Tarik Saidi

University Professor at Université Cadi Ayyad
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Contact Information
us****@****om
(386) 825-5501
Location
MA
Languages
  • Français Professional working proficiency
  • Anglais Professional working proficiency
  • Arabe Native or bilingual proficiency

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Experience

    • Morocco
    • Government Administration
    • 200 - 300 Employee
    • University Professor
      • Nov 2020 - Present

    • United States
    • Motor Vehicle Manufacturing
    • 700 & Above Employee
    • Electronics Hardware Engineer
      • Apr 2020 - Nov 2020

      _ Automotive Electronics _ Circuit Breaker for Electric Vehicle (EV) _ Worst case circuit analysis (WCCA) _ Automotive Electronics _ Circuit Breaker for Electric Vehicle (EV) _ Worst case circuit analysis (WCCA)

    • Engineer of Embedded Electronic Systems & IoT (R&D) _ Team Leader
      • Mar 2019 - Apr 2020

      Tasks in Hardware Electronics Development: _ Support and management of projects (Tool: MS Project); _ Definition of hardware architecture; _ Plan the function of desired circuit; _ Schematic design and/or revision (Tool: Proteus ISIS); _ Prototyping and model preparation (THT & SMD, Wiring, Assembly of multiple boards); _ Test procedure definition on board; _ PCB layout & PCBA Engineering based on SMT/SMD technology (Tools: Proteus Ares & Samacsys); _ Optimizing electronic diagrams as well as bills of materials (BOM) and pick & places (P&P); _ Managing the production of PCB & PCBA; _ Integrated circuits & components definition; _ Specify the required electronic components, ICs & material; _ Design of power electronics circuits (AC-DC), (DC-DC) ... ; _ Evaluation and benchmarking of Sensors & Actuators / equipment’s technical parameters and prices. _ Assembly and checking; _ Finding effective solutions taking into account technical and budgetary constraints; _ PCB reverse engineering. Tasks in Software Electronics Development: _ Definition of scripting architecture; _ CAD design & simulations; _ Programmation of BCM2837 System-on-Chip (SoC) in Raspberry Pi boards (Language: Python); _ Programmation of ESP32 Wroom32 and Arduino boards (Language: embedded C); _ DAQ of sensory data via national instruments NI-9213; _ Elaboration of GUI and virtual prototyping (tool: NI LabVIEW); _ Data analysis by Matlab & IBM SPSS.

    • Poland
    • Higher Education
    • 700 & Above Employee
    • Engineer/Researcher: Embedded Electronic Systems
      • Dec 2017 - Jan 2018

      In this work, I elaborate an embedded electronic system combined with artificial intelligence for the investigation of the effect of UV-light irradiation on the sensitivity of electronic gas sensors (pristine and metal-doped tungsten trioxide (WO3) nanowires) in presence of four different concentrations of formaldehyde. Few related-results of this work were published in journal of Sensors & Actuators B: https://www.sciencedirect.com/science/article/abs/pii/S0925400518313467 In this work, I elaborate an embedded electronic system combined with artificial intelligence for the investigation of the effect of UV-light irradiation on the sensitivity of electronic gas sensors (pristine and metal-doped tungsten trioxide (WO3) nanowires) in presence of four different concentrations of formaldehyde. Few related-results of this work were published in journal of Sensors & Actuators B: https://www.sciencedirect.com/science/article/abs/pii/S0925400518313467

    • Spain
    • Higher Education
    • 700 & Above Employee
    • Engineer/Researcher: Manufacturing of MOS Sensors & Characterization
      • Mar 2016 - Aug 2016

      In this work, we have manufactured gas sensors based on pristine and functionalized (with noble metals such as Gold, Platinum, Nickel,..) tungsten trioxide (WO3) nanowires by using Aerosol Assisted Chemical Vapor Deposition (AACVD). The devices had remarkable sensing properties towards certain Volatile Organic Compounds (VOCs) which could be appeared in exhaled breath. The substrate fabrication, nanostructured material synthesis and gas sensing characterization have been performed. Atomic force microscopy (AFM), scanning electron microscopy (SEM), energy dispersive X-ray (EDX-ray) and transmission electron microscopy (TEM) have been used to investigate the morphology and the composition of the nanostructures grown. The functionality of five sensors has been demonstrated by testing their gas sensing properties in presence of Hydrogen sulfide (H2S), Ammonia (NH3) and Ethanol (C2H6O) with different concentrations. Few related-results of this work were published in journal of Sensors & Actuators B https://www.sciencedirect.com/science/article/abs/pii/S0925400517320920

    • Food and Beverage Manufacturing
    • 400 - 500 Employee
    • Engineering : internship - Siemens Automation
      • Mar 2013 - Jun 2013

      As part of our project graduation, we were asked to design a solution to automate and monitor the operation of the new production of soap, especially the line that produces soap paste, using "Siemens S7-300." For this we have used the Siemens engineering system for automation application, we are talking about the "STEP 7" software and monitoring software of "Wincc flexible" that help us to achieve the overall graphical interface that monitor the production process in real time. As part of our project graduation, we were asked to design a solution to automate and monitor the operation of the new production of soap, especially the line that produces soap paste, using "Siemens S7-300." For this we have used the Siemens engineering system for automation application, we are talking about the "STEP 7" software and monitoring software of "Wincc flexible" that help us to achieve the overall graphical interface that monitor the production process in real time.

    • France
    • Wholesale Building Materials
    • 200 - 300 Employee
    • Engineering: internship - Siemens Automation
      • Mar 2011 - Jun 2011

      The purpose of this training was to develop an automatic controller of O2 and CO gases located in the analysis cabin of cyclone preheater and a dependability study to increase the reliability of the preheater. The purpose of this training was to develop an automatic controller of O2 and CO gases located in the analysis cabin of cyclone preheater and a dependability study to increase the reliability of the preheater.

Education

  • University of Tarragona
    Gas sensors / electronic nose
  • Université Moulay Ismail Meknès
    Doctorate degree, Electronics and artificial intelligence
  • Université Hassan II Aïn Chock de Casablanca
    Master degree, Electronic, Electrical engineering, Automatic and industrial computing
  • Université Hassan II Aïn Chock de Casablanca
    Licence degree, Electronic, Electrical engineering, Automatic and industrial computing

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