Our mission is to open plasma technology to the mass market through a streamlined architecture and a rigorously efficient organizational model. By reducing complexity at every level — from conception to production — we make advanced plasma systems accessible, reliable, and scalable.
This approach enables us to deliver confinement devices, illumination systems, and next-generation vacuum pumps with no moving parts at unprecedented cost efficiency.
With the same spirit of simplicity and industrial discipline, we are designing, scaling, and building the first fusion-reactor engines capable of revolutionizing how energy is produced worldwide.
The revolution introduced by PPS arises from the breakthrough idea of uniting two major industrial and scientific fields — plasma and turbo-machines, each of paramount importance in today's world — to unlock entirely new possibilities and opportunities.
We combine the benefits of each field to improve the overall system characteristics. The final objective is plasma machinery that is compact, efficient, and inherently scalable, integrating plasma physics with turbomachinery-inspired design principles — prioritizing simplicity at the machine level, fast iteration, and manufacturability, while remaining ambitious in performance. By deliberately reducing architectural complexity, we unlock new pathways toward high-performance plasma confinement and energy systems suitable for real-world deployment.
A modular architecture enables a wide range of machines from the same core building blocks, each optimized for different operational applications. Modularity allows fast iteration, scaling, and cost containment.
Key turbomachinery functions are performed without moving components — through electrode and magnet configuration. Eliminating mechanical motion increases reliability, reduces maintenance, and enables operation across a wider range of environments.
In-house plasma diagnostics and control systems monitor and regulate our modular plasma turbomachines — enabling real-time control, efficient operation, and rapid adaptation across operating regimes.
We pursue this research with a rigorous scientific approach and a strong commitment to openness and collaboration. Our vision is a future powered by safe, high-performance, zero-impact machines enabled by our technology and by the widespread adoption of no-moving-parts architectures. We believe that abundant, clean, and affordable energy is a fundamental resource for improving quality of life and fostering more balanced, resilient societies worldwide.