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Scharenberg, L.; Bortfeldt, Jonathan ORCID logoORCID: https://orcid.org/0000-0002-0777-985X; Brunbauer, F.; Christensen, M.J.; Desch, K.; Flöthner, K.; Garcia, F.; Janssens, D.; Kaminski, J.; Lisowska, M.; Lupberger, M.; Muller, H.; Oliveri, E.; Orlandini, G.; Pfeiffer, D.; Ropelewski, L.; Rusu, A.; Samarati, J.; Schwäbig, P.; Stenis, M. van und Veenhof, R. (2022): Development of a high-rate scalable readout system for gaseous detectors. Topical Workshop on Electronics for Particle Physics, Bergen, Norway, 19–23 September 2022. Journal of Instrumentation. Bd. 17, Nr. 12, C12014 IOP.

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Abstract

The RD51 collaboration developed the Scalable Readout System (SRS) as part of its R&D activities on Micro-Pattern Gaseous Detectors. This common multi-purpose readout system allows to read out small R&D detectors (0.2k channels) up to mid-sized experiments with multiple detectors (2.5k to 5k channels). To cope with increased demands on detectors, electronics and readout speed, a new front-end ASIC—the VMM3a—was integrated into the SRS. This led to the development of a scalable, self-triggered high-rate readout system that provides energy, space and time information of the interacting particles at the same time.

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