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GE GE IS215ACLIH1AM|Application Control Layer Module|

Hardware Architecture
Processor Architecture: Microprocessor with interface adaptation circuitry
Cache Memory: 128 KB cache
Non-Volatile Storage: Onboard flash memory
Form Factor: Standard VME board
Installation: VME rack, occupying 2.5 slots
Communication Interfaces
Ethernet: 10Base-T (RJ45)
Internal Buses: ISBus, VME backplane
Supported Protocols: Modbus and related industrial protocols
Electrical & Environmental Parameters
Power Supply: 24 VDC (industrial grade)
Power Consumption: Approx. 12 W
Protection Rating: IP20 (cabinet installation required)
Operating Temperature: –10 °C to +60 °C
Weight: Approx. 0.45 kg
Functional Capabilities
Interface and protocol conversion
Real-time data routing
I/O expansion management
Fault diagnosis and system monitoring
Product Lifecycle Status
Status: Legacy / Discontinued
Spare Parts Availability: No official new parts supply; limited to dismantled or refurbished units
Core Functions & Application Scenarios
Control–I/O Layer Interface Bridging
Connects Mark VI I/O modules via ISBus, enabling bidirectional interaction between control logic and field signals. Supports turbine start/stop sequencing, safety interlocks, and protection logic.
Excitation System Communication Coordination
Designed for seamless integration with the EX2100e excitation system, enabling data exchange for:
generator excitation current regulation
reactive power control
grid synchronization
Multi-Protocol Conversion & Data Routing
Supports Ethernet communication with upper-level SCADA/DCS systems and VME backplane communication with the Mark VI controller, enabling real-time data exchange, centralized monitoring, and remote diagnostics.
GE GE IS215ACLIH1AM|Application Control Layer Module|
I/O Expansion & Event Management
Provides I/O expansion capability, supports online configuration loading, and integrates fault diagnosis and SOE (Sequence of Events) recording, assisting in rapid troubleshooting and system analysis.
Typical Applications
Gas and steam turbine control systems in power plants
Turbine-driven compressors in petrochemical facilities
Large generator excitation and voltage regulation systems
Combined-cycle power plant control architectures
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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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