An (IC)-C-2 programmable 0.35 mu m CMOS System-on-Chip (SoC) for bi-dimensional gas-sensor arrays providing extended dynamic range read-out with suitable embedded A/D converter and digitally controlled row temperature has been developed. The SoC also features low-power consumption, low-cost production, wide re-configurability and thus large scale compliance with several types of micro-sensors, achieving maximum performance if connected to resistive metal-oxide gas-sensor grids. The CMOS SoC read-out sub-circuit is inspired to laboratory professional electrometers and made up of a current to digital converter plus suitable very low insertion loss analog multiplexers. If connected to a 5x5 gas-sensor array, it features 380 possible measurement configurations. Arbitrary read-out sequences and temperature profiles, in time and in space, in the range [25 degrees C divided by 500 degrees C] may be run through embedded (IC)-C-2 interface and, without requiring calibration circuits, the SoC features over 160dB measured dynamic range in sensor current read-out with a worst-case output rate of 1 reading per second. Concerning instead digital row temperature regulation, the SoC sub-circuit features an accuracy, including ripple, better than 1 degrees C reaching the set-point temperature value in less than 30ms
Conso, F., Grassi, M., De Berti, C., Malcovati, P., Baschirotto, A. (2013). I2C System-on-Chip for bi-dimensional gas-sensor arrays providing extended dynamic-range A/D conversion and row temperature regulation. In Proceedings of 2013 International Conference on IC Design & Technology (pp.211-214) [10.1109/ICICDT.2013.6563339].
I2C System-on-Chip for bi-dimensional gas-sensor arrays providing extended dynamic-range A/D conversion and row temperature regulation
BASCHIROTTO, ANDREA
2013
Abstract
An (IC)-C-2 programmable 0.35 mu m CMOS System-on-Chip (SoC) for bi-dimensional gas-sensor arrays providing extended dynamic range read-out with suitable embedded A/D converter and digitally controlled row temperature has been developed. The SoC also features low-power consumption, low-cost production, wide re-configurability and thus large scale compliance with several types of micro-sensors, achieving maximum performance if connected to resistive metal-oxide gas-sensor grids. The CMOS SoC read-out sub-circuit is inspired to laboratory professional electrometers and made up of a current to digital converter plus suitable very low insertion loss analog multiplexers. If connected to a 5x5 gas-sensor array, it features 380 possible measurement configurations. Arbitrary read-out sequences and temperature profiles, in time and in space, in the range [25 degrees C divided by 500 degrees C] may be run through embedded (IC)-C-2 interface and, without requiring calibration circuits, the SoC features over 160dB measured dynamic range in sensor current read-out with a worst-case output rate of 1 reading per second. Concerning instead digital row temperature regulation, the SoC sub-circuit features an accuracy, including ripple, better than 1 degrees C reaching the set-point temperature value in less than 30msI documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.