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"precision machined aluminum parts"

Found 64 상품

품질 열 분사 액체 냉각판 2000W 산업용 고전력 장치 공장

열 분사 액체 냉각판 2000W 산업용 고전력 장치

Efficient Heat Dissipation Liquid Cooling Plate For Industrial High-Power Devices 1. Precision shovel tooth forming process: laying the foundation for efficient heat dissipation core Integrated CNC gear hobbing: Using a CNC gear hobbing machine, the entire aluminum/copper profile (6063 aluminum alloy, etc.) is cut into continuous and uniform heat dissipation fins in one go using a dedicated gear hobbing tool. The fins are integrated with the substrate structure, without

품질 주파수 변환기용 산업용 공랭식 방열판 공장

주파수 변환기용 산업용 공랭식 방열판

Industrial Grade Air Cooled Heat Sink For Frequency Converters 1. Integrated extrusion dense tooth forming process Adopting high-precision extrusion technology to create a uniform dense tooth structure, maximizing the expansion of heat dissipation area, heat conduction without splicing faults, low wind resistance and high air circulation efficiency, heat exchange can be quickly completed with the assistance of natural wind/fan. Adaptation advantages: Suitable for medium to

품질 고밀도 스키브 핀 공기 냉각 열 싱크 높은 전력 반도체 공장

고밀도 스키브 핀 공기 냉각 열 싱크 높은 전력 반도체

High Power Semiconductor High-Density Skived Fin Air-Cooled Heat Sink 1. Precision shovel tooth forming process: laying the foundation for efficient heat dissipation core Integrated CNC gear hobbing: Using a CNC gear hobbing machine, the entire aluminum/copper profile (6063 aluminum alloy, etc.) is cut into continuous and uniform heat dissipation fins in one go using a dedicated gear hobbing tool. The fins are integrated with the substrate structure, without splicing or

품질 고밀도 핀 고출력 방열판 (전력 반도체용) 공장

고밀도 핀 고출력 방열판 (전력 반도체용)

High Density Fin High Power Heat Sink For Power Semiconductor 1. Precision shovel tooth forming process: laying the foundation for efficient heat dissipation core Integrated CNC gear hobbing: Using a CNC gear hobbing machine, the entire aluminum/copper profile (6063 aluminum alloy, etc.) is cut into continuous and uniform heat dissipation fins in one go using a dedicated gear hobbing tool. The fins are integrated with the substrate structure, without splicing or welding,

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