CDU Filtration Solutions from BOLEFIL
At BOLEFIL, we build complete CDU filtration solutions for liquid cooling systems covering everything from startup cleaning through long-term coolant polishing.
We also handle OEM customization on filter housings, connections, and materials, so the setup matches whatever CDU design you’re already running. Our filters work as drop-in replacements for existing CDU systems from major OEM brands too.
Get the filtration setup right, and coolant stays cleaner, components last longer, and cooling reliability holds up over time.
FAQs
What is the best micron rating for a CDU filter in AI data centers?
It depends on where the filter sits. Primary loop filters (FWS side) typically run ≤200 micron to catch coarse debris. Secondary loop filters (TCS side) need to be finer 25 micron for in-rack CDUs, 50 micron for in-row CDUs since that’s where coolant reaches the cold plates.
What’s the difference between 5 micron and 50 micron filters in CDUs?
A 5 micron filter catches far smaller particles and is typically used in side-stream polishing, not the main loop. A 50 micron filter sits in the secondary loop and is built to protect cold plate microchannels without restricting flow too much. Going too fine in the main loop can spike pressure drop; going too coarse in a side-stream filter defeats the point of polishing.
Do AI servers require smaller micron filters for liquid cooling?
Yes. AI servers run dense, high-heat workloads through narrow cold plate microchannels, and those channels are far more sensitive to particle buildup than standard server cooling. That’s why 25–50 micron has become the standard for secondary loop filtration in AI environments.
What does nominal vs. absolute micron rating mean for CDU filters?
A nominal rating means the filter captures most particles at that size roughly 85–95%, depending on the manufacturer. An absolute rating means it reliably captures particles at that size and above, with a much higher efficiency, usually 99%+. For sensitive cold plate loops, absolute-rated filters give more predictable protection.
Can particulate matter in coolant cause GPU thermal throttling?
Yes. Particles that build up in cold plate microchannels restrict flow and reduce contact with heat transfer surfaces. That drop in cooling efficiency can push GPU temperatures up, which triggers thermal throttling and cuts into performance.
Is stainless steel or polypropylene better for CDU filters?
For most CDU applications, SS316L stainless steel is the stronger choice, better corrosion resistance, better compatibility with mixed-metal loops, and longer service life. Polypropylene is lighter and cheaper but doesn’t hold up as well in loops with dissimilar metals or higher-temperature coolant.
What are the signs of a failing CDU filter?
Rising pressure drop across the filter, reduced flow rate, inconsistent cold plate temperatures, and more frequent thermal alarms are the usual signs. A sudden jump in pressure drop specifically points to a filter that’s clogged and due for replacement.
What is the ideal pressure drop for a CDU filter change?
There’s no single universal number; it depends on the filter and system design but most operators set a threshold based on the manufacturer’s spec, then flag replacement once pressure drop crosses that point rather than waiting for a fixed time interval.
Disposable vs. washable CDU filters for data centers which is better?
Washable stainless steel filters, common in primary loop filtration, cost more upfront but hold up over repeated cleaning cycles. Disposable filters are simpler to manage but add to ongoing costs and waste. Most facilities use washable filters upstream and disposable or membrane filters for finer, side-stream filtration.
How do you change a CDU filter while the system is running?
With a hot-swappable filter housing. It’s built with isolation valves that let operators pull and replace the filter cartridge without stopping coolant flow to the rest of the system which is why it’s become close to standard in facilities that can’t afford cooling downtime.