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Siemens Fire FS18 System
The Siemens Fire FS18 system adopts the latest distributed intelligent detection technology and comes with a built-in CPU. Using fuzzy logic and neural network theory, the detection data is processed in a decentralized manner. After receiving the signal, it is processed by an intelligent algorithm (DA) for fire identification. That is, each detector directly evaluates and analyzes the detection sampling information and data, determines the degree of information danger, and then sends the data to the control screen to trigger the corresponding alarm signal, completely eliminating false alarms
Detection technology
To adopt the latest distributed intelligent detection technology, it comes with a built-in CPU. Using fuzzy logic and neural network theory, the detection data is processed in a decentralized manner. After receiving the signal, it is processed by an intelligent algorithm (DA) for fire identification. That is, each detector directly evaluates and analyzes the detection sampling information and data, determines the degree of information danger, and then sends the data to the control screen to trigger the corresponding alarm signal, completely eliminating false alarms.
Detector structure
Having the world's patented "maze style smoke chamber" structure, the detector has sufficient time to analyze smoke and eliminate various external noise effects, completely eliminating false alarms.
Encoding method
All encoding devices are fully automated, eliminating the need for traditional encoders and toggle switches, greatly reducing installation costs and error rates. Daily maintenance and management will be very convenient.
Circuit card failure replacement
Simply replace the new card to solve the problem, without the need for re debugging. Each circuit card has one circuit. If the circuit card is damaged and needs to be replaced, it will not affect the operation of other circuit cards. The system malfunction has been minimized. The system has high reliability.
System debugging method
During debugging, program each control host independently. If there are any modifications after completion, only the controller program belonging to that area needs to be modified.
System wiring
Non polar dual bus, capable of circular and arbitrary branch wiring, convenient construction and maintenance, and less prone to errors.
Loop address allocation
The detector and module address numbers can be assigned arbitrarily without restrictions, allowing for full utilization of system circuit resources.
Host power supply
Fully enclosed independent power supply device, installed in the cabinet, with no interference between the power supply and controller, good heat dissipation, and reliable operation.
History
The controller can store 10000 historical records.
Detector alarm indicator light
360 degree full view without blind spots.