RFID Keyfob The Corresponding Technology

RFID Keyfob The goal of Industrial 4.0 is to interconnect all the objects of a factory through communication technology. In order to achieve the control of the various components in the production process, RFID Keyfob the need for appropriate technology, such as radio frequency identification (RFID) and near field communication (NFC) support.

RFID-based identification systems are now an integral part of machine manufacturing: it helps to reliably and effectively control the production process. However, RFID Keyfob the current RFID as a reusable program is mainly used for tool control, and directly on the tool or slider implementation. The next innovative step is for continuous process control, as well as processing units, which identify the machine and instrumentation components directly with RFID tags.


This intelligent identification is almost the only option. Because of the extremely diverse options and flexible processing mode allows the production operators continue to face the production, assembly and intelligent technical services, new challenges. RFID Keyfob The participants in the process chain also put forward some necessary integration requirements, that is, the data protection under the processing and integration of the industry 4.0. Although this concept can be heard in all parts of Germany, but in addition to a number of pioneers of several island projects is also very rare. The conclusion is that the key cost and economic advantages in the international competition did not bring benefits.


In fact, not only because RFID-based and automation-based solutions bring economic interest in the industry, market development in the machine and instrumentation manufacturing industry to form a trend: the product of small batch and personalized configuration, RFID Keyfob in this context Other programs are almost impossible to do so. RFID Keyfob The complexity of the process is also increasing. For example, an assembled circuit board is often subjected to electronic components processing up to 10 different sites until it is eventually loaded into a vehicle or an instrument device. The potential for process optimization in the production of circuit boards, RFID Keyfob coating circuits and conductive strips is undoubtedly fully exploited by the application of conventional identification techniques. In the circuit board assembly required by the storage module and the capacitor processing process presents a more significant potential.


By installing a unique RFID master ID directly on the board, a selective assembly up to a single component level can be achieved, thus achieving the basic requirements for production 4.0. In this way, in the event of an emergency order can automatically enter the state, RFID Keyfob in the assembly line through a turnout preseator device forward positioning allocation. When this change is made due to the processing flow, the board will send a message informing it about what it should do or whether it has already gone through several sites during several downstream assembly steps.


 

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