Eindhoven and the Brainport region run some of the most compute intensive work in the Netherlands: chip design, machine vision, simulation and R&D across the High Tech Campus and its supply chain. We install the infrastructure that carries it, including high density GPU and HPC racks, Supermicro platforms and the liquid cooling they need.
Research and engineering compute is dense. A GPU training rack in Eindhoven can draw more power than an entire row of ordinary enterprise kit, and air cooling stops being viable long before the rack is full. If the cooling and power are not installed for that density, expensive accelerators quietly throttle and the R&D budget buys performance it never receives.
We size the installation against the real thermal and electrical load rather than a generic figure, then install the racks, the power path and the liquid cooling as one project and commission them together under load.
Dense compute installed so it actually delivers its rated performance: cooling commissioned under load, power verified, and every node deployed to the same documented standard.
Every discipline we install in Eindhoven is delivered by the same coordinated team: datacenter installation, server rack installation, CDU and liquid cooling, Supermicro systems, white space fit-out, datacenter cooling and HVAC, electrical and power, structured cabling, fire safety, security and access control and maintenance. See all locations we cover or request a free site survey.
Yes. The Brainport region runs some of the most compute intensive work in the Netherlands, from chip design to machine vision and simulation. We install dense GPU and HPC racks, Supermicro platforms and the liquid cooling they need.
Air cooling copes to roughly 15 to 20kW per rack, gets difficult between 20 and 40kW, and is effectively finished above 40kW. GPU training racks commonly run 60 to 130kW, which needs CDU and direct-to-chip cooling.
Very often thermal throttling. If cooling and power were not installed for the real density, expensive accelerators quietly throttle and the R&D budget buys performance it never receives. We size against the actual thermal and electrical load, not a generic figure.
Yes. We rack, cable, align firmware, configure BMC and IPMI, and burn-in test under sustained load before handover, so every node in the fleet behaves the same way.
Yes, and you should. Cold plate compatibility, CDU sizing and manifold placement have to be settled before hardware arrives. We install and commission both together under load.
Cost depends on rack count, power density, cooling type and cabling scope. Straightforward rack and cabling work starts in the low thousands per rack, while a full white space fit-out with power and liquid cooling runs substantially higher. You get a fixed quotation after the free site survey, with no hourly surprises.