As a pathfinder for the JEM-EUSO mission, Mini-EUSO is a 25cm diameter telescope which is going to be launched and positioned inside the International Space Station (ISS) in 2018. The main scientific goal of this mission is the achievement of a state-of-the-art UV map of the Earth from a 400 Km altitude, with ∼ 6 km of pixel spatial resolution, collecting data though a multi-level triggering system. The signal is collected with Multi-Anode Photo Multiplier Tubes (MAPMTs) and digitized by means of custom chips. The raw data moves then to a central system, the Zynq Board, where the trigger operates a data selection dividing different classes of events characterized by specific time scales. The acquired UV map will be used as discrimination threshold for the Extreme Energy Cosmic-Ray detection.

A Multi-Level Triggering System for the Mini-EUSO UV Telescope / Fausti, Federico; Bertaina, Mario; Miyamoto, Hiroko; Fenu, Francesco; Mignone, Marco; Durando, Stefano; D'Ago, Daniele; Capel, Francesca; Belov, Alexander; Klimov, Pavel. - ELETTRONICO. - Proceedings of Science:(In corso di stampa). (Intervento presentato al convegno Topical Workshop on Electronics for Particle Physics 2017 tenutosi a Santa Cruz, California nel 11-15 Settembre 2017).

A Multi-Level Triggering System for the Mini-EUSO UV Telescope

FAUSTI, FEDERICO;Durando Stefano;
In corso di stampa

Abstract

As a pathfinder for the JEM-EUSO mission, Mini-EUSO is a 25cm diameter telescope which is going to be launched and positioned inside the International Space Station (ISS) in 2018. The main scientific goal of this mission is the achievement of a state-of-the-art UV map of the Earth from a 400 Km altitude, with ∼ 6 km of pixel spatial resolution, collecting data though a multi-level triggering system. The signal is collected with Multi-Anode Photo Multiplier Tubes (MAPMTs) and digitized by means of custom chips. The raw data moves then to a central system, the Zynq Board, where the trigger operates a data selection dividing different classes of events characterized by specific time scales. The acquired UV map will be used as discrimination threshold for the Extreme Energy Cosmic-Ray detection.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2686485
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