Brand: GE Description: VME Communication Interface Card Condition: Brand New Certificate: COO TEST REPORT WARRANTY LETTER Warranty: 1 year Inventory Qty: 7 Payment Term: T/T Shipping Port: ShenZhen GE IS215VCMIH2BC is a VME communications interface card used in the Mark VI turbine control system. It facilitates communications between the main controller and the I/O boards, ensuring seamless data exchange and system coordination.
Manufacture |
GE |
Model Number |
IS215VCMIH2BC |
Ordering Number |
IS215VCMIH2BC |
Catalog |
Mark VI |
Country Of Origin |
USA |
HS CODE |
8471800000 |
Dimension |
33cm*10cm*8cm |
Packing Dimension |
35cm*12cm*10cm |
Weight |
1kg |
Operation Parameters
Power Supply: 5V, 12V, 15V, and 28V
Processor: Texas Instruments 32 - bit digital signal processor (DSP)
Frame Rate: 20 ms at 50 Hz
Operating Temperature Range: - 40 °C to + 85 °C
Storage Temperature Range: - 40 °C to + 95 °C
Relative Humidity: 5% to 95% non - condensing
Signal Processing: Capable of handling high-speed signal processing for real-time control and monitoring.
Power Consumption: Low power consumption design to ensure energy efficiency and reduce heat generation.
Product Features
VME Bus Master Controller: The GE IS215VCMIH2BC is a VME bus master controller board. It serves as an important communication interconnect between the input/output boards and the controller. It oversees the communication of data transfer and other protocols between these components in this capacity, assuring seamless operation.
System control network interface: GE IS215VCMIH2BC also serves as the interface to the Ionet, or system control network. This allows it to communicate with other control modules in the system. In a big - scale industrial setup, this enables to To exchange important data such as management, regimen, and diagnostic information between individual portions of the control system.
Board Identification and Management: When the GE IS215VCMIH2BC is linked to I/O and control racks, it manages the identification of all the boards in the rack, as well as the terminal board in those racks. It manages things at the board - level which acts as a bridge between the overall system configuration and maintenance, with its help, it becomes easy to track and manage every component in the Industrial control at a system level.
Real-Time Monitoring: Provides real-time data acquisition and monitoring for turbine control systems.
Protection Features: Includes overvoltage, overcurrent, and thermal protection to safeguard the system.
Installation
Rack Dimensions: The GE IS215VCMIH2BC is a rack mountable part type and will be inserted into a typical VME rack. However, it is a 6U high VME board, 0.787 inches wide, which allows fitting in standard rack dimensions widely used in industrial control cabinets.
Connecting to Other Parts: Connect the board with the I/O boards and the controller with the proper cables. You need to set up your Ionet connection to communicate with the system control network. In a TMR, great attention must be paid to the correct wiring and configuration of all the multiple control modules that are present.
Software Configuration: After the hardware installation, there may be need for the software configuration. This includes creating communication protocols, mapping of input / output, and other system - dependent parameters. Call out the right version of ID and Toolbox software.
Application range
Gas and Steam Turbine Control: These are crucial for power plant's turbine operations and their control and monitoring.
Industrial Automation: GE IS215VCMIH2BC Utilized in control systems of process industries like oil and gas, chemical and manufacturing.
Power Generation: Ensures that all power generation systems operate as efficiently and reliably as possible.
Diagnostic Systems: Real time monitoring and diagnostics for preventive maintenance
Protection Systems: Placed as an essential device within the turbine protection systems, its operative state serves to mitigate damage-effects during unexpected scenarios.
Troubleshooting
Communication Failures: VME backplane connection problems or interference causing communication issues. Seat the board firmly and reduce electrical noise sources if you can.
Application Errors or Failures: Can be caused by misconfigurations or defects in software components. Check the system configuration and test the components to locate and fix the issue.