Model Number: | LL-018 | Product Name: | Liquid Cooling Loop |
Brand Name: | LORI | Certificate: | ISO 9001:2008,ISO 14001:2004 |
Material: | Copper C1100 | Process: | Continuous Furnace Vacuum Brazing |
Extra process: | CNC Machining | Vacuum Brazing Tensile Strength: | 340-390N/mm ² |
Surface treatment: | Clean+Anti-Oxidant | Application: | Server Liquid Cooling System |
Size: | Custom Size | Quality Control: | 100% thermal test |
Place of Origin: | Shenzhen, China (Mainland) | OEM: | Yes |
Multi-channel Copper Liquid Cold Plate for Liquid Server Cooling Loop
The multi-runner cold plate is made of high-purity C1100 copper material with excellent thermal conductivity, which can effectively and quickly conduct heat away from the high heat density components (e.g. CPU, GPU) inside the server. The cold plate and joints are soldered through a continuous furnace vacuum brazing process, which reduces the risk of liquid leakage in the liquid cooling system and enhances the sealing and reliability of the liquid cooling loop. The multi-channel design of the copper cooling plate can evenly absorb the heat generated from the entire surface of the cold plate to enhance the heat exchange efficiency.
Lori liquid cooling loops have been fully tested and validated to ensure optimal quality and cooling performance.
Leakage detection in Lori vacuum brazing liquid cooling circuits utilizes vacuum technology and the unique properties of helium for high reliability, ensuring no leakage risk in our liquid cooling.
Lori direct liquid cooling circuit has been tested by ultrasonic scanning microscope, which can clearly reflect the internal structure of the loop and strictly control the product quality.
Lori liquid cooling component forms a chemical passivation film by cleaning the internal flow channels through pipelines, which can effectively prevent the recurrence of dirt, protect the equipment from corrosion or other chemical damage, ensure equipment safety and extend its service life.
Lori liquid cooling components will undergo comprehensive leakage detection to ensure that there is no leakage in the internal flow channels and connection points of the liquid cooling plate, preventing coolant leakage and ensuring the stable operation of the equipment.
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