Monumental black PODOS unit inside a vast bright white architectural pavilion with tiny engineers for scale
Modular AI Infrastructure

Turn available power
into deployable
AI compute.

PODOS combines power, cooling, server racks, communications, and operations inside factory-built modular units — designed to deploy in months instead of waiting years for traditional data-center construction.

Own a piece of the company building a faster path to AI capacity.

Investor access
Company
Private company
Minimum planned entry
$1,000
Current status
Interest stage — non-binding

Offering terms, if and when available, are defined solely by official offering documents.

The PODOS investor film

From power
to AI capacity.

3 MIN

Film contains conceptual visualizations. Deployment timelines shown are PODOS targets.

The market problem

AI is scaling.
Physical infrastructure
is the constraint.

Compute demand no longer waits for construction schedules. The organizations that can deploy capacity fastest will define the next decade of AI.

10×
AI COMPUTE DEMAND

Projected order-of-magnitude growth in demand for AI compute this decade.

INDUSTRY ESTIMATE
3–5YEARS
TRADITIONAL BUILDOUT

Typical time from site selection to commissioning for conventional data-center construction.

INDUSTRY ESTIMATE
90DAYS
PODOS DEPLOYMENT TARGET

PODOS target window from order to commissioning for a standard unit.

PODOS TARGET
1MW
PER MODULAR UNIT

Each PODOS unit is designed as a standardized 1-MW building block for AI infrastructure.

PODOS TARGET
Industry validation

Built with the industry
that has to deploy it.

PODOS is being developed in direct contact with organizations that understand the real physical constraints of power availability, server infrastructure, networking, deployment, and operations.

California high-voltage substation and transmission lines at dawn with a PODOS unit near a prepared siteCONCEPTUAL VISUALIZATION
POWER · GRID INTEGRATION · DEPLOYMENT

Major California Electric Utility

In active discussions with a major California utility regarding power integration and potential deployment pathways for modular AI infrastructure.

Bright interior of a PODOS unit with server racks, fiber distribution and engineers inspecting integrationCONCEPTUAL VISUALIZATION
COMPUTE HARDWARE · RACKS · NETWORKING

Leading Server, Rack & Communications Infrastructure Provider

In active discussions with a leading provider of server, rack, and communications infrastructure regarding system integration and deployment requirements.

POWER PODOS COMPUTE
INTEGRATED INFRASTRUCTURE

Selected industry relationships are presented without public naming at this stage.

One integrated system

Everything required
to turn power
into compute.

Cutaway view of a PODOS unit revealing power, cooling, server racks, networking and service zones
01 · POWER INPUT
ENGINEERING CONCEPT
PODOS UNIT — SYSTEM VIEW01 / 08
  1. 01

    Power input

    Connects the PODOS unit to the available site power infrastructure.

  2. 02

    Electrical distribution

    Conditions and distributes utility power to every internal system.

  3. 03

    Cooling

    Maintains the thermal environment required by high-density compute systems.

  4. 04

    Server racks

    Provides the physical compute architecture within a standardized modular enclosure.

  5. 05

    Communications

    Integrates networking, fiber, switching, monitoring, and external connectivity.

  6. 06

    Monitoring

    Tracks power, thermal, and system health across the unit in real time.

  7. 07

    Safety & security

    Physical access control, fire suppression, and protective systems.

  8. 08

    Service access

    Engineered access panels and corridors for maintenance without downtime.

Two deployment models

Years of construction,
or months of manufacturing.

Aerial view of a massive traditional data center construction site with cranes and concrete structuresILLUSTRATIVE
TRADITIONAL DATA CENTER3–5 YEARSINDUSTRY ESTIMATE
  1. SITE
  2. PERMIT
  3. CONSTRUCTION
  4. INFRASTRUCTURE
  5. COMMISSIONING
Three PODOS units in sequential assembly stages along a bright factory lineCONCEPTUAL VISUALIZATION
PODOS90 DAYSPODOS TARGET
  1. FACTORY
  2. TRANSPORT
  3. SITE
  4. POWER
  5. COMMISSION
The deployment journey

Built in a factory.
Deployed as infrastructure.

01SYSTEM DESIGN

ENGINEER

Engineers reviewing drawings and a scale model of the PODOS unit in a bright design studioCONCEPTUAL VISUALIZATION

One standardized architecture: power, cooling, racks, networking, and operations designed as a single product.

02FACTORY BUILD

MANUFACTURE

Technicians assembling a black PODOS enclosure in a bright factory with overhead craneCONCEPTUAL VISUALIZATION

Units are assembled and tested in controlled factory conditions — not on an exposed construction site.

03SYSTEMS INTEGRATION

INTEGRATE

Technicians sliding a server rack into place inside the PODOS unitCONCEPTUAL VISUALIZATION

Server racks, fiber, switching, and monitoring are installed and validated before the unit ships.

04LOGISTICS

TRANSPORT

PODOS unit on a heavy transport trailer traveling a desert highway at dawnCONCEPTUAL VISUALIZATION

Each unit moves as standard heavy freight to any prepared site with available power.

05TARGET: 90 DAYS

COMMISSION

Technicians commissioning a PODOS unit on a concrete pad with utility connectionsCONCEPTUAL VISUALIZATION

Grid connection, testing, and activation — the target window from order to operation is 90 days.

Illustrative scale model

From one unit
to an infrastructure network.

PODOS capacity is not one construction project — it is a repeatable product. The same standardized unit compounds into campuses and regional networks.

Aerial dawn view of a realistic campus of about ten PODOS units with substation and service roads
ILLUSTRATIVE SCALE MODEL
1UNIT
1 × 1 MW = 1 MW
1 MW
1 × 1 MW
10 MW
10 × 1 MW
100 MW
100 × 1 MW
1 GW
1,000 × 1 MW

Illustrative scale model of the modular architecture — not a representation of current deployments.

Evidence, not just vision

Built,
not just pitched.

Renders explain the vision. The work behind them is engineering, manufacturing preparation, and direct industry engagement.

Engineering drawings, machined components and measurement tools on a bright deskCONCEPT
01IN PROGRESS

ENGINEERING

Complete unit architecture: power, cooling, racks, networking and service access engineered as one standardized product.

Industrial design and system architecture developed to manufacturable specification.

Close-up of the PODOS unit's industrial power interface and switchgearCONCEPT
02IN PROGRESS

POWER

Electrical architecture designed for utility-scale interconnection at standard industrial sites.

Close-up of coolant manifolds and heat exchangers inside the PODOS unitCONCEPT
03IN PROGRESS

COOLING

Thermal architecture specified for high-density AI compute loads within the modular envelope.

Engineers reviewing plans during a site walkthrough near power infrastructure and a PODOS unitCONCEPT
04IN PROGRESS

INDUSTRY

Active engagement across the power and compute-infrastructure ecosystem, including a major California utility and a leading server, rack and communications provider.

05VERIFIED

TEAM

Leadership across engineering, manufacturing, real estate and deployment — profiled on the main site.

See podosai.com for the full team.

Why we're building PODOS
The next era of AI will not run on ideas alone. It will run on infrastructure — and infrastructure is won by whoever can build it fastest. We are building the standardized unit that makes AI capacity a manufactured product instead of a construction project.
The PODOS Founding Team

The world isn't
running out of AI ideas.

It's running out of
places to run them.

PODOS is building those places.

Capital becomes capacity

Capital builds capacity.
Capacity creates the platform for revenue.

01CAPITAL
02MANUFACTURING
03POD
04DEPLOYMENT
05CAPACITY
06CUSTOMER
REPEAT — EVERY CYCLE FUNDS THE NEXT UNIT

Each deployed unit is designed to serve compute demand — and every cycle funds the next unit.

Editorial sequence from engineering drawings to components to a finished PODOS unit, linked by a thin gold lineCONCEPTUAL VISUALIZATION
ENGINEERING
MANUFACTURING
POWER SYSTEMS
DEPLOYMENT
OPERATIONS
GROWTH

Planned allocation categories. Percentages will be published with official offering documents.

Now that you understand
what PODOS is building —
see what participation could represent.

Your piece of PODOS

Explore your participation

Choose an amount to explore. Securities terms, pricing, and ownership figures are defined solely by official offering documents once published.

$
$1,000$250,000

Exploration mode — the official offering structure has not been published. No securities terms are shown.

Exploring
$25,000

Exploration view — the gold arc reflects your position within the exploration range, not ownership.

The path to participation

How investment works

01

DISCOVER

Understand the product, the market constraint, and the deployment model.

02

REVIEW

Request and review the official offering materials when available.

03

VERIFY

Complete identity and eligibility verification through the approved intermediary.

04

INVEST

Complete your investment through the approved portal and receive confirmation.

Risk & offering information

Factory-built modular infrastructure units that integrate power distribution, cooling, server racks, communications, monitoring, and physical security — each designed as a standardized 1-MW building block for AI compute.

PODOS unit in a vast bright hall at sunrise with an open portal to warm desert light

Own a piece
of what powers
the next era of AI.

Talk to the Team

Offering terms and securities transactions are provided through the applicable approved investment intermediary.