Evelyn Thomson Ohio State University Page 1 XFT Status CDF Trigger Workshop, 17 August 2000 l XFT Hardware status l XFT Integration tests at B0, including:

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Presentation transcript:

Evelyn Thomson Ohio State University Page 1 XFT Status CDF Trigger Workshop, 17 August 2000 l XFT Hardware status l XFT Integration tests at B0, including:  XTC t0 calibration  Integration with Level 1 and Run Control l XFT Event Display and XFT Simulation l Cosmic Ray & Commissioning Run l Summary

Evelyn Thomson Ohio State University Page 2 XFT Hardware Status From COT 168 TDC from COT axial layers 24 crates TDC Transition Lv1 tracking trigger cable (220 ft) XTC mezzanine card 3 crates 48 XFT Finder Finder Transition 3 crates 24 XFT Linker To XTRP (Illinois) Linker Output Production of Linker Output Modules finishing: 16/24 at B0 Production and installation complete Production complete, installed as TDCs arrive All XFT components ready for commissioning run New finder backplanes installed in late June

Evelyn Thomson Ohio State University Page 3 XTC t0 calibration l XTC classifies COT wire hits as prompt or delayed  Need to know time between collision and arrival of earliest possible COT pulses at XTC l Use COT calibration system to pulse COT  Signal travels through COT wires, COT electronics and TDC to XTC  Capture XTC data at Finder and set t0 for the 4 axial superlayers l Understand XTC t0 calibration to within a few ns Jay Dittmann, Ken Bloom

Evelyn Thomson Ohio State University Page 4 XTC to Finder Integration l Setup  Transmit bit patterns over L1 tracking trigger cable to Finder l Results  Successfully captured incoming data on finder at speed  Used to check installation of 164 L1 tracking trigger cables, which bring hit data to Finders L1 tracking trigger cable (220 ft) COT TDC or Testboard VME crate XFT FINDER VME crate XTC mezzanine card Jay Dittmann, Phil Koehn, Ken Bloom

Evelyn Thomson Ohio State University Page 5 Finder to Linker Integration l Setup  Load Finder input chips with simulated XTC hit data, process in finder and linker at speed l Results  Boards respond to real trigger signals  Aligned finder and linker pipelines  Check XTC hits, track segments and tracks in L2 buffers on Finder and Linker  Formatted data sent off board  Successful long-term tests on 1 full crate 4 XFT Finders: SL1/3 & 2/4 Channel Link Cabling < 3m XFT Linker Evelyn Thomson, Phil Koehn

Evelyn Thomson Ohio State University Page 6 l 30 Production boards constructed at Ohio State (July 2000). l Modification from previous design to account for tight timing tolerance of eXTRaPolation Module (distributes Linker output to rest of Trigger system) l Boards being stuffed at OSU now l 16 modules installed at FNAL l As more cards are tested, they will be sent to Fermilab for installation Linker Output Module OSU group

Evelyn Thomson Ohio State University Page 7 Linker to XTRP Integration l Wilson Hall setup  XFT linker crate  2 XFT linkers  New XFT linker output modules  XFT linker tester  XTRP crate  XTRP data board  XTRP clock/control board  XTRP data board transition module l B0 setup (April 2000)  Real trigger signals  Old Linker Output Module l Integration tests successful! Nathan Eddy, Mike Kasten, Phil Koehn

Evelyn Thomson Ohio State University Page 8 Xtc to Linker Integration l Setup  Load TDC calibration registers with prompt/delayed signals for 1 event  Process in XTC, send over L1 track trigger cables to Finder and Linker l Results  All boards respond to real trigger signals  Check XTC hits, track segments and tracks in L2 buffers on Finder and Linker  Formatted data sent off board at speed  Diagnostic developed to test whole XFT system l Status  Need to improve control of TS calibration enable signals  1 TDC used so far   wedge of TDCs soon Evelyn Thomson, Jay Dittmann

Evelyn Thomson Ohio State University Page 9 Integration with Level 1 l Adjust Finder pipeline depth to align XFT with Level 1 system l Estimate finder offset at 7 CDF clocks, measure with data l Linker offset/pipeline fixed relative to finder offset/pipeline l Pipeline depths programmable up to ~60 CDF clocks l Status  Much progress made, nearly there! N-7 Detector N-1 N N+1 N+2 N+3 N+4 N-1 N N+1 N+2 N-7 L1 Reject L1 Accept Linker Stage Finder Stage L1 Pipeline Finder Offset Linker Offset Chris Neu, Evelyn Thomson, Greg Feild

Evelyn Thomson Ohio State University Page 10 Integration with Run Control l Warm/Cold Start routines being developed to:  Check boards exist  Check FPGA designs correct and board configured successfully  Check pipeline depths and offsets against hardware database  Download Finder Dead Wire registers from calibration database  Number of dead wires will change during run…  Send up to 3 reset messages to any unconfigured boards l Status  Finder code almost complete  Linker code needs more work Chris Neu

Evelyn Thomson Ohio State University Page 11 XFT Event Display and XFT Simulation l Complete bitwise simulation from XTC to Linker  Produces simulated events to test hardware  Estimate performance and trigger rates  Included in MDC2 l XFT event display  XTC hits  Finder track segments  Linker tracks  Unpacks XFFD and XFLD banks  Very useful for commissioning run and cosmic rays Brian Winer, Jongyoung Chung

Evelyn Thomson Ohio State University Page 12 Commissioning Run and Cosmic Rays l Commissioning Run  Provide tracks for use in the Level 1 decision  Determine t0 for XTC cards  Time in XFT with the rest of the trigger system  Compare performance with expectations using XFFD and XFLD banks  Measure (if offline reconstruction available)  Hit efficiency for COT  Mask finding efficiency  Track efficiency  P T and  resolution l Cosmic Rays  Limited track finding efficiency due to large impact parameter and out-of-time nature of cosmic rays  Cosmic Ray FPGA designs for Linkers are ready

Evelyn Thomson Ohio State University Page 13 Summary l All components of the XFT are ready l Extensive integration tests with real trigger system have already been done l More and more of the system will be implemented in these tests as TDCs become available