
Precision Liquid Cold Plate Manufacturing
One-stop manufacturing solutions for liquid cold plates and water cooling plates, delivering precision machining, reliable sealing, and high thermal performance—from prototype to mass production. Request a Quote Today.
- Prototype in Days
- Friction Stir & Laser Welding
- 100% Pressure Holding and Leak Testing


Cold Plate Liquid Cooling
A liquid cold plate(LCP) is a key thermal management component designed to remove heat from high-power and high-heat-density equipment. Compared with traditional air cooling, liquid cold plates provide higher heat transfer efficiency and more stable temperature control.
During operation, heat is transferred from the heat source to the cold plate surface. Coolant flows through internal machined channels, embedded tubes, or sealed channel structures and carries the heat away through the cooling loop. With 15+ years of experience, we optimize water cooling plate designs to improve temperature uniformity, cooling efficiency, and long-term leak-free performance.
Liquid Cold Plates of Different Materials
Liquid cold plates are typically manufactured from copper, aluminum, or stainless steel. A copper cold plate offers the best thermal performance for high-power cooling, while an aluminum cold plate provides an excellent balance of weight, cost, and manufacturability. Stainless steel is mainly selected for applications requiring high corrosion resistance.
| Property | Copper (C11000) | Aluminum (6061-T6) | Aluminum (6063) | Stainless Steel (304) |
|---|---|---|---|---|
| Thermal Conductivity (W/m·K) | ~390–400 | ~167 | ~200–210 | ~15–16 |
| Density (g/cm³) | 8.96 | 2.7 | 2.7 | 7.9 |
| Volumetric Heat Capacity (J/cm³·K) | 3.45 | 2.42 | 2.43 | 3.95 |
| Specific Heat Capacity (J/kg·K) | 385 | 897 | 900 | 500 |
| Thermal Diffusivity (mm²/s) | 117 | 64 | 80 | ~4 |
| Advantages | Best thermal conductivity | Lightweight & cost-effective | Lightweight & better heat transfer | Excellent corrosion resistance |
| Limitations | Heavy & expensive | Lower conductivity than copper | Lower strength than 6061 | Poor thermal conductivity |
| Typical Applications | High-power cooling | General cold plates | Lightweight cooling systems | Corrosive environments |

How Does a Liquid Cold Plate Work
A liquid cold plate transfers heat from electronic components to a circulating coolant through high-conductivity metal and internal flow channels. As the coolant flows through the sealed channels, it absorbs heat and carries it to an external heat exchanger, where the heat is dissipated before the cooled liquid recirculates. This closed-loop process provides efficient and stable thermal management for high-power electronic systems.
Cold Plates Liquid Cooling Solutions
At XY-GLOBAL, we provide various liquid cold plate solutions, including tube-embedded, brazed, friction stir welded (FSW), etc. Each solution can be customized based on your thermal performance, pressure drop, sealing, size, and installation requirements.
Applications of Liquid Cold Plates
A liquid cooling plate is suitable for high-power equipment where traditional air cooling is not enough. Common applications include:
- New energy vehicle battery packs, electric control systems, inverters, and charging modules
- Energy storage systems, power supplies, and power modules
- Servers, data centers, AI servers, and high-performance computing equipment
- Laser equipment, fiber lasers, and optical devices
- Medical equipment, inspection instruments, and laboratory equipment
- Industrial automation equipment, servo drives, and control modules
- Semiconductor equipment, communication equipment, and high-power electronic components
Thermal Simulation & CFD Modeling
At XY-GLOBAL, our engineering team provides thermal simulation and CFD modeling to evaluate temperature distribution, coolant flow, and pressure drop. This helps optimize flow-channel design, improve cooling performance, and reduce design risks before production.

Custom Liquid Cold Plates Design
XY-GLOBAL manufactures custom liquid cold plates based on your drawings. Dimensions, flow channels, ports, materials, finishes, and tolerances can all be customized for your application. Whether you have a completed design or an early-stage concept, our engineering team can offer free DFM to turn your design into a reliable, production-ready liquid cold plate.
Material Options
- Aluminum alloys
- Copper
- Stainless steel
- Other materials upon request
Flow Channel Options
- Meso-channel designs
- Parallel flow channels
- Embedded tube and manifold designs
Manufacturing Processes
- Precision CNC machining
- Friction stir welding (FSW)
- Laser welding

Why Choose XY-Global for Liquid Cooling Plates
Backed by 15+ years of cold plate engineering and manufacturing expertise, we specialize in manufacturing high-performance liquid cold plates (LCPs):
- Precision Manufacturing: 5-axis CNC machining, friction stir welding, and laser welding support complex flow channels & high-precision surfaces with machining accuracy up to 0.005 mm.
- Detailed Inspection & Testing: 2.5D and CMM inspection, combined with 100% pressure-hold and leak testing, ensure dimensional accuracy and product reliability.
- Prototype to Mass Production: Support rapid prototyping, small-batch validation, and stable volume production.
Liquid Cold Plate FAQs
1. What is a liquid cold plate?
A liquid cold plate transfers heat from electronic components to a circulating coolant through internal cooling channels. It is commonly used for high-power equipment requiring efficient and stable cooling.
2. What are the advantages of liquid cooling compared with air cooling?
Liquid cooling transfers heat more efficiently than air cooling. It can handle higher heat loads, reduce hot spots, save installation space, and operate with less noise.
3. What coolants are commonly used in liquid cooling systems?
Common coolants include deionized water, water-glycol mixtures, dielectric fluids, and special cooling oils. The right coolant depends on temperature, corrosion resistance, electrical insulation, and system requirements.
4. What information is required for a liquid cold plate quotation?
Please provide your 2D or 3D drawings, material, dimensions, coolant type, flow rate, operating pressure, heat load, inlet and outlet positions, surface treatment, and required quantity.
5. What is the typical lead time for a custom liquid cold plate?
Lead time depends on the design complexity, material, welding process, testing requirements, and order quantity. Prototypes generally require less time than mass-production orders.
6. How do I choose the right liquid cold plate?
The right design depends on heat load, heat source location, coolant flow rate, pressure drop, operating pressure, available space, and installation method. Our engineers can review these requirements before production.










