Silicon nanowires driving miniaturization of microelectromechanical systems physical sensors: A review

M Karimzadehkhouei, B Ali… - Advanced …, 2023 - Wiley Online Library
The miniaturization of microelectromechanical systems (MEMS) physical sensors is driven
by global connectivity needs and is closely linked to emerging digital technologies and the …

Internet of Things: Development intelligent programmable IoT controller for emerging industry applications

TA Chen, SC Chen, W Tang, BT Chen - Sensors, 2022 - mdpi.com
The Internet of Things (IoT) has become critical to the implementation of Industry 4.0. The
successful operation of smart manufacturing depends on the ability to connect everything …

Neuromorphic analog spiking-modulator for audio signal processing

PM Ferreira, J Nebhen, G Klisnick… - … Integrated Circuits and …, 2021 - Springer
While CMOS scaling is currently reaching its limits in power dissipation and circuit density,
the analogy between biology and silicon is emerging as a solution to ultra-low-power signal …

The Haar wavelet transform in IoT digital audio signal processing

JPL Escola, UB de Souza, RC Guido… - Circuits, Systems, and …, 2022 - Springer
Digital signal processing allows a wide range of digital applications, including audio
processing. Discrete wavelet transform (DWT) is one of the most efficient ways of time …

A chopper negative-R Delta-Sigma ADC for audio MEMS sensors

JJ Nebhen, PM Ferreira - Computer Modeling in Engineering and …, 2022 - hal.science
This paper presents a proposed low-noise and high-sensitivity Internet of Thing (IoT) system
based on an M&NEMS microphone. The IoT device consists of an M&NEMS resistive …

A 5-nV/√ Hz chopper negative-R stabilization preamplifier for audio applications

J Nebhen, K Alnowaiser, S Meillere - Micromachines, 2020 - mdpi.com
This paper presents a low-noise and low-power audio preamplifier. The proposed low-noise
preamplifier employs a delay-time chopper stabilization (CHS) technique and a negative-R …

Análise de Área de Cobertura de Dispositivo IoT para Monitoramento em Smart Farm/IoT Device Coverage Analysis for Smart Farm Monitoring.

JPL Escola, RC Guido, IN da Silva… - RISTI (Revista Iberica de …, 2021 - go.gale.com
A melhoria do processo de monitoramento de insetos-praga em área agrícola é um desafio
para os cientistas. A cigarra é um inseto-praga da lavoura de café que tem como …

A 108-db dr 103-db snr delay-time chopper stabilization audio ct δσ modulator

J Nebhen, PM Ferreira, S Mansouri… - … on Design & Test of …, 2020 - ieeexplore.ieee.org
This paper presents a low-noise M&NEMS microphone. The resistive accelerometer and the
electronic interface are respectively a silicon nanowires and a fourth-order single-bit …

[PDF][PDF] Análise de área de cobertura de dispositivo IoT para monitoramento em smart farm

JPL Escola, RC Guido, IN Silva, LE Soares - Revista Iberica de Sistemas e …, 2021 - scielo.pt
A melhoria do processo de monitoramento de insetos-praga em área agrícola é um desafio
para os cientistas. A cigarra é um inseto-praga da lavoura de café que tem como …

[PDF][PDF] Pietro M. Ferreira, Jamel Nebhen

G Klisnick, A Benlarbi-Delai - mysite.centralesupelec.fr
While CMOS scaling is currently reaching its limits in power dissipation and circuit density,
the analogy between biology and silicon is emerging as a solution to ultra-low-power signal …