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Military and CBRNE applications have evolved to create a need for enhanced radiological detection equipment used by armed forces. Based on long-term experience and cooperation with customers, Mirion constantly improves and extends its range of military products, providing new solutions and innovative technologies against new threats to protect global defense forces.

Our Non Destructive Assay systems measure the radioactivity content of containers of radioactive waste or fuels, or contaminated items.  Measurements are conducted in a non-intrusive manner whereby the radiation emissions are measured without requiring the container to be opened or the item to be physically altered.

MGP Instruments™, Canberra™, MGPI H&B™ and Premium Analyse state-of-the-art radiation monitoring and neutron flux systems for nuclear power plants, nuclear fuel cycle industry, nuclear research centers/accelerators, nuclear test reactors, medical isotope production facilities and nuclear military facilities.

Mirion is committed to protecting and respecting your privacy, and we’ll only use your personal information to administer your account and to provide the products and services you requested from us. From time to time, we would like to contact you about our products and services, as well as other content that may be of interest to you. If you consent to us contacting you for this purpose, please tick below to say how you would like us to contact you:

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Mirion is committed to protecting and respecting your privacy, and we’ll only use your personal information to administer your account and to provide the products and services you requested from us. From time to time, we would like to contact you about our products and services, as well as other content that may be of interest to you. If you consent to us contacting you for this purpose, please tick below to say how you would like us to contact you:

Sorry, something went wrong.
There was a problem with you form submission. Please try again later, or contact us by phone or email.
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  • Saturation proof
  • Large and steady sensitive length
  • Output signal: DC current starting at 1 pA
  • Compensation of gamma radiation (KNK 50)
  • LOCA proof (KNK 50 SAC)
  • The KNK/KNU 50 neutron ionization chambers are designed for neutron flux monitoring in ex-core positions. The neutron sensitivity of these ionization chambers is achieved by the coating of one electrode with enriched boron-10. Thermal neutrons react with the isotope boron-10 emitting alpha particles, which produces ionization in the gas within the detector. Their discharge on the electrodes causes charge pulses. These charge pulses are integrated to a DC current, which can be measured in the external circuit.

    Sales Phone: 770.432.2744
    Support Phone: 770.432.2744

    Support and Sales for Detection and Measurement and Radiation Monitoring Systems products in the Americas.

    Africa | Asia | Europe | Middle East | Pacific
    Landsberger Strasse 328a
    DE-80687 Munich Germany
    Sales Phone: +49 89 515 13-0
    Support Phone: +49 89 515 13-0

    Sales and Support for Radiation Monitoring Systems products.

    The DAK 250 digital start-up channel consists of either the DAK 250i for pulse range (BF3, B10-counters or fission chambers) or the DAK 250g for the intermediate range (ionization chambers) which has linear or logarithmic output signals and a reactor period signal with an optional module for reactivity calculation. The DAK 250 channel is also used for steam generator leak monitoring (N16).

    The DGK 250 power range channel uses linear signal processing and numeric calibration of one or two signal paths in PWR reactors and is used with a boron-coated neutron ionization chamber. In research reactors, the DGK 250 channel can use either/or uncompensated/compensated ion chambers and options include a peak pulse processor.

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