简介: |
报告摘要:The research work at The University of Chicago on the TOF-PET instrumentation with transmission-line and Multi Gsps waveform sampling readout method will be presented. The transmission line and waveform sampling readout can tremendously reduce the readout channels, especially if the detector is in pixelated configuration, such as in the use of large scale of MCP and SiPM. This novel readout method presents one of the best timing, energy and special resolutions in low cost in the development of advanced TOF-PET instrumentation compared to the conventional techniques commercially used today. Some fundamental basics of TOF-PET instrumentation and the advanced TOF-PET ideas and approaches are also covered in this presentation.
报告人简介:Fukun Tang, Senior Research and Electronics Engineer in Enrico Fermi Institute, The university of Chicago, Member of Scientific Advisory Committee of Computer Applications in Nuclear and Plasma Sciences, IEEE. Currently He is working in ATLAS Tile Calorimeter front-end readout and data acquisition system for Phase II upgrade project. Trigger electronics for ATLAS Fast Tracker Trigger (FTK) project and Trigger electronics for ATLAS Global Feature Extractor (gFEX) project, as well as analog signal processing for Multichannel Plate (MCP) detector in TOF-PET nuclear medical instrumentation. Mainly focusing on the system integration, board level circuits design and ASIC chip design, as well as electronics system modeling and simulations.
第212期“论坛”主请人联系方式: 龚光华 62784552 ggh@tsinghua.edu.cn |