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AL 1050 VGA Board Brack
The AL 1050 VGA Board Bracket is a high-quality stamped metal part designed for secure mounting of VGA components in electronic systems. Made from durable aluminum alloy (AL 1050), it offers excellent strength and lightweight properties, ensuring reliable support and stability for your hardware. Its precision stamping guarantees an accurate fit, while the detailed cutouts enhance heat dissipation and airflow. Ideal for use in graphic card assemblies, this bracket provides a stylish and functional solution for protecting and managing your VGA boards, contributing to a neat and efficient setup in computer and industrial applications. -
AL 1050 VGA Compressor Bracket
The AL 1050 VGA Compressor Bracket is a precision-engineered stamped metal part designed for use in VGA systems. Constructed from high-quality aluminum (AL 1050), it offers both lightweight strength and excellent durability. This bracket is ideal for supporting VGA components in compressor modules, ensuring secure placement and stability. The intricate cutouts are designed to enhance airflow and facilitate effective cooling, which is essential in maintaining optimal system performance. With a stylish design featuring a colorful accent, this bracket combines aesthetics with functionality, making it a perfect choice for advanced electronic assemblies. -
Nickel Plating 10um Skived Heatsink
The Nickel Plating 10um Skived Heatsink offers exceptional heat dissipation through its precisely designed skived fins, providing a larger surface area for optimal cooling. The 10-micron nickel plating ensures corrosion resistance and enhances thermal performance, making it ideal for high-power applications. Suitable for electronics, telecom, and industrial equipment, this heatsink effectively dissipates heat to maintain component longevity and reliability, ensuring superior system performance. The skiving process creates durable fins that enhance thermal efficiency while the nickel coating offers robust protection. -
Copper Heatsink Skived
The Copper Skived Heatsink is designed to provide superior thermal conductivity for high-power electronic applications. Manufactured from high-purity copper, it utilizes skiving technology to create efficient, high-density fins that maximize surface area for improved heat dissipation. This heatsink is ideal for applications where effective cooling is critical to prevent overheating and ensure the longevity of electronic components, such as in power electronics, LED lighting, and data servers. The skived copper structure ensures uniform heat distribution and high cooling efficiency, making it suitable for high-performance thermal management. -
Power Supply Heatsink Skived
The Power Supply Skived Heatsink is engineered for high-efficiency thermal management in power supply units. Crafted using precision skiving technology, it features closely packed aluminum fins that maximize surface area for effective heat dissipation. This heatsink is ideal for cooling high-power density components, reducing the risk of overheating, and extending the lifespan of sensitive electronics. Its robust design ensures consistent performance in demanding environments, making it suitable for industrial power supplies, converters, and inverters. The skived construction guarantees optimal thermal conductivity, ensuring reliable cooling in critical power applications. -
Heatsink Skived FPGA
The Skived FPGA Heatsink is specifically designed for field-programmable gate array (FPGA) cooling solutions, using advanced skiving technology to enhance heat dissipation efficiency. Its multiple fin structure offers increased surface area, maximizing airflow and thermal performance. Constructed from high-quality aluminum, it ensures efficient heat transfer while maintaining a lightweight design. Ideal for FPGA applications in high-performance computing, telecommunications, and industrial automation, this heatsink is built to prevent overheating and maintain optimal operating temperatures, ensuring reliable FPGA performance under demanding workloads. The skived design delivers consistent, effective cooling for critical electronic components.
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