Title :
60-Channel 10 μs Time-Resolution Counter Array for Long Term Continuous Event Counting
Author :
Audino, D. ; Baronti, F. ; Roncella, R. ; Saletti, R. ; Tisa, S. ; Zappa, F. ; Belluso, M. ; Bonanno, G.
Author_Institution :
Univ. of Pisa, Pisa
fDate :
6/1/2007 12:00:00 AM
Abstract :
Experiments in nuclear physics, biomedicine and astronomy often require pulse-counting electronics for large numbers of channels. This paper describes an event-counting system attached to 60 channels of an innovative monolithic array of single- photon avalanche diodes (SPADA) intended for astronomical use. The system can capture events with pulse-counting rates of up to 20 MHz, a minimum integration time of 10 mus, which results in a data acquisition rate of 100 000 frames per second. It can also store several hours´ worth of data. This performance is achieved in a system that offers a high degree of flexibility, is small in size and has a low cost. The implementation is based on a commercial-off-the-shelf (COTS) single board, fitted with an FPGA and a DSP. This board is connected to a PC by means of an IEEE 1394 high-speed serial link which stores the collected data and functions as a TCP/IP server. The data acquisition parameters, as well as the collected data, can be accessed by means of a custom-designed interface running on a TCP/IP client. A proof-of-concept system has been assembled and some test stand results are presented and discussed.
Keywords :
data acquisition; digital signal processing chips; field programmable gate arrays; nuclear electronics; DSP; FPGA; commercial-off-the-shelf single board; data acquisition; long term continuous event counting; pulse-counting electronics; single-photon avalanche diodes; Astronomy; Costs; Counting circuits; Data acquisition; Digital signal processing; Diodes; Field programmable gate arrays; Nuclear electronics; Nuclear physics; TCPIP; Astronomy; counting circuits; digital signal processors; field programmable gate arrays; imaging; radiation detectors;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2007.893533