IDC/server/workstation liquid cooling leading provider solution
Apaltek has adopted advanced cold plate technology for thermal management across data centers, servers, and workstations. Compared to traditional air cooling, cold plates provide superior heat transfer by directly interfacing with the heat source, enabling rapid thermal dissipation, lower operating temperatures, and improved system stability. Our solutions are designed with a compact footprint, low acoustic profile, and high scalability to support a wide range of deployment environments. Utilizing precision brazing and welding processes, Apaltek cold plates are engineered to minimize leakage risk while maintaining long term reliability. Both open loop and closed loop configurations are available, allowing seamless integration across diverse applications and performance requirements.
Open-loop liquid cooling series for server
Closed-loop liquid cooling series for Server
Server unit - Liquid
cooling module
workstation - Liquid cooling module
Cold Plate Introduction
Performance
Pressure drop:
High
Power density:
High
cost:
High
Apply:
Data center CPU
Performance
Pressure drop:
Middle
Power density:
Low
cost:
Middle
Apply:
Wide large-scale cooling solar series
Performance
Pressure drop:
Low
Power density:
Middle
cost:
Low
Apply:
Low power, small class, current limiting class
Performance
Pressure drop:
Middle
Power density:
Middle
cost:
Low
Apply:
Inverter class
Cold Plate Introduction
Flexibly changing brackets and low costs to adjust to the different CPU brand
Intel Purley
Intel Whitley
Intel EGS
AMD SP3
AMD SP5
Radiator Design
APALTEK owns the international patent to pump inside the radiator
Tube Introduction
Performance
Evapotranspiration level:
High
Evapotranspiration description:
No evapotranspiration problem
Piping level
low
Pipe configuration description:
No flexibility, can not freely change the pipeline
Performance
Evapotranspiration level:
LOW
Evapotranspiration description:
Consideration needs to be given to evaporation and filling with sufficient coolant to meet lifetime maintenance requirements
Piping level
High
Pipe configuration description:
Easy to bend
Performance
Evapotranspiration level:
High
Evapotranspiration description:
Evapotranspiration is extremely low and no coolant injection is required for 5 years
Piping level:
Low
Pipe configuration description:
Easy to bend, but improper operation will press the pipe and cause blockage
Performance
Evapotranspiration level:
hIGH
Evapotranspiration description:
Evapotranspiration is extremely low and no coolant injection is required for 5 years
Piping level:
High
Pipe configuration description:
Easy to bend, tube ADAPTS to system layout
Quick connector introduction
Liquid cooling quick connectors usually connect in between components from liquid circulating systems, It is able to be quick connected and disconnected in between components without leaking,improve efficiency and reduce unnecessary workload which has caused by liquid drainage
Hydraulic flow / pressure drop curve
Antifreeze Liquid Introduction
1:Same application way as vehicle
2:Refer to the working temp to change proportion
It is combined with Ethylene Glycol and Water
Portions:
Antifreeze:25%(-25 ℃)
Preservative:0.5-1%
Colorant:0.05-0.1%
Pure Water