Advanced fluids for critical systems.
Engineered cooling, dielectric and emission-control fluids for AI infrastructure, electric mobility, energy storage and demanding industrial applications.
Start with the system.
Then select the fluid.
INNOCHILL is organized around how engineers actually specify fluids: by cooling architecture, electrical sensitivity, operating temperature and lifecycle requirements.
AI & Data Centers
Direct-to-chip, CDU, secondary-loop and single-phase immersion fluids for high-density computing.
Electric Mobility
Battery and low-conductivity thermal fluids for passenger, commercial and mining BEVs.
Explore electric mobility →Battery Energy Storage
Thermal management for battery racks, PCS, inverters and containerized ESS.
Explore energy storage →Mining & Extreme Environments
Cold-start, freeze protection and reliability for demanding off-highway applications.
Explore severe-duty fluids →DEF / AUS32
ISO 22241-focused supply for distributors, fleets, OEM/private-label and bulk programs.
Explore DEF / AUS32 →Cooling fluids for AI infrastructure.
Direct liquid cooling and immersion cooling require fundamentally different fluid properties. INNOCHILL separates these architectures from the first step of product selection.
Evidence before claims.
Technical pages are built around measurable properties, test methods, compatibility and selection logic — not generic marketing language.
Low Conductivity
Electrical conductivity, ion control, contamination and lifecycle monitoring.
02Dielectric Fluids
Breakdown voltage, resistivity, flash point, viscosity and stability.
03Material Compatibility
Metals, elastomers, polymers, seals and long-term system interaction.
04Extreme Temperature
Freeze protection, low-temperature viscosity, pumpability and startup.
Clear families.
Built for practical selection.
Established TF and CR models are organized into clear application families so engineers and procurement teams can move from system requirements to the right fluid more quickly.
Engineering knowledge for better decisions.
Technical guides, selection logic, standards and application notes help engineering and procurement teams evaluate fluids with clearer technical context.
What Is a Low-Conductivity Coolant?
Definitions, application differences and the variables that influence conductivity over time.
COMPARISONDirect-to-Chip vs Immersion Cooling
Why the two architectures require different fluid properties and qualification methods.
STANDARD GUIDEDEF / AUS32 and ISO 22241
Quality, contamination, storage and supply considerations for international buyers.
Built around real operating requirements.
Use cases are organized by the engineering problem rather than by promotional claims.
