A 32-channels readout ASIC for X-ray spectrometry and tracking in the GAPS experiment

Here this work describes the architecture and the experimental results from the characterization of a 32-channels mixed-signal Application-Specific Integrated Circuit (ASIC) developed for the readout of the lithium-drifted silicon, Si(Li), detectors of the General AntiParticle Spectrometer (GAPS) ex...

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Published inIEEE transactions on nuclear science Vol. 71; no. 1
Main Authors Manghisoni, Massimo, Ghislotti, Luca, Lazzaroni, Paolo, Re, Valerio, Riceputi, Elisa, Ratti, Lodovico, Fabris, Lorenzo, Boezio, Mirko, Zampa, Gianluigi
Format Journal Article
LanguageEnglish
Published United States IEEE 28.11.2023
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Abstract Here this work describes the architecture and the experimental results from the characterization of a 32-channels mixed-signal Application-Specific Integrated Circuit (ASIC) developed for the readout of the lithium-drifted silicon, Si(Li), detectors of the General AntiParticle Spectrometer (GAPS) experiment dedicated to searching for dark matter. The instrument is designed for the identification of antiprotons, antideuterons and antihelium nuclei from cosmic rays during an Antarctic balloon mission scheduled for late 2024. A full custom integrated circuit, named SLIDER32 (32-channels Si-LI DEtector Readout) ASIC, has been produced in a commercial 180 nm CMOS technology. The ASIC is comprised of 32 low-noise analog readout channels featuring dynamic signal compression to comply with the wide input range, an 11-bit SAR ADC and a digital back-end section which is responsible for channel setting and for sending digital information to the data acquisition system (DAQ). The circuit design criteria and the experimental results are discussed in the paper.
AbstractList Here this work describes the architecture and the experimental results from the characterization of a 32-channels mixed-signal Application-Specific Integrated Circuit (ASIC) developed for the readout of the lithium-drifted silicon, Si(Li), detectors of the General AntiParticle Spectrometer (GAPS) experiment dedicated to searching for dark matter. The instrument is designed for the identification of antiprotons, antideuterons and antihelium nuclei from cosmic rays during an Antarctic balloon mission scheduled for late 2024. A full custom integrated circuit, named SLIDER32 (32-channels Si-LI DEtector Readout) ASIC, has been produced in a commercial 180 nm CMOS technology. The ASIC is comprised of 32 low-noise analog readout channels featuring dynamic signal compression to comply with the wide input range, an 11-bit SAR ADC and a digital back-end section which is responsible for channel setting and for sending digital information to the data acquisition system (DAQ). The circuit design criteria and the experimental results are discussed in the paper.
Author Manghisoni, Massimo
Lazzaroni, Paolo
Zampa, Gianluigi
Riceputi, Elisa
Ratti, Lodovico
Boezio, Mirko
Fabris, Lorenzo
Ghislotti, Luca
Re, Valerio
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  organization: Istituto Nazionale di Fisica Nucleare (INFN), Trieste (Italy); Institute for Fundamental Physics of the Universe (IFPU), Trieste (Italy)
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  fullname: Zampa, Gianluigi
  organization: Istituto Nazionale di Fisica Nucleare (INFN), Trieste (Italy)] (ORCID:0000000302384469
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Snippet Here this work describes the architecture and the experimental results from the characterization of a 32-channels mixed-signal Application-Specific Integrated...
SourceID osti
SourceType Open Access Repository
SubjectTerms calibration
capacitance
CMOS
data acquisition
detectors
dynamic signal compression
front-end
INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY
leakage currents
low-noise
registers
strips
Title A 32-channels readout ASIC for X-ray spectrometry and tracking in the GAPS experiment
URI https://www.osti.gov/biblio/2229207
Volume 71
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