Clothes logistics warehouse management device based on RFID
By combining RFID reading and size scanning mechanisms, the system enables automated collection and storage of data such as clothing size and color, solving the problem that traditional devices cannot obtain specific feature data and improving the efficiency and accuracy of warehouse management.
Patent Information
- Application Number
- CN202520489538.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-20
AI Technical Summary
Traditional RFID logistics and warehousing management devices can only read the RFID tag information of clothing, and cannot directly obtain specific characteristic data such as clothing size and color, which leads to problems in inventory management.
Combining an RFID reader rack with a size scanning mechanism, the system integrates automated scanning and graphic data conversion of RFID tag information with clothing size, color, and other data through a scanning frame and lifting adjustment slot. It also utilizes photoelectric converters and digital-to-analog converters to achieve automatic data collection and storage.
It enables the rapid and accurate acquisition of key data such as RFID tag information, size, color, and style of clothing before shipment, improving the efficiency and accuracy of warehouse management, reducing manual intervention, and enhancing the system's intelligence level.
Smart Images

Figure CN223956084U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of warehouse management device, especially based on RFID's clothes logistics warehouse management device. BACKGROUND
[0002] RFID is an automatic identification technology using radio waves for data reading and writing. When goods are in and out of the warehouse of a clothing online store, staff need to use a warehouse management device based on RFID system to identify the RFID tag information of the clothes to complete the delivery.
[0003] Traditional RFID logistics warehouse management devices can usually only read the information of the RFID tag of the clothes during use and cannot directly obtain data about the specific characteristics of the clothes such as size and color. If the tag is damaged or the information is entered incorrectly, it may cause problems in inventory management.
[0004] Therefore, in view of the above-mentioned traditional RFID logistics warehouse management device, which can only read the information of the RFID tag of the clothes, a clothes logistics warehouse management device based on RFID can be designed by installing a visual scanning mechanism on the device to scan the size and color of the clothes and supplement the information lacking in the RFID tag, thereby conveniently solving the above-mentioned problems. SUMMARY
[0005] In order to overcome the problem of the traditional RFID logistics warehouse management device, which can usually only read the information of the RFID tag of the clothes during use and cannot directly obtain data about the specific characteristics of the clothes such as size and color, if the tag is damaged or the information is entered incorrectly, it may cause problems in inventory management.
[0006] The technical solution of the utility model is: a clothes logistics warehouse management device based on RFID, comprising a base, a scanning frame, an RFID reading rack, and a size scanning mechanism; the upper part of the base is provided with a scanning frame for scanning the clothes in warehouse logistics, the inside of the scanning frame is provided with a scanning bin for accommodating the clothes, the front end of the scanning frame is provided with a lifting adjustment groove, the inside of the lifting adjustment groove is provided with a size scanning mechanism for scanning the size of the clothes, and the top of the lifting adjustment groove is provided with an RFID reading rack for reading the RFID tag of the clothes.
[0007] Preferably, the base, scanning frame, RFID reading rack, and size scanning mechanism are combined, so that when working, the staff first puts the clothes into the scanning bin before the clothes are delivered, the RFID reading rack reads the RFID tag of the clothes, and then the size scanning mechanism moves downward in the lifting adjustment groove to convert the size, color, and style of the clothes into graphic data for storage.
[0008] As preferred, the size scanning mechanism comprises a lifting frame, the front end of the lifting frame is provided with a scanning probe for scanning the size of clothes, and the inside of the lifting frame is provided with a photoelectric converter and a digital-analog converter corresponding to the scanning probe.
[0009] As preferred, the two side walls of the lifting adjusting groove are both provided with lifting sliding grooves, and the side walls of the two groups of lifting sliding grooves far away from each other are both provided with anti-falling grooves.
[0010] As preferred, the two sides of the lifting frame are both provided with sliding rods, one end of the sliding rod far away from the lifting frame extends into the inside of the anti-falling groove through the lifting sliding groove, and the end of the sliding rod far away from the lifting frame is provided with an anti-falling block corresponding to the anti-falling groove.
[0011] As preferred, the upper end of the scanning frame is provided with a clothes feeding port, the rear end of the scanning frame is provided with a clothes taking-out port corresponding to the clothes feeding port, and the inside of the RFID reading frame is provided with a reader.
[0012] As preferred, one side of the scanning frame is provided with a control panel, the surface of the control panel is provided with a display screen, the lower part of the display screen is provided with control buttons, and the control panel, the scanning probe and the reader are electrically connected.
[0013] As preferred, the front end of the base is provided with a battery groove, the inside of the battery groove is provided with a battery pack, the battery groove is matched with a battery cover plate, one side of the bottom of the base is provided with a power cord, one end of the power cord is connected with the battery pack, the other end of the power cord is provided with a power plug, the battery pack is electrically connected with the control panel, and universal wheels are arranged at the corners of the bottom of the base.
[0014] The warehouse management device has the advantages that, compared with the traditional RFID warehouse management device which can only read the information of the RFID tag of clothes, the warehouse management device can quickly and accurately obtain the key data such as the RFID tag information, size, color and version of clothes before the clothes are taken out, greatly improves the efficiency and accuracy of warehouse management, the size scanning mechanism is combined with the lifting frame, the scanning probe, the photoelectric converter and the digital-analog converter, the automatic scanning and graphic data conversion of the size of clothes are realized, the manual intervention is reduced, and the intelligent level of the system is improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Fig. 1 The whole structure schematic view of the warehouse management device is shown.
[0016] Fig. 2 The scanning frame structure schematic view of the warehouse management device is shown.
[0017] Fig. 3 The scanning frame structure schematic view of the warehouse management device is shown.
[0018] Fig. 4 The size scanning mechanism structure of the warehouse management device is shown.
[0019] Mark explanation: 1, base; 2, scanning frame; 201, lifting adjusting groove; 202, clothes taking outlet; 3, size scanning mechanism; 4, RFID reading rack; 5, clothes putting port; 6, battery groove; 7, battery pack; 8, battery cover plate; 9, universal wheel; 10, power cord; 11, power plug; 12, lifting sliding groove; 13, scanning warehouse; 14, anti-drop groove; 15, reader; 16, control panel; 17, display screen; 18, control button; 301, lifting frame; 302, scanning probe; 303, sliding rod; 304, anti-drop block. DETAILED DESCRIPTION
[0020] The utility model is further explained in connection with the drawings and examples.
[0021] Please refer to Figs. 1-4 The utility model provides a kind of example: clothes logistics warehouse management device based on RFID, including base 1, scanning frame 2, RFID reading rack 4 and size scanning mechanism 3;The upper portion of base 1 is equipped with scanning frame 2 for scanning warehouse 13 storage logistics clothes, scanning frame is equipped with scanning warehouse 13 for accommodating clothes in the inside, the front end of scanning frame 2 is equipped with lifting adjusting groove 201, lifting adjusting groove 201 is equipped with size scanning mechanism 3 for scanning clothes size in the inside, and the top of lifting adjusting groove 201 is equipped with RFID reading rack 4 for reading clothes RFID label.
[0022] Please refer to Figs. 1-2 In the embodiment, the front end of base 1 is equipped with battery groove 6, battery groove 6 is equipped with battery pack 7 in the inside, battery groove 6 is equipped with battery cover plate 8, and the bottom of base 1 is equipped with power cord 10 on one side, one end of power cord 10 is connected with battery pack 7, the other end of power cord 10 is equipped with power plug 11, battery pack 7 is electrically connected with control panel 16, and universal wheel 9 is equipped at the bottom corner of base 1, is combined with universal wheel 9 by power cord 10, so that universal wheel 9 is convenient for the flexible movement of entire device in warehouse, adapts to the demand of different working positions, battery pack 7 provides power support for device, to ensure that it can also normally operate in the absence of external power supply;While external power supply can be connected by power cord 10 to prolong use time.
[0023] Please refer to Figs. 2-3In the embodiment, the upper end of the scanning frame 2 is provided with a clothes feeding port 5, the rear end of the scanning frame 2 is provided with a corresponding clothes taking port 202, the inner side of the RFID reading frame 4 is provided with a reader 15 (the model of the reader 15 is MC3330R), one side of the scanning frame 2 is provided with a control panel 16, the surface of the control panel 16 is provided with a display screen 17, the lower side of the display screen 17 is provided with a control button 18, the control panel 16, the scanning probe 302 and the reader 15 are electrically connected, the combination of the reader 15, the control panel 16 and the display screen 17 enables the reader 15 to read the label information of the clothes when the clothes are put into the scanning bin 13 from the clothes feeding port 5, the clothes are taken out from the clothes taking port 202 after the information collection is completed, all the collected data are transmitted to the background system and can be directly displayed on the display screen 17 of the control panel 16 for the operator to check and confirm, and the operator can press the control button 18 to start and stop the control management device.
[0024] Please refer to Figs. 3-4 In the embodiment, the size scanning mechanism 3 comprises a lifting frame 301, the front end of the lifting frame 301 is provided with a scanning probe 302 for scanning the size of the clothes, the inside of the lifting frame 301 is provided with a photoelectric converter (the model of the photoelectric converter is BGH203GX) and a digital-analog converter (the model of the digital-analog converter is ADI-192 DD) corresponding to the scanning probe 302, both side walls of the lifting adjusting groove 201 are provided with lifting sliding grooves 12, both side walls of the two groups of lifting sliding grooves 12 away from each other are provided with anti-falling grooves 14, both sides of the lifting frame 301 are provided with sliding rods 303, one end of the sliding rod 303 away from the lifting frame 301 extends into the inside of the anti-falling groove 14 through the lifting sliding groove 12, one end of the sliding rod 303 away from the lifting frame 301 is provided with an anti-falling block 304 corresponding to the anti-falling groove 14, the combination of the scanning probe 302 and the lifting sliding groove 12 enables the size scanning mechanism 3 to start working when the clothes are put into the scanning bin 13, the lifting frame 301 moves downward in the lifting adjusting groove 201 along the lifting sliding groove 12 through the sliding rod 303, the scanning probe 302 scans the clothes, the data obtained by scanning is converted into an electrical signal through the photoelectric converter, and then is converted into graphic data through the digital-analog converter, and finally is stored in the system.
[0025] When working, the operator first puts the clothes to be taken out of the warehouse into the scanning bin 13 through the clothes feeding port 5 at the upper end of the scanning frame 2, at this time, the reader 15 at the inner side of the RFID reading frame 4 automatically reads the RFID label information on the clothes and stores it in the system.
[0026] Then the size scanning mechanism 3 starts to work, the lifting frame 301 moves downward in the lifting adjusting groove 201, the scanning probe 302 contacts the clothes and scans, the data obtained by scanning is converted into an electrical signal through an optical-electric converter, and then converted into graphic data through a digital-analog converter, and finally stored in the system.
[0027] The information obtained by scanning is displayed through the display screen 17 on the operation panel 16, and the staff can control and manage the system through the operation button 18.
[0028] Through the above steps, the base 1, the scanning frame 2, the RFID reading frame 4 and the size scanning mechanism 3 are combined, so that when working, the staff first puts the clothes into the scanning bin 13 before the clothes are delivered, the RFID reading frame 4 reads the RFID tag of the clothes, and then the size scanning mechanism 3 moves downward in the lifting adjusting groove 201 to convert the size, color and style of the clothes into graphic data for storage. The application integrates the functions of RFID reading and size scanning, can quickly and accurately obtain the RFID tag information, size, color and style of the clothes before the clothes are delivered, and greatly improves the efficiency and accuracy of warehouse management.
Claims
1. An RFID-based clothing logistics and warehousing management device, comprising a base (1); characterized in that: It also includes a scanning frame (2), an RFID reader (4) and a size scanning mechanism (3); a scanning frame (2) for scanning clothes is provided above the base (1), a scanning compartment (13) for accommodating clothes is provided inside the scanning frame, a lifting adjustment slot (201) is provided at the front end of the scanning frame (2), a size scanning mechanism (3) for scanning clothes size is provided inside the lifting adjustment slot (201), and an RFID reader (4) for reading RFID tags on clothes is provided on the top of the lifting adjustment slot (201).
2. The RFID-based clothing logistics and warehousing management device according to claim 1, characterized in that: The size scanning mechanism (3) includes a lifting frame (301), the front end of the lifting frame (301) is provided with a scanning probe (302) for scanning clothing size, and the inside of the lifting frame (301) is provided with a photoelectric converter and a digital-to-analog converter corresponding to the scanning probe (302).
3. The RFID-based clothing logistics and warehousing management device according to claim 1, characterized in that: Lifting adjustment groove (201) has lifting slide grooves (12) on both sides, and anti-detachment grooves (14) are provided on the side walls of the two sets of lifting slide grooves (12) that are far apart.
4. The RFID-based clothing logistics and warehousing management device according to claim 3, characterized in that: Both sides of the lifting frame (301) are provided with slide rods (303). The end of the slide rod (303) away from the lifting frame (301) passes through the lifting slide groove (12) and extends into the anti-detachment groove (14). The end of the slide rod (303) away from the lifting frame (301) is provided with an anti-detachment block (304) corresponding to the anti-detachment groove (14).
5. The RFID-based clothing logistics and warehousing management device according to claim 2, characterized in that: The upper end of the scanning frame (2) is provided with a clothing insertion port (5), the rear end of the scanning frame (2) is provided with a corresponding clothing removal port (202), and the inside of the RFID reading rack (4) is provided with a reader (15).
6. The RFID-based clothing logistics and warehousing management device according to claim 5, characterized in that: A control panel (16) is provided on one side of the scanning frame (2). A display screen (17) is provided on the surface of the control panel (16). A control button (18) is provided below the display screen (17). The control panel (16), the scanning probe (302) and the reader (15) are electrically connected.
7. The RFID-based clothing logistics and warehousing management device according to claim 6, characterized in that: A battery slot (6) is provided at the front end of the base (1). A battery pack (7) is provided inside the battery slot (6). A battery cover (8) is provided in the battery slot (6). A power cord (10) is provided on one side of the bottom of the base (1). One end of the power cord (10) is connected to the battery pack (7). The other end of the power cord (10) is provided with a power plug (11). The battery pack (7) is electrically connected to the control panel (16). Universal wheels (9) are provided at the bottom corners of the base (1).