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Core Heat Exchange Component Of Water-Cooled Cooling System

Categories Liquid Cooling Plate
Brand Name: Uchi
Model Number: Heat Sink
Certification: ISO9001:2015 ISO9001:14001
Place of Origin: Dongguan,Guangdong,China
MOQ: 100pcs
Price: 1300-1500 dollars
Payment Terms: T/T,paypal, Western Union,MoneyGram
Supply Ability: 50000000pcs per Month
Delivery Time: not limited
Heat conducting power: 80W
fan life: 50000 Hrs
material: Aluminum 1060
Size: 158x110x60mm
weight: 0.35 kg
Technology: Zipper fin
Surface treatment: Stamping + surface finish
Feature: Flexible in structure and durable in surface treatment
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Core Heat Exchange Component Of Water-Cooled Cooling System

Core Heat Exchange Component Of Water-Cooled Cooling System
The Liquid Cold Plate is the core heat exchange component of the liquid cooling system. Through the metal substrate and internal sealed flow channel, the heat from the heating device is efficiently transferred to the circulating cooling liquid, and then dispersed to the outside world through the heat exchanger. The heat dissipation efficiency is much higher than traditional air cooling and is widely used in high power density scenarios.
basic structure and principle
Core components: bottom plate (aluminum/copper, directly attached to the heat source), internal flow channel (serpentine/parallel/microchannel), cover plate (sealed flow channel), and liquid inlet and outlet joints; commonly used cooling liquids are deionized water, water-glycol mixture.
Work flow: heat source → metal bottom plate heat conduction → flow channel wall → flowing coolant absorbs heat → coolant flows to CDU /radiator to dissipate heat → cooling back to cold plate after cooling, forming a closed loop.
Key advantages: low thermal resistance (0.02 - 0.05°C/W), high heat dissipation power, good temperature uniformity, and low noise; suitable for data centers with stand-alone cabinet power of 50kW +, AI chips, new energy vehicle battery packs, etc.
Manufacturing Capabilities
Advanced brazing technology for cooling plates
Advanced Brazing Technology
Brass and copper CNC machining samples
Brass / Copper CNC
Aluminum and zinc CNC machining samples
Aluminium / Zinc CNC
Stainless steel and steel CNC machining samples
Stainless Steel / Steel CNC
Plastic CNC machining samples
Plastic CNC
Heat sink technical diagram Heat sink application illustration
Production facility with automated manufacturing equipment
Key Design and Performance Indicators
Flow Channel: Microchannels (<1mm) can enhance the heat transfer coefficient but increase pressure drop; serpentine flow channels offer good temperature uniformity; flow velocity and flow resistance need to be balanced.
Sealing and Pressure Resistance: 100% leak testing (helium test) is mandatory, with extremely low static leakage rate; burst pressure is typically more than three times the rated pressure.
Material Selection: Aluminum (high cost performance, light) is used for general scenarios; copper (higher thermal conductivity) is used for ultra-high heat flux density scenarios.
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