A drug traceability RFID electronic tag composite device

CN224703429UActive Publication Date: 2026-09-01HUZHOU HUXIN INTERNET OF THINGS TECH CO LTD
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Patent Information

Application Number
CN202522061675.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-25
Publication Date
2026-09-01
Estimated Expiration
2035-09-25

AI Technical Summary

Technical Problem

[0004]本实用新型的目的是以解决现有的设备损坏后快速的使设备移动到外部方便工人进行维修,安装时快速的在设备两侧安装其它设备,根据安装设备的高度进行调节安装位置的问题

Benefits of technology

(1)本实用新型通过左板螺栓使热压设备在左安装板上安装和拆除,右板螺栓使点胶设备在右安装板上安装和拆除,右电机右安装板在右底板上移动,右安装板带动点胶设备在右底板上移动,左电机使左安装板在左底板上移动,左安装板带动热压设备在左底板上移动,转动连接螺栓解除连接螺栓对点胶连接仓和热压连接仓的限制,热压设备和点胶设备移动时,点胶连接仓一侧的连接滑块在热压连接仓一侧的连接滑槽内滑动,在点胶设备和热压设备损坏需要维修时,使热压设备和点胶设备在左底板和右底板上移动到外部,方便快速的对设备进行拆卸维修。

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Abstract

This utility model provides a composite device for drug traceability RFID electronic tags, including a left base plate, with a right base plate on one side of the left base plate. A right extension plate, a right motor, a right lead screw, and a right mounting plate are slidably connected to the lower surface of the right base plate. This utility model uses bolts on the left plate to allow the hot pressing device to be installed and removed from the left mounting plate, and bolts on the right plate to allow the dispensing device to be installed and removed from the right mounting plate. The right motor moves the right mounting plate on the right base plate, and the right mounting plate drives the dispensing device to move on the right base plate. A left motor moves the left mounting plate on the left base plate, and the left mounting plate drives the hot pressing device to move on the left base plate. Connecting bolts release the restriction between the dispensing connection chamber and the hot pressing connection chamber. When the hot pressing device and the dispensing device move, the connecting slider of the dispensing connection chamber slides within the connecting groove of the hot pressing connection chamber, allowing the hot pressing device and the dispensing device to move to the outside on the left and right base plates, facilitating disassembly and maintenance.
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Description

Technical Field

[0001] This utility model relates to the field of tag composite technology, and in particular to a drug traceability RFID electronic tag composite device. Background Technology

[0002] RFID electronic tags have a wide range of applications, typically including: animal microchips, access control, air parcel identification, document tracking and management, parcel tracking and identification, animal husbandry, logistics management, mobile commerce, product anti-counterfeiting, sports timing, ticket management, car chip anti-theft devices, parking management, production line automation, and material management.

[0003] However, the RFID electronic tag lamination process simply involves placing different materials inside the equipment for dispensing and hot pressing to achieve lamination. Prolonged use of electronic tag lamination equipment can easily lead to damage. Damage requires complete disassembly and repair, which can disrupt production schedules. Furthermore, the equipment cannot be quickly moved outside for easy maintenance. Installing other equipment requires finding suitable mounting positions on both sides of the main unit, which is difficult due to the inability to quickly install other equipment on the sides and adjust the mounting position according to the height of the installed equipment. Therefore, this application provides a pharmaceutical traceability RFID electronic tag lamination device to meet these needs. Utility Model Content

[0004] The purpose of this invention is to solve the problems of quickly moving damaged equipment to the outside for easy maintenance by workers, quickly installing other equipment on both sides of the existing equipment, and adjusting the installation position according to the height of the equipment being installed.

[0005] To achieve the above objectives, this utility model provides the following technical solution: It includes a left base plate, with a right base plate on one side of the left base plate. A right extension plate is slidably connected to the lower surface of the right base plate. A right motor is inserted inside the right base plate, and a right lead screw is inserted at one end of the right motor. A right mounting plate is slidably connected to the upper surface of the right base plate. A left extension plate is slidably connected to the lower surface of the left base plate. A left motor is inserted inside the left base plate, and a left lead screw is inserted at one end of the left motor. A left mounting plate is slidably connected to the upper surface of the left base plate. A hot pressing device is provided on the upper surface of the left mounting plate. A connecting component is inserted to one side of the hot pressing device. A dispensing device is sleeved at one end of the connecting component. A hot pressing motor is inserted inside one side of the hot pressing device, and a hot pressing lead screw is inserted at one end of the hot pressing motor. A left docking component is slidably connected to one side of the hot pressing device. A dispensing motor is inserted inside one side of the dispensing device, and a dispensing lead screw is inserted at one end of the dispensing motor. A right docking component is slidably connected to one side of the dispensing device.

[0006] Preferably, the connecting assembly includes an adhesive connecting chamber, a connecting slider, a hot-press connecting chamber, and a connecting bolt. The connecting slider is inserted into one side of the adhesive connecting chamber, the hot-press connecting chamber is slidably connected to the surface of the connecting slider, and the connecting bolt is threaded through one side of the hot-press connecting chamber.

[0007] Preferably, the hot-press connection chamber has a connection groove on the side near the dispensing connection chamber, a connection slider is slidably connected inside the connection groove, and a connection threaded hole is provided on one side of the connection slider.

[0008] Preferably, the left docking assembly includes a left shaft seat, a left docking plate, a left bolt, and a left threaded hole. The left shaft seat is rotatably connected to the left docking plate. The left bolt is threaded through one side of the left shaft seat, and the left docking plate has a left threaded hole on one side.

[0009] Preferably, the right docking assembly includes a right shaft seat, a right docking plate, a right bolt, and a right threaded hole. The right shaft seat is rotatably connected to the right docking plate. A right bolt is threaded through one side of the right shaft seat, and a right threaded hole is provided on one side of the right docking plate.

[0010] Preferably, the upper surface of the left base plate is provided with a left sliding groove, the lower surface of the left mounting plate is provided with a left base plate slider, the left base plate slider is slidably connected inside the left sliding groove, a left motor is inserted inside the left sliding groove, and a left lead screw passes through the internal thread of the left base plate slider.

[0011] Preferably, the upper surface of the right base plate is provided with a right sliding groove, the lower surface of the right mounting plate is provided with a right base plate slider, the right base plate slider is slidably connected inside the right sliding groove, a right motor is inserted inside the right sliding groove, and a right lead screw passes through the internal thread of the right base plate slider.

[0012] Preferably, a hot pressing device is mounted on the upper surface of the left mounting plate via left plate bolts, and an adhesive dispensing device is mounted on the upper surface of the right mounting plate via right plate bolts.

[0013] Preferably, a hot pressing groove is provided on one side of the hot pressing device, a left docking slider is provided on one side of the left docking assembly, the left docking slider is slidably connected inside the hot pressing groove, a hot pressing motor is inserted inside the hot pressing groove, and a hot pressing screw is threaded through the inside of the left docking slider.

[0014] Preferably, a dispensing groove is provided on one side of the dispensing device, a right docking slider is provided on one side of the right docking assembly, the right docking slider is slidably connected inside the dispensing groove, a dispensing motor is inserted inside the dispensing groove, and the internal thread of the right docking slider passes through a dispensing screw.

[0015] The beneficial effects of this utility model are as follows: (1) This utility model uses left plate bolts to install and remove the hot pressing equipment on the left mounting plate, and right plate bolts to install and remove the dispensing equipment on the right mounting plate. The right motor moves the right mounting plate on the right base plate, and the right mounting plate drives the dispensing equipment to move on the right base plate. The left motor moves the left mounting plate on the left base plate, and the left mounting plate drives the hot pressing equipment to move on the left base plate. Rotating the connecting bolts releases the restriction of the connecting bolts on the dispensing connection chamber and the hot pressing connection chamber. When the hot pressing equipment and the dispensing equipment move, the connecting slider on one side of the dispensing connection chamber slides in the connecting groove on one side of the hot pressing connection chamber. When the dispensing equipment and the hot pressing equipment are damaged and need to be repaired, the hot pressing equipment and the dispensing equipment can be moved to the outside on the left base plate and the right base plate, which facilitates the quick disassembly and repair of the equipment.

[0016] (2) This utility model opens by rotating the left docking plate in the left shaft seat, and the left bolt is screwed into the left threaded hole on the left docking plate through the left shaft seat to fix it in the left shaft seat. The hot press motor moves the left docking assembly on one side of the hot press equipment to adjust the height. The left extension plate is pulled to extend the left extension plate on the left bottom plate side. The right docking plate opens by rotating in the right shaft seat, and the right bolt is screwed into the right threaded hole on the right docking plate through the right shaft seat to fix it in the right shaft seat. The glue dispensing motor moves the right docking assembly on one side of the glue dispensing equipment to adjust the height, and the right extension plate is pulled to extend the right bottom plate side. When installing the equipment, the feeding equipment and the winding equipment can be installed quickly on both sides of the hot press equipment and the glue dispensing equipment, and the installation position can be quickly adjusted according to the height of the feeding equipment and the winding equipment.

[0017] In summary, this utility model has the advantages of allowing for the rapid installation of feeding equipment on both sides of the hot pressing equipment and dispensing equipment during installation, and enabling the hot pressing equipment and dispensing equipment to be moved to the outside on the left and right base plates when the dispensing equipment and hot pressing equipment are damaged and need repair, thus facilitating quick and easy disassembly and repair of the equipment. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the exploded structure of the left bottom plate; Figure 3 This is a schematic diagram of the connecting component structure; Figure 4 This is a schematic diagram of the exploded structure of the dispensing connection chamber; Figure 5 This is a schematic diagram of the exploded structure of a hot pressing device; Figure 6 This is a schematic diagram of the exploded structure of the left docking plate; Figure 7 This is a schematic diagram of the exploded structure of a dispensing device; Figure 8This is a schematic diagram of the exploded structure of the right docking plate.

[0019] In the diagram: 1. Left base plate; 2. Right base plate; 3. Right extension plate; 4. Right motor; 5. Right lead screw; 6. Right mounting plate; 7. Left extension plate; 8. Left motor; 9. Left lead screw; 10. Left mounting plate; 11. Hot press equipment; 12. Connecting assembly; 121. Dispensing connection chamber; 122. Connecting slider; 123. Hot press connection chamber; 124. Connecting bolt; 13. Dispensing equipment; 14. Hot press motor; 15. Hot press lead screw; 16. Left docking assembly; 161. Left shaft seat; 162. Left docking plate; 163. Left bolt; 164. Left threaded hole; 17. Dispensing motor; 18. Dispensing lead screw; 19. Right docking assembly; 191. Right shaft seat; 192. Right docking plate; 193. Right bolt; 194. Right threaded hole. Detailed Implementation

[0020] 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.

[0021] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", 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 component 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.

[0022] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0023] Example 1 As Figures 1 to 8As shown, an embodiment of this utility model provides a drug traceability RFID electronic tag composite device, including a left base plate 1, a right base plate 2 on one side of the left base plate 1, a right extension plate 3 slidably connected to the lower surface of the right base plate 2, a right motor 4 inserted inside the right base plate 2, a right lead screw 5 inserted at one end of the right motor 4, a right mounting plate 6 slidably connected to the upper surface of the right base plate 2, a right sliding groove formed on the upper surface of the right base plate 2, a right base plate slider on the lower surface of the right mounting plate 6, a right base plate slider slidably connected inside the right sliding groove, a right motor 4 inserted inside the right sliding groove, and a right lead screw 5 threaded through the internal thread of the right base plate slider, a left extension plate 7 slidably connected to the lower surface of the left base plate 1, a left motor 8 inserted inside the left base plate 1, and a right lead screw 5 inserted at one end of the left motor 8. A left lead screw 9 is connected to the left base plate 1. A left mounting plate 10 is slidably connected to the upper surface of the left base plate 1. A left sliding groove is formed on the upper surface of the left base plate 1. A left base plate slider is provided on the lower surface of the left mounting plate 10. The left base plate slider is slidably connected inside the left sliding groove. A left motor 8 is inserted into the left sliding groove. The left lead screw 9 passes through the internal thread of the left base plate slider. A hot press device 11 is provided on the upper surface of the left mounting plate 10. A connecting assembly 12 is inserted into one side of the hot press device 11. The connecting assembly 12 includes a dispensing connecting chamber 121, a connecting slider 122, a hot press connecting chamber 123, and a connecting bolt 124. A connecting slider 122 is inserted into one side of the dispensing connecting chamber 121. The hot press connecting chamber 123 is slidably connected to the surface of the connecting slider 122. The hot press connecting chamber 123 is threaded on one side. A connecting bolt 124 passes through the hot-press connecting chamber 123. A connecting groove is provided on the side of the hot-press connecting chamber 123 near the dispensing connecting chamber 121. A connecting slider 122 is slidably connected inside the connecting groove. A connecting threaded hole is provided on one side of the connecting slider 122. One end of the connecting assembly 12 is fitted with a dispensing device 13. A hot-press device 11 is mounted on the upper surface of the left mounting plate 10 via a left plate bolt. A dispensing device 13 is mounted on the upper surface of the right mounting plate 6 via a right plate bolt. A hot-press motor 14 is inserted into the interior of one side of the hot-press device 11. A hot-press screw 15 is inserted into one end of the hot-press motor 14. A hot-press groove is provided on one side of the hot-press device 11. A left docking slider is provided on one side of the left docking assembly 16. The left docking slider is slidably connected inside the hot-press groove. A hot press motor 14 is inserted into the device. A hot press screw 15 passes through the internal thread of the left docking slider. A left docking assembly 16 is slidably connected to one side of the hot press device 11. The left docking assembly 16 includes a left shaft seat 161, a left docking plate 162, a left bolt 163, and a left threaded hole 164. The left shaft seat 161 is rotatably connected to the left docking plate 162. The left bolt 163 passes through the thread of one side of the left shaft seat 161. A left threaded hole 164 is opened on one side of the left docking plate 162. A dispensing motor 17 is inserted into one side of the dispensing device 13. A dispensing screw 18 is inserted into one end of the dispensing motor 17. A dispensing groove is opened on one side of the dispensing device 13. A right docking slider is provided on one side of the right docking assembly 19. The right docking slider is slidably connected inside the dispensing groove.A dispensing motor 17 is inserted into the dispensing chute. A dispensing screw 18 passes through the internal thread of the right docking slider. A right docking assembly 19 is slidably connected to one side of the dispensing device 13. The right docking assembly 19 includes a right shaft seat 191, a right docking plate 192, a right bolt 193, and a right threaded hole 194. The right shaft seat 191 is rotatably connected to the right docking plate 192. A right bolt 193 passes through the thread on one side of the right shaft seat 191. A right threaded hole 194 is provided on one side of the right docking plate 192.

[0024] The hot press device 11 is installed and removed from the left mounting plate 10 by rotating the left plate bolt, and the dispensing device 13 is installed and removed from the right mounting plate 6 by rotating the right plate bolt. The right motor 4 drives the right lead screw 5 to rotate, causing the right mounting plate 6 to move on the right base plate 2. The movement of the right mounting plate 6 causes the dispensing device 13 to move on the right base plate 2. The left motor 8 drives the left lead screw 9 to rotate, causing the left mounting plate 10 to move on the left base plate 1. The movement of the left mounting plate 10 causes the hot press device 11 to move on the left base plate 1. The connection bolt 124 is rotated to release the connection between the dispensing connection chamber 121 and the left base plate 121. The limitation of the hot press connection chamber 123 allows the connecting slider 122 on one side of the dispensing connection chamber 121 to slide within the connecting groove on one side of the hot press connection chamber 123 when the hot press equipment 11 is moved by the left mounting plate 10 and the dispensing equipment 13 by the right mounting plate 6. When the dispensing equipment 13 and the hot press equipment 11 are damaged and need repair, the hot press equipment 11 on the left mounting plate 10 and the dispensing equipment 13 on the right mounting plate 6 can be quickly moved to the outside on the left base plate 1 and the right base plate 2, thus facilitating quick disassembly and repair of the equipment. During repair, only the faulty equipment needs to be operated, without the need for overall disassembly, which significantly shortens the maintenance time and reduces labor costs.

[0025] Rotating the left docking plate 162 opens it within the left shaft seat 161. Rotating the left bolt 163 screws it into the left threaded hole 164 on the left docking plate 162 through the left shaft seat 161, fixing the left docking plate 162 back into the left shaft seat 161 after opening. The hot press motor 14 drives the hot press screw 15 to rotate, allowing the left docking assembly 16 to move up and down on one side of the hot press equipment 11 to adjust its height. Pulling the left extension plate 7 extends it out on the left base plate 1. Rotating the right docking plate 192 opens it within the right shaft seat 191. Rotating the right bolt 193 screws it into the right threaded hole on the right docking plate 192 through the right shaft seat 191. Within 194, the right docking plate 192 is fixed inside the right shaft seat 191 after opening. The dispensing motor 17 drives the dispensing screw 18 to rotate, causing the right docking assembly 19 to move up and down on one side of the dispensing equipment 13 to adjust its height. By pulling the right extension plate 3, the right extension plate 3 is extended on one side of the right base plate 2. Thus, during equipment installation, the feeding equipment and winding equipment can be quickly installed on both sides of the hot pressing equipment 11 and the dispensing equipment 13. The installation position can also be quickly adjusted according to the height of the feeding equipment and winding equipment. The compact layout can reduce the intersection of logistics paths in the workshop, reduce consumption and transportation costs. Centralized feeding and recycling can also reduce repeated handling and improve space utilization. The scientific layout can reduce equipment interference and personnel misoperation, and reduce the risk of accidents.

[0026] Work steps Step 1: The worker rotates the left plate bolt to install and remove the hot press equipment 11 on the left mounting plate 10. The worker rotates the right plate bolt to install and remove the dispensing equipment 13 on the right mounting plate 6. The right motor 4 is started, driving the right lead screw 5 to rotate, causing the right mounting plate 6 to move on the right base plate 2. The movement of the right mounting plate 6 also moves the dispensing equipment 13 on the right base plate 2. The left motor 8 is started, driving the left lead screw 9 to rotate, causing the left mounting plate 10 to move on the left base plate 1. The movement of the left mounting plate 10 moves the hot press equipment 11 on the left base plate 1. This is achieved by rotating the connecting screw... Bolt 124 releases the restriction of connecting bolt 124 on dispensing connection chamber 121 and hot press connection chamber 123. When the hot press device 11 is moved by the left mounting plate 10 and the dispensing device 13 is moved by the right mounting plate 6, the connecting slider 122 on one side of the dispensing connection chamber 121 slides in the connecting groove on one side of the hot press connection chamber 123. When the dispensing device 13 and the hot press device 11 are damaged and need to be repaired, the hot press device 11 on the left mounting plate 10 and the dispensing device 13 on the right mounting plate 6 can be quickly moved to the outside on the left base plate 1 and the right base plate 2, which facilitates quick disassembly and repair of the equipment.

[0027] Step 2: The worker rotates the left docking plate 162 to open it within the left shaft seat 161. The left bolt 163 is then screwed into the left threaded hole 164 on the left docking plate 162 through the left shaft seat 161, fixing the left docking plate 162 back into the left shaft seat 161 after opening. The hot press motor 14 is started, driving the hot press screw 15 to rotate, causing the left docking assembly 16 to move up and down on one side of the hot press equipment 11 to adjust its height. The left extension plate 7 is pulled out and extended on the left base plate 1 side by pulling it. The right docking plate 192 is rotated to... 2. Rotate and open the right shaft seat 191. Rotate the right bolt 193 to screw the right bolt 193 into the right threaded hole 194 on the right docking plate 192 through the right shaft seat 191. After opening, the right docking plate 192 is fixed in the right shaft seat 191. Start the dispensing motor 17 to drive the dispensing screw 18 to rotate, so that the right docking assembly 19 can be moved up and down on one side of the dispensing equipment 13 to adjust its height. Pull the right extension plate 3 to extend it on one side of the right base plate 2. When installing the equipment, the feeding equipment and winding equipment can be quickly installed on both sides of the hot pressing equipment 11 and the dispensing equipment 13.

[0028] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A medicine traceability RFID electronic tag composite device comprising a left bottom plate, characterized in that, A right base plate is provided on one side of the left base plate. A right extension plate is slidably connected to the lower surface of the right base plate. A right motor is inserted inside the right base plate, and a right lead screw is inserted at one end of the right motor. A right mounting plate is slidably connected to the upper surface of the right base plate. A left extension plate is slidably connected to the lower surface of the left base plate. A left motor is inserted inside the left base plate, and a left lead screw is inserted at one end of the left motor. A left mounting plate is slidably connected to the upper surface of the left base plate. A hot pressing device is provided on the upper surface of the left mounting plate. A connecting component is inserted to one side of the hot pressing device. A dispensing device is sleeved at one end of the connecting component. A hot pressing motor is inserted inside one side of the hot pressing device, and a hot pressing lead screw is inserted at one end of the hot pressing motor. A left docking component is slidably connected to one side of the hot pressing device. A dispensing motor is inserted inside one side of the dispensing device, and a dispensing lead screw is inserted at one end of the dispensing motor. A right docking component is slidably connected to one side of the dispensing device.

2. The drug traceability RFID electronic tag composite device according to claim 1, characterized in that, The connecting assembly includes an adhesive connecting chamber, a connecting slider, a hot-press connecting chamber, and a connecting bolt. The connecting slider is inserted into one side of the adhesive connecting chamber, and the hot-press connecting chamber is slidably connected to the surface of the connecting slider. The connecting bolt is threaded through one side of the hot-press connecting chamber.

3. The drug traceability RFID electronic tag composite device according to claim 2, characterized in that, A connecting groove is provided on the side of the hot-press connecting chamber near the dispensing connecting chamber. A connecting slider is slidably connected inside the connecting groove, and a connecting threaded hole is provided on one side of the connecting slider.

4. The drug traceability RFID electronic tag composite device according to claim 1, characterized in that, The left docking assembly includes a left shaft seat, a left docking plate, a left bolt, and a left threaded hole. The left shaft seat is rotatably connected to the left docking plate. The left bolt is threaded through one side of the left shaft seat, and the left docking plate has a left threaded hole on one side.

5. The drug traceability RFID electronic tag composite device according to claim 1, characterized in that, The right docking assembly includes a right shaft seat, a right docking plate, a right bolt, and a right threaded hole. The right shaft seat is rotatably connected to the right docking plate. A right bolt is threaded through one side of the right shaft seat, and a right threaded hole is provided on one side of the right docking plate.

6. The drug traceability RFID electronic tag composite device according to claim 1, characterized in that, The upper surface of the left base plate is provided with a left sliding groove, the lower surface of the left mounting plate is provided with a left base plate slider, the left base plate slider is slidably connected inside the left sliding groove, the left motor is inserted inside the left sliding groove, and the left lead screw is threaded through the inside of the left base plate slider.

7. The drug traceability RFID electronic tag composite device according to claim 1, characterized in that, The upper surface of the right base plate is provided with a right sliding groove, the lower surface of the right mounting plate is provided with a right base plate slider, the right base plate slider is slidably connected inside the right sliding groove, a right motor is inserted inside the right sliding groove, and a right lead screw passes through the internal thread of the right base plate slider.

8. The drug traceability RFID electronic tag composite device according to claim 1, characterized in that, A hot pressing device is mounted on the upper surface of the left mounting plate via left plate bolts, and an adhesive dispensing device is mounted on the upper surface of the right mounting plate via right plate bolts.

9. The drug traceability RFID electronic tag composite device according to claim 1, characterized in that, A hot pressing groove is provided on one side of the hot pressing equipment, and a left docking slider is provided on one side of the left docking assembly. The left docking slider is slidably connected inside the hot pressing groove. A hot pressing motor is inserted inside the hot pressing groove, and a hot pressing screw is threaded through the inside of the left docking slider.

10. The drug traceability RFID electronic tag composite device according to claim 1, characterized in that, The dispensing device has a dispensing groove on one side, and a right docking slider is provided on one side of the right docking assembly. The right docking slider is slidably connected inside the dispensing groove. A dispensing motor is inserted inside the dispensing groove, and the internal thread of the right docking slider passes through a dispensing screw.