Intake Replacement Filter (Cotton Cleanable) for 75-2530
Intake Replacement Filter (Cotton Cleanable) for 75-2530
SKU: SKU: KF-1006
20 in stock
Couldn't load pickup availability




Product Details
Description
S&B Filters Cleanable Cotton Replacement Filters
Lots of cool, clean air has been shown to increase horsepower—and these cotton replacement air filters from S&B deliver both unrestricted flow and high filtration. The 8-layered cotton filters protect your engine from harmful dirt and debris, while the couplers and end caps are manufactured from premium silicone rubber to help prevent cracks. And because the filters are cleanable and reusable, they're a great performance value. S&B Filters elements are available in numerous styles and sizes for compatibility with nearly any engine bay. Select from nearly a hundred universal and application-specific models.
Specs
Cotton Cleanable | |
Type of media | Oiled (Red) |
Base color | Black |
Base OD | 6.5" |
Element height | 9" |
Flange height | 1.75" |
Flange ID | 4.5" |
Quantity of oil | 51 grams |
Top color | Black |
Top OD | 5.25" |
Type of flange | Straight |
Type of top | Black Urethane (Rubber) w/ S&B Logo |
Fitment
2000-2003 Ford Excursion 7.3L Diesel
1998-2003 Ford F-250 7.3L Diesel
1998-2003 Ford F-350 7.3L Diesel

Intake Replacement Filter (Cotton Cleanable) for 75-2530

Intake Replacement Filter (Cotton Cleanable) for 75-2530
S&B Filters Cleanable Cotton Replacement Filters
Lots of cool, clean air has been shown to increase horsepower—and these cotton replacement air filters from S&B deliver both unrestricted flow and high filtration. The 8-layered cotton filters protect your engine from harmful dirt and debris, while the couplers and end caps are manufactured from premium silicone rubber to help prevent cracks. And because the filters are cleanable and reusable, they're a great performance value. S&B Filters elements are available in numerous styles and sizes for compatibility with nearly any engine bay. Select from nearly a hundred universal and application-specific models.