GE IC695PBM300-BA

  • Module Type: PROFIBUS master
  • Number of Slots: 1 (single slot)
  • Backplane Support: RX3i PCI universal backplane
  • Communication Ports: RS - 232
  • Power Consumption: 440 mA @ 3.3 VDC
  • Operating Temperature: 0°C to 60°C
  • Storage Temperature: - 40°C to 85°C
  • Data Rates Supported: 9.6 kbit/s, 19.2 kbit/s, 93.75 kbit/s, 187.5 kbit/s, 500 kbit/s, 1.5 Mbit/s, 3 Mbit/s, 6 Mbit/s, 12 Mbit/s
  • Data Size Capability: 3584 bytes input and 3584 bytes output
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Function Features

  • PROFIBUS Master Functionality: It can control communication with up to 125 PROFIBUS – DP slaves, enabling the RX3i CPU to send and receive data on the PROFIBUS – DP network.
  • Data Transfer Capacity: Supports up to 3584 bytes of input data and 3584 bytes of output data in total, and up to 244 bytes of input data and 244 bytes of output data per slave.
  • Diagnostic Capabilities: Provides detailed status and diagnostic information, including slave status bit array, network diagnostic counters, DP master diagnostic counters, firmware module revision, and slave diagnostic address.
  • Standard Data Rate Support: Supports all standard PROFIBUS data rates, from 9.6 kbit/s up to 12 Mbit/s, offering flexible network configuration options.
  • Sync and Freeze Modes: Supports sync and freeze modes, which are useful for synchronized operations in the network.
  • DP – V1 Function Support: Capable of handling DP – V1 read, write, and alarm messages, expanding the functionality of the module in the PROFIBUS – DP network.
  • LED Indicators: Equipped with PROFIBUS – compliant module and network status LEDs, such as PROFIBUS OK ED indicator, network indicator, and MOD status indicator, for easy diagnosis of module and network status.
  • Firmware Upgradability: The firmware can be upgraded via the host controller CPU using the WinLoader software utility, ensuring the module can be updated to adapt to different application requirements.

Application Scenarios

  • Industrial Automation: Widely used in industrial automation systems to realize data transmission and communication between devices. For example, in a manufacturing production line, it can connect various sensors, actuators, and controllers to form a unified control network, improving production efficiency and product quality.
  • Process Control: Suitable for process control systems in industries such as chemical, power, and oil and gas. It can accurately control process parameters such as temperature, pressure, and flow by communicating with field devices on the PROFIBUS – DP network.
  • Machine Control: In the field of machine tool control, it can connect the machine tool control system with various peripheral devices, enabling precise control and monitoring of the machine tool’s operation, and improving the automation level and processing accuracy of the machine tool.




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