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Abstrakty
This article presents an application of a novel technique for precise measurements of time and charge based solely on a field programmable gate array (FPGA) device for positron emission tomography (PET). The described approach simplifies electronic circuits, reduces the power consumption, lowers costs, merges front-end electronics with digital electronics, and also makes more compact final design. Furthermore, it allows to measure time when analog signals cross a reference voltage at different threshold levels with a very high precision of ~15 ps (rms) and thus enables sampling of signals in a voltage domain.
Czasopismo
Rocznik
Tom
Strony
41--45
Opis fizyczny
Bibliogr. 7 poz., rys., wykr.
Twórcy
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
- Faculty of Chemistry, Jagiellonian University, Kraków, Poland
autor
- Faculty of Chemistry, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Świerk Computing Centre, National Centre for Nuclear Research, Otwock-Swierk, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Chemistry, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Świerk Computing Centre, National Centre for Nuclear Research, Otwock-Swierk, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Świerk Computing Centre, National Centre for Nuclear Research, Otwock-Swierk, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
autor
- Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, Kraków, Poland
Bibliografia
- 1. Moskal P, Salabura P, Silarski M, Smyrski J, Zdebik J, Zieliński M. Novel detector systems for the positron emission tomography. Bio-Algorithms Med-Syst 2O11;7:73; arXiv: 1305.5187.
- 2. Moskal P, Bednarski T, Białas P, Ciszewska M, Czerwiński E, Heczko A, et al. Strip-PET: a novel detector concept for the TOF-PET scanner. Nucl Med Rev 2012;15:C68; arXiv: 1305.5562.
- 3. Moskal P, Bednarski T, Białas P, Ciszewska M, Czerwiński E, Heczko A, et al. TOF-PET detector concept based on organic scintillators. Nucl Med Rev 2012;15:C81; arXiv: 1305.5559.
- 4. Wu I, Hansen S, Shi Z. ADC and TDC implemented using FPGA. FERMILAB-CONF-07-601-E.
- 5. Kalisz J, Szplet R, Pasierbinski J, Poniecki A. Field programmable gate array based time-to-digital converter with 2OO-ps resolution. IEEE Trans Instrum Measure 1997;46:51-5.
- 6. Wu J, Shi Z. The 10-ps wave union TDC: improving FPGA TDC resolution beyond its cell delay. IEEE Nuclear Science Symposium Conference, October 19-25, 2008.
- 7. Traxler M, Bayer E, Kajetanowicz M, Korcyl G, Maier L, Michel J, et al. A compact system for high precision time measurements (<14 ps RMS) and integrated data acquisition for a large number of channels. J Instrum 2011;6:C12004.
Typ dokumentu
Bibliografia
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