An energy-efficient, wide dynamic-range (DR) CMOS analog front-end (AFE) for chemiresistive sensors is presented. The circuit is specifically designed for the Metal Oxide (MOX) gas sensors, a special technology of chemiresistive sensors, broadly diffused in modern portable devices due to their low-cost and simplicity of use. Energy efficiency is mandatory for the AFE in order to prolong the battery life that supply these devices. The proposed circuit implements the resistance-to-time (R-to-T) conversion of the sensor's resistance by adopting a relaxation oscillator-based architecture. A limiting resistor in series with the sensor is introduced for reducing the circuit's energy-per-measurement (EpM), while mitigating the error due to the sen...
This paper presents an energy-efficient readout circuit for resonant sensors that operates based on ...
This paper presents the design of an integrated current-controlled oscillator (CCO) based readout fr...
New gas sensing materials, like conductive polymers and nanomaterials-based composites, together wit...
A new oscillating circuit is proposed to estimate the resistance and parallel parasitic capacitance ...
In this paper, we present the design and the characterization of a wide-dynamic-range interface circ...
This paper presents a high linearity, wide dynamic range, calibration-less readout circuit for metal...
abstract: This thesis presents a gas sensor readout IC for amperometric and conductometric electroch...
MOX gas sensors show a wide input resistance variation due to different employed materials, sensor a...
The main issue concerning metal oxide (MOX) gas sensors is mostly related to the wide range of resis...
AbstractMetal oxide (MOX) gas sensors, as well as the new nanowire-based sensors, can show resistive...
The simultaneous operation of multiple different semiconducting metal oxide (MOX) gas sensors is dem...
This thesis discusses the theory, architecture and circuit design and measurements of an ultra-low-e...
Abstract-We present a low-power wide-dynamic-range readout circuit that directly interfaces a select...
This paper presents the design, realization, and performance measurements of a wireless interface pr...
A new trend in the development of integrated sensor is to include the signal conditioning circuit an...
This paper presents an energy-efficient readout circuit for resonant sensors that operates based on ...
This paper presents the design of an integrated current-controlled oscillator (CCO) based readout fr...
New gas sensing materials, like conductive polymers and nanomaterials-based composites, together wit...
A new oscillating circuit is proposed to estimate the resistance and parallel parasitic capacitance ...
In this paper, we present the design and the characterization of a wide-dynamic-range interface circ...
This paper presents a high linearity, wide dynamic range, calibration-less readout circuit for metal...
abstract: This thesis presents a gas sensor readout IC for amperometric and conductometric electroch...
MOX gas sensors show a wide input resistance variation due to different employed materials, sensor a...
The main issue concerning metal oxide (MOX) gas sensors is mostly related to the wide range of resis...
AbstractMetal oxide (MOX) gas sensors, as well as the new nanowire-based sensors, can show resistive...
The simultaneous operation of multiple different semiconducting metal oxide (MOX) gas sensors is dem...
This thesis discusses the theory, architecture and circuit design and measurements of an ultra-low-e...
Abstract-We present a low-power wide-dynamic-range readout circuit that directly interfaces a select...
This paper presents the design, realization, and performance measurements of a wireless interface pr...
A new trend in the development of integrated sensor is to include the signal conditioning circuit an...
This paper presents an energy-efficient readout circuit for resonant sensors that operates based on ...
This paper presents the design of an integrated current-controlled oscillator (CCO) based readout fr...
New gas sensing materials, like conductive polymers and nanomaterials-based composites, together wit...