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  • A digital front-end readout...
    Dell'Acqua, A.; Hansen, M.; Lofstedt, B.; Vanuxem, J.P.; Svensson, C.; Yuan, J.; Hentzell, H.; Alippi, C.; Breveglieri, L.; Dadda, L.; Piuri, V.; Salice, F.; Sami, M.; Stefanelli, R.; Cattaneo, P.; Fumagalli, G.; Goggi, V.G.; Brigati, S.; Gatti, U.; Maloberti, F.; Torelli, G.; Carlson, P.; Fuglesang, C.; Kerek, A.; Appelquist, G.; Berglund, S.; Bohm, C.; Yamdagni, N.; Sundblad, R.

    IEEE Transactions on Nuclear Science (Institute of Electrical and Electronics Engineers); (United States), 08/1993, Letnik: 40, Številka: 4
    Journal Article, Conference Proceeding

    A digital solution is presented to the front-end readout electronics for calorimetric detectors at future supercolliders based on high-speed analog-digital converters, a fully programmable pipeline/digital filter chain, and local intelligence. Questions of error correction, fault-tolerance and system redundancy are considered. A system integration of a multichannel device in a multichip, silicon-on-silicon microsystem hybrid is used. This solution allows a new level of integration of complex analog and digital functions with excellent flexibility in mixing technologies for the different functional blocks. This type of VLSI multichip integration allows a high degree of programmability at both the function and the system level, and offers the possibility of customizing the microsystem with detector-specific functions.< >