Trimagnetix develops nanomagnetic processors that combine memory and logic functions within a single chip, delivering ultra‑low power consumption and high performance. The technology targets edge computing devices, aerospace systems, and secure hardware where energy efficiency and computational speed are critical. Revenue is generated through licensing of its patented magnetic architecture and sales of custom processor solutions to OEMs and system integrators.
Funding
Funding not disclosed
Founders
Product
Problem
Conventional processors separate memory and logic, causing high energy consumption, latency, and thermal constraints that limit performance in power‑sensitive edge devices, aerospace avionics, and secure embedded systems. These inefficiencies become critical as workloads demand faster compute with minimal power budgets and resilience to harsh environments.
Solution
TriMagnetix delivers a nanomagnetic processor that unifies non‑volatile memory and logic within a single magnetic architecture, eliminating the von Neumann bottleneck. The device operates with nanosecond magnetic pulse switching, achieving orders‑of‑magnitude lower energy per operation compared to CMOS‑based solutions. Its intrinsic magnetic state retention provides data persistence without power, enhancing reliability for battery‑operated and radiation‑exposed platforms. The architecture is fabricated using standard semiconductor processes, enabling integration into existing design flows while offering superior endurance and resistance to extreme temperature and radiation. By consolidating compute and storage, the solution reduces board space, simplifies system design, and supports real‑time processing for latency‑critical applications.
Target Audience
Primary customers are edge device OEMs, aerospace avionics manufacturers, and defense contractors developing secure, low‑power embedded systems that require high‑performance compute with robust data retention.
Features
- Integrated compute‑in‑memory design using patented nanomagnetic spin‑torque switching, removing separate DRAM/Flash components
- Nanosecond‑scale magnetic pulse operation delivering sub‑femtojoule energy per logic transition
- Non‑volatile magnetic state retention ensures zero‑power data preservation and instant wake‑up
- Radiation‑hard magnetic cells provide immunity to ionizing particles, suitable for aerospace and defense environments
- CMOS‑compatible fabrication stack enables co‑integration with existing silicon IP and standard design tools
- High endurance (>10¹⁵ write cycles) and low leakage current for long‑life IoT and edge deployments
- Built‑in tamper‑resistant data encoding to support secure embedded applications