High power density
The latest generation of semiconductors can carry +20% more current. This increase in power density enhances operational efficiency, reduces footprint, and improves reliability.
Provides dynamic voltage support and reactive power compensation to enhance grid stability and efficiency.
Ensures a stable, balanced and controlled frequency conversion of power for various grid applications such as hydro power, rail networks and grid interties, supporting seamless integration of diverse energy sources.
Enables high-efficiency, long-distance power transmission, facilitating the integration of renewable energy sources and enhancing grid reliability.
Digital innovation ecosystem enabling energy management and optimization through battery storage systems, automated and digital capabilities, and delivering grid flexibility services.
The latest generation of semiconductors can carry +20% more current. This increase in power density enhances operational efficiency, reduces footprint, and improves reliability.
+20%
The higher switching frequency of the semiconductors (x10 – x100) reduces the dampening of harmonics into the grid, thus reducing the need of filters in low power applications (i.e. eMobility).
Today we can already face the challenges of the future energy system and make it more sustainable, flexible, reliable and secure.