Saverio MINUTOLIElectronics WG - 09 June 20091 AFEC cross-talk Plots illustrating Cross-talk effect AFEC pcb investigation.

Slides:



Advertisements
Similar presentations
Muon EDR: Chamber design M2/3 R1/2 16/04/20031T.Schneider/LHCb Muon EDR 1.General description - AW read out -Cathode pad read out -HV supply 2.Details.
Advertisements

The MAD chip: 4 channel preamplifier + discriminator.
Electronics Modification: Critical Design Delta Review 2 Tom Montagliano July 27 th,
SQUARE PAD PCB DESIGN Elizabeth Starling, Jerry Collins Florida Institute of Technology High Energy Physics Lab A January 26 th, 2015.
Torch electronics test environment MCP readout update.
US Beam Test Results and ORCA validation for CMS EMU CSC front-end electronics N. Terentiev Carnegie Mellon University CMS EMU Meeting, CERN June 18, 2005.
US FAST site test results – a global view from ROOT T. Ferguson, A. Korytov, N. Terentiev* CMS EMU Meeting The Ohio State University April 16 – 17, 2004.
GLAST LAT ProjectMarch 24, C Tracker Peer Review, WBS GLAST Large Area Telescope: Tracker Subsystem WBS C: On-Orbit Calibration and.
1 ME 234/2 HV noise investigation N.Bondar CMU. 12/18/02.
US FAST site test results – a global view from ROOT T. Ferguson, A. Korytov, N. Terentiev* CMS EMU Meeting The Ohio State University April 16 – 17, 2004.
Mauro Raggi Status report on the new charged hodoscope for P326 Mauro Raggi for the HODO working group Perugia – Firenze 07/09/2005.
Saverio MINUTOLITIG meeting, 10 February Report on T1 installation activities and achievements made during this shutdown.
Large Cell Scope Pictures, Part II HV Gnd 1nF Large Cell Tube Anode signal Phi Cathode signal scope S1 S2 S1 S2 This is a follow-up on Richard’s measurement.
Large-size micromegas for ATLAS (MAMMA) Status and prospects RD51 mini week, 17/01/2011Joerg Wotschack (CERN)1.
Large Cell Scope Pictures HV Gnd 1nF Large Cell Tube Anode signal Cathode signal scope S1 S2 S1 S2 The following scope pictures were all taken with the.
Choosing the right preamplifier/discriminator comparing advantages and drawbacks : NL-277-L (Nanometrics), ASD-8 (Cern) and MAD4 (INFN Italy) Our favorite:
Saverio Minutoli INFN Genova 1 T1 Electronic status Electronic items involved: Anode Front End Card Cathode Front End Card Read-Out Control card Slow Control.
CALICE meeting Prague 2007, Hervé MATHEZ 1 DHCAL PCB STUDY for RPC and MicroMegas (Electronics recent developments for the European DHCAL) William TROMEUR,
Vladimir Frolov for Torino group. Experimental activities: The system for testing the MRPC in the Torino INFN laboratory has been fully mounted and checked;
BigBite Wire Chamber Test Xin Qian Duke University Feb 20th For TRANSVERSITY Collaboration Wire chamber Gas Cerenkov Shower system Scintillator Magnetic.
Saverio Minutoli INFN Genova 1 1 T1 Electronic status Electronics Cards involved: Anode Front End Card Cathode Front End Card Read-Out Control card VFAT.
Malte HildebrandtDC Status Report, Dear MEG Committee,PSI, April 14 th 2009 this is the first report concerning the drift chamber status as.
S. Lusin, T1 ESR, CERN 17 Sep 101 Totem T1 ESR 17 Sep 10 S. Lusin Observations from Electrical Inspection of T1.
M. Lo Vetere 1,2, S. Minutoli 1, E. Robutti 1 1 I.N.F.N Genova, via Dodecaneso, GENOVA (Italy); 2 University of GENOVA (Italy) The TOTEM T1.
MuTR/MuTrig Readiness for Run13 Itaru Nakagawa on Behalf of MuTrig/MuTr Group 1.
GEM detector development at VECC Anand Dubey. 2-GEM detector tested with source symmetric mode of biasing scheme, (i.e. same voltage across both the GEMS)
High Speed Interconnect Solutions HIROSE ELECTRIC IT3-32mm SI Report Three-Piece Mezzanine Connector for 20+ Gbps Applications October 29, 2009.
Detector R&D for Muon Chamber Anand K. Dubey For VECC group.
Self triggered readout of GEM in CBM J. Saini VECC, Kolkata.
Status of straw-tube tracker V.Peshekhonov, D.Peshekhonov, A.Zinchenko JINR, Dubna V.Tikhomirov P.N.Lebedev Physics Institute, Moscow Presented on the.
Annual Review Cern -June 13th, 2006 F. Loddo I.N.F.N. Bari RPC Electronics: Technical Trigger Flavio Loddo I.N.F.N. Bari On behalf of the RPC-Trigger group.
E. Robutti. TOTEM 1. Measurement of the total pp cross-section. 2. Study of elastic proton scattering over a wide range in momentum transfer up to (–
Cosmic Test Rig  Mechanical structure to hold 4 PCBs  Minimise inter-sensor spacing  Rigid during ~weeks test run  Mounting for scintillators above/below.
Chamber construction Construction Tools Production sites Assembly Sequence (“travelers”) Manpower P. Campana LNF – LHCb Muon EDR Cern April 16 th, 2003.
AND/OR - Are MC and Data (in)consistent? - further analysis and new measurements to do - Effects on inefficiency evaluation 1 G. Martellotti 21/05/2015.
1 4 PCB: LEFT TOP 115 channels, LEFT BOTTOM (115), RIGHT TOP (106), RIGHT BOTTOM (106). For LEFT TOP board 115 channels we have: 115 smd connectors (AMP.
Update on the Triple GEM Detectors for Muon Tomography K. Gnanvo, M. Hohlmann, L. Grasso, A. Quintero Florida Institute of Technology, Melbourne, FL.
AIDA design review Davide Braga Steve Thomas ASIC Design Group 11 February 2009.
Progress on the beam tracking instrumentation Position measurement device Tests performed and their resolution Decision on electronics Summary.
Front End Board (16 channels) Superlayer Cross Section Frontend Enclosure HV cap board HV cap Board Signals from chamber wires go to HV cap board to be.
RPC Timing Results with Final Splitters Gianpaolo Carlino INFN Napoli The Napoli RPC Group: M.Alviggi, V. Canale, M. Caprio, G.C., R. de Asmundis, M. Della.
We really need to check all the results showed. We change the GEM from the fully-well-shielded to the less shielded one (top- bottom-fan out with aluminum)
Radioactive source and cosmic-ray test for the MWPC Davide Pinci on behalf of the Frascati-Roma1 MWPC group.
9/12/2003Ivan Hruska1 First box prototype –Box design in July ‘03 –Box produced during August ’03 Tested last week in few fingers Small changes necessary.
European DHCAL development European DHCAL development CIEMAT,IPNL,LAL, LAPP,LLR, PROTVINO, SACLAY CIEMAT,IPNL,LAL, LAPP,LLR, PROTVINO, SACLAY Status :
US AFEB timing in CSCs in splash events, run N. Terentiev, CMU CSC Synchronization meeting Nov. 16, 2009, CERN.
1 19 th January 2009 M. Mager - L. Musa Charge Readout Chip Development & System Level Considerations.
Saverio MINUTOLITOTEM Electronics W.G., 9 December T1 electronics status.
RD51 GEM Telescope: results from June 2010 test beam and work in progress Matteo Alfonsi on behalf of CERN GDD group and Siena/PISA INFN group.
1 Fulvio TESSAROTTO CERN, 13/11/ COMPASS THGEM meeting Construction of the large size Hybrid Prototype The bulk Micromegas technology Examples of.
Comparison of different chamber configurations for the high luminosity upgrade of M2R2 G. Martellotti - LNF - 13/03/2015 Roma1 + Alessia.
Upgrade with Silicon Vertex Tracker Rachid Nouicer Brookhaven National Laboratory (BNL) For the PHENIX Collaboration Stripixel VTX Review October 1, 2008.
Vladimir Frolov (Centro Fermi) On behalf EEE-TO group.
Update on the Bus, the HDI and peripheral electronics M. Citterio on behalf of INFN Milano and University of Milan SuperB Workshop: SVT Meeting.
20 April 2007MICE Tracker Phone Meeting1 Analysis of cosmic/self-triggerd data of station 5 Hideyuki Sakamoto MICE Tracker Phone Meeting 20 th April 2007.
HF ROBOX PRR3 Apr 2003E. Hazen HF Front-End Electronics ● System Description – Overview – PMT Board, ROBOX, Patch Panel – Signal Cable, Front-end boards.
14-BIT Custom ADC Board Rev. B
Calorimeter Mu2e Development electronics Front-end Review
T1 status (a selection from EDR presentations)
T1 Electronic status Conclusions Electronics Cards:
HPS Motherboard Electronic Design
Some proposals on HV circuits realization for segmented straw detector
M. Alexeev on behalf of Torino TIGER Test Group
Noise analysis of the 1m3 DHCal test beam
First of all we will remind some numbers:
The digital read-out for the CSC system of the TOTEM experiment at LHC
Overview of T1 detector T1 is composed by 2 arms
The electronics system of the TOTEM T1 telescope
The digital read-out for the CSC system of the experiment TOTEM at LHC
The digital read-out for the CSC system of the TOTEM experiment at LHC
Presentation transcript:

Saverio MINUTOLIElectronics WG - 09 June AFEC cross-talk Plots illustrating Cross-talk effect AFEC pcb investigation

Saverio MINUTOLIElectronics WG - 09 June During cosmics tests in Genoa, cross-talk effect has been observed. The effect is observed like blobs of hits outside the fired region of the chamber. The detector system is realized with a sandwich of three chambers, 2 CSCs type 1P and 1 CSC type 1G. Some plots will be illustrated concerning the 1P type chamber positioned in the middle of the sandwich. The plots are obtained from high-statistics (~117k events) cosmics run. CSCs set-up

Saverio MINUTOLIElectronics WG - 09 June D diagrams Each wire cluster fitting a cosmics track in the telescope, all wire hits recorded are plotted as a function of the cluster center. There are two "blobs" out of the diagonal. log(z) version of the first Wire cluster Wire

Saverio MINUTOLIElectronics WG - 09 June Zoom around the largest blob. 2D diagrams

Saverio MINUTOLIElectronics WG - 09 June D plots A couple of 1D plots of y-projections in the region of the blob, among those with the highest level of cross-talk. ? ?

Saverio MINUTOLIElectronics WG - 09 June Anode FE Card block diagram 10k 2.7pF 10k 1nF Aggressors Victims Definitions: Aggressor  signal after HV capacitor. Victim  VFAT input.

Saverio MINUTOLIElectronics WG - 09 June AFEC 1P type layout 4 layers: Top  VFAT fan-out and shield. INT1  Signal routing. INT2  Signal routing Bottom  Shield

Saverio MINUTOLIElectronics WG - 09 June Top plus INT Diagram blob

Saverio MINUTOLIElectronics WG - 09 June Top plus INT1, blob layout zoom aggressor  85 victim 72 aggressor  85 victim  89 victim Exists correlation with the diagrams shown before.

Saverio MINUTOLIElectronics WG - 09 June  Only one out of several AFEC layout points analyzed have been presented.  The correlation between the cross-talk observed from the data acquired and the layout routing is demonstrated.  The “blobs” aren’t big, they involve 3-4 channels max.  They are distributed along the AFEC pcb  10% of events could have a ghost active channel.  Phenomena observed also between internal layers INT2 and INT3 where the shield plane is absent.  Data taking in progress for the 1G-type.  Preliminary AFEC PCBs check have evidenced that each pcb type have some critical points (possible “blobs”). Conclusions

Saverio MINUTOLIElectronics WG - 09 June  Increase the AFEC pcb stack-up from 4 to 6 layers.  This modification insert two extra ground shield planes between Top  INT1, and INT1  INT2.  This structure, signal planes interleaved with gnd planes have been adopted for the CFEC layout design with excellent results. –Confirmed also by the AFEC itself, in the areas where the traces are well shielded.  Starting now with the production, we will get the new PCBs ready to be mounted on the CSCs at end of July.  Material procurement in progress. –HV capacitors –Panasonic connectors available.  Off line analysis –Aggressor  Victim is always unidirectional  possible mask table. Solution(s)