Amplitude

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Amplitude. TRB3 Time. TRB3 time is composed from 2 information Coarse time (CT) (11 bits, granularity 5ns, range ~10us, system clock 200MHz) Fine time (FT) (10 bits, granularity ~15ps, range 5ns, needs to be calibrated!) Time=(CT+FT* NormFactor )*5ns EPOCH counter, time > 10us. - PowerPoint PPT Presentation

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Faculty of Physics, University of Belgrade

ToF readout meeting11th of April, 2013

ToF-L/R redout upgrade (4)

Jovan Puzović,Faculty of Physics, Belgrade

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 2 out of 11Jovan Puzović, Belgrade SHINE team

Amplitude

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 3 out of 11Jovan Puzović, Belgrade SHINE team

TRB3 Time• TRB3 time is composed from 2 information

• Coarse time (CT) (11 bits, granularity 5ns, range ~10us, system clock 200MHz)

• Fine time (FT) (10 bits, granularity ~15ps, range 5ns, needs to be calibrated!)

• Time=(CT+FT*NormFactor)*5ns

• EPOCH counter, time > 10us

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 4 out of 11Jovan Puzović, Belgrade SHINE team

Fine time distribution

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 5 out of 11Jovan Puzović, Belgrade SHINE team

Coarse time distribution

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 6 out of 11Jovan Puzović, Belgrade SHINE team

Fine time distribution

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 7 out of 11Jovan Puzović, Belgrade SHINE team

Coarse time distribution

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 8 out of 11Jovan Puzović, Belgrade SHINE team

Pulse width distribution

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 9 out of 11Jovan Puzović, Belgrade SHINE team

Pulse width distribution

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 10 out of 11Jovan Puzović, Belgrade SHINE team

Current status

• TRB3 testing in Belgrade wasn’t successful due to the problems with pulse shape and Padiwa

• Falling edge of pulse is more problematic than the rising one

• According to already recorded data, it seems that we essentially needs Q2T (or QDC) information, not pulse width

• Otherwise, we will be very vulnerable to pulse shape fluctuations - QDC is needed for amplitude walk correction (leading edge timing!)

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 11 out of 11Jovan Puzović, Belgrade SHINE team

Conclusion

• TRB3 still very promising• In my opinion, this is normal problems which

we facing during testing the new equipments which is cutting edge of tehnology

• We underestimate problems and time needed for evaluation!

• Waiting for data recorded in CERN!

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 12 out of 11Jovan Puzović, Belgrade SHINE team

THE END

Faculty of Physics, University of Belgrade

ToF readout meeting, 11.04.2013.Page 13 out of 11Jovan Puzović, Belgrade SHINE team

New test system

Scint + PMT~1 m

22pF betweensignal and ground

~0.0 m

~0.2 m

Padiwa

Ch0Ch1Ch2Ch3

Monitor outputto be connected to DRS4

Needs changes in Padiwa FPGA, has to be check with Michael is it possible