrier capable of carrying electronic information, such as RFID or NFC, thus meeting diverse information storage and transmission needs.

[0058] In this embodiment, the label component can be designed in any shape, such as H-shape, rounded corners, triangle, trapezoid, etc., providing a high degree of customization and personalization options.

[0059] In this embodiment, the slide rail plug can be any designable scheme such as bolt type, triangle, cylinder, T type, etc., ensuring the integrity and aesthetics of the structure.

[0060] In this embodiment, the electronic tag can be installed using any fixing method such as adhesive backing, punching, or cable ties, providing a convenient installation and maintenance method.

[0061] The electronic tag system of this utility model has a slide rail that is not limited to an inner slide rail or an outer slide rail. Its principle is based on all slide rail types that can adjust the tag spacing.

[0062] This utility model provides a sliding adjustable spacing electronic tag system with the following advantages: By slidably setting multiple electronic tags on a slide rail, the tags can be adapted to the spacing between products and the size of objects, improving tag recognition efficiency and thus enhancing overall logistics and inventory management efficiency; the magnetic block structure and snap-fit ​​connection between the protrusion and the slot can fix the position of the tags, preventing them from sliding on the slide rail due to external factors, thus avoiding mismatches between products and tags; the detachable tag assembly allows the electronic tags to be separated from the base, enabling partial replacement and repair when either the base or the electronic tag malfunctions, saving costs; the entire electronic tag system is reusable and can be applied to different scenarios, resulting in high utilization and reduced costs.

[0063] Another aspect of the present invention provides a storage device, which includes a sliding adjustable spacing electronic tag system as described in any one of the above descriptions.

[0064] This utility model provides a storage device that uses a sliding, adjustable-spacing electronic tag system to adapt the tags to the spacing between products, the size of objects, and defined port / location information. This improves tag recognition efficiency, thereby enhancing the efficiency of overall asset management and asset information statistics. The device can be applied to different scenarios, has a high utilization rate, and reduces costs.

[0065] It should be noted that in the description of this utility model, the terms "upper", "lower", "left", "right", "inner", "outer", etc., indicating the direction or positional relationship are based on the direction or positional relationship shown in the drawings. This is only for the convenience of description and does not indicate or imply that the device or element must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of this utility model.

[0066] Furthermore, it should be noted that, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0067] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.

Claims

1. A sliding adjustable spacing electronic tag system, characterized in that, include: A label carrier is a strip carrier equipped with a slide rail. The slide rail is arranged along its strip extension direction. One end of the slide rail is a closed structure, and the other end is equipped with a detachable slide rail plug. A label assembly, comprising multiple components, is slidably disposed within the slide rail. The label assembly includes a slide base, a label plate, and an electronic tag. The slide base and the label plate are connected by a connecting member. The electronic tag is disposed on the label plate. The slide base can slide along the slide rail, thereby adjusting the position of the electronic tag on the label carrier. The slide block has an arc-shaped block on each of its two sides. The arc-shaped block is connected to both ends of a spring that runs through the slide block. The spring's elastic force allows the arc-shaped block to abut against the two sides of the slide rail, thereby locking the slide block in a preset position on the slide rail. Each arc-shaped block also has an auxiliary component located on both sides of the spring. The free end of the auxiliary component can slide through the slide block and provide limiting support for the arc-shaped block. The auxiliary component includes an auxiliary rod and an auxiliary head. One end of the auxiliary rod is connected to the arc-shaped block, and the other end is connected to the auxiliary head. The slide block has a first sliding groove of a matching size corresponding to the auxiliary head. Two first sliding grooves are provided and are located on both sides of the spring. The corresponding auxiliary heads located at both ends of the slide block share a corresponding first sliding groove. The slide block has auxiliary grooves that extend to the edge of the slide block at both ends of the first sliding groove. The auxiliary rod slides in the auxiliary groove, and the width of the auxiliary groove is smaller than the width of the first sliding groove, so that the auxiliary head can be controlled to slide within the first sliding groove. The slide block has a second sliding groove that passes through the slide block, corresponding to the spring, and the spring passes through the second sliding groove.

2. The sliding adjustable spacing electronic tag system according to claim 1, characterized in that, The slide rail is a groove-shaped slide rail, the slide block is engaged in its groove structure and can slide along its extension direction, the connecting member slides with the slide block in the slide rail opening, and the label plate is located on the slide rail.

3. The sliding adjustable spacing electronic tag system according to claim 1, characterized in that, The bottom of the slide block is provided with a first connecting structure, and the bottom of the slide rail is provided with a plurality of pre-set second connecting structures. When the slide block slides to a preset position within the slide rail, it can be fixed to the preset position of the slide rail through the cooperation of the first connecting structure and the second connecting structure, thereby achieving the fixation of the position of the electronic tag.

4. The sliding adjustable spacing electronic tag system according to claim 3, characterized in that, Both the first and second connection structures are magnetic blocks, namely the first magnetic block and the second magnetic block, which are connected by magnetic attraction to achieve control over the position of the electronic tag.

5. The sliding adjustable spacing electronic tag system according to claim 3, characterized in that, The first connecting structure is a protrusion, and the second connecting structure is a slot. The protrusion can be engaged in the slot, thereby fixing the slide block to a preset position on the slide rail and controlling the position of the electronic tag.

6. The sliding adjustable spacing electronic tag system according to claim 4 or 5, characterized in that, The slide block is a rectangular base. When the long side of the slide block is aligned with the extension direction of the slide rail, the label assembly can be removed from the slide rail. When the short side of the slide block is aligned with the extension direction of the slide rail, the slide block is engaged within the slide rail and can slide along the slide rail, thereby allowing the label assembly to slide along the slide rail.

7. The sliding adjustable spacing electronic tag system according to claim 1, characterized in that, The label assembly comprises two detachable parts, one part being the label plate and the connector, and the other part being the slide. The connector is provided with a square retaining plate, and the top of the slide is provided with a corresponding square fitting structure. The square retaining plate can be fitted into the fitting structure, thereby enabling the label assembly to be disassembled or combined.

8. The sliding adjustable spacing electronic tag system according to claim 1, characterized in that, The electronic tag is an RFID tag or an NFC tag.

9. The sliding adjustable spacing electronic tag system according to claim 1, characterized in that, The electronic tag can be any shape among bar, L-shape, and circle.

10. A storage device, characterized in that, An electronic tag system with adjustable spacing as described in any one of claims 1-9 is provided.