GE IS215ACLEH1BB Application Control Layer Board
GE IS215ACLEH1BB Application Control Layer Board Product Specifications Attribute Value Name GE IS215ACLEH1BB Application Control Layer Board Product ID IS215ACLEH1BB Series Mark VI Function Discrete Output pack Dimensions (L x W x H) 330mm x 100mm x 200mm Weight 2kg Warranty 1 year Product Description The GE IS215ACLEH1BB is an Application Control Layer (ACL) Board, a core component in GE's EX2100 excitation system and Innovation Series drives. As a microprocessor-based
| Attribute | Value |
|---|---|
| Name | GE IS215ACLEH1BB Application Control Layer Board |
| Product ID | IS215ACLEH1BB |
| Series | Mark VI |
| Function | Discrete Output pack |
| Dimensions (L x W x H) | 330mm x 100mm x 200mm |
| Weight | 2kg |
| Warranty | 1 year |
The GE IS215ACLEH1BB is an Application Control Layer (ACL) Board, a core component in GE's EX2100 excitation system and Innovation Series drives. As a microprocessor-based master controller, it orchestrates critical operations across Ethernet and ISBus networks, ensuring precise coordination in excitation and drive applications.
- Microprocessor Control: Acts as the system nerve center, executing control algorithms and coordinating communication across networks for seamless operation.
- Multi-Protocol Compatibility: Supports Ethernet and ISBus, enabling integration with diverse control architectures and remote monitoring via Toolbox interface.
- Flexible Configuration: Online application loading allows dynamic parameter adjustments without shutdown, enhancing operational adaptability.
- Diagnostic & Alarm Capabilities: Detects faults in run/start permissives, generates application-level alarms, and supports I/O forcing for testing/troubleshooting.
- Data Reliability: Non-volatile flash memory securely stores configurations and logic, preventing data loss during power outages.
- Rack Efficiency: Fits two half-slots in standard racks, optimizing space in control cabinets for both drives and EX2100 exciters.
- Centralized Coordination: Serves as a master controller, synchronizing subsystems to enhance performance, efficiency, and reliability in industrial setups.