Author:
Valerio P.,Cardarelli R.,Iacobucci G.,Paolozzi L.,Ripiccini E.,Hayakawa D.,Bruno S.,Caltabiano A.,Kaynak M.,Rücker H.,Nessi M.
Abstract
Time-of-flight measurement is an important advancement in PET scanners to improve image reconstruction with a lower delivered radiation dose. This article describes the monolithic ASIC for the TT-PET project, a novel idea for a high-precision PET scanner for small animals. The chip uses a SiGe Bi-CMOS process for timing measurements, integrating a fully-depleted pixel matrix with a low-power BJT-based front-end per channel, integrated on the same 100 μm thick die. The target timing resolution of the scanner is 30 ps RMS for electrons from the conversion of 511 keV photons. The system will include 1.6 million channels across almost 2000 different chips. A full-featured demonstrator chip with a 3×10 matrix of 500×500 μm2 pixels was fabricated to validate each block. Its design and experimental results are presented here.
Subject
Mathematical Physics,Instrumentation
Cited by
6 articles.
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