Search Results - "Puigdengoles, C."

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  1. 1

    A read-out system for the Medipix2 chip capable of 500 frames per second by Maiorino, M., Martinez, R., Pellegrini, G., Blanchot, G., Chmeissani, M., Garcia, J., Lozano, M., Puigdengoles, C., Ullan, M.

    “…High-speed X-ray-imaging acquisition technique is a growing field that can be used to understand microscopic mechanism of different phenomena in biology and…”
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    Journal Article
  2. 2

    Performance limits of a 55-/spl mu/m pixel CdTe detector by Pellegrini, G., Chmeissani, M., Maiorino, M., Blanchot, G., Garcia, J., Lozano, M., Martinez, R., Puigdengoles, C., Ullan, M., Casado, P.

    Published in IEEE transactions on nuclear science (01-02-2006)
    “…In this work, the results from simulation of a CdTe pixel detector with a pixel size of 45 mum and a pitch of 55 mum are presented. Simulation of charge…”
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    Journal Article
  3. 3

    Test structure assembly for bump bond yield measurement on high density flip chip technologies by Ullán, M., Lozano, M., Chmeissani, M., Blanchot, G., Cabruja, E., García, J., Maiorino, M., Martínez, R., Pellegrini, G., Puigdengoles, C.

    Published in Microelectronics and reliability (01-07-2006)
    “…Modern flip chip technologies for imaging applications have achieved a very high integration level together with the possibility of large area assemblies…”
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    Journal Article
  4. 4

    Test chip for bump bond yield evaluation in high density flip chip technologies by Ullan, M., Lozano, M., Chmeissani, M., Blanchot, G., Cabruja, E., Garcia, J., Maiorino, M., Martinez, R., Pellegrini, G., Puigdengoles, C.

    “…Modern flip chip technologies for imaging applications have achieved a very high integration level together with the possibility of large assemblies. These…”
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    Conference Proceeding
  5. 5

    Direct charge sharing observation in single-photon-counting pixel detector by Pellegrini, G., Maiorino, M., Blanchot, G., Chmeissani, M., Garcia, J., Lozano, M., Martinez, R., Puigdengoles, C., Ullan, M.

    “…In photon-counting imaging devices, charge sharing can limit the detector spatial resolution and contrast, as multiple counts can be induced in adjacent pixels…”
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    Journal Article
  6. 6
  7. 7
  8. 8

    Charge-sharing observations with a CdTe pixel detector irradiated with a 57Co source by Maiorino, M., Pellegrini, G., Blanchot, G., Chmeissani, M., Garcia, J., Martinez, R., Lozano, M., Puigdengoles, C., Ullan, M.

    “…Charge sharing is a limiting factor of detector spatial resolution and contrast in photon counting imaging devices because multiple counts can be induced in…”
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    Journal Article
  9. 9

    Performance Limits of a 55-mum Pixel CdTe Detector by Chmeissani, M, Maiorino, M, Blanchot, G, Garcia, J, Lozano, M, Martinez, R, Puigdengoles, C, Ullan, M, Casado, P

    Published in IEEE transactions on nuclear science (01-02-2006)
    “…In this work, the results from simulation of a CdTe pixel detector with a pixel size of 45mum and a pitch of 55mum are presented. Simulation of charge sharing…”
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    Journal Article
  10. 10

    Characterization of CdTe detector for use in PET by Arino, G., Chmeissani, M., Puigdengoles, C., De Lorenzo, G., Diener, R., Arce, P., Cabruja, E., Calderon, Y., Canadas, M., Kolstein, M., Macias-Montero, J., Martinez, R., Mikhaylova, E., Ozsahin, I., Uzun, D.

    “…CdTe diode detectors with Schottky contact have been characterized in terms of energy resolution and time of response. A resolution of 0.98% at 511keV has been…”
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    Conference Proceeding
  11. 11

    Simulation of pseudo-clinical conditions and image quality evaluation of PET scanner based on pixelated CdTe detector by Mikhaylova, E., Canadas, M., De Lorenzo, G., Chmeissani, M., Arce, P., Arino, G., Cabruja, E., Calderon, Y., Kolstein, M., Macias-Montero, J. G., Martinez, R., Ozsahin, I., Puigdengoles, C., Uzun, D.

    “…A novel conceptual design of PET scanner, known as a Voxel Imaging PET (VIP) [1], based on pixelated solid state detector, has been proposed to overcome the…”
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    Conference Proceeding
  12. 12

    Study of the response of the ATLAS central calorimeter to pions of energies from 3 to 9GeV by Abat, E., Abdallah, J.M., Addy, T.N., Adragna, P., Aharrouche, M., Ahmad, A., Akesson, T.P.A., Aleksa, M., Alexa, C., Anderson, K., Anghinolfi, F., Antonaki, A., Arabidze, G., Arik, E., Baker, O.K., Banfi, D., Baron, S., Beck, H.P., Belhorma, B., Benchekroun, D., Benjamin, D.P., Benslama, K., Bergeaas Kuutmann, E., Bertelsen, H., Binet, S., Biscarat, C., Boldea, V., Bondarenko, V.G., Boonekamp, M., Bosman, M., Bourdarios, C., Burckhart Chromek, D., Bychkov, V., Callahan, J., Calvet, D., Canneri, M., Capeáns Garrido, M., Caprini, M., Cardiel Sas, L., Carli, T., Carminati, L., Carvalho, J., Cascella, M., Castillo, M.V., Catinaccio, A., Cavalli Sforza, M., Cavalli, D., Cavasinni, V., Cetin, S.A., Chen, H., Cherkaoui, R., Chevallier, F., Ciobotaru, M., Citterio, M., Cleland, B., Cogneras, E., Conde Muino, P., Consonni, M., Constantinescu, S., Cornelissen, T., Corso Radu, A., Costa, G., Cwetanski, P., Da Silva, D., Dam, M., Danielsson, H.O., Dannheim, D., Davidek, T., De, K., Defay, P.O., Dekhissi, B., Del Peso, J., Delmastro, M., Del Prete, T., Derue, F., Di Ciaccio, L., Di Girolamo, B., Dita, S., Dittus, F., Djama, F., Djobava, T., Dobson, M., Dolgoshein, B.A., Dotti, A., Drake, G., Dressnandt, N., Driouchi, C., Ebenstein, W.L., Eerola, P., Efthymiopoulos, I., Egorov, K., Eifert, T.F., El Kacimi, M., Etienvre, A.I., Fabich, A., Fakhr-Edine, A.I., Fanti, M., Farbin, A., Farthouat, P., Fassouliotis, D.

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    Journal Article
  13. 13

    Modeling, simulation, and evaluation of a compton camera based on a pixelated solid-state detector by Calderon, Y., Kolstein, M., Uzun, D., De Lorenzo, G., Chmeissani, M., Arce, P., Arino, G., Cabruja, E., Canadas, M., Macias-Montero, J. G., Martinez, R., Mikhaylova, E., Ozsahin, I., Puigdengoles, C.

    “…A novel Compton camera design based on pixelated solid-state detectors is proposed and evaluated via Monte Carlo simulation, using the Geant4-based…”
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    Conference Proceeding
  14. 14

    Large area detector with the Medipix2 chip by Canas, A., Chmeissani, M., Coll, R., Glass, D., Kolstein, M., Martinez, R., Puigdengoles, C., Sanchez, C., Sancho, A.

    “…After a successful FP5 application, Institut de Física d'Altes Energies (IFAE) embarked on making the first research mammography prototype detector with an…”
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    Conference Proceeding
  15. 15

    Characterisation of AMS H35 HV-CMOS monolithic active pixel sensor prototypes for HEP applications by Terzo, S, Benoit, M, Cavallaro, E, Casanova, R, Di Bello, F. A, Förster, F, Grinstein, S, Iacobucci, G, Perić, I, Puigdengoles, C, Pinto, M. Vicente Barrero, Figueras, E. Vilella

    Published 30-01-2019
    “…JINST 14 (2019) P02016 Monolithic active pixel sensors produced in High Voltage CMOS (HV-CMOS) technology are being considered for High Energy Physics…”
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    Journal Article
  16. 16

    Charge sharing measurements of pixilated CdTe using Medipix-II chip by Chmeissani, M., Maiorino, M., Blanchot, G., Pellegrini, G., Garcia, J., Lozano, M., Martinez, R., Puigdengoles, C., Mullan, M.

    “…One important consideration of the design and the operation of pixilated detector is the ratio of the pixel size to the thickness of the detector. When the e-h…”
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    Conference Proceeding
  17. 17

    Performance limits of a 55 /spl mu/m pixel CdTe detector by Pellegrini, G., Chmeissani, M., Maiorino, M., Blanchot, G., Garcia, J., Lozano, M., Martinez, R., Puigdengoles, C., Ullan, M., Casado, P.

    “…In this work the results from simulation of a CdTe pixel detector with a pixel size of 45 /spl mu/m and a pitch of 55 /spl mu/m are presented. Simulation of…”
    Get full text
    Conference Proceeding