DocumentCode
3548594
Title
Characterization of a CdTe microstrip detector as a hard X ray focal plane prototype
Author
Caroli, E. ; Auricchio, N. ; Donati, A. ; Schiavone, F. ; Stephen, J.B. ; Ventura, G. ; Sordo, S. Del ; Agnetta, G. ; Russo, F. ; Zora, M. ; Bertuccio, G. ; Caccia, S. ; Sampietro, M. ; Gombia, E. ; Pareschi, G. ; Negri, B.
Author_Institution
IASF/CNR, Bologna
Volume
7
fYear
2004
fDate
16-22 Oct. 2004
Firstpage
4378
Lastpage
4382
Abstract
Our collaboration is developing a hard X-ray telescope operating in the 10-100 keV energy range and based on focusing multi-layers coupled to a CdTe/CZT focal plane detector. Two classes of detectors can comply with the focal plane requirements: pixel detectors, where an electrode is segmented as a bi-dimensional array and micro-strip detectors. In the last ones each of the opposite crystal surfaces contains a set of orthogonal micro-strips. This geometry reduces noticeably the number of readout independent channels even if it requires the coincidence among at least two opposite strips to determine the position. In the current work we present the characterization of the spectroscopic and spatial response of CdTe prototype (1 cm2) equipped with two orthogonal micro-strip electrodes with 0.5 mm pitch and mounted on an alumina substrate using both collimated and un-collimated radioactive sources. The 16 anode strips use, as front-end analogical electronics, an innovative low noise and low power dissipation (<1 mW/ch) ASIC, whereas the cathode strips pulses are readout by 16 charge sensitive preamplifiers. The handling and acquisition electronics implements a gamma camera logic, where the equivalent of 256 channels are acquired and converted via 4 ADC and afterwards sent to a 32 bit parallel interface. This system calculates a weighted average of the signals from the irradiated strips to determine the mean position and the energy of the interaction. The comparison between these results and those obtained with an equivalent pixel detector should allow to decide the definitive design of the hard X ray focal plane detector
Keywords
X-ray detection; application specific integrated circuits; position sensitive particle detectors; prototypes; readout electronics; semiconductor counters; 10 to 100 keV; ADC; ASIC; CdTe microstrip detector; CdTe/CdZnTe focal plane detector; alumina substrate; anode strips; cathode strips pulses; crystal surfaces; front-end analogical electronics; gamma camera logic; hard X-ray focal plane prototype; hard X-ray telescope; orthogonal microstrip electrodes; parallel interface; pixel detectors; radioactive sources; readout independent channels; Collaboration; Electrodes; Geometry; Microstrip; Prototypes; Sensor arrays; Strips; Telescopes; X-ray detection; X-ray detectors;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium Conference Record, 2004 IEEE
Conference_Location
Rome
ISSN
1082-3654
Print_ISBN
0-7803-8700-7
Electronic_ISBN
1082-3654
Type
conf
DOI
10.1109/NSSMIC.2004.1466856
Filename
1466856
Link To Document