Description
OMNIPURE TQ56-75-FC 75 GPD Q-Series reverse osmosis membrane.
The Omnipure PuROTwist TQ56-75-FC is a encapsulated reverse osmosis membrane suitable for both residential and light commercial applications.
This is a higher capacity 75 Gallon Per Day membrane which can deliver a maximum of 280 Litres Per Day of purified water (actual performance will vary based on pressure, water quality and membrane age),
An excellent option for medium to large households and small offices.
Features
- 75 Gallons Per Day (GPD) Maximum Capacity (280 Litres per day)
- Fully Encapsulated Design – membrane housing and flow control built-in
- Flow Control maintains optimal water pressure
- Built-In Check Valve to prevent backflow
- Thin Film Composite (TFC) Technology
- Quick & Easy Installation – Screws in like a lightbulb
Reduction Claims
This reverse osmosis membrane effectively reduces:
• Barium
• Cadmium
• Chromium III & VI
• Copper
• Fluoride
• Lead
• Mercury
• Nitrate
• Nitrite
• Radium
• Selenium
• TDS (Total Dissolved Solids)
• Other inorganic contaminants
Produces healthier, better-tasting water for drinking annd cooking water.
Technical Specifications
- Model Number: TQ56-75-FC
- Flow Rate: 75 GPD (Gallons Per Day)
- Membrane Type: Thin Film Composite (TFC)
- Dimensions: 12.75″ H x 2.5″ Diameter
- Connector Type: Omnipure Q-Series connection with 1/4″ Tube drain outlet
- Application: Residential and Light Commercial
Compatibility
Will work with the following systems:
- PuROTwist 4000 75 GPD RO Systems
- PuROTwist 3000 75 GPD RO Systems
- Omnipure Q-Series filter systems
- TGI EZ Systems
- Rayne Pure Blue Systems
- Farris, ARS, and IWW RO Systems
Installation and Maintenance
Simply screw into compatible Q-Series filter head (like a lightbulb). No tools required.
Follow flushing instructions provided by system manufacturer.
Replace every 2-3 tears
Pre-Filter Recommendation: For use with non-chlorinated water supply. If you are using chlorinated water, a carbon pre-filter must be installed to remove chlorine. Failure to do so could dramatically shortenn membrane lifespan.
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