518 research outputs found
Development of a Digitalized Position Decoder Circuit for Brain PET consisting of Silicon Photomultiplier
A Monte Carlo Calculation of the Change in Dosimetric Properties on the Usage of Heavy Water for Boron Neutron Capture Therapy
Quantitative analysis on electric field variation in SiPMs for scintillation detection applications
Energy Response Characteristics of Several Neutron Measuring Devices Determined By Using the Scattered Neutron Calibration Fields of KAERI
Sensitivity Analysis of a Dynamic Food Chain Model DYNACON Considering Korean Agricultural Conditions
Optimum Design of Quenching Capacitor Integrated Silicon Photomultipliers for TOF-PET Application
AbstractThe prototype SiPM was designed and fabricated for MRI compatible PET using the customized CMOS process at National Nanofab Center in KAIST. The SiPM was designed to have a size of 3x3 mm2 composed of micro-cells of 65x65μm2 with a fill factor of 68%. The size of a micro-cell was determined by optimization between the photon detection efficiency (PDE) and the dynamic range for the photons of 511 keV from LYSO crystal. In the micro-cell structure, a specially designed quenching capacitor (QC) is added parallel to quenching resistor using the Metal-Insulator-Metal (MIM) process. This QC integrated SiPMs (QC-SiPM) was devised to realize rapid response of output pulses and to enhance the timing resolution of SiPM. Coincidence timing resolution of PET detectors depends on the output pulse shapes which are the convolution of the intrinsic pulse shape of scintillation crystals and the single photon pulse shape at the micro-cell in a SiPM. A quenching capacitor parallel to a quenching resistor provides a fast current path at the beginning stage of avalanche process, than reduces rising time of single photon pulse shape. In this study the rise time of the QC-SiPM signal was analyzed to be 22.5ns while that for the regular SiPM was 34.3ns
Development of a Valid Signals Selecting and Position Decoding ASIC for PET using Silicon Photomultiplier
- …
