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GE IS215UCVFH2BB|High-Performance Control Module|

Processor & Memory
CPU: Intel® Pentium® III, 850 MHz
Main memory: 32 MB DRAM
Flash storage: 16 MB / 128 MB (model dependent)
Non-volatile memory: 32 MB SRAM with battery backup
Operating system: QNX real-time operating system (RTOS)
Supports remote Ethernet boot and online software upgrades
Integrated software-configurable watchdog timer (optional)
Communication Interfaces
2 × Ethernet ports (10Base-T / 100Base-TX, RJ-45)
2 × RS-232C serial ports
PROFIBUS-DP protocol support
Supports dual IP subnet communication
Designed for cross-system data exchange
Mechanical & Power Characteristics
Form factor: VME dual-slot module
Dimensions (approx.): 16.5 × 10.2 × 3.3 cm
Weight: ~0.9 kg
Power supply: 24 V DC
Power consumption: ~5 W
Compatible with standard VME control racks
Environmental & Protection Specifications
Operating temperature: –30 °C to +65 °C
Storage temperature: –40 °C to +85 °C
Relative humidity: 5%–95% (non-condensing)
Conformal-coated PCB for enhanced environmental resistance
Protection rating: IP20 (cabinet installation)
Designed for anti-vibration and electromagnetic interference (EMI) resistance
GE IS215UCVFH2BB|High-Performance Control Module|
Key Features
High computing performance and operational stability
The 850 MHz Pentium III processor delivers strong processing capability, suitable for large turbine multivariable control and complex regulation algorithms, with enhanced stability in upgraded versions.
Dual-slot redundant design
The dual-slot VME architecture improves heat dissipation and expansion capability. Redundant communication interfaces enhance system reliability and reduce downtime risks.
Multi-protocol communication compatibility
Native support for PROFIBUS-DP and dual Ethernet subnets enables seamless integration in power generation, oil & gas, and other multi-system industrial environments.
Efficient fault diagnosis and maintenance
Integrated diagnostic functions allow rapid localization of hardware and software faults, helping to reduce maintenance effort, operational costs, and system downtime.
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By structuring the information in this manner, the article provides a clear and organized understanding of input channels, transducer supply, and communication implementations in distributed control systems.
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