Custom Service

Premier Global GPU Heatsink Manufacturer

2KW

200W/c㎡

Full-Service Custom Manufacturing

Our Strategic Roadmap: 5 Critical Stages to One-stop thermal management solutions provider

How do we Accelerate your brand success?

Step1: Customer Requirement Provision

The foundation of a high-performance thermal solution begins with a precise understanding of the technical environment. To ensure the accuracy of our design, we require a comprehensive set of parameters from the client.

Step2: Scheme & Design Proposal

Once the requirements are established, our engineering team initiates the design phase using professional software.

Step3: Thermal Simulation

To bridge the gap between theory and reality, we utilize advanced thermal simulation software to perform virtual stress tests on the design.

Step4: Prototype Making

After the simulation results meet the design criteria, we move to the physical prototyping stage for real-world validation.

Step5: Mass Production & Delivery

Upon successful validation of the prototype, we scale up to full-scale manufacturing while maintaining strict quality control.

Discover the Key Benefits Behind Our Service

FAST

AUTHENTIC

24/7 SUPPORT

TRUSTED

HIGH IMPACT

SECURE

COST EFFECTIVE

Begin Now and Transform Your Results

Take the next step and unlock the full potential of our service. Start today and see the difference!

Why Our

Thermal Solutions

Expect creative solutions, clear communication, and results tailored to your vision when working with us.

Can It Handle Extreme GPU Heat Loads?

Our MLHP-based thermal architecture supports up to 2KW processor heat load and 200W/cm² heat flux, delivering stable thermal performance even under sustained high-power operation. Designed to meet the cooling demands of next-generation GPUs and high-performance processors.

Will It Support Next-Generation GPU Power Density?

Derived from aerospace thermal control technology, our MLHP solution is engineered for extreme heat flux environments and scalable power densities, making it well suited for future GPU and AI accelerator platforms.

Can It Integrate Into Existing Hardware Designs?

Our cooling solutions are designed to fit within existing mechanical architectures, allowing seamless integration into current GPU and server platforms without major structural redesign. This significantly reduces development cycles and deployment time.

Is the Technology Reliable for Long-Term Operation?

Our solutions are designed for high reliability and long-term stability, ensuring consistent performance under demanding thermal conditions.

Can the Solution Be Produced at Scale?

As a direct manufacturer, we provide stable mass production capability, ensuring consistent quality, reliable supply, and scalable deployment for large-scale hardware platforms.

Does It Deliver Performance Without Excess System Cost?

By enabling efficient heat transfer and optimized thermal performance, our solutions help improve system efficiency while maintaining practical manufacturing costs.