Novium designs, builds, and qualifies hardware systems that operate in the harshest environments on Earth and in space. Their product line includes the Zeta Motor Controller, a modern industrial motor controller optimized for rapid development and deployment in low‑Earth orbit and beyond.
Funding
Funding not disclosed
Founders
Product
Problem
Developing hardware that can reliably operate in extreme terrestrial conditions and the vacuum of space requires specialized design, rigorous qualification, and compliance with strict performance standards. Traditional industrial motor controllers often lack the durability and certification needed for low‑Earth orbit missions, leading to costly redesigns and schedule delays.
Solution
Novium designs, builds, and qualifies hardware systems specifically for the harshest environments on Earth and in space. Their flagship Zeta Motor Controller combines modern industrial motor control features with aerospace‑grade reliability, enabling rapid development and deployment for low‑Earth orbit and beyond. By collaborating with customers from concept through qualification, Novium ensures that each system meets stringent performance, thermal, and radiation requirements, delivering mission‑critical hardware that is ready for both terrestrial and orbital applications.
Target Audience
Primary customers are aerospace manufacturers, satellite integrators, and defense or industrial firms that require high‑reliability motor control solutions for harsh environments and space missions.
Features
- Aerospace‑qualified motor controller architecture built to withstand vacuum, radiation, and extreme temperature cycles
- Modular firmware and configurable I/O for fast integration into diverse spacecraft and rugged industrial platforms
- Built‑in health monitoring and fault‑tolerant safety mechanisms to maintain operation under adverse conditions
- Comprehensive qualification testing, including vibration, thermal vacuum, and shock, with full documentation for certification
- Rapid prototyping support and design‑for‑manufacture practices to accelerate development timelines