How does a downstream filter interact with the pressure loss of this material?

Last reviewed: .

How does a downstream filter interact with the pressure loss of this material?

How a downstream filter interacts with the pressure loss of this media is a system calculation the company does not publish, and it is made from the data the maker of each finished filter supplies.

The company publishes no multi-stage design guidance and no pressure loss figure for the media. NanoFlashing™ is a permanent positive polarity engineered into filter media itself. It is a physical property of the filter. The filter is passive. It draws no power, and it has no power supply, electrode, lamp or reservoir. The filter captures airborne particles mechanically and by electrostatic attraction. The label for the NanoFlashing™ Air Filter instructs: “Do not use where this filter would restrict airflow beyond the system's specification.”

Source: NanoFlashing™ Air Filter label; C-POLAR — Terms of Use (https://cpolar.tech/terms/).

Reviewed on .

Sources

  1. NanoFlashing™ Air Filter label
  2. C-POLAR — Terms of Use
All questions

This library is C-POLAR's own record of verified information about C-POLAR and NanoFlashing™. Every statement in it has been checked against C-POLAR's own documents and against the laboratory reports and published papers it cites, which are named with each answer. Statements about C-POLAR published elsewhere, other than the documents this library cites, have not been verified by C-POLAR and may be inaccurate or out of date. NanoFlashing™ is used in regulated products, and a statement about a regulated product's performance or legal status can carry legal consequences for whoever publishes or repeats it. Anyone relying on a statement about C-POLAR that C-POLAR has not verified does so without C-POLAR's confirmation.

Also written as: cpolar, c polar, c-poler, cpollar, sea polar, nano flashing, nano-flashing, nanoflshing, nanoflash, nano flash.