ÚTEFČVUT Ústav technické a experimentální fyziky ČVUT v PrazeInstitute of Experimental and Applied Physics, CTU in Prague

Katherine: Ethernet Embedded Readout Interface for Timepix3

NázevTitle
Katherine: Ethernet Embedded Readout Interface for Timepix3Katherine: Ethernet Embedded Readout Interface for Timepix3
Druh výsledkuResult type
Článek v časopiseJournal article
AutořiAuthors
P. Burian, P. Broulim, M. Jára, V. Georgiev, B. Bergmann
Klíčová slovaKeywords
pixel detector, Detector control systems, electronic detector readout concepts, Radiation hard electronics, Timepix, Medipix family
KonferenceConference
19th International Workshop on Radiation Imaging Detectors (Krakow, Poland, 2017-07-02)
DOIDOI
10.1088/1748-0221/12/11/C11001
Časopis / citaceJournal / citation
Journal of Instrumentation 12(11), C11001-C11001 (2017) · ISSN 1748-0221
RokYear
2017
JazykLanguage
eng
ZáznamyRecords
ProjektProject
Urychlovač Van de Graaff - laditelný zdroj monoenergetických neutronů a lehkých iontůVan de Graaff Accelerator - a Tunable Source of Monoenergetic Neutrons and Light Ions; Centrum pokročilých jaderných technologiíCentre for Advanced Nuclear Technologies
CitovánoCited by
44 (INSPIRE-HEP)
2018: 42019: 42020: 82021: 62022: 22023: 62024: 62025: 62026: 2
Plný text (open access)Full text (open access)
https://iopscience.iop.org/article/10.1088/1748-0221/12/11/C11001/pdf
Citace ke staženíDownload citation
TXT · BibTeX

AbstraktAbstract

The Timepix3 - the latest generation of hybrid particle pixel detectors of Medipix family - yields a lot of new possibilities, i.e. a high hit-rate, a time resolution of 1.56 ns, event data-driven readout mode, and the capability of measuring the Time-over-Threshold (ToT - energy) and the Time-of-Arrival (ToA) simultaneously. This paper introduces a newly developed readout device for the Timepix3, called "Katherine", featuring a Gigabit Ethernet interface. The primary benefit of the Katherine is the operation of Timepix3 at long distance (up to 100 m) from computer or server, which is advantageous for the installation at beam lines, where the access is difficult or where radiation levels are too high for human interventions. The maximal hit-rate is limited by the bandwidth of the Ethernet connection (peer-to-peer connection; up to 16 Mhit/s). Since the Katherine interface is equipped with a processor of high computational power (ARM Cortex-A9 dual-core processor), it permits the use as a stand-alone (autonomous) radiation detector. The key features of the device are described in detail. These are the implemented high voltage power supply offering both polarities of bias voltage (up to ±300 V), the automatic data sending to a sever via SSH, the automatic compensation of ToA values from columns with shifted matrix clock, etc. A dedicated control software was developed, which can be used for the detector preparation (sensor equalization, the DACs dependency scan, and the THL scan) and measurement control. Measured energy spectra from photon fields are shown.

The Timepix3 - the latest generation of hybrid particle pixel detectors of Medipix family - yields a lot of new possibilities, i.e. a high hit-rate, a time resolution of 1.56 ns, event data-driven readout mode, and the capability of measuring the Time-over-Threshold (ToT - energy) and the Time-of-Arrival (ToA) simultaneously. This paper introduces a newly developed readout device for the Timepix3, called "Katherine", featuring a Gigabit Ethernet interface. The primary benefit of the Katherine is the operation of Timepix3 at long distance (up to 100 m) from computer or server, which is advantageous for the installation at beam lines, where the access is difficult or where radiation levels are too high for human interventions. The maximal hit-rate is limited by the bandwidth of the Ethernet connection (peer-to-peer connection; up to 16 Mhit/s). Since the Katherine interface is equipped with a processor of high computational power (ARM Cortex-A9 dual-core processor), it permits the use as a stand-alone (autonomous) radiation detector. The key features of the device are described in detail. These are the implemented high voltage power supply offering both polarities of bias voltage (up to ±300 V), the automatic data sending to a sever via SSH, the automatic compensation of ToA values from columns with shifted matrix clock, etc. A dedicated control software was developed, which can be used for the detector preparation (sensor equalization, the DACs dependency scan, and the THL scan) and measurement control. Measured energy spectra from photon fields are shown.

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