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Platform story

Miniaturizing the lab for industrial fluid intelligence.

FLUIDXLAB combines modular microfluidics, HPHT-capable experimentation, and integrated digital workflows to deliver faster, more reliable, and more cost-efficient decisions for complex fluids in energy and adjacent industrial environments.

Problem

Conventional workflows alone leave critical gaps.

Traditional lab programs often rely on multiple bulky instruments, long cycle times, and high sample consumption. Early-stage behavior can remain opaque for too long, delaying technical direction and increasing project risk.

Industrial laboratory setup

Why microfluidics

Microfluidics improves early-stage decision quality.

Small, dedicated micromodels enable fast, precise, and highly automated experiments with tiny fluid volumes. The result is smarter lab workflows: earlier discrimination, better repeatability, and clearer go/no-go decisions before expensive scale-up testing.

HPHT differentiator

Built for HPHT reality, not only lab convenience.

FLUIDXLAB is engineered for demanding operating envelopes, including harsh conditions up to 1400 bar and up to 250°C, with corrosive media and complex multiphase fluid interactions in scope.

High-pressure high-temperature microfluidic laboratory equipment

Platform ecosystem

One platform. Many integrated capabilities.

fluidXsuite — Integrated platform suite

Unified product stack connecting infrastructure and digital operations.

fluidXlab — Infrastructure layer

Laboratory infrastructure for advanced experimentation.

fluidXworkspace — Digital layer

Digital chip design, structured data, and collaboration layer.

First vertical

InspIOR® is the first vertical system on the platform.

InspIOR® is a turnkey, highly automated microfluidic platform for challenging environments and complex fluids. Built on more than a decade of microfluidics R&D, it is already used with academic and industrial partners beyond proof-of-concept settings.

InspIOR® device visual

Workflow compatibility

Designed to complement established industry workflows.

FLUIDXLAB is designed to accelerate conventional measurements without compromising precision. It supports faster iteration cycles and smaller sample volumes while remaining complementary to existing workflows such as MMP, PVT, coreflood, production chemistry, and flow assurance.

Digital layer

fluidXworkspace links lab execution to team decisions.

Cloud-ready collaboration, structured experimental data, transparent documentation, and project coordination create a practical digital backbone. The infrastructure is AI-ready by design while staying grounded in verifiable workflow outcomes.

Platform expansion

From components to systems to additional verticals.

InspIOR® is the first proof point. The scaling path is concrete: components enable systems, systems embed in workflows, and mature workflows open additional verticals across oil and gas, CCS/CO2 transport and storage, hydrogen, geothermal, and other complex-fluid environments.

Why now

The core stack exists. The scaling phase starts now.

With the core infrastructure in place, the next phase centers on ecosystem development, stronger commercialization, and operational scale-up across international markets.

Investment fit

Seeking strategic investors for co-development and scale.

FLUIDXLAB is seeking long-term partners with deep-tech, industrial technology, and energy innovation experience to accelerate ecosystem growth, expand product lines, and scale international operations with discipline.

Additional investor information

Investor materials & next-step resources

For deeper diligence, review the investor teaser and request direct follow-up with the FLUIDXLAB team.

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