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First MCM-D modules for the b-physics layer of the ATLAS Pixel Detector

The innermost layer (b-physics layer) of the ATLAS Pixel Detector will consist of modules based on MCM-D technology. Such a module consists of a sensor tile with an active area of 16.4 mm*60.4 mm, 16 read out ICs, each serving 24* 160 pixel unit cells, a module controller chip (MCC), an optical tran...

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Detalles Bibliográficos
Autores principales: Basken, O, Becks, K H, Ehrmann, O, Gerlach, P, Grah, C, Gregor, I M, Linder, C, Meuser, S, Richardson, J, Topper, M, Wolf, J
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:https://dx.doi.org/10.1109/23.856508
http://cds.cern.ch/record/466480
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author Basken, O
Becks, K H
Ehrmann, O
Gerlach, P
Grah, C
Gregor, I M
Linder, C
Meuser, S
Richardson, J
Topper, M
Wolf, J
author_facet Basken, O
Becks, K H
Ehrmann, O
Gerlach, P
Grah, C
Gregor, I M
Linder, C
Meuser, S
Richardson, J
Topper, M
Wolf, J
author_sort Basken, O
collection CERN
description The innermost layer (b-physics layer) of the ATLAS Pixel Detector will consist of modules based on MCM-D technology. Such a module consists of a sensor tile with an active area of 16.4 mm*60.4 mm, 16 read out ICs, each serving 24* 160 pixel unit cells, a module controller chip (MCC), an optical transceiver and the local signal interconnection and power distribution busses. We show a prototype of such a module with additional test pads on both sides. The outer dimensions of the final module will be 21.4 mm*67.8 mm. The extremely high wiring density, which is necessary to interconnect the read-out chips, was achieved using a thin film copper/photo-BCB process on the pixel array. The bumping of the read out chips was done using electroplating PbSn. All dice are then attached by flip-chip assembly to the sensor diodes and the local busses. The focus of this paper is the description of the first results of such MCM-D-type modules. (11 refs).
id cern-466480
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-4664802019-09-30T06:29:59Zdoi:10.1109/23.856508http://cds.cern.ch/record/466480engBasken, OBecks, K HEhrmann, OGerlach, PGrah, CGregor, I MLinder, CMeuser, SRichardson, JTopper, MWolf, JFirst MCM-D modules for the b-physics layer of the ATLAS Pixel DetectorDetectors and Experimental TechniquesThe innermost layer (b-physics layer) of the ATLAS Pixel Detector will consist of modules based on MCM-D technology. Such a module consists of a sensor tile with an active area of 16.4 mm*60.4 mm, 16 read out ICs, each serving 24* 160 pixel unit cells, a module controller chip (MCC), an optical transceiver and the local signal interconnection and power distribution busses. We show a prototype of such a module with additional test pads on both sides. The outer dimensions of the final module will be 21.4 mm*67.8 mm. The extremely high wiring density, which is necessary to interconnect the read-out chips, was achieved using a thin film copper/photo-BCB process on the pixel array. The bumping of the read out chips was done using electroplating PbSn. All dice are then attached by flip-chip assembly to the sensor diodes and the local busses. The focus of this paper is the description of the first results of such MCM-D-type modules. (11 refs).oai:cds.cern.ch:4664802000
spellingShingle Detectors and Experimental Techniques
Basken, O
Becks, K H
Ehrmann, O
Gerlach, P
Grah, C
Gregor, I M
Linder, C
Meuser, S
Richardson, J
Topper, M
Wolf, J
First MCM-D modules for the b-physics layer of the ATLAS Pixel Detector
title First MCM-D modules for the b-physics layer of the ATLAS Pixel Detector
title_full First MCM-D modules for the b-physics layer of the ATLAS Pixel Detector
title_fullStr First MCM-D modules for the b-physics layer of the ATLAS Pixel Detector
title_full_unstemmed First MCM-D modules for the b-physics layer of the ATLAS Pixel Detector
title_short First MCM-D modules for the b-physics layer of the ATLAS Pixel Detector
title_sort first mcm-d modules for the b-physics layer of the atlas pixel detector
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/23.856508
http://cds.cern.ch/record/466480
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