DocumentCode :
819629
Title :
Very high dynamic range and high sampling rate VME digitizing boards for physics experiments
Author :
Breton, Dominique ; Delagnes, Eric ; Houry, Michael
Author_Institution :
CNRS/LAL, Orsay
Volume :
52
Issue :
6
fYear :
2005
Firstpage :
2853
Lastpage :
2860
Abstract :
The trend in data acquisition systems for modern physics experiments is to digitize analog signals closer and closer to the detector. The digitization systems have followed the progress of commercial analog to digital converters. The state of the art for these devices is currently 225 MSample/s for a 10 to 12 bit range. The new boards, described in this paper, have been designed to improve these performances by an order of magnitude. In its simplest version, this board mainly includes 4 channels sampling analog data up to 2 GSample/s with an analog bandwidth of 300 MHz, and digitizing it with a 12-bit dynamic range. It is based on the custom-designed MATACQ chip. The latter´s innovative design permits reaching these performances with power consumption smaller than 1 W. The boards are triggerable either by internal or external signals and several boards are easily synchronizable. The board integrates both GPIB and VME interfaces that permit a maximum readout speed of 500 events/s with the whole memory depth of the 4 channels read
Keywords :
analogue-digital conversion; application specific integrated circuits; high energy physics instrumentation computing; nuclear electronics; readout electronics; GPIB; VME interfaces; analog signals; analog to digital converters; application specific integrated circuits; custom-designed MATACQ chip; data acquisition systems; digitization systems; external signal; internal signal; physics experiments; power consumption; readout speed; Analog memory; Analog-digital conversion; Data acquisition; Detectors; Dynamic range; Energy consumption; Frequency conversion; Frequency synchronization; Physics; Sampling methods; Analog memories; analog-to-digital conversion (ADC); application-specific integrated circuits; very-high-speed integrated circuits;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2005.860165
Filename :
1589289
Link To Document :
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