Performance
Nanosecond reconfiguration enables the hardware to remain in the optimal configuration for the current pipeline stage, with no stall or reconfiguration penalty.
The World’s First
A new class of processor where hardware adapts to software in real time. 3D integration enables nanosecond-scale reconfiguration.
Defense AI
Autonomous vehicles
Industrial automation
Drones
Robotics
Nanosecond reconfiguration enables the hardware to remain in the optimal configuration for the current pipeline stage, with no stall or reconfiguration penalty.
At iso-accuracy, matching compute fabric and data access to the active workload eliminates the idle-power penalty of traditional overprovisioned processors.
3D vertical integration stacks compute layers, enabling end-to-end AI processing in a dramatically smaller physical footprint for space-constrained systems.
AI, robotics, autonomous systems, and edge computing are increasingly adaptive and software-defined.
Mission-adaptive compute at the edge, without dependence on the cloud.
Adapt compute across sensing, perception, reasoning, planning, and control.
Deterministic, energy-efficient intelligence directly on the machine.
End-to-end AI inside tight size, weight, power, and thermal limits.
Adaptive on-device compute for perception, reasoning, planning, and control.
The core architecture is validated. The first 3D silicon is taped out. The next heterogeneous prototype is underway.
ACM FPGA 2026
GlobalFoundries 22 nm
DARPA / SRC CoCoSys · Q4 2025
Architecture + compiler in development
IBM
intel
GlobalFoundries
RTX
Software-defined / Mission-adaptive
Performance that leads by matching the compute fabric to the active workflow in real time.
info@kaleonix.com