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5215 search results found
  • Polina
    Olegovna
    Anikeeva

    Matoula S Salapatas Professor of Materials Science and Engineering
    Primary DLC
    Department of Materials Science and Engineering

    Contact

    MIT Room
    36-849
    Phone
    (617) 258-7348
    anikeeva@mit.edu

    Assistant

    Assistant Name
    Cindy Higgins
    Assistant phone number
    (617) 258-8836
    chiggins@mit.edu
  • Jeehwan Kim
    January 21, 2021 ILP Faculty Feature

    Powering the Next Generation of Electronics

    Jeehwan Kim

  • 2024 MIT R&D Conference: Track 5 - AI - The Road to Digital Twins in Semiconductor Manufacturing

    November 19, 2024Conference Video Duration: 25:26
    The Road to Digital Twins in Semiconductor Manufacturing
    Duane Boning
    MIT Vice Provost for International Activities (VPIA)
    Associate Director, Microsystems Technology Laboratories (MTL)
    Clarence J. LeBel Professor, MIT Electrical Engineering and Computer Science (EECS)

    There is great interest in “digital twins” to improve many aspects of semiconductor manufacturing, from increased device yield and performance, reduced consumption of energy and materials, increased flexibility, and to enable rapid uptake and scaling of new material, equipment, and process innovations. The digital twin has both physical and virtual components, with bilateral communication and control; the hope is to enable a wide range of models (of equipment, processes, wafers) at different fidelities (physical to simplified empirical, and machine-learning enabled), to support a wide range of “smart” functionalities. The road to digital twins goes through and builds upon many well-trodden paths. Here, several lines of research at MTL since the late 1980’s are highlighted, beginning with elements of the MIT Computer Aided Fabrication Environment including process flow languages, to DOE/Opt methods for automated surrogate model construction, and run by run control to track and compensate for equipment state and wear in CMP and other unit processes. The development of “statistical metrology” methods encompassed characterization and modeling of semiconductor variation, with layout pattern dependent models to identify “hot spots” in planarization, dishing, and erosion for a given design, as well as to guide dummy fill generation. An evolution from statistical to ML/AI approaches, particularly Bayesian methods, enabled design for manufacturability (DFM) for rapid MOSFET characterization, and then rapid fabrication process tuning, as well as AI-enabled anomaly detection. These and other paths bring us to an exciting next stage of the journey: by harnessing advances in sensing and data collection, AI methods, and computational power not possible at the beginning, the community is poised to create and deploy digital twins for semiconductor manufacturing.

  • 2020 Customer Single Stranded DNA

    August 5, 2020Conference Video Duration: 17:4
    Customer Single Stranded DNA

     

  • Tisha
    G
    Gomes Voss

    Assistant Director, Seminar XXI Program
    Primary DLC
    Center for International Studies

    Contact

    MIT Room
    E40-445
    Phone
    (617) 258-6862
    tishag@mit.edu
  • Paula
    T
    Hammond

    Institute Professor and Vice Provost for Faculty
    Primary DLC
    Office of the Provost

    Contact

    MIT Room
    66-342
    Phone
    (617) 258-7577
    hammond@mit.edu

    Assistant

    Assistant Name
    Liz Galoyan
    Assistant phone number
    (617) 253-3016
    lgaloyan@mit.edu
  • 3.30.21-Built-AirWorks

    March 30, 2021Conference Video Duration: 4:14
    David Morczinek
    CEO, AirWorks
  • Colette
    L
    Heald

    Visiting Professor of Civil and Environmental Engineering
    Primary DLC
    Department of Civil and Environmental Engineering

    Contact

    MIT Room
    48-335
    Phone
    (617) 324-5666
    heald@mit.edu
  • SMR-Logo
    November 19, 2018

    Wait-and-See Could Be a Costly AI Strategy

  • Julie
    Lucas

    Vice President for Resource Development
    Primary DLC
    Vice President for Resource Development

    Contact

    MIT Room
    W98-654
    Phone
    (617) 253-3952
    julielu@mit.edu

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