Want to know the reason why the brazed Liquid Cold Plates can:
- Reduce more temperature
- Achieve uniform cooling
Stainless Steel Liquid Cold Plate
Do you think the cooling performance of stainless steel liquid cold plates is not good enough?
In fact, a liquid cold plate can cool plates better than an air-cooled heatsink; it's about 5 times more effective in cooling performance than an air-cooled heatsink. Also, stainless steel liquid cold plates don't require the coolant management.
Want to know the reason why the brazed Liquid Cold Plates can:
Managing the coolant is not necessary thanks to the high corrosion-resistance of stainless steel.
For example, if you use liquid cold plates made of other materials, you would have to install an ion exchange unit in the circulation path to manage the coolant. But a stainless steel liquid cold plate doesn't require such a device.
Characteristic | Copper | Aluminum | Stainless |
---|---|---|---|
Thermal conductivity |
398 | 236 | 17 |
Specific gravity | 8.82 | 2.68 | 7.93 |
Corrosion resistance |
◯ | △ | ◎ |
We design and manufacture the optimum liquid cold plate with material to meet your application and operating environment, such as copper with excellent heat dissipation, aluminum with excellent weight saving, stainless steel with strong corrosion resistance.
Please feel free to contact us for chillers, piping, Teflon tubes, grease, and thermal conduction sheets.
The product's material can determine what type of coolants to use in the liquid cold plate.
We will suggest the optimum combination of the plate's material and coolant according to your requests and operating environment.
Stainless steel liquid cold plate | |||
---|---|---|---|
Flow rate (L/m) |
Heat resistance: R k/W |
Thermal conductivity: C C=1/R |
C/V (W/K·Liter) |
0.5 | 0.1194 | 8.38 | 44.08 |
1 | 0.0982 | 10.18 | 53.60 |
1.5 | 0.0847 | 11.81 | 62.14 |
3 | 0.0670 | 14.93 | 78.55 |
5 | 0.0599 | 16.69 | 87.87 |
8 | 0.0594 | 16.84 | 88.61 |
10 | 0.0585 | 17.09 | 89.97 |
Aluminum air heat sink | |||
---|---|---|---|
Wind speed (m/s) |
Heat resistance: R k/W |
Thermal conductivity: C C=1/R |
C/V (W/K·Liter) |
0.479 | 0.6025 | 1.66 | 4.15 |
0.895 | 0.3512 | 2.85 | 7.12 |
1.416 | 0.2608 | 3.83 | 9.59 |
1.916 | 0.2206 | 4.53 | 11.33 |
2.479 | 0.1904 | 5.25 | 13.13 |
3.083 | 0.1703 | 5.87 | 14.68 |
3.604 | 0.1636 | 6.11 | 15.28 |
4.125 | 0.1499 | 6.67 | 16.68 |