RFID testing machine
By designing a fully automated RFID testing machine, using the vibration disc feeding and detection and distribution mechanism, the problems of slow manual testing speed and hidden quality hazards are solved, and efficient and stable RFID testing is achieved.
Patent Information
- Application Number
- CN202421783362.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-07-26
AI Technical Summary
In the prior art, the RFID testing process relies on manual placement of the test coil, resulting in slow speed, low efficiency, and hidden dangers of operating quality such as missing tests and mixing.
An RFID testing machine is designed, including a vibrating disc feeding mechanism, an RFID detection and distribution mechanism and a collection mechanism to realize fully automated operation. The orderly feeding of materials through the vibrating disc feeding mechanism is carried out. The RFID detection and distribution mechanism conducts quality testing, and the good and bad products are separated into different collection boxes.
It realizes fully automated operations, improves testing speed and efficiency, eliminates the quality hazards brought about by manual operations, and reduces labor costs.
Smart Images

Figure CN223171358U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of RFID test equipment, in particular to an RFID tester. Background Art
[0002] An electronic tag is the physical carrier of an Electronic Product Code (EPC), attached to traceable items, which can be circulated globally and identified and read / written. After the RFID is packaged, its functions need to be tested. Currently, the method used is to manually place the RFID into the test coil for testing, which is slow, inefficient, and there are potential quality hazards in operations such as missed testing and material mixing.
[0003] Therefore, an RFID tester is provided to solve the above problems. Summary of the Invention
[0004] The technical problem to be solved by the utility model is that currently, the method used is to manually place the RFID into the test coil for testing, which is slow, inefficient, and there are potential quality hazards in operations such as missed testing and material mixing. Therefore, an RFID tester is provided. The RFID tester includes:
[0005] A first installation box body and a second installation box body. The first installation box body is fixedly installed on the upper part of the second box body. A vibrating disk feeding mechanism is fixedly installed in the first box body. The lower end of the discharge port of the vibrating disk feeding mechanism is fixedly installed with an RFID detection and sorting mechanism. A collection mechanism is fixedly installed below the RFID detection and sorting mechanism. The second installation box body is used to install an auxiliary testing mechanism. The auxiliary testing mechanism includes, but is not limited to, a power supply for supplying power to the equipment in the first installation box body, and a central control device.
[0006] The vibrating disk feeding mechanism includes a vibrating disk mechanism and a discharge mechanism. The discharge mechanism is arranged on one side of the vibrating disk, and the discharge mechanism is communicated with the upper edge of the vibrating disk.
[0007] Further, the vibrating disk mechanism includes a hopper, a vibrating chassis, and a controller. The vibrating chassis is fixedly installed at the bottom of the first installation box body. The hopper is fixedly installed at the upper end of the vibrating chassis. The controller is fixedly installed on the vibrating chassis.
[0008] Further, the discharge mechanism is a blanking pipeline. The blanking pipeline includes a horizontal section and a vertical section. The horizontal section and the vertical section are integrally formed. One end of the horizontal section is communicated with the upper edge of the hopper. The other end of the horizontal section is communicated with the vertical section. The lower end of the vertical section is communicated with the RFID detection and sorting mechanism.
[0009] Further, the RFID detection and material separation mechanism includes a first backboard, a blanking chute plate, a cover plate, a first detection mechanism, a first position limiting mechanism, a second position limiting mechanism, and a material separation mechanism. The blanking chute plate is fixedly installed on the first backboard. A vertical blanking chute is provided in the exact middle of the blanking chute plate. A first position limiting mechanism is fixedly installed on the first backboard on one side of the blanking chute plate. The blanking chute plate is provided with a first position limiting groove in cooperation with the first position limiting mechanism. A second position limiting mechanism is further provided directly below the first position limiting mechanism. The blanking chute plate is provided with a second position limiting groove in cooperation with the second position limiting mechanism. The cover plate is fixedly covered on the blanking chute plate. A first detection mechanism is fixedly installed directly below the blanking chute plate. A material separation mechanism is fixedly installed directly below the first detection mechanism. The second position limiting mechanism, the first detection mechanism, and the material separation mechanism are all fixedly installed on the first backboard.
[0010] Further, the first position limiting mechanism includes a first position limiting rod and a first position limiting driving mechanism. The first position limiting driving mechanism is used to control the first position limiting rod to slide along the first position limiting groove. The first position limiting driving mechanism is fixedly installed on the first backboard.
[0011] Further, the second position limiting mechanism includes a second position limiting rod and a second position limiting driving mechanism. The second position limiting driving mechanism is used to control the second position limiting rod to slide along the second position limiting groove. The second position limiting groove divides the blanking chute into upper and lower sections. A blanking chute is provided on the second position limiting rod for communicating the upper and lower sections of the blanking chute.
[0012] Further, the first testing mechanism is an energized coil testing mechanism. The coil opening of the energized coil testing mechanism is communicated with the lower port of the blanking chute.
[0013] Further, the material separation mechanism includes a material separation driving mechanism and a material separation executing mechanism. The material separation driving mechanism is used to control the material separation executing mechanism to move left and right. The material separation executing mechanism includes a material separation main body. Two material separation pipes are arranged inside the material separation main body. The upper ends of the two material separation pipes are respectively communicated with the coil opening of the energized coil testing mechanism as the material separation executing mechanism moves left and right. The lower ends of the two material separation pipes are communicated with the collection mechanism.
[0014] Further, the collection mechanism includes two collection boxes. The two collection boxes are respectively communicated with the two material separation pipes.
[0015] Implementing the present utility model has the following beneficial effects:
[0016] The utility model uses a vibrating disk for feeding and a linear vibrator track for material feeding to conduct tests, which can send the qualified products and unqualified products that have been distinguished into the corresponding borrowing boxes, fully realizing fully automatic operation, with high speed, high efficiency, stable operation, eliminating the quality hidden dangers brought by manual operation, greatly reducing the labor operation cost at the same time, and improving the work efficiency. Brief Description of the Drawings
[0017] Figure 1 It is the overall external structure diagram of the utility model;
[0018] Figure 2 It is the structure diagram inside the first installation box of the utility model;
[0019] Figure 3 It is the structure diagram of the vibrating disk feeding mechanism of the utility model;
[0020] Figure 4 It is the structure diagram of the RFID detection and material separation mechanism of the utility model;
[0021] Figure 5 It is the structure diagram of the blanking chute plate of the utility model. Specific Embodiments
[0022] Next, the technical solutions in the embodiments of the utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only a part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the utility model. Embodiment
[0023] Please refer to the attached instructions Figures 1-4 , the technical problem to be solved in this embodiment is that the current method is to manually put the RFID into the test coil for testing, which is slow, inefficient, and there are quality hidden dangers such as missed testing and material mixing; so a RFID testing machine is provided, and the RFID testing machine includes:
[0024] The first installation box body 1 and the second installation box body 2. The first installation box body is provided with a first observation port 103, a material addition door 101 and a maintenance door 102. The material addition door is used to add the material to be detected, the maintenance door is used to detect the equipment inside the installation box body, and the first observation port is used to observe the operation of the internal mechanism. The first installation box body 1 is fixedly installed on the upper part of the second box body. A vibrating disk feeding mechanism 3 is fixedly installed inside the first box body. The lower end of the discharge port of the vibrating disk feeding mechanism 3 is fixedly installed with an RFID detection and sorting mechanism 4. A collection mechanism 5 is fixedly installed below the RFID detection and sorting mechanism 4. The second installation box body 2 is used to install an auxiliary testing mechanism; The auxiliary testing mechanism includes, but is not limited to, a power supply for supplying electric energy to the equipment inside the first installation box body 1, and a central control device; In the actual use process, the first detection mechanism in the RFID detection and sorting mechanism will detect whether the product to be detected is a good product or a non-good product, and send the detection result to the central control device. The central control device controls the sorting mechanism to distribute to different collection boxes in the collection mechanism according to the detection result.
[0025] The vibrating disk feeding mechanism 3 includes a vibrating disk mechanism and a discharging mechanism. The discharging mechanism is arranged on one side of the vibrating disk, and the discharging mechanism is communicated with the upper edge of the vibrating disk.
[0026] The vibrating disk mechanism includes a hopper 301, a vibrating chassis 302 and a controller. The vibrating chassis 302 is fixedly installed at the bottom of the first installation box body 1. The upper end of the vibrating chassis 302 is fixedly installed with a hopper 301. The controller is fixedly installed on the vibrating chassis 302.
[0027] The discharging mechanism is a blanking pipeline 303. The blanking pipeline 303 includes a horizontal section and a vertical section. The horizontal section and the vertical section are integrally formed. One end of the horizontal section is communicated with the upper edge of the hopper 301. The other end of the horizontal section is communicated with the vertical section. The lower end of the vertical section is communicated with the RFID detection and sorting mechanism 4.
[0028] The RFID detection and material separation mechanism 4 includes a first back plate 401, a blanking chute plate 402, a cover plate 403, a first detection mechanism 406, a first position limiting mechanism 404, a second position limiting mechanism 405, and a material separation mechanism 407. The blanking chute plate 402 is fixedly installed on the first back plate 401. A vertical blanking chute is provided in the exact middle of the blanking chute plate 402. A first position limiting mechanism 404 is fixedly installed on the first back plate 401 on one side of the blanking chute plate 402. The blanking chute plate 402 is provided with a first position limiting groove in cooperation with the first position limiting mechanism 404. A second position limiting mechanism 405 is further provided directly below the first position limiting mechanism 404. The blanking chute plate 402 is provided with a second position limiting groove in cooperation with the second position limiting mechanism 405. The cover plate 403 is fixedly installed on the blanking chute plate 402. A first detection mechanism 406 is fixedly installed directly below the blanking chute plate 402. A material separation mechanism 407 is fixedly installed directly below the first detection mechanism 406. The second position limiting mechanism 405, the first detection mechanism 406, and the material separation mechanism 407 are all fixedly installed on the first back plate 401.
[0029] The first position limiting mechanism 404 includes a first position limiting rod and a first position limiting driving mechanism. The first position limiting driving mechanism is used to control the first position limiting rod to slide along the first position limiting groove. The first position limiting driving mechanism is fixedly installed on the first back plate 401.
[0030] The second position limiting mechanism 405 includes a second position limiting rod and a second position limiting driving mechanism. The second position limiting driving mechanism is used to control the second position limiting rod to slide along the second position limiting groove. The second position limiting groove divides the blanking chute into upper and lower sections. A blanking chute is provided on the second position limiting rod for communicating the upper and lower sections of the blanking chute.
[0031] The first testing mechanism includes a powered coil testing mechanism. The coil opening of the powered coil testing mechanism is communicated with the lower port of the blanking chute.
[0032] The material separation mechanism 407 includes a material separation driving mechanism and a material separation executing mechanism. The material separation driving mechanism is used to control the material separation executing mechanism to move left and right. The material separation executing mechanism includes a material separation main body. Two material separation pipes are arranged inside the material separation main body. The upper ends of the two material separation pipes are respectively communicated with the coil opening of the powered coil testing mechanism as the material separation executing mechanism moves left and right. The lower ends of the two material separation pipes are communicated with the collection mechanism 5.
[0033] The collection mechanism 5 includes two collection boxes. The two collection boxes are respectively communicated with the two material separation pipes.
[0034] The specific operation process of this embodiment includes:
[0035] Pour the product to be detected into the hopper. The vibrating chassis vibrates the hopper to orderly arrange the products to be detected and send them to the discharging mechanism. The products to be detected enter the blanking chute through the discharging mechanism. The first position limiting mechanism opens to continue putting the product machine to be detected. The second position limiting mechanism puts the products to be detected into the first detection mechanism one by one. The first detection mechanism detects whether the product to be detected is a qualified product or a non-qualified product. According to the result, the material distribution pipe orifice is connected to the first detection mechanism to distribute the products to be detected into the collection box. When no result is detected or during non-detection, the positional relationship between the material distribution mechanism and the first detection mechanism is that the lower orifice of the coil of the first detection mechanism is located between the upper orifices of the two material distribution pipes.
[0036] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "coaxial", "bottom", "one end", "top", "middle", "the other end", "upper", "one side", "top", "inner", "front", "center", "both ends", etc. are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present invention.
[0037] In the present invention, unless otherwise clearly defined and limited, the terms "installation", "setting", "connection", "fixation", "swivel connection", etc. should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two elements or the interaction relationship between two elements. Unless otherwise clearly defined, for those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0038] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An RFID testing machine, characterized in that, It includes a first installation box body and a second installation box body. The first installation box body is fixedly installed on the upper part of the second installation box body. A vibrating disk feeding mechanism is fixedly installed in the first installation box body. The lower end of the discharge port of the vibrating disk feeding mechanism is fixedly installed with an RFID detection and sorting mechanism. A collection mechanism is fixedly installed below the RFID detection and sorting mechanism. The second installation box body is used to install an auxiliary testing mechanism; The vibrating disk feeding mechanism includes a vibrating disk mechanism and a discharge mechanism. The discharge mechanism is arranged on one side of the vibrating disk, and the discharge mechanism is communicated with the upper edge of the vibrating disk.
2. The RFID testing machine according to claim 1, wherein The vibrating disk mechanism includes a hopper, a vibrating chassis and a controller. The vibrating chassis is fixedly installed at the bottom of the first installation box body. The hopper is fixedly installed at the upper end of the vibrating chassis. The controller is fixedly installed on the vibrating chassis.
3. The RFID testing machine according to claim 2, wherein The discharge mechanism is a blanking pipeline. The blanking pipeline includes a horizontal section and a vertical section. The horizontal section and the vertical section are integrally formed. One end of the horizontal section is communicated with the upper edge of the hopper. The other end of the horizontal section is communicated with the vertical section. The lower end of the vertical section is communicated with the RFID detection and sorting mechanism.
4. The RFID testing machine according to claim 3, wherein, The RFID detection and sorting mechanism includes a first back plate, a blanking groove plate, a cover plate, a first detection mechanism, a first position limiting mechanism, a second position limiting mechanism and a sorting mechanism. The blanking groove plate is fixedly installed on the first back plate. A vertical blanking groove is opened in the middle of the blanking groove plate. A first position limiting mechanism is fixedly installed on the first back plate on one side of the blanking groove plate. The blanking groove plate is provided with a first position limiting groove in cooperation with the first position limiting mechanism. A second position limiting mechanism is further arranged directly below the first position limiting mechanism. The blanking groove plate is provided with a second position limiting groove in cooperation with the second position limiting mechanism. The cover plate is fixedly covered on the blanking groove plate. A first detection mechanism is fixedly installed directly below the blanking groove plate. A sorting mechanism is fixedly installed directly below the first detection mechanism. The second position limiting mechanism, the first detection mechanism and the sorting mechanism are all fixedly installed on the first back plate.
5. The RFID testing machine according to claim 4, wherein, The first position limiting mechanism includes a first position limiting rod and a first position limiting driving mechanism. The first position limiting driving mechanism is used to control the first position limiting rod to slide along the first position limiting groove. The first position limiting driving mechanism is fixedly installed on the first back plate.
6. The RFID testing machine according to claim 5, characterized in that, The second position limiting mechanism includes a second position limiting rod and a second position limiting driving mechanism. The second position limiting driving mechanism is used to control the second position limiting rod to slide along the second position limiting groove. The second position limiting groove divides the blanking groove into upper and lower sections. A blanking groove is opened on the second position limiting rod for communicating the upper and lower blanking grooves.
7. The RFID testing machine according to claim 6, wherein, The first detection mechanism includes an energized coil testing mechanism. The coil port of the energized coil testing mechanism is communicated with the lower port of the blanking groove.
8. The RFID testing machine according to claim 7, characterized in that, The material distribution mechanism includes a material distribution driving mechanism and a material distribution executing mechanism. The material distribution driving mechanism is used to control the left-right movement of the material distribution executing mechanism. The material distribution executing mechanism includes a material distribution main body, and two material distribution pipes are arranged in the material distribution main body. The upper ends of the two material distribution pipes are respectively communicated with the coil ports of the energized coil testing mechanism as the material distribution executing mechanism moves left and right, and the lower ends of the two material distribution pipes are communicated with the collection mechanism.
9. The RFID testing machine according to claim 8, wherein The collection mechanism includes two collection boxes, and the two collection boxes are respectively communicated with the two material distribution pipes.