GE IS200BPVCG1BR1
  • GE IS200BPVCG1BR1GE IS200BPVCG1BR1
  • GE IS200BPVCG1BR1GE IS200BPVCG1BR1
  • GE IS200BPVCG1BR1GE IS200BPVCG1BR1

GE IS200BPVCG1BR1

Brand: GE
Description: Circuit Board Asm
Condition: Brand New
Certificate: COO TEST REPORT WARRANTY LETTER
Warranty: 1 year
Inventory Qty: 4
Payment Term: T/T
Shipping Port: ShenZhen
GE IS200BPVCG1BR1 is a high precision analog output module designed for industrial automation and control applications. It provides reliable and accurate current output, ideal for process control, manufacturing automation, and energy management.

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Product Description

Manufacture
GE
Model Number
IS200BPVCG1BR1
Ordering Number
IS200BPVCG1BR1
Catalog
Mark VI
Country Of Origin
USA
HS CODE
8479909090
Dimension
43.1cm*35.2cm*5cm
Packing Dimension
46cm*38cm*7cm
Weight
2kg

Operating Parameters

Input Voltage: 24V DC

Output Range: 0 to 20 mA

Operating Temperature: -20°C to +60°C

Humidity tolerance:  95% non - condensing

Power Consumption: 5W

Communication Protocol: Modbus RTU

Mounting Type: DIN Rail


Product Features

Backplane Connectivity: The GE IS200BPVCG1BR1 contains twenty one female backplane connectors. The drawer type connector can accept multiple boards in the rack and firmly hold them in place. When the board is inserted into the rack, it is the tall walls surrounding these connectors that support and also hold the connecting boards in position, thus allowing it to obtain both stable mechanical and electrical connections.End users benefit from the Mark VI connectivity through seamless transfer of data and power between Mark VI system components. The purpose of the on-board computer is to interface between input/output boards, control boards, and other modules in the system.

Input/Output (I/O) Functionality:Thirty - nine I/O Jacks Meanwhile, the front part of the board is remaining exposed outside the rack system. The ribbon connectors and their cabling are easily plugged into these connectors and can then transfer data to the board.GE IS200BPVCG1BR1 enable the boards connected to the backplane to send and receive data. It holds true in the context of gas turbine system where this data transfer is critical for gas turbine operating control and monitoring.

Additional Components:There are fourteen stab - on connectors and six resistor network arrays on the board as well. The stab - on connectors are available for extra electrical connections.Signal conditioning and impedance matching are essential processes in electronic design, and the arrays of resistor networks help secure signals sent and received by the board to maintain quality and strength.


Installation

Rack System Placement: make sure that the rack system is properly prepared. Ensure to clean rack slots and check for physical damages and debris which can interfere with the installation of GE IS200BPVCG1BR1 Align the twenty - one female backplane connectors on the back of the GE IS200BPVCG1BR1 with the appropriate male connectors in the rack system. Carefully slide the board into the rack until it's securely seated. That should help guide and lock the board in place.

I/O Connection: Now that the board is installed in the rack the next thing to do is connect the ribbon cables to the thirty - nine I/O connectors located at the front of the board. Be careful with the ribbon cables so that they do not bend their delicate conductors. Make sure each cable is clamped in the connector; this will prevent them from coming loose and causing data transfer errors.


Application range

Gas and Steam Turbine Control: Foundational to the control and monitoring of turbine operations in power plants.

Industrial Automation: GE IS200BPVCG1BR1  Employed in automated control systems for process industries, including oil and gas, chemicals, and manufacturing.

Power Generation: Makes sure that power generation systems operate efficiently and reliably.

Diagnostic Systems: Offers real-time monitoring and diagnostics for preventive maintenance.


Troubleshooting

Power Supply Check: Ensure the input comes within range.

Check All Connections: Verify all cables and connectors are plugged in and undamaged.

Diagnostic Tools: Utilize diagnostic software to check for error codes or fault indications logged by the system.

Visual Inspection: Check the board thoroughly for any visible damage like burnt components or loose connections.

Fix or Replace: Depending on the damage, if the board is defective and cannot be fixed, replace it with either a new or refurbished one.




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