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Quenching Circuit and SPAD Integrated in CMOS 65 nm with 7.8 ps FWHM Single Photon Timing Resolution
Autor:
Frédéric Nolet, Samuel Parent, Nicolas Roy, Marc-Olivier Mercier, Serge A. Charlebois, Réjean Fontaine, Jean-Francois Pratte
Publikováno v:
Instruments, Vol 2, Iss 4, p 19 (2018)
This paper presents a new quenching circuit (QC) and single photon avalanche diode (SPAD) implemented in TSMC CMOS 65 nm technology. The QC was optimized for single photon timing resolution (SPTR) with a view to an implementation in a 3D digital SiPM
Externí odkaz:
https://doaj.org/article/913be555e7de4ef49cac03642b188f8e
Autor:
Marc-Olivier Mercier, Frédérik Dubois, N. Roy, F. Nolet, Rejean Fontaine, Jean-Francois Pratte
Publikováno v:
IEEE Transactions on Radiation and Plasma Medical Sciences. 1:486-494
Time-of-flight measurements are becoming essential to the advancement of several fields, such as preclinical positron emission tomography and high energy physics. Recent developments in single photon avalanche diode (SPAD)-based detectors have spawne
Quenching Circuit and SPAD Integrated in CMOS 65 nm with 7.8 ps FWHM Single Photon Timing Resolution
Autor:
Jean-Francois Pratte, Marc-Olivier Mercier, Rejean Fontaine, Serge A. Charlebois, N. Roy, F. Nolet, S. Parent
Publikováno v:
Instruments, Vol 2, Iss 4, p 19 (2018)
Instruments
Volume 2
Issue 4
Instruments
Volume 2
Issue 4
This paper presents a new quenching circuit (QC) and single photon avalanche diode (SPAD) implemented in TSMC CMOS 65 nm technology. The QC was optimized for single photon timing resolution (SPTR) with a view to an implementation in a 3D digital SiPM