Single-event upsets (SEUs) affecting the configuration memory of a 28-nm field-programmable gate array (FPGA) have been studied through experiments and Monte Carlo modeling. This FPGA will be used in the front-end electronics of the electromagnetic calorimeter in PANDA (Antiproton Annihilation at Darmstadt), an upcoming hadron-physics experiment. Results from proton and neutron irradiations of the FPGA are presented and shown to be in agreement with previous experimental results. To estimate the mean time between SEUs during operation of PANDA, a Geant4-based Monte Carlo model of the phenomenon has been used. This model describes the energy deposition by particles in a silicon volume, the subsequent drift and diffusion of charges in the FPG...
The multi-purpose detector PANDA (antiProton Annihilation at Darmstadt) will be built at the antipro...
This article studies the impact of radiation-induced single-event effects (SEEs) in the Zynq-7000 fi...
This program was designed to introduce a plasma platform to examine the field programmable gate arra...
Single-event upsets (SEUs) affecting the configuration memory of a 28-nm field-programmable gate arr...
Single-event upsets in the configuration memory of the 28-nm Xilinx Kintex-7 FPGA, used in the PANDA...
The strong interaction between quarks and gluons is one of the fundamental interactions described by...
This paper provides an experimental study of the single-event upset (SEU) susceptibility against the...
International audienceA sensitivity characterization of a Xilinx Artix-7 field programmable gate arr...
Single Event Upsets in SRAM FPGA based readout electronics for the Time Projection Chamber in the AL...
Given the significant advantages of reprogrammable logic devices in terms of cost and design flexibi...
PANDA, the detector to study AntiProton ANnihilations at DArmstadt, will be installed at the future ...
This work proposes a novel methodology to evaluate SRAM-based FPGA's susceptibility with respect to ...
We introduce a new hardware/software platform for testing SRAM-based FPGAs under heavy-ion and neut...
Field programmable gate arrays (FPGAs) are getting more attention in safety-related and safety-criti...
The multi-purpose detector PANDA (antiProton Annihilation at Darmstadt) will be built at the antipro...
This article studies the impact of radiation-induced single-event effects (SEEs) in the Zynq-7000 fi...
This program was designed to introduce a plasma platform to examine the field programmable gate arra...
Single-event upsets (SEUs) affecting the configuration memory of a 28-nm field-programmable gate arr...
Single-event upsets in the configuration memory of the 28-nm Xilinx Kintex-7 FPGA, used in the PANDA...
The strong interaction between quarks and gluons is one of the fundamental interactions described by...
This paper provides an experimental study of the single-event upset (SEU) susceptibility against the...
International audienceA sensitivity characterization of a Xilinx Artix-7 field programmable gate arr...
Single Event Upsets in SRAM FPGA based readout electronics for the Time Projection Chamber in the AL...
Given the significant advantages of reprogrammable logic devices in terms of cost and design flexibi...
PANDA, the detector to study AntiProton ANnihilations at DArmstadt, will be installed at the future ...
This work proposes a novel methodology to evaluate SRAM-based FPGA's susceptibility with respect to ...
We introduce a new hardware/software platform for testing SRAM-based FPGAs under heavy-ion and neut...
Field programmable gate arrays (FPGAs) are getting more attention in safety-related and safety-criti...
The multi-purpose detector PANDA (antiProton Annihilation at Darmstadt) will be built at the antipro...
This article studies the impact of radiation-induced single-event effects (SEEs) in the Zynq-7000 fi...
This program was designed to introduce a plasma platform to examine the field programmable gate arra...