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Nexopart
NEXOPART. Particle analysis with precision down to the smallest detail.
EML 200
EML 200
EML 200
EML 200
EML 200
EML 200
EML 200
EML 200
EML 200
EML 200
Nexopart
EML 200
3D Sieve Analysis

Sieve shakers EML: Precise and reliable particle size analysis

Sieve Shaker EML 200 Premium

Quiet and with improved damping system – the perfect model for precise and reproducible sieve analysis. The large display of the premium version offers you a clear overview and is easy to operate. The following features make it the perfect alternative to our base model:

  • Data interface
  • Interval
  • Freely selectable amplitudes

The EML sieve shakers from NEXOPART are based on the principle of a vibrating sieve shaker and enable the preparation and particle size determination of dry and wet bulk solids. They are ideal for separating bulk material particles of different sizes. The electromagnetic drive (EML) ensures a three-dimensional throwing motion of the material to be sieved, which enables fast and accurate particle measurement.

Vibration sieve shakers are used in the areas of research and development, including in the pharmaceutical, food and chemical industries. They are not only suitable for the quality control of raw materials, but also for the control of intermediate and end products. Are you looking for modern and easy-to-use products for your particle analysis? - The NEXOPART EML offers you a powerful, state-of-the-art solution. With the EML, NEXOPART sets new standards in precision, function and reliability.

The proven 3D sieving process for stones and gravel, granulates, fertilizers and seeds uses an electromagnetic drive (EML) that accelerates your sieving material vertically out of the mesh and simultaneously distributes it horizontally in a circular motion over the entire surface of the sieve. The combination of vertical and horizontal movement ensures an even distribution of the material, a high degree of selectivity and maximizes the efficiency of your particle size analysis. This process guarantees reproducible measurement results and significantly shortens sieving times.

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