140ACI04000C 模拟量输入模块
140ACI04000C在每次主控制器扫描开始时,电流寄存器和 I/O 状态表通过高速、安全的光纤通信链路传输到热备用。在主控制器发生故障时,备用选件处理器通过新的 I/O 和寄存器状态信息控制系统,140ACI04000C以实现无颠簸、受控的传输,同时将过程影响降至低。140ACI04000C不能容忍任何控制中断的关键过程可以确保快速、平稳的切换,从而实现 140ACI04000 分辨率。At the beginning of each main controller scan, the current register and I/O status table are transmitted to the hot standby via a high-speed and secure fiber optic communication link. In the event of a failure in the main controller, the backup option processor controls the system through the latest I/O and register status information, 140ACI04000C, to achieve bumpless and controlled transmission while minimizing process impact. 140ACI04000C cannot tolerate any critical process control interruptions, ensuring fast and smooth switching, thus achieving 140ACI04000 resolution.
The single board Modicon hot standby option processor in each controller system improves reliability by eliminating intermediate Supervisor controllers.
The system control transmission occurs in any direction, and 140ACI04000C increases the normal operation time of the system by eliminating the master-slave relationship.
Verify and compare the integrity of user programs between two controllers to ensure high security.
The high-speed fiber optic communication link between processors can greatly reduce scanning impact and improve productivity at 140ACI04000C.
The 140ACI04000C main I/O status table is transmitted to the backup controller during each scan or multiple scans, providing the latest system status and higher system integrity.
The software control of Modbus and Modbus Plus ports allows the host to communicate with any controller without the need for custom communication drivers.
The new configuration extension mode provides greater flexibility in state RAM transfer.
The optional trapezoidal logic function block of 140ACI04000C provides a simple migration path for 984/800 series hot standby users.
The hot standby system is compatible with all Modicon TSX Quantum controllers and S908 remote I/O systems, and 140ACI04000C enables cost-effective system design
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