DS200FCSAG2A GE Current Sensing Interface Card For Static Starter System
DS200FCSAG2A GE Current Sensing Interface Card For Static Starter System DS200FCSAG2A GE Current Sensing Interface Card For Static Starter System DS200FCSAG2A is a Current Sensing Feedback Board produced by GE. As a high-precision signal acquisition component, it is widely installed in GE's LS2100 series Static Starter System and Power Conversion Cabinet, and is mainly used for the start-up control and variable frequency drive of gas turbine power generation units. Product
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Condition
New
Lead Time
In Stock
Warranty
12 months
Place of Origin
USA
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Product Description
DS200FCSAG2A GE Current Sensing Interface Card For Static Starter System
DS200FCSAG2A GE Current Sensing Interface Card For Static Starter System
DS200FCSAG2A is a Current Sensing Feedback Board produced by GE. As a high-precision signal acquisition component, it is widely installed in GE's LS2100 series Static Starter System and Power Conversion Cabinet, and is mainly used for the start-up control and variable frequency drive of gas turbine power generation units.
Product Details
| Brand Name | GE |
|---|---|
| Model | DS200FCSAG2A |
| Origin | United States (USA) |
| HS Code | 8537101190 |
| Payment | T/T |
Additional Information
| N/M | N/M |
|---|---|
| DS200TBQBG1A | KJ3241X1-BA1 |
| 7400211-310 | X-BLK01 632590802 |
| IS220PTURH1A | UAC326AE01 |
Product Advantages
The DS200FCSAG2A features a high dynamic range and high-precision signal conditioning, enabling precise signal conversion. It also has a specially designed hardware low-pass filter and isolation circuit, which can effectively absorb and shield high-voltage frequency converters, and boasts a long lifespan and high durability.
Q: What specific role does DS200FCSAG2A play in the LS2100 static startup system?
A: DS200FCSAG2A is installed within the LS2100 power conversion cabinet. Its main responsibility is to collect and regulate the main circuit current of the system. It converts the high-voltage AC/DC currents detected by LEM/Hall sensors into low-voltage standard control levels, and transmits them in real time to the main control board, which is used for vector control, torque calculation, and rapid overcurrent protection during the motor startup process.
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