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Sectors

One core technology,
four very different jobs.

The same platform applies wherever a fluid needs to reach more than one place and the right answer keeps changing. That is what makes the intellectual property reusable rather than single-purpose.

Data centre server racks behind glass in a brightly lit corridor Data centres

Cooling that follows the workload across independent zones, in real time.

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Electric car charging via rear port beside a solar panel Automotive

Battery, power electronics and cabin comfort on one adaptive architecture.

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House with roof-mounted and ground-mounted solar panels beside a parked car Home heating

Room-by-room control that balances flow instead of switching circuits on and off.

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Tractor spraying a green crop field with long boom arms Agriculture

Variable-rate application that responds outlet by outlet as the field changes.

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Two technicians walking through a data centre aisle between server racks

Data centres

Cooling that follows the workload.

Intelligent cooling for AI infrastructure

The platform monitors temperatures, workloads and system performance, then distributes coolant across multiple independent zones in real time. Rather than pushing equal flow through an entire rack, it directs capacity where it is needed most. It also supports higher return water temperatures, which opens up more waste heat recovery.

Applications

  • AI and HPC infrastructure
  • Hyperscale data centres
  • Colocation facilities
  • Enterprise data centres
  • Liquid-cooled server racks
  • Rear-door heat exchangers
  • CDU and rack-level architectures

Benefits

  • Intelligent adaptive liquid cooling
  • Real-time coolant optimisation
  • Independent multi-zone cooling
  • Improved thermal uniformity
  • Reduced cooling energy demand
  • Higher return water temperatures
  • Scalable for future AI deployments

Currently engaged with industry organisations, operators and technology partners on integration and validation of adaptive liquid cooling in next-generation infrastructure. A priority market for funded pilot deployment.

Electric car charging via rear port beside a solar panel

Automotive

One architecture for the whole vehicle.

Intelligent thermal & climate management

The platform monitors thermal and environmental conditions across the vehicle and directs coolant or conditioned air where it delivers the greatest benefit — battery, power electronics, e-motor and cabin, managed through a single adaptive architecture.

In the battery, coolant is distributed dynamically across multiple zones to support more consistent temperatures during charging and driving. In the cabin, each seating position can be conditioned independently, so unused areas aren't heated or cooled for nothing.

Applications

  • Battery thermal management
  • Power electronics cooling
  • E-motor cooling
  • Cabin climate control
  • Occupant-specific climate zones
  • Heat pump optimisation
  • Full vehicle thermal management

Benefits

  • Intelligent adaptive thermal management
  • Independent multi-zone distribution
  • Occupant-specific climate control
  • More consistent battery temperatures
  • Enhanced vehicle efficiency
  • Reduced thermal stress
  • Flexible across vehicle platforms

Global OEMs and Tier 1 suppliers are evaluating applications across battery thermal management, powertrain cooling and wider vehicle thermal architectures. Several discussions have progressed to detailed technical review of integration and routes to manufacture.

House with roof-mounted and ground-mounted solar panels beside a parked car

Home heating

Heat the room, not the house.

Intelligent multi-zone heating

Traditional systems distribute hot water on fixed control strategies, warming whole properties uniformly whatever each room actually needs.

The platform introduces room-by-room heating: it monitors temperatures throughout the building and adjusts hot water distribution to hold an independent target for every zone. Rather than switching circuits on and off, it balances flow — adapting to occupancy, weather and changing demand, in new systems or retrofitted into existing hydronic installations.

Applications

  • Residential heating
  • Commercial buildings
  • Heat pump systems
  • Underfloor heating
  • Radiator systems
  • Retrofit installations
  • New-build developments

Benefits

  • Independent room temperature control
  • Intelligent adaptive water distribution
  • Personalised comfort throughout
  • Reduced heating energy consumption
  • Improved system efficiency
  • Works with existing and new systems
  • Future-ready BMS integration
Aerial view of a combine harvester unloading into a trailer in a field

Agriculture

Variable rate that actually varies.

Intelligent precision fluid distribution

The platform adapts fertiliser and liquid nutrient application using live information from soil sensors, nutrient mapping, GPS positioning and precision farming systems.

As machinery moves across changing field conditions, it adjusts the quantity delivered through each individual outlet. Instead of applying a fixed rate across a whole field, application responds to soil composition and crop requirement as they change — applying inputs more accurately and wasting less.

Applications

  • Variable-rate fertiliser application
  • Liquid nutrient distribution
  • Precision agriculture
  • Autonomous farming equipment
  • Smart spraying systems
  • Precision irrigation

Benefits

  • Intelligent variable-rate application
  • Adaptive fluid distribution
  • Live response to soil conditions
  • Improved nutrient placement
  • Reduced fertiliser usage
  • Increased yield potential
  • Integrates with precision farming systems

Investor & partner enquiries

Start the conversation.

Investors, licensees and OEM partners are all welcome here. Tell us which you are and what you would like to see, and the right person will come back to you.

Investor relations
investors@hydrohertz.com
Licensing & partnerships
partners@hydrohertz.com
General enquiries
hello@hydrohertz.com

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