The Radiation Hardness Assurance Facility at INFN-LNS Catania for the Irradiation of Electronic Components in Air

Nuclear Science, IEEE Transactions(2010)

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摘要
This paper describes the beam flux monitoring system that has been developed at the Superconducting Cyclotron at INFN-LNS (Istituto Nazionale di Fisica Nucleare, Laboratori Nazionali del Sud, Catania, Italy) in order to monitor the beam parameters such as energy, flux, beam profile, for SEE (Single Event Effects) cross-sections determination and DD (Displacement Damage) studies. In order to have an accurate and continuous monitoring of beam parameters we have developed fully automatic dosimetry setup to be used during SEE (with heavy ions) and DD (with protons up to 60 MeV) tests of electronic devices and systems. The final goal of our activity is to demonstrate that the operation of such a system in air is not detrimental to the accuracy on controlling the beam profile, energy and fluence delivered onto the DUT (Device Under Test) surface, even with non relativistic heavy ions. We have tested our beam monitoring system with the “Reference SEU monitor” developed by ESA/ESTEC, the results are discussed here.
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reference SEU monitor,ion accelerators,irradiation,electronic component,single event effect,electronic component irradiation,nonrelativistic heavy ion,beam flux monitoring system,DUT surface,nonrelativistic heavy ions,proton effects,radiation hardness assurance facility,infn-lns catania,automatic dosimetry,Dosimetry,see cross-sections determination,single event effects,displacement damage,radiation tests,particle beam diagnostics,semiconductor device testing,LNS superconducting cyclotron,dosimetry,device under test,electronic devices,beam parameter monitoring,INFN-LNS Catania,dut,automatic dosimetry setup,heavy ion accelerators,radiation effects,cyclotrons
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