An electronic tag production inspection device and an inspection method
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- CHINA COMMERCE NETWORKS (SHANGHAI) CO LTD
- Filing Date
- 2022-10-31
- Publication Date
- 2026-07-24
Smart Images

Figure CN115688839B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of information product technology, specifically to an electronic tag production inspection device and inspection method. Background Technology
[0002] Electronic tags are radio frequency tags and data carriers, and are extremely common in daily life. When electronic tags are produced, the validity of their information needs to be tested.
[0003] Existing electronic tag detection devices mostly use readers and antennas to detect tags. After detection, unqualified electronic tags are marked as waste. There are two types of operation: intermittent and continuous. Intermittent detection method has lower cost but lower efficiency. Continuous detection device has higher detection efficiency than intermittent detection method, but it can often only perform single-row detection operation, and the equipment cost is large, making it extremely inconvenient to use. Summary of the Invention
[0004] The purpose of this invention is to provide an electronic tag production inspection device and inspection method to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: an electronic tag production and inspection device, the electronic tag production and inspection device comprising:
[0006] A circular pressing and cutting machine, wherein a support assembly is horizontally mounted on one side of the circular pressing and cutting machine by several bolts, and the support assembly includes a mounting plate and a support plate;
[0007] The bottom film is horizontally placed on a pallet by a circular pressing and cutting machine on one side, and four rows of electronic tags are symmetrically arranged on the bottom film;
[0008] Four sensing components are symmetrically arranged on the mounting plate near the four rows of electronic tags, and each sensing component includes a photoelectric sensor and a reader / writer.
[0009] Four adaptation components are respectively disposed on the side of the mounting plate near the reader, and each adaptation component includes a movable base and a movable column;
[0010] A marking component, wherein the marking component is disposed at the lower end of the movable column via a rotating component, and the marking component includes a marking pen;
[0011] The synchronization component is located on the upper end of the mounting plate and includes two synchronization rollers and four control belts, with the four control belts respectively corresponding to the movable seat of the lead screw.
[0012] Preferably, several support columns are vertically arranged on both sides between the mounting plate and the tray, and four placement racks are symmetrically arranged at the lower end of the mounting plate. Four photoelectric sensors are horizontally inserted into the four placement racks respectively, and the sensing heads of the photoelectric sensors are set to point towards the electronic tag.
[0013] Preferably, the four readers are symmetrically arranged on one side of the upper end of the mounting plate, and each reader is connected to a detection antenna. A positioning frame is vertically arranged on one side of the lower end of the mounting plate, and one side of each detection antenna passes through the mounting plate and the positioning frame and points to the electronic tag.
[0014] Preferably, the mounting plate has four symmetrically arranged movable slots on its upper end. Two guide rods are arranged horizontally and symmetrically on both sides of the four movable slots. The four movable seats are respectively placed in the four movable slots and movably connected to the guide rods. A first spring is sleeved on one side of each guide rod. A spring groove is opened at the upper center of the movable seat. The upper end of the movable column passes through the lower end of the movable seat and is inserted into the spring groove. The upper end of the movable column is provided with a conical head in the spring groove. A ball is movably inserted into the upper end of the conical head. A second spring is sleeved on the side of the movable column in the spring groove.
[0015] Preferably, the lower end of the movable seat is vertically symmetrically provided with two directional rods, the upper end of the movable column is horizontally provided with a directional plate, the two directional rods are movably sleeved on both sides of the directional plate, the lower end of the movable column is provided with a bearing groove, the rotating assembly includes a rotating disk, the upper end of the rotating disk is movably inserted into the lower end of the bearing groove through a bearing, the rotating disk is eccentrically provided with a mounting hole, the marking pen is vertically interference-fitted into the mounting hole, and the marking pen is set to point towards the electronic tag.
[0016] Preferably, the rotating disk is provided with a plurality of first actuating teeth symmetrically on the outer circumference of the side outside the movable column, and the lower end of the mounting plate is provided with an inclined plate on the side near the movable column. The inclined plate is provided with a plurality of second actuating teeth symmetrically on the side near the rotating disk, and the first actuating teeth on the side of the rotating disk are engaged with the second actuating teeth on the side of the inclined plate.
[0017] Preferably, the mounting plate has vertically symmetrical support plates on both sides of its upper end, and two synchronous rollers are horizontally symmetrically arranged on both sides between the two support plates through the central axis. Four control belts are respectively sleeved on the two support plates. Several first synchronous teeth are symmetrically arranged on both sides of the control belts. Several second synchronous teeth are symmetrically arranged on both sides of the upper end of the movable seat. The upper ends of the several second synchronous teeth are respectively meshed with several first synchronous teeth on one side, and the upper ends of the balls are in contact with the control belt on one side.
[0018] Preferably, the two support plates are provided with a horizontal plate at the upper end near the movable groove. The control belt is sleeved on the horizontal plate. Four pressure plates are provided horizontally and symmetrically near the lower side of the horizontal plate. Four pushing cylinders are provided symmetrically at the upper end of each pressure plate. The upper ends of the four pushing cylinders are respectively connected to the lower end of the horizontal plate. Several roller grooves are symmetrically opened at the lower end of the pressure plates. Rotating rollers are horizontally and movably inserted into the several roller grooves. The lower ends of the several rotating rollers are respectively pressed and contacted with one side of the control belt.
[0019] Preferably, a leveling roller is horizontally provided on one side of the upper end of the pallet via a support bearing and a central shaft. Synchronous pulleys are sleeved on both sides of the central shaft of the leveling roller and the central shaft of the synchronous roller on one side, and a synchronous belt is connected between two adjacent synchronous pulleys on one side.
[0020] An electronic tag production inspection method, wherein the electronic tag production inspection method is applied to the above-mentioned electronic tag production inspection device, includes the following steps:
[0021] Step 1: The base film is cut into four columns of independent electronic tags using a rotary cutting machine, with a certain gap between each independent electronic tag.
[0022] Step 2: When the drive unit drives the leveling roller and other winding devices to wind and pull the bottom film, the four rows of electronic tags pass through the photoelectric sensor, detection antenna and marking pen in sequence;
[0023] Step 3: When the photoelectric sensor points to the gap between two adjacent electronic tags, the detection antenna simultaneously points to the gap between two adjacent electronic tags on the other side, and the marker pen points to the center of one electronic tag. When the photoelectric sensor detects the gap signal, it activates the detection antenna to sense the EPC and TID numbers of the electronic tags and transmits them to the industrial control computer through the reader / writer for recording and storage. The photoelectric sensor moves from one gap to another, which is one detection cycle, and the detection antenna performs one sensing cycle simultaneously.
[0024] Step 4: If the detection antenna fails to detect the EPC and TID numbers of the electronic tag within the sequential sensing cycle, the PLC control system will issue a start command to the push cylinder, pushing the pressure plate to squeeze the control belt, so that the first synchronous teeth on both sides mesh with the second synchronous teeth of the movable seat, and at the same time push the movable column downward, so that the lower end of the marker pen contacts the electronic tag.
[0025] Step 5: Then, under the action of the synchronous pulley, the control belt moves synchronously with the bottom film, and the movable seat moves synchronously with the control belt. During the movement, the rotating disk contacts the actuating teeth of the inclined plate, and the control belt rotates together with the marking pen, so that the marking pen draws a circle mark on the top of the electronic tag, realizing the waste marking operation without contaminating other electronic tags.
[0026] Step Six: After a single operation is completed, the pressure plate rises, and the movable column, under the action of the ball bearings and the second spring, lifts the control belt, causing the first synchronous tooth to move away from the second synchronous tooth. The movable seat, under the action of the first spring, returns to its original position, waiting for the next command.
[0027] Compared with the prior art, the beneficial effects of the present invention are:
[0028] By installing a support assembly for this detection device on one side of the rotary cutting machine, and then setting four sets of sensing and marking components on the support assembly, the device can perform separate detection operations on the four columns when the electronic tag is detected and cut into four columns. This can simultaneously meet both intermittent and continuous detection modes. At the same time, the marking components are controlled by the adaptation and synchronization components, thereby completing the rapid marking operation of the electronic tag. The structure has a low cost and the marking is clear. Attached Figure Description
[0029] Figure 1 This is a schematic diagram of the structure of the present invention;
[0030] Figure 2 This is a partial side sectional view of the structure of the present invention;
[0031] Figure 3 This is a schematic diagram of the electronic tag arrangement structure of the present invention;
[0032] Figure 4 This is a schematic diagram of the mounting plate structure of the present invention;
[0033] Figure 5 This is a schematic diagram showing the arrangement of the sensing component and the marking component of the present invention;
[0034] Figure 6 This is a schematic diagram of the marking pen control structure of the present invention;
[0035] Figure 7 This is a schematic diagram of the control strip connection of the present invention.
[0036] In the diagram: 1. Circular pressing and cutting machine; 2. Mounting plate; 3. Support plate; 4. Bottom film; 5. Electronic tag; 6. Leveling roller; 7. Photoelectric sensor; 8. Reader / writer; 9. Positioning frame; 10. Detection antenna; 11. Movable groove; 12. Guide rod; 13. Movable seat; 14. Movable column; 15. Ball bearing; 16. Marking pen; 17. Support plate; 18. Synchronous roller; 19. Synchronous pulley; 20. Synchronous belt; 21. Control belt; 22. First synchronous tooth; 23. Second synchronous tooth; 24. Push cylinder; 25. Pressure plate; 26. Rotating roller rod; 28. Orientation plate; 29. Inclined plate; 31. Rotating disk. Detailed Implementation
[0037] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0038] Please see the appendix Figure 1-7 This application provides the following five preferred embodiments.
[0039] Example 1
[0040] An electronic tag production and inspection device, comprising:
[0041] A circular pressing and cutting machine 1 has a support assembly horizontally mounted on one side by several bolts, and the support assembly includes a mounting plate 2 and a support plate 3;
[0042] The bottom film 4 is horizontally inserted through the circular pressing and cutting machine 1 on one side and placed on the pallet 3. Four rows of electronic tags 5 are symmetrically arranged on the bottom film 4.
[0043] Four sensing components are symmetrically arranged on the mounting plate 2 near the four rows of electronic tags 5. Each sensing component includes a photoelectric sensor 7 and a reader 8. Several support columns are vertically arranged on both sides between the mounting plate 2 and the support plate 3. Four placement racks are symmetrically arranged at the lower end of the mounting plate 2. The four photoelectric sensors 7 are horizontally inserted into the four placement racks, and the sensing heads of the photoelectric sensors 7 are pointed towards the electronic tags 5. Four readers 8 are symmetrically arranged on the upper side of the mounting plate 2. Each reader 8 is connected to a detection antenna 10 on one side. A positioning frame 9 is vertically arranged on the lower side of the mounting plate 2. Several detection antennas 10 are respectively inserted through the mounting plate 2 and the positioning frame 9 and pointed towards the electronic tags 5.
[0044] Four adaptation components are respectively located on the side of the mounting plate 2 near the reader 8. Each adaptation component includes a movable seat 13 and a movable column 14. The upper end of the mounting plate 2 is symmetrically provided with four movable slots 11. Two guide rods 12 are horizontally symmetrically provided on both sides of the four movable slots 11. The four movable seats 13 are respectively placed in the four movable slots 11 and movably sleeved with the guide rods 12. A first spring is sleeved on one side of each guide rod 12. A spring groove is provided at the upper center of the movable seat 13. The upper end of the movable column 14 passes through the lower end of the movable seat 13 and is inserted into the spring groove. The upper end of the movable column 14 is provided with a conical head. A ball bearing 15 is movably inserted into the upper end of the conical head. A second spring is sleeved on one side of the movable column 14 in the spring groove.
[0045] The marking component is located at the lower end of the movable column 14 via a rotating component, and includes a marking pen 16. Two directional rods are vertically and symmetrically arranged at the lower end of the movable seat 13. A directional plate 28 is horizontally arranged at the upper end of the movable column 14. Two directional rods are movably sleeved on both sides of the directional plate 28. A bearing groove is opened at the lower end of the movable column 14. The rotating component includes a rotating disk 31. The upper end of the rotating disk 31 is movably inserted into the lower end of the bearing groove via a bearing.
[0046] The synchronization assembly is located on the upper end of the mounting plate 2 and includes two synchronization rollers 18 and four control belts 21. The four control belts 21 are respectively arranged corresponding to the lead screw movable seat 13. The rotating disk 31 is located on the outer circumference of the movable column 14 and has a number of first actuating teeth symmetrically arranged. The lower end of the mounting plate 2 is inclined with inclined plates 29 on the side near the movable column 14. The inclined plates 29 are symmetrically arranged with a number of second actuating teeth on the side near the rotating disk 31. The first actuating teeth on the side of the rotating disk 31 mesh with the second actuating teeth on the side of the inclined plates 29. The mounting plate 2 is vertically and symmetrically provided with support plates 17 on both sides of its upper end. Two synchronous rollers 18 are horizontally and symmetrically provided on both sides between the two support plates 17 through the central axis. Four control belts 21 are respectively sleeved on the two support plates 17. Several first synchronous teeth 22 are symmetrically provided on both sides of the control belts 21. Several second synchronous teeth 23 are symmetrically provided on both sides of the upper end of the movable seat 13. The upper ends of the several second synchronous teeth 23 are respectively engaged and connected with several first synchronous teeth 22 on one side. The upper end of the ball bearing 15 is in contact with the control belt 21 on one side.
[0047] An electronic tag production inspection method, applied to the aforementioned electronic tag production inspection device, includes the following steps:
[0048] Step 1: The base film 4 is cut into four columns of several independent electronic tags 5 by the half-cutting method of the rotary cutting machine 1, and a certain gap is maintained between the several independent electronic tags 5.
[0049] Step 2: When the drive device drives the leveling roller 6 and other winding devices to wind and pull the bottom film 4, the four rows of electronic tags 5 pass through the photoelectric sensor 7, the detection antenna 10 and the marking pen 16 in sequence.
[0050] Step 3: When the photoelectric sensor 7 points to the gap between two adjacent electronic tags 5, the detection antenna 10 simultaneously points to the gap between two adjacent electronic tags 5 on the other side, and the marker pen 16 points to the center of one electronic tag 5. When the photoelectric sensor 7 detects the gap signal, the detection antenna 10 is activated to sense the EPC and TID numbers of the electronic tags 5, and transmits them to the industrial control computer through the reader 8 for recording and storage. The photoelectric sensor 7 moves from one gap to another, which is one detection process, and the detection antenna 10 performs one sensing cycle simultaneously.
[0051] Step 4: If the detection antenna 10 detects the EPC and TID numbers of the electronic tag 5 within the sequential sensing cycle, the PLC control system issues a start command to the push cylinder 24, which pushes the pressure plate 25 to squeeze the control belt 21, so that the first synchronous teeth 22 on both sides mesh with the second synchronous teeth 23 of the movable seat 13, and at the same time pushes the movable column 14 downward, so that the lower end of the marker pen 16 contacts the electronic tag 5.
[0052] Step 5: Then, under the action of the synchronous pulley 19, the control belt 21 moves synchronously with the bottom film 4, and the movable seat 13 moves synchronously with the control belt 21. During the movement, the rotating disk 31 contacts the actuating teeth of the inclined plate 29, and the control belt 21 rotates together with the marking pen 16, so that the marking pen 16 draws a circle mark on the upper end of the electronic tag 5, realizing the waste marking operation, and will not contaminate other electronic tags 5.
[0053] Step Six: After a single operation is completed, the pressure plate 25 rises, and the movable column 14, under the action of the ball bearing 15 and the second spring, lifts the control belt 21, causing the first synchronous tooth 22 to move away from the second synchronous tooth 23. The movable seat 13, under the action of the first spring, returns to its original position, waiting for the next use command.
[0054] Example 2
[0055] Based on Embodiment 1, the rotating disk 31 has an eccentric mounting hole, and the marking pen 16 is vertically inserted into the mounting hole with an interference fit. The marking pen 16 is positioned pointing towards the electronic tag 5. When the rotating disk 31 rotates, the marking pen 16 can perform a circle drawing operation.
[0056] Example 3
[0057] Based on Embodiment 2, two support plates 17 are horizontally provided on the upper end of the side near the movable groove 11. The control belt 21 is sleeved on the horizontal plate. Four pressure plates 25 are horizontally and symmetrically provided near the lower side of the horizontal plate. Four push cylinders 24 are symmetrically provided on the upper end of each pressure plate 25. The upper ends of the four push cylinders 24 are respectively connected to the lower end of the horizontal plate to drive the marker pen 16 to descend and to achieve a stable connection between the first synchronous gear 22 and the second synchronous gear 23.
[0058] Example 4
[0059] Based on Embodiment 3, several roller grooves are symmetrically opened at the lower end of the pressure plate 25, and a self-rotating roller rod 26 is horizontally and movably inserted into each of the roller grooves. The lower ends of the roller rods 26 are respectively pressed and contacted with one side of the control belt 21 to avoid excessive wear between the control belt 21 and the pressure plate 25.
[0060] Example 5
[0061] Based on Embodiment 4, a leveling roller 6 is horizontally provided on one side of the upper end of the tray 3 via a support bearing and a central shaft. Synchronous pulleys 19 are sleeved on both sides of the central shaft of the leveling roller 6 and the central shaft of the synchronous roller 18 on one side. A synchronous belt 20 is connected between two adjacent synchronous pulleys 19 on one side. The drive control belt 21 moves synchronously with the bottom film 4, so that the marking pen 16 can be clearly applied when marking.
[0062] In use, the base film 4 is cut into four columns of independent electronic tags 5 by the circular cutting machine 1 using a half-cutting method. A certain gap is maintained between each independent electronic tag 5. When the driving device drives the leveling roller 6 and other winding devices to wind up the base film 4, the four columns of electronic tags 5 sequentially pass through the photoelectric sensor 7, the detection antenna 10, and the marking pen 16. When the photoelectric sensor 7 points to the gap between two adjacent electronic tags 5, the detection antenna 10 simultaneously points to the gap between two adjacent electronic tags 5 on the other side, and the marking pen 16 points to the center of one electronic tag 5. When the photoelectric sensor 7 detects the gap signal, it activates the detection antenna 10 to sense the EPC and TID numbers of the electronic tags 5 and transmits them to the industrial control computer via the reader 8 for recording and storage. The photoelectric sensor 7 moves from one gap to another, constituting one detection cycle. The detection antenna 10 simultaneously performs one sensing cycle. Within each sensing cycle, the detection antenna 10 detects the electronic tag. If the EPC and TID numbers of tag 5 are obtained, the PLC control system will issue a start command to the push cylinder 24, which will push the pressure plate 25 to squeeze the control belt 21, so that the first synchronous teeth 22 on both sides mesh with the second synchronous teeth 23 of the movable seat 13. At the same time, the movable column 14 is pushed down, and the lower end of the marking pen 16 contacts the electronic tag 5. Then, under the action of the synchronous pulley 19, the control belt 21 moves synchronously with the bottom film 4, and the movable seat 13 moves synchronously with the control belt 21. During the movement, the rotating disk 31 contacts the actuating teeth of the inclined plate 29, and the control belt 21 and the marking pen 16 rotate, so that the marking pen 16 draws a circle mark on the upper end of the electronic tag 5, realizing the waste marking operation without contaminating other electronic tags 5. After a single operation is completed, the pressure plate 25 rises, and the movable column 14, under the action of the ball 15 and the second spring, lifts the control belt 21, so that the first synchronous teeth 22 move away from the second synchronous teeth 23. The movable seat 13 returns to its original position under the action of the first spring, waiting for the next use command.
[0063] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An electronic tag production and inspection device, characterized in that: The electronic tag production and inspection device includes: A circular pressing and cutting machine (1) has a support assembly horizontally mounted on one side by several bolts, and the support assembly includes a mounting plate (2) and a support plate (3). The bottom film (4) is horizontally placed on the tray (3) through the circular pressing and cutting machine (1) on one side, and four rows of electronic tags (5) are symmetrically arranged on the bottom film (4). Four sensing components are symmetrically arranged on the mounting plate (2) near the four rows of electronic tags (5), and the sensing components include photoelectric sensors (7) and readers (8). Four adaptation components are respectively disposed on the mounting plate (2) near the reader (8), and the adaptation components include a movable seat (13) and a movable column (14). The marking component is located at the lower end of the movable column (14) via a rotating component, and the marking component includes a marking pen (16). The synchronization component is located on the upper end of the mounting plate (2), and the synchronization component includes two synchronization rollers (18) and four control belts (21), and the four control belts (21) are respectively set to correspond to the movable seat (13); The mounting plate (2) and the support plate (3) are vertically supported on both sides. The mounting plate (2) is symmetrically provided with four placement racks at the lower end. Four photoelectric sensors (7) are horizontally inserted into the four placement racks respectively, and the sensing head of the photoelectric sensor (7) is set to point towards the electronic tag (5). The four readers (8) are symmetrically arranged on one side of the upper end of the mounting plate (2). Each reader (8) is connected to a detection antenna (10). A positioning frame (9) is vertically arranged on one side of the lower end of the mounting plate (2). Several detection antennas (10) are respectively arranged through the mounting plate (2) and the positioning frame (9) pointing towards the electronic tag (5). The mounting plate (2) has four symmetrical movable slots (11) on its upper end. Two guide rods (12) are horizontally symmetrically arranged on both sides of the four movable slots (11). The four movable seats (13) are respectively placed in the four movable slots (11) and movably connected to the guide rods (12). A first spring is sleeved on one side of each guide rod (12). A spring groove is opened at the upper center of the movable seat (13). The upper end of the movable column (14) passes through the movable seat (13) and the lower end is inserted into the spring groove. The upper end of the movable column (14) is provided with a conical head. A ball (15) is movably inserted into the upper end of the conical head. A second spring is sleeved on one side of the movable column (14) placed in the spring groove. The lower end of the movable seat (13) is vertically symmetrically provided with two directional rods, the upper end of the movable column (14) is horizontally provided with a directional plate (28), the two directional rods are movably sleeved on both sides of the directional plate (28), the lower end of the movable column (14) is provided with a bearing groove, the rotating assembly includes a rotating disk (31), the upper end of the rotating disk (31) is movably inserted into the lower end of the bearing groove through a bearing, the rotating disk (31) is eccentrically provided with a mounting hole, the marking pen (16) is vertically interference-fitted into the mounting hole, and the marking pen (16) is set to point towards the electronic tag (5).
2. The electronic tag production and inspection device according to claim 1, characterized in that: The rotating disk (31) is symmetrically provided with a number of first actuating teeth on the outer circumference of the side outside the movable column (14). The lower end of the mounting plate (2) is inclined with an inclined plate (29) on the side close to the movable column (14). The inclined plate (29) is symmetrically provided with a number of second actuating teeth on the side close to the rotating disk (31). The first actuating teeth on the side of the rotating disk (31) are engaged with the second actuating teeth on the side of the inclined plate (29).
3. The electronic tag production and inspection device according to claim 2, characterized in that: The mounting plate (2) has vertically symmetrical support plates (17) on both sides of its upper end. Two synchronous rollers (18) are horizontally symmetrically arranged on both sides between the two support plates (17) through the central axis. Four control belts (21) are respectively sleeved on the two support plates (17). Several first synchronous teeth (22) are symmetrically arranged on both sides of the control belts (21). Several second synchronous teeth (23) are symmetrically arranged on both sides of the upper end of the movable seat (13). The upper ends of several second synchronous teeth (23) are respectively meshed with several first synchronous teeth (22) on one side, and the upper end of the ball (15) is in contact with the control belt (21) on one side.
4. The electronic tag production and inspection device according to claim 3, characterized in that: The two support plates (17) are horizontally provided on the upper end of the side near the movable groove (11). The control belt (21) is sleeved on the horizontal plate. Four pressure plates (25) are horizontally symmetrically provided on the lower side of the horizontal plate. Four push cylinders (24) are symmetrically provided on the upper end of each pressure plate (25). The upper ends of the four push cylinders (24) are respectively connected to the lower end of the horizontal plate. Several roller grooves are symmetrically opened on the lower end of the pressure plate (25). Rotating rollers (26) are horizontally movably inserted in the several roller grooves. The lower ends of the several rotating rollers (26) are respectively pressed and contacted with one side of the control belt (21).
5. The electronic tag production and inspection device according to claim 4, characterized in that: The upper end of the pallet (3) is provided with a leveling roller (6) horizontally through a support bearing and a central shaft. The central shaft of the leveling roller (6) and the central shaft of the synchronous roller (18) on one side are both fitted with synchronous pulleys (19), and a synchronous belt (20) is connected between two adjacent synchronous pulleys (19) on one side.
6. A method for inspecting the production of electronic tags, characterized in that: The electronic tag production inspection method, applied to the electronic tag production inspection apparatus according to any one of claims 1-5, includes the following steps: Step 1: The base film (4) is cut into four columns of independent electronic tags (5) by the half-cutting method of the rotary cutting machine (1), and a certain gap is maintained between the independent electronic tags (5); Step 2: When the drive device drives the leveling roller (6) and other winding devices to wind and pull the bottom film (4), the four electronic tags (5) pass through the photoelectric sensor (7), the detection antenna (10) and the marker pen (16) in sequence. Step 3: When the photoelectric sensor (7) points to the gap between two adjacent electronic tags (5), the detection antenna (10) simultaneously points to the gap between two adjacent electronic tags (5) on the other side, and the marker pen (16) points to the center of one electronic tag (5). When the photoelectric sensor (7) detects the gap signal, the detection antenna (10) is activated to sense the EPC and TID numbers of the electronic tags (5) and transmits them to the industrial control computer through the reader (8) for recording and storage. The photoelectric sensor (7) senses the gap from one gap to another, which is one detection process. The detection antenna (10) performs one sensing cycle synchronously. Step 4: If the detection antenna (10) detects the EPC and TID numbers of the electronic tag (5) within the sequential sensing cycle, the PLC control system will issue a start command to the push cylinder (24), push the pressure plate (25) to squeeze the control band (21), so that the first synchronous teeth (22) on both sides mesh with the second synchronous teeth (23) of the movable seat (13), and at the same time push the movable column (14) downward, so that the lower end of the marker pen (16) contacts the electronic tag (5); Step 5: Then, under the action of the synchronous pulley (19), the control belt (21) and the bottom film (4) move synchronously, and the movable seat (13) moves synchronously with the control belt (21). During the movement, the rotating disk (31) contacts the actuating teeth of the inclined plate (29), and the control belt (21) rotates together with the marking pen (16), so that the marking pen (16) draws a circle mark on the upper end of the electronic tag (5), realizing the waste marking operation, and will not contaminate other electronic tags (5); Step 6: After the single operation is completed, the pressure plate (25) rises, and the movable column (14) lifts the control belt (21) under the action of the ball (15) and the second spring, so that the first synchronous tooth (22) moves away from the second synchronous tooth (23), and the movable seat (13) returns to its original position under the action of the first spring, waiting for the next use command.