Pentair Pentek ECP50-10 10" x 2.5" Sediment Water Filter, 50 Micron
Product Description
Pentair Pentek ECP50-10 10" x 2.5" Sediment Water Filter, 50 Micron
- KEEP YOUR WATER CLEANER - The nominal 50 micron pleated media reduces coarse dirt, sand, silt, rust, and sediment, working as a high-capacity pre-filter that helps protect appliances, plumbing, and downstream filters.
- HIGH FLOW, LOW PRESSURE DROP - A special blend of resin-impregnated cellulose and polyester fibers gives higher wet strength than regular cellulose, with high flow and an initial pressure drop under 1 psi at 10 gpm.
- BUILT TO RESIST BYPASS - Media is pleated around a durable polypropylene core, and the overlap seam is sonically welded to reduce internal bypass for more efficient, consistent filtration with minimal media migration.
- FITS 10-INCH STANDARD HOUSINGS - Maximum cartridge dimensions are 2.63 inch by 9.75 inch (67 mm x 248 mm), a drop-in replacement for standard 10-inch whole-house sediment cartridges, with 6 square feet of pleated media.
- EASY TO MONITOR AND REPLACE - Rated for 40 to 125 degrees F, with a yellow color-coded endcap marking the 50 micron rating; replace the cartridge when you notice a drop in water pressure or water quality.
This Pentek ECP50-10 pleated cellulose polyester filter cartridge reduces sand, dirt, silt, rust, and scale particles in residential and commercial water. It has a nominal filtration rating of 50 microns at an efficiency of 85%. The filter is made of resin-impregnated cellulose and polyester media pleated around a polypropylene core for strength. It has an initial pressure drop of less than 1 pound per square inch (psi) at a flow rate of 10 gallons per minute (gpm), and operates over a temperature range of 40 to 125 degrees F (4.4 to 51.7 degrees C). This pleated cellulose polyester filter cartridge is for use in various applications, including drinking water purification, irrigation, and industrial processes, among others.
SpecificationsNominal filtration rating50 micronsInitial pressure drop at 10 gpm






