Application

If you order your service from ALVC, it will be carefully implemented by ALVC's professional team at ALVC's facilities to match your customization

Liquid Cooling Plate for  Rail Transit Applications

Liquid Cooling Plate for Rail Transit Applications

Our liquid cooling plates for rail transit are professionally engineered to meet the strict reliability and durability requirements of rail transit systems, tailored for key components in high-speed trains, urban rail vehicles, and light rail systems. They provide stable, efficient thermal management to ensure the safe and continuous operation of rail transit equipment in complex operating environments.

 

The liquid cooling plate adopts advanced, rail-grade manufacturing processes: first, CNC precision machining of flow channels to ensure uniform flow distribution, optimal heat transfer efficiency, and perfect fit with rail component installation dimensions; then, copper tube press-fitting into the machined flow channels to form a robust, leak-proof integrated structure. This combination of processes ensures excellent thermal conductivity, strong structural stability, and long-term reliability, perfectly matching the harsh operating conditions of rail transit.

 

With superior thermal conductivity and stable temperature control, our rail transit liquid cooling plates efficiently dissipate concentrated heat generated by key rail components, including traction converters, IGBT power modules, traction motors, and on-board power supplies during long-term, high-load operation. They effectively prevent component overheating, reduce equipment failure rates, extend service life, and ensure the safe, smooth operation of rail transit vehicles.


Widely applied in high-speed trains, subway trains, light rail, and intercity rail vehicles, our liquid cooling plates support customized dimensions, flow channel layouts, and interface designs to match the specific installation and thermal management needs of different rail transit models. They are designed to withstand vibration, impact, wide temperature differences, and high humidity—adapting to the complex outdoor and on-board operating environments of rail transit.

Liquid Cooling Plate for  Laser Equipment Applications

Liquid Cooling Plate for Laser Equipment Applications

Our liquid cooling plates for laser equipment are professionally engineered to address the high-heat challenges of laser systems, tailored for various laser applications that require stable, precise thermal control. They provide reliable thermal management for core laser components, ensuring consistent performance, high precision, and long service life of laser equipment in industrial, medical, and scientific research scenarios.

 

The liquid cooling plate adopts advanced, high-precision manufacturing processes: first, CNC precision machining of flow channels to ensure uniform flow distribution and optimal heat transfer efficiency; then, tunnel furnace brazing to form a seamless, leak-proof integrated structure. This combination of processes ensures excellent structural stability, strong sealing performance, and uniform temperature control, perfectly matching the strict thermal management requirements of laser equipment.

 

With superior thermal conductivity and precise temperature control (cell-to-cell temperature difference ≤2°C), our laser equipment liquid cooling plates efficiently dissipate concentrated heat generated by laser diodes, laser resonators, pump modules, and other core components during high-power, long-term operation. They effectively prevent component overheating, avoid laser power attenuation and wavelength drift, and ensure the stability and precision of laser output.


Widely applied in various laser equipment, including fiber lasers, CO2 lasers, solid-state lasers, laser cutting machines, laser welding machines, and medical laser devices, our liquid cooling plates support customized dimensions, flow channel designs, and interface layouts to match the specific installation and thermal management needs of different laser systems.

 

Liquid Cooling Plate for  Military & Defense Applications

Liquid Cooling Plate for Military & Defense Applications

Our liquid cooling plates for military and defense are engineered to meet the extreme performance and reliability requirements of military electronic equipment, designed for harsh battlefield environments and critical defense systems. They provide stable, efficient thermal management for core military components, ensuring consistent operation even under extreme temperature, vibration, and shock conditions.

 

The liquid cooling plate adopts a precision, military-grade manufacturing process: first, CNC precision machining of flow channels on the base plate, then embedding stainless steel tubes into the machined flow channels, and finally fixing them with epoxy resin to form a fully integrated, leak-proof cooling structure. This process combines high structural stability, excellent corrosion resistance, and reliable sealing performance, perfectly adapting to the rigorous demands of military and defense applications.

 

With superior thermal conductivity and uniform temperature control, our military-grade liquid cooling plates efficiently dissipate heat from high-power military electronic components, including radar systems, communication equipment, military power supplies, missile guidance systems, and armored vehicle electronic modules. They effectively prevent component overheating, ensure operational stability, and extend the service life of critical military equipment—even in extreme environments such as high-altitude, high-humidity, and salt-fog areas.

 

ALVC Application for Industrial Drive Power Supply

ALVC Application for Industrial Drive Power Supply

Our liquid-cooling plates for industrial drive power supplies are engineered to address the high-heat challenges of industrial frequency converters, servo drives, and power supply modules. Designed for harsh industrial environments and long-term continuous operation, they deliver reliable, efficient thermal management to ensure stable performance of industrial drive systems.

 

The liquid cooling plate employs a precision manufacturing process: CNC machining of flow channels in the base plate, followed by friction stir welding (FSW) of the upper cover. This advanced process ensures seamless sealing, high structural strength, and uniform flow distribution—effectively eliminating leaks, reducing flow resistance, and maximizing heat transfer efficiency.

 

With excellent thermal conductivity and temperature uniformity, our liquid cooling plates efficiently dissipate the concentrated heat generated by industrial drive power components during high-load operation. They stabilize the working temperature of core parts, prevent overheating damage, extend the service life of drive power supplies, and reduce maintenance costs for industrial production lines.

 

Liquid Cooling Plate for  Wind Power Converter & IGBT Power Module

Liquid Cooling Plate for Wind Power Converter & IGBT Power Module

Our liquid cooling plates are specially designed for wind power converters and high-power IGBT power modules, widely applied in onshore and offshore wind turbine energy storage and power conversion systems.

 

Adopting aluminum plate embedded copper tube structure and manufactured by pressed, the cold plate combines the structural advantage of aluminum alloy and the high thermal conductivity of copper tube. It achieves efficient heat dissipation, low flow resistance and balanced temperature uniformity, perfectly solving the high heat load of high-power IGBT modules and wind power converters under long-term full-load operation.


With excellent pressure resistance, reliable sealing performance and strong environmental adaptability, it can stably operate in harsh conditions such as high humidity, salt fog and wide temperature difference in wind farms. It effectively stabilizes IGBT junction temperature, improves the operational reliability of wind power converters, reduces downtime failure rate, and extends the service life of power semiconductor components.


We provide customized size, pipe layout and interface design to match all mainstream wind power IGBT modules and converter cabinet installation requirements.

 

 
Liquid cooling plate for Data Center

Liquid cooling plate for Data Center

Our data center liquid cooling plates are engineered for high-density server racks, AI GPU cabinets, HPC and IDC data center thermal management.

 

Adopting pure copper skiving micro-channel internal flow channel structure and manufactured by vacuum brazing process, the cooling plate delivers ultra-high heat transfer efficiency, low flow resistance and uniform temperature distribution.

 

It perfectly handles high heat load from high-power CPU, GPU and AI accelerator chips, effectively reducing data center PUE, cutting air-conditioning power consumption and lowering long-term operation cost.

 

With reliable pressure resistance, full leak-tight performance and durable structure, our copper micro-channel liquid cooling plates are ideal for cloud computing base stations, high-performance computing rooms and edge computing server cabinets. We also support custom size, interface and flow channel layout to match diverse server cooling demands.

Liquid cooling plate for BESS

Liquid cooling plate for BESS

High-performance liquid cooling plates specially engineered for BESS battery energy storage systems, ideal for containerized energy storage, C&I storage and grid-scale energy storage.   Adopting optimized flow channel design and premium aluminum alloy material, featured with efficient heat dissipation, uniform temperature control, leak-proof structure and long service life, effectively prevent battery thermal runaway and extend cycle life.  We provide 3 standard ready models: 48S / 52S / 104S, perfectly matching mainstream LFP battery module configurations.  Exclusive Advantages: · No mold cost for standard versions · No MOQ requirement · Fast prototyping available · Short lead time for mass delivery  Cost-effective, plug-and-play standard liquid cooling plates for your BESS thermal management project, support quick sample verification and bulk order delivery. . 

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