Title :
A low-noise, wide-band CMOS charge-sensitive preamplifier for use with APD/LSO PET detectors
Author :
Paulus, Michael J. ; Rochelle, James M. ; Andreaco, Mark S. ; Binkley, David M.
Author_Institution :
CTI Inc., Knoxville, TN, USA
Abstract :
The recent emergence of LSO as a potential scintillator for positron emission tomography (PET) and recent improvements in avalanche photodiode (APD) technology offer encouragement that an APD/LSO based PET detector may be commercially viable in the near future. An important component of any APD/LSO based PET detector will be the preamplifier used to read out the low-level detector signals. Due to the large number of detectors (>18,000) in a high-resolution PET scanner, the preamplifier must be implemented as a monolithic integrated circuit. Additionally, in order to achieve the timing resolution required for high resolution PET, the preamplifier must have a large band-width and a low equivalent input noise voltage. This paper presents a CMOS charge-sensitive preamplifier design which uses local feedback to improve the performance of the common gate transistor. The modified cascode circuit is analyzed and compared with a previously reported simple folded cascode circuit. A prototype circuit was fabricated in a 2 μm NWELL CMOS process. The prototype amplifier has a measured 10-90% rise-time of 7 ns with an external input capacitance of ~6 pF and has an equivalent input noise voltage of ~1.1 nV/rt-Hz above the flicker noise corner. A pulse height resolution of 14.3% FWHM and a timing resolution of 1.57 ns FWHM (vs. plastic) were obtained with the preamplifier, an Advanced Photonix 5 mm diameter beveled-edge APD and 3.5×3.5×22 mm3 Teflon wrapped LSO crystal
Keywords :
CMOS integrated circuits; application specific integrated circuits; avalanche photodiodes; detector circuits; nuclear electronics; positron emission tomography; preamplifiers; scintillation counters; 2 μm NWELL CMOS process; APD PET detectors; CMOS charge-sensitive preamplifier; FWHM; LSO PET detectors; avalanche photodiode; bandwidth; common gate transistor; equivalent input noise voltage; external input capacitance; flicker noise corner; folded cascode circuit; high-resolution PET scanner; local feedback; low-level detector signal readout; low-noise wide-band CMOS charge-sensitive preamplifier; modified cascode circuit; monolithic integrated circuit; positron emission tomography; pulse height resolution; rise-time; scintillator; timing resolution; Circuits; Detectors; Positron emission tomography; Preamplifiers; Prototypes; Pulse amplifiers; Signal resolution; Timing; Voltage; Wideband;
Conference_Titel :
Nuclear Science Symposium and Medical Imaging Conference Record, 1995., 1995 IEEE
Conference_Location :
San Francisco, CA
Print_ISBN :
0-7803-3180-X
DOI :
10.1109/NSSMIC.1995.504238