Blok Systems · bloksystems.com

The datacenter, manufactured.

The Blok: 150 kW of compute, every system packaged and tested, from our factory floor to your site in 90 days.

Qualify your siteSCROLL TO ASSEMBLE ↓
00CHASSIS40 × 8 FT · ISO CORNER CASTINGS · PURPOSE-BUILT OR RECLAIMED CONTAINER
The assembly · 00 → 06
00 CHASSIS40 × 8 ft · ISO corner castings · purpose-built or reclaimed container
01 POWER150 kW IT · 3×3 ft UPS · UL 9540A
02 COOLING50 ton · water-to-water · plant screened
03 PROTECTIONclean agent · man-trap entry · rope-sensed
04 COMPUTE750 W/SF · factory load-bank tested · 72 hr thermal soak
05 FACADEExpressed or Clad · square-O mark · 45 dBA at 50 ft
06 COMPLETEships commissioned · 90 days
The flagship · The Blok™

750 W/SF. Hyperscale density in a 40-foot box.

150 kW of compute, every system packaged and factory-tested, priced $1.5–2.0M for the complete system. Seven Bloks make a megawatt.

150 kW
Compute per Blok
750 W/SF
Rack density
50 TON
Water-to-water cooling
7 = 1 MW
Bloks per megawatt
$1.5–2M
System · compute excl.
40 × 8 FT · 320 SF GROSS · 200 SF IT FLOOR · EXTERIOR PLANT SCREENED
The Range

From a single GPU to a gigawatt.

The same factory-built, tested engineering at five sizes — from a condenser-sized unit on a driveway to a custom building. Pick the rung your site needs; the platform is the same all the way up.

Every rung · factory-built · tested · quiet · heat is the asset · remotely monitored
Every system in the box

One contract. Every subsystem packaged inside.

Power, cooling, protection, network, and compute — integrated and serialized at the factory, not assembled on a muddy site.

SYS 01

Chassis

Purpose-built steel frame or reclaimed container, corrosion-treated and floor-reinforced.

4,000 LB/RACK
SYS 02

Power skid

Switchgear, modular lithium UPS, ATS, and generator interface.

480V · N+1 · UL 9540A
SYS 03

Cooling skid

Direct-to-chip CDUs, dry coolers, and glycol management.

130 KW/RACK
SYS 04

Protection

Clean-agent suppression, man-trap vestibule, rope leak sensors, zone isolation.

ROPE-SENSED
SYS 05

Compute

Air or liquid racks, factory-cabled and burned in before shipping.

10–130+ KW/RACK
SYS 06

Facade

Interchangeable cladding — standing-seam, board-and-batten, brick — with parapet kits.

45 dBA AT 50 FT
SYS 07

Thermal site package

Stacked geothermal field, zoned snowmelt, ice bank, and thermal battery.

50-YR BOREFIELD
SYS 08

Network

Structured fabric, out-of-band links, and dark-fiber anchor conduit.

OCP-STYLE PAD
Built like a product

It ships commissioned, not as a kit.

The box is tested to its rated load on the factory floor. Failure modes are exercised before it ever reaches your site.

TEST 01
Full load-bank
Run at rated IT load on the floor.
TEST 02
72 hr thermal soak
24–72 hr sustained thermal hold.
TEST 03
Failover exercise
Utility drop, UPS ride-through, gen transfer.
TEST 04
Cooling N+1 loss
Redundancy proven under load.
TEST 05
Fire room integrity
Clean-agent hold test, signed.
Proven in the field

Built, shipped, and set.

Factory-integrated Bloks on real sites — Expressed and Clad, inline fleets and offset stacks, craned onto piers and commissioned. The square-O mark, applied like a maker’s brand.

Aerial view of an inline fleet of Blok modules with square-O marks
PLATE 01Inline fleet · megawatt siteCOMPOSED, NOT PARKED
Offset-stack Blok in a commercial district at dusk
PLATE 02Offset-stack · commercial district
Factory-integrated racks and cabling inside a Blok
PLATE 03Factory-integrated compute
Blok craned onto concrete piers at dawn
PLATE 04Crane set & commissioned
Designed to be welcomed

A module that reads as a building, not a box.

Expressed matte-charcoal corrugation with the white square-O mark
Expressed
Clad wood-slat rainscreen with square-O mark
Clad · wood-slat
Backlit perforated art screen with prairie-grass motif
Art screen · backlit
TWO EXPRESSIONS, ONE LANGUAGE · EXPRESSED FOR INDUSTRIAL · CLAD FOR DESIGN REVIEW
30 dBA · WHISPER45 dBA · BLOK AT 50 FT70 dBA · TRAFFIC
45 dBA
At 50 ft — quieter than a residential HVAC unit.
0 gal
Water consumed in cooling. No evaporative loss.
15,000 ft²
Of pavement kept ice-free — no salt, no plows.
The composition library

Composed, not parked.

Pre-engineered, pre-stamped arrangements — never random geometry. Every Blok ships stack-ready: full-capacity castings, roof rated as future floor, riser knockouts.

InlineTHE WORKHORSE · INDUSTRIAL SITES
Offset-stackTHE SHOWPIECE · COMMERCIAL DISTRICTS
Gateway / LTHE CAMPUS
Turnkey to the last inspection

We permit it. We build it. We answer the phone at 2am.

Drilling and interconnect run in parallel — that parallelism is what compresses the schedule.

Qualifyfeasibility + price
2 WK
Permitstate modular pre-approval
PRE-APPROVED PATH
Factory build & testload-bank + soak
90 DAYS
Drill & site workparallel with interconnect
BOREFIELD
Crane set & commissionsigned acceptance
1 WK
Operate24/7 NOC
ONGOING →
WK 0WK 6WK 13SET
The thermal ecosystem

Heat is the asset. Not exhaust.

Every site treats heat as revenue — routed to geothermal fields, stored in ice, melting snow, sold to the factory next door.

Closed-loop geothermal

PUE 1.03–1.08 · WATER-FREE

Snowmelt field

80–125 BTU/HR·FT²

Factory symbiosis

92°F EXPORT · COP 4–6

Ice storage

10× DENSER · RIDE-THROUGH
Descend the section cut
Dispatch · Site 0847 · Demo
Inputs
Ambient31°F
Day-ahead$0.14/kWh
Precip 6h68%
Ice SoC
IT load
1Factory export92°F
2Snowmelt slab34°F
3Heat reuse / greenhouse88°F
4Borefield (baseline)52°F
5Dry cooler (trim)
HEAT-PRICED COMPUTE · DEFERRABLE JOBS DISCOUNTED WHEN THEIR HEAT LANDS IN HIGH-VALUE WINDOWS
The gigawatt case

Capacity as a product, not a project.

For hyperscale buyers deciding how to land a gigawatt.

1 GW · one mega-campus

1 INTERCONNECT · 5–7 YEARS
1 POINT OF FAILURE · 1 COMMUNITY BATTLE

1 GW · 7,000 Bloks

7,000 BLOKS · PARALLEL INTERCONNECTS · N+7,000 RESILIENCE
WELCOMED SITES · A MANUFACTURED COST CURVE
7,000 BLOKS
Drag to size a deployment
Capacity deployed1,000 MW
Months to first energization~21 mo · vs 60+ campus
Water saved vs evaporative / yr1.50B gal
Heat exportable / yr10.5M MMBtu

Illustrative planning estimates for scale comparison — per-Blok water and heat figures are modeled, not contractual. Final numbers are site-specific and confirmed during qualification.

BLOK UNIT COSTCONVENTIONAL $/WBLOK #1#7,000
WRIGHT’S LAW · UNIT COST FALLS #1 → #7,000 · CONVENTIONAL $/W RISES · VOLUME BUYERS PURCHASE THE CURVE
All-in $/W, plainly — illustrative model
Conventional campus~$12–20 / W · rising
BLOK fleet, at volumemodeled below · falling
Illustrative planning model — directional, not a quote. The conventional figure is an industry all-in benchmark; the Blok figure is modeled and falls with cumulative volume. Get a site-specific number in the qualify flow.
Executive diligence · RFI log

Every objection, answered like an engineering question.

The questions a gigawatt buyer asks before committing — logged, answered, closed.

The financial moat · asset-layer lifespans
Each layer is financed to its own lifespan. Only the 2–3-year compute layer turns over — the long-lived infrastructure keeps earning. That is the opposite of a poured-concrete campus (see RFI-009).
RFI-001Interconnect queues run 4–7 years. How is this faster?CLOSED+

Bloks interconnect at distribution voltage on existing feeders — thousands of parallel applications instead of one transmission-scale queue position. First units energize while the mega-campus is still in study.

FIRST ENERGIZATION · MONTHS, NOT YEARS · FLEET COMPOUNDS WEEKLY
RFI-002A campus is one failure domain. What is my blast radius here?CLOSED+

One lost Blok is 150 kW — 0.014% of a 7,000-unit fleet — rebalanced in software. No single storm, substation, fiber cut, or fire touches the fleet.

BLAST RADIUS · 150 KW · N+7,000 RESILIENCE
RFI-003Can distributed sites serve frontier workloads — training needs one building.CLOSED+

Straight answer: giant synchronous training runs stay on dense campuses. The fleet is built for what scales revenue — inference, fine-tuning, RAG, batch — placed next to demand. Buy training where you must; buy serving capacity as a product.

INFERENCE-FIRST · 150 KW · 750 W/SF PER BLOK
RFI-004Who operates 7,000 sites? The ops overhead looks catastrophic.CLOSED+

You operate one product 7,000 times, not 7,000 bespoke buildings. Serialized identical units, autonomous controls, no on-site staff, one NOC, regional spares depots, 4-hour SLA tiers.

1 NOC · 0 ON-SITE STAFF · SERIALIZED DIGITAL PRODUCT RECORD
RFI-005Physical security without a single fence line?CLOSED+

Sally-port man-trap entry, no windows into IT space, rope-sensed intrusion, CCTV, cellular out-of-band — and compartmentalization: a breach yields one 150 kW module, not a campus. Street visibility is a deterrent, not a risk.

SALLY-PORT · ROPE-SENSED · PER-MODULE COMPARTMENTALIZATION
RFI-006Water. My board reports it; communities fight over it.CLOSED+

Zero. Closed-loop geothermal and ice storage — no evaporative towers, no makeup water, no discharge permit. The line item disappears from the ESG report and the town hall.

0 GAL/YR · CLOSED LOOP · NO DISCHARGE PERMIT
RFI-007Do 7,000 sites mean 7,000 permitting fights?CLOSED+

Approval is engineered into the unit: 45 dBA at 50 ft, architectural facades, heated public sidewalks, outage-power resilience hub, heat revenue for the neighbor. State modular pre-approval plus a trained-inspector program makes the 400th permit faster than the 4th.

45 dBA · READS AS ARCHITECTURE · INSPECTOR ACADEMY
RFI-008Utilities hate surprise load. Why would they cooperate?CLOSED+

Each node is distribution-scale, predictable, and curtailable — UL 9540A batteries and deferrable compute bid into demand response. The fleet shows up as thousands of small, flexible, revenue-positive customers, not one transmission emergency.

FITS EXISTING FEEDERS · DR-BIDDING · CURTAILABLE
RFI-009Chips turn over every 18–24 months. Stranded-asset risk?CLOSED+

Asset layers are financed to their lifespans: compute swaps on a 2–3 yr cycle through the factory refurb line, the enclosure runs 15–20 yr, the borefield 50. Modules are movable, serialized collateral with a certified pre-owned market — not poured concrete.

COMPUTE 2–3 YR · ENCLOSURE 15–20 YR · BOREFIELD 50 YR
RFI-010What does $/W look like against a campus, honestly?CLOSED+

Campus $/W is rising — labor, steel, switchgear scarcity, interconnect premiums. Factory units ride Wright’s Law down: every doubling of cumulative volume cuts unit cost. Blok #7,000 is the cheapest ever built; a volume order purchases the curve itself.

WRIGHT’S LAW · SIZE A 1 GW FLEET →
Who buys Bloks

Every owner model, one module.

The unit is identical off the line — ownership is configuration, not construction.

MODEL 01

Enterprise · private

Own your Bloks outright, single-tenant by design — on your campus, behind your fence, or in your parking lot. Compliance SKUs ride the serialized record.

1–70 BLOKS · OWN THE ASSET
MODEL 02

Retail colocation

Operators lease racks and cages inside a Blok fleet — the sally port gives every tenant hard physical isolation no cage matches.

PER-RACK · SHORT-TERM TERMS
MODEL 03

Wholesale colocation

Lease whole Bloks or whole pads on long-term capacity agreements — the “data hall” is now a serialized SKU delivered by crane.

7 BLOKS = 1 MW BLOCKS
MODEL 04

Hyperscale

Capacity as a product: fleet orders, parallel interconnects, N+7,000 resilience, a manufactured cost curve. Run the gigawatt case →

7,000 BLOKS = 1 GW
MODEL 05

Edge

One Blok at the metro edge — 150 kW of liquid-cooled compute milliseconds from users, with cellular out-of-band and no building lease.

150 KW · METRO-ADJACENT
MODEL 06

Managed services

You consume capacity; the BLOK NOC operates everything — monitoring, maintenance, spares, refresh — under one SLA.

24/7 NOC · 4-HR SLA
Compute engagement

Take the shell, or the powered-on cluster.

TIER A

Shell

You install your own IT gear. Blok delivers the enclosure, power, cooling, and thermal site package.

TIER B

Integrated BYO

Your GPUs are factory-racked, cabled, and burned in — shipped compute-complete.

TIER C

Full stack

Blok procures compute and delivers a powered-on cluster with network fabric and base software.

Operate

Watched around the clock, from grade to bedrock.

24/7
NOC monitoring
4 hr
SLA response tier
DCIM
Fleet telemetry
50+ yr
Borefield instrumented
The model compounds · levers 05–20

Every lever monetizes something the box already contains.

Four are built into this page — capacity as a product (01), the learning curve (02), self-serve qualification (03), heat-priced compute (04). The rest ship with the fleet.

LEVER 05Grid servicesFleet batteries + interruptible compute bid into demand response and capacity markets — utilities become allies.
LEVER 06Thermal PPAs10-yr indexed heat-offtake contracts at 50–70% of gas-fired cost — recurring MMBtu revenue.
LEVER 07Snowmelt as rentGround leases paid in heat — snow removal runs $2–5/ft² a season in snow-belt markets.
LEVER 08Greenhouse companionA CEA module consumes 30–40% of cold-region greenhouse opex in heat — ship the heat customer with the site.
LEVER 09Wastewater sitingEffluent as heat sink; 95–100°F return warms digesters and lifts biogas yield — thousands of candidate plants.
LEVER 10Resilience hubOutage power receptacle, public Wi-Fi, clear emergency lanes — permitting goodwill at near-zero hardware cost.
LEVER 11EV chargingShares the interconnect, trenching, and battery buffer — snowmelt lot + canopy as host amenity.
LEVER 12Dark-fiber anchorOverbuild conduit at marginal cost — become the district’s connectivity anchor.
LEVER 13Interface standardPad layout, mating, coolant, and controls published OCP-style — the pad becomes the platform.
LEVER 14Certified pre-ownedFactory refurb line and buyback residuals — modules are movable collateral with a second revenue life.
LEVER 15Asset-layer capital15–20 yr enclosure leases, 2–3 yr compute, 50-yr borefield — each layer financed to its lifespan.
LEVER 16Incentive engineering30% ITC + adders on geothermal and thermal storage, MACRS, C-PACE — SKU boundaries shaped to qualify.
LEVER 17Compliance SKUsSOC 2, HIPAA, CJIS, and sovereignty packages riding the serialized digital product record.
LEVER 18Inspector academyAHJs trained on the module before one lands in their jurisdiction — permitting velocity as a moat.
LEVER 19Factory as flagshipThe plant runs on the product line — the demonstration site every prospect and inspector tours.
LEVER 20Telemetry as IPFleet-wide soil and performance data becomes proprietary design IP — and an underwriting edge.

Illustrative planning estimates. Figures here (thermal-PPA pricing, snowmelt-as-rent, incentives, and the rest) are modeled assumptions for sizing the opportunity — not contractual terms. Actuals are site- and market-specific.

Proof points · measured, not marketed
750 W/SF
Hyperscale density
7 = 1 MW
Bloks per megawatt
90 DAY
Factory build cycle
0 GAL
Water consumed
45 dBA
At 50 ft

Precise figures (UL 9540A, PUE 1.03–1.08, 45 dBA at 50 ft, clean-agent hold test) are internal design targets and test results; methodology available on request. Third-party certification is pursued per unit as the product reaches production.

Qualify your site

Instant feasibility on power, geology, and heat offtake.

Scoring on power, fiber, zoning, noise setbacks, drillability, and neighboring heat users. Response within 48 hours.

Request the drawing set →
Site surveyNO. 0848
SITE LOGGED · GRADE 0.0 FTPOWER INBORES · 480 FTHEAT EXPORT → 92°F
STEP 1 / 5 · LOCATION
Scored within 48 hours. No spam — we respond to qualified sites directly.