DocumentCode
2190955
Title
Front end readout electronics for the CMS Hadron Calorimeter
Author
Shaw, T.M. ; Baumbaugh, A. ; Boubekeur, A. ; Elias, J.E. ; Hoff, J. ; Holm, S. ; Los, S. ; Rivetta, C. ; Ronzhin, A. ; Whitmore, J. ; Zimmerman, T. ; Yarema, R.J.
Author_Institution
Fermi Nat. Accelerator Lab., Batavia, IL, USA
Volume
1
fYear
2002
fDate
10-16 Nov. 2002
Firstpage
194
Abstract
The front-end electronics for the CMS Hadron Calorimeter provides digitized data at the beam interaction rate of 40 MHz. Analog signals provided by hybrid photodiodes (HPDs) or photomultiplier tubes (PMTs) are digitized and the data is sent off board through serialized fiber optic links running at 1600 Mbps. In order to maximize the input signal, the front-end electronics are housed on the detector in close proximity to the scintillating fibers or phototubes. To fit the electronics into available space, custom crates, backplanes and cooling methods have had to be developed. During the expected ten-year lifetime, the front-end readout electronics will exist in an environment where radiation levels approach 330 rads and the neutron fluence will be 1.3E11 n/cm2. For this reason, the design approach relies heavily upon custom radiation tolerant ASICs. This paper will present the system architecture of the front-end readout crates and describe our results with early prototypes.
Keywords
application specific integrated circuits; nuclear electronics; particle calorimetry; photodiodes; photomultipliers; position sensitive particle detectors; readout electronics; solid scintillation detectors; CMS Hadron Calorimeter; front-end electronics; hybrid photodiodes; photomultiplier tubes; phototubes; radiation tolerant ASIC; readout electronics; scintillating fibers; serialized fiber optic links; Backplanes; Collision mitigation; Detectors; Electronics cooling; Optical fibers; Photodiodes; Photoelectricity; Photomultipliers; Readout electronics; Space cooling;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium Conference Record, 2002 IEEE
Print_ISBN
0-7803-7636-6
Type
conf
DOI
10.1109/NSSMIC.2002.1239297
Filename
1239297
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