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DS200DSFBG1ACB - Driver Shunt Feedback Board is available in stock which ships the same day.
DS200DSFBG1ACB - Driver Shunt Feedback Board comes in UNUSED as well as REBUILT condition.
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SPECIFICATIONS:
Part Number: DS200DSFBG1ACB
Manufacturer: General Electric
Series: Mark V
Product Type: Driver Shunt Feedback Board
Number of channels: 24
Power supply voltage: 28 V dc
Voltage Range: 14 to 32 V dc
Mounting: DIN-rail mounting
Technology: Surface mount
Operating temperature: -30 to 65°C
Size: 30 cm high x 18 cm
Repair: 3-7 Day
Availability: In Stock
Country of Origin: United States
FUNCTIONAL DESCRIPTION:
DS200DSFBG1ACB is a Driver Shunt Feedback Board manufactured and designed by General Electric as part of the Mark V Series used in GE Speedtronic Gas Turbine Control Systems. The Driver Shunt Feedback Board, commonly found in turbine control systems, is a critical component responsible for monitoring and regulating the operation of the driver shunt. Here's a breakdown of its functions and significance:
WOC has the largest stock of GE Excitation Control System Replacement Parts. We can also repair your faulty boards and supply unused and rebuilt boards backed up with a warranty. Our team of experts is available round the clock to support your OEM needs. Our team of experts at WOC is happy to assist you with any of your automation requirements. For pricing and availability on any parts and repairs, kindly get in touch with our team by phone or email.
What is the function of a Driver Shunt in a turbine system?
The driver shunt is responsible for various functions in a turbine system, such as controlling speed, torque, or power output. It plays a crucial role in regulating the operation of the turbine.
Why is monitoring the driver shunt important?
Monitoring the driver shunt is essential to ensure that it operates within safe limits and maintains optimal performance. This helps prevent equipment damage, ensure operational safety, and maximize efficiency.
What parameters does the feedback board monitor?
The feedback board typically monitors parameters such as voltage, current, and temperature of the driver shunt. These parameters provide valuable insights into its operation and performance.