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The new data acquisition system of the LAGO Collaboration based on the Redpitaya board

机译:基于Redpitaya Board的LAGO协作新数据采集系统

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The present work describes the results obtained in the development of the new Data Acquisition System (DAQ) that will be used by the Latin American Giant Observatory (LAGO) Collaboration. According to the requirements of the Water Cherenkov Detectors (WCD) used in LAGO, the new system must be capable of recording fast pulses (~ns) from a photomultiplier (PMT), control the high voltage level applied to it, in addition to monitoring the atmospheric conditions in which the data were taken. Some figures of merit are shown, indicating the performance of the new system working with a WCD. The DAQ is based on a commercial board plus a custom-made interface board. This implementation includes scalers, sub-scalers, an automatic baseline correction algorithm, pressure & temperature sensing, geolocalization, an external trigger and the capability to set and monitor the high voltage applied to the PMT. The flexibility in the design of the system allows to adapt it to different particle detector technologies, such as silicon photomultipliers, resistive plate chambers and scintillators. Preliminary results prove the validity, reliability and high performance of the system.
机译:目前的作品描述了在拉丁美洲巨型天文台(LAGO)合作中将使用的新数据采集系统(DAQ)中获得的结果。根据LAGO中使用的水Cherenkov探测器(WCD)的要求,新系统必须能够从光电倍增管(PMT)记录快速脉冲(〜NS)​​,除了监控外还控制应用于它的高电压电平。采用数据的大气条件。显示了一些优点的数字,表明新系统与WCD一起使用的性能。 DAQ基于商业板加上定制界面板。该实现包括缩放器,子缩放器,自动基线校正算法,压力和温度传感,地理化,外部触发和设置和监控施加到PMT的高压的能力。系统设计中的灵活性允许将其适应不同的粒子检测器技术,例如硅光电倍增器,电阻板腔室和闪烁体。初步结果证明了系统的有效性,可靠性和高性能。

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