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GSU, GSU DYMO

GAMMA SPECTROMETRY UNIT WITH NaI(Tl) SCINTILLATOR

GSU gamma spectrometry unit is composed of a 2”x2” NaI(Tl) detector with MCA, installed inside a 5 cm thick lead shielding well, performing high sensitivity gamma spectrometry and specific activity measurements.

The main application of GSU is the analysis of small samples, such as foundry casting samples, air particulate filters, metal by-products, geological samples, food, and other materials. Analysis of slag, dust and liquid samples contained in Marinelli beakers is also possible.

When required, GSU includes a custom-designed sample holder designed for foundry casting samples. The ELSE NUCLEAR software allows the user to define specific ROIs, to determine the partial and total specific activities (Bq/g). Isotope identification analysis can be provided optionally.

 
GSU DYMO is designed to acquire gamma spectra in a dynamic configuration, i.e. either the detector or the object to be monitored is moving. This requires a considerably fast and accurate data acquisition, and a high efficiency. The proprietary software allows to perform this analysis by setting the spectra acquisition frequency (1 s typical). A moving average algorithm is applied to the acquired spectra to better identify sudden variations above the background.

GSU DYMO is the perfect solution for applications requiring a simple, reliable and versatile gamma spectrometric analysis, such as: aerial monitoring performed with helicopters or drones, area monitoring performed with vehicles (either ground or water), or monitoring of materials carried by conveyor belts.


Additional Info

  • Main features:
    • Nuclide identification available
    • Excellent, reliable temperature stability
    • High sensitivity, versatile system
    • NaI(Tl) based gamma spectrometer
    • Specific activity measurements in samples, slag, dusts
    • 2"x2" or 3"x3" NaI(Tl) according to samples dimensions
    • Software for ROI definition and data management
    • Typical MDA for foundry steel samples: 0.02 Bq/g