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Solutions

Six things people actually ask us to build.

We are a supply and integration house, not a consultancy. These are the shapes of work that come through the door, what we do in each, and what you get at handover.

Solutions

If it is none of these

Most enquiries are a mix of two or three. Describe the outcome you need and the desk will tell you what it takes and what it costs — or that we are not the right supplier for it.

  • Rack-scale compute build

    A rack or a row, delivered as one unit of work: servers, switching, PDUs, cable management and labelling, assembled and tested before it ships.

    Typical scope: 1–12 racks · 4–8 weeks from order

    You send the workload profile or the bill of materials. We produce a rack elevation, agree power and cooling envelopes against your facility, then build and test the rack on our floor. It ships either fully racked in a shockwatch-monitored crate, or flat-packed with a build book if the destination lift will not take the crate.

    • Rack elevation and power budget
    • Structured cabling with both ends labelled
    • Firmware baseline across the rack
    • As-built documentation and asset register
  • AI and HPC clusters

    Accelerated nodes, InfiniBand or RoCE fabric, high-density power and the thermal work that makes it survivable in a Southeast Asian facility.

    Typical scope: 4–128 nodes · 8–20 weeks, allocation dependent

    Eight-way SXM nodes, PCIe accelerator platforms, or dense mixed clusters. We handle allocation and lead-time management on the accelerators, build the fabric to a topology you sign off, run a cluster-level validation pass, and confirm the facility can actually take 40–130 kW a rack before anything ships.

    • Node and fabric topology, signed off before order
    • Allocation tracking on constrained accelerators
    • NCCL / IB validation run and report
    • Liquid-cooling readiness assessment
  • Storage and backup platforms

    Primary arrays, scale-out nodes, object tiers and the nearline capacity underneath them, sized against a retention policy rather than a wishlist.

    Typical scope: 100 TB – 20 PB usable

    We size from your capacity and change-rate figures, quote the array alongside the raw media so you can see where the money goes, and pre-populate drives with firmware matched to the controller. Where you are extending an existing fleet, we match drive families and firmware so the array does not spend a week rebuilding.

    • Usable-capacity model with overhead shown
    • Drive firmware matched to the existing fleet
    • Array staged, zoned and tested
    • Media disposal plan for what it replaces
  • Network fabric

    Top-of-rack, spine and border switching with the optics, breakouts and adapters that make the link come up the first time it is patched.

    Typical scope: single ToR to multi-site fabric

    Leaf-spine builds at 25G, 100G and 400G, with EVPN-VXLAN where it earns its place. We stage the switches on our floor with your configuration, verify every optic against the port it will sit in, and ship a patching schedule that a contractor can follow without calling you.

    • Port map and patching schedule
    • Switch configuration staged and saved
    • Optic and DAC compatibility verified per port
    • Spare optics held against the deployment
  • Edge and branch

    Short-depth and ruggedised systems for cabinets, comms rooms and sites where nobody is coming to reboot anything.

    Typical scope: 5–500 sites

    Short-depth chassis, DC-powered options, extended-temperature components and out-of-band management that works over a cellular link. Units ship pre-imaged and pre-addressed so the site visit is a mounting job, not a build.

    • Pre-imaged and pre-addressed systems
    • Out-of-band management verified before despatch
    • Site kit: rails, cables, PDU, labels, in one box
    • Spares held centrally against the estate
  • Refresh and decommission

    Replacing a generation without a gap in service, and getting rid of the old estate without a data problem.

    Typical scope: 50–5 000 units

    We stage the incoming fleet, sequence the swap so capacity never drops below your floor, then take the outgoing kit back. Drives are wiped to NIST SP 800-88 purge or physically destroyed, with certificates issued per serial. Residual value is offset against the new order where the platform still has a market.

    • Migration sequence with capacity floor held
    • Erasure or destruction certificates per serial
    • Buy-back valuation on the outgoing estate
    • Chain-of-custody records end to end

Reference elevation

What 42U actually holds, to scale.

Drawn to EIA-310 unit pitch, with the mounting-hole pattern at the real spacing. Use it to sanity-check a layout before you commit to a cabinet: what a 4U accelerator node costs you in height, how much blanking you will need, and where the PDU has to sit. Power draw and weight depend on the configuration, so they are not on the drawing — ask and we will size them against your build sheet.

If it is none of these

Most enquiries are a mix of two or three. Describe the outcome you need and the desk will tell you what it takes and what it costs — or that we are not the right supplier for it.