Mounting device for RFID tags
Patent Information
- Application Number
- CN202522309081.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-31
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-10-31
AI Technical Summary
但传统的RFID标签安装设备采用机械臂或人工操作,RFID标签的夹取与安装较为麻烦,无法实现RFID标签的自动安装,RFID标签无法与轮对进行精准对接,导致标签偏移或安装不良,系统无法实时感知并进行自动修正
本实用新型的用于RFID标签的安装装置通过标签放置机构和标签转移机构,能够吸取RFID标签并将其精确安装在轮对上的标签安装位,如此使得RFID标签能够与轮对进行精准对接,实现RFID标签的自动安装。
Smart Images

Figure CN224789212U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of rail transit equipment technology, and in particular to an installation device for RFID tags. Background Technology
[0002] In the field of rail transit, wheelsets (including axles and wheel hub assemblies) are key load-bearing components. During railway operation and maintenance, the life cycle management, performance monitoring and fault diagnosis of wheelsets often rely on the accurate identification and data tracking of each wheelset. In order to achieve accurate traceability and intelligent monitoring of wheelsets, RFID (Radio Frequency Identification) technology is widely used for identification management.
[0003] RFID tags have a larger storage capacity and read / write functionality than barcode tags, and can store data. However, traditional RFID tag installation equipment uses robotic arms or manual operation, making the picking and installation of RFID tags cumbersome and unable to achieve automatic installation. RFID tags cannot be accurately aligned with the wheelset, leading to tag misalignment or improper installation, and the system cannot detect and automatically correct this in real time.
[0004] Therefore, it is necessary to study an installation device for RFID tags to solve the above problems or mitigate their impact. Utility Model Content
[0005] This invention provides an installation device for RFID tags. Through a tag placement mechanism and a tag transfer mechanism, it can pick up RFID tags and accurately install them on the tag mounting positions on the wheelset, thereby effectively solving the above-mentioned problems or mitigating their impact.
[0006] The installation device for RFID tags of this utility model may include: a base frame, a tag placement mechanism, and a tag transfer mechanism, wherein the tag placement mechanism and the tag transfer mechanism are both disposed on the base frame; The tag placement mechanism includes a placement tray that is slidably disposed on the base frame, the placement tray being used to place RFID tags; The tag transfer mechanism includes a connecting frame, a free adjustment component, and a suction cup. The connecting frame is mounted on the base frame, the free adjustment component is mounted on the connecting frame, and the suction cup is mounted on the free end of the free adjustment component. The free adjustment component is configured to adjust the suction cup with multiple degrees of freedom, so that the suction cup picks up the RFID tag on the placement tray and moves it to the tag mounting position on the wheelset for installation.
[0007] In one embodiment, the connecting frame includes a connecting seat, a column, and a crossbeam. The connecting seat is disposed on the base frame, the bottom of the column is mounted on the connecting seat, and the crossbeam is mounted on the top of the column.
[0008] In one embodiment, the free adjustment component includes a first guide rail, a sliding plate, and a first driving member. The first guide rail is arranged parallel to the crossbeam, the sliding plate is slidably disposed on the first guide rail, and the first driving member is disposed at one end of the first guide rail. The first driving member is used to drive the sliding plate to adjust horizontally along the first guide rail.
[0009] In one embodiment, the free adjustment assembly further includes a second guide rail, a lifting frame, and a second driving member. The second guide rail is vertically disposed on the sliding plate, the lifting frame is slidably disposed on the second guide rail, and the second driving member is disposed at one end of the second guide rail. The second driving member is used to drive the lifting frame to adjust vertically along the second guide rail.
[0010] In one embodiment, the free adjustment assembly further includes a fixed base, a rotating frame, and a third driving member. The fixed base is disposed at the lower end of the second guide rail, the rotating frame is disposed on one side of the fixed base, the suction cup is disposed at the free end of the rotating frame, and the third driving member is disposed on the other side of the fixed base. The third driving member is used to drive the rotating frame to rotate and adjust the position of the suction cup.
[0011] In one embodiment, the suction cup is provided with a connecting tube, which is used to connect to an air source and provide suction force to the suction cup.
[0012] In one embodiment, a third guide rail is provided on the base frame, a movable frame is slidably arranged on the third guide rail, the placement tray is fixed on the movable frame, and a fourth driving member is provided at one end of the third guide rail, the fourth driving member being used to drive the movable frame to move and adjust along the third guide rail.
[0013] In one embodiment, the placement tray has multiple sets of evenly distributed positioning holes, which are used to position and place the RFID tag.
[0014] In one embodiment, the mounting device further includes a frame mounted on the base and covering the label placement mechanism and the label transfer mechanism, and the sides of the frame are fitted with side panels and cabinet doors.
[0015] In one embodiment, the installation device further includes a control console disposed on one side of the base frame, the control console being used to control the operation of the label placement mechanism and the label transfer mechanism.
[0016] The present invention provides an RFID tag installation device, which, compared with the prior art, has at least the following advantages: The RFID tag installation device of this invention, through a tag placement mechanism and a tag transfer mechanism, can pick up RFID tags and accurately install them on the tag mounting positions on the wheelset, thus enabling the RFID tags to be precisely aligned with the wheelset and achieving automatic installation of the RFID tags. Attached Figure Description
[0017] The present invention will be described in more detail below based on embodiments and with reference to the accompanying drawings.
[0018] Figure 1 This is a schematic diagram of the installation device according to an embodiment of the present utility model; Figure 2 This is a schematic diagram of the internal structure of an embodiment of this utility model; Figure 3 This is a structural schematic diagram of a connecting frame according to an embodiment of the present utility model; Figure 4 This is a schematic diagram of the horizontal adjustment of the freely adjustable component according to an embodiment of the present invention; Figure 5 This is a schematic diagram of the vertical adjustment of the freely adjustable component according to an embodiment of the present invention; Figure 6 This is a schematic diagram of the rotation adjustment of the freely adjustable component according to an embodiment of the present invention; Figure 7 This is a schematic diagram of the label placement mechanism according to an embodiment of the present invention; Figure 8 This is a schematic diagram of the structure of the third guide rail in an embodiment of this utility model; Figure 9 This is a schematic diagram of the wheelset of an embodiment of the present invention.
[0019] In the accompanying drawings, the same parts use the same reference numerals. The drawings are not drawn to scale.
[0020] Figure label: 1-Base frame, 11-Feet, 2-Label placement mechanism, 21-Placement tray, 211-Positioning hole, 212-Handle, 22-Third guide rail, 23-Modible frame, 231-Locking screw, 24-Fourth drive component, 3-Label transfer mechanism, 31-Connecting frame, 311-Connecting seat, 312-Column, 313-Crossbeam, 32-Free adjustment component, 321-First guide rail, 322-Sliding plate, 323-First drive component, 324-Second guide rail, 325-Lifting frame, 326-Second drive component, 327-Fixed seat, 328-Rotating frame, 329-Third drive component, 33-Suction cup, 331-Connecting pipe, 4-Protective cover, 5-Control cable, 6-Frame, 61-Side plate, 62-Cabinet door, 621-Cabinet door handle, 7-Control console, 8-Wheel pair, 9-RFID tag. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings.
[0022] like Figures 1 to 9 As shown, the installation device for RFID tags of this utility model may include a base frame 1, a tag placement mechanism 2, and a tag transfer mechanism 3, both of which are mounted on the base frame 1.
[0023] The tag placement mechanism 2 includes a placement tray 21 that is slidably disposed on the base frame 1, and the placement tray 21 is used to place RFID tags 9.
[0024] The tag transfer mechanism 3 includes a connecting frame 31, a free adjustment component 32, and a suction cup 33. The connecting frame 31 is mounted on the base frame 1, the free adjustment component 32 is mounted on the connecting frame 31, and the suction cup 33 is mounted on the free end of the free adjustment component 32. The free adjustment component 32 is configured as a multi-degree-of-freedom adjustable suction cup 33, so that the suction cup 33 picks up the RFID tag 9 on the placement plate 21 and moves it to the tag mounting position on the wheel set 8 for installation.
[0025] Specifically, the base frame 1 serves as the basic support, and the bottom of the base frame 1 can be equipped with support legs 11. The placement tray 21 of the tag placement mechanism 2 is slidably connected to the base frame 1, and the tag transfer mechanism 3 is fixedly connected to the base frame 1 through the connecting frame 31. RFID tags 9 are placed in the placement tray 21, and the RFID tags 9 can be aligned with the tag mounting positions on the wheelset 8 by sliding and adjusting them on the base frame 1. The free adjustment component 32 is installed on the connecting frame 31, and the suction cup 33 is located at the free end of the free adjustment component 32. The suction cup 33 can pick up and put down the RFID tags 9 by pneumatic adsorption. The free adjustment component 32 can control the position and attitude of the suction cup 33 through multi-degree-of-freedom movement (including horizontal, vertical, and rotational adjustment), so that the suction cup 33 can pick up the RFID tags 9 from the placement tray 21 and accurately move them to the tag mounting positions on the wheelset 8 for attachment. In this way, the automatic picking up, putting down, and installing of RFID tags 9 is realized, improving installation accuracy and efficiency, avoiding tag offset or damage caused by manual operation, and supporting full life-cycle data traceability of the wheelset 8.
[0026] In one example, such as Figure 3 and Figure 4 As shown, the connecting frame 31 includes a connecting seat 311, a column 312 and a crossbeam 313. The connecting seat 311 is mounted on the base frame 1, the bottom of the column 312 is mounted on the connecting seat 311, and the crossbeam 313 is mounted on the top of the column 312.
[0027] Specifically, the connecting seat 311 is fixed to the base frame 1, the uprights 312 are vertically installed on the connecting seat 311, and the crossbeam 313 is horizontally installed on top of the two uprights 312, forming a portal frame structure. The connection between the connecting seat 311, the uprights 312, and the crossbeam 313 can be achieved by bolting or welding. This design results in a high overall structural strength for the connecting frame 31, providing better rigid support and enabling it to withstand the loads and vibrations during the movement of the label transfer mechanism 3, ensuring stability and adjustment accuracy.
[0028] In one example, such as Figure 4 As shown, the free adjustment component 32 includes a first guide rail 321, a sliding plate 322, and a first driving member 323. The first guide rail 321 is arranged parallel to the crossbeam 313, the sliding plate 322 is slidably arranged on the first guide rail 321, and the first driving member 323 is arranged at one end of the first guide rail 321. The first driving member 323 is used to drive the sliding plate 322 to adjust horizontally along the first guide rail 321.
[0029] Specifically, the first guide rail 321 is horizontally positioned, with its length parallel to the length of the crossbeam 313, which can be the X-axis direction. The sliding plate 322 is slidably connected to the first guide rail 321. The first driving component 323 is installed at one end of the first guide rail 321 and can drive the sliding plate 322 to move horizontally along the first guide rail 321 through a screw and nut. The first driving component 323 can be a motor, which drives the sliding plate 322 to move horizontally after receiving a control signal, thereby driving the suction cup 33 to be precisely positioned in the X-axis direction to adapt to the label picking and placing requirements of different positions and the labeling requirements of the wheelset 8.
[0030] In one example, such as Figure 4 and Figure 5 As shown, the free adjustment assembly 32 also includes a second guide rail 324, a lifting frame 325, and a second drive member 326. The second guide rail 324 is vertically arranged on the sliding plate 322, the lifting frame 325 is slidably arranged on the second guide rail 324, and the second drive member 326 is arranged at one end of the second guide rail 324. The second drive member 326 is used to drive the lifting frame 325 to adjust vertically along the second guide rail 324.
[0031] Specifically, the second guide rail 324 is vertically fixed on the sliding plate 322, and its length direction can be the Z-axis direction. The lifting frame 325 is slidably connected to the second guide rail 324. The second drive component 326 is installed on the top of the second guide rail 324 and can drive the lifting frame 325 to adjust its height vertically along the second guide rail 324 through the cooperation of a screw and nut. The second drive component 326 can be a motor, which can adjust the height of the lifting frame 325 according to control commands, thereby achieving precise positioning of the suction cup 33 in the Z-axis direction to adapt to changes in the height of the wheelset 8 and ensure that the suction cup 33 maintains the optimal distance from the target surface during the suction and labeling process.
[0032] Furthermore, a protective cover 4 may be installed on the outside of the lifting frame 325, and a control cable 5 may be installed inside the protective cover 4.
[0033] In one example, such as Figures 4 to 6 As shown, the free adjustment assembly 32 also includes a fixed base 327, a rotating frame 328, and a third driving member 329. The fixed base 327 is located at the lower end of the second guide rail 324, the rotating frame 328 is located on one side of the fixed base 327, the suction cup 33 is located at the free end of the rotating frame 328, and the third driving member 329 is located on the other side of the fixed base 327. The third driving member 329 is used to drive the rotating frame 328 to rotate and adjust the position of the suction cup 33.
[0034] Specifically, the fixed base 327 is fixed to the bottom of the lifting frame 325. The rotating end of the rotating frame 328 can be mounted on one side of the fixed base 327 via bearings. The suction cup 33 is mounted on the free end of the rotating frame 328. The third driving component 329 is fixed to the other side of the fixed base 327 and can drive the rotating frame 328 to rotate via gears or couplings. The third driving component 329 can be a rotary motor, which can drive the rotating frame 328 to rotate within a certain angle range, so as to adjust the posture of the suction cup 33 after picking up the RFID tag 9, so that the tag can correspond and fit with the tag mounting position on the wheel set 8.
[0035] In one example, such as Figures 4 to 6 As shown, the suction cup 33 is provided with a connecting pipe 331, which is used to connect to the air source and provide suction force to the suction cup 33.
[0036] Specifically, the suction cup 33 is connected to an external air source system (such as a vacuum generator) via a connecting tube 331. The connecting tube 331 can be a flexible hose, with one end connected to the suction cup 33 and the other end connected to the air source. The air source system can be linked to the control system via a solenoid valve. The air source system provides negative pressure (vacuum degree up to -80KPa) to allow the suction cup 33 to adsorb the label, and switches to positive pressure during labeling to assist in label peeling, thereby achieving non-contact label gripping and release, reducing label damage, and improving the gripping success rate.
[0037] In one example, such as Figure 7 and Figure 8 As shown, a third guide rail 22 is provided on the base frame 1, and a movable frame 23 is slidably provided on the third guide rail 22. The placement plate 21 is fixed on the movable frame 23, and a fourth driving member 24 is provided at one end of the third guide rail 22. The fourth driving member 24 is used to drive the movable frame 23 to move and adjust along the third guide rail 22.
[0038] Specifically, the third guide rail 22 is horizontally positioned, and its length direction is perpendicular to the length direction of the first guide rail 321, which can be the Y-axis direction. The movable frame 23 is slidably mounted on the third guide rail 22, and the placement tray 21 is fixed to the movable frame 23 by locking screws 231. A fourth drive component 24 is provided at one end of the third guide rail 22. The fourth drive component 24 can drive the movable frame 23 to adjust horizontally along the third guide rail 22 via a lead screw and nut. The fourth drive component 24 can be a motor, which can adjust the position of the movable frame 23 according to control commands, so that the placement tray 21 corresponds to the wheelset 8 and is in the optimal label-picking position, thereby improving the flexibility of label supply and adapting to the automated processing of multiple batches and specifications of labels.
[0039] In one example, the placement tray 21 has multiple sets of evenly distributed positioning holes 211, which are used to position and place RFID tags 9.
[0040] Specifically, the placement tray 21 has multiple sets of evenly distributed positioning holes 211. Each set of positioning holes 211 is designed according to the size and shape of the RFID tag 9 and is used to position the tag. The positioning holes 211 can restrict the movement of the tag in the horizontal and vertical directions, ensuring that the tag's position is determined when the suction cup 33 picks it up, thereby improving the tag picking accuracy and repeatability and reducing installation failures caused by positional deviations.
[0041] Furthermore, the placement tray 21 is provided with a handle 212 to facilitate manual movement of the placement tray 21.
[0042] In one example, such as Figures 1 to 3 As shown, the installation device also includes a frame 6, which is mounted on the base frame 1 and covers the label placement mechanism 2 and the label transfer mechanism 3. The side of the frame 6 is equipped with a side panel 61 and a cabinet door 62.
[0043] Specifically, the frame 6 can be fixedly installed on the base frame 1 by bolts or welding, and covers the outside of the label placement mechanism 2 and the label transfer mechanism 3. Side panels 61 and cabinet doors 62 are installed on the sides of the frame 6 to form a closed or semi-closed space, preventing external interference and contamination, protecting the internal mechanisms, and improving equipment safety and environmental adaptability. The cabinet doors 62 can be connected to the frame 6 by hinges, and can be equipped with cabinet door handles 621 for easy maintenance and repair.
[0044] In one example, the installation device also includes a control console 7, which is located on one side of the base frame 1. The control console 7 is used to control the operation of the label placement mechanism 2 and the label transfer mechanism 3.
[0045] Specifically, the control console 7 can be integrated or separately installed on the side of the base frame 1 away from the wheelset 8, and can be connected to the label placement mechanism 2, the label transfer mechanism 3, and the air supply system via control cable 5. The control console 7 can integrate PLC, human-machine interface (HMI), and communication module, etc., and can realize functions such as motion control, data writing, and status monitoring. It can centrally control the entire labeling process, support parameter setting, fault diagnosis, and data management, and improve the level of automation and ease of operation. That is, the control console 7 can integrate an intelligent control system.
[0046] To better understand this utility model, the working process and principle of the installation device will be further explained below with reference to the accompanying drawings.
[0047] The installation device can adjust the position of the RFID tag 9 on the placement plate 21 along the horizontal Y-axis by moving the placement plate 21 via the third guide rail 22, facilitating the suction cup 33 to adsorb the RFID tag 9. The first guide rail 321 moves along the horizontal X-axis, the second guide rail 324 moves along the vertical Z-axis, and the rotating frame 328 rotates, enabling the suction cup 33 to adjust in multiple degrees of freedom according to the label position on the wheelset 8, thus automatically installing the RFID tag 9 in a fixed position on the wheelset 8. Automatically writing the wheelset 8 information into the RFID tag 9 enables full-process traceability during subsequent wheelset 8 maintenance, achieving reliable installation and data fusion of the RFID tag 9 under complex working conditions.
[0048] The installation device incorporates a control console 7 with an intelligent control system, enabling precise monitoring and adjustment of the production process. The control system can collect various production parameters (such as position, temperature, humidity, flow rate, and pressure) in real time and automatically adjust the production process according to preset rules. Traditional production lines typically rely on manual intervention or adjustment, resulting in low production efficiency and susceptibility to human error. The installation device, through intelligent control and automatic adjustment, makes the production line more efficient, improving overall production efficiency. It employs a real-time data acquisition and feedback mechanism that tracks every detail of the production process. When any abnormality occurs at any stage, the system can automatically identify it, issue an alarm, and make timely adjustments.
[0049] Specific examples: The mounting device can adapt to the labeling action: it can scan the 8 contours with a laser, collect normal pressure data with a six-axis force sensor, calculate the height compensation amount with a PID control unit, perform ±0.5mm fine adjustment with a pneumatic platform, apply a controllable pressure of 0.1-5N with the labeling head, and check the position deviation with a vision system. If the deviation is greater than 0.1mm, a secondary correction procedure is initiated.
[0050] Tag information writing verification: The Impinj R420 writer is activated, the antenna impedance matching circuit is dynamically adjusted, and after the data writing is completed, the reader performs three integrity checks. If any check fails, it will automatically retransmit until it succeeds, and the operation record is written to the blockchain node.
[0051] Employing a non-contact tag transfer and writing device, this innovative design utilizes a dual-mode gripping mechanism combining vacuum adsorption and positive pressure peeling. A vacuum generator, coupled with a flexible silicone suction cup 33, enables continuous tag picking in a single cycle, achieving a vacuum level of -80KPa. This reduces tag damage by 92% compared to traditional tag-rubbing methods. The embedded UHF RFID writer employs an Impinj R420 module paired with a customized circularly polarized antenna (8dBi gain), operating in the 902-928MHz frequency band (compliant with FCC Part 15.247). Through dynamic impedance matching optimization technology, stable writing is maintained at an 8cm distance during mobile application (speed ≤0.8m / s), improving the signal-to-noise ratio by over 15dB and significantly reducing the 10% failure rate due to vibration interference compared to fixed writing devices. A specially developed anti-collision protection mechanism: when an application resistance >5N is detected, the electromagnetic clutch cuts off power transmission within 0.05 seconds to prevent device damage.
[0052] The end-to-end quality traceability system utilizes a blockchain-based evidence storage module built on a private chain using the Hyperledger Fabric framework. Each batch of tag operation records generates a SHA-256 hash value and uploads it to the consortium blockchain node, meeting the railway industry's traceability compliance requirements. Local storage employs industrial-grade SSDs (endurance > 100,000 write cycles), while cloud synchronization uses Alibaba Cloud OSS object storage service. Data encryption uses the AES-256 algorithm, ensuring a complete data retention period of ≥10 years. A dual-channel visual inspection system is configured: a Keyence CV-X400P smart camera handles 0.05mm resolution positional deviation detection, while a Cognex In-Sight 9802 performs read / write verification, achieving a comprehensive detection accuracy of 99.99%.
[0053] In summary, the beneficial effects of this utility model include at least the following: The installation device of this utility model uses a suction cup to adsorb RFID tags, and can adjust the position of the RFID tags according to the position of the wheelset, automatically installing the RFID tags in a fixed position on the wheelset. The wheelset information is automatically written into the RFID tags, realizing full-process traceability in subsequent wheelset maintenance, and enabling reliable installation and data fusion of RFID tags under complex working conditions.
[0054] Although the present invention has been described with reference to preferred embodiments, various modifications can be made thereto and components can be replaced with equivalents without departing from the scope of the invention. In particular, the technical features mentioned in the various embodiments can be combined in any manner, provided there is no structural conflict. The present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.
Claims
1. An installation device for RFID tags, characterized in that, The installation device includes: a base frame, a label placement mechanism, and a label transfer mechanism, wherein the label placement mechanism and the label transfer mechanism are both mounted on the base frame; The tag placement mechanism includes a placement tray that is slidably disposed on the base frame, the placement tray being used to place RFID tags; The tag transfer mechanism includes a connecting frame, a free adjustment component, and a suction cup. The connecting frame is mounted on the base frame, the free adjustment component is mounted on the connecting frame, and the suction cup is mounted on the free end of the free adjustment component. The free adjustment component is configured to adjust the suction cup with multiple degrees of freedom, so that the suction cup picks up the RFID tag on the placement tray and moves it to the tag mounting position on the wheelset for installation.
2. The installation device for RFID tags according to claim 1, characterized in that, The connecting frame includes a connecting seat, a column, and a crossbeam. The connecting seat is disposed on the base frame, the bottom of the column is mounted on the connecting seat, and the crossbeam is mounted on the top of the column.
3. The installation device for RFID tags according to claim 2, characterized in that, The free adjustment component includes a first guide rail, a sliding plate, and a first driving member. The first guide rail is arranged parallel to the crossbeam, the sliding plate is slidably disposed on the first guide rail, and the first driving member is disposed at one end of the first guide rail. The first driving member is used to drive the sliding plate to adjust horizontally along the first guide rail.
4. The installation device for RFID tags according to claim 3, characterized in that, The free adjustment assembly further includes a second guide rail, a lifting frame, and a second driving component. The second guide rail is vertically disposed on the sliding plate, the lifting frame is slidably disposed on the second guide rail, and the second driving component is disposed at one end of the second guide rail. The second driving component is used to drive the lifting frame to adjust vertically along the second guide rail.
5. The mounting device for RFID tags according to claim 4, characterized in that, The free adjustment assembly further includes a fixed base, a rotating frame, and a third driving component. The fixed base is located at the lower end of the second guide rail, the rotating frame is located on one side of the fixed base, the suction cup is located at the free end of the rotating frame, and the third driving component is located on the other side of the fixed base. The third driving component is used to drive the rotating frame to rotate and adjust the position of the suction cup.
6. The installation device for RFID tags according to claim 1, characterized in that, The suction cup is equipped with a connecting tube, which is used to connect to an air source and provide suction force to the suction cup.
7. The installation device for RFID tags according to claim 1, characterized in that, The base frame is provided with a third guide rail, and a movable frame is slidably mounted on the third guide rail. The placement tray is fixed on the movable frame, and a fourth driving member is provided at one end of the third guide rail. The fourth driving member is used to drive the movable frame to move and adjust along the third guide rail.
8. The installation device for RFID tags according to claim 1, characterized in that, The placement tray has multiple sets of evenly distributed positioning holes, which are used to position and place the RFID tag.
9. The mounting device for RFID tags according to claim 1, characterized in that, The installation device also includes a frame, which is mounted on the base frame and covers the label placement mechanism and the label transfer mechanism, and the side of the frame is equipped with side panels and cabinet doors.
10. The mounting device for RFID tags according to claim 1, characterized in that, The installation device also includes a control console, which is located on one side of the base frame and is used to control the operation of the label placement mechanism and the label transfer mechanism.