This GE DS3800NPSE1E1G board is a critical component designed for turbine control systems within the Mark IV DS3800 series. It ensures efficient operation and reliable performance in industrial environments.
This GE DS3800NPSE1E1G board is a critical component designed for turbine control systems within the Mark IV DS3800 series. It ensures efficient operation and reliable performance in industrial environments.
open
close
Manufacturer:General Electric
Model:DS3800NPSE1E1G
Series:Mark IV DS3800
Function:Turbine Control
Voltage:12V DC
Operating Temperature Range:-40°C to +85°C
Storage Temperature Range:-55°C to +90°C
Humidity Range:0% to 95% non-condensing
Size:6.7 inches x 4.5 inches
Weight:1.2 lbs
The GE DS3800NPSE1E1G board is meticulously crafted for integration into the Mark IV DS3800 system, providing precise control and monitoring capabilities essential for efficient turbine operations. Its robust design ensures durability under extreme conditions, making it an indispensable component for any industrial turbine control setup.
Engineered with state-of-the-art technology, this board supports advanced functionalities that enhance the overall performance of turbine control systems. It features enhanced data processing speeds, reliable communication protocols, and superior resistance to electromagnetic interference.
Installation is straightforward, requiring minimal downtime and no specialized tools. Our detailed installation guide provides clear instructions to help you seamlessly integrate this board into your existing setup. We recommend professional assistance for optimal results.
Maintaining the GE DS3800NPSE1E1G board is hassle-free. Regular checks on voltage levels and environmental conditions are recommended to ensure peak performance. In case of any issues, our customer support team is always ready to assist with troubleshooting or replacements.
Trust in General Electric’s commitment to quality and innovation. Choose the GE DS3800NPSE1E1G board for your turbine control needs and experience unparalleled reliability and performance.