Spectroscopy-Powered Monitoring for Liquid-Cooled Infrastructure

CoolView uses advanced optical spectroscopy to detect changes in coolant chemistry — measuring corrosion inhibitor levels and metal oxide buildup in real-time, with no manual sampling required.

How it Works

Spectroscopy,
Simplified.

Analyze with Light

CoolView uses light-based spectroscopy to analyze coolant in real time — no manual sampling required.

Detect Key Compounds

It tracks the concentration of corrosion inhibitors and detects metal oxides as they begin to rise.

Know When to Act

You get alerts before performance issues start — not after.

Shared Core Technology

One Platform, Two Powerful Form Factors

Both the Handheld and In-Line CoolView Spectrometers are built on the same proven spectral sensing platform — designed for accuracy, reliability, and compatibility across liquid-cooled systems.

Spectroscopy-based chemical analysis

Both devices use advanced light-based spectroscopy to detect chemical changes in the coolant — no dyes, probes, or chemical kits needed.

Water-glycol coolants (various chemistries)

Supports a wide range of coolant chemistries commonly used in high-performance environments.

Open- and Closed-Loop Systems

Compatible with both system types — from facility-level cooling loops to isolated rack setups.

Centered Data Center Section

Engineered
for Real-World
Data Centers

CoolView Spectrometers are built to integrate seamlessly with the cooling systems used in modern AI, HPC, and hyperscale data centers. Whether you're running routine inspections or 24/7 inline monitoring, CoolView fits your workflow.

Water-glycol coolants (various chemistries)

Supports a wide range of coolant chemistries commonly used in high-performance environments.

Open- and Closed-Loop Systems

Compatible with both system types — from facility-level cooling loops to isolated rack setups.

Which One’s Right for You?

Metric

Manual Testing

Fluid Sensors

CoolView Spectrometers

Real-time

Inhibitor detection

Metal oxide detection

Maintenance-free

Accuracy