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Large Heat Dissipation High Power Heat Sink For Industrial Cabinet

Key Attributes
Place of Origin: Dongguan, China
Certification: RoHS document, ISO9001 certificate
Minimum Order Quantity: 1PCS
Price: 50-200 USD/PCS
Supply Ability: 5000-10000 PCS per month
Delivery Time: 3-5 weeks
Payment Terms: T/T
Standard Packaging: Customized for Customers
Product Custom Attributes
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Cabinet High Power Heat Sink

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Industrial High Power Heat Sink

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Large Heat Dissipation Heat Sink

Material:
Aluminum Alloy、heat Pipe
Surface Finish:
Degrease
Application:
Medical, Industrial Equipment, Etc
Process:
Extrusion
Thermal Dissipation Power:
1000W
Airflow Direction:
Vertical
Product Description

Large Heat Dissipation High Power Heat Sink For Industrial Cabinet

 

1.Integrated extrusion dense tooth process


Adopting aviation grade aluminum alloy integrated extrusion forming dense tooth structure, with uniform tooth pitch and maximum heat dissipation area, without splicing faults for smoother heat conduction, and directly improving heat dissipation efficiency by more than 30%.


Suitable for industrial cabinets, photovoltaic inverters, general high-power industrial control equipment, and other conventional industrial scenarios that require high heat dissipation efficiency. It continuously removes the concentrated heat generated during equipment operation, avoids high-temperature shutdown, and ensures stable 24-hour operation of the equipment.


2.CNC precision milling/slotting process


High precision CNC milling machining installation surface and flow channel (water-cooled version), with a surface smoothness of Ra0.8 μ m and a flatness error of ≤ 0.02mm, seamlessly fitting with the equipment to reduce thermal resistance; Water cooled CNC slotting creates uniform microchannels, achieving low flow resistance and high flow heat transfer.


Adaptation purpose: For scenarios such as new energy electronic control systems, high-power electronic modules, and server room equipment that require dual installation accuracy and heat transfer efficiency, it accurately fits the equipment structure and adapts to the low-energy operation needs of cooling systems, balancing heat dissipation and energy conservation.


3.Anodizing/Sandblasting Surface Process


The surface of the radiator is treated with anodizing or sandblasting to enhance the wear resistance, oxidation resistance, and corrosion resistance of the aluminum alloy, improve surface hardness, and resist the erosion of dust, moisture, and oil in industrial environments.


Suitable for outdoor communication base stations, metallurgical auxiliary equipment, workshop open high-power equipment and other dusty and humid industrial scenarios, effectively extending the service life of radiators, reducing maintenance frequency in outdoor/complex environments, and lowering equipment operation and maintenance costs.


4.Customized CNC machining process


Support customized CNC machining based on the installation space, heat dissipation power, and interface size of different devices. Irregular structures and non-standard sizes can be accurately formed without the need for mold opening, and can be quickly produced in small batches.


Adaptation purpose: For scenarios with exclusive heat dissipation requirements such as non-standard industrial high-power equipment, new energy vehicle on-board electronic control, and special specification power modules, it perfectly matches the personalized layout of the equipment, achieves "one-to-one" precise heat dissipation, and solves the problem of heat dissipation adaptation for non-standard equipment.


5.Precision Welding Assembly Process


The combination aluminum radiator adopts precision argon arc welding, with firm welding points without virtual welding and stable overall structure. It can be spliced to create large-sized heat dissipation modules, meeting the heat dissipation needs of high-power equipment.


Adaptation purpose: For large industrial frequency converters, energy storage power station main equipment, high-power semiconductor units and other high-power heavy equipment, the splicing module can adjust the heat dissipation area as needed, adapt to the high-power and large volume heat dissipation characteristics of the equipment, and ensure overall heat dissipation uniformity.

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