STORE
FluxCell™
Thermal storage modules designed to hold cooling capacity for later use. A serviceable, modular approach to building the storage your site needs.
THERMAL INFRASTRUCTURE. REIMAGINED.
Cooling should work around your energy needs. Not the other way around.
Fluxion is developing modular thermal storage and intelligent controls to shift cooling demand, support critical operations and make better use of energy.
Discover FluxMatrixFind your applicationDesigned to connect energy availability with thermal demand.
01 / THE PLATFORM
FluxMatrix brings storage, heat transfer and control into a modular architecture. The aim is to complement existing chillers and cooling loops—not replace every part of your infrastructure.
STORE
Thermal storage modules designed to hold cooling capacity for later use. A serviceable, modular approach to building the storage your site needs.
TRANSFER
A high-flux thermal interface under development to move heat between the storage medium and the connected cooling circuit.
ORCHESTRATE
The planned intelligence layer: digital twins, state-of-charge estimation and dispatch controls informed by energy availability and cooling demand.
INTEGRATE
The complete platform architecture, combining these layers through open hydraulic and digital interfaces for site-level integration.
Platform and subsystem descriptions reflect the development architecture. Final specifications and performance remain subject to engineering validation.
02 / APPLICATIONS
Explore where stored thermal capacity could help balance energy demand, cooling resilience and water use.
CRITICAL COMPUTE
Data centres need dependable cooling as compute demand grows. Fluxion is targeting site-level thermal storage that works alongside chillers and liquid-cooling infrastructure.
Shift part of cooling production away from periods of high electrical demand.
Assess stored cooling as one layer of a site-specific resilience strategy.
Explore closed-loop configurations with reduced dependence on evaporative cooling.
03 / HOW IT WORKS
Thermal storage creates flexibility in time. The controls decide when to charge and discharge, within the limits of the equipment and the site's cooling requirements.
Use connected cooling equipment to charge storage when energy availability, tariffs and operating conditions favour it.
Store thermal energy while monitoring temperature and estimated state of charge.
Deliver stored cooling through a heat-transfer interface when the facility needs it.
It changes when cooling is produced and used. Net energy use, cost savings, water savings and emissions depend on the complete system, charging conditions and operating strategy.
04 / OUR APPROACH
Developed within the Gini Technologies portfolio, Fluxion carries forward a practical engineering philosophy: separate, recover, recycle and optimise.
Resource-recovery and water-system experience informs our focus on closed loops, modular equipment, instrumentation and field serviceability.
That experience is a starting point—not a substitute for thermal-system testing. Fluxion's commercial performance must be established through a staged validation programme.
Technology in developmentEvaluate storage materials, thermal interfaces and controls under defined test conditions.
Integrate the platform and measure performance against a clear verification plan.
Use validated results to shape pilot configurations, integration requirements and commercial specifications.
A CLOSER LOOK
The platform is intended to complement chillers, liquid-cooling systems and building-management infrastructure. The precise configuration depends on the facility and its thermal requirements.
Fluxion is a development-stage platform. Product specifications, reliability and performance require validation. This website describes the architecture and intended applications, not a guarantee of commercial readiness.
Closed-loop configurations may reduce direct water consumption where they displace evaporative cooling. Storage alone does not guarantee water savings; the full heat-rejection system and local operating conditions must be assessed.
A useful starting point is the cooling-load profile, supply and return temperatures, existing chiller arrangement, electricity tariffs, available space, water use and required resilience duration.
05 / WHO WE ARE
We are developing intelligent thermal infrastructure that brings together modular energy storage, heat transfer and digital control.
Fluxion is part of the technology portfolio developed by Gini Technologies. Our focus is on making thermal energy more flexible, with systems designed around the needs of data centres, industrial facilities and district-energy networks.
Our engineering approach draws on experience in resource recovery and water infrastructure, while advancing a dedicated validation programme for thermal storage.
THE DEVELOPER BEHIND FLUXION
Explore the story behind Gini and its wider technology portfolio, including the eMoya turbine, Pavilion technologies, cavitation separation and AICV technologies.
Visit Gini Technologies06 / INVESTORS · WHY FLUXION MATTERS
AI infrastructure, industrial production and urban cooling networks depend on reliable heat removal. Developing flexible thermal infrastructure matters because growth must be supported within the limits of electricity supply, water availability and operating budgets.
The IEA’s 2025 base case projects global data-centre electricity demand rising from 415 TWh in 2024 to about 945 TWh by 2030. That is total facility electricity, including computing and cooling. Fluxion’s development focus is to make the cooling portion more flexible through storage, heat transfer and intelligent dispatch. Source: IEA →
THE SCALE OF COOLING EXPENDITURE
Published global market-revenue forecasts indicate the scale of annual spending on cooling systems and services within each report’s scope.
AI & DATA-CENTRE COOLING
US$128.31bnforecast annual market in 2033From US$26.31bn in 2025. AI and higher-density computing are driving demand for advanced cooling.
This is the whole data-centre cooling market, including AI and conventional workloads; it is not an AI-only spending estimate.
Grand View Research forecast →INDUSTRIAL COOLING SYSTEMS
US$34.7bnforecast annual market in 2030From US$22.6bn in 2024. Cooling supports temperature control and process continuity across power generation, chemicals, pharmaceuticals and other industries.
Grand View Research forecast →DISTRICT COOLING
US$61.49bnforecast annual market in 2034From US$31.16bn in 2025. Centralised networks supply cooling across buildings, campuses and urban districts.
Fortune Business Insights forecast →Forecasts checked 4 October 2026. These are annual market values in different forecast years, not cumulative investment, electricity bills or Fluxion revenue projections. Market definitions may overlap, so the figures are not added together. Only part of each market is addressable by thermal storage.
WHAT IT MEANS FOR THE ENVIRONMENT
Fluxion is being developed to support closed-loop cooling and dry heat rejection, with stored capacity covering periods of peak demand. Where this displaces wet cooling, it could reduce freshwater consumption and associated treatment needs.
Thermal storage can move cooling production to periods with lower-carbon electricity or favourable operating conditions. Actual carbon benefits depend on the charging energy mix, system efficiency, storage losses and dispatch strategy.
The modular approach is intended to complement existing cooling assets and enable serviceable components. Its lifecycle benefit will depend on equipment life, materials, manufacturing impacts and end-of-life recovery.
These are intended benefits to validate, not measured Fluxion savings. Peak-demand reduction does not automatically reduce total energy use. Water and carbon outcomes require a site-specific baseline and whole-system assessment.
WHAT IT MEANS FOR BUSINESS
Producing cooling at favourable times and dispatching stored capacity during peaks could lower demand charges and tariff exposure. Commercial value must exceed storage, pumping, maintenance and financing costs.
Stored cooling could support short-duration ride-through and reduce peak loads on chillers and electrical infrastructure. Properly engineered installations may defer some capacity upgrades while supporting critical operations.
For Fluxion, the intended model combines modular hardware and integration with recurring FluxIQ software and service revenue. A reusable architecture could support data centres, industrial sites and district networks as performance and customer economics are proven.
CURRENT SEED FUNDING TARGET · US$5.0m
The planned 24-month programme aims to validate the FM250 demonstrator, secure priority IP, establish design-partner commitments and prepare a costed FM1000 scale-up package. Contact us to discuss the technology and investment opportunity.
Fluxion remains a pre-revenue development-stage platform. The funding target and programme are based on the July 2026 seed plan, investor deck v8; they do not represent committed capital or achieved milestones. Contact us for current availability and terms.
Thermal-storage context: U.S. Department of Energy — thermal energy storage. Fluxion applications and business model reflect the development plan and remain subject to validation.
07 / CONTACT US
For project enquiries, technology partnerships or more information about Fluxion, get in touch.
hello@fxn.systems