Weili Zhang

Professor

Electrical & Computer Engineering

  • Professor
    Electrical & Computer Engineering

TEACHING

  • COURSE TAUGHT
    Applied Fields and Waves I
    8 Jun 2026 - 31 Jul 2026
    Circuit model of transmission lines, wave propagation, energy transfer, impedance mismatch, and transients. Field analysis of voltage, current, resistance, capacitance, and inductance. Coupled circuits.Prerequisite(s): MATH 2163 and ECEN 3714 with a 'C' or better.
  • COURSE TAUGHT
    Dissertation
    8 Jun 2026 - 31 Jul 2026
    Independent research for students continuing graduate study beyond the level of the MS degree.Offered for variable credit, 1-12 credit hours, maximum of 36 credit hours.Prerequisite(s): Consent of major professor.
  • COURSE TAUGHT
    Dissertation
    12 Jan 2026 - 1 May 2026
    Independent research for students continuing graduate study beyond the level of the MS degree.Offered for variable credit, 1-12 credit hours, maximum of 36 credit hours.Prerequisite(s): Consent of major professor.
  • COURSE TAUGHT
    Introduction to Semiconductor Devices
    12 Jan 2026 - 1 May 2026
    Crystal structure, the quantum theory of solids. The physics of semiconductor materials and the projunction, with an emphasis on applications to semiconductor devices. Same course as PHYS 3313.Prerequisite(s): ECEN 3714 with a grade of 'C' or better.
  • COURSE TAUGHT
    Solid State Electronic Devices
    12 Jan 2026 - 1 May 2026
    Solid state physics basis of modern electronic devices. Introductory quantum mechanics. Energy bands in solids. Electronic properties of semiconductors. Junction diodes. Bipolar transistors. Field effect transistor.Prerequisite(s): ECEN 3714 with a 'C' or better and (PHYS 3313 or ECEN 3903 with a 'C' or better).
  • COURSE TAUGHT
    Dissertation
    18 Aug 2025 - 5 Dec 2025
    Independent research for students continuing graduate study beyond the level of the MS degree.Offered for variable credit, 1-12 credit hours, maximum of 36 credit hours.Prerequisite(s): Consent of major professor.
  • COURSE TAUGHT
    Microelectronic Fabrication
    18 Aug 2025 - 5 Dec 2025
    Contamination control and clean-room, vacuum systems, wafer manufacturing. Photolithography and alternative lithographic techniques. Physical and chemical vapor deposition, oxidation, etching, doping, packaging, formation of semiconductor devices and circuits. A series of Fabrication lab projects is conducted starting from bare silicon wafers to fabricate Optoelectronic circuits. Additional flat fee of $120.00 applies. Prerequisite(s): ECEN 3314 or Departmental Permission.
  • COURSE TAUGHT
    Dissertation
    9 Jun 2025 - 1 Aug 2025
    Independent research for students continuing graduate study beyond the level of the MS degree.Offered for variable credit, 1-12 credit hours, maximum of 36 credit hours.Prerequisite(s): Consent of major professor.
  • COURSE TAUGHT
    Dissertation
    13 Jan 2025 - 2 May 2025
    Independent research for students continuing graduate study beyond the level of the MS degree.Offered for variable credit, 1-12 credit hours, maximum of 36 credit hours.Prerequisite(s): Consent of major professor.
  • COURSE TAUGHT
    Introduction to Semiconductor Devices
    13 Jan 2025 - 2 May 2025
    Crystal structure, the quantum theory of solids. The physics of semiconductor materials and the projunction, with an emphasis on applications to semiconductor devices. Same course as PHYS 3313.Prerequisite(s): PHYS 2114 and MATH 2233 and ECEN 2714 with a 'C' or better.
  • COURSE TAUGHT
    Solid State Electronic Devices
    13 Jan 2025 - 2 May 2025
    Solid state physics basis of modern electronic devices. Introductory quantum mechanics. Energy bands in solids. Electronic properties of semiconductors. Junction diodes. Bipolar transistors. Field effect transistor.Prerequisite(s): ECEN 3714 with a 'C' or better and (PHYS 3313 or ECEN 3903 with a 'C' or better).
  • COURSE TAUGHT
    Applied Fields and Waves I
    19 Aug 2024 - 6 Dec 2024
    Circuit model of transmission lines, wave propagation, energy transfer, impedance mismatch, and transients. Field analysis of voltage, current, resistance, capacitance, and inductance. Coupled circuits.Prerequisite(s): MATH 2163 and ECEN 3714 with a 'C' or better.
  • COURSE TAUGHT
    Dissertation
    19 Aug 2024 - 6 Dec 2024
    Independent research for students continuing graduate study beyond the level of the MS degree.Offered for variable credit, 1-12 credit hours, maximum of 36 credit hours.Prerequisite(s): Consent of major professor.
  • COURSE TAUGHT
    Microelectronic Fabrication
    19 Aug 2024 - 6 Dec 2024
    Contamination control and clean-room, vacuum systems, wafer manufacturing. Photolithography and alternative lithographic techniques. Physical and chemical vapor deposition, oxidation, etching, doping, packaging, formation of semiconductor devices and circuits. A series of Fabrication lab projects is conducted starting from bare silicon wafers to fabricate Optoelectronic circuits. Additional flat fee of $120.00 applies. Prerequisite(s): ECEN 3314 or Departmental Permission.
  • COURSE TAUGHT
    Dissertation
    10 Jun 2024 - 2 Aug 2024
    Independent research for students continuing graduate study beyond the level of the MS degree.Offered for variable credit, 1-12 credit hours, maximum of 36 credit hours.Prerequisite(s): Consent of major professor.
  • COURSE TAUGHT
    Dissertation
    16 Jan 2024 - 3 May 2024
    Independent research for students continuing graduate study beyond the level of the MS degree.Offered for variable credit, 1-12 credit hours, maximum of 36 credit hours.Prerequisite(s): Consent of major professor.
  • COURSE TAUGHT
    Introduction to Semiconductor Devices
    16 Jan 2024 - 3 May 2024
    Crystal structure, the quantum theory of solids. The physics of semiconductor materials and the projunction, with an emphasis on applications to semiconductor devices. Same course as PHYS 3313.Prerequisite(s): PHYS 2114 with a 'C' or better.
  • COURSE TAUGHT
    Solid State Electronic Devices
    16 Jan 2024 - 3 May 2024
    Solid state physics basis of modern electronic devices. Introductory quantum mechanics. Energy bands in solids. Electronic properties of semiconductors. Junction diodes. Bipolar transistors. Field effect transistor.Prerequisite(s): ECEN 3714 with a 'C' or better and (PHYS 3313 or ECEN 3903 with a 'C' or better).
  • COURSE TAUGHT
    Applied Fields and Waves I
    21 Aug 2023 - 8 Dec 2023
    Circuit model of transmission lines, wave propagation, energy transfer, impedance mismatch, and transients. Field analysis of voltage, current, resistance, capacitance, and inductance. Coupled circuits.Prerequisite(s): MATH 2163 and ECEN 3714 with a 'C' or better.
  • COURSE TAUGHT
    Dissertation
    21 Aug 2023 - 8 Dec 2023
    Independent research for students continuing graduate study beyond the level of the MS degree.Offered for variable credit, 1-12 credit hours, maximum of 36 credit hours.Prerequisite(s): Consent of major professor.
  • COURSE TAUGHT
    Microelectronic Fabrication
    21 Aug 2023 - 8 Dec 2023
    Contamination control and clean-room, vacuum systems, wafer manufacturing. Photolithography and alternative lithographic techniques. Physical and chemical vapor deposition, oxidation, etching, doping, packaging, formation of semiconductor devices and circuits. A series of Fabrication lab projects is conducted starting from bare silicon wafers to fabricate Optoelectronic circuits. Additional flat fee of $120.00 applies. Prerequisite(s): ECEN 3314.
  • COURSE TAUGHT
    Dissertation
    17 Jan 2023 - 5 May 2023
    Independent research for students continuing graduate study beyond the level of the MS degree.Offered for variable credit, 1-12 credit hours, maximum of 36 credit hours.Prerequisite(s): Consent of major professor.
  • COURSE TAUGHT
    Introduction to Semiconductor Devices
    17 Jan 2023 - 5 May 2023
    Crystal structure, the quantum theory of solids. The physics of semiconductor materials and the projunction, with an emphasis on applications to semiconductor devices. Same course as PHYS 3313.Prerequisite(s): PHYS 2114 with a 'C' or better.
  • COURSE TAUGHT
    Solid State Electronic Devices
    17 Jan 2023 - 5 May 2023
    Solid state physics basis of modern electronic devices. Introductory quantum mechanics. Energy bands in solids. Electronic properties of semiconductors. Junction diodes. Bipolar transistors. Field effect transistor.Prerequisite(s): ECEN 3714 with a 'C' or better and (PHYS 3313 or ECEN 3903 with a 'C' or better).
  • COURSE TAUGHT
    Applied Fields and Waves I
    22 Aug 2022 - 9 Dec 2022
    Circuit model of transmission lines, wave propagation, energy transfer, impedance mismatch, and transients. Field analysis of voltage, current, resistance, capacitance, and inductance. Coupled circuits.Prerequisite(s): MATH 2163 and ECEN 3714 with a 'C' or better.