Refroid Technologies Introduces the First Hybrid Load Bank for Direct Contact Liquid Cooling (DCLC) Data Centers

Refroid Technologies introduces the first hybrid load bank, representing a significant advancement in cooling solutions for data centers.

This innovative product is engineered to connect traditional air-cooled systems with Direct Contact Liquid Cooling (DCLC) technologies, offering data center operators a reliable means to evaluate and enhance their cooling setups.

Transforming Data Center Cooling with the Hybrid Load Bank

The launch of the first Hybrid Load Bank by Refroid Technologies is specifically tailored for DCLC data centers.

This pioneering development signifies a crucial advancement in cooling technology, enabling operators to thoroughly test and refine their liquid cooling systems prior to large-scale implementation.

The Importance of a Hybrid Load Bank in Liquid Cooling Systems

Conventional load banks were primarily designed for air-cooled systems, which restricted their effectiveness in replicating real-world workloads in Direct-to-Chip Liquid Cooling (DCLC) settings.

Acknowledging this limitation, Refroid Technologies has created an advanced hybrid load bank that can simultaneously simulate both liquid-side and airside loads.

Incorporating this hybrid load bank into testing procedures allows data center operators, original equipment manufacturers (OEMs), and system integrators to verify that liquid cooling systems operate at peak efficiency.

This facilitates a thorough evaluation of the cooling infrastructure at the rack level, ensuring accurate validation of heat loads transferred to the liquid cooling loop.

Key Features and Benefits of the Hybrid Load Bank

Refroid’s hybrid load bank presents numerous advantages compared to traditional load banks, including:

  1. Authentic IT Workload Simulation  

A significant advantage of this hybrid load bank is its capability to mimic real-world IT workloads.

This feature allows data centers to assess the performance of their cooling systems under genuine operating conditions, thereby avoiding unforeseen thermal inefficiencies.

  1. Dual Load Testing Functionality  

In contrast to standard load banks that primarily cater to air-cooled systems, this hybrid model accommodates both liquid and airside load simulations.

This is especially advantageous for data centers making the shift from air-cooled setups to more sophisticated liquid cooling solutions.

Operators can evaluate both systems concurrently, ensuring smooth integration and optimal performance.

  1. Performance Optimization Metrics  

The hybrid load bank allows operators to assess and enhance vital performance metrics, including:  

Power Usage Effectiveness (PUE): A critical measure for evaluating energy efficiency.  

Coolant Flow Rates: Vital for sustaining thermal stability.  

Thermal Efficiency: Ensures that liquid cooling is effectively utilized without overburdening the system.

Seamless Integration and Scalability

Refroid’s hybrid load bank is engineered for exceptional adaptability, accommodating various configurations tailored to the specific needs of data centers.

It can replace IT server racks to replicate aisle-level thermal loading, enabling data centers to test different liquid-to-air thermal load ratios. Commonly evaluated load distribution ratios include:

60:40 (Liquid-to-Air Load Ratio)

70:30 (Liquid-to-Air Load Ratio)

80:20 (Liquid-to-Air Load Ratio)

This versatility allows data centers to refine their cooling strategies for diverse server environments, thereby enhancing energy efficiency and reliability.

Comprehensive Performance Analysis

In addition to its adaptability, the hybrid load bank facilitates thorough performance analysis. By assessing heat removal efficiency across various workload scenarios, data center operators can:

Detect potential cooling inefficiencies prior to the installation of live IT hardware.

Mitigate operational risks linked to insufficient cooling systems.

Diminish unexpected failures, ultimately bolstering overall system stability.

This proactive strategy aids in preventing costly mistakes and guarantees that the data center functions at optimal performance from the beginning.

Compliance with Industry Standards

As liquid cooling technology advances, adherence to emerging thermal management standards becomes increasingly important.

Refroid’s hybrid load bank is crafted to comply with these regulatory requirements, enabling data centers to stay ahead of industry developments and sustain competitive operational efficiency.

By adopting this cutting-edge solution, data centers can ensure compliance with new cooling regulations while safeguarding their infrastructure for the future.

Innovative Cooling Solutions for Future-Ready Data Centers

“With this product, we are tackling a significant issue in the liquid cooling sector: effective pre-deployment testing,” stated Satya Bhavaraju, CEO of Refroid Technologies. 

image about data center machine

“By simultaneously simulating thermal loads on both the liquid and air sides, we enable data centers to refine their cooling strategies, mitigate risks, and enhance energy efficiency.” 

Based in Hyderabad, India, Refroid Technologies is at the forefront of developing cutting-edge cooling solutions, focusing on Direct Contact Liquid Cooling (DCLC) and Liquid Immersion Cooling. 

The company’s advancements aim to improve energy efficiency, achieving a Power Usage Effectiveness (PUE) of under 1.05.

Expert Editorial Comment  

As data centers increasingly embrace high-density computing tasks, the demand for effective and precise testing solutions becomes critical.

Refroid Technologies has introduced the first Hybrid Load Bank, offering a comprehensive, scalable, and dependable tool for optimizing liquid cooling systems.

This hybrid load bank exemplifies Refroid’s dedication to innovation, energy efficiency, and preparing data centers for the future.

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