Brand: GE Description: Bridge Personality Interface Board Condition: Brand New Certificate: COO TEST REPORT WARRANTY LETTER Warranty: 1 year Inventory Qty: 12 Payment Term: T/T Shipping Port: ShenZhen GE IS200BPIBG1AEB can capture faults from gate driver boards, warn related processing units, has per - phase and per - gate fault control.
Manufacture |
GE |
Model Number |
IS200BPIBG1AEB |
Ordering Number |
IS200BPIBG1AEB |
Catalog |
Mark VI |
Country Of Origin |
USA |
HS CODE |
8479909090 |
Dimension |
40cm*20cm*5cm |
Packing Dimension |
42cm*22cm*7cm |
Weight |
1.2kg |
Operating Parameters
Functional Acronym / Abbreviation: BPIB.
DC Link Voltage Feedback VCO Range: 0–20 MHz.
Power Input: 17.7 VAC and 5 VDC.
IGBT Driver, IN Power, ISOLATED 5 VDC MAX = 500mA.
Temperature Operating Range: O °C to 60°C.
Storage Temperature Range: -40°C ~ 85°C.
Humidity Range: 5% to 95%.
Product Features
Fault Capture and Reporting: GE IS200BPIBG1AEB can also capture faults detected by the gate driver boards. It also warns the associated processing units with the fault information. Per phase it also has per gate drivers fault control and per gate latch. The latched faults associated with the driver circuit will be reported on the phase P fault line whose adjacent IGBT is commanded on.
Gate Driver: The IS200BPIBG1AEB is equipped with the isolated 5 VDC supply for logic signals traveling to or from the connected gate drive board. This separated voltage is derived from the 17.7 VAC feed, allowing increased signal transmission stability and anti-interference capability.
Installation
GE IS200BPIBG1AEB is VME type rack mount. The P1 connector on the back edge of the board facilitates its connection into the rack. A narrow front faceplate holds clips to keep the board in place in the VME rack. The board also features six plug connectors for connection to various IGBT boards, as well as five stab-on connectors behind the front faceplate for sensing signals for phase A, phase B, phase C, DC link positive, and DC link negative.
Troubleshooting
No output of signal: If there is no signal output from GE IS200BPIBG1AEB then we need to take the first step is to check the P1 connector which connects one part of IS200BPIBG1AEB to another, whether it is inserted in a proper way and not lose or damaged. Next, verify the power supply is outputting the appropriate voltage. If the power supply and connection are normal, the internal signal conditioning circuit has probably failed at this point, and the board should be replaced or repaired by a professional.
Some Issues where Cause is Not Clearly Identified- Discern of if attached gate driver boards are functioning; if board shows fault indication with no apparent reason NABER_NOTIFICATION GE IS200BPIBG1AEB -- Gate Driver boards sometimes may cause the IS200BPIBG1AEB to fault. Also verify EPLD devices on the board. However, if there is an issue in the EPLD programming or EPLD operation, inappropriate fault indications may also arise.
Overheating: In case GE IS200BPIBG1AEB overheats, check for good heat dissipation and no blockage in the ventilation environment around the board at first. Then, see if the power supply voltage is very stable.
Application range
GE IS200BPIBG1AEB is most commonly deployed in gas turbine control, particularly in systems like the Mark VI. The board controls the IGBT drive of the gas turbine, which is particularly critical for gas turbine start-up and works to enhance the performance and reliability of gas turbine power generation systems.
Steam Turbine Systems: It is also applicable to steam turbine control systems. The IS200BPIBG1AEB in steam turbines is used for signal conditioning and fault monitoring of the IGBT drive bridge, which controls the operation of the steam turbine by optimizing its performance via speed and power control.
Wind Turbine Automated Drive Assemblies: GE IS200BPIBG1AEB is part of the Mark VI series which has applications in wind turbine automated drive assemblies. It is involved in the control and management of wind turbine power conversion and drive systems, ensuring the smooth operation and effective power generation of wind turbines.