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RFID Temperature Tag For Electric Cabinet Overheat Monitor Control System

Solution updated on: 2019/6/11 6:25:33 - by - - RFIDtagworld XMINNOV RFID Tag Manufacturer / SolutionID:2571

  • RFID Temperature Tag For Electric Cabinet Overheat Monitor Control System
  • RFID Temperature Tag For Electric Cabinet Overheat Monitor Control System
  • RFID Temperature Tag For Electric Cabinet Overheat Monitor Control System
RFID Temperature Tag For Electric Cabinet Overheat Monitor Control System RFID Temperature Tag For Electric Cabinet Overheat Monitor Control System RFID Temperature Tag For Electric Cabinet Overheat Monitor Control System

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KEY FEATURE OF RFID Overheat Monitor System

  • Real-Time Monitoring: One of the key advantages of RFID  temperature tag is their ability to provide real-time temperature data.An early warning can be issued once the temperature of the electrical cabinet is too high. 

  • Data Accuracy: RFID temperature tag boast high levels of accuracy in temperature measurements. This ensures that the data collected is reliable and trustworthy for making critical decisions.

  • Convenience: The wireless nature of RFID technology simplifies the monitoring process. It eliminates the need for manual data collection and reduces the chances of human errors associated with data transcription.

  • Data Integration: RFID temperature tags can often be seamlessly integrated into existing data management systems. 

  • Flexible: The flexible, temperature sensing smart labels can be applied to almost any surface to support informed proactive decision making.

  • low cost: Low cost temperature monitoring with passive, RFID smart labels that do not require energy or manual maintenance.

  • Versatility: These tags find applications in various sectors, including cold chain logistics, healthcare, pharmaceuticals, and environmental monitoring. 


IMPLEMENTATION & VALUE POINT of RFID Overheat Monitor System

  • Electric Cabinet overheating is relatively common for a number of reasons, i.e. overload, poor power condition, high effective service factor, frequent stops and starts or environmental reasons.

  • In modern plant operations, a well-planned preventive maintenance programmeis vital to reliable and long-life operation of electric cabinet. Many electric companies lack such a programme due to the high cost and intricacy associated with employing major sensing techniques for monitoring live equipment status.

  • The system would incorporate UHF RFID sensor tags for temperature, fixed RFID readers with antennas, and a based unit (built around a personal computer) with access to the internet. This is an on-line RFID-based monitoring system. 

  • RFID tags can transmit real-time data on the temperature changes of the power cabinet to the reader, and the reader uploads it to the cloud through the gateway to implement preventive measures to prevent overheating and overloading of the power cabinet.

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