Search Results - "Meddour, Faycal"

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  1. 1

    An efficient hybrid solar and electromagnetic harvesting system for autonomous operation of small sensors by Meddour, Fayçal, Bencherif, Hichem, Boukarkar, Abdelheq, Abdi, Mohamed Amir, Amir, Mounir

    Published in Optik (Stuttgart) (01-04-2020)
    “…•A combination of solar cells and a rectenna is proposed to realize a solar and electromagnetic energy harvesting system.•SHJ solar cells with a combination of…”
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    Journal Article
  2. 2
  3. 3

    Optimization of TiO2 and PMAPTAC Concentrations of a Chemical Humidity Sensing Mechanism by Kouda, Souhil, Dibi, Zohir, Dendouga, Abdelghani, Meddour, Fayçal, Barra, Samir

    Published in Sensors (Basel, Switzerland) (01-10-2009)
    “…This work aims to achieve an optimization of the TiO2 and PMAPTAC concentrations in a chemical resistive-type humidity sensing mechanism (RHSM). Our idea is…”
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    Journal Article
  4. 4

    ANN modeling of a smart MEMS-based capacitive humidity sensor by Souhil, Kouda, Zohir, Dibi, Samir, Barra, Abdelghani, Dendouga, Fayçal, Meddour

    “…This paper presents a design of a smart humidity sensor. First we begin by the modeling of a Capacitive MEMS-based humidity sensor. Using neuronal networks and…”
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    Journal Article
  5. 5

    Optimization of TiO2 concentration effect for a chemical humidity sensing mechanism by Kouda, Souhil, Dibi, Zohir, Meddour, Fayçal, Barra, Samir, Dendouga, Abdelghani

    Published in Sensor review (01-01-2011)
    “…Purpose - The purpose of this paper is to propose a new approach to optimize the TiO2 concentration on a resistive-type humidity sensing mechanism (RHSM) based…”
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    Journal Article
  6. 6

    ANN-based-modling to study the Neutron radiation effects on MOS devices by Meddour, Faycal, Meddour, Abderrahim, Abdi, Mohamed Amir, Amir, Mounir

    “…In this work, a MOS devices model based on the artificial neural network (ANN) is proposed. This model is designed in order to use it in the neutron radiation…”
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    Conference Proceeding
  7. 7
  8. 8

    Numerical Study of Low Gain Avalanche Detector Performance by Bendib, Toufik, Lakehal, Brahim, Kouda, Souhil, Abdi, Mohamed.Amir, Dendouga, Abedelghani, Chebaki, Elassad, Aouf, Anouar.Essadat, Meddour, Faycal, Barra, Samir

    “…In this paper, we present a new ultra fast detector called Low Gain Avalanche Detector (LGAD) with low internal gain. The LGAD is fabricated with conventional…”
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    Conference Proceeding
  9. 9

    Modeling of a smart humidity sensor by Kouda, S., Dibi, Z., Meddour, F.

    “…This work aims to achieve a design of a smart humidity sensor, the goal of this study is to eliminate the non-linearity and the cross sensitivity of the output…”
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    Conference Proceeding
  10. 10

    Optimization of TiO(2) and PMAPTAC Concentrations of a Chemical Humidity Sensing Mechanism by Kouda, Souhil, Dibi, Zohir, Dendouga, Abdelghani, Meddour, Fayçal, Barra, Samir

    Published in Sensors (Basel, Switzerland) (2009)
    “…This work aims to achieve an optimization of the TiO(2) and PMAPTAC concentrations in a chemical resistive-type humidity sensing mechanism (RHSM). Our idea is…”
    Get full text
    Journal Article
  11. 11

    Optimization of TiO 2 concentration effect for a chemical humidity sensing mechanism by Kouda, Souhil, Dibi, Zohir, Meddour, Fayçal, Barra, Samir, Dendouga, Abdelghani

    Published in Sensor review (25-01-2011)
    “…Purpose The purpose of this paper is to propose a new approach to optimize the TiO 2 concentration on a resistive‐type humidity sensing mechanism (RHSM) based…”
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    Journal Article
  12. 12

    Modeling of thermal-conductivity of smart humidity sensor by Kouda, S., Dibi, Z., Meddour, F.

    “…This paper presents a design of a smart humidity sensor. First we begin by the modeling of a thermal-conductivity based humidity sensor (THS). Using neuronal…”
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    Conference Proceeding
  13. 13

    A voltage driver using the rail to rail operation in CMOS 0, 25 μm technology by Meddour, F., Dibi, Z., Kouda, S., Abdi, M.A., Manck, O.

    “…A rail to rail input common mode range is an important requirement in operational amplifiers for some applications. The most common method for implementing…”
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    Conference Proceeding