200mm Aluminium Water Cooling Block
200mm Aluminium Water Cooling Block The water cooling block is manufactured with aluminum and is designed with a 200mm dimension. It has internal extrusions for optimum internal flow. Applicable to computer CPU water, industrial inverter driver, laser head cooling, industrial control cabinet cooling. The 200mm water cooling block has a heavy aluminum build and has an extrusion for internal channel flow. Also check 240mm Aluminium Water Cooling Block available on the Iotcart website. The product is described as a high-quality cooling block head designed for efficient heat dissipation in various applications, including computer CPU water cooling, industrial inverter driver cooling, laser head cooling, and industrial control cabinet cooling. The cooling block is made of heavy-duty aluminum, features internal flow channel extrusion forming technology, Also check the 40mm Aluminium Alloy Water Cooling Block available on Iotcart. It is designed with high-quality aluminum alloy, featuring a solid construction for optimal heat dissipation. The block has internal flow channel extrusion and is compatible with water pipes of internal diameter 7-8mm (0.27-0.31''). PACKAGE INCLUDES: 1 x 200mm Aluminium Water Cooling Block Specifications: Material Aluminium Alloy Colour Silver Nozzle 9.5mm Internal fin thickness 0.5mm Type Water Cooling Block Size 200x40x12mm Weight 80 grams Heat dissipation method The liquid conducts the cold and heat exchange
- The water cooling block is manufactured with high quality aluminum alloy.
- It is designed with a 200mm dimension and has internal flow channel extrusion.
- The 200mm aluminum cooling block has a solid construction for best heat dissipation.
- Applicable to computer CPU water, industrial inverter driver, laser head cooling, industrial control cabinet cooling.
- Material Aluminium Alloy
- Colour Silver
- Nozzle 9.5mm
- Internal fin thickness 0.5mm
- Type Water Cooling Block
- Size 200x40x12mm
- Weight 80\u00a0grams
- Heat dissipation method The liquid conducts the cold and heat exchange