Donaldson 1C112532 Element SMF 4/1.5 (OEM)

Donaldson® 1C112532 Filter Element, UF Threaded Connection, 0.01 um, Borosilicate Filter Media, 4.92 in OAH

Donaldson® 1C112532 Filter Element, UF Threaded Connection, 0.01 um, Borosilicate Filter Media, 4.92 in OAH 1C112532

Donaldson® SMF UltraPleat® filter elements are designed for the removal of water and oil aerosols as well as solid particles from compressed air and gases with absolute retention efficiency at a low differential pressure. The coalescence filter elements are based on three dimensional microfiber fleece made of coated borosilicate glass fibers, oleo phobic and hydrophobic media. The SMF UltraPleat® and SMFP filter elements are suitable for AG, SG and HD filter housings. The P-SMF filter elements are used in our P-EG and PG-EG housings.
Donaldson® Filter Element, Model: SMF, UF Threaded Connection, 4/1.5 Element, 0.01 um, 176 deg F Operating, Borosilicate Filter Media, 2.05 in ID, 4.92 in Overall Height

Connection Type      :      UF Threaded
Element Size      :      4/1.5
Filter Media      :      Borosilicate
Inside Diameter      :      2.05 in
Micron Rating      :      0.01 um
Model      :      SMF
Operating Temperature      :      176 deg F
Overall Height      :      4.92 in
  • Expanded inner and outer stainless steel sleeves for the secure hold of the filter medium - no danger of corrosion, large openings ensure low differential pressure drop and high throughput
  • Binder-free depth filter medium made out of borosilicate glass fibers - low differential pressure drop, high throughput
  • Removal of liquid aerosols and solid particles down to 0.01 um - validated retention efficiency, high level of security and safety
  • Large surface area, large void volume (>94%) - high dirt holding capacity, guaranteed service lifetime
  • pdfCatalog https://assets.unilogcorp.com/267/ITEM/DOC/Donaldson_1C027308_Catalog.pdf
  • pdfSpecification Sheet https://assets.unilogcorp.com/267/ITEM/DOC/Donaldson_1C112532_Specification_Sheet.pdf
  • linkVideo Link https://youtu.be/6a-zT-o8VeY