The 6SE7031-5HG10 SIMOVERT MASTERDRIVES SIMOVERT FC 660-690 V 3 AC, 50/60 Hz 145 A type rating: 132 kW is a powerful and reliable frequency converter module designed for industrial automation applications. With a voltage range of 660-690 V AC and a current rating of 145 A, this module provides precise motor control and efficient power conversion for a variety of motor-driven equipment. The 132 kW type rating ensures that it can handle high-power applications, delivering stable and consistent performance in demanding environments.
This SIMOVERT MASTERDRIVES module is ideal for controlling 3-phase AC motors, offering a wide range of benefits including smooth operation, energy efficiency, and enhanced productivity. The 6SE7031-5HG10 module is particularly suitable for applications where high power, precise speed control, and dynamic torque regulation are required. Industries such as material handling, pumps, ventilation systems, and conveyors can benefit from its ability to deliver consistent performance while minimizing energy consumption.
Designed with advanced features for ease of integration, the 6SE7031-5HG10 module works seamlessly with other components of the SIMOVERT MASTERDRIVES system. It supports flexible configurations and can be integrated into complex drive systems, making it a versatile solution for a wide range of automation tasks. Additionally, it provides real-time diagnostics and monitoring, which helps in identifying potential issues before they impact performance, ensuring maximum uptime and reliability.
The 6SE7031-5HG10 SIMOVERT MASTERDRIVES module is built to withstand the harsh demands of industrial environments, with robust construction that ensures long-lasting durability. Its ability to operate efficiently and reliably in high-power applications makes it a trusted choice for industries that rely on precise motor control. Whether used in standalone systems or as part of a larger automation setup, this module delivers exceptional performance, reduced energy costs, and increased operational efficiency.