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The addition of RFID technology makes tool management easier

The introduction of RFID technology has undoubtedly brought revolutionary changes to Tool management, making it easier and more efficient. This wireless communication technology greatly simplifies the tracking, positioning and management process of tools through non-contact automatic identification, providing strong support for the production operations of modern enterprises.


In the traditional tool management model, it is often necessary to rely on manual inventory and recording one by one, which is not only time-consuming and labor-intensive, but also error-prone. The application of RFID technology can realize automatic identification and tracking of tools by embedding RFID tags on tools. Whether it is entering, exiting or moving during use, the RFID system can update the status and location information of tools in real time, providing managers with accurate data support.


In addition, RFID technology is highly flexible and scalable. It can be customized and optimized according to the actual needs of the enterprise, adapting to tool management scenarios of different sizes and types. At the same time, with the continuous development of Internet of Things technology, RFID technology can also be seamlessly connected with other smart devices and systems to form a more complete tool management system.


In practical applications, RFID technology has been widely used in manufacturing, logistics, warehousing and other fields. For example, in the manufacturing industry, RFID technology can help companies achieve real-time monitoring and maintenance of production equipment, improve production efficiency and product quality; in the Logistics industry, RFID technology can achieve rapid identification and tracking of goods, improve logistics efficiency and Reduce error rates.


RFID tool control operation process


Tool purchase and storage: First, before the tools are put into storage, electronic labels should be pasted or hung on the tools, and basic information such as the tool's product name, model, specification, origin, and packaging should be entered, and the tool categories should be divided. After the entry and classification are completed, Place tools in corresponding locations in the warehouse and keep location records.


Tool lending: Use the RFID Reader to read the RFID information of the tools that need to be borrowed, and save relevant information such as the lending time, borrowing department and personnel, and the purpose of borrowing in the data collector. Click the touch screen to confirm, and pass the batch processed or wirelessly uploaded to the system.


Tool return: Use the RFID reader to read the information in the tool tag and check it with the information retained when borrowing. After confirming that it is correct, click the touch screen to confirm storage, and place the tool in the corresponding location in the warehouse. The return procedure is completed.


Appraisal of measuring tools: According to relevant national regulations, measuring tools must be regularly authenticated by designated professional testing departments. After verification, the identification information is written into the system.


Tool scrapping: When the tool reaches the specified service life or becomes damaged and cannot be used anymore, it must be scrapped. After reading the electronic tag information of the equipment through an RFID reader or handheld terminal, the equipment is scrapped after the reason for scrapping, person in charge, approver and other relevant information is entered into the system. The scrapped equipment information will be retained in the scrapped tool File information for query.


Tool inventory: Enter the inventory state, use the RFID handheld device to collect the tool tags on the tool rack in sequence, enter them, and upload them to the backend. By adding RFID tags to the tools, the quantity of each tool can be collected, and the backend system will then Complete inventory of warehouse tools and generate reports based on collected quantity data.


Backend system management: Through the RFID tags installed on the tools, the storage, loan, return, inventory, transfer and other information of each tool can be collected, entered, and uploaded to the backend.


RFID manages the entry and exit of tools, and the RFID electronic tag data of the tools is automatically identified through the RFID reader, which greatly improves the accuracy and efficiency of tool management. Let each tool have full life cycle process visualization, improve the efficiency of tool use, ensure the accuracy and efficiency of tool management, and achieve information sharing in various links, providing a strong guarantee for safe production.


In short, the addition of RFID technology makes tool management easier and more efficient, providing strong support for the development of enterprises. With the continuous advancement of technology and the continuous expansion of application scenarios, it is believed that RFID technology will play a more important role in tool management in the future.


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