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. This article describes typical faults occurring on modules as well as the test procedures used to identify and classify them provided by the APV Readout Controller (ARC) system. To establish the final test procedures the data of more than 500 tracker endcap modules had been analysed in detail. An optimal combination of measures was found that prove to be extremely efficient in detecting and properly identifying all relevant ...
With an active silicon area of more than 200 squaremetres, the silicon strip tracker of the CMS expe...
With an active silicon area of about 200 square metres, the silicon strip tracker of the CMS experim...
After providing a short overview of the LHC accelerator, the CMS experiment and it’s various detecto...
The inner tracking system of the Compact Muon Solenoid (CMS) experiment at the Large Hadron Collider...
The inner tracking system of the Compact Muon Solenoid (CMS) experiment at the Large Hadron Collider...
The Compact Muon Solenoid (CMS) is one of four large-scale experiments that is going to be installed...
CMS (Compact Muon Solenoid) is one of four large-scale detectors which will be operated at the LHC (...
Abstract The APV25 is the 128 channel CMOS chip developed for readout of the silicon microstrip tr...
The Silicon Microstrip Tracker is a key element for the discovery potential of the CMS detectors at ...
The APV25 is the 128 channel CMOS chip developed for readout of the silicon microstrip tracker in th...
The Compact Muon Solenoid (CMS) is one of the four experiments being installed at the Large Hadron C...
The construction of the CMS Inner Tracker is very close to be completed. The various components are ...
The CMS tracker will be equipped with 16,000 silicon microstrip detector modules covering a surface ...
The LHC will explore physics at the energy frontier and will address many open questions in particle...
The production of silicon detector modules that will instrument the CMS Inner Tracker has nowadays r...
With an active silicon area of more than 200 squaremetres, the silicon strip tracker of the CMS expe...
With an active silicon area of about 200 square metres, the silicon strip tracker of the CMS experim...
After providing a short overview of the LHC accelerator, the CMS experiment and it’s various detecto...
The inner tracking system of the Compact Muon Solenoid (CMS) experiment at the Large Hadron Collider...
The inner tracking system of the Compact Muon Solenoid (CMS) experiment at the Large Hadron Collider...
The Compact Muon Solenoid (CMS) is one of four large-scale experiments that is going to be installed...
CMS (Compact Muon Solenoid) is one of four large-scale detectors which will be operated at the LHC (...
Abstract The APV25 is the 128 channel CMOS chip developed for readout of the silicon microstrip tr...
The Silicon Microstrip Tracker is a key element for the discovery potential of the CMS detectors at ...
The APV25 is the 128 channel CMOS chip developed for readout of the silicon microstrip tracker in th...
The Compact Muon Solenoid (CMS) is one of the four experiments being installed at the Large Hadron C...
The construction of the CMS Inner Tracker is very close to be completed. The various components are ...
The CMS tracker will be equipped with 16,000 silicon microstrip detector modules covering a surface ...
The LHC will explore physics at the energy frontier and will address many open questions in particle...
The production of silicon detector modules that will instrument the CMS Inner Tracker has nowadays r...
With an active silicon area of more than 200 squaremetres, the silicon strip tracker of the CMS expe...
With an active silicon area of about 200 square metres, the silicon strip tracker of the CMS experim...
After providing a short overview of the LHC accelerator, the CMS experiment and it’s various detecto...