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Maharani AI Data Center

Compute that brings its own power and its own water.

An integrated power and cooling package for AI data centres — floating generation and solid oxide fuel cells paired with seawater cooling — so that capacity is energised on the project's own timeline without drawing on the national grid or the freshwater supply. Maharani Freeport in Muar, Johor is the anchor deployment.

01

Business Opportunity

Johor has the demand.
Not the power.

Hyperscale AI data centres are concentrating in Johor faster than the grid and the cooling water supply can follow. The shortage is not of land, capital or tenants. It is of firm power available on a date operators can commit to.

Conventional land-based generation cannot close that gap in time. Permits, grid connection and civil construction put a new plant beyond the window operators are planning against — and freshwater cooling adds a second constraint in a state that is already managing water scarcity.

A generation and cooling package that arrives by sea, moors offshore and uses seawater instead of the water table sidesteps both constraints rather than competing for them.

Timing is the binding constraint

Land-based plants are gated by permitting, grid connection and civil works. A floating plant transmits as soon as it is moored and connected — the schedule belongs to the fabrication yard, not the queue.

Water is the political constraint

Evaporative cooling towers consume freshwater at a scale that is now publicly contested in Johor. Seawater cooling removes that draw almost entirely.

Tenants buy the carbon profile

Global operators contract against RE100 and PUE targets, not price alone. Carbon-free fuel cell capacity is what makes a bid competitive rather than merely compliant.

02

Proposed Solution

Generation, cooling and load designed as one package.

Rather than building on reclaimed ground and waiting for the grid, the model places generation on floating and modular platforms, applies solid oxide fuel cells to core and premium load, and cools the facility with seawater.

Capacity is delivered in lines. The first line establishes firm power for the anchor load; subsequent lines are added to match the pace at which data centre capacity scales, so generation never runs far ahead of demand or far behind it. The same configuration is repeatable at any coastal site carrying a power-constrained load.

Components of the Maharani AI data centre model
Component What it does Constraint it removes
Floating
Power Plant200 MW · Line 1

LNG-fuelled generation on a floating platform, fabricated at yard and moored offshore, transmitting to the facility from the point of connection. Expandable in subsequent lines.

Permitting, grid connection and civil construction — the three things that put land-based capacity beyond the window operators are planning against.

Hydrogen
Fuel CellsSOFC · core load

Solid oxide fuel cells supplying core and premium load with carbon-free, high-efficiency generation independent of the grid.

Carbon intensity and RE100 exposure. Also removes reliance on conventional standby generation.

Seawater
CoolingThermal · waste heat

Seawater replaces evaporative cooling towers, while waste heat from the fuel cells drives absorption chillers instead of being rejected.

Freshwater consumption in cooling — effectively eliminated — and the share of total power drawn by cooling load.

AI Data
CenterThe load

High-density computing capacity for AI training and inference, phased against contracted tenant demand at the site.

Regional shortage of high-density capacity with assured power and a defensible water profile.

The cooling loop is where the model compounds.

Seawater cooling on its own removes the freshwater draw. Fuel cells on their own remove the carbon. Put them together and the fuel cells' waste heat — normally rejected — drives the chillers, so the cooling system consumes a fraction of the power it otherwise would. Two constraints and a cost line are addressed by the same design decision.

Why floating, and why now.

Ground on reclaimed land settles, and generation cannot be built on it until it has. A floating platform is fabricated in parallel with the site rather than after it, which means power can be supplied during settlement and scaled in step with the site's phased build-out. The constraint that would delay a project by years is removed by moving the plant off the ground.

03

JSY's Role

We bring the technology.
We hold the equity.

JSY leads a Korean technology consortium into the project. We are not the port developer and not the civil contractor. We bring the floating generation, fuel cell and seawater cooling capability, structure the commercial relationship with the developer, and hold equity in the result.

That scope is deliberate. It concentrates the venture on high-value technology and operations rather than on large-scale reclamation and civil works, which shortens the path to revenue and keeps capital exposure proportionate to what we control.

01

Technology Introduction

We qualify and bring in floating power, solid oxide fuel cell and seawater cooling technology from Korean partners with proven offshore plant and energy capability, and negotiate the terms on which it enters the project.

02

Consortium Leadership

We assemble and lead the technology consortium, align the individual scopes into one deliverable package, and hold a single commercial interface with the developer.

03

Commercial & Financing Structure

We structure the supply, capacity and shareholding arrangements, and align the financing with export credit criteria so that the package is bankable at the scale proposed.

04

Equity Participation & Governance

We take an equity position and board representation, with milestone-linked disbursement across fabrication, mooring and commissioning.

04

Project Structure

One package.
Whoever owns the site.

Technology

Korean Consortium

Offshore plant, gas power, fuel cell and seawater cooling capability supplied as one integrated package.

Lead & Equity

JSY Asset Holdings

Leads the consortium, structures the commercial and financing arrangements, and holds equity and board representation.

Client

Site Owner / Developer

Port developers, industrial park operators, utilities and data centre developers — the counterparty for the power, cooling and capacity scopes.

Demand

Tenants & Operators

Hyperscale and enterprise users contracting high-density capacity with assured power and a defensible water profile.

Delivered in lines

Generation is added line by line against data centre scaling, so capacity and demand are matched at every stage rather than at the end.

Scope discipline

The venture is positioned on technology supply and operations, not on reclamation and civil works — a materially different capital and risk profile.

Export-credit aligned

Financing structures are shaped to export credit agency criteria from the outset rather than retrofitted at financial close.

One anchor site, not one customer.

Maharani Freeport in Muar, Johor is where the package is being taken to market first — it has the coastline, the phased build-out and the load. But nothing in the configuration is specific to it. Any site with seawater access and a power-constrained load can take the same package: a port development, an industrial park, a utility, or a hyperscale operator building its own capacity.

Adjacent marine scopes — bunkering, floating storage, and repair and conversion facilities — draw on the same offshore engineering base and are developed as separate commercial tracks alongside the power package.

05

Partnership

Who we are looking to work with.

Scopes are being defined now, ahead of the window operators are planning against. A partner engaging at this stage shapes the package rather than bidding into a finished one.

Data centre operators & hyperscalers

Operators and hyperscale users who need high-density capacity on a committed energisation date, with a power and water profile that survives scrutiny — whether at an existing campus or a new coastal site.

Technology & equipment partners

Floating power, gas turbine, solid oxide fuel cell and seawater cooling providers seeking a route to market through an established consortium with a contracted anchor load.

Investors & project financiers

Infrastructure investors, lenders and export credit institutions seeking exposure to contracted digital infrastructure with dedicated generation attached.

Site owners & developers

Port developers, industrial park operators, utilities and landowners with coastal frontage who want to make a site viable for high-density compute without waiting on grid reinforcement.

06

Contact

Talk to us while the scopes are still open.

Tell us which side you are on — capacity, technology, or capital — and the timeline you are working to. We will come back with where you would sit in the structure and what it would take to get there.

Or write directly — contact@jsy-asset-holdings.com