Electronic tag instrument installation device of instrument equipment

By designing sliding and clamping mechanisms on the instruments and equipment, the problem of electronic tags easily falling off irregular equipment has been solved, achieving stable installation and efficient management.

CN223513544UActive Publication Date: 2025-11-04GUANGXI ZHUANG AUTONOMOUS REGION ECOLOGICAL ENVIRONMENT MONITORING CENT
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Patent Information

Application Number
CN202423137061.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-11-04
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

In existing technologies, when electronic tags are installed on instruments and equipment using magnetic attraction, they are prone to falling off or failing to adhere to irregular or non-ferrous alloy instruments and equipment, resulting in low management efficiency.

Method used

An electronic tag installation device for instruments and equipment was designed, comprising a sliding mechanism and a clamping mechanism. The sliding mechanism is attracted by a magnetic plate, and the clamping mechanism is flexibly adjusted through multi-stage connecting parts and sliding connections to ensure that the electronic tag is securely installed.

Benefits of technology

It enables the secure installation of electronic tags on instruments and equipment of various shapes and sizes, preventing displacement or falling, improving management efficiency and installation stability, and is highly adaptable to a variety of instruments and equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of electronic tag instrument installation, and discloses an electronic tag instrument installation device of instrument equipment, which comprises a sliding mechanism, the sliding mechanism comprises an installation plate and a sliding assembly arranged on the installation plate, one end face of the installation plate is provided with a magnetic suction plate, and the magnetic suction plate is provided with a magnet. A mounting groove for mounting an electronic tag instrument is formed in the other end surface of the mounting plate; the clamping mechanism comprises two same clamping assemblies, one clamping assembly is fixedly installed at one side end of the installation plate, and the other clamping assembly is installed at the sliding end of the sliding assembly. According to the utility model, the adsorption installation mode of the electronic tag adsorption instrument equipment is realized through the magnetic plate; and the clamping mechanism can be flexibly adjusted according to different sizes and shapes of the instruments and equipment through a sliding assembly in the sliding mechanism, mechanical clamping of the instruments and equipment is achieved, the instruments and equipment are effectively prevented from loosening or falling off, and the installation stability of the electronic tag is ensured.
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Description

Technical Field

[0001] This utility model belongs to the field of electronic tag installation technology, and specifically relates to an electronic tag installation device for instruments and equipment. Background Technology

[0002] As a crucial means of environmental monitoring, instruments and equipment play a vital role in environmental protection. Currently, most instruments and equipment are still managed using paper or spreadsheets. Traditional paper or spreadsheet methods are inefficient. Therefore, using electronic tags to replace paper or spreadsheets for intelligent management of instrument and equipment identification can significantly improve management efficiency.

[0003] Electronic tags can store key information such as instrument model, production date, and maintenance records. The mounting device ensures the stability and reliability of the electronic tag on the equipment, facilitating easy access to equipment information. Currently, electronic tags primarily use magnetic attachment to attach to instruments. However, this method has drawbacks. For example, in laboratory equipment, there are irregular shapes without flat ends or without ferroalloy components. In such cases, magnetic attachment can easily cause the electronic tag to fall off or fail to attach properly. Utility Model Content

[0004] The purpose of this invention is to provide an electronic tag installation device for instruments and equipment, thereby overcoming the problem that electronic tags are easily dropped or cannot be successfully installed by adsorption methods. The specific technical solution is as follows:

[0005] An electronic tag installation device for an instrument includes:

[0006] A sliding mechanism includes a mounting plate and a sliding assembly disposed on the mounting plate. A magnetic suction plate is disposed on one end face of the mounting plate, and a mounting groove for mounting an electronic tag device is disposed on the other end face of the mounting plate.

[0007] The clamping mechanism includes two identical clamping components. One clamping component is fixedly installed on one side of the mounting plate, and the other clamping component is installed on the sliding end of the sliding component.

[0008] Preferably, the clamping assembly includes at least two levels of connecting parts, each level being divided into a fixed connecting part, a primary connecting part, two secondary connecting parts, ... One N-level connection section;

[0009] The fixed connection part is provided with a first arc-shaped sliding groove, and one side of the first-level connection part is provided with a first arc-shaped sliding strip, the first arc-shaped sliding strip and the first arc-shaped sliding groove being slidably connected; the other side of the first-level connection part is provided with two second arc-shaped sliding grooves, one side of the two second-level connection parts is provided with second arc-shaped sliding strips, the second arc-shaped sliding strips and the second arc-shaped sliding grooves being slidably connected; ...; the other side of the N-1 level connection part is provided with two second arc-shaped sliding grooves. Arc-shaped groove, One side of the N-level connector is provided with the first The arc-shaped slider, the first curved slider and the first Arc-shaped sliding groove connection.

[0010] Preferably, N is 2, 3 or 4.

[0011] Preferably, when N is 2, the clamping assembly includes a fixed connection part, a primary connection part, and two secondary connection parts.

[0012] One end of the fixed connection part is an arc-shaped end face, and a first arc-shaped groove is provided on the arc-shaped end face of the fixed connection part;

[0013] The primary connecting part has an arc-shaped side end face and a vertical end face. The arc-shaped side end face of the primary connecting part is provided with a first arc-shaped slide bar, which is slidably connected to a first arc-shaped slide groove. The vertical end face of the primary connecting part is provided with two evenly distributed second arc-shaped slide grooves. The secondary connecting part includes an arc-shaped side end face and a vertical end face. The arc-shaped side end face of the secondary connecting part is provided with a second arc-shaped slide bar, which is slidably connected to a second arc-shaped slide groove. The vertical end face of the secondary connecting part is provided with an elastic protrusion.

[0014] Preferably, the vertical end face of the secondary connector is designed to be inclined towards the primary connector on both sides.

[0015] Preferably, the sliding assembly includes a threaded rod, a threaded connecting block, a slider, and a driving component; the other end face of the mounting plate is also provided with parallel slide rails, and a wide groove is provided between the two slide rails; the slider is slidably connected to the slide rails; the threaded rod is movably connected to the side wall of the wide groove, and one end of the threaded rod passes through the mounting plate and is connected to the driving component; the threaded connecting block is provided with a threaded hole, the threaded hole is adapted to the threaded rod, and the threaded connecting block is drively connected to the threaded rod through the threaded hole; the fixed connecting part of another clamping assembly is respectively connected to the top end of the threaded connecting block and the top end of the slider.

[0016] Preferably, the driving component is a hand crank; the threaded rod has a connector at its end that passes through the mounting plate, and the connector is connected to the hand crank.

[0017] Preferably, a limiting member is also provided between the mounting groove and another clamping assembly.

[0018] Preferably, the mounting plate is further provided with a clamping assembly, which is located near the upper and lower edges of the mounting groove; the clamping assembly includes a pressure block, a spring, and a support column; the support column is connected to the mounting plate, and the spring is sleeved on the support column; the upper and lower ends of the spring are respectively connected to the pressure block and the mounting plate.

[0019] Compared with existing technologies, this utility model has the following beneficial effects:

[0020] This utility model discloses an electronic tag mounting device for instruments and equipment. A magnetic suction plate is installed on the mounting plate to allow for the adsorption and installation of electronic tags onto the instrument and equipment. Furthermore, a sliding component in the sliding mechanism allows the clamping mechanism to be flexibly adjusted according to the different sizes and shapes of the instrument and equipment. Two identical clamping components clamp the instrument and equipment from one side of the mounting plate and the sliding end of the sliding component, respectively, forming a stable clamping force. This double-sided clamping method effectively prevents the instrument and equipment from shifting or falling off after the electronic tag is installed, ensuring the stability of the electronic tag installation. Attached Figure Description

[0021] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.

[0022] Figure 1 This is a schematic diagram of the electronic tag installation device of the instrument and equipment of this utility model.

[0023] Figure 2 This is a structural schematic diagram of the electronic tag installation device of the instrument and equipment of this utility model from another perspective.

[0024] Figure 3 This is another structural schematic diagram of the electronic tag installation device of the instrument and equipment of this utility model.

[0025] Figure 4 This is a partially enlarged structural diagram of part A of this utility model.

[0026] Figure 5 This is a schematic diagram of the clamping assembly of this utility model.

[0027] Figure 6 This is a structural schematic diagram of the clamping assembly of this utility model from another perspective.

[0028] Explanation of key figure labels:

[0029] 1-Mounting plate, 11-Magnetic plate, 12-Mounting groove, 13-Threaded rod, 14-Slide rail, 15-Limiting component, 16-Slider, 17-Threaded connecting block, 18-Wide groove, 19-Pressure assembly, 191-Pressure block, 192-Spring, 193-Support column;

[0030] 2-Clamping assembly, 21-Fixed connection part, 211-First arc-shaped slide groove, 22-Primary connection part, 221 First arc-shaped slide bar, 222-Second arc-shaped slide groove, 23-Secondary connection part, 231-Second arc-shaped slide bar, 232-Elastic protrusion;

[0031] 3- Hand crank;

[0032] 4-Electronic tag reader, 41-Data cable. Detailed Implementation

[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0034] In the description of this utility model, it should be noted that the terms "center", "longitudinal", "lateral", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "top surface", "bottom surface", "inner", "outer", "inner side", "outer side", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0035] In the description of this utility model, "several" means one or more, "multiple" means two or more, "greater than," "less than," and "exceeding" are understood to exclude the stated number, while "above," "below," and "within" are understood to include the stated number. If the terms "first," "second," and "third" are used in the description, they are for descriptive purposes and to distinguish technical features, and should not be construed as indicating or implying relative importance, or implicitly indicating the number of indicated technical features, or implicitly indicating the sequential relationship of the indicated technical features.

[0036] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "setting" 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 mechanical connection or an electrical 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 based on the specific circumstances. The embodiments of this utility model will now be described based on its overall structure.

[0037] Please refer to the following examples. Figures 1 to 6 .

[0038] Example 1

[0039] This application provides an electronic tag installation device for instruments and equipment, including:

[0040] The sliding mechanism includes a mounting plate 1 and a sliding assembly disposed on the mounting plate 1. A magnetic suction plate 11 is disposed on one end face of the mounting plate 1, and a mounting groove 12 for mounting an electronic tag device 4 is disposed on the other end face of the mounting plate 1.

[0041] The clamping mechanism includes two identical clamping components 2. One clamping component 2 is fixedly installed on one side of the mounting plate 1, and the other clamping component 2 is installed on the sliding end of the sliding component.

[0042] It should be noted that the electronic tag reader 4 mentioned in this embodiment is used in conjunction with instruments and equipment within a LIMS system. The LIMS system is the core of the entire instrument and equipment identification management system; it is a database management system used to store and manage various information about the instruments and equipment. This information includes, but is not limited to, the basic parameters of the instruments and equipment (model, specifications, etc.), maintenance records, calibration dates, usage status (idle, in use, faulty, etc.), and operator information. It plays a central role in information collection, organization, updating, and distribution. The electronic tag reader 4 (display screen) is a display component used to intuitively display relevant information about the instruments and equipment to the user. Its display content is determined by the received signals. When connected to the instrument and equipment using the electronic tag's data cable 41, the instrument and equipment's signal transmitter converts the instrument and equipment information in the LIMS system into wireless signals and sends them to the electronic tag reader 4 (display screen). The electronic tag reader 4 (display screen) receives the restored instrument and equipment information so that the user can intuitively see the status of the instrument and equipment.

[0043] This utility model discloses an electronic tag installation device for instruments and equipment. A magnetic suction plate 11 is installed on the mounting plate 1 to achieve adsorption installation of electronic tags onto the instrument and equipment. Furthermore, a sliding component in the sliding mechanism allows the clamping mechanism to be flexibly adjusted according to the different sizes and shapes of the instrument and equipment. Two identical clamping components 2 clamp the instrument and equipment from one side of the mounting plate 1 and the sliding end of the sliding component, respectively, forming a stable clamping force. This double-sided clamping method effectively prevents the instrument and equipment from shifting or falling off after the electronic tag is installed, ensuring the stability of the electronic tag installation.

[0044] Specifically, the clamping assembly 2 includes at least two levels of connecting parts, each level being divided into a fixed connecting part 21, a primary connecting part 22, two secondary connecting parts 23, ... One N-level connection section;

[0045] The fixed connection part 21 is provided with a first arc-shaped sliding groove 211, and one side of the first-level connection part 22 is provided with a first arc-shaped sliding strip 221, the first arc-shaped sliding strip 221 and the first arc-shaped sliding groove 211 are slidably connected; the other side of the first-level connection part 22 is provided with two second arc-shaped sliding grooves 222, one side of the two second-level connection parts 23 is provided with a second arc-shaped sliding strip 231, the second arc-shaped sliding strip 231 and the second arc-shaped sliding groove 222 are slidably connected; ...; the other side of the N-1 level connection part is provided with two second arc-shaped sliding grooves 222. Arc-shaped groove, One side of the N-level connector is provided with the first The arc-shaped slider, the first curved slider and the first Arc-shaped sliding groove connection.

[0046] It should be noted that corresponding balls can be installed in all the arc-shaped grooves to reduce friction, and there are blocking parts at both ends of the groove to prevent the balls from falling out. The balls make the clamping process smoother.

[0047] The clamping assembly 2 in this embodiment is designed based on the principle of progressive sliding connection. Starting from the fixed connection 21, the first-level connection 22 slides within the first arc-shaped groove 211 of the fixed connection 21 via its first arc-shaped slide bar 221, achieving the first-level dimensional adjustment. This sliding connection method allows the first-level connection 22 to change its position and angle relative to the fixed connection 21 within a certain range to initially adapt to the shape contour of the instrument. Next, the second arc-shaped slide bar 231 of the second-level connection 23 cooperates with the second arc-shaped groove 222 of the first-level connection 22 to achieve the sliding of the second-level connection 23 relative to the first-level connection 22. And so on, each level of connection 22 can be further adjusted in position and angle based on the previous level of connection 22, forming a chain-like adaptive structure. When dealing with instruments with complex shapes, each level of connection can be finely adjusted according to the curvature changes of the instrument surface, ensuring that the entire clamping assembly 2 can tightly fit the instrument surface.

[0048] When clamping instruments with irregular curved surfaces, the connecting parts at each level can flexibly shift and rotate in different directions through the interaction of their arc-shaped structures, thereby achieving a comprehensive clamping fit. This multi-directional adjustment capability allows the clamping assembly 2 to handle instruments of various shapes, improving its versatility and adaptability. Simultaneously, during actual clamping, the sliding connections between the connecting parts are not entirely rigid. A certain gap and elasticity exist between the connecting parts, allowing the clamping assembly 2 to generate a certain degree of elastic deformation and cushioning when in contact with the instrument surface. When the instrument surface has minor unevenness or is subjected to slight external impact during clamping, the clamping assembly 2 can absorb these changes through its own elastic deformation, avoiding damage to the instrument due to rigid contact, while also ensuring the stability of the clamping force, achieving adaptive clamping of the instrument.

[0049] The clamping assembly 2 in this embodiment is designed to adapt to instruments and equipment of various shapes and sizes. Whether the instrument is round, square, elliptical, or has a complex curved surface, stable clamping can be achieved through flexible adjustments of the various connecting parts. In a production workshop or a laboratory with multiple experimental instruments, if various models and shapes of instruments and equipment need to be fitted with electronic tags, the installation device using this clamping assembly 2 eliminates the need for frequent clamp changes. Because the clamping assembly 2 can tightly fit the surface of the instrument and equipment, it ensures that the position of the instrument and equipment remains fixed during the electronic tag installation process. Especially for instruments and equipment with high requirements for the accuracy of electronic tag installation positions, such as medical equipment and precision measuring instruments, it can ensure that the electronic tag is installed in the predetermined position, avoiding information reading errors or equipment malfunctions caused by positional deviations.

[0050] Specifically, the sliding assembly includes a threaded rod 13, a threaded connecting block 17, a slider 16, and a driving component; the other end face of the mounting plate 1 is also provided with parallel slide rails 14, and a wide groove 18 is provided between the two slide rails 14; the slider 16 is slidably connected to the slide rails 14; the threaded rod 13 is movably connected to the side wall of the wide groove 18, and one end of the threaded rod 13 passes through the mounting plate 1 and is connected to the driving component; the threaded connecting block 17 is provided with a threaded hole, the threaded hole is adapted to the threaded rod 13, and the threaded connecting block 17 is connected to the threaded rod 13 through the threaded hole; the fixed connecting part 21 of the other clamping assembly 2 is respectively connected to the top end of the threaded connecting block 17 and the top end of the slider 16.

[0051] Specifically, the driving component is a hand crank 3; the threaded rod 13 has a connector at its end that passes through the mounting plate 1, and the connector is connected to the hand crank 3.

[0052] In this embodiment, when the hand crank 3 is turned, it drives the threaded rod 13 to rotate. Since the threaded rod 13 and the threaded connecting block 17 are connected by transmission, according to the basic principle of transmission of the threaded rod 13, the threaded connecting block 17 will move linearly along the axial direction of the threaded rod 13. The rotational motion of the threaded rod 13 is converted into the linear motion of the threaded connecting block 17, thereby adjusting the position of the clamping assembly 2. Through the transmission cooperation between the threaded rod 13 and the threaded connecting block 17, and the precise guidance of the slider 16 and the slide rail 14, high-precision adjustment of the position of the clamping assembly 2 can be achieved. The size differences between different instruments and equipment may be small, requiring precise clamping positions to ensure accurate installation of electronic tags. For example, when it is necessary to increase the distance between the two clamping assemblies 2 to accommodate wider instruments and equipment, the operator turns the hand crank 3 clockwise, and the threaded rod 13 rotates clockwise accordingly. The threaded connecting block 17 will then move along the threaded rod 13 away from the fixed clamping assembly 2, thereby driving the connected movable clamping assembly 2 to move and adjusting the spacing.

[0053] The hand-cranked handle 3 serves as the drive mechanism, making operation simple and intuitive. This ease of operation not only reduces the technical requirements for operators but also improves work efficiency. Especially in small businesses or scenarios requiring high operational flexibility, the hand-cranked sliding assembly can quickly adapt to different installation tasks, reducing equipment setup time and operator training costs.

[0054] Specifically, a limiting member 15 is also provided between the mounting groove 12 and the other clamping assembly 2.

[0055] A limiting member 15 is provided between the mounting slot 12 and another clamping assembly 2. Its main function is to limit the moving clamping assembly 2 from exceeding a certain range. When the moving clamping assembly 2 moves under the drive of the sliding assembly, the limiting member 15 defines the maximum displacement range of the moving clamping assembly 2. For example, during the process of the threaded rod 13 driving the threaded connecting block 17 to move the clamping assembly 2, once the clamping assembly 2 approaches the limiting member 15, it will be blocked by the limiting member 15. This contact-type limitation based on mechanical structure simply and directly prevents the clamping assembly 2 from exceeding the preset safe or effective working range. From another safety perspective, the limiting member 15 avoids damage to the electronic tag reader 4 in the mounting slot 12 that may be caused by the clamping assembly 2 moving excessively beyond a reasonable range, or it prevents the clamping assembly 2 from colliding with other parts of the instrument.

[0056] Specifically, the mounting plate 1 is also provided with a clamping assembly 19, which is located near the upper and lower edges of the mounting groove 12. The clamping assembly 19 includes a pressure block 191, a spring 192, and a support column 193. The support column 193 is connected to the mounting plate 1, and the spring 192 is sleeved on the support column 193. The upper and lower ends of the spring 192 are respectively connected to the pressure block 191 and the mounting plate 1.

[0057] In practice, when the electronic tag reader 4 is placed in the mounting slot 12, the spring 132 is in a compressed state. Because the spring 192 possesses elastic potential energy to restore its original shape, the elastic force acts on the pressure block 191, causing the pressure block 191 to exert a downward pressure on the electronic tag reader 4. Simultaneously, the presence of the spring 192 also serves as a buffer. When the device is subjected to external impact, the spring 192 can absorb some of the energy, reducing the impact on the electronic tag reader and preventing damage from sudden, strong impacts, thereby extending the service life of the electronic tag reader 4.

[0058] The clamping assembly 19 effectively secures the electronic tag reader 4 within the mounting slot 12, preventing it from shifting or falling off during equipment operation due to vibration, collision, or other reasons. For example, in equipment used in environments requiring movement or vibration, the clamped electronic tag reader 4 can always remain in the correct position, ensuring accurate data reading and transmission, and improving the reliability and stability of the equipment.

[0059] Example 2

[0060] Specifically, N is 2, 3 or 4; when N is 2, the clamping assembly 2 includes a fixed connection part 21, a primary connection part 22 and two secondary connection parts 23.

[0061] One end of the fixed connection part 21 is an arc-shaped end face, and a first arc-shaped groove 211 is provided on the arc-shaped end face of the fixed connection part 21;

[0062] The primary connecting part 22 has an arc-shaped side end face and a vertical end face. The arc-shaped side end face of the primary connecting part 22 has a first arc-shaped slide bar 221, which is slidably connected to a first arc-shaped slide groove 211. The vertical end face of the primary connecting part 22 has two evenly distributed second arc-shaped slide grooves 222. The secondary connecting part 23 includes an arc-shaped side end face and a vertical end face. The arc-shaped side end face of the secondary connecting part 23 has a second arc-shaped slide bar 231, which is slidably connected to a second arc-shaped slide groove 222. The vertical end face of the secondary connecting part 23 has an elastic protrusion 232.

[0063] In this embodiment, when N is 2, the clamping assembly 2 starts from the fixed connection part 21. The first arc-shaped slide bar 221 of the first-level connection part 22 slides within the first arc-shaped groove 211 of the fixed connection part 21. This sliding connection allows the first-level connection part 22 to change its position and angle relative to the fixed connection part 21 within a certain range, initially adapting to the outer contour of the instrument. Next, the second arc-shaped slide bar 231 of the second-level connection part 23 cooperates with the second arc-shaped groove 222 of the first-level connection part 22 to realize the sliding of the second-level connection part 23 relative to the first-level connection part 22. Through these two levels of sliding connection, the clamping assembly 2 can adaptively adjust according to the curvature change of the instrument surface, closely fitting the instrument surface. For example, when clamping a cylindrical instrument with a certain curvature, the first-level connection part 22 first makes an initial angle adjustment according to the approximate curvature of the instrument, and then the two second-level connection parts 23 further fine-tune their position and angle through sliding connection with the first-level connection part 22, thereby achieving stable clamping of the instrument.

[0064] In this embodiment, the elastic protrusion 232 can be made of rubber, silicone, or polyurethane elastomer. For example, rubber is a highly elastic polymer material with excellent elastic deformation capabilities. When subjected to external force, it can undergo twisting, stretching, and other deformations in three-dimensional space, and can quickly return to its original shape after the external force is removed. The rubber elastic protrusion 232 can provide good cushioning, effectively reducing the impact on the surface of the instrument during clamping. For example, when clamping optical instruments with high surface precision requirements, the rubber elastic protrusion 232 can prevent scratches or damage to the instrument surface due to excessive clamping force. At the same time, rubber has a certain degree of wear resistance, maintaining its elasticity and shape even after multiple clamping operations, ensuring the stability of the clamping effect.

[0065] The clamping assembly 2 in this embodiment is designed to adapt to instruments and equipment of various shapes and sizes. Whether the instrument is round, square, elliptical, or has a complex curved surface, stable clamping can be achieved through flexible adjustment of the two-stage connecting parts. Simultaneously, because the clamping assembly 2 can closely conform to the surface of the instrument and equipment, the position of the instrument and equipment can be kept fixed during the installation of the electronic tag.

[0066] The elastic protrusion 232 prevents scratches, compression, and other damage to the surface of instruments and equipment during clamping. This extends the service life of instruments and equipment with high surface precision requirements and those prone to damage, ensuring the integrity of their appearance and the stability of their performance, and reducing the cost of equipment maintenance and replacement caused by the installation process.

[0067] Specifically, the vertical end face of the secondary connecting part 23 is designed to be inclined on both sides towards the primary connecting part 22.

[0068] In this embodiment, when the clamping assembly 2 contacts the instrument and begins clamping, the inclined design of both sides of the vertical end face of the secondary connecting part 23 towards the primary connecting part 22 plays a guiding role. This inclined shape allows the secondary connecting part 23 to more easily adapt to changes in the shape of the instrument. For example, when facing an instrument with a certain taper or a gradually changing curved surface, the inclined edge can follow the surface contour of the instrument, guiding the elastic protrusion 232 of the secondary connecting part 23 to better fit the instrument surface.

[0069] The angled design also helps achieve more effective clamping within a limited space. When multiple secondary connectors 23 are clamped around the instrument, the angled edges prevent spatial interference between the connectors. They can be arranged in a gradually converging manner as they approach the instrument, making more efficient use of space.

[0070] In summary, the foregoing description of specific exemplary embodiments of the present invention is for illustrative and explanatory purposes. These descriptions are not intended to limit the present invention to the precise form disclosed, and it is obvious that many changes and variations can be made based on the above teachings. Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the present invention and are not intended to limit the invention. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. The purpose of selecting and describing exemplary embodiments is to explain the specific principles of the present invention and its practical application, so that those skilled in the art, after reading this specification, can make modifications, substitutions, variations, and various choices and changes to the embodiments as needed without departing from the principles and spirit of the present invention, provided that such modifications, substitutions, variations, and choices and changes are within the scope of the claims of the present invention and are protected by patent law.

Claims

1. An electronic tag installation device for an instrument, characterized in that, include: A sliding mechanism includes a mounting plate and a sliding assembly disposed on the mounting plate. A magnetic suction plate is disposed on one end face of the mounting plate, and a mounting groove for mounting an electronic tag device is disposed on the other end face of the mounting plate. The clamping mechanism includes two identical clamping components. One clamping component is fixedly installed on one side of the mounting plate, and the other clamping component is installed on the sliding end of the sliding component.

2. The electronic tag installation device for an instrument according to claim 1, characterized in that, The clamping assembly includes at least two levels of connecting parts, each level being divided into a fixed connecting part, a primary connecting part, two secondary connecting parts, ... One N-level connection section; The fixed connection part is provided with a first arc-shaped sliding groove, and one side of the first-level connection part is provided with a first arc-shaped sliding strip, the first arc-shaped sliding strip and the first arc-shaped sliding groove being slidably connected; the other side of the first-level connection part is provided with two second arc-shaped sliding grooves, one side of the two second-level connection parts is provided with second arc-shaped sliding strips, the second arc-shaped sliding strips and the second arc-shaped sliding grooves being slidably connected; ...; the other side of the N-1 level connection part is provided with two second arc-shaped sliding grooves. Arc-shaped groove, One side of the N-level connector is provided with the first Curved slider, the first curved slider and the first Arc-shaped sliding groove connection.

3. The electronic tag installation device for an instrument according to claim 2, characterized in that, The N is 2, 3 or 4.

4. The electronic tag installation device for an instrument according to claim 3, characterized in that, When N is 2, the clamping assembly includes a fixed connection part, a primary connection part, and two secondary connection parts. One end of the fixed connection part is an arc-shaped end face, and a first arc-shaped groove is provided on the arc-shaped end face of the fixed connection part; The primary connecting part has an arc-shaped side end face and a vertical end face. The arc-shaped side end face of the primary connecting part is provided with a first arc-shaped slide bar, which is slidably connected to a first arc-shaped slide groove. The vertical end face of the primary connecting part is provided with two evenly distributed second arc-shaped slide grooves. The secondary connecting part includes an arc-shaped side end face and a vertical end face. The arc-shaped side end face of the secondary connecting part is provided with a second arc-shaped slide bar, which is slidably connected to a second arc-shaped slide groove. The vertical end face of the secondary connecting part is provided with an elastic protrusion.

5. The electronic tag installation device for an instrument according to claim 4, characterized in that, The vertical end face of the secondary connector is designed to be inclined towards the primary connector on both sides.

6. The electronic tag installation device for an instrument according to claim 2, characterized in that, The sliding assembly includes a threaded rod, a threaded connecting block, a slider, and a driving component; the other end face of the mounting plate is also provided with parallel slide rails, and a wide groove is provided between the two slide rails; the slider is slidably connected to the slide rails; the threaded rod is movably connected to the side wall of the wide groove, and one end of the threaded rod passes through the mounting plate and is connected to the driving component; the threaded connecting block is provided with a threaded hole, the threaded hole is adapted to the threaded rod, and the threaded connecting block is drively connected to the threaded rod through the threaded hole; the fixed connection part of another clamping assembly is respectively connected to the top end of the threaded connecting block and the top end of the slider.

7. The electronic tag installation device for an instrument according to claim 6, characterized in that, The driving component is a hand crank; the threaded rod has a connector at its end that passes through the mounting plate, and the connector is connected to the hand crank.

8. The electronic tag installation device for an instrument according to claim 6, characterized in that, A limiting element is also provided between the mounting slot and another clamping assembly.

9. The electronic tag installation device for an instrument according to claim 1, characterized in that, The mounting plate is also provided with a clamping assembly, which is located near the upper and lower edges of the mounting groove. The clamping assembly includes a pressure block, a spring, and a support column. The support column is connected to the mounting plate, and the spring is sleeved on the support column. The upper and lower ends of the spring are respectively connected to the pressure block and the mounting plate.