Current Situation & Challenges
Cold plate liquid cooling transfers heat directly from high-power CPUs and GPUs through a closed coolant loop and is one of the principal liquid cooling architectures identified by the Open Compute Project. The CDU must maintain suitable coolant temperature, flow, and pressure between the facility and technology cooling loops. Flow imbalance, filter restriction, pressure variation, or degraded coolant quality can reduce heat-transfer performance and increase equipment risks. Continuous monitoring helps maintain reliable and efficient operation.
Process Overview
Explore BayMeters instruments for flow, coolant quality, level, pressure, and temperature measurement at critical monitoring points throughout the cold plate liquid cooling and circulation process.
Our Solutions
BayMeters provides integrated measurement solutions to support stable coolant circulation, efficient heat removal, and reliable operation across cold plate liquid cooling systems.
-
Process Monitoring
Reliable measurement throughout coolant distribution, filtration, circulation, cold plate cooling, and heat exchange processes.
Coverage: Flow · Level · Pressure · Temperature
-
Water Quality Analysis
Continuous analysis helps monitor coolant condition and identify changes that may contribute to corrosion, contamination, or reduced heat-transfer performance.
Coverage: Conductivity · pH · Turbidity
-
Process Optimization
Real-time data supports balanced coolant distribution, stable operating conditions, and efficient heat removal from high-density computing equipment.
Benefits: Stable Cooling · Balanced Flow · Improved Heat Transfer
-
Data Integration
Connect instruments with PLC, SCADA, and centralized monitoring systems.
Capabilities: Remote Monitoring · Data Recording · Alarm Management
Our Advantages
-
Complete Cooling-Loop Coverage
Measurement solutions for facility water, CDUs, pumps, filters, manifolds, cold plates, and coolant return lines.
-
Reliable Coolant Monitoring
Continuous measurement helps maintain stable coolant circulation and identify abnormal operating conditions.
-
Compact Instrument Design
Compact transmitters and sensors are suitable for CDUs, rack manifolds, and space-limited piping systems.
-
Application Support
Instrument selection and application guidance based on coolant properties, pipe size, pressure, temperature, and system requirements.