Per chaos ad astra — through chaos to the stars. The world's first computing platform fast enough to intercept hypersonic missiles. Built on Fractal Arrays—lock-free data structures that eliminate the mutex bottleneck that has crippled defense computing for decades.
"Per chaos ad astra — through chaos to the stars. At 11 nanoseconds, light is the bottleneck."
This isn't theoretical. These are verified benchmarks running on standard AWS cloud infrastructure. No custom silicon. No FPGAs. Pure software innovation.
Traditional computing can't stop hypersonic missiles. At Mach 20+, these threats cover 7 kilometers per second. Legacy systems—built on mutex locks—introduce microseconds of latency that translate to kilometers of positional error.
Fractal Arrays eliminate this bottleneck. With 11 nanosecond latency, our system provides 1,000+ guidance updates per meter of missile travel—enough precision to achieve reliable intercept.
Real-time comparison: Best existing defense system vs Ad Astra
Lock-free CFAR detection and multi-target tracking. Process 91 million radar returns per second with 11ns deterministic latency.
13,200 guidance updates per meter of target travel. Proportional navigation with real-time intercept calculation at hypersonic speeds.
Coordinate 10,000+ autonomous vehicles with lock-free formation control. Distributed targeting and collective intelligence at scale.
Real-time signal processing and threat identification. Lock-free spectrum analysis across distributed platforms at nanosecond resolution.
Multi-domain data integration without bottlenecks. Radar, IR, EO/IR, and signals intelligence fused in real-time with zero lock contention.
Unified lock-free command and control. Decision support at the speed of light—literally limited only by physics, not software.
Every metric independently verifiable on standard AWS infrastructure. No custom silicon, no theoretical projections—these are real numbers from actual benchmarks running on commodity cloud servers.
The fundamental innovation is architectural: by eliminating mutex locks entirely through Fractal Arrays, we remove the serialization bottleneck that has constrained defense computing for decades. More cores means more throughput, with near-linear scaling to 192+ cores.
Verified on AWS c7i.48xlarge (192 vCPU)For technical deep dives, integration discussions, or capability briefings, contact our defense programs office directly. We work with prime contractors, government agencies, and allied nations.
defense@44s.dev