High-Performance AI Thermal Core

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Cryomax Solutions

A Strategic Thermal Management Blueprint Beyond the Limits of Air Cooling

Precision Radiators Engineered for High-Density AI Racks. With individual AI server rack thermal loads rising exponentially, heat rejection performance is critical. Cryomax delivers advanced liquid-to-air radiator technology engineered for high heat-flux capacity and maximum thermal efficiency, enabling data centers to scale power density reliably and sustainably.

The Computing Power Breakthrough Is Triggering a Thermal Crisis: Air Cooling Has Reached Its Physical Limits

GPU Power Evolution and the Turning Point in Thermal Management Technology

GPU power consumption has officially surpassed 1,000W. Conventional thermal management relying solely on fans and air is no longer sufficient. The years 2024–2025 represent a transition period in which air cooling and liquid cooling coexist, followed by the widespread adoption of direct liquid cooling.

Four Evolving Liquid Cooling Architectures for Server Thermal Management

A Comprehensive Deployment Strategy for Diverse Data Center Environments
~30 kW / Rack
Rear Door Heat Exchanger (RDHx)

Seamlessly integrates into existing data center environments. Offers effective heat dissipation up to 30 kW per rack while retaining standard server airflow and requiring minimal facility overhaul.

60–80 kW / Rack
Sidecar Liquid-to-Air Cooling

A high-performance hybrid solution for mid-to-high density racks. Delivers powerful liquid cooling capabilities without requiring major data center facility modifications.

Up to 250 kW / Rack
In-Rack CDU (Cooling Distribution Unit)

An independent, closed-loop cooling solution built for extreme heat densities. Enables precise thermal management for individual high-power racks without demanding facility-wide liquid infrastructure.

Up to 1.8 MW / System
In-Row CDU

Delivers row-wide liquid distribution with ultra-high capacity, maximum flexibility, and modular scalability for modern data centers.

Deployment Decision Matrix: Balancing CAPEX and Cooling Performance

The Optimal Approach to Evaluating Data Center Retrofit Costs and Thermal Performance

Performance Driven by Data: The Core L2A Fluid Dynamics Behind a PUE of 1.07

PUE 1.07 TARGET PUE
1. Chiller-less Architecture

A chiller-free operating configuration significantly reduces infrastructure power consumption.

2. High-Efficiency Flow Path Architecture

Available in single- or multi-loop designs to optimize fluid distribution and maximize heat exchange efficiency based on rack power density.

3. Coolant Quality

The secondary loop uses deionized water with corrosion inhibitors and antimicrobial additives to ensure dielectric compatibility.

Vertically Integrated: From Joint Development to Mass Manufacturing

Core Advantage: Flexible Design & Custom Engineering
High Customizability

Tailored solutions to meet the diverse requirements of AI servers and a wide range of application scenarios.

In-house Tooling

Complete in-house tooling capabilities ensure greater production control and manufacturing flexibility.

Rapid Prototyping

Accelerating R&D and prototyping to perfectly match your rapid development iterations.

Meeting the Data Center Industry's Most Rigorous Validation Standards

100% Reliability Assurance
Leak Tightness Testing
Eliminates even the smallest leaks
Pressure Cycling Test
Ensures long-term pressure resistance
Corrosion Resistance Testing
Extends material service life
Cleanliness Control
Keeps the system free of contaminants

Sales Contact Information

Contact Information
Sales Manager FENG-MING HSU
Tel: 886-4-8967892 (ext. 166)