Daqing (Daching) Piao

Professor

Electrical & Computer Engineering

  • Professor
    Electrical & Computer Engineering

TEACHING

  • 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
    Design of Lasers and Systems
    12 Jan 2026 - 1 May 2026
    Introduction of the design of lasers and optical systems based on lasers including the design, construction, and characterization of lasers. Gaussian beams and optics, laser gain materials, laser cavities, advanced topics. Course previously offered as ECEN 4813.Prerequisite(s): ECEN 3714
  • COURSE TAUGHT
    Design of Lasers and Systems
    12 Jan 2026 - 1 May 2026
    Introduction of the design of lasers and optical systems based on lasers including the design, construction, and characterization of lasers. Gaussian beams and optics, laser gain materials, laser cavities, advanced topics. Course previously offered as ECEN 4813.Prerequisite(s): ECEN 3714
  • 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 Biomedical Engineering Modeling and Systems
    12 Jan 2026 - 1 May 2026
    An overview of the field of biomedical engineering and an introduction of the modeling approaches implemented in biomedical engineering. Topics include bio-electronics, biomechanics, compartmental modeling, bio-signal processing, biomedical optics, etc. The course will demonstrate a few of major fields of activity in which biomedical engineers are engaged and modeling approaches are implemented.Prerequisite(s): ECEN 3513.
  • COURSE TAUGHT
    Introduction to Biomedical Engineering Modeling and Systems (4743)
    12 Jan 2026 - 1 May 2026
    Fundamental topics that are typically introduced in the senior year curriculum with additional depth and breadth commensurate with the graduate program. Repeat credit may be earned with difference course subtitles assigned.Offered for variable credit, 1-6 credit hours, maximum of 9 credit hours.Prerequisite(s): Advisor permission.
  • COURSE TAUGHT
    Design of Optical Systems
    18 Aug 2025 - 5 Dec 2025
    Introduction to optics through the design, construction, and characterization of optical systems. Emphasis on geometrical optics and spectroscopy. Course previously offered as ECEN 3813.Prerequisite(s): ECEN 3714 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
    Introduction to Semiconductor Devices
    18 Aug 2025 - 5 Dec 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): ECEN 3714 with a grade of 'C' or better.
  • 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
    Design of Lasers and Systems
    13 Jan 2025 - 2 May 2025
    Introduction of the design of lasers and optical systems based on lasers including the design, construction, and characterization of lasers. Gaussian beams and optics, laser gain materials, laser cavities, advanced topics. Course previously offered as ECEN 4813.Prerequisite(s): ECEN 3613.
  • 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
    Network Analysis
    13 Jan 2025 - 2 May 2025
    Advanced mathematical analysis techniques used in circuit analysis including Laplace transforms, Fourier transforms, and Fourier series. Circuit frequency response, Bode plots, and filters, including passive, active, low-pass, high-pass, and band-pass filters. Theory of linear circuits; two-port circuit models and parameters. Course previously offered as ECEN 3713.Prerequisite(s): MATH 2233 and ECEN 2714 and PHYS 2114 and ENSC 2611 with a grade of 'C' or better.
  • COURSE TAUGHT
    Network Analysis
    13 Jan 2025 - 2 May 2025
    Advanced mathematical analysis techniques used in circuit analysis including Laplace transforms, Fourier transforms, and Fourier series. Circuit frequency response, Bode plots, and filters, including passive, active, low-pass, high-pass, and band-pass filters. Theory of linear circuits; two-port circuit models and parameters. Course previously offered as ECEN 3713.Prerequisite(s): MATH 2233 and ECEN 2714 and PHYS 2114 and ENSC 2611 with a grade of 'C' or better.
  • COURSE TAUGHT
    Network Analysis
    13 Jan 2025 - 2 May 2025
    Advanced mathematical analysis techniques used in circuit analysis including Laplace transforms, Fourier transforms, and Fourier series. Circuit frequency response, Bode plots, and filters, including passive, active, low-pass, high-pass, and band-pass filters. Theory of linear circuits; two-port circuit models and parameters. Course previously offered as ECEN 3713.Prerequisite(s): MATH 2233 and ECEN 2714 and PHYS 2114 and ENSC 2611 with a grade of 'C' or better.
  • COURSE TAUGHT
    Design of Optical Systems
    19 Aug 2024 - 6 Dec 2024
    Introduction to optics through the design, construction, and characterization of optical systems. Emphasis on geometrical optics and spectroscopy. Course previously offered as ECEN 3813.Prerequisite(s): 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
    Introduction to Semiconductor Devices
    19 Aug 2024 - 6 Dec 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 and MATH 2233 and ECEN 2714 with a 'C' or better.
  • 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
    Design of Lasers and Systems
    16 Jan 2024 - 3 May 2024
    Introduction of the design of lasers and optical systems based on lasers including the design, construction, and characterization of lasers. Gaussian beams and optics, laser gain materials, laser cavities, advanced topics. Course previously offered as ECEN 4813.Prerequisite(s): ECEN 3613.
  • COURSE TAUGHT
    Network Analysis
    16 Jan 2024 - 3 May 2024
    Advanced mathematical analysis techniques used in circuit analysis including Laplace transforms, Fourier transforms, and Fourier series. Circuit frequency response, Bode plots, and filters, including passive, active, low-pass, high-pass, and band-pass filters. Theory of linear circuits; two-port circuit models and parameters. Course previously offered as ECEN 3713.Prerequisite(s): MATH 2233 and ECEN 2714 and PHYS 2114 with a grade of 'C' or better.
  • COURSE TAUGHT
    Network Analysis
    16 Jan 2024 - 3 May 2024
    Advanced mathematical analysis techniques used in circuit analysis including Laplace transforms, Fourier transforms, and Fourier series. Circuit frequency response, Bode plots, and filters, including passive, active, low-pass, high-pass, and band-pass filters. Theory of linear circuits; two-port circuit models and parameters. Course previously offered as ECEN 3713.Prerequisite(s): MATH 2233 and ECEN 2714 and PHYS 2114 with a grade of 'C' or better.
  • COURSE TAUGHT
    Network Analysis
    16 Jan 2024 - 3 May 2024
    Advanced mathematical analysis techniques used in circuit analysis including Laplace transforms, Fourier transforms, and Fourier series. Circuit frequency response, Bode plots, and filters, including passive, active, low-pass, high-pass, and band-pass filters. Theory of linear circuits; two-port circuit models and parameters. Course previously offered as ECEN 3713.Prerequisite(s): MATH 2233 and ECEN 2714 and PHYS 2114 with a grade of '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
    Introduction to Semiconductor Devices
    21 Aug 2023 - 8 Dec 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.