scholarly journals The Florence Trigger-Box (FTB) project: An FPGA-based configurable and scalable trigger system

Author(s):  
P. Ottanelli ◽  
G. Pasquali ◽  
L. Baldesi ◽  
S. Barlini ◽  
R. Bolzonella ◽  
...  
Keyword(s):  
Author(s):  
Sam Dekkers ◽  
Yu Nakazawa ◽  
Yuki Fujii ◽  
Hisataka Yoshida ◽  
Ting Sam Wong ◽  
...  

2020 ◽  
Vol 1468 ◽  
pp. 012155
Author(s):  
Atsuto Takeuchi ◽  
Nanami Kawada
Keyword(s):  

2019 ◽  
Vol 214 ◽  
pp. 01037
Author(s):  
Marco Boretto

The aim of the NA62 experiment is to study the extreme rare kaon decay K+ ? π+vv and to measure its branching ratio with a 10% accuracy. In order to do so, a very high intensity beam from the CERN SPS is used to produce charged kaons whose decay products are detected by many detectors installed along a 60 m decay region. The NA62 Data Acquisition system (DAQ) exploits a multi-level trigger system; following a Level0 (L0) trigger decision, 1 MHz data rate from about 60 sources is read by a PC-farm, the partial event is built and then passed through a series of Level1 (L1) algorithms to further reduce the trigger rate. Events passing this level are completed with the missing, larger, data sources (~400 sources) at the rate of 100 KHz. The DAQ is built around a high performance ethernet network interconnecting the detectors to a farm of 30 servers. After an overall description of the system design and the main implementation choices that allowed to reach the required performance and functionality, this paper describes the overall behaviour of the DAQ in the 2017 data taking period. It then concludes with an outlook of possible improvements and upgrades that may be applied to the system in the future.


Author(s):  
D. Nelson ◽  
E. Ormond ◽  
S. Cordova ◽  
I. Molina ◽  
J. Smith ◽  
...  
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2021 ◽  
Vol 9 (2) ◽  
pp. 20-30
Author(s):  
A. Vorob'ev ◽  
Vladimir Dyachenko ◽  
Kirill Aleksandrovich Vorobyev

Have been presented the trigger mechanisms of accidents emergence in different Earth's Geospheres. Has been given the definition for the trigger mechanism of initiation of changes in geosystems. The threshold value for the starting (initiating) trigger signal has been detailed. The graphic representation of work of a trigger system has been presented, and its functioning has been explained. Various ways for switching of a trigger system have been revealed. The principles of the trigger impact on the troposphere, the lower part of the Earth's atmosphere, initiation of cyclones and earthquakes, and descent of avalanches and glacial mudflows have been detailed.


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