---
title: "High-Performance Computing in Estonia – AMD EPYC Bare Metal"
canonical_url: "https://3nv.io/solutions/high-performance-computing"
last_updated: "2026-07-21T20:10:57.872Z"
meta:
  description: "AMD EPYC bare metal for HPC in Estonia. DDR5, NVMe scratch, predictable throughput, and Estonian/EU jurisdiction for research and simulation workloads."
  "og:description": "AMD EPYC bare metal for HPC in Estonia. DDR5, NVMe scratch, predictable throughput, and Estonian/EU jurisdiction for research and simulation workloads."
  "og:title": "High-Performance Computing in Estonia – AMD EPYC Bare Metal"
  "twitter:description": "AMD EPYC bare metal for HPC in Estonia. DDR5, NVMe scratch, predictable throughput, and Estonian/EU jurisdiction for research and simulation workloads."
  "twitter:title": "High-Performance Computing in Estonia – AMD EPYC Bare Metal"
---

# HPC on dedicated servers in Estonia

Single-tenant AMD EPYC bare metal for simulation, rendering, and compute-intensive research. 100% of the server's resources go to your workload – not a fair-share quota of a multi-tenant cluster.

## **What HPC Workloads Actually Need**

Benchmarks lie on shared infrastructure. The clock speed and core count you spec for a cloud VM is what you get when the machine is idle – not at 3am when your job is running alongside ten others.

**The Whole Server. All Yours.**

Single-tenant bare metal means 100% of the EPYC's cores, DDR5 bandwidth, and NVMe IOPS go to your workload. No virtual CPU scheduler deciding your allocation mid-run.

**AMD EPYC. Full Clock Speed.**

High-core-count EPYC at full clock speed – not throttled by a hypervisor's fair-share policy. The performance you benchmark on day one is what you get mid-run.

**DDR5. Memory Bandwidth at Scale.**

DDR5 RAM for workloads where memory bandwidth is the real constraint. Large-scale fluid dynamics, molecular dynamics, and finite element simulations stop bottlenecking on throughput.

**NVMe Scratch. No I/O Ceiling.**

Fast dataset loading, checkpoint writes, and scratch storage on local NVMe. No network storage in the path – the I/O layer won't be what slows your run.

**EU Jurisdiction. Funded Research.**

Many EU-funded research projects have data residency requirements. 3NV runs the infrastructure from Estonia under EU jurisdiction, with operational documentation available for procurement and grant reviews.

**Custom Configurations. Scoped to You.**

Tell us what you're running – CPU-to-RAM ratio, core count, storage configuration. We'll configure the hardware to match the workload, not the other way around.

## **Why Dedicated Hardware for HPC?**

Cloud VMs make sense for bursty, unpredictable workloads. For sustained HPC runs – where consistency matters and the job can't restart – dedicated hardware is the right answer.

#### **No Noisy-Neighbour Variance**

Virtualised cloud gives you 'up to' performance. Dedicated bare metal gives you the actual hardware every time – no noisy-neighbour variance or scheduler surprises mid-run.

#### **Built for EU-Funded Research**

EU research funding often comes with data sovereignty conditions. Physical infrastructure in Estonia keeps placement, operator, and support path easier to audit than a generic hyperscaler region.

#### **Predictable Cost for Long Runs**

Fixed monthly pricing for dedicated hardware. No per-hour cost uncertainty across a multi-week simulation or long render. Budget what you need – it stays that way.

## **Tell Us What You're Computing.**

Simulation, rendering, research, AI training – describe the workload and the data residency requirements. We'll spec the right dedicated configuration and get it provisioned.

[Talk to an Engineer](https://3nv.io/contact) [View AMD EPYC Bare Metal Pricing](https://3nv.io/products/metal)