
FrostPulse™ is a primary cooling system engineered for the thermal loads legacy chillers were never built to handle — delivering up to 70% lower cooling energy under modern, volatile workloads.
AI infrastructure is scaling faster than the cooling systems built to support it. Operators are power-ready and thermally limited. The facility-level cooling layer hasn't materially changed in 30 years. FrostPulse™ is what comes next.
Three engineering principles that distinguish FrostPulse from every chiller that came before it.

Engineered for the spike-driven thermal profiles of AI workloads, batch-driven industrial processes, and scan-cycle medical imaging. Legacy chillers were sized for steady-state. FrostPulse was designed for what real infrastructure actually does.

Patented thermal architecture delivers IPLV 10–11 performance against an industry standard of 3 — the single largest line-item improvement in facility energy in a generation. Eligible for the 48E federal tax credit.

Compact footprint. Autonomous PLC control. Built for the unmanned, remote, and mission-critical sites where uptime is non-negotiable and maintenance windows are rare.
FrostPulse continuously matches cooling output to actual thermal demand — instead of cycling between full power and idle the way legacy systems do.
See the Full TechnologyReal-time thermal load detection across the facility — including the volatile spikes that drive legacy chillers to cycle.
PLC-driven control modulates cooling output to match the load profile precisely, eliminating energy-wasteful cycling.
Stable temperatures, lower energy use, and consistent performance — across data centers, imaging suites, industrial plants, and edge sites.
FrostPulse is engineered for five environments where cooling performance directly determines operational outcomes.
Our team works directly with operators, MEP firms, and infrastructure developers on technical evaluation and pilot deployment.
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