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Product Introduction
The GE IS210BPPBH2C Processor Board is an advanced control and processing module designed for use in GE’s Mark VI and Mark VIe turbine control systems. This processor board serves as the computational core for managing high-speed data acquisition, system control, and communication between multiple subsystems in industrial automation environments.
It is built with robust embedded architecture and optimized for real-time deterministic control applications. The IS210BPPBH2C ensures efficient signal processing, logic execution, and data exchange across power generation systems such as gas turbines, steam turbines, and other heavy-duty industrial machinery. With its industrial-grade components, it guarantees reliability, precision, and continuous operation under demanding field conditions.
Product Parameters
Parameter | Description |
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Product Model | IS210BPPBH2C |
Manufacturer | General Electric (GE) |
Product Type | Processor Board / Control Module |
Function | Central processing for turbine and plant automation |
Processor Type | Embedded industrial-grade microprocessor |
Clock Speed | High-frequency multi-core processing (system dependent) |
Memory Capacity | Integrated volatile and non-volatile memory (RAM/Flash) |
Input Voltage | 5 VDC nominal |
Power Consumption | 20 W (typical) |
Communication Interfaces | Ethernet, Serial, VME bus, proprietary GE backplane |
Operating Temperature | 0°C to +60°C |
Storage Temperature | -40°C to +85°C |
Relative Humidity | 5–95% non-condensing |
Cooling Method | Passive or system-integrated forced air |
Mounting Type | Rack-mounted or module-inserted |
Protection Features | Overvoltage, overcurrent, and ESD protection |
Compatibility | Mark VI / Mark VIe turbine control systems |
Dimensions | 200 × 100 × 25 mm |
Weight | 0.58 kg |
Compliance | Meets industrial EMC and safety standards |
Product Applications
The GE IS210BPPBH2C Processor Board is widely used across multiple industrial and energy control applications:
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Gas and Steam Turbine Control: Provides core processing and logic control for turbine operations in GE Mark VI and Mark VIe systems.
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Power Plant Automation: Coordinates turbine, generator, and auxiliary equipment through real-time communication and control.
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Process Control Systems: Executes complex control algorithms for manufacturing and process automation.
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Data Acquisition Systems: Collects and processes input signals from multiple field sensors for precision monitoring.
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Distributed Control Systems (DCS): Acts as a central controller within GE’s distributed automation network.
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Communication Interface Management: Enables efficient data transfer between subsystems, operator stations, and control modules.
Product Advantages
The GE IS210BPPBH2C Processor Board delivers several technical and operational advantages that make it indispensable for industrial control systems:
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High-Performance Processing: Provides rapid computation for real-time control and automation.
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Enhanced Reliability: Built with durable industrial components to operate in harsh environments.
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Modular Integration: Designed for easy replacement and system scalability within GE Mark VI/VIe architectures.
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Stable Communication: Supports Ethernet and backplane communication for seamless data flow.
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Advanced Protection: Includes overvoltage, overcurrent, and electrostatic discharge protection.
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Energy Efficient: Low power consumption reduces heat and improves long-term stability.
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Strong Compatibility: Fully compatible with legacy and upgraded GE turbine control systems.
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Precision Control: Maintains synchronization between subsystems with high timing accuracy.
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Maintenance-Friendly Design: Simplifies diagnostics and field servicing with modular layout.
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Proven Industrial Reliability: Extensively tested to ensure long operational life in mission-critical systems.
FAQ
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What is the main function of the IS210BPPBH2C board?
It serves as the central processing unit for executing control logic and managing communication within GE Mark VI/VIe turbine systems. -
What type of communication interfaces are supported?
The board supports Ethernet, serial communication, and GE’s proprietary VME or backplane interfaces. -
Is the IS210BPPBH2C compatible with both Mark VI and Mark VIe systems?
Yes, it is designed to integrate seamlessly into both control system architectures. -
What voltage input does the processor board require?
The board typically operates with a 5 VDC nominal input supply. -
Does this board feature embedded memory?
Yes, it includes both volatile (RAM) and non-volatile (Flash) memory for operational data storage. -
What type of processor does it use?
It is equipped with an embedded industrial-grade processor optimized for real-time control. -
How does the board handle system communication?
It manages deterministic data exchange across the VME bus and Ethernet network for synchronized control. -
Can this board be used in harsh environments?
Yes, it is designed to withstand vibration, temperature variation, and electromagnetic interference. -
Does it include built-in protection mechanisms?
Yes, it provides overvoltage, overcurrent, and ESD protection for stable operation. -
What is the cooling method used for this module?
It utilizes passive or system-based airflow cooling to maintain thermal balance.
Related Models (Same Series or Similar Type)
Model | Description |
---|---|
IS210BPPBH2B | Earlier version of the processor board for Mark VI systems |
IS210BPPBG1A | Processor module with alternate firmware configuration |
IS210DSPXH1A | Digital signal processing board for Mark VI applications |
IS210TBTCH1C | Terminal board supporting control and monitoring interfaces |
IS210SAMBH1A | Signal acquisition and management board |
IS210STCIH2A | System interface control module for data communication |
Popular Models from the Same Brand
Model | Product Type | Description |
---|---|---|
IS200JPDMG1R | Power Distribution Board | Supplies power to multiple system modules |
IS200VPBLG1A | Mark VI Circuit Board | High-speed signal processing and logic control |
IS2020RKPSG2A | VME Power Supply Module | Provides stable DC power for rack-mounted systems |
IS2020ISUCG3A | Unit Controller | Controls and monitors turbine and generator operations |
IS200VPWRH1A | Printed Circuit Board | Manages electrical power flow within control systems |
IS210HSLAH1A | Signal Processing Board | Executes control and signal management for automation systems |