Standard Compute
Two Pod-S cabinets side by side in a parking stall at dusk: the B6 battery cabinet with a blue light bar and the C6 compute cabinet with a green light bar, next to EV chargers

Pod-S · Power + compute cabinets

A battery and a GPU node in one parking stall.

Pod-S is one 6 ft outdoor cabinet built two ways. B6 carries the battery and C6 carries the compute. Set them behind an existing meter with a forklift. No pad, no crane and no medium-voltage station needed.

Garage height, half a parking stall
6 ft
LFP battery with 60 kW PCS in B6
86 kWh
Node with 20 kW cooling in C6
8 GPU

Why a cabinet

Put power and compute where the meter already is.

Most sites have spare service capacity and a few empty stalls. Pod-S turns both into storage and GPUs without a construction project.

  • No pad

    Sits on the lot you have

    A welded frame with ISO castings and a graphite base band stands on existing asphalt or concrete. Cables come up through a sealed floor entry.

  • No crane

    Moves with a forklift

    Two fork pockets rated for 4,000 kg and eight ISO castings. It ships on a flatbed, gets set in place and can be moved again later.

  • No MV

    Connects behind the meter

    Sized for a building service, not a substation. The battery covers peaks and short outages so the compute can run on the connection the site already has.

The cabinets

One shell, built two ways.

B6 holds the battery and C6 holds the GPUs. Put them side by side and you get storage and compute behind one meter, with the light bar showing what each cabinet is doing.

A pair of Pod-S cabinets, rear service side with louvered leaves, on a wet parking lot at night next to EV chargers
Envelope
1.3 W × 2.2 D × 1.83 H m
Footprint
Two to a parking stall
Rating
NEMA 3R / IP55
Handling
8 ISO castings + fork pockets
B6 battery cabinet front elevation with SP badge and blue light bar in a parking stall at duskB6 cutaway showing LFP battery modules in the column, DIN rail switchgear and the PCS in the plant cell
SPStandard Power

B6

Battery cabinet

A complete battery in half a parking stall. LFP modules in the rack column, with the power conversion and BMS in a sealed plant cell behind a firestopped baffle.

Energy
86 kWh LFP
Power
60 kW PCS
Column
19-inch, 32U
Light bar
Cobalt · state of charge

Inside LFP modules, BMS, PCS, deflagration vent panel, louvered rear leaves

StatusPrototype build
Reserve B6
C6 compute cabinet front elevation with SC badge, green light bar and a Starlink dish on the roofC6 cutaway showing the 8-GPU node, PDUs and network switch in the rack column beside the cooling unit
SCStandard Compute

C6

Compute cabinet

An 8-GPU node at the edge of the lot. Same shell, compute insert: node, PDUs and switch in the column, with a packaged 20 kW cooling unit in the plant cell.

Compute
8-GPU node
Cooling
20 kW packaged unit
Network
Switch + Starlink option
Light bar
Emerald · compute load

Inside GPU node, PDUs, switch, cooling unit, full-bay louvered plant cell

StatusPrototype build
Reserve C6

Build a lineup

Start with a pair. Add cabinets as the site allows.

Each cabinet is self-contained, so a lineup grows one stall at a time. Mix B6 and C6 to match the service you have and the load you want to run.

B6 battery cabinets

86 kWh / 60 kW each

C6 compute cabinets

8 GPUs / 20 kW cooling each

Battery energy
86 kWh
Battery power
60 kW
GPUs
8
Cooling capacity
20 kW
Parking stalls
1
Ride-through at full cooling load
≈ 4.3 h
Lineup, plan view B6 C6

Ride-through assumes each C6 draws its full 20 kW cooling rating. These are planning figures from the prototype specification and will be replaced by measured pilot data.

One shell

Same enclosure, different insert.

B6 and C6 come off the same line from the same factory. Only the insert changes, so every spare, door and drawing works on both.

Shared Pod-S shell specification with B6 and C6 differences
SubsystemShared shellB6 batteryC6 compute
FrameWelded steel frame, 4 mm posts and rails, 8 ISO 1161 castings, 160 mm graphite base bandFloor rated 900 kg under the column railsAnchor pattern for a 1,000 × 600 × 1,100 cooling unit
SkinFlat bonded panels: 1.5 mm galvanized steel on 50 mm PIR, white liner, flatness ≤ 1.5 mm/mLouvered 800 × 800 inserts with G4 filter framesFull-bay louvered panel on the plant cell
LayoutOne tier, two cells: a 1,200 mm front cell with a 32U column and a 760 mm plant cellMineral-wool baffle with a firestopped passBaffle with two framed air openings
ServiceFour flush doors, a service chase with DIN plate, terminal strip and ground barPCS and BMS struts, fan ring, cable trayPDUs, switch, stainless condensate pan
EntryFloor-entry opening 300 × 200 with a Roxtec frame, two fork pockets rated 4,000 kg600 × 250 flush deflagration ventRoof mount for a Starlink dish
SignalLED light bar across the front, SP or SC badgeCobalt, shows state of chargeEmerald, shows compute load

Siting

Set in place, not built on site.

The cabinet arrives finished. Site work is a survey, a short trench and the terminations.

  1. Step 1

    Survey the stall

    Check the service, choose the stalls and route a short trench to the floor entry.

  2. Step 2

    Set by forklift

    Lift the cabinet by its fork pockets, set it on the base band and level it.

  3. Step 3

    Terminate and seal

    Pull cable through the Roxtec frame and land it on the terminal strip and ground bar.

  4. Step 4

    Light it up

    Commission the BMS or the node. The light bar turns cobalt or emerald when it is live.

Where Pod-S fits

  • EV charging lots

    Battery buffering for chargers, with GPUs earning on the same service between sessions.

  • Retail and office parking

    Turn an unused stall into resilience and local compute without touching the building.

  • Fleet and service depots

    Demand-charge relief and backup power for yards that already have a large service.

  • Remote and edge sites

    A self-contained node with its own power and a Starlink option where fiber does not reach.

Pilot program

Host one of the first pairs.

We're looking for sites with spare service capacity and a stall or two to give up. Hosts get early units and the data from them.

  1. Now

    Prototype pair

    One B6 and one C6 are being built on the same shell to check fit, finish and function.

  2. Next

    Pilot sites

    A small number of host sites run a pair, with measured energy, load and thermal data shared with the host.

  3. Then

    Listed production

    Certification and fire testing on the production design, then volume orders of mixed B6 and C6.

Request a quote

Tell us about your site.

Tell us where the stalls are, how big the service is and what you want to run. We will reply with a cabinet lineup and a quote, or a spot in the pilot program.