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1.
Track Reconstruction with Cosmic Ray Data at the Tracker Integration Facility / CMS Collaboration
The subsystems of the CMS silicon strip tracker were integrated and commissioned at the Tracker Integration Facility (TIF) in the period from November 2006 to July 2007. As part of the commissioning, large samples of cosmic ray data were recorded under various running conditions in the absence of a magnetic field. [...]
CMS-NOTE-2009-003.- Geneva : CERN, 2008 - 36 p. Fulltext: PDF;
2.
Integration of the End Cap TEC+ of the CMS Silicon Strip Tracker / Tracker End Cap Collaboration
The silicon strip tracker of the CMS experiment has been completed and inserted into the CMS detector in late 2007. The largest sub-system of the tracker is its end cap system, comprising two large end caps (TEC) each containing 3200 silicon strip modules. [...]
CMS-NOTE-2009-009.- Geneva : CERN, 2009 - 57 p. Fulltext: PDF;
3.
Reception Test of Petals for the End Cap TEC+ of the CMS Silicon Strip Tracker / Tracker End Cap Collaboration
The silicon strip tracker of the CMS experiment has been completed and was inserted into the CMS detector in late 2007. The largest sub system of the tracker are its end caps, comprising two large end caps (TEC) each containing 3200 silicon strip modules [...]
CMS-NOTE-2009-005.- Geneva : CERN, 2009 - 22 p. Fulltext: PDF;
4.
Petal Integration for the CMS Tracker End Caps / Bergauer, Thomas ; Dragicevic, Marko ; Friedl, Markus ; Hansel, S ; Hrubec, Josef ; Krammer, Manfred ; Pernicka, Manfred ; Beaumont, Willem ; De Wolf, Eddi A ; Bouhali, Othmane et al.
This note describes the assembly and testing of the 292 petals built for the CMS Tracker End Caps from the beginning of 2005 until the summer of 2006. Due to the large number of petals to be assembled and the need to reach a throughput of 10 to 15 petals per week, a distributed integration approach was chosen. [...]
CMS-NOTE-2008-028.- Geneva : CERN, 2008 - 30 p. Fulltext: PDF;
5.
The Qualification of Silicon Microstrip Detector Modules for the CMS Inner Tracking Detector / Axer, Markus ; Beissel, Franz ; Flügge, Günter ; Franke, Torsten ; Hermanns, Thomas ; Mnich, Joachim ; Nowack, Aaron ; Poettgens, Michael ; Pooth, Oliver /CMS Silicon Tracker Collaboration
For the construction of the CMS inner tracking detector 15,232 silicon microstrip detectors had to be produced. This large number required a fast, easy to use and cost-efficient test setup for the quality assurance at different production steps in all laboratories participating in the production of the detector modules. [...]
CMS-NOTE-2006-141.- Geneva : CERN, 2006 - 9 p. Fulltext: PDF;
6.
Measurements with an MSGC Hodoscope Using the PreMux128 Frontend Chip / Bachmann, Sebastian (Physikalisches Institut, RWTH Aachen, Germany) ; Beissel, Franz (Physikalisches Institut, RWTH Aachen, Germany) ; Camps, Clemens (Physikalisches Institut, RWTH Aachen, Germany) ; Commichau, Volker (Physikalisches Institut, RWTH Aachen, Germany) ; Flügge, Günter (Physikalisches Institut, RWTH Aachen, Germany) ; Hangarter, Klaus (Physikalisches Institut, RWTH Aachen, Germany) ; Kremp, Jürgen (Physikalisches Institut, RWTH Aachen, Germany) ; Macke, Dirk (Physikalisches Institut, RWTH Aachen, Germany) ; Niessen, P (Physikalisches Institut, RWTH Aachen, Germany) ; Pooth, Oliver (Physikalisches Institut, RWTH Aachen, Germany) et al.
We report on the performance of a hodoscope containing 3 large area micro strip gas chambers ( MSGCs). The results of the measurements in a test beam experiment and with cosmics rays are presented. [...]
CMS-NOTE-1997-042.- Geneva : CERN, 1997 Fulltext: PS.Z;
7.
Beam Test Performance of a Closed Microstrip Gas Chamber Module for the CMS Forward Tracker / Bachmann, Sebastian (Physikalisches Institut, RWTH Aachen, Germany) ; Beissel, Franz (Physikalisches Institut, RWTH Aachen, Germany) ; Camps, Clemens (Physikalisches Institut, RWTH Aachen, Germany) ; Commichau, Volker (Physikalisches Institut, RWTH Aachen, Germany) ; Flügge, Günter (Physikalisches Institut, RWTH Aachen, Germany) ; Hangarter, Klaus (Physikalisches Institut, RWTH Aachen, Germany) ; Kremp, Jürgen (Physikalisches Institut, RWTH Aachen, Germany) ; Macke, Dirk (Physikalisches Institut, RWTH Aachen, Germany) ; Petertill, Markus (Physikalisches Institut, RWTH Aachen, Germany) ; Pooth, Oliver (Physikalisches Institut, RWTH Aachen, Germany) et al.
We built and tested a closed MSGC module for the CMS forward tracker with trapezoidal strip patterns on 300 micron DESAG263 glass substrates produced by OPTIMASK. In the 100 GeV X5 myon beam at CERN, we investigated the behaviour of this module foreseen for four wedge shaped substrates, 512 anode strips each. [...]
CMS-NOTE-1997-063.- Geneva : CERN, 1997 Fulltext: PDF PS.Z;
8.
Tests of Silicon Detector Modules for the Tracker End Cap with the ARC System / Axer, Markus (Physikalisches Institut B, Physikzentrum, Aachen, Germamy) ; Beissel, Franz (Physikalisches Institut B, Physikzentrum, Aachen, Germamy) ; Flügge, Günter (Physikalisches Institut B, Physikzentrum, Aachen, Germamy) ; Franke, Torsten (Physikalisches Institut B, Physikzentrum, Aachen, Germamy) ; Kasselmann, Stefan (Physikalisches Institut B, Physikzentrum, Aachen, Germamy) ; Mnich, Joachim (Physikalisches Institut B, Physikzentrum, Aachen, Germamy) ; Poettgens, Michael (Physikalisches Institut B, Physikzentrum, Aachen, Germamy) ; Pooth, Oliver (Physikalisches Institut B, Physikzentrum, Aachen, Germamy) ; Schulte, Reiner (Physikalisches Institut B, Physikzentrum, Aachen, Germamy)
During the production phase of the CMS silicon strip detector modules the ARC (APV Readout Controller) system will be used as a readout system for testing purposes. The first ten TEC (tracker end cap) modules built have been tested using the ARC system. [...]
CMS-NOTE-2003-002.- Geneva : CERN, 2003 Fulltext: PDF PS.Z;
9.
A Test Setup for Quality Assurance of Front End Hybrids / Axer, Markus (Physikalisches Institut B, RWTH Aachen, Germany) ; Beissel, Franz (Physikalisches Institut B, RWTH Aachen, Germany) ; Camps, Clemens (Physikalisches Institut B, RWTH Aachen, Germany) ; Commichau, Volker (Physikalisches Institut B, RWTH Aachen, Germany) ; Flügge, Günter (Physikalisches Institut B, RWTH Aachen, Germany) ; Franke, Torsten (Physikalisches Institut B, RWTH Aachen, Germany) ; Hangarter, Klaus (Physikalisches Institut B, RWTH Aachen, Germany) ; Ilgin, Can (Physikalisches Institut B, RWTH Aachen, Germany) ; Mnich, Joachim (Physikalisches Institut B, RWTH Aachen, Germany) ; Niehusmann, Jan (Physikalisches Institut B, RWTH Aachen, Germany) et al.
The APV Readout Control (ARC) Test Setup is a compact, cost efficient test and diagnostic tool which is suited for full operation and characterisation of FE hybrids and Si-Detector modules. This note gives an overview of the construction and the features of the test facility. [...]
CMS-NOTE-2001-046.- Geneva : CERN, 2001 Fulltext: PDF PS.Z;

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