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Detectors For Ionizing Radiation

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Atomic particles with sufficient kinetic energy and X-rays can be detected directly via their absorption on the crystal lattice or indirectly via scintillators with silicon radiation detectors. This can require very high absorption volumes and extremely low dark currents, in some cases with fully depleted wafers. First Sensor offers solutions for energy-dispersive spectroscopy. Special features Wafer thickness up to 700 µm Very low dark current signals Very low capacitance levels Minimal series resistance at full depletion Order # Chip Package Active Area Size (mm) Area (mm²) Dark current (nA) Capacitance (pF) Gamma- energy (KeV) Scintillator CsI (TI) γ-window 50190301 X5-γ TO8S Ø 2.52 5 0.01 2.5 >1 no Ø 6 mm Download 50190401 X10-γ TO8Si Ø 3.75 10 0.02 4.5 >1 no Ø 6 mm Download 50190001 X10-γ TO8S Sc Ø3.75 10 0.02 4.5 2…>1000 yes Ø 6 mm Download 501907 X10-6 TO39 Ø 3.57 10 0.5 18 >5 no epoxy dome Download 501401 X100-7 LCC10 10 x 10 100 3 80 >5 no black epoxy Download 501400 X100-7 CerPin 10 x 10 100 3 80 >5 no black epoxy Download 501444 X100-7.2 LCC10 10 x 10 100 5 80 >5 no aluminum Download 50144501 X100-7.2 CerPin 10 x 10 100 5 80 >5 no aluminum Download 50147702 X100-7 CerPin 10 x 10 100 5 80 5..>1000 4 mm white coating Download 50147701 X100-7 CerPin 10 x 10 100 5 80 5..>1000 8 mm white coating Download

Detectors For Ionizing Radiation

Detectors For Ionizing Radiation

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Yes! I am interested
FOB Price : Get Price

Atomic particles with sufficient kinetic energy and X-rays can be detected directly via their absorption on the crystal lattice or indirectly via scintillators with silicon radiation detectors. This can require very high absorption volumes and extremely low dark currents, in some cases with fully depleted wafers. First Sensor offers solutions for energy-dispersive spectroscopy. Special features Wafer thickness up to 700 µm Very low dark current signals Very low capacitance levels Minimal series resistance at full depletion

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