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Publikationen

A 0.6V 100dB 5.2MHz transconductance amplifier realized in a multi-Vt process

A. Bargagli-Stoffi, J. Sauerbrey, R. Thewes, and D. Schmitt-Landsiedel

pp. 247-250, 2005.


Design of an integrated potentiostat circuit for CMOS bio sensor chips

A. Frey, M. Jenkner, M. Schienle, C. Paulus, B. Holzapfl, P. Schindler-Bauer, F. Hofmann, D. Kuhlmeier, J. Krause, J. Albers, W. Gumbrecht, D. Schmitt-Landsiedel, and R. Thewes

Volume:5 9-12, 2003.


A digital CMOS DNA chip

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

3 pp. 2915-2918, 2005.


CCO-based continuous-time ΔΣ modulators for electrochemical sensor arrays: System- and transistor-level simulation results

A. Laifi, Al Adib M. Abaji, and R. Thewes

pp. 493-498, 2014. Conference Location: Lublin, Poland


A 96 dB SNDR current-mode continuous-time ΔΣ modulator for electrochemical sensor arrays

A. Laifi, M.A. Al Abaji, and R. Thewes,

pp. 239-242, 2015.


Electrical imaging of neuronal activity by multi-transistor-array (MTA) recording at 7.8 µm resolution

A. Lambacher, M. Jenkner, M. Merz, B. Eversmann, R.A. Kaul F. Hofmann, R. Thewes, and P. Fromherz

Applied Physics A Volume 79(7)pp. 1607-1611, 2004.

Download Bibtex Eintrag

Identifying firing mammalian neurons innetworks with high-resolution multi-transistor arry (MTA)

A. Lambacher, V. Vitzthum, R. Zeitler, M. Eickenscheidt, B. Eversmann, R. Thewes, and P. Fromherz

J.Appl. Phys. A 102 pp. 1-11, 2011.

Download Bibtex Eintrag

On the design robustness of threshold logic gates using multi-input floating gate MOS transistors

A. Luck, S. Jung, R. Brederlow, R. Thewes, K. Goser, and W. Weber

Volume: 47(6)pp. 1231-1240, 2000.


A neutral tissue interfacing chip for in-vitro applications with 32k recording/ simulation channels on an active aera of 2.6 mm²

B. Eversmann, A. Lambacher, T. Gerling, A. Kunze, P. Fromherz, and R. Thewes

pp. 211-214, 2011.


A 128 x 128 CMOS bio-sensor array for extracellular recording of neural activity

B. Eversmann, M. Jenkner, C. Paulus, F. Hofmann, R. Brederlow, B. Holzapfl, P. Fromherz, M. Brenner, M. Schreiter, R. Gabl, K. Plehnert, M. Steinhauser, G. Eckstein, D. Schmitt-Landsiedel, and R. Thewes

pp. 222-223 and 489, 2003.


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