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Dive into the research topics where S. Taschini is active.

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Featured researches published by S. Taschini.


IEEE Sensors Journal | 2006

CMOS Monolithic Metal–Oxide Gas Sensor Microsystems

Diego Barrettino; Markus Graf; S. Taschini; Sadik Hafizovic; Christoph Hagleitner; Andreas Hierlemann

This paper presents two mixed-signal monolithic gas sensor microsystems fabricated in standard 0.8-


international conference on solid state sensors actuators and microsystems | 2003

CMOS monolithic microelectrode array for stimulation and recording of natural neural networks

W. Franks; Flavio Heer; I. McKay; S. Taschini; R. Sunier; Christoph Hagleitner; Andreas Hierlemann; H. Baltes

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international solid-state circuits conference | 2004

A single-chip CMOS micro-hotplate array for hazardous-gas detection and material characterization

Diego Barrettino; Markus Graf; Sadik Hafizovic; S. Taschini; Christoph Hagleitner; Andreas Hierlemann; H. Baltes

CMOS technology combined with post-CMOS micromachining to form the microhotplates. The on-chip microhotplates provide very high temperatures (between 200


IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems | 1999

Equivalent circuit model of resistive IC sensors derived with the box integration method

Christoph Maier; Markus Emmenegger; S. Taschini; H. Baltes; Jan G. Korvink

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european solid-state circuits conference | 2004

A digital CMOS micro-hotplate array for analysis of environmentally relevant gases

Urs Frey; Markus Graf; S. Taschini; K.-U. Kirstein; Christoph Hagleitner; Andreas Hierlemann; H. Baltes

C and 400


international conference on micro electro mechanical systems | 1998

Simulation of a thermomechanically actuated gas sensor

Markus Emmenegger; S. Taschini; Jan G. Korvink; H. Baltes

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ieee sensors | 2008

Digital systems architecture to accommodate wide range resistance changes of metal-oxide sensors

Urs Frey; Markus Graf; S. Taschini; K.-U. Kirstein; Andreas Hierlemann

C), which are necessary for the normal operation of metal–oxide sensing layers. The first microsystem has a single-ended architecture comprising a microhotplate (diameter of 300


international conference on micro electro mechanical systems | 2004

Digital MOS-transistor-based microhotplate array for simultaneous detection of environmentally relevant gases

Markus Graf; S. Taschini; P. Kaser; Christoph Hagleitner; Andreas Hierlemann; H. Baltes

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symposium on vlsi circuits | 2003

Hotplate-based conductometric monolithic CMOS gas sensor system

Diego Barrettino; Markus Graf; S. Taschini; M. Zimmermann; Christoph Hagleitner; Andreas Hierlemann; H. Baltes

) and a digital proportional-integral-derivative (PID) microhotplate temperature controller. The second microsystem has a fully-differential architecture comprising an array of three microhotplates (diameter of 100


international conference on micro electro mechanical systems | 2003

Monolithic metal-oxide microsensor system in industrial CMOS technology

Markus Graf; Diego Barrettino; S. Taschini; Christoph Hagleitner; Andreas Hierlemann; H. Baltes

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Jan G. Korvink

Karlsruhe Institute of Technology

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