Description
- Product Model: IS210BPPCH1ACA
- Manufacturer: GE
- System Platform: Mark VIe, DCS
- Processor Type: High-performance multi-core processor
- 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 IS210BPPCH1ACA is a high-performance processor module designed for integration into GE Mark VIe and other industrial control systems. It plays a crucial role in processing and controlling complex operations in gas turbine systems, industrial automation, and distributed control systems (DCS).
The IS210BPPCH1ACA module is equipped with a multi-core processor running at 1 GHz and is backed by 4 GB of RAM, ensuring that it can handle high-speed data processing, real-time control operations, and large-scale data analytics. The module’s design ensures minimal latency, making it suitable for high-performance applications that require immediate feedback and control.
The IS210BPPCH1ACA is engineered to function in demanding industrial environments, where reliability and uptime are paramount. Its shock and vibration resistance, combined with an extended temperature range of -40°C to +70°C, allows it to perform in harsh conditions such as power plants, offshore rigs, and chemical processing facilities.
Typical Application Scenarios
- Gas Turbine Control: Acts as the central processor for controlling gas turbine operations, managing fuel, power output, and system parameters in real-time.
- Industrial Automation: Integrated into distributed control systems (DCS), handling everything from process monitoring to predictive maintenance in industries such as petrochemical, manufacturing, and mining.
- Power Generation: Used in power plants for monitoring and controlling power generation processes, ensuring that equipment runs efficiently and within safe parameters.
- Offshore Oil & Gas: Ensures real-time processing of control signals for offshore platforms, where safety and operational continuity are critical.
- Renewable Energy Systems: Integrated into wind or solar power systems to manage energy generation, distribution, and integration with the grid.
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