Brand: GE Description: VME Communications Card Condition: Brand New Certificate: COO TEST REPORT WARRANTY LETTER Warranty: 1 year Inventory Qty: 7 Payment Term: T/T Shipping Port: ShenZhen GE IS215VCMIH2BB is a VME bus master controller board used in the Mark VI turbine control system. It plays a key role in managing communications between the master controller and the I/O boards, ensuring efficient data exchange and system coordination.
Manufacture |
GE |
Model Number |
IS215VCMIH2BB |
Ordering Number |
IS215VCMIH2BB |
Catalog |
Mark VI |
Country Of Origin |
USA |
HS CODE |
8471800000 |
Dimension |
33cm*10cm*8cm |
Packing Dimension |
35cm*12cm*10cm |
Weight |
0.55kg |
Operation Parameters
Input Voltage: 24V DC
Operating Temperature:-40°C to +85°C
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.
Communication Interfaces: equipped with multiple communication ports, including a serial port and three IONet connectors, each accompanied by LED indicators to display communication status.
System Management: The board manages identification assignments for various boards within the VME rack and associated terminal boards, ensuring organized communication and control within the system.
Product Features
Data Integration and Conditioning: The GE IS215VCMIH2BB is primarily responsible to receive data from different sources. It serves as an interface for various sensors which read temperature, pressure, vibration, flow rate, etc. This data is then conditioned for processing in the system.
Control Signal Generation: GE IS215VCMIH2BB generates accurate control signals from the processed data and pre-installed control algorithms. These signals are sent to the actuators or other controlled devices, which modifies their operation. For instance, in the context of power generation, it can regulate the fuel injection on the turbine or the opening and closing of valves to realize optimal performance and maintain stability.
Diagnostic and Monitoring Capabilities: GE IS215VCMIH2BB is equipped with state-of-the-art diagnostic detection features. This means it continually looks after its own health and the health of the things attached to it. In case of detection of abnormal conditions like a faulty sensor, communication failure or internal circuit fault, GE IS215VCMIH2BB can generate error codes or alarms. This alert is dispatched to the maintenance staff, allowing corrective action to be implemented quickly with minimum downtime of the system.
Installation
NOTE: Before installation please make sure that the power supply has been switched off. Make sure that the board will work with the current system.
Insert: Carefully insert the board into the appropriate slot in the control system chassis, making sure the connectors line up properly.
Wiring: Connect the input/output cables according to the system wiring diagram. Tighten and secure all the connections.
Power-Up After Installation: After installing the new system, turn on the power and conduct a functionality test to ensure that the unit is working correctly.
Configure: which means, based on application, you can use correct software tools to configure the board.
Application range
Power generation plants: managing gas and steam turbines to produce electricity effectively and safely.
Industrial Manufacturing: Responsible for turbine-driven equipment and ensuring operational integrity.
Oil and Gas Industry: Turbines for extraction and processing operation control.
Protection System: GE IS215VCMIH2BB is one of the main components used in turbine protection systems to avoid damage under faulty conditions.
Troubleshooting
Power Supply Check: Make sure that the input voltage meets the specified range
Inspect all cabling: Check to make sure that all cabling and connectors are properly seated and are not damaged.
Diagnostic Tools: Use diagnostic software to identify any error codes or faults reported by the system.
Check Components: Look for visible damage on the board like burnt components or poor connections.
Replacement: If the board fails to perform, it will need to be removed and replaced with a new board.