TECHNICAL OVERVIEW / PLATFORM
Compute without compromise.
A coordinated platform for accelerated compute: dense GPU systems, resilient power, advanced cooling, deterministic networking and operations built around uptime.

LIQUID COOLING / DISTRIBUTION MANIFOLD
01 / SYSTEM DESIGN
One platform. Seven engineered layers.
Every layer is specified together, so a cooling decision supports density, a power decision supports maintainability, and the network supports the traffic patterns of distributed training.
01
GPU infrastructure
Composable GPU pods support cluster growth without redesigning the entire facility.
HIGH-DENSITY CLUSTERS / MODULAR PODS
02
Liquid cooling
Direct-to-chip loops, monitored distribution and serviceable manifolds manage sustained thermal loads.
CLOSED LOOP / LEAK DETECTION
03
Power
A/B distribution, maintainable electrical paths and phased capacity planning support long-lived deployments.
RESILIENT PATHS / METERED CAPACITY
04
Networking
A high-bandwidth leaf-spine fabric is sized for east-west GPU traffic and private interconnection.
400G FABRIC / DIVERSE ROUTES
05
Storage
Parallel, object and local tiering align checkpoints, datasets and inference artifacts with the right performance profile.
PARALLEL I/O / MULTI-TIER
06
Security
Physical controls, segmented networks and auditable access policies protect the facility and workload boundary.
LAYERED CONTROLS / AUDITABLE ACCESS
07
Operations
Continuous telemetry, controlled change, and tested response procedures support defined service objectives.
OBSERVABILITY / RUNBOOKS / RESPONSE
02 / CLUSTER PATH
From utility feed to useful compute.
The platform is designed as a single flow of capacity, heat and data.
01
POWER IN
Utility + on-site distribution
02
THERMAL
Liquid cooling plant + CDU
03
COMPUTE
GPU rack + network fabric
04
WORKLOAD
Training + inference + simulation
03 / DESIGN ENVELOPE
Technical targets, clearly qualified.
Reference configurations show the platform design range. Final density, fabric, redundancy, and operating coverage are confirmed for each site and workload.
01
120 kW+
Rack design density
REFERENCE CONFIGURATION
02
400G
Network fabric
REFERENCE CONFIGURATION
03
N+1
Representative cooling topology
REFERENCE CONFIGURATION
04
24/7
Operations coverage
REFERENCE CONFIGURATION
DESIGN YOUR CLUSTER
Bring us the workload. We’ll map the infrastructure.
Start with accelerator type, target region, deployment horizon and data movement profile.
STRATUM
STRATUM is a fictional concept brand. Facility profiles, specifications, company details, and performance values are illustrative.