DAIT / Inside the infrastructure
Inside the infrastructure
Enterprise AI infrastructure, field-deployed
Industrial-grade compute nodes sealed against the weather, orchestrated by a zero-trust mesh OS that turns scattered hardware into one supercloud.
Product · Hardware
Power in a weatherproof enclosure
Industrial-grade AI compute nodes engineered for uninterrupted outdoor execution and total environmental isolation.
⚙️
Enterprise AI Muscle
- 3TB VRAM & 16 GPUs
- Dual AMD EPYC CPUs & 32TB NVMe
- 42U capacity rack layout
🛡️
All-Weather Defense
- Surge, lightning & grounding protection
- IP65 weatherproof & anti-vandal lock
- -40°C to +55°C operating range
❄️
Active Climate Control
- 2000W HVAC & smart ventilation
- Double-wall XPS thermal insulation
- Automatic FM200 fire suppression
📡
Total Remote Security
- 6-module telemetry (leak, smoke, temp)
- IP camera with visual & audible alarms
- Rack UPS for uninterruptible power
Built to industrial standards: IP65 ingress protection (EN 60529) · ISO 9227 salt-spray corrosion testing · FM-200 automated fire suppression
Product · Software
One OS turning scattered nodes into one supercloud
Automated scheduling, zero-trust security and real-time fleet telemetry built for enterprise scale.
Centralized Control & Orchestration
- Smart scheduling. Routes tasks dynamically by latency, GPU type and cost.
- Virtual slicing. Aggregates hardware into multi-tenant, elastic compute clusters.
- Predictive migration. Shifts workloads off nodes under thermal or grid stress.
Zero-Trust Security & Isolation
- Hardware defense. AMD SEV-SNP and NVIDIA H100 memory encryption (TEE).
- Cryptographic identity. mTLS SPIFFE/SPIRE tokens, AES-256-GCM mesh encryption.
- Enterprise ready. Architecture built to exceed SOC 2, HIPAA and GDPR standards.
Telemetry & Auto-Healing Mesh
- Full-mesh connectivity. Peer-to-peer overlay tunnels for low-latency AI training.
- Cell-level health. Monitors GPU temperature, power draw and battery state.
- Self-healing. Auto-reroutes active traffic instantly on individual node failure.
Deployment Models
One node design, three deployment footprints
Each tier adds cabinets to the same sealed IP65 architecture — only the cabinet count and revenue scale.
Base Tier · 1×~20 kW
Residential & Edge
Residential walls & urban micro-edge sites · coming soon
- Dual Dell PowerEdge XE7745 servers in one cabinet
- 47 kWh battery + 10 kW solar inverter
- Blackout backup while running AI compute
16GPUs
3,520tok/sec
Mid Tier · 2×~40 kW
Commercial Infrastructure
Commercial rooftops, hotels & medical campuses
- 2× cabinets, double compute and memory
- Active HVAC to 4000W with battery backup
- Uses existing rooftop HVAC space and power
32GPUs
7,040tok/sec
High Tier · 3×~60 kW
Stadium & Industrial
Stadiums, factories, ports & logistics hubs
- 3× base arrays in high-capacity clusters
- Multi-gigabit fiber, micro-grid redundancy
- Multi-point security and live telemetry
48GPUs
10,560tok/sec
Reference workload: Llama 3.3 70B Instruct, FP8 planning profile. Theoretical capacity at 100% utilization — illustrative, pre-pilot figures.
Want the full technical spec sheet?
Talk to our engineering team about deploying DAIT nodes on your site.
Contact Us