Progress in the development of the DTMROC time measurement chip for the ATLAS Transition Radiation Tracker (TRT)

A 16-channel digital time-measurement readout chip (DTMROC) has been fabricated in TEMIC corporations 0.8-/spl mu/m DMnL BI-CMOS SOI radiation-hard process for the Large Hadron Collider's (LHC) Transition Radiation Tracker (ATLAS/TRT) at CERN, the chip receives discriminated straw-drift-tube si...

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Veröffentlicht in:IEEE transactions on nuclear science 2001-06, Vol.48 (3), p.514-519
Hauptverfasser: Alexander, C., Anghinolfi, E., Dressnandt, N., Ekenberg, T., Farthouat, P., Keener, P.T., Lam, N., La Marra, D., Mann, J., Newcomer, F.M., Ryjov, V., Soderberg, M., Szczygiel, R., Tikhomiro, V., Van Berg, R., Williams, H.H.
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Sprache:eng
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Zusammenfassung:A 16-channel digital time-measurement readout chip (DTMROC) has been fabricated in TEMIC corporations 0.8-/spl mu/m DMnL BI-CMOS SOI radiation-hard process for the Large Hadron Collider's (LHC) Transition Radiation Tracker (ATLAS/TRT) at CERN, the chip receives discriminated straw-drift-tube signals from bipolar amplifier-shaper-discriminator chips (ASDBLR), measures the arrival time in 3.125-ns increments (/spl plusmn/1 ns), and stores the data in a pipeline for 3.3 /spl mu/s. A trigger signal (L1A) causes the data to be tagged with a time stamp and stored for readout. Up to 13 events may be stored in an on-chip buffer while data is being clocked out in a 40 MHz serial stream. The chip has been designed to function after exposure to 1/spl times/10/sup 14/ protons/cm/sup 2/ and 1.0 Mrad total dose. System beam-tests have demonstrated measurement of track positions with a resolution of 165 /spl mu/m and high efficiency at rates up to 18 MHz.
ISSN:0018-9499
1558-1578
DOI:10.1109/23.940109