Heat exchangers

Next Generation Heat Exchangers

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key features

Advanced Heat Exchanger System Features

Phasic heat exchangers deliver superior thermal performance across liquid-to-liquid, air-to-liquid, and two-phase configurations. Designed for the most demanding environments -- from high-density data centers to defense platforms -- each unit is optimized for its specific operating conditions, outperforming conventional plate and shell-and-tube designs.

Heat Exchangers Advanced Heat Transfer

Up to 3x higher heat transfer coefficients compared to conventional designs, enabling higher cooling density in compact form factors.

Assured Quality Manufactured in US

Manufactured domestically with stringent quality control, ensuring robust performance and reliability in demanding environments while supporting local innovation

Optimized for Every Condition

Each heat exchanger is designed for its specific fluid, temperature, and pressure conditions -- delivering performance that general-purpose units cannot achieve.

Highly reduced Operational Costs

Lower pressure drop and higher thermal efficiency reduce pumping power, energy consumption, and total cost of ownership across the system lifetime.

Customizable solutions for Diverse Applications

From compact cold plates for high-density server racks to large-format exchangers for industrial waste heat recovery -- tailored to your exact requirements.

Continuous Innovation for Evolving Markets

Every generation of Phasic heat exchangers pushes the boundaries of thermal performance, incorporating the latest advances in geometry optimization and manufacturing.

heat EXCHANGER for industries

Heat Exchanger applications across industries

| Low-Grade Heat Recovery |
01   |   05

Enhanced Performance for Data Centers

| 01 |
General Information

Phasic heat exchangers are deployed in data center cooling infrastructure -- including coolant distribution units (CDUs), active rear-door heat exchangers (RDHx), and in-row cooling systems. Our liquid-to-liquid, air-to-liquid, and two-phase designs maximize heat rejection while minimizing energy consumption and physical footprint.

| 02 |
Product Features
  • Up to 3x higher heat transfer density versus conventional plate heat exchangers
  • Lower pressure drop reduces pumping energy and operating costs
  • Compact form factors fit space-constrained data center environments
| 03 |
Technical Information
  • Optimized for low-pressure-drop, high-efficiency applications
  • Available in copper and copper-alloy designs for maximum conductivity
  • Custom geometries for vertical or horizontal mounting in IT racks
| Energy Generation |
02  |   05

National Defense and Autonomy

| 01 |
General Information

Phasic’s compact and high-performance exchangers reduce weight and footprint in mobile or airborne cooling systems. Designed for thermal signature management and component longevity in harsh environments.

| 02 |
Product Features
  • Improves cooling of radar, avionics, and power electronics
  • Reduces vehicle IR signatures via optimized thermal pathways
  • Extends mission duration through efficient heat rejection
| 03 |
Technical Information
  • Lightweight, corrosion-resistant alloys
  • High heat flux with low ΔP for vehicle cooling loops
  • Configurable to fit UAVs, UGVs, or wearable platforms
| Maximum Efficiency for low-grade heat |
03   |   05

Geothermal Power Optimization

| 01 |
General Information

Phasic heat exchangers provide high-efficiency thermal transfer for geothermal loops, improving energy yield and minimizing scaling or corrosion. Suitable for binary and direct-use systems.

| 02 |
Product Features
  • Maximizes thermal extraction from geothermal brine
  • Reduces downtime from fouling or mineral deposits
  • Enables longer well life through better heat exchange control
| 03 |
Technical Information
  • Titanium or coated copper options for corrosive brines
  • Heat flux densities up to 500 kW/m²
  • Customizable flow geometry for two-phase operation
| Oil & Gas |
04   |   05

Efficient Solutions for Industrial Manufacturing

| 01 |
General Information

Our exchangers deliver precise temperature control for sensitive manufacturing processes and are optimized for reliability in high-duty cycles. Built for environments where uptime is critical.

| 02 |
Product Features
  • Improves product quality and thermal stability
  • Extends asset life by managing thermal fatigue
  • Reduces unplanned maintenance shutdowns
| 03 |
Technical Information
  • Built to handle 24/7, 365 operation
  • High-pressure and high-temp rated to 15 bar / 300°C
  • Custom-fitted for process integration or skid-based systems
Performance

Redefining Thermal Efficiency

Heat Exchangers (HX) are designed to deliver exceptional performance across diverse industrial applications, significantly enhancing thermal efficiency and operational reliability. Here are some of the key performance metrics:

Thermal Effectiveness

| 01 |

0.75 - 0.85

Reduced Envelope Dimensions

| 02 |

-

50%

Adaptive Turn-Down (ATD)

| 03 |

22%

Output Scalability Framework

| 04 |

kW – mW

Flow-Mode Versatility

| 05 |

gas–gas • gas–liquid • liquid–liquid

Target Sectors

| 06 |

Data Centers • Defense • Geothermal • Chemical

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