Search Results - "Schienle, Meinrad"

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    A Fully Electronic Label-Free DNA Sensor Chip by Stagni, C., Guiducci, C., Benini, L., Ricco, B., Carrara, S., Paulus, C., Schienle, M., Thewes, R.

    Published in IEEE sensors journal (01-04-2007)
    “…This paper presents a microfabricated DNA chip for fully electronic, label-free DNA recognition based on capacitance measurements. The chip has been fabricated…”
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    Journal Article
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    CMOS DNA Sensor Array With Integrated A/D Conversion Based on Label-Free Capacitance Measurement by Stagni, C., Guiducci, C., Benini, L., Ricco, B., Carrara, S., Samori, B., Paulus, C., Schienle, M., Augustyniak, M., Thewes, R.

    Published in IEEE journal of solid-state circuits (01-12-2006)
    “…This paper presents a fully electronic label-free DNA chip in 0.5-mum CMOS technology, with 5-V supply voltage, suitable for low-cost highly integrated…”
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    Journal Article Conference Proceeding
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    A fully electronic DNA sensor with 128 positions and in-pixel A/D conversion by Schienle, M., Paulus, C., Frey, A., Hofmann, F., Holzapfl, B., Schindler-Bauer, P., Thewes, R.

    Published in IEEE journal of solid-state circuits (01-12-2004)
    “…A 16 /spl times/ 8 sensor array chip for fully electronic DNA detection is presented. The sensor principle is based on an electrochemical redox cycling…”
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    Journal Article Conference Proceeding
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    A digital CMOS-based 24A-16 sensor array platform for fully automatic electrochemical DNA detection by Kruppa, Philipp, Frey, Alexander, Kuehne, Ingo, Schienle, Meinrad, Persike, Norbert, Kratzmueller, Thomas, Hartwich, Gerhard, Schmitt-Landsiedel, Doris

    Published in Biosensors & bioelectronics (15-12-2010)
    “…DNA sensor arrays integrated on CMOS chips allow fully electronic readout of biological information. Compared to state-of-the-art optical methods optical…”
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    Journal Article
  7. 7

    A digital CMOS-based 24 × 16 sensor array platform for fully automatic electrochemical DNA detection by Kruppa, Philipp, Frey, Alexander, Kuehne, Ingo, Schienle, Meinrad, Persike, Norbert, Kratzmueller, Thomas, Hartwich, Gerhard, Schmitt-Landsiedel, Doris

    Published in Biosensors & bioelectronics (15-12-2010)
    “…DNA sensor arrays integrated on CMOS chips allow fully electronic readout of biological information. Compared to state-of-the-art optical methods optical…”
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    Journal Article
  8. 8

    Sensing cellular adhesion with a CMOS integrated impedance-to-frequency converter by Mucha, Andreas, Schienle, Meinrad, Schmitt-Landsiedel, Doris

    Published in 2011 IEEE Sensors Applications Symposium (01-02-2011)
    “…Sensing cellular adhesion via impedance measurements provides a versatile and easily accessible means for monitoring in-vitro cell cultures. In this work we…”
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    Conference Proceeding
  9. 9

    Efficient solar powered wireless sensor solution by Weiss, Roland, Eckert, Helmut, Schienle, Meinrad, Frey, Alexander, Kuhne, Ingo, Krummer, Bastian

    Published in 2013 European Microwave Conference (01-10-2013)
    “…In this paper, two different solutions for efficient solar powered sensor networks are presented and compared. Some fundamental considerations on the…”
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    Conference Proceeding
  10. 10

    A digital CMOS DNA chip by Frey, A., Schienle, M., Paulus, C., Jun, Z., Hofmann, F., Schindler-Bauer, P., Holzapfl, B., Atzesberger, M., Beer, G., Fritz, M., Haneder, T., Hanke, H.-C., Thewes, R.

    “…A fully electronic medium density DNA micro array is presented using a CMOS process extended by gold electrodes. The chip provides 128 sensor sites, in-sensor…”
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    Conference Proceeding
  11. 11

    Design and fabrication of monolithic optical spot size transformers (MOSTs) for highly efficient fiber-chip coupling by Wenger, G., Stoll, L., Weiss, B., Schienle, M., Muller-Nawrath, R., Eichinger, S., Muller, J., Acklin, B., Muller, G.

    Published in Journal of lightwave technology (01-10-1994)
    “…A novel type of monolithic optical spot size transformer realized in the InP/InGaAsP material system combines many desirable features like high fiber-chip…”
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    Journal Article
  12. 12

    Sensor arrays for fully-electronic DNA detection on CMOS by Thewes, R., Hofmann, F., Frey, A., Holzapfl, B., Schienle, M., Paulus, C., Schindler, P., Eckstein, G., Kassel, C., Stanzel, M., Hintsche, R., Nebling, E., Albers, J., Hassman, J., Schulein, J., Goemann, W., Gumbrecht, W.

    “…A 16x8 DNA sensors array chip with fully-electronic readout based on CMOS process was discussed. Requirements concerning the integration of bio-compatible…”
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    Conference Proceeding Journal Article
  13. 13

    Low-loss bent connections for optical switches by Heinbach, M., Schienle, M., Schmid, A., Acklin, B., Muller, G.

    Published in Journal of lightwave technology (01-05-1997)
    “…We present S-bent InP/InGaAsP rib waveguides used as connections for optical switches at /spl lambda/=1.5 /spl mu/m. Transitions between waveguides of…”
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    Journal Article
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    A fully electronic DNA sensor with 128 positions and in-pixel A/D conversion by Schienle, M., Frey, A., Hofmann, F., Holzapfl, B., Paulus, C., Schindler-Bauer, P., Thewes, R.

    “…A 16x8 CMOS sensor array for fully electronic DNA detection is presented. Each position contains a complete A/D converter with a dynamic range of five decades…”
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    Conference Proceeding
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    A comparison between finite element calculations and experimental results on InGaAsP/InP waveguides by Neubauer, C., Marz, R., Schienle, M.

    Published in Journal of lightwave technology (01-12-1990)
    “…Calculated and measured properties of InGaAsP/InP waveguides are compared. The spectral response of Bragg gratings was used to measure precisely the effective…”
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    Journal Article
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    Monolithically integrated detector chip for a two-channel unidirectional WDM link at 1.5 mu m by Winzer, G., Doldissen, W., Cremer, C., Fiedler, F., Heise, G., Kaiser, R., Marz, R., Mahlein, H.F., Morl, L., Nolting, H.-P.J., Rehbein, W., Schienle, M., Schulte-Roth, G., Unterborsch, G., Unzeitig, H., Wolff, U.

    “…The fabrication and operation of a monolithically integrated InGaASP/InP wavelength division multiplexing (WDM) detector chip is reported. It consists of a…”
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    Journal Article