NTS HPC and simulation cluster staged for enterprise technical workloads
Key application

Enterprise Workloads

HPC, simulation, rendering, and research platforms engineered to order in Fremont, CA - validated for the solver, license model, and facility you actually run.

Key application

Enterprise Workloads

Enterprise Workloads covers the technical computing that keeps engineering, research, and creative teams productive: high performance computing clusters, scientific and climate simulation, 3D rendering and CAD, digital content creation, R&D labs, and industrial automation at the edge of the plant floor.

NTS builds these systems to order. We size cores, memory bandwidth, accelerators, scratch storage, and interconnect around the specific solver or application, validate power and cooling against your facility, then stage, burn in, and rack the cluster in Fremont, CA before it ships. Federal, defense, SLED, and enterprise buyers can order through pre-competed contract vehicles.

Use this application hub to map workloads to NTS platforms—GPU servers, storage tiers, and rack integration—with Fremont staging and contract-ready quoting when required.

Each card links to deeper catalog or solution paths. Request an architecture review if you need CLIN structure, lead times, or a dual-vendor GPU comparison.

Workload path

From application intent to validated BOM

Application hubs connect mission use cases to engineer-to-order systems.

Start with the cards below to explore related platforms and capabilities. NTS sizes CPU, accelerator, memory, storage, and fabric together so power, cooling, and drivers match the workload—not orphan SKUs.

Federal and SLED buyers can carry the same architecture onto approved vehicles. Commercial teams get the same staging discipline without the GWAC paperwork when it is not required.

Workloads on this page

Enterprise Workloads applications

Each card maps a Key Application code from the product catalog to the NTS platforms that run it.

High Performance Computing (HPC) hpc High Performance Computing (HPC) Tightly coupled MPI clusters with low-latency fabric, parallel scratch, and head-node scheduling.
  • Dual-socket and dense 2U4N nodes
  • InfiniBand or 400GbE fabric
  • Slurm and scheduler staging
Explore High Performance Computing (HPC) →
Scientific Simulation & Research scientific-simulation Scientific Simulation & Research CFD, FEA, molecular dynamics, and lab codes on memory-bandwidth-optimized nodes.
  • Also covers the scientific-simulation-short code
  • High memory-per-core configurations
  • Validated ISV application stacks
Explore Scientific Simulation & Research →
Climate & Weather Modeling climate-modeling Climate & Weather Modeling Long-running ensemble forecast and earth-system models with sustained I/O to parallel storage.
  • Wide-node scaling
  • Parallel filesystem tiers
  • Liquid cooling options
Explore Climate & Weather Modeling →
3D Rendering & CAD rendering-cad 3D Rendering & CAD GPU render nodes and CAD workstations for design review, ray tracing, and batch output.
  • Certified pro graphics
  • High-clock CPUs for CAD
  • Render farm build-out
Explore 3D Rendering & CAD →
Digital Content Creation digital-content Digital Content Creation Editorial, color, VFX, and animation pipelines with fast local NVMe and shared project storage.
  • 8K timeline playback
  • Fast scratch and cache
  • Shared storage integration
Explore Digital Content Creation →
Research & Development research-rnd Research & Development Lab and university platforms for genomics, imaging, and instrument data reduction.
  • Life science pipelines
  • Grant-friendly quoting
  • SLED and education contracts
Explore Research & Development →
Industrial Automation, Retail industrial-automation Industrial Automation, Retail Ruggedized short-depth and small form factor systems for plant floors, labs, and store back rooms.
  • Short-depth chassis
  • Wide temperature options
  • Fleet imaging before ship
Explore Industrial Automation, Retail →

Frequently asked questions

We start from the application, not the chassis. Tell us the solver or suite, typical job size, licensing model, and dataset footprint, and NTS returns a configuration with the core count, memory bandwidth, accelerator, scratch tier, and fabric that the code actually benefits from.

  • Share solver, job size, and license terms
  • We model core count against per-core license cost
  • Configuration validated before quote

HPC clusters and 2U4N dense nodes handle tightly coupled simulation, GPU systems drive rendering and accelerated solvers, and workstations serve interactive CAD and content creation. Small form factor and short-depth systems cover industrial and retail edge deployments.

  • HPC clusters, dense nodes, and GPU servers
  • Workstations for CAD and content creation
  • Short-depth systems for plant floor and retail

We check that before you order. NTS reviews rack power, breaker capacity, inlet temperature, and airflow direction, then recommends air, rear-door, or direct liquid cooling. If the density does not fit the room, we say so and adjust the design.

  • Rack, power, and thermal review up front
  • Air, rear-door, and direct liquid cooling options
  • Rack elevations and cable plans provided

Systems are integrated, firmware-leveled, burned in, and imaged in Fremont, CA. Clusters can ship rack-and-stack complete with labeled cabling, asset tags, and as-built documentation so your team racks and powers on instead of building from boxes.

  • Burn-in and firmware baseline before ship
  • Optional full rack integration and labeling
  • As-built documentation and asset tagging