Characterisation of radiation tolerance of 7 commercial SDRs in order to be used in Space environment
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A_Commercial_65_nm_CMOS_Technology_for_Space_Applications__Heavy_Ion__Proton_and_Gamma_Test_Results_and_Modeling.pdf A Commercial 65 nm CMOS Technology for Space
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Ionizing_Radiation_Effects_on_CMOS_Technologies.pdf TID on CMOS
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LMS6002Dr2-DataSheet-1.2r0.pdf RF tranceiver BladeRF
MT25Q_QLJS_U_256_ABA_0_.pdf Wiki
Model_525-Temperature_Compensated_Crystal_Oscillator.pdf TCXO/VC-TCXO
Nuclear_radiation_Hardening_for_Electronics_Lockheed_missiles.pdf Ref 1
Prinzie2018_Chapter_RadiationEffectsInCMOSTechnolo.pdf General TID and SEE effects on CMOS
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Radiation_Effects_in_MMIC_Devices.pdf C. Barnes and L. Selva
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Report_on_Leakage_Current.pdf Ref 2
TCM1-63AX+.pdf RF_transformer_datasheet
b210.pdf Ettus B210 Schematic
drawing_2.png Radiation effects
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README.md

SDR Radiation Resistance evaluation

The goal of this activity is to evaluate the radiation resistance of common SDR architectures.

The activity will be conducted in two steps:

  1. Identify the key hardware components of commodity SDR hardware and characterize their radiation immunity
  2. Conduct experiments with a goal to:
    • Quantify the expected results
    • Identify RF performance degredation under radiation exposure
    • Propose simple and cost effective techniques to mitigate, in some part, the radiation impairements

For more information, you can visit the wiki

Website

This module is part of the SDR Makerspace project of the European Space Agency (ESA), implemented by Libre Space Foundation (LSF). For more indormation please visit our site.

License

ESA SDR Makerspace Activity ESA Libre Space Foundation