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xrayshaker authored Sep 17, 2024
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Expand Up @@ -51,7 +51,7 @@ <h2>Technical Specifications</h2>
<li><span>Open design: </span> Hardware and software designs are fully open-source, enabling reproducibility and customization</li>
<li><span>Affordable: </span> Total cost to build one is below $100</li>
<li><span>Compact: </span> Small in size, measuring 73 mm x 42 mm x 23 mm with the case</li>
<li><span>Accurate: </span> Current software version enables dose rate accuracy between around <b>0.5 µSv/h to 1 mSv/h</b>20% accuracy), with an upcoming software upgrade enabling up to 50 mSv/h (in development)</li>
<li><span>Accurate: </span> Current software version enables dose rate accuracy between around <b>0.1 µSv/h to 1 mSv/h</b>25% accuracy), with an upcoming software upgrade enabling up to 50 mSv/h (in development)</li>
<li><span>Battery-powered: </span> Up to 20 hours of battery life (<70 mA @ 3.7V, 1200 mAh LiPo battery)</li>
<li><span>Calibratable: </span> Using Am-241 from any household ionization smoke detector for spectral/dose calibration </li>
<li><span>Real-time: </span> Direct feedback on radiation exposure, compared to passive dosimeters (e.g., OSL or TLD badges) requiring external readout</li>
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