Specially selected high-performance coolers configured for the regional Massachusetts edge deployments, telecom integration hubs, and academic laboratory mainframes.
As AI training models, molecular dynamics simulations, and high-frequency trading algorithms run around the clock, server racks are drawing unprecedented power. Boston’s data centers and research networks face the distinct challenge of running high-performance operations while meeting strict regional municipal environmental criteria, specifically aiming to lower power usage effectiveness (PUE).
To support these deployments, thermal dissipation components must evolve. The transition from legacy active air coolers to high-thermal capacity, multi-heat-pipe setups, and customizable liquid cooling blocks is essential. As specialized exporters and manufacturers, we deliver the exact cooling solutions tailored for localized constraints—maximizing heat transfer capabilities within cramped 1U and 2U configurations, resisting galvanic corrosion, and maintaining structural integrity over decades of continuous operation.
Worldwide, the global data center thermal management market is projected to witness exponential growth due to the thermal dynamics of modern chips. CPUs now routinely push past 350W TDP, while enterprise GPUs reach 700W+. Global system integrators are constantly balancing cooling efficiency against mechanical complexity.
Our role as an international manufacturer and exporter is to bridge high-volume, precision production with precise local execution. Our server radiators are engineered using high-purity C1100 oxygen-free copper bases paired with high-density aluminum fins. Utilizing advanced vacuum reflow soldering techniques, we eliminate air gaps between the heat pipes and fins, achieving thermal resistances that are among the lowest in the industry.
For the Boston and broader New England markets, localized constraints are vital:
Municipal bylaws in urban Boston restrict industrial noise. Our dual ball-bearing fans and optimized fin geometry minimize turbulent air noise while maximizing static pressure.
Massachusetts' clean energy plans encourage low PUE. Efficient cooling blocks reduce auxiliary power needed by server fans, dropping total datacenter consumption.
Academic labs and medical mainframes cannot tolerate downtime. Our 100% burn-in tests and hydraulic bearing systems assure long-term uptime.
Velmix Technology Co., Ltd. is a professional DDR5 memory and high-performance server hardware component manufacturer based in Shenzhen, China. In tandem with our specialized high-performance DRAM memory solutions, our engineering division researches, designs, and manufactures advanced server radiators, heat pipes, and water-cooling blocks. Since our establishment in 2017, Velmix has been committed to delivering reliable, high-speed, and thermally optimized solutions for consumer electronics, industrial applications, gaming systems, servers, and embedded computing.
Operating from a modern manufacturing facility covering 368㎡, we combine advanced production technologies with strict quality management to ensure every cooling module and memory component meets international performance and reliability standards. Our experienced engineering team continuously develops innovative DDR5 memory and custom thermal solutions to meet the evolving demands of AI computing, edge devices, cloud infrastructure, and next-generation computing platforms.
Today, Velmix serves customers in more than 40 countries and regions, offering flexible OEM and ODM manufacturing services for global brands, distributors, system integrators, and industrial equipment manufacturers. By focusing on product consistency, fast delivery, and technical innovation, we have built long-term partnerships across Europe, North America, Southeast Asia, and the Middle East.
| Item | Information |
|---|---|
| Company Name | Velmix Technology Co., Ltd. |
| Established | 2017 |
| Facility Area | 368㎡ |
| Annual Export Revenue | USD 18.6 Million |
| Export Experience | 8 Years |
| Industry Experience | 15 Years |
| Quality Control | 100% Full Inspection Before Shipment |
| Product Inspection Methods | Signal Integrity Test, Burn-in Test, Compatibility Test, Functional Test & Random Sampling |
| QC Staff | 56 Employees |
| Business Type | Manufacturer & Exporter |
| Main Markets | North America, Europe, Southeast Asia, Middle East & South America |
| Supply Chain Partners | 986+ |
| Main Customer Types | Brand Owners, OEM Manufacturers, System Integrators, Distributors & Wholesalers |
| R&D Capability | Independent Product Design, PCB Development & Firmware Optimization |
| Customization Options | OEM, ODM, Private Label, Customized Capacity, Heat Spreader, PCB Color & Packaging |
| New Products Launched Last Year | 138 Models |
| R&D Engineers | 84 Engineers |
Our design standards translate directly into measurable efficiency boosts for systems deployed across Massachusetts.
In the context of the evolving server infrastructure in Boston, thermal engineering is moving through distinct architectural phases. With processing nodes shrinking and packaging technologies like 3D chiplets bringing CPU and memory elements closer, localized heat flux has skyrocketed.
To address this thermal challenge, Velmix is actively advancing its technical roadmap across three distinct domains:
Engineered to support Intel Xeon (LGA4677, LGA4189) and AMD EPYC (SP3, SP6) server architectures. Built for continuous operation in mission-critical Boston datacenters.
New England's climate experiences substantial seasonal variance—ranging from sub-freezing winters to humid summers. Datacenters in urban Boston rely on sophisticated HVAC and air-economizer systems. To maximize free-cooling hours, server components must handle wide-ranging air input temperatures.
Our server radiators support ASHRAE A1 to A4 design criteria, operating efficiently even when the intake air temperature fluctuates. This flexibility is critical for data centers utilizing hot/cold aisle containment systems.
Furthermore, we recognize the stringent requirements of system integrators in Massachusetts. Compliance standards such as UL 62368-1 for safety and FCC Part 15 for electromagnetic compatibility are essential. Every fan and electrical connector integrated into our thermal solutions meets these safety benchmarks, allowing direct installation in regional government and healthcare platforms.
Exporting critical infrastructure elements to Boston requires reliable logistics and customs compliance. Over 8 years of export operations, Velmix has established robust relationships with global cargo networks. We coordinate ocean shipments to the Port of Boston and air freight through Boston Logan International Airport (BOS).
All export shipments are packed using anti-static, vibration-damping materials. This guarantees that delicate copper fins, heat pipes, and integrated components arrive in perfect condition. We handle customs filings, import documentation, and localized customs clearance procedures to make delivery straightforward for New England businesses.
Get answers to technical queries regarding server thermal management systems and importing custom radiators to Boston.
For servers running intensive workloads, oxygen-free copper (C1100) is preferred for the baseplate and heat pipes due to its high thermal conductivity (approx. 401 W/m·K). Aluminum fins (AL6063) are used to balance cost and weight, maximizing the dissipation area without putting undue strain on the motherboard.
Every liquid block undergoes a helium leakage test and is subjected to high-pressure tests up to 0.4 MPa. We use anti-corrosion nickel plating on the copper base plates and source high-grade synthetic rubbers for the O-ring seals to prevent degradation over multi-year deployment cycles.
Yes. Velmix provides full OEM/ODM services. Our team of 84 R&D engineers can design custom bracket mounts, alter heat pipe runs, change fin heights, or build custom spacing solutions for unique 1U, 2U, 4U, or blade layouts based on your CAD specifications.
Standard production runs require 15 to 25 days depending on the customization scope. Shipping to Boston via air freight takes approximately 7 to 10 days, while ocean shipping to the Port of Boston takes roughly 30 to 35 days, including customs processing.
Our components are manufactured using RoHS-compliant materials to satisfy environmental regulations. For acoustics, we utilize high-precision hydraulic and dual ball-bearing fans with pulse-width modulation (PWM) control, allowing systems to minimize fan speeds and meet local noise regulations.
Partner with Velmix for enterprise-grade server cooling solutions. Whether you need off-the-shelf heatsinks or bespoke liquid cooling blocks, our engineering team is here to support your goals.
Contact Our Engineering Team Today