Engineered for denied, disrupted, and intermittent environments.
Our defense architectures deploy on-premise, inside SCIFs, or directly into tactical field nodes without public internet egress, ensuring 100% mission survivability.
Air-Gapped Tactical Edge Inference
Deploy embedded quantization pipelines directly on ruggedized edge hardware, command shelters, and mobile command vehicles with zero cloud connectivity requirements.
- 100% offline sovereign operation
- Sub-12ms local sensor processing
- Hardware-accelerated edge INT8/FP16 models
Sovereign Model Weight Custody
Every model checkpoint is cryptographically signed and trained strictly on sovereign, air-gapped compute clusters to ensure no backdoor injection or foreign dependency.
- SHA-256 weight hash validation
- Deterministic reproducible checkpoints
- Full domestic intellectual property ownership
Multi-Sensor Autonomous Agent Fusion
Coordinate asynchronous radar, telemetry, and optical sensor streams into a unified situational awareness picture using hierarchical agentic DAGs.
- Multi-modal sensor fusion
- Human-on-the-loop mission controls
- Low-bandwidth tactical mesh synchronization
CMMC Level 3 & ITAR Compliance
Hardware security modules (HSM), encrypted memory enclaves, and strict role-based access control built to exceed DoD zero-trust directives and NIST SP 800-171/172.
- CMMC Level 3 audit verified
- ITAR export controlled architecture
- FedRAMP High baseline compatibility
Tier-1 Aerospace Defense Prime: Air-Gapped Sensor Analytics in Contested Enclaves
An aerospace defense prime required real-time telemetry analytics and anomaly classification across autonomous airborne platforms operating in satellite-denied environments. Innoanswers delivered an embedded InnoCore and InnoFlow agentic fabric capable of sub-12ms inference with 100% offline survivability and CMMC Level 3 compliance.
Deploy sovereign tactical intelligence with zero cloud dependency.
Engage with our cleared defense practice leaders to review sovereign deployment architectures and air-gapped proof-of-concept roadmaps.