SBS/A1n DAQ status Alexandre Camsonne August 28 th 2012.

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Presentation transcript:

SBS/A1n DAQ status Alexandre Camsonne August 28 th 2012

Outline Overview Fastbus inventory Test stand Module flipping CODA 3 / Intel CPU MPD APV25 Questions To do / timeline Conclusions

Overview Mixed DAQ using VME for GEM readout and Fastbus for other detectors Use multiple crates and modules to reduce deadtime

Fastbus A1n : Big Bite – Lead Glass – 4 Fastbus crates Gep : – BigBite 4 Fastbus crates – BigCal : 6 Fastbus crates – Cdet : 8 Fastbus crates

Fastbus SFI – Hall A : ( TEDF ) + 1 (EEL ) – Hall B : 5 (+ 11 available if DC upgrade ) – DAQ group : 1 – 6 CLEO FRITZ SFI but no driver / software Crate / Power supply – 3 BigBite – 2 TEDF – 5 + (11 ) Hall B – 2 RCS ? – 1 EEL – 2 HRS New – power supplies : 10 K$ – SFI : 9 K$ – Intel VME CPU : 3.5 K$ Need to check for Geographical and Arbitration controller board 11 SFI + 4 spares 10 powers supplies + 3 spares Need 6 power supplies and 18 Fastbus blowers

Test stand 2 Fastbus Crate and PS from Hall B OSP done CODA running from 2 SFI with Intel VME CPU TS and VME64X crate to be installed Error on boards Testing modules : – Troubleshoot with old VME CPU and test components in EEL

Module flipping Send signals to several modules to reduce encoding deadtime Use ribbon cable with daisy chaining Signal

Module flipping V1495 programming – Use Compton prescaler as starting point L1A Prescale N Signal on output Ntrig modulo N

Module flipping V1495 programming – First version working should be good enough to evaluate dead time improvement – Want to implement FIFO to store state for readout and TDC output with board status for sync check – Need to check synch and timing resolution

Intel CPU Installed Linux operating system on Compact Flash so board can boot stand alone Readout of Fastbus working Trigger with old VME TI with SFI working trying new TI to test improvement with event blocking Develop code for module flipping readout

MPD / APV25 MPD working with APV25 using CAEN controller MPD boards in UVA for GEM testing Move APV setup to JLAB after test Adapt Evaristo’s library for use with CODA using Intel VME CPU

Questions New TI order HCAL trigger funding and development Additional cost of MQT power supplies Hall B Fastbus

To do / timeline Evaluate performance of module flipping using old VME CPU and EEL setup ( 1 week ) Evaluate performance with Intel CPU ( 2 weeks ) in TEDF Setup Trigger supervisor add Fastbus bin : test setup with multiple crates ( 1 week ) Check data integrity and implement sync check ( 2 weeks )

To do / timeline Port MPD library to use with CODA ( 3 weeks ) Test full A1n setup Add additional crates for SBS running Develop HCAL trigger Test coincidence trigger ………………………

Conclusion Test stand in TEDF running but need to debug Basic readout of Fastbus done with Intel CPU Module flipping hardware ready : need to write software and study performance. First glance at performance in a few weeks. Major work to make sure of data synchronization Still lot of work left for MQT, Hadron Calorimeter, MPD Need complete Fastbus inventory ( potential shortage of GAC and ATC ) Full test of all electronics and spares