Powered by Aquaporin Inside reverse osmosis technology, the system is engineered to reduce impurities including chlorine, heavy metals, bacteria, microplastics and other unwanted contaminants. Its integrated Mineralising pH+ technology reintroduces beneficial minerals after filtration, helping create smoother-tasting water with a more balanced drinking experience. From everyday drinking water to hot beverages, the system delivers purified water with consistency and precision.
Designed for intuitive operation, the water station features streamlined controls, fast heating performance and a refined black finish suited to contemporary interiors. Combining intelligent filtration, mineral-enhanced purification and instant boiling functionality, the Philips RO Mineral Water Station offers a sophisticated and versatile hydration solution for the modern home.

Aquaporin Inside RO Filtration
Removes over 110 contaminants using biomimetic technology tested by NASA and ESA, delivering pure, safe water free from PFAS, fluoride, bacteria, microplastics, and heavy metals with every use.

Mineralising pH+ Technology
Mineralising pH+ technology enhances reverse osmosis filtered water by reintroducing beneficial minerals after purification. This process helps raise the water’s pH level naturally, creating a smoother taste and a more balanced drinking experience. Designed to improve both flavour and water quality, it delivers refreshing hydration for everyday enjoyment.

Instant Hot Water in Three Seconds
Provides purified hot water in as little as three seconds, with preset temperatures of ambient, 45°C, 85°C, or 95°C — perfect for tea, coffee, baby formula, or cooking tasks on demand.

TDS Monitoring System
The integrated TDS monitoring system continuously measures water quality before and after filtration, displaying results clearly for added reassurance. In this portable reverse osmosis system, reject water is redirected back into the water tank, while sensors notify users when the tank requires emptying and refilling to maintain optimal filtration performance.



