Online radio frequency identification tag design system and method

With the online RFID tag design system, users can design tags that adapt to different environments, solving the problems of complex design and high cost in existing technologies, and realizing convenient and efficient tag production.

CN115730360BActive Publication Date: 2026-03-27ARIZON RFID TECHNOLOGY (HONGKONG) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-08-26
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing RFID tags are complex in design and difficult to adapt to different environments, which affects communication distance and functionality, especially in liquid or metal environments. Furthermore, the design process requires the participation of specialized companies and printing manufacturers, resulting in high costs.

Method used

This invention provides an online radio frequency identification (RFID) tag design system that combines a web server and a cloud server to provide an intuitive tag design interface and buttons. Users can customize environmental materials, antenna modules, encoding information, etc., to generate tag design drafts that meet their needs and store them in the cloud for easy modification.

Benefits of technology

It reduces design and development costs, improves the ease of use of labels, enables users to design labels that meet their needs, simplifies the design process, and reduces reliance on professional companies and printing manufacturers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides an online wireless radio frequency identification tag design system and method. The online wireless radio frequency identification tag design system includes a web server and a cloud server. The web server displays a tag design interface on a terminal device. The tag design interface includes an environment material selection button, a tag button, an information import field, a wireless radio frequency identification tag button, and a tag design picture block. The tag design picture block displays a pattern according to the edited information. The cloud server receives information from the web server, which includes a tag database and a tag generation unit. The tag generation unit generates a tag design draft according to the information from the web server. In this way, a user can design a tag that meets the user's needs by using the online wireless radio frequency identification tag design system. The design process is simple and convenient.
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Description

TECHNICAL FIELD

[0001] A wireless radio frequency identification tag design system, in particular, an online wireless radio frequency identification tag design system. BACKGROUND

[0002] A wireless radio frequency identification (RFID) tag, also known as an electronic tag or smart tag, is a chip with built-in wireless technology that can record a series of information, such as product type, location, date, etc. Its advantage is that it can improve the efficiency of goods management. Currently, goods information is mostly recorded on barcodes, and then a wireless radio frequency identification reader (RFID reader) generates an electromagnetic field or emits electromagnetic waves to the wireless radio frequency identification tag to obtain information.

[0003] However, there are many factors to consider when designing an electronic tag, so it is difficult to customize production. In addition, because the electronic tag is easily affected by the material environment attached to it, the communication distance with the reader is reduced or lost, and the expected management function cannot be achieved. For example, if the electronic tag is immersed in a liquid water environment, the environmental liquid will absorb electromagnetic waves, making it impossible for the reader to read the content of the electronic tag. Or, like the electronic tag attached to a metal environment, the metal will reflect electromagnetic waves, affecting the communication distance with the reader. In addition, the electronic tag also needs to use a specific chip depending on the frequency to be used (such as low frequency, high frequency, ultra-high frequency). Therefore, there are many inconveniences in the design and production of electronic tags. SUMMARY

[0004] In view of the above problems, the present application provides an online wireless radio frequency identification tag design system, which comprises a web server and a cloud server. The web server displays a tag design interface on a terminal device, and the tag design interface comprises a plurality of environment material selection buttons, a tag button, an information import field, a wireless radio frequency identification tag button, and a tag design picture block. Each environment material selection button is written with environment material information in response to a selection operation; the tag button displays a plurality of size selection buttons in response to a selection operation, and each size selection button displays an antenna module selection field in response to a selection operation, and antenna module information is written into the antenna module selection field in response to an operation instruction; the information import field receives self-defined information transmitted from the terminal device in response to an operation instruction; the wireless radio frequency identification tag button displays a coding block in response to a selection operation, and the coding block comprises a coding position field and an attribute field, and the self-defined information is written into the coding position field in response to an operation instruction, and the self-defined information is written into the attribute field in response to an operation instruction; and the tag design picture block displays a pattern in response to a plurality of editing information. The cloud server is connected to the web server, and comprises a tag database and a tag generation unit. The tag database stores the environment material information, the antenna module information, the self-defined information, and the pattern; and the tag generation unit generates a tag design draft in response to the environment material information, the antenna module information, the self-defined information, and the pattern.

[0005] In addition, the present application also provides an online wireless radio frequency identification tag design method, which comprises: displaying a tag design interface on a terminal device; displaying a plurality of environment material selection buttons on the tag design interface, and writing environment material information in response to a selection operation instruction of each environment material selection button; displaying a tag button on the tag design interface, displaying a plurality of size selection buttons in response to a selection operation instruction of the tag button, displaying an antenna module selection field in response to a selection operation instruction of each size selection button, and writing antenna module information into the antenna module selection field in response to an operation instruction; displaying an information import field on the tag design interface, and receiving self-defined information transmitted from the terminal device in response to an operation instruction of the information import field; displaying a wireless radio frequency identification tag button on the tag design interface, displaying a coding position field and an attribute field in response to a selection operation instruction of the wireless radio frequency identification tag button, writing self-defined information into the coding position field in response to an operation instruction, and writing self-defined information into the attribute field in response to an operation instruction; displaying a tag design picture block on the tag design interface, and displaying a pattern in the tag design picture block in response to a plurality of editing information; receiving and storing environment material information, antenna module information, self-defined information, and a pattern by a cloud server; and generating a tag design draft in response to the environment material information, the antenna module information, the self-defined information, and the pattern.

[0006] Thus, the user does not need to additionally find a professional design company and a label printing manufacturer. The user can design a label meeting the use requirement through the online wireless radio frequency identification label design system and the method thereof. The label design interface provides an intuitive layout block, a field and a button, so that the design process is easy and convenient, the design and development cost is greatly reduced, and the label use convenience is improved. In addition, the designed label file is stored in a cloud server, so that the next use and modification are facilitated. BRIEF DESCRIPTION OF DRAWINGS

[0007] Figure 1 Block diagram of an online wireless radio frequency identification label design system of an embodiment of the present application (I);

[0008] Figure 2 Partial schematic diagram of a label design interface of an embodiment of the present application (I);

[0009] Figure 3 Partial schematic diagram of a label design interface of an embodiment of the present application (II);

[0010] Figure 4 Partial schematic diagram of a label design interface of an embodiment of the present application (III);

[0011] Figure 5 Schematic diagram of a one-dimensional barcode design block of an embodiment of the present application;

[0012] Figure 6 Schematic diagram of a two-dimensional barcode design block of an embodiment of the present application;

[0013] Figure 7 Schematic diagram of a preview block of an embodiment of the present application;

[0014] Figure 8 Partial schematic diagram of a label design interface of an embodiment of the present application (IV);

[0015] Figure 9 Partial schematic diagram of a label design interface of an embodiment of the present application (V);

[0016] Figure 10 Partial schematic diagram of a label design interface of an embodiment of the present application (VI);

[0017] Figure 11 Schematic diagram of a layer block of an embodiment of the present application;

[0018] Figure 12 Block diagram of an online wireless radio frequency identification label design system of an embodiment of the present application (II);

[0019] Figure 13A flow chart of steps of a design method of an online wireless radio frequency identification tag according to an embodiment of the present application;

[0020] Figure 14 A flow chart of steps of a design method of an online wireless radio frequency identification tag according to an embodiment of the present application;

[0021] Figure 15 A flow chart of steps of a design method of an online wireless radio frequency identification tag according to an embodiment of the present application;

[0022] Figure 16 A flow chart of steps of a design method of an online wireless radio frequency identification tag according to an embodiment of the present application;

[0023] Figure 17 A flow chart of steps of a design method of an online wireless radio frequency identification tag according to an embodiment of the present application;

[0024] Figure 18 A flow chart of steps of a design method of an online wireless radio frequency identification tag according to an embodiment of the present application;

[0025] Figure 19 A flow chart of steps of a design method of an online wireless radio frequency identification tag according to an embodiment of the present application;

[0026] Figure 20 A flow chart of steps of a design method of an online wireless radio frequency identification tag according to an embodiment of the present application;

[0027] Figure 21 A flow chart of steps of a design method of an online wireless radio frequency identification tag according to an embodiment of the present application.

[0028]

Symbol explanation

[0029] 10: tag design interface

[0030] 11: tag design picture block

[0031] 12: common tool editing block

[0032] 13: layer block

[0033] 20: cloud server

[0034] 21: tag database

[0035] 22: tag generation unit

[0036] 30: web server

[0037] 40: terminal device

[0038] 50: handwriting input electronic device

[0039] 60: printing device

[0040] 101: environmental material selection button

[0041] 102: label button

[0042] 103: graphic button

[0043] 104: text button

[0044] 105: picture button

[0045] 106: one-dimensional barcode button

[0046] 107: two-dimensional barcode button

[0047] 108: radio frequency identification tag button

[0048] 112: size selection button

[0049] 113: graphic editing field

[0050] 114: text editing field

[0051] 115: picture field

[0052] 116: one-dimensional barcode design block

[0053] 117: two-dimensional barcode design block

[0054] 118: encoding block

[0055] 120: edit button

[0056] 121: preview button

[0057] 122: antenna module selection field

[0058] 124: text source field

[0059] 126: one-dimensional barcode addition button

[0060] 127: two-dimensional barcode addition button

[0061] 128: encoding position field

[0062] 130: position information field

[0063] 136: one-dimensional barcode source field

[0064] 137: two-dimensional barcode source field

[0065] 138: attribute field

[0066] 146: One-dimensional barcode attribute field

[0067] 147: Two-dimensional barcode attribute field

[0068] 148: Information import field

[0069] 156: One-dimensional barcode editing field

[0070] 1211: Preview block

[0071] 1281: Electronic product code field

[0072] 1282: User-defined field

[0073] 1381: Access instruction field

[0074] 1382: Invalidation instruction field

[0075] 10a: One web page of the label design interface

[0076] S100-S121, S1041 and S1042, S1121 and S1122, S200-S202 are steps of the online RFID label design method DETAILED DESCRIPTION

[0077] The "block" described in the embodiments of the present case is a partial area displayed in the label design interface 10 or an independent web page. The partial area or the independent web page can be displayed when a button in the label design interface 10 is selected, and can be displayed in parallel with other blocks, cover other blocks, or cover part of the picture of the label design interface 10. In addition, the "block" can also be a region that is originally fixedly displayed in the label design interface 10.

[0078] The "button" described in the embodiments of the present case is an option button with a specific function displayed in the label design interface 10.

[0079] The "operation instruction" or "click operation instruction" described in the embodiments of the present case is any operation means made by the user in the label design interface 10, such as an operation instruction for selecting an option by a cursor, an operation instruction for text input, etc. The foregoing is for the purpose of illustration, and is not limited to the foregoing.

[0080] In addition, the connection between the elements or modules referred to below refers to data transmission, which can be one-way data transmission or two-way data transmission, and the data transmission can be, for example, reception or sending of information or images, reception or sending of instructions, etc., and is not limited to the foregoing.

[0081] The following detailed description illustrates by way of example specific embodiments of the present application that can be implemented in any of multiple ways. References in the specification to, for example, "an embodiment", "one embodiment", "an illustrative embodiment", "one illustrative embodiment", and so on, indicate that the embodiment described can include a particular feature, structure, or characteristic, but every

[0082] Referring to Figure 1 , Figure 2 and Figure 3 , in some embodiments, the online wireless radio frequency identification tag design system comprises a web server 30 and a cloud server 20. The web server 30 displays a tag design interface 10 on a terminal device 40. The tag design interface 10 comprises a plurality of environmental material selection buttons 101, a tag button 102, an information import field 148, a wireless radio frequency identification tag button 108, and a tag design picture block 11.

[0083] The terminal device 40 can be a smart phone, a tablet computer, a notebook computer, or a smart device with an internet browsing webpage function. The foregoing is only for the purpose of illustration, and is not limited to the foregoing. For example, a user can enter the webpage page of the tag design interface 10 through the internet of a computer (terminal device 40) to design a customized wireless radio frequency identification tag online.

[0084] The tag design interface 10 can be presented in a single webpage page, or displayed by a combination of multiple webpage pages, sequentially displayed on the terminal device 40 or presented side by side on the terminal device 40, not limited to the foregoing.

[0085] In some embodiments, as shown in Figure 2 , when starting a new tag design, a webpage page 10a of the tag design interface with a plurality of environmental material selection buttons 101 is displayed first. Each environmental material selection button 101 is written with environmental material information, such as carton, wood, glass, water washing, freezing, high temperature, metal, or general environmental material information, by a selection operation. After the user selects any environmental material selection button 101, the subsequent webpage page of the tag design interface 10 is entered, as shown in Figure 3 . According to the present application, the "general environmental material" refers to an environment that does not interfere with the function of the antenna in the wireless radio frequency identification tag, especially the surface to which the wireless radio frequency identification tag is attached or the operating environment.

[0086] Referring again to Figure 3 and Figure 4 , the tag button 102 displays a plurality of size selection buttons 112 when selected. Each size selection button 112 displays an antenna module selection field 122 when selected, and writes antenna module information into the antenna module selection field 122 according to the operation instruction. In some embodiment examples, these size selection buttons 112 are displayed in a tag block (such as Figure 4When the label button 102 is selected, the label design interface 10 displays the label block, and the display position can be overlaid on the Figure 3 the encoding block 118 position.

[0087] For example, when the user selects the environmental material selection button 101 of "carton", the cloud server 20 receives the environmental material information of "carton", and transmits the corresponding antenna module information of "carton" in the label database 21 to the label design interface 10, and then the label design interface 10 displays the encoding block 118 as shown in FIG. 1C. Figure 2 Figure 4 The user selects the desired label size, such as 101.6x101.6mm, and the antenna module selection field 122 is displayed. The user selects a set of antenna modules, such as AZ-9662, and the cloud server 20 receives the antenna module information of "AZ-9662".

[0088] Please refer back to FIG. 1B. Figure 3 The information import field 148 receives the custom information transmitted from the terminal device 40 according to the operation instruction. The information import field 148 can be located at any position of the label design interface 10, or overlaid on the Figure 3 the encoding block 118 position.

[0089] The custom information can be the encoding source information, encoding attribute information (i.e. barcode style), label text source, product serial number, product name, origin information, etc. desired by the user, and can be presented in the form of an excel file to provide the user with operational convenience. The custom information can include 16-bit characters and text content, which are used as the source of various custom designs of the label design interface 10.

[0090] When the wireless radio frequency identification label button 108 is selected, the encoding block 118 is displayed, including the encoding position field 128 and the attribute field 138. The custom information is written into the encoding position field 128 according to the operation instruction, and the custom information is written into the attribute field 138 according to the operation instruction.

[0091] For example, the custom information can be displayed in the encoding position field 128 of the encoding block 118 according to the user's selection operation. The user selects the encoding source according to his needs, and the web server 30 writes the selected custom information into the encoding position field 128 according to the operation instruction and transmits the custom information to the cloud server 20. In this way, the user can design a large number of labels at one time through the label design interface 10 of this embodiment, and each label records its own encoding information and displays its own product information. ​

[0092] The label design interface 10 can display the label design screen block 11 according to the editing information. In this way, the label design screen block 11 of the label design interface 10 can display the editing information in time, and the user can adjust the design at any time.

[0093] Please refer back to Figure 1 , the cloud server 20 is connected to the web server 30, and the cloud server 20 includes a label database 21 and a label generation unit 22. The label database 21 stores the aforementioned environmental material information, antenna module information, custom information, and patterns. In this way, the label files designed on the label design interface 10 are stored in the cloud server, which is convenient for use and modification next time.

[0094] The label generation unit 22 generates a label design drawing according to the environmental material information, the antenna module information, the custom information, and the pattern.

[0095] For example, the user wants to design a label to be pasted on a carton. The user can log in to the online radio frequency identification label design interface (the label design interface 10) from his own computer (the terminal device 40) to design the label. The cloud server 20 generates a label design drawing according to the label design elements (such as the environmental material information of "carton", the antenna module information of "101.6x101.6mm, AZ-9662", the custom information of "encoding", and the pattern) input by the user.

[0096] In some embodiments, please refer to Figure 3 The attribute field 138 of the label design interface 10 includes an access instruction field 1381 and an invalidation instruction field 1382. The custom information is written into the access instruction field 1381 according to the operation instruction, and the custom information is written into the invalidation instruction field 1382 according to the operation instruction. The user can set the encoding attribute information of the radio frequency identification label to be designed, for example, set the state in which the recorded encoding information can be accessed or invalidated. The access or invalidation setting can be selected according to the user's check, or selected according to the custom information uploaded by the user from the information import field 148.

[0097] In some embodiments, please refer to Figure 3The encoding position field 128 of the label design interface 10 includes an electronic product code field 1281 and a user-defined field 1282, and writes the user-defined information into the electronic product code field 1281 according to the operation instruction, and writes the user-defined information into the user-defined field 1282 according to the operation instruction. Specifically, the wireless radio frequency identification label has two storage areas, such as an electronic product code (EPC) and a user-defined (User), and the user can upload the user-defined information from the information import field 148, and select the user-defined information to be used and the storage area position by himself / herself. For example, the electronic product code field 1281 of the label design interface 10 selects the user-defined information from the drop-down menu, and the selected user-defined information is stored in the storage area of the electronic product code.

[0098] In some embodiments, please refer to Figure 3 and Figure 5 The label design interface 10 further includes a one-dimensional barcode button 106, and the one-dimensional barcode button 106 displays a one-dimensional barcode design block 116 when being selected. The one-dimensional barcode design block 116 includes a one-dimensional barcode addition button 126, a one-dimensional barcode source field 136, a one-dimensional barcode editing field 156, and a one-dimensional barcode attribute field 146.

[0099] The one-dimensional barcode addition button 126 displays the one-dimensional barcode pattern in the label design screen block 11 when being selected. The web server 30 displays the user-defined information transmitted from the terminal device 40 in the one-dimensional barcode source field 136, writes the user-defined information into the one-dimensional barcode source field 136 according to the operation instruction, writes the one-dimensional barcode editing information into the one-dimensional barcode editing field 156 according to the operation instruction, and writes the one-dimensional barcode attribute information into the one-dimensional barcode attribute field 146 according to the operation instruction. In some embodiments, when the one-dimensional barcode button 106 is selected, the one-dimensional barcode design block 116 shown in FIG. 12A is displayed, and the display position can be overlaid on the encoding block 118 shown in FIG. 12B. Figure 5 Figure 3

[0100] ​​For example, a user can click the "Add One-Dimensional Barcode" button 126 in the label design interface 10 to add a one-dimensional barcode to the designed label pattern. In this way, the user can select the desired encoding attribute information from the one-dimensional barcode attribute field 146, such as: Code39 barcode, EAN-13 international standard barcode, EAN-8 international standard barcode, Code128 barcode, etc. According to one embodiment, the one-dimensional barcode source field 136 can display custom information transmitted by the terminal device 40, and the one-dimensional barcode source field 136 can select custom information to set the encoding source information of the one-dimensional barcode, such as the product information to be recorded. Additionally, the user can also select whether to display the one-dimensional barcode content and the display position of the content from the one-dimensional barcode editing field 156.

[0101] In some implementation examples, please refer to the following: Figure 3 and Figure 6 The label design interface 10 also includes a two-dimensional barcode button 107. When the two-dimensional barcode button 107 is selected, a two-dimensional barcode design block 117 is displayed. The two-dimensional barcode design block 117 includes a two-dimensional barcode addition button 127, a two-dimensional barcode source field 137, and a two-dimensional barcode attribute field 147. When the two-dimensional barcode addition button 127 is selected, a two-dimensional barcode image is displayed in the label design screen block 11. The web server 30 displays custom information transmitted from the terminal device 40 in the two-dimensional barcode source field 137, writes the custom information into the two-dimensional barcode source field 137 according to the operation instructions, and writes the two-dimensional barcode attribute information into the two-dimensional barcode attribute field 147 according to the operation instructions. In some embodiments, when the two-dimensional barcode button 107 is selected, the following will be displayed: Figure 6 The two-dimensional barcode design block 117 shown can be displayed in a position that covers... Figure 3 The coded block 118 shown is located here.

[0102] For example, please refer to Figure 6 Users can add a two-dimensional barcode to a pre-designed label pattern by clicking the "Add Two-Dimensional Barcode" button 127 in the label design interface 10. Users can then select the desired encoding attribute information from the two-dimensional barcode attribute field 147, such as GS1 QR code, GS1 Data Matrix barcode, etc. Furthermore, the two-dimensional barcode source field 137 can display custom information transmitted from the terminal device 40, and users can select custom information to set the encoding source information of the two-dimensional barcode, such as the product information to be recorded.

[0103] In some implementation examples, please refer to the following: Figure 3 and Figure 7The label design interface 10 further comprises a common tool editing block 12, which comprises a plurality of editing buttons 120. Each editing button 120 generates an editing information, such as a copy layer, a paste picture, a restore file, a reply to the restore file, a close file, a save file, and the like, when being selected. In this way, the user can conveniently edit the label pattern through the plurality of editing buttons 120 in the common tool editing block 12, and the label design screen block 11 displays the pattern according to the editing information.

[0104] The common tool editing block 12 further comprises a preview button 121. The preview button 121 displays a preview block 1211 when being selected, which displays all the label design drafts of the batch. For example, the labels recording respective code information and displaying respective product information can be previewed. In this way, the user can preview the label printing completion status through the preview block 1211 to confirm the label pattern designed by himself.

[0105] In some embodiments, please refer to Figure 3 and Figure 8 The label design interface 10 further comprises a text button 104. The text button 104 displays a plurality of text editing fields 114 and a text source field 124 when being selected. The display position can be overlaid on the code block 118 as shown in Figure 3 . Each text editing field 114 writes an editing information according to an operation instruction, and the label design screen block 11 displays the pattern according to the editing information. As shown in Figure 8 , the user can select the text editing field 114 of "text import" to add text to the label pattern, and select the text editing field 114 of "text font and size" to select the font or text size to be used. In addition, the text editing field 114 of "alignment and style" can edit the text arrangement of the label pattern.

[0106] The web server 30 displays the custom information transmitted from the terminal device 40 in the text source field 124, and writes the custom information in the text source field 124 according to an operation instruction. That is, the custom information can also provide the source of the text content displayed on the label, such as the text of the product name, the text of the manufacturer name, and the like.

[0107] In some embodiments, please refer to Figure 3 and Figure 9 The label design interface 10 further comprises a picture button 105. The picture button 105 displays a picture field 115 when being selected. The display position can be overlaid on the code block 118 as shown in Figure 3The encoding block 118 is shown to be overlaid on the position of the picture block 115. The picture block 115 displays the design of the label according to the picture information transmitted from the terminal device 40 and the editing information. In this way, the user can design the customized RFID label by uploading the trademark or the pre-used graphic file on the label design interface 10.

[0108] In some embodiments, referring to Figure 3 and Figure 10 , the label design interface 10 further comprises a graphic button 103. When the graphic button 103 is selected, a plurality of graphic editing blocks 113 are displayed. The graphic editing blocks 113 are shown to be overlaid on the position of the encoding block 118. Each of the graphic editing blocks 113 writes an editing information according to the operation instruction, such as adding a geometric shape or selecting a fill color, and the label design picture block 11 displays the design according to the editing information. Figure 3

[0109] In some embodiments, referring to Figure 11 , the label design interface 10 further comprises a layer block 13. The layer block 13 comprises a position information block 130. The position information block 130 displays the position information of one of the layers in the design of the label on the label design picture block 11 according to the operation instruction. The position information comprises the coordinate position, the length and width size, and the angle, such as the position on the X-axis, the position on the Y-axis, the length and width size, or the angle of inclination. In this way, the user can more clearly know the position information of each layer in the design of the label and make further correction or fine adjustment.

[0110] In addition, in some embodiments, referring to Figure 12 , the online RFID label design system can further comprise a handwriting input electronic device 50 connected to the terminal device 40 to generate the operation instruction. The handwriting input electronic device 50 can be a mobile phone, a notebook computer, a personal digital assistant (PDA), a tablet computer, a handwriting board, or the like, which has a handwriting input function. The foregoing is only an example and is not limited thereto. Therefore, the user can transmit the operation instruction through the handwriting input electronic device 50 to edit the label to be designed.

[0111] ​In some embodiments, the RFID tag design system also includes a printing device 60 connected to a cloud server 20 to print RFID tags based on the tag design artwork. For example, after a user submits a design created through the tag design interface 10 to the cloud server 20, backend operators can print the RFID tags according to the design stored on the cloud server 20 and related tag information (environmental material information, antenna module information, or custom "encoding" information). Thus, users can design and print tags online using the RFID tag design system of this embodiment, increasing the convenience of tag production.

[0112] In addition, this invention also provides a method for designing online radio frequency identification (RFID) tags, please refer to... Figure 13 It includes the following steps S100 to S105, S200 and S201. Here, steps S100 to S105 involve displaying the label design interface 10 and displaying various buttons, fields and blocks on the label design interface 10 page, while steps S200 and S201 involve the cloud server 20 processing the received information.

[0113] Step S100: Display the label design interface 10 on the terminal device 40.

[0114] For example, such as Figure 3 As shown, users can access the webpage of the tag design interface 10 through the Internet on a computer (terminal device 40). The tag design interface 10 displayed through the web server 30 can include multiple buttons, fields, and blocks, allowing users to design customized radio frequency identification tags directly online.

[0115] Step S101: Display multiple environmental material selection buttons 101 on the label design interface 10. And write environmental material information according to the click operation command of each environmental material selection button 101.

[0116] In some embodiments, through step S101, such as Figure 2 As shown, users can select the environmental material selection button 101 on a webpage 10a of the tag design interface to select the environmental material specifications to be used for the desired radio frequency identification tag.

[0117] Step S102: Display the label button 102 on the label design interface 10. And display multiple size selection buttons 112 according to the click operation command of the label button 102, and display the antenna module selection field 122 according to the click operation command of each size selection button 112, and write the antenna module information into the antenna module selection field 122 according to the operation command.

[0118] Through step S102, as shown in Figure 3 the user can operate the selection point on the label button 102 on the label design interface 10 to select the size specification and antenna module of the required wireless radio frequency identification label. In this way, the cloud server 20 at the back end can receive the antenna module information of the wireless radio frequency identification label. In some embodiments, the user can directly query the datasheet of an individual antenna module from the label design interface 10, such as establishing a picture or text hyperlink, and display another web page by clicking.

[0119] Step S103: Display the information import field 148 on the label design interface 10, and import the custom information received from the terminal device 40 according to the operation instruction.

[0120] Through step S103, the user can upload self-defined label editing data, such as the label code to be used, the label information to be recorded by the barcode, or the text and patterns to be printed on the label face material. The custom information is described above in the description of the wireless radio frequency identification label design system, which is not repeated here.

[0121] Step S104: Display the wireless radio frequency identification label button 108 on the label design interface 10, and display the encoding position field 128 and the attribute field 138 according to the point selection operation instruction of the wireless radio frequency identification label button 108, write the custom information into the encoding position field 128 according to the operation instruction, and write the custom information into the attribute field 138 according to the operation instruction.

[0122] Please refer to Figure 3 for example, the custom information can be displayed in the encoding position field 128 according to the user's point selection operation, the user selects the encoding source according to his needs, and the web server 30 writes the selected custom information into the encoding position field 128 according to the operation instruction and transmits the custom information to the cloud server 20. In this way, the user can design a large number of labels at one time through the label design interface 10 of this embodiment, and each label records its own encoding information and displays its own product information.

[0123] Step S105: Display the label design picture block 11 on the label design interface 10, and display the pattern in the label design picture block 11 according to the plurality of editing information. In this way, the label design picture block 11 of the label design interface 10 can display the pattern being edited in time, and the user can adjust the design at any time.

[0124] Step S200: Receive and store the environmental material information, antenna module information, custom information and pattern by the cloud server 20.

[0125] Step S201: generating a label design draft according to the environmental material information, the antenna module information, the custom information and the pattern.

[0126] In this way, through steps S200 and S201, the label file designed on the label design interface 10 is stored in the cloud server, which is convenient for next use and modification.

[0127] In some embodiments, referring to Figure 14 , the step of displaying the radio frequency identification label button 108 on the label design interface 10 in step S104 further includes steps S1041 and S1042.

[0128] Step S1041: displaying the access instruction field 1381 and the invalidation instruction field 1382 in the attribute field 138, and writing the custom information into the access instruction field 1381 and the invalidation instruction field 1382 according to the operation instruction.

[0129] For example, the user can directly set the coding attribute information of the radio frequency identification label to be designed through the label design interface 10, and set the coding information recorded in which state can be accessed or invalidated. The access or invalidation setting can be selected according to the user's check, that is, according to the factory setting or according to the custom information uploaded in step S103.

[0130] Step S1042: displaying the electronic product code field 1281 and the user custom field 1282 in the coding position field 128, and writing the custom information into the electronic product code field 1281 and the user custom field 1282 according to the operation instruction. Specifically, the radio frequency identification label has two storage areas of electronic product code (EPC) and user custom (User), and the user can upload custom information from the information import field 148 and select the custom information to be used and the storage area position. For example, referring to Figure 3 , the user can select the custom information uploaded in step S103 through the drop-down menu under the electronic product code field 1281 in the label design interface 10, and the selected custom information is stored in the storage area of the electronic product code.

[0131] In some embodiments, referring to Figure 15 , the online radio frequency identification label design method further includes steps S106-S108 before the aforementioned steps S200 and S201. In this way, the user can design a radio frequency identification label containing a one-dimensional barcode through the label design interface 10, and the label application situation can be more diverse.

[0132] Step S106: Display a one-dimensional barcode button 106 on the label design interface 10. And display a one-dimensional barcode design block 116 containing a one-dimensional barcode add button 126, a one-dimensional barcode source field 136, a one-dimensional barcode edit field 156 and a one-dimensional barcode attribute field 146 according to the point selection operation instruction of the one-dimensional barcode button 106.

[0133] Step S107: Display a one-dimensional barcode pattern on the label design picture block 11 according to the point selection operation instruction of the one-dimensional barcode add button 126.

[0134] Step S108: Display the custom information transmitted from the terminal device 40 on the one-dimensional barcode source field 136. Write the custom information into the one-dimensional barcode source field 136 according to the operation instruction. Write the one-dimensional barcode attribute setting information into the one-dimensional barcode attribute field 146 according to the operation instruction. Write the one-dimensional barcode edit information into the one-dimensional barcode edit field 156 according to the operation instruction.

[0135] For example, please refer to Figure 3 and Figure 5 , through steps S106-S108, the user can select the one-dimensional barcode add button 126 in the label design interface 10 to add a one-dimensional barcode to the designed label pattern. Then select the desired coding attribute information from the one-dimensional barcode attribute field 146, and can set the coding source information of the one-dimensional barcode by matching the display of the custom data one-dimensional barcode source field 136. In addition, the user can also select whether to display the one-dimensional barcode content and the content text display position from the one-dimensional barcode edit field 156.

[0136] In some embodiments, please refer to Figure 16 , the online wireless radio frequency identification label design method further includes steps S109-S111, and before the aforementioned steps S200 and S201. In this way, the user can design a wireless radio frequency identification label containing a two-dimensional barcode through the label design interface 10, and the label application scenarios can be more diverse.

[0137] Step S109: Display a two-dimensional barcode button 107 on the label design interface 10. And display a two-dimensional barcode design block 117 containing a two-dimensional barcode add button 127, a two-dimensional barcode source field 137 and a two-dimensional barcode attribute field 147 according to the point selection operation instruction of the two-dimensional barcode button 107.

[0138] Step S110: Display a two-dimensional barcode pattern on the label design picture block 11 according to the point selection operation instruction of the two-dimensional barcode add button 127.

[0139] Step S111: Displaying the custom information transmitted from the terminal device 40 in the two-dimensional barcode source field 137, writing the custom encoding information into the two-dimensional barcode source field 137 according to the operation instruction, and writing the two-dimensional barcode attribute setting information into the two-dimensional barcode attribute field 147 according to the operation instruction.

[0140] For example, referring to Figure 3 and Figure 6 , through steps S109-S111, the user can add a two-dimensional barcode to the designed label pattern in the label design interface 10 by selecting the two-dimensional barcode adding button 127, select the encoding attribute information to be used from the two-dimensional barcode attribute field 147, and display the two-dimensional barcode with the custom data in the two-dimensional barcode source field 137 and set the encoding source information of the two-dimensional barcode.

[0141] In some embodiments, referring to Figure 17 , the online wireless radio frequency identification label design method further comprises the following step S112, and is before the aforementioned steps S200 and S201.

[0142] Step S112: Displaying the common tool editing block 12 in the label design interface 10, the common tool editing block 12 comprising a plurality of editing buttons 120. An editing information is generated according to the selection operation instruction of each editing button 120.

[0143] Thus, referring to Figure 3 , displaying the common tool editing block 12 in the label design interface 10, the user can conveniently edit the label pattern through the plurality of editing buttons 120 in the common tool editing block 12. For example, the label design picture block 11 displays the pattern according to the editing information such as copying the layer, pasting the picture, restoring the file, reverting the restored file, closing the file, and storing the file.

[0144] In some embodiments, the step S112 of displaying the common tool editing block 12 in the label design interface 10 comprises the following steps S1121 and S1122.

[0145] Step S1121: Displaying the preview button 121 in the common tool editing block 12, and displaying the preview block 1211 according to the selection operation instruction of the preview button 121.

[0146] Step S1122: Displaying the label design draft in the preview block 1211.

[0147] Thus, through steps S1121 and S1122, referring to Figure 3 and Figure 7In the label design interface 10, a preview button 121 is displayed, and the user can preview the printing result of the label through the preview block 1211 to confirm the label design.

[0148] In some embodiments, the online wireless radio frequency identification label design method further comprises the following step S113, and is prior to the aforementioned steps S200 and S201. The step S113 can be performed simultaneously or sequentially with the step S112, as shown in the following. Figure 17

[0149] Step S113: Display the layer block 13 in the label design interface 10. The layer block 13 comprises a position information field 130, and the position information of one layer in the plurality of layers in the design in the label design picture block 11 is displayed in the position information field 130 according to the operation instruction. The position information comprises the coordinate position, the length and width size, and the angle.

[0150] Therefore, referring to Figure 3 and Figure 11 , the display of the layer block 13 in the label design interface 10 can help the user to know the position information of each layer in the current edited design more clearly, so as to make further correction or fine adjustment.

[0151] In some embodiments, referring to Figure 18 , the online wireless radio frequency identification label design method further comprises the following steps S114-S116, and is prior to the aforementioned steps S200 and S201.

[0152] Step S114: Display the text button 104 in the label design interface 10.

[0153] Step S115: Display a plurality of text editing fields 114 and a text source field 124 according to the clicking operation of the text button 104. An editing information is written in each text editing field 114 according to the operation instruction, and the design in the label design picture block 11 is displayed according to the editing information. Referring to FIG. 8, the text editing fields 114 comprise the text editing field 114 of “Text Import” to add text in the label design, the text editing field 114 of “Text Font and Size” to select the font or the text size to be used, and the text editing field 114 of “Alignment and Style” to edit the text arrangement of the label design.

[0154] Step S116: Display the custom information transmitted from the terminal device 40 in the text source field 124, and write the custom information in the text source field 124 according to the operation instruction. Therefore, the custom information can also provide the text content source of the label display, such as the text of the product name, the text of the manufacturer name, etc.​

[0155] In some embodiments, referring to Figure 19 , the online RFID tag design method further comprises the following steps S117-S119, and is prior to the aforementioned steps S200 and S201.

[0156] Step S117: displaying the picture button 105 on the tag design interface 10.

[0157] Step S118: displaying the picture field 115 according to the clicking operation of the picture button 105, and receiving the picture information transmitted from the terminal device 40 according to the operation instruction of the picture field 115.

[0158] Step S119: displaying the pattern on the tag design picture block 11 according to the picture information and the editing information. In this way, the trademark or the pre-used file can be uploaded to the tag design interface 10 to make the customized RFID tag.

[0159] In some embodiments, referring to Figure 20 , the online RFID tag design method further comprises the following steps S120 and S121, and is prior to the aforementioned steps S200 and S201.

[0160] Step S120: displaying the pattern button 103 on the tag design interface 10.

[0161] Step S121: displaying the plurality of pattern editing fields 113 according to the clicking operation of the pattern button 103, writing an editing information according to the operation instruction of each pattern editing field 113, and displaying the pattern on the tag design picture block 11 according to the editing information. In this way, when designing the customized RFID tag, the user can add the geometric pattern or select the filled color, and the tag design picture block 11 displays the pattern according to the editing information.

[0162] In some embodiments, referring to Figure 21 , the online RFID tag design method further comprises the following step S202. Here, step S202 is a further printing step of processing the received information from the cloud server 20.

[0163] Step S202: receiving the tag design drawing from the cloud server 20 by the printing device 60, and printing the RFID tag according to the tag design drawing. In this way, after the user transmits the designed pattern to the cloud server 20 through the tag design interface 10, the back-end manufacturer can print the RFID tag according to the pattern stored in the cloud server 20 and the related tag information, so as to increase the convenience of tag making.

[0164] In summary, the user does not need to find a professional design company and a label printing manufacturer, and the user only needs to design a label that meets the use requirements through the online wireless radio frequency identification label design system and method of the present application. The label design interface provides intuitive layout blocks, fields and buttons, making the design process simple and convenient, greatly reducing the design and development cost and improving the convenience of label use. In addition, the designed label file is stored in the cloud server, which is convenient for next use and modification.

Claims

1. An on-line radio frequency identification tag design system, comprising: The web server displays a label design interface on the terminal device, the label design interface comprising: a plurality of environmental material selection buttons, each of which is written with environmental material information in response to a selection operation; a label button that displays a plurality of size selection buttons in response to a selection operation, each of which displays an antenna module selection field in response to a selection operation, writes antenna module information into the antenna module selection field in accordance with an operation instruction, and corresponds to the environmental material information; an information import field that receives custom information transmitted from the terminal device in accordance with an operation instruction; a radio frequency identification label button that displays an encoding block in response to a selection operation, the encoding block comprising an encoding position field and an attribute field, writes the custom information into the encoding position field in accordance with an operation instruction, and writes the custom information into the attribute field in accordance with an operation instruction; and a label design picture block that displays a pattern in accordance with a plurality of editing information; and a cloud server connected to the web server, the cloud server comprising: a label database that stores the environmental material information, the antenna module information, the custom information, and the pattern; and a label generation unit that generates a radio frequency identification label design drawing in accordance with the environmental material information, the antenna module information, the custom information, and the pattern. The attribute field of the encoding block comprises an access instruction field and an invalidation instruction field, and writes the custom information into the access instruction field in accordance with an operation instruction and writes the custom information into the invalidation instruction field in accordance with an operation instruction. The encoding position field of the encoding block comprises an electronic product code field and a user-defined field, and writes the custom information into the electronic product code field in accordance with an operation instruction and writes the custom information into the user-defined field in accordance with an operation instruction. The label design interface further comprises a one-dimensional barcode button that displays a one-dimensional barcode design block in response to a selection operation, the one-dimensional barcode design block comprising a one-dimensional barcode addition button, a one-dimensional barcode source field, a one-dimensional barcode editing field, and a one-dimensional barcode attribute field, the one-dimensional barcode addition button displaying a one-dimensional barcode pattern in the label design picture block in response to a selection operation, the web server displaying the custom information transmitted from the terminal device in the one-dimensional barcode source field, writing the custom information into the one-dimensional barcode source field in accordance with an operation instruction, writing one-dimensional barcode editing information into the one-dimensional barcode editing field in accordance with an operation instruction, and writing one-dimensional barcode attribute information into the one-dimensional barcode attribute field in accordance with an operation instruction.

2. The on-line radio frequency identification tag design system of claim 1, wherein, ​ 3. The on-line radio frequency identification tag design system of claim 1, wherein, ​ 4. The on-line radio frequency identification tag design system of claim 1, wherein, ​ 5. The on-line radio frequency identification tag design system of claim 1, wherein, The label design interface further comprises a two-dimensional barcode button, which displays a two-dimensional barcode design block when clicked. The two-dimensional barcode design block comprises a two-dimensional barcode addition button, a two-dimensional barcode source field, and a two-dimensional barcode attribute field. The two-dimensional barcode addition button displays a two-dimensional barcode pattern in the label design picture block when clicked. The web server displays the custom information transmitted from the terminal device in the two-dimensional barcode source field, writes the custom information into the two-dimensional barcode source field according to operation instructions, and writes two-dimensional barcode attribute information into the two-dimensional barcode attribute field according to operation instructions.

6. The on-line radio frequency identification tag design system of claim 1, wherein, The label design interface further comprises a common tool editing block, which comprises a plurality of editing buttons. Each editing button generates an editing information when clicked. The label design picture block displays the pattern according to the plurality of editing information.

7. The on-line radio frequency identification tag design system of claim 6, wherein, The common tool editing block comprises a preview button, which displays a preview block to display the RFID label design draft when clicked.

8. The on-line radio frequency identification tag design system of claim 1, wherein, The label design interface further comprises a text button, which displays a plurality of text editing fields and a text source field when clicked. Each text editing field writes an editing information according to operation instructions. The label design picture block displays the pattern according to the plurality of editing information. The web server displays the custom information transmitted from the terminal device in the text source field, writes the custom information into the text source field according to operation instructions.

9. The on-line radio frequency identification tag design system of claim 1, wherein, The label design interface further comprises a picture button, which displays a picture field when clicked. The picture field receives picture information transmitted from the terminal device according to operation instructions. The label design picture block displays the pattern according to the picture information and the plurality of editing information.

10. The on-line radio frequency identification tag design system of claim 1, wherein, The label design interface further comprises a graphic button, which displays a plurality of graphic editing fields when clicked. Each graphic editing field writes an editing information according to operation instructions. The label design picture block displays the pattern according to the plurality of editing information.

11. The on-line radio frequency identification tag design system of claim 1, wherein, The label design interface further comprises a layer block, which comprises a position information field. The position information field displays the position information of one of a plurality of layers in the pattern in the label design picture block according to operation instructions. The position information comprises coordinate axis position, length and width size, and angle.

12. The on-line radio frequency identification tag design system of claim 1, wherein, A handwriting input electronic device is further connected to the terminal device to generate operation instructions.

13. The on-line radio frequency identification tag design system of claim 1, wherein, A printing device is further connected to the cloud server to print RFID labels according to the RFID label design draft.

14. An on-line radio frequency identification tag design method, characterized by, The method comprises the following steps: Displaying a label design interface on a terminal device; Displaying a plurality of environmental material selection buttons on the label design interface to write environmental material information according to the click operation instruction of each environmental material selection button; The label design interface displays a label button, displays a plurality of size selection buttons according to a point selection operation instruction of the label button, displays an antenna module selection field according to a point selection operation instruction of each size selection button, and writes antenna module information into the antenna module selection field according to an operation instruction, wherein the antenna module information is correspondingly related to the environmental material information; The label design interface displays an information import field, and the information import field receives self-defined information transmitted from the terminal device according to an operation instruction; The label design interface displays a radio frequency identification label button, displays a coding position field and an attribute field according to a point selection operation instruction of the radio frequency identification label button, writes the self-defined information into the coding position field according to an operation instruction, and writes the self-defined information into the attribute field according to an operation instruction; The label design interface displays a label design picture block, and displays a pattern in the label design picture block according to a plurality of editing information; The cloud server receives and stores the environmental material information, the antenna module information, the self-defined information and the pattern; And The radio frequency identification label design draft is generated according to the environmental material information, the antenna module information, the self-defined information and the pattern.

15. The online radio frequency identification tag design method of claim 14, wherein, In the step of displaying the radio frequency identification label button in the label design interface, the attribute field displays an access instruction field and an invalid instruction field, and the coding position field displays an electronic product code field and a user-defined field, wherein the self-defined information is written into the access instruction field and the invalid instruction field according to an operation instruction, and the self-defined information is written into the electronic product code field and the user-defined field according to an operation instruction. Further comprising: The label design interface displays a one-dimensional barcode button, displays a one-dimensional barcode design block including a one-dimensional barcode addition button, a one-dimensional barcode source field, a one-dimensional barcode editing field and a one-dimensional barcode attribute field according to a point selection operation instruction of the one-dimensional barcode button; 16. The method of claim 14, wherein: The label design picture block displays a one-dimensional barcode pattern according to a point selection operation instruction of the one-dimensional barcode addition button; And The one-dimensional barcode source field displays the self-defined information transmitted from the terminal device, writes the self-defined information into the one-dimensional barcode source field according to an operation instruction, writes one-dimensional barcode attribute setting information into the one-dimensional barcode attribute field according to an operation instruction, and writes one-dimensional barcode editing information into the one-dimensional barcode editing field according to an operation instruction. Further comprising: The label design interface displays a two-dimensional barcode button, displays a two-dimensional barcode design block including a two-dimensional barcode addition button, a two-dimensional barcode source field and a two-dimensional barcode attribute field according to a point selection operation instruction of the two-dimensional barcode button; 17. The online radio frequency identification tag design method of claim 14, wherein, The label design picture block displays a two-dimensional barcode pattern according to a point selection operation instruction of the two-dimensional barcode addition button; And The two-dimensional barcode source field displays the self-defined information transmitted from the terminal device, writes the self-defined information into the two-dimensional barcode source field according to an operation instruction, and writes two-dimensional barcode attribute setting information into the two-dimensional barcode attribute field according to an operation instruction. ​ displaying the custom information transmitted from the terminal device in the two-dimensional barcode source field, writing the custom information into the two-dimensional barcode source field according to an operation instruction, and writing two-dimensional barcode attribute setting information into the two-dimensional barcode attribute field according to an operation instruction.

18. The online radio frequency identification tag design method of claim 14, wherein, Further comprising: displaying a common tool editing block in the label design interface, the common tool editing block comprising a plurality of editing buttons, each of the editing buttons generating an editing information according to a click operation instruction.

19. The method of claim 18, wherein: The step of displaying a common tool editing block in the label design interface comprises: displaying a preview button in the common tool editing block; displaying a preview block according to a click operation instruction of the preview button; and displaying the wireless radio frequency identification label design draft in the preview block.

20. The online radio frequency identification tag design method of claim 14, wherein, Further comprising: displaying a layer block in the label design interface, the layer block comprising a position information field, displaying position information of one of a plurality of layers in the label design picture block in the position information field according to an operation instruction, the position information comprising coordinate axis position, length and width size, and angle.

21. The online radio frequency identification tag design method of claim 14, wherein, Further comprising: displaying a text button in the label design interface; displaying a plurality of text editing fields and a text source field according to a click operation of the text button, writing an editing information into each of the text editing fields according to an operation instruction, and displaying the pattern in the label design picture block according to the plurality of editing information; and displaying the custom information transmitted from the terminal device in the text source field according to an operation instruction.

22. The online radio frequency identification tag design method of claim 14, wherein, Further comprising: displaying a picture button in the label design interface; displaying a picture field according to a click operation of the picture button, and receiving picture information transmitted from the terminal device according to an operation instruction of the picture field; and displaying the pattern in the label design picture block according to the picture information and the plurality of editing information.

23. The online radio frequency identification tag design method of claim 14, wherein, Further comprising: displaying a pattern button in the label design interface; and displaying a plurality of pattern editing fields according to a click operation of the pattern button, writing an editing information into each of the pattern editing fields according to an operation instruction, and displaying the pattern in the label design picture block according to the plurality of editing information.

24. The online radio frequency identification tag design method of claim 14, wherein, Further comprising receiving the wireless radio frequency identification label design draft from the cloud server by a printing device, and printing a wireless radio frequency identification label according to the wireless radio frequency identification label design draft.

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