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Characterization results of the JUNGFRAU full scale readout ASIC

Authors :
M. Brueckner
M. Ramilli
Xintian Shi
J. H. Jungmann-Smith
G. Tinti
Aldo Mozzanica
Davide Mezza
Roberto Dinapoli
C. Ruder
L Schaedler
S. Cartier
D. Maliakal
Dominic Greiffenberg
Bernd Schmitt
Anna Bergamaschi
Source :
Journal of Instrumentation. 11:C02047-C02047
Publication Year :
2016
Publisher :
IOP Publishing, 2016.

Abstract

The two-dimensional pixel detector JUNGFRAU is designed for high performance photon science applications at free electron lasers and synchrotron light sources. It is developed for the SwissFEL currently under construction at the Paul Scherrer Institut, Switzerland. The detector is a hybrid pixel detector with a charge integration readout ASIC characterized by single photon sensitivity and a low noise performance over a dynamic range of 104 12 keV photons. Geometrically, a JUNGFRAU readout chip consists of 256×256 pixels of 75×75 μm2. The chips are bump bonded to 320 μm thick silicon sensors. Arrays of 2×4 chips are tiled to form modules of 4×8 cm2 area. Several multi-module systems with up to 16 Mpixels per system will be delivered to the two end stations at SwissFEL. The JUNGFRAU full scale readout ASIC and module design are presented along with characterization results of the first systems. Experiments from fluorescence X-ray, visible light illumination, and synchrotron irradiation are shown. The results include an electronic noise of ~50 electrons r.m.s., which enables single photon detection energies below 2 keV and a noise well below the Poisson statistical limit over the entire dynamic range. First imaging experiments are also shown.

Details

ISSN :
17480221
Volume :
11
Database :
OpenAIRE
Journal :
Journal of Instrumentation
Accession number :
edsair.doi...........cf9c03f89dd6f57f23dd1968719585ff
Full Text :
https://doi.org/10.1088/1748-0221/11/02/c02047