Description
- Product Model: IS210BPPBH2BCAA
- Manufacturer: GE
- System Platform: Mark VIe, DCS
- Processor Type: Multi-core processor with integrated I/O processing
- Operating Frequency: 1 GHz
- Memory: 4 GB RAM
- Input Voltage: 24 VDC
- Current Output: 2 A
- Mounting Type: Rack-mounted
- Operating Temperature: -40°C to +70°C
- Humidity Range: 5% to 95% RH (non-condensing)
- Shock Rating: 15g, 11ms duration
- Vibration Rating: 5-100Hz, 1.0g
- Certifications: UL, CE, RoHS
- Compliance: IEC 61010-1, IEC 60950-1
- MTBF (Mean Time Between Failures): 100,000 hours
- Warranty: 12 months
Technical Architecture & Functional Positioning
Architecture Analysis
The IS210BPPBH2BCAA is a high-performance CPU processor module designed for use in GE Mark VIe control systems. As the central processing unit of the system, it handles the computational tasks required to monitor, control, and optimize various industrial processes, such as those found in gas turbine control, power generation, and chemical processing. The module integrates multi-core processing capabilities to handle complex control algorithms and communication tasks simultaneously, making it suitable for real-time, high-speed automation applications.
The IS210BPPBH2BCAA is designed for integration into Mark VIe platforms, providing both high-frequency processing and reliable real-time performance. Its key features include a 1 GHz processor and 4 GB of RAM, which allow it to perform high-level computations required by modern industrial control systems. The module can handle the large amounts of data generated by sensors, control loops, and connected devices in a seamless manner.
The robust thermal design of the processor ensures that the module can operate in harsh environments, with an operating temperature range of -40°C to +70°C. The shock and vibration ratings ensure that the unit can withstand the mechanical stresses typically encountered in industrial applications.
Typical Application Scenarios
- Gas Turbine Control: Serves as the central processor for controlling and optimizing gas turbines in power plants. It processes input from sensors, manages fuel control, and adjusts turbine parameters in real-time.
- Industrial Automation: Used in large-scale DCS systems, managing all automation tasks such as process monitoring, data collection, and operational control in industries like chemical manufacturing and oil & gas.
- Power Generation Plants: Used in control systems for monitoring power distribution and generation, ensuring operational efficiency, and facilitating predictive maintenance.
- Offshore Oil Rigs: Ensures continuous operation of control systems, including remote data processing, monitoring, and control of offshore platforms where power and space are limited.
- Renewable Energy Systems: Integrated into wind and solar power systems to manage energy generation, storage, and grid integration.
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