Depleted fully monolithic CMOS pixel detectors using a column based readout architecture for the ATLAS Inner Tracker upgrade

被引:17
|
作者
Wang, T. [1 ]
Barbero, M. [2 ]
Berdalovic, I. [3 ]
Bespin, C. [1 ]
Bhat, S. [2 ]
Breugnon, P. [2 ]
Caicedo, I. [1 ]
Cardella, R. [3 ]
Chen, Z. [2 ]
Degerli, Y. [4 ]
Egidos, N. [3 ]
Godiot, S. [2 ]
Guilloux, F. [4 ]
Hemperek, T. [1 ]
Hirono, T. [1 ]
Krueger, H. [1 ]
Kugathasan, T. [3 ]
Huegging, F. [1 ]
Tobon, C. A. Marin [3 ]
Moustakas, K. [1 ]
Pangaud, P. [2 ]
Schwemling, P. [4 ]
Pernegger, H. [3 ]
Pohl, D-L. [1 ]
Rozanov, A. [2 ]
Rymaszewski, P. [1 ]
Snoeys, W. [3 ]
Wermes, N. [1 ]
机构
[1] Univ Bonn, Nussallee 12, Bonn, Germany
[2] Ctr Phys Particules Marseille, 163 Ave Luminy, Marseille, France
[3] CERN, CH-121 Geneva 23, Switzerland
[4] CEA Saclay, IRFU, F-91191 Gif Sur Yvette, France
来源
基金
欧盟地平线“2020”;
关键词
Particle tracking detectors (Solid-state detectors); Front-end electronics for detector readout; VLSI circuits; SENSORS; PERFORMANCE;
D O I
10.1088/1748-0221/13/03/C03039
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Depleted monolithic active pixel sensors (DMAPS), which exploit high voltage and/or high resistivity add-ons of modern CMOS technologies to achieve substantial depletion in the sensing volume, have proven to have high radiation tolerance towards the requirements of ATLAS in the high-luminosity LHC era. DMAPS integrating fast readout architectures are currently being developed as promising candidates for the outer pixel layers of the future ATLAS Inner Tracker, which will be installed during the phase II upgrade of ATLAS around year 2025. In this work, two DMAPS prototype designs, named LF-Monopix and TJ-Monopix, are presented. LF-Monopix was fabricated in the LFoundry 150 nm CMOS technology, and TJ-Monopix has been designed in the TowerJazz 180 nm CMOS technology. Both chips employ the same readout architecture, i.e. the column drain architecture, whereas different sensor implementation concepts are pursued. The paper makes a joint description of the two prototypes, so that their technical differences and challenges can be addressed in direct comparison. First measurement results for LF-Monopix will also be shown, demonstrating for the first time a fully functional fast readout DMAPS prototype implemented in the LFoundry technology.
引用
收藏
页数:9
相关论文
共 13 条
  • [1] Depleted fully monolithic CMOS pixel detectors using a column based readout architecture for the ATLAS Inner Tracker upgrade
    University of Bonn, Nussallee 12, Bonn, Germany
    不详
    不详
    CH-121, Switzerland
    不详
    91191, France
    arXiv,
  • [2] Characterization of a depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade
    Iguaz, F. J.
    Balli, F.
    Barbero, M.
    Bhat, S.
    Breugnon, P.
    Caicedo, I
    Chen, Z.
    Degerli, Y.
    Godiot, S.
    Guilloux, F.
    Guyot, C.
    Hemperek, T.
    Hirono, T.
    Krueger, H.
    Meyer, J. P.
    Ouraou, A.
    Pangaud, P.
    Rymaszewski, P.
    Schwemling, P.
    Vandenbroucke, M.
    Wang, T.
    Wermes, N.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2019, 936 : 652 - 653
  • [3] The Monopix chips: depleted monolithic active pixel sensors with a column-drain read-out architecture for the ATLAS Inner Tracker upgrade
    Caicedo, I
    Barbero, M.
    Barrillon, P.
    Berdalovic, I
    Bhat, S.
    Bespin, C.
    Breugnon, P.
    Cardella, R.
    Chen, Z.
    Degerli, Y.
    Dingfelder, J.
    Godiot, S.
    Guilloux, F.
    Hirono, T.
    Hemperek, T.
    Huegging, F.
    Krueger, H.
    Kugathasan, T.
    Moustakas, K.
    Pangaud, A. P.
    Pernegger, H.
    Pohl, D-L
    Riedler, P.
    Rozanov, A.
    Rymaszewski, P.
    Schwemling, P.
    Snoeys, W.
    Vandenbroucke, M.
    Wang, T.
    Wermes, N.
    JOURNAL OF INSTRUMENTATION, 2019, 14
  • [4] Development of a Depleted Monolithic CMOS Sensor in a 150 nm CMOS Technology for the ATLAS Inner Tracker Upgrade
    Wang, T.
    Rymaszewski, P.
    Barbero, M.
    Degerli, Y.
    Godiot, S.
    Guilloux, F.
    Hemperek, T.
    Hirono, T.
    Krueger, H.
    Liu, J.
    Orsini, F.
    Pangaud, P.
    Rozanov, A.
    Wermes, N.
    JOURNAL OF INSTRUMENTATION, 2017, 12
  • [5] A gigabit transceiver for the ATLAS inner tracker pixel detector readout upgrade
    Chen, C.
    Wallangen, V
    Gong, D.
    Grace, C.
    Sun, Q.
    Guo, D.
    Huang, G.
    Kulis, S.
    Leroux, P.
    Liu, C.
    Liu, T.
    Moreira, P.
    Prinzie, J.
    Xiao, L.
    Ye, J.
    JOURNAL OF INSTRUMENTATION, 2019, 14 (07)
  • [6] Characterization of a gigabit transceiver for the ATLAS inner tracker pixel detector readout upgrade
    Chen, C.
    Gong, D.
    Guo, D.
    Huang, G.
    Huang, X.
    Kulis, S.
    Leroux, P.
    Liu, C.
    Liu, T.
    Moreira, P.
    Prinzie, J.
    Sun, Q.
    Wang, P.
    Xiao, L.
    Ye, J.
    JOURNAL OF INSTRUMENTATION, 2020, 15 (03)
  • [7] MALTA: an asynchronous readout CMOS monolithic pixel detector for the ATLAS High-Luminosity upgrade
    Cardella, R.
    Asensi Tortajada, I.
    Berdalovic, I.
    Bespin, C.
    Dachs, F.
    Dao, V.
    de Acedo, L. Flores Sanz
    Piro, F.
    Hemperek, T.
    Hirono, T.
    Hiti, B.
    Kugathasan, T.
    Tobon, C. A. Marin
    Moustakas, K.
    Pernegger, H.
    Riedler, P.
    Schioppa, E. J.
    Sharma, A.
    Argemi, L. Simon
    Snoeys, W.
    Sanchez, C. Solans
    Wang, T.
    Wermes, N.
    JOURNAL OF INSTRUMENTATION, 2019, 14
  • [8] Performance of silicon pixel detectors at small track incidence angles for the ATLAS Inner Tracker upgrade
    Viel, Simon
    Banerjee, Swagato
    Brandt, Gerhard
    Carney, Rebecca
    Garcia-Sciveres, Maurice
    Hard, Andrew Straiton
    Kaplan, Laser Seymour
    Kashif, Lashkar
    Pranko, Aliaksandr
    Rieger, Julia
    Wolf, Julian
    Wu, Sau Lan
    Yang, Hongtao
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2016, 831 : 254 - 259
  • [9] CMOS monolithic pixel sensors based on the column-drain architecture for the HL-LHC upgrade
    Moustakas, K.
    Barbero, M.
    Berdalovic, I
    Bespin, C.
    Breugnon, P.
    Caicedo, I
    Cardella, R.
    Degerli, Y.
    Plaja, N. Egidos
    Godiot, S.
    Guilloux, F.
    Hemperek, T.
    Hirono, T.
    Krueger, H.
    Kugathasan, T.
    Tobon, C. A. Mann
    Pangaud, P.
    Pernegger, H.
    Riedler, P.
    Rymaszewski, P.
    Schioppa, E. J.
    Snoeys, W.
    Vandenbroucke, M.
    Wang, T.
    Wermes, N.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2019, 936 : 604 - 607
  • [10] Performance of the FBK/INFN/LPNHE thin active edge pixel detectors for the upgrade of the ATLAS Inner Tracker
    Calderini, G.
    Bomben, M.
    D'Eramo, L.
    Luise, I
    Marchiori, G.
    Taibah, R.
    Boscardin, G.
    Ronchin, S.
    Zorzi, N.
    Bosisio, L.
    Dalla Betta, G. F.
    Darboe, G.
    Giacomini, G.
    JOURNAL OF INSTRUMENTATION, 2019, 14