F8621A Communication Power Supply Equipment

F8621A

Technical Parameters:

  • User defined tag-based programming for descriptive I/O naming
  • Simple-to-use instructions and Easy math to eliminate complex ladder logic rungs
  • Application tools for quick access to setup, programming, debugging and PAC control
  • Task Manager for quick and easy prioritization of Ladder Logic code
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Simon Zhang
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Description

F8621A Communication Power Supply Equipment


F8621A is the power and guarantee of the communication industry, which has an important impact on ensuring the quality of communication and plays an irreplaceable role in the communication industry. Because the failure of communication equipment is localised, while the failure of power supply will cause all communication to stop, people regard communication power supply as the heart of the whole communication system.FTA-544 17-550544-001B provides guarantee for the reliable operation of railway communication power supply, air-conditioning and environment centralised monitoring system and the safe operation of railway communication.

F8621A In order to ensure the smooth development of railway communications and the safety and reliability of its communications, FTA-544 17-550544-001B carries out centralised monitoring and control of communications power supply equipment and its environment. The monitoring system carries out telemetry, telecommunication and remote control on each independent communication power supply and air-conditioning system and each equipment within the system, monitors the operation status of the system and equipment in real time, records and processes relevant data, detects faults in a timely manner, and notifies the personnel to deal with the faults, so as to realise fewer or unmanned communication bureaus (stations) and centralised monitoring and maintenance management of power supply and air-conditioning to improve the reliability of the power supply system and safety of the communication equipment. The reliability of the power supply system and the safety of the communication equipment are improved.

The response time of F8621A monitoring system is less than 10s from the occurrence of a fault event to the time interval of reflecting it to the manned monitoring level, and it can respond to multiple events and multi-point simultaneous alarms. The hardware and software of the system should adopt modular structure with maximum flexibility to adapt to the needs of monitoring system networks of different sizes and different numbers of monitoring objects (monitored devices). The monitoring system does not affect the normal work of the monitoring object and does not change the original function of the intelligent equipment (equipment with internal automatic control function).