GE IS215UCVHM06A Mark VI Universal Controller Module
GE IS215UCVHM06A Universal Controller Module Product Specifications Attribute Value Name GE IS215UCVHM06A Universal Controller Module Product ID IS215UCVHM06A Series Mark VI Function Controller Module Dimensions (L x W x H) 330mm x 100mm x 200mm Weight 2kg Warranty 1 year Product Overview The GE IS215UCVHM06A is a Universal Controller Module, a key component in GE's Mark VI Series control systems, designed to manage critical operations in industrial applications including gas
| Attribute | Value |
|---|---|
| Name | GE IS215UCVHM06A Universal Controller Module |
| Product ID | IS215UCVHM06A |
| Series | Mark VI |
| Function | Controller Module |
| Dimensions (L x W x H) | 330mm x 100mm x 200mm |
| Weight | 2kg |
| Warranty | 1 year |
The GE IS215UCVHM06A is a Universal Controller Module, a key component in GE's Mark VI Series control systems, designed to manage critical operations in industrial applications including gas turbines, steam systems, and balance-of-plant (BOP) setups.
This versatile controller integrates seamlessly into VME-based architectures, serving as the central processing unit for executing control logic, processing real-time data, and coordinating with I/O modules and external systems.
- Universal Control: Manages gas turbine, steam, and BOP operations, executing control logic for speed, load, and safety protocols.
- Real-Time Processing: High-performance hardware handles time-sensitive tasks, ensuring responsive operation in dynamic industrial environments.
- Connectivity: Ethernet and serial ports enable integration with HMIs, I/O modules, and DCS, supporting data exchange and remote monitoring.
- System Compatibility: Fits VME racks, working with VCMI boards for bus communication and synchronizing clocks for coordinated I/O.
- Reliability: Designed for industrial durability, with support for redundant setups to minimize downtime in critical applications.
- Flexibility: Adaptable to diverse control needs, processing inputs, outputs, and internal states for optimized turbine performance.