Capillary Flow Porometer
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Precision Instruments for Pore Size Analysis – Fast, Reliable, Reproducible.
Electric vehicles demand materials that perform flawlessly under extreme thermal, electrochemical, and mechanical conditions. From battery separators that prevent thermal runaway to fuel cell membranes that maximise proton exchange efficiency – pore structure is everything. The POROLUX™ Revo Series Capillary Flow Porometer, built on patented MP² (Multistage Pressure Process) technology, delivers the most accurate and reproducible pore size measurements available today. Whether you are qualifying materials in R&D or maintaining consistency on the production line, the Revo Series gives EV engineers the data they need – with unmatched confidence.
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Wide range of solutions
We offer expert recommendations, with all major capillary flow techniques in-house.

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POROLUX™ Revo series
POROLUX™ Revo Series is a high-performance porometer featuring patented MP² (Multistage Pressure Process) technology, setting new standards in pressure step stability porometry. Designed for precision, it delivers highly accurate and reproducible pore size measurements, detailed pore size distribution curves, and advanced data analysis -making it ideal for filtration media, membranes, and porous material testing.
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POROLUX™ Revo Series is a high-performance porometer featuring patented MP² (Multistage Pressure Process) technology, setting new standards in pressure step stability porometry. Designed for precision, it delivers highly accurate and reproducible pore size measurements, detailed pore size distribution curves, and advanced data analysis – making it ideal for filtration media, membranes, and porous material testing.
Submit Your Details to Download Brochure!
Features
- Patented MP² Technology: Uniform, stable pressure steps ensure highly reproducible measurements across battery separators, fuel cell membranes, and GDLs
- Ultra-fine Pore Resolution: Measures down to 13 nm minimum pore size, covering next-generation EV separator and nanofiltration membrane requirements
- Three Bubble Point Methods: BP dPL, BP x-ml, and BP pCF; flexible enough to match any EV material specification or industry test protocol (ASTM F-316-03)
- Complete Pore Profile in One Test: Bubble point, mean flow pore size, smallest pore, pore size distribution, cumulative flow distribution, and gas permeability - all in a single automated run
- Open Porosity, Total Pore Area & Total Pore Number: Enhanced mathematical model delivers full structural characterisation for battery and fuel cell component R&D
- Automatic Pressure & Flow Sensor Switching: Seamless measurements across wide pore size ranges with no manual intervention
- PoreSuite Software: Built-in intelligence with re-evaluation function, two-stage curve fitting, and Excel-ready outputs for fast QC reporting
- Remote Connectivity: Ethernet and USB connectivity enables remote access for diagnostics and support - ideal for distributed EV manufacturing environments
- Wide Material Compatibility: Characterises polymeric membranes (flat sheets & hollow fibers), ceramic membranes, porous metals, and nonwovens used across the EV powertrain
Select the Right Capillary Flow Porometer
FAQ's
Frequently Asked Questions (FAQs) –Capillary Flow Porometer POROLUX™ Revo series
The POROLUX™ Revo Series is a high-precision Capillary Flow Porometer used to measure pore size, pore distribution, and gas permeability in porous materials. In the EV industry, it is used to test and qualify battery separators, fuel cell membranes, gas diffusion layers (GDLs), thermal management materials, and filtration media – any component where pore structure directly impacts safety and performance.
The Revo X (max 8 bar, 80 nm minimum pore) is suited for standard EV filtration media and separator QC. The Revo (max 35 bar, 13 nm minimum pore) is recommended for high-pressure testing, next-generation nanopore separators, fuel cell membrane R&D, and ceramic or metallic components that require deeper pressure ranges.
One automated run delivers bubble point (largest pore), mean flow pore size, smallest pore, pore size distribution, cumulative flow distribution and gas permeability.
The POROLUX™ Revo Series supports ASTM F-316-03 for bubble point measurement, with three calculation methods – BP dPL, BP x-ml, and BP pCF – giving flexibility to match different internal specifications or customer requirements.
The instrument characterises polymeric membranes (flat sheets and hollow fibers), ceramic membranes, porous metals, and nonwovens – covering battery separators, fuel cell GDLs, PEM membranes, cooling pads, enclosure vents, and cabin or coolant filters used across the EV powertrain.
The patented Multistage Pressure Process (MP²) applies pressure in uniform, stable steps rather than continuous sweeps. This eliminates flow instability during measurement, resulting in highly reproducible pore size data – critical when qualifying safety-sensitive components like battery separators.
Yes. PoreSuite software is designed for both use cases – with built-in intelligence, re-evaluation functions, and two-stage curve fitting for R&D depth, as well as fast automated workflows and Excel-ready outputs for high-volume QC reporting. Ethernet and USB connectivity also supports remote access and diagnostics for distributed manufacturing environments.