Jing Xu

MEMS R&D Engineer at AAC Technologies
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Contact Information
us****@****om
(386) 825-5501
Location
Edinburgh, Scotland, United Kingdom, UK

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Experience

    • Appliances, Electrical, and Electronics Manufacturing
    • 300 - 400 Employee
    • MEMS R&D Engineer
      • Nov 2022 - Present

      • Design and Multiphysics analysis (Comsol on the next generation MEMS microphones • Data analysis (JMP) • Mask layout design (KLayout) • Reproduce the MEMS microphone to study the physics and failure analysis (with the fitting accuracy of 99%) • Communicate and collaborating in an international team • Design and Multiphysics analysis (Comsol on the next generation MEMS microphones • Data analysis (JMP) • Mask layout design (KLayout) • Reproduce the MEMS microphone to study the physics and failure analysis (with the fitting accuracy of 99%) • Communicate and collaborating in an international team

    • United Kingdom
    • Research Services
    • 700 & Above Employee
    • Researcher PHD Student
      • Sep 2017 - Jul 2022

      • Graphene/polymer-based capacitive acoustic MEMS: A modified transfer method for millimeter-size graphene/PMMA using silicon dioxide as sacrificial layer has been developed. For the first time, a small air gap between millimeter-size graphene/PMMA and substrate of around 2 µm has been achieved. • Integration of flexible membranes and MOSFET: the flexible graphene/PMMA made capacitor has been integrated with MOSFET for acoustic sensing. • Graphene/polymer-based capacitive acoustic MEMS: A modified transfer method for millimeter-size graphene/PMMA using silicon dioxide as sacrificial layer has been developed. For the first time, a small air gap between millimeter-size graphene/PMMA and substrate of around 2 µm has been achieved. • Integration of flexible membranes and MOSFET: the flexible graphene/PMMA made capacitor has been integrated with MOSFET for acoustic sensing.

    • United Kingdom
    • Telecommunications
    • 200 - 300 Employee
    • Research Intern
      • Sep 2020 - Dec 2020

      • Research on the mathematical solutions and quantum mechanical model on Non-Equilibrium Green's Function - Density Function Theory • Research on physical modeling in electronic circuits • Collaborated with researchers on computer science to develop physical models • Research on the mathematical solutions and quantum mechanical model on Non-Equilibrium Green's Function - Density Function Theory • Research on physical modeling in electronic circuits • Collaborated with researchers on computer science to develop physical models

Education

  • The University of Edinburgh
    Doctor of Philosophy - PhD
    2017 - 2022
  • The University of Edinburgh
    Bachelor's degree, Electrical and Electronics Engineering
    2015 - 2017
  • South China University of Technology
    Bachelor's degree, The Science and Technology of Electronis
    2014 - 2017
  • South China University of Technology
    Bachelor's, Logistics
    2013 - 2014

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