Radiometric level sensor EmulsionSENS
for liquidsanaloghigh-precision

Radiometric level sensor - EmulsionSENS - Berthold Technologies Process Control - for liquids / analog / high-precision
Radiometric level sensor - EmulsionSENS - Berthold Technologies Process Control - for liquids / analog / high-precision
Radiometric level sensor - EmulsionSENS - Berthold Technologies Process Control - for liquids / analog / high-precision - image - 2
Radiometric level sensor - EmulsionSENS - Berthold Technologies Process Control - for liquids / analog / high-precision - image - 3
Radiometric level sensor - EmulsionSENS - Berthold Technologies Process Control - for liquids / analog / high-precision - image - 4
Radiometric level sensor - EmulsionSENS - Berthold Technologies Process Control - for liquids / analog / high-precision - image - 5
Radiometric level sensor - EmulsionSENS - Berthold Technologies Process Control - for liquids / analog / high-precision - image - 6
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Characteristics

Technology
radiometric
Medium
for liquids
Interface
analog
Other characteristics
high-precision

Description

Multiphase level measurement system With the highest level of accuracy and stability The challenges in the measurement of several phases, so-called multiphase levels, include not only the often not distinctly formed interfaces but also the (sometimes only slightly) different phase densities. With the multiphase level measuring system EmulsionSENS from Berthold, even subtly different layers can be reliably detected and the processes can thus be controlled and optimized. Two different arrangements Aligned arrangement • Sources and detectors at same height • Output: Density values of each detector • Very precise point information • Density accuracy approx. 0.002 g/cm³ • Cost effective Staggered arrangement • Sources between detectors • Outputs: Density values of each detector and level of each layer • Precise information also between detectors • Reproducibility of the measured level values with accuracy of ± 25 mm • Configuration and visualization via transmitter unit Optimal measuring arrangement • Non-contact measurement - Detectors and electronics have no contact with the interior of the vessel • Representative measurement due to high-energy gamma sources and a long measurement path in the product • Depending on requirements, two different arrangements (aligned or staggered) are available Reliability and safety • Use under extreme process conditions possible • Redundant readings - density and level • Dose minimisation - Use of low activities and sources that can be retracted into flange mounted shields • Impervious to wall buildups

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