The quantum computing space is at a pivotal moment. The race to achieve true quantum advantage isn't just about building bigger machines; it’s about smarter, more reliable, and more scalable hardware. For CTOs and quantum engineers navigating this complex field, finding the right quantum hardware is the difference between a breakthrough and a bottleneck.
At FEMTOPRINT SA, we believe this future is transparent, and we’re bringing our vision to ECTI2025 in the Netherlands. We are proud to sponsor and participate in one of the most important events for ion trapping, and we invite you to join a critical conversation.
What to Expect at ECTI2025: A Deep Dive into Quantum Hardware
This isn't just another conference appearance. We're there to cut through the noise and show you what's truly possible.
Our expert, Cesare Alfieri, will be on hand to discuss the core quantum engineering challenges you're facing today. Forget the academic theory; we're focused on practical solutions that directly impact your technology roadmap.
You’ll get an exclusive look at how to:
The quantum era is no longer on the horizon—it's here. Don't just watch it happen; be a part of building it.
The Innovation Behind Our Quantum Hardware
For too long, quantum hardware has been held back by its own complexity. The reliance on intricate, multi-component assembly has created a major bottleneck in performance, cost, and reliability for quantum processors and quantum sensors. CTOs in particular face a difficult choice: accept expensive, custom-built solutions that are difficult to replicate, or compromise on performance for simpler designs. This trade-off between precision and scalability is the real problem that our technology was built to solve. Our solution is a radical shift: a truly monolithic 3D glass ion trap.
Our proprietary technology allows us to create complete, integrated devices from a single block of glass. This isn't just a new component; it's a fundamental change in manufacturing quantum devices. This approach guarantees superior accuracy and unmatched reliability because it removes the most common points of failure found in traditional systems.
By natively integrating critical features like electrodes and optical connectivity, we're not just making a component—we're creating a foundational technology that accelerates the entire quantum technology stack. We’re enabling quantum chips that are more powerful, more stable, and ready for the future.
Ready to accelerate your quantum projects?