GE Mark VI IS200EISBH1AAB Precision Control Module for Industrial Automation, 200 Characters Max
Brand:General Electric Model:IS200EISBH1AAB Category:Printed Circuit Board Series:Mark VI Module Type:Speedtronic Application:Turbine Control Dimensions (WxHxD):11 x 6 x 6.7 cm Weight:0.14 kg Power Supply Voltage:24V DC Communication Interface:ISBus Control Modules Compatibility:M1, M2, C Engineered for unparalleled reliability and performance, the GE Mark VI IS200EISBH1AAB printed circuit board is a cornerstone component in the advanced automation systems of today industries.
Built on the robust foundation of the Speedtronic technology, this board ensures seamless integration and enhanced control capabilities. Crafted from premium-grade materials, this board is designed to withstand the rigorous conditions found in industrial environments, guaranteeing prolonged operational life and minimal maintenance requirements. Featuring an innovative ISBus communication interface, the IS200EISBH1AAB facilitates efficient data exchange between various control modules, including M1, M2, and C models.
This ensures a harmonious operation across multiple systems, enhancing overall productivity. With its broad temperature tolerance ranging from -20"C to +70"C, this board is capable of performing reliably in extreme conditions, making it suitable for a wide array of industrial applications. Its ability to maintain stable operation under varied environmental pressures ensures consistent performance in demanding settings. The inclusion of fiber-optic feedback mechanism enables precise monitoring and control, reducing the risk of errors and downtime. This feature is particularly valuable in high-precision applications where accuracy and responsiveness are paramount. The GE IS200EISBH1AAB is an advanced exciter ISBus board designed for seamless integration into high-performance power systems, ensuring precise control and enhanced system efficiency.
Features
▪ Contains 10 Mbytes of battery-backed user memory and 10 Mbytes of non-volatile flash user memory.
▪ Provides access to bulk memory via reference table %W.
▪ Configurable data and program memory.
▪ Programming in Ladder Diagram, C, Structured Text, and Function Block Diagram.
▪ Supports auto-located Symbolic Variables that can use any amount of user memory.
▪ Reference table sizes include 32Kbits for discrete %I and %Q and up to 32K words each for analog %AI and %AQ.
▪ Supports Series 90-70 discrete and analog I/O, communications, and other modules. For a list of modules supported, refer to the PACSystems RX7i Installation Manual, GFK-2223.
▪ Supports all VME modules supported by Series 90-70.
▪ Supports RX7i data monitoring over the web. Allows a combined total of up to 16 web server and FTP connections.
▪ Supports up to 512 program blocks. Maximum size for a block is 128KB.
▪ Test Edit mode allows you to easily test modifications to a running program.
▪ Bit-in-word referencing.
▪ Battery-backed calendar clock.
▪ In-system upgradeable firmware.
▪ Three isolated serial ports: an RS-485 serial port, an RS-232 serial port, and an RS-232 Ethernet station manager serial port.
▪ The embedded Ethernet interface provides:
- Data exchange using Ethernet Global Data (EGD)
- TCP/IP communication services using SRTP
- Support for SRTP Channels, Modbus/TCP Server, and Modbus/TCP Client
- Full programming and configuration services
- Comprehensive station management and diagnostic tools
- Two full-duplex 10BaseT/100BaseT/TX (RJ-45 Connector) ports with an internal network switch providing auto-negotiated network speed, duplex mode, and crossover detection.
- User-configurable Redundant IP address
- Time synchronization to SNTP time server on Ethernet network (when used with Release 5.00 or later CPU module).
Precautions for Use
Installation Environment: It should be installed in a dry, well - ventilated, dust - free, and non - corrosive gas environment. Avoid installing it in places with high temperature, high humidity, vibration, or strong electromagnetic interference.
Wiring Specifications: Wire strictly in accordance with the specifications and requirements of the terminal strip to ensure that the wires are firmly connected and avoid problems such as loose connections or short - circuits.
Load Matching: Select an appropriate power terminal strip according to the power and current requirements of the connected devices to ensure that it can bear the corresponding load.
Regular Maintenance: Regularly inspect and maintain the power terminal strip, clean dust and debris, check for loose connections, and promptly detect and address potential problems.




