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 serving high-density compute racks

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.

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