Follett CARBONSTDCAPFILTER Replacement Water Filter Cartridge - 5,000 gal Capacity - Image 1
SKU: 608-CARBONSTDCAPFIL
Brand: Follett
Model: CARBONSTDCAPFILTER

Follett CARBONSTDCAPFILTER Replacement Water Filter Cartridge - 5,000 gal Capacity

The Follett CARBONSTDCAPFILTER is a high-capacity (5,000 gal) water filter designed for ice makers, removing chlorine, sediment, and odors while ensuring consistent water flow and equipment longevity. A must-have for restaurants and commercial kitchens.

Key Features

  • 5,000-gallon filtration capacity for large-scale ice maker systems, reducing frequent replacements and maintenance
  • Removes chlorine, sediment, and odors for crystal-clear water, enhancing ice quality and beverage taste
  • Direct compatibility with CARBONSTDCAPSYSTEM & 00130229 models—no system adjustments or disruptions during installation
  • Supports optimal water flow (1.67 gpm) for consistent performance, preventing equipment strain or downtime
  • 90-day warranty for peace of mind, plus lightweight design (3.00 lbs) for easy handling
Starting from $255.00/unit

Volume discounts available

Maintain crystal-clear water in your ice machine with the Follett CARBONSTDCAPFILTER—your high-performance, 5,000-gallon replacement filter. Engineered for commercial-grade filtration, this cartridge is a game-changer for restaurant operators, cafés, and foodservice businesses. It effectively eliminates chlorine, sediment, and unpleasant odors, delivering pristine water for ice production and beverage systems. Compatible with the CARBONSTDCAPSYSTEM and 00130229 models, this filter integrates seamlessly into existing setups with minimal downtime, ensuring uninterrupted operation. Whether you're running a high-volume café or a large-scale kitchen, this filter supports consistent water flow (1.67 gpm) and extends the lifespan of your equipment, reducing maintenance costs over time. With a 90-day warranty, the Follett CARBONSTDCAPFILTER is a reliable, cost-effective solution that keeps your water filtration system running at peak efficiency.