In this work we present a novel CMOS fully integrable interface for wide-range resistive gas sensors. The proposed circuit is able to reveal more than six decades of resistance variation and at the same time to estimate the sensor parasitic capacitance, showing high linearity and reduced percentage error between measured and theoretical results. The implementation as integrated circuit in a standard CMOS technology allows the whole interface to be considered a simple and low-cost solution for wide-range resistive sensor arrays
Direct interface circuits (DICs) avoid the need for signal conditioning circuits and analog-to-digit...
This thesis focuses on the design of integrated readout circuits for differential capacitive sensing...
The main issue concerning metal oxide (MOX) gas sensors is mostly related to the wide range of resis...
A new oscillating circuit is proposed to estimate the resistance and parallel parasitic capacitance ...
In this work, we present novel experimental results on a single-chip integrated interface for wide-r...
In this paper, a low-cost interface for high-value resistive sensors ranging from kOhm to GOhm is pr...
In this paper, we present the design and the characterization of a wide-dynamic-range interface circ...
A complete front-end system for resistive gas sensor array is presented. The interface is composed b...
Due to their physical principle of operation, resistive gas sensors require very wide range interfac...
In this paper, an accurate front-end CMOS interface circuit for sensing very small capacitance chang...
This paper presents an ultra-low-power, widedynamic- range interface circuit for capacitive and resi...
Direct interface circuits (DICs) avoid the need for signal conditioning circuits and analog-to-digit...
This thesis focuses on simple capacitive measurement techniques suitable for integration in CMOS tec...
This paper presents the analysis and design of an integrated interface for grounded capacitive senso...
Resistive sensor arrays are formed by a large number of individual sensors which are distributed in ...
Direct interface circuits (DICs) avoid the need for signal conditioning circuits and analog-to-digit...
This thesis focuses on the design of integrated readout circuits for differential capacitive sensing...
The main issue concerning metal oxide (MOX) gas sensors is mostly related to the wide range of resis...
A new oscillating circuit is proposed to estimate the resistance and parallel parasitic capacitance ...
In this work, we present novel experimental results on a single-chip integrated interface for wide-r...
In this paper, a low-cost interface for high-value resistive sensors ranging from kOhm to GOhm is pr...
In this paper, we present the design and the characterization of a wide-dynamic-range interface circ...
A complete front-end system for resistive gas sensor array is presented. The interface is composed b...
Due to their physical principle of operation, resistive gas sensors require very wide range interfac...
In this paper, an accurate front-end CMOS interface circuit for sensing very small capacitance chang...
This paper presents an ultra-low-power, widedynamic- range interface circuit for capacitive and resi...
Direct interface circuits (DICs) avoid the need for signal conditioning circuits and analog-to-digit...
This thesis focuses on simple capacitive measurement techniques suitable for integration in CMOS tec...
This paper presents the analysis and design of an integrated interface for grounded capacitive senso...
Resistive sensor arrays are formed by a large number of individual sensors which are distributed in ...
Direct interface circuits (DICs) avoid the need for signal conditioning circuits and analog-to-digit...
This thesis focuses on the design of integrated readout circuits for differential capacitive sensing...
The main issue concerning metal oxide (MOX) gas sensors is mostly related to the wide range of resis...