Traditional data centers can't keep up with AI-era demands. Modular infrastructure delivers speed, flexibility, and efficiency.
Complete data centers manufactured in ISO shipping containers. Fully integrated compute, power, and cooling systems arrive production-ready.
High-density GPU/CPU infrastructure. NVIDIA H200/H100-class ready. 30-80kW per rack. Direct liquid cooling options.
Available pre-loaded with NVIDIA-certified servers via direct partnership.
500kW - 5MW distribution. 98.5% efficiency. N+1 redundancy. Grid or renewable integrated.
Advanced thermal management. PUE 1.15-1.30. Air, liquid, or hybrid. -40°C to +50°C operation.
Petabyte-scale arrays. NVMe, SSD, HDD tiers. Hot-swap drive bays. RAID configurations.
Turnkey AI clusters with servers, networking, and storage included.
Supporting next-gen 1000W+ TDP chips
Cold plates mounted directly on CPUs/GPUs. 40% more efficient than air cooling. Handles 500W+ per chip.
Full server immersion in dielectric fluid. Supports extreme power densities up to 250kW per rack.
Flexible deployment. Air for low-power. Liquid for high-power. Switch as workloads evolve.
LLM and GPU training demands densities traditional data centers can't handle. Syaala pods are engineered for high-density AI clusters.
Syaala pods don't just deploy fast—they continuously optimize operating cost from day one.
Each pod is built with embedded electrical and energy intelligence providing real-time visibility down to the rack and circuit level. Power usage, thermal behavior, and load patterns are continuously monitored and analyzed.
Rack- and circuit-level power monitoring for granular visibility and control.
Dynamic load balancing and adaptive cooling based on live workload behavior.
Fault detection for breakers, cooling, and electrical components before they impact uptime.
Continuous optimization and demand response readiness to reduce utility costs year over year.
Infrastructure that learns, adapts, and reduces cost over time. Save millions in operational expenses.
Deploy GPU clusters in weeks instead of years. Scale from prototype to production without moving buildings. Reconfigure as models evolve.
Co-locate with renewable generation sites. Turn stranded solar/wind power into computational value. Deploy in remote locations traditional DCs can't reach.
Air-gapped secure-by-design infrastructure. Rapid deployment to austere environments. NIST, ITAR, DoD compliant out of the box.
Low-latency trading infrastructure at the edge. Disaster recovery sites operational in days. Regulatory-compliant data sovereignty.
Expand regional presence without building new facilities. Sovereign cloud options. Edge compute closer to end users.
Healthcare systems, universities, media production, gaming infrastructure, and any organization needing scalable compute.
Pre-integrated multi-pod deployments. Mix compute, power, cooling, and storage pods to match your exact requirements.
Delivered fully shipping-ready with protective crating, environmental seals, and custom configurations. We handle logistics worldwide.
500kW • 4 pods
1-2 Compute + 1 Power + 1 Cooling. Regional deployment. CDN nodes. Fits on single flatbed.
2.5MW • 12 pods
6 Compute + 3 Power + 3 Cooling. LLM training clusters. Research labs. Deploy in under 2 weeks.
10MW+ • 50+ pods
Custom pod mix. Tier-1 workloads. Multi-zone architectures. Full redundancy.
Every pod manufactured in ISO-certified facilities with rigorous quality control
Quality management systems. Documented processes. Continuous improvement.
Every pod tested at full load for 72 hours before shipment. Zero field failures.
Complete supply chain tracking. Every part serialized. Full warranty coverage.
Unlike on-site construction where quality varies, factory manufacturing ensures consistency. Every Syaala pod meets the same exacting standards.
PUE 1.15-1.30 vs 1.58 industry average
Power Usage Effectiveness. Lower is better. 1.0 is perfect.
For 1MW IT load: Savings of 380kW = $265K/year at PUE 1.20 vs 1.58.
Direct liquid cooling. High-efficiency PDUs. AI-driven thermal management.
Solar, wind, hydro integrated.
Dry-cooling or <1L per kWh.
Modular data centers.
From order to operational in 6 weeks.