Adaptive Balancing Power

Adaptive Balancing Power is pioneering mechanical energy storage systems (flywheel) that deliver high-power, rapid-response electricity, independent of chemistry.

Their “AMPERAGE” systems store energy through a carbon-fiber flywheel spinning in a vacuum on magnetic bearings – offering high power density, virtually unlimited cycle life, and strong sustainability, 100% made in Germany.

These systems can enhance grid resilience and efficiency by managing voltage and frequency, smoothing peak loads in industrial context, recapturing braking energy in passenger transport systems, and integrate renewables – all while reducing costs and avoiding grid expansion efforts.

„Only a strong ecosystem unlocks the full potential of climate tech: It brings together startups, companies, policymakers, and researchers, creates access to capital and partnerships, accelerates market entry, and attracts talent from all disciplines. At Adaptive Balancing Power, we believe in these network effects that turn great ideas and innovations into economically scalable solutions, enabling new markets to be opened up. This is exactly the kind of momentum our economy needs for sustainable growth and to preserve our natural foundations of life.”

Dr. Hendrik Schaede-Bodenschatz, Managing Director from Adaptive Balancing Power


This might also interest you

  • Low-Carbon Basic Materials

    Basic materials such as steel, cement, chemicals and lime account for almost half of Germany’s industrial emissions. This poster sets out the options for decarbonizing their production. Five cross-cutting levers for industrial decarbonization are described: direct electrification, material circularity, energy efficiency, green hydrogen and PtX, and CCU/CCS. A case study then walks through the options…

    Learn more: Low-Carbon Basic Materials
  • Carbon Capture

    This two-page poster provides an overview of the carbon capture, utilization, and storage (CCUS) value chain and its associated technologies. CO₂ can be captured from industrial point sources or directly from the air. Then, it can be used in industrial processes or permanently stored to prevent its release into the atmosphere. The poster compares three…

    Learn more: Carbon Capture
  • Hydrogen

    The potential contribution of hydrogen as a clean energy carrier to industrial decarbonization is outlined in this concise knowledge poster. It explains why hydrogen must be produced through dedicated processes and compares the main hydrogen production pathways through the commonly used color code. The poster then focuses on green hydrogen, presenting the main electrolysis technologies:…

    Learn more: Hydrogen