Revolution in Particle Separation: Discover the CF2000 Centrifugal FFF
The CF2000 Centrifugal FFF represents a major advancement in particle separation, thanks to its modular design and integration with various analytical systems. This innovative device operates on the principle of centrifugal field fractionation, allowing particle separation based on size and density without the need for assumptions or correction algorithms. This approach ensures greater accuracy and reliability in the results obtained.
One of the CF2000's key advantages is its open, non-packed fractionation channel, which can use a wide range of solvents, both aqueous and organic. This flexibility provides considerable freedom in the choice of analytical conditions, allowing users to tailor the system to their specific needs. Furthermore, this design prevents the discrimination of smaller particles from larger ones, a common problem with traditional light scattering techniques.
With a maximum rotational speed of 4,900 rpm and a centrifugal force of up to 26,369 m/sec², the CF2000 is capable of detecting relative size differences as small as 5%. It can also measure absolute variations down to 1 nm, making it an extremely accurate tool for particle analysis. Its optimized design not only reduces power consumption but also improves overall system performance.
The NovaFFF software, which accompanies the CF2000, provides complete system control. It integrates pump, detector, and analyzer management into a single interface, simplifying the device's use and integration into an existing analytical environment. This seamless integration allows users to take full advantage of the CF2000's capabilities while minimizing the effort required for implementation.
The CF2000 Centrifugal FFF is a cutting-edge solution for particle separation, offering unmatched accuracy, increased flexibility, and seamless integration with other analytical systems. Whether for research applications or industrial analysis, the CF2000 is an essential choice for demanding professionals.