FRDGE™
Thermal storage that connects to the secondary loop. Absorbs peak compute heat. Releases stored cooling rapidly. Closed-loop, air-cooled, up to 90% water reduction. Modular deployments from 1 MW to 100 MW+.
Traditionally, scaling data center performance has meant accepting a massive spike in energy and water usage. Wafr can optimize Power Usage Effectiveness (PUE), eliminate millions of gallons of water waste, and confidently meet strict ESG compliance standards: all without sacrificing a single cycle of processing power.
Wafr is our small contribution to a big responsibility, the world we hand over to the next generations.
Cooling is now the binding constraint for high-density compute. Existing systems cannot scale without exceeding energy and water limits. Wafr addresses the constraint with proprietary closed-loop cooling built specifically for AI workloads.
Three products. One thermal operating system. Wafr installs as a thermal battery, orchestrates the facility loop with AI, and produces auditable proof, making cooling predictable, optimized, and continuously verifiable.
Thermal storage that connects to the secondary loop. Absorbs peak compute heat. Releases stored cooling rapidly. Closed-loop, air-cooled, up to 90% water reduction. Modular deployments from 1 MW to 100 MW+.
Real-time ML dispatch engine that predicts load, price, ambient windows, and water stress. Makes every BTU a decision. Automates charge / discharge / rejection / standby. Integrates with BMS, EMS, SCADA.
Measures, reports, and verifies every kilowatt-hour saved, drop of water conserved, and gram of CO₂ avoided. Instrumentation-grade MRV data, the foundational requirement for carbon credit issuance.
The thermal equivalent of a smart grid: storing cooling in Megawatt capacities, dispatching it, and optimizing performance across the entire facility.
FRDGE is not a component. It is a complete thermal operating system for AI facilities, designed to store, buffer, and dispatch cooling capacity on demand, reduce peak electrical stress, and enable a phenomenal reduction in water use through closed-loop, air-cooled heat rejection.
Real-time device management, predictive analytics, and automated control across every pump, sensor, valve, and thermal state.
Thermint is the thermal intelligence that turns FRDGE hardware into a dynamic, self-optimizing asset. It forecasts load, sequences charge and discharge, shapes demand, and maintains stability across the variable workloads of modern AI, delivering measurable economics that improve over time.
Every kilowatt-hour, every cubic metre, every gram of CO₂: measured and verifiable.
TerraQuant is the independent measurement layer that makes Wafr's savings bankable. It applies a boundary-defined energy accounting protocol aligned to customer acceptance, producing signed M&V reports for operators, regulators, PPA counterparties, and infrastructure underwriters, with results released publicly once verified by third-party engineers.
Every innovation legally protected.
Wafr, FRDGE, Thermint, TerraQuant core innovations covered from day one.
Active pipeline of innovations across thermal storage and dispatch systems.
Wafr, FRDGE, Thermint, TerraQuant brand identity legally protected across all products.
From the thermal bottleneck to the platform that breaks through. Watch how FRDGE stores cooling, Thermint orchestrates dispatch with AI, and TerraQuant verifies every kilowatt-hour, drop, and gram of CO2.
A battery, but for cold.
At night, when grid power is cheap, FRDGE runs the chiller to freeze a special energy-storing liquid, banking cold the way a battery banks charge. During the expensive afternoon peak, that stored cold melts and soaks up the heat coming off the AI chips, so the power-hungry chiller can sit idle.
It skips the expensive hours.
Thermint watches the live grid price and the chips' heat, then decides exactly when to freeze and when to spend the stored cold. So instead of running hardest during the costly afternoon peak (like a normal facility), your cooling load is shifted onto cheap night hours, and the peak gets shaved flat.
Proof you can take to the bank.
TerraQuant measures every kilowatt-hour and litre,
benchmarks the result against a conventional chiller baseline,
and converts the verified difference into auditable, bankable data.
Cold is capital, deploy on command.
FRDGE stores cold by freezing its energy-storing liquid at off-peak rates. Thermint decides when to spend it, keeping the chiller idle at peak. TerraQuant verifies the result: reduction in cooling power and water consumption, and facilitates carbon credits. One continuous loop.
Wafr is complementary to chip-level liquid cooling and disruptive to traditional chiller stacks. We integrate downstream of rack cooling and replace the most carbon- and water-intensive parts of the facility loop.
Cap peak thermal load. Defer chiller CapEx. Meet aggressive water and carbon commitments at campus scale.
Reduces cooling energy and water use across the facility, gives tenants verified efficiency reports, and enables demand-response through stored cold.
Design chiller-light campuses. Compress permitting on water and refrigerants. Lower delivered $/MW.
Co-deploy behind-the-meter storage and demand-response. Turn data-center campuses into dispatchable grid assets.
Purpose-built for sovereign infrastructure. Deploy AI capacity within national water and grid envelopes.
Underwrite verified thermal savings as a cash-flow stream. TerraQuant M&V makes savings bankable.
De-risk private AI clusters. Hit internal ESG targets without compromising compute ambitions.
Small-footprint thermal buffering for distributed AI nodes where water and grid headroom are thin.
Wafr is built by a team with decades of combined experience across thermal system design, closed-loop cooling, renewable energy, and large-scale infrastructure execution. We focus on systems that must perform under real-world constraints, where reliability, verification, and long-term operability matter more than theoretical optimization.
Technology entrepreneur with over 17 years of leadership in renewable energy and cooling. Pioneer in sustainability-driven innovation, played a pivotal role in developing some of the world's largest solar power plants. Mechanical Engineering degree and MBA in Sustainability from UBC Sauder.
Visionary entrepreneur and academic with a career of transformative leadership at high-growth technology companies. Faculty at UBC Sauder (entrepreneurship, sustainability, innovation). Executive Director of CDL Vancouver. Named one of Business in Vancouver's "Top 40 Under 40."
Experienced operations leader with a track record of scaling infrastructure and technology businesses from concept to execution. Bridges strategy and on-the-ground delivery across complex, multi-stakeholder environments.
20+ years leading data centre design, construction, and relocation programs for enterprise clients in highly regulated industries. Former electrical and mechanical contractor, bringing hands-on MEP expertise to mission-critical infrastructure delivery. Track record spanning campus operations, cloud migrations, and complex multi-stakeholder builds across the data centre and enterprise IT sectors.
40 years of experience in renewable energy and cooling technologies, supported by a masters degree in economics. Leads Wafr's India operations and supply-chain relationships, bringing deep field expertise across utility-scale deployments.
Strategic investment and infrastructure leader with deep venture-capital experience across U.S. and Canadian technology, energy, and infrastructure markets. Blends financial acumen with operational insight across large-scale energy developments.
MEng Systems Science, University of Ottawa. UI/UX & interaction design across SaaS, data platforms, and digital infrastructure. Leads the product and platform layer for Thermint and TerraQuant.
Dr. Donya Mousavi, PhD, is a Heat Transfer Scientist specializing in computational fluid dynamics (CFD) and finite element analysis (FEA) for complex thermal and fluid systems. She holds a PhD from Sharif University of Technology and conducted research at the University of British Columbia focused on heat transfer, backed by over a decade of hands-on engineering experience.
Iryna is an operations builder with a track record of standing up the systems high-growth companies run on, CRM platforms, IT rollouts, and automation tooling. Her career spans universities, recruiting, and startups, with a consistent throughline: grow the operational backbone that lets ambitious teams move fast and scale.
Co-Founder & CEO, Longhouse Capital Partners. Former EVP, Squamish Nation Development Corporation. Executive roles at AT&T, TELUS, and INVIDI Technologies. MBA, University of Cambridge.
Whether you are exploring AI data center strategy, advanced cooling solutions, energy optimization, or infrastructure modernization, we would be glad to connect.
Tell us a little about your project, goals, or challenge. Our team will review your inquiry and respond promptly.
We work with enterprises, utilities, technology partners, and infrastructure investors who are shaping the future of AI-ready facilities.