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Noise and Breakdown Characterization of SPAD Detectors with Time-Gated Photon-Counting Operation., , , and . Sensors, 21 (16): 5287 (2021)Transient Response of a 0.35µm CMOS SPAD with Thick Absorption Zone., , , and . ICECS, page 9-12. IEEE, (2018)A processing approach for a correlating time-of-flight range sensor based on a least squares method., , , and . SAS, page 355-359. IEEE, (2014)Photodetection characterization of SPADs fabricated in 0.35µm PIN photodiode and high voltage CMOS technologies., , , , and . MIPRO, page 230-234. IEEE, (2022)Building reliable systems-on-chip in nanoscale technologies., , , , , , and . Elektrotech. Informationstechnik, 132 (6): 301-306 (2015)Development of a frequency-shifted feedback fiber laser at 777.5 nm for range sensing applications., , and . SAS, page 28-32. IEEE, (2014)Monolithic Receiver with Nine Single-Photon Avalanche Diodes., , , , , and . MIPRO, page 275-279. IEEE, (2023)Multi-Channel Gating Chip in 0.18 µm High-Voltage CMOS for Quantum Applications., , , , , , and . Sensors, 23 (24): 9644 (December 2023)A 33 × 25 µm2 low-power range finder., , and . ISCAS, page 922-925. IEEE, (2012)Comprehensive Modeling of Photon Detection Probability in CMOS-based SPADs., , , , and . IEEE SENSORS, page 1-4. IEEE, (2020)