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Management of RFID readers in robotic arm production

Intelligent automation is the ultimate goal that every manufacturing company aspires to pursue, with the aim of increasing production capacity, reducing human factors and error rates. And the robotic arm is the best solution to replace manual labor on the production line, especially in high-risk production processes. The more fields in which robotic arms are applied, the more products need to be subdivided, which leads to an increasing number of parts for robotic arms. Faced with a multitude of robotic arm components and market demand, managing these components poses a significant challenge. The production management of robotic arms is the use of manual labor to manage the production of robotic arm components. The key to work efficiency lies in employees. Therefore, the speed and accuracy of employees' reading and recognition of information related to robotic arm components during the work process will have a certain impact, and the final result will affect work efficiency and even the quality of robotic arm components.   RFID technology realizes automatic control and monitoring of products on the production line of robotic arm parts, and the key is that the conveyor belt can timely transmit the correct parts. RFID tags can conveniently and accurately record process information and operation information on the production line of robotic arm parts, meeting the needs of flexible production. The complete traceability of production can be achieved by recording the worker ID, time, operation, and quality inspection results, which can also avoid errors caused by manual recording of information in the production environment. Identify RFID tags on the assembly line Use the model information above to determine whether it is the part model to be assembled. If it is, proceed to the next process and wait for assembly. If not, filter it out.   The design of a robotic arm parts warehousing management system based on RFID technology is to achieve automation of item inbound and outbound control, item storage location and quantity statistics, and information query processes, making it convenient for management personnel to conduct statistics, queries, and grasp the flow of materials.   There is an RFID electronic tag on each pallet entering and exiting the parts warehouse, RFID readers are installed on the warehouse doors, and each warehouse administrator has an RFID handheld device. Before each batch of robotic arm parts is put into storage, the warehouse administrator uses an RFID handheld device to scan the RFID electronic tags of the robotic arm parts on each pallet, recording the robotic arm parts. When the parts on this pallet enter the warehouse, the RFID reader at the entrance will directly read out the part information on the tag and store it in the computer for recording. The backend information management system will automatically generate records and accurately record where this batch of parts is placed in the warehouse.

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