Ursula Bassler, LPNHE Paris1Collaboration Meeting - 13 Sept. 2001 Calorimeter: Status & Plans Preamp/ Driver Trig. sum Filter/ Shaper x1 x8 SCA (48 deep)

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Presentation transcript:

Ursula Bassler, LPNHE Paris1Collaboration Meeting - 13 Sept Calorimeter: Status & Plans Preamp/ Driver Trig. sum Filter/ Shaper x1 x8 SCA (48 deep) BLS Output Buffer Bank 0 Bank 1 SCA Calorimeter Calibration electronics readout chain  VRC installation: read out at 300Hz  Timing Adjustments: global timing done  Pedestal Calibration: CALIB? / validation  SCA-commissioning: studies ongoing  Pulser Ramps: first looks  Hot Cells: hardware improved  Trigger Studies: open questions  -jet, M T (W  e ), Z  ee

Ursula Bassler, LPNHE Paris2Collaboration Meeting - 13 Sept Timing Studies: triple sampling signal time 0+1 comparison of energies measured at the nominal BX,132ns earlier/later:  ratios allow to determine time offset  more precise timing from comparison with model + 81 ns + 97 ns ns late/ nominal early/ nominal  =0.77  =0.69  =0.78  =0.82  =1.04  =0.64  =0.61  =0.39

Ursula Bassler, LPNHE Paris3Collaboration Meeting - 13 Sept But: the ICD timing… Crate FPGAEarly/NominalLate/NominalComments 4v bad pedestals SW9,SW13 5v bad SCAs SW5,SE8 6v bad SCAs SE3,SE5 7v bad SCAs SWE10,SE12 4v18 corr bad pedestals SW9,SW13 5v18 corr0.90 (1.0)0.59bad SCAs SW5,SW8 6v18 corr bad SCAs SE3,SE5 7v18 corr  good ICD timing requires signal to be delayed  additional cable!

Ursula Bassler, LPNHE Paris4Collaboration Meeting - 13 Sept Pedestal Calibration  Tools being developed for calibration validation  Mrinmoy left  latest version delivered with many improvements, but not working correctly yet pedestal comparison between 2 calibration runs

Ursula Bassler, LPNHE Paris5Collaboration Meeting - 13 Sept SCA-behavior  all faulty channels were changed for ICD ( ~ 15%)  bad SCA chips labeled for detailed studies at SUNY

Ursula Bassler, LPNHE Paris6Collaboration Meeting - 13 Sept Pulser Calibration  measurement of pulse shape:  validation of signal simulation model  determination of optimal calibration timing for various channel types  linearity studies of gain paths:  linearity with respect to linear fit  preliminary studies at 0.2% level time (ns) ADC counts ADC (meas-fit/max) pulse height em channel pulse height ADC (meas-fit/max) gain x8 gain x1

Ursula Bassler, LPNHE Paris7Collaboration Meeting - 13 Sept “Dead Regions” – “Hot Cells”  

Ursula Bassler, LPNHE Paris8Collaboration Meeting - 13 Sept Hot Cell Killing  Hardware improvement: replacement of bad SCA-Cards  apply “Hot Cell Killer” on remaining bad channels  improvement of calibration validation procedure  online Hot Cell identification in CalExamine  database modification

Ursula Bassler, LPNHE Paris9Collaboration Meeting - 13 Sept Trigger Studies  slow rise of trigger signal not understood  trigger threshold w.r.t. precision read- out:  2 difference  behavior of hadronic veto not clear  studies on signal shape in the electronics chain, understanding of ADC/GeV conversion w.r.t. trigger signal  L1 trigger Read Out needed

Ursula Bassler, LPNHE Paris10Collaboration Meeting - 13 Sept October Shutdown Power Supplies: (Dave Huffman, Pat Liston, Mike Cherry) Access: BLS-Platfrom Time Estimation: 14 days replace fuse holders in BLS PS for 20 and 25 Amp fuses with magnetic circuit breakers repair broken PreAmp PS complete and repair bad PS monitoring ?Reflection Measurements: (French + calo shifters) Access: PreAmp-Platfrom Time Estimation: 12 days complete reflection measurements identification of bad Cryostat/Detector channels, repair? Pulser Wave form Measurements: (French + calo shifters) Access: PreAmp/BLS-Platfrom Time Estimation: 4 days measurement of Pulser wave forms detection of bad pulser/Preamp connections, repair ?Timing Adjustments: (Dean/Mingcheng/Nirmalya) Access: BLS-Platfrom Time Estimation: ? adjust BLS Crate Controller Jumpers for timing differences crate by crate Electronics Debugging: (calo shifters) Access: PreAmp/BLS-Platfrom Time Estimation: 12 days replacement of pre identified (Fu) bad SCA chips mapping verifications verification and debugging of PreAmps/Pulsers/BLS/Trigger Summers and Drivers

Ursula Bassler, LPNHE Paris11Collaboration Meeting - 13 Sept Information Calorimeter Home-page:  Links to Calorimeter web-pages: Calorimeter Operation & Commissoning : Calorimeter status, Shift & Operation instructions, Logbook, Useful RunsCalorimeter Operation & Commissoning Calorimeter Electronics Upgrade Documentation: Operational Readiness Clearance Documentation, Upgrade & Commissioning Status TalksCalorimeter Electronics Upgrade Documentation: Calorimeter Online & Offline Software Meetings : Agenda & Transparencies for Software meetings, Tuesday 10:00 am 9th circleCalorimeter Online & Offline Software Meetings Calorimeter Software : Calorimeter Reconstruction SoftwareCalorimeter Software  Any contribution to their improvements is welcome!

Ursula Bassler, LPNHE Paris12Collaboration Meeting - 13 Sept Calorimeter Run Information This web page is for the use of shifters and experts for updating and viewing the Calorimeter Runs database. The database uses MS Access It is fully viewable and active IF you use MS Internet Explorer ver 5.5 or above. That means you are screwed if you use Netscape - sorry. The links at left will link you to various live database views: D0 Calorimeter Run Database Web  News - new developments and update  All Runs - A summary of fields for all runs in database  All Runs Day - A summary of fields for all runs sorted by day  All Runs Type - A summary of all fields for all runs sorted by run type  Static Database Reports - these reports are NOT dynamic, but need to be refreshed by hand to remain current, however they are visible to all.  Input Data - A page that takes you to the data input pages FOR EXPERTS ONLY \\D0server4\projects\CalorimeterElectronics\Tuts\Cal_Runs_Database\index.htm

Ursula Bassler, LPNHE Paris13Collaboration Meeting - 13 Sept What can you do?  sign up for some shifts:  3 every month or two months will make a great difference for us!  non-experts are demanded!  look at the data:  feed-back for hot cells or dead regions, strange effects “useful run information” will depend on the input we get! some problems have been seen offline first!!  allows to develop better online tools  trigger debugging, efficiencies, turn on curves  studies related to the energy scale  help to develop tools  TASK LIST on commissioning web-page! Talk to Nirmalya, Andre, Lee or me!