TMGcore develops single- and two-phase liquid immersion cooling systems for data centers, utilizing hydrocarbon dielectric fluids and engineered fluorocarbon-based liquids to enhance heat transfer efficiency. This technology addresses the rising thermal demands of high-performance computing, enabling improved operational stability and sustainability in data center environments.
Funding
Funding not disclosed
Founders
Product
Problem
As data center demands increase, temperatures within these facilities are reaching unprecedented levels, creating a need for more efficient cooling solutions. Traditional air cooling methods are proving insufficient for high-density computing environments, leading to potential performance bottlenecks and increased energy consumption.
Solution
Airedale by Modine provides liquid immersion cooling systems designed for both single-phase and two-phase applications to address the escalating thermal challenges in modern data centers. Single-phase systems utilize circulating hydrocarbon dielectric fluid, while two-phase systems employ engineered fluorocarbon-based liquids that boil at lower temperatures to enhance heat transfer. These systems offer precise temperature control, reduce the risk of leaks, and improve energy efficiency by directly cooling heat-generating components. Airedale's solutions support a hybrid approach to data center thermal management, integrating seamlessly with existing infrastructure and allowing for modular capacity expansion.
Target Audience
The primary target audience includes data centers, high-performance computing facilities, and IT professionals seeking advanced cooling solutions to manage increasing thermal loads and improve energy efficiency.
Features
- Coolant Distribution Units (CDUs) regulate fluid volumes, flow rates, and temperatures for precise control in liquid cooling systems.
- CDUs integrate sophisticated monitoring systems for early leak detection and immediate intervention.
- Compatibility with various coolants, including water/glycol mixtures.
- Designed for direct-to-chip and hybrid cooling environments, including Rear Door Heat Exchanger (RDHx) applications.
- Built-in redundant pumps, filtration, and intuitive controls for reliable performance.
- Flexible configuration options, including standard and custom models.
- Global and modular design for deployment in various project locations.
- Seamless integration with existing infrastructure, including in-rack server profiles and facility rooms.
- High capacity, with models supporting up to 1 MW.
- Enhanced filtration with extra-large filter bodies to reduce contamination risks.
- Front-accessible components for simplified maintenance.