Brand: GE Description: Drive/Source Bridge Interface Board Condition: Brand New Certificate: COO TEST REPORT WARRANTY LETTER Warranty: 1 year Inventory Qty: 9 Payment Term: T/T Shipping Port: ShenZhen GE IS200BICLH1BBA is an interface card designed for the GE Mark VI SPEEDTRONIC turbine control system. It provides communication between the turbine control system and external devices, supporting RS-232C communication for data exchange.
Manufacture |
GE |
Model Number |
IS200BICLH1BBA |
Ordering Number |
IS200BICLH1BBA |
Catalog |
Mark VI |
Country Of Origin |
USA |
HS CODE |
8479909090 |
Dimension |
35cm*35cm*5cm |
Packing Dimension |
37cm*37cm*7cm |
Weight |
1.2kg |
Operation Parameters
Power Supply Voltage: The IS200BICLH1BBA operates on a 5V DC power supply.
Input and Output Sensitivity: The board supports flexible input and output configurations, including voltage (VIN) and 4-20 mA signals,allowing integration with various external devices and systems.
Operating Temperature Range: -20°C to +60°C.
Protection Level: The IS200BICLH1BBA is designed for industrial environments, ensuring reliable performance in turbine control applications within power generation and industrial sectors.
Other Detailed Parameters: The board features four relays for managing control signals, alarms, or other system functions. It also includes a serial 1024-bit memory device that maintains the board ID and revision information.
Product Features
Communication via RS-232C: Card supports communication via RS-232C. It allows for data exchange with external devices such as drive systems, controllers, and monitoring systems.
Interface to Innovation Series Drive:GE IS200BICLH1BBA acts as an interface between the Bridge Personality Interface Board and the Innovation Series Drive, facilitating seamless control and monitoring.
Flexible I/O Configuration: GE IS200BICLH1BBA can handle different types of signals as well as voltage (VIN) inputs or 4-20 mA signals. This also provides an interface to a variety of external devices for controlling and monitoring turbine operations.
Four Built-in Relays: A control signal that can turn a light bulb would typically be a Built-in relay. of the GE IS200BICLH1BBA. Within the turbine control application, the inclusion of relays afford the card added versatility in terms of communicating to outside systems.
1024-bit Memory Device: Mounted on the card is a serial 1024-bit memory device used to store important information—such as the board's ID and revision information. The card's memory capability makes it easier to tell how the card has been and to solve problems with it.
RTD Sensor Inputs: The board comes with four RTD (Resistance Temperature Detector) sensor inputs, which are essential for temperature monitoring and control processes, making them crucial for the operation of turbines.
Terminal Block: 24-point terminal block terminal for field wiring facilitates links to external devices/sensors for input/output operations.
Native Mark VI Integration: Compatibility of the GE IS200BICLH1BBA with the Mark VI system provides a seamless integration into the Mark VI turbine control system, ensuring the GE IS200BICLH1BBA can operate harmoniously with other Mark VI components.
Simplex and TMR Support: The card supports both Simplex and TMR configurations, allowing for various levels of redundancy and reliability in the system.
Installation
Slot Compatibility: This GE IS200BICLH1BBA is designed to be installed in Slot 5 of the VME rack. Proper Placement of Install the Card In the Correct Slot.
Card Connectors: Card connects to the backplane using two connectors, P1 and P2, providing the necessary connections to the turbine control system.
Connector Integration: This PIM has a blank front panel with clips, as shown, for mounting and installation, along with the ge logo and board number.
Application range
Industrial Automation: It is commonly used in factories for controlling the production lines. It can control conveyor belts, robotic arms, and machining tools more quickly and accurately, improving production efficiency and product quality. In the case of an electronics assembly plant, for example, it handles coordinating, say, robotic pick-and-place arms with conveyor belts (to land the components in the proper place).
Power Generation: The use of control systems in power plants includes turbine generators, voltage regulators, power distribution systems, etc. This helps stabilize power generation and delivery to the grid. For example, in a wind power plant, it can change the pitch of turbine blades in response to changes in wind speed and direction, in order to maximize power production.
Oil and Gas Sector: It manages pumps, compressors, and valves in refineries and drilling platforms. Its ruggedness allows it to operate in extreme conditions, such as high pressure, corrosive fluids, and explosive environments, preventing catastrophic failure of mission-critical machinery. On an offshore oil rig it controls the flow of crude oil and gas into pipes; preventing leaks, and helping maintain optimal pressure.
Troubleshooting
IMOK LED Indicator: The card comes with an IMOK LED that indicates card operational status. The LED allows user to quickly check if everything is OK with the card or something is not working correctly, so it could be easier to troubleshoot.