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ECE 574: Nanophotonics
4.00 Credits
University of Illinois at Urbana-Champaign
Nanoscale interaction between light and semiconductors, metals, or composites; plasmonics, cavity electrodynamics, polarition cavity condensation, sub-wavelength structures, metamaterials, and applications. Prerequisite: ECE 455 or ECE 572; ECE 487 or PHYS 486.
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ECE 574 - Nanophotonics
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ECE 576: Power System Dynm & Stability
4.00 Credits
University of Illinois at Urbana-Champaign
Detailed modeling of the synchronous machine and its controls, such as excitation system and turbine-governor dynamics; time-scales and reduced order models; non-linear and linear multi-machine models; stability analysis using energy functions; power system stabilizers. Same as CSE 544. Prerequisite: ECE 476; credit or concurrent registration in ECE 530.
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ECE 576 - Power System Dynm & Stability
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ECE 577: Advanced Antenna Theory
4.00 Credits
University of Illinois at Urbana-Champaign
Selected topics from recent engineering literature on antennas supplemented by advanced topics in electromagnetic theory needed for comprehension; current techniques for analysis of wire, slot, horn, frequency independent, quasi-optical, and array antennas. Prerequisite: ECE 520.
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ECE 577 - Advanced Antenna Theory
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ECE 579: Computational Complexity
4.00 Credits
University of Illinois at Urbana-Champaign
Same as CS 579 and MATH 578. See CS 579.
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ECE 579 - Computational Complexity
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ECE 580: Optimiz by Vector Space Methds
4.00 Credits
University of Illinois at Urbana-Champaign
Introduction to normed, Banach, and Hilbert spaces; applications of the projection theorem and the Hahn-Banach Theorem to problems of minimum norm, least squares estimation, mathematical programming, and optimal control; the Kuhn-Tucker Theorem and Pontryagin's maximum principle; introduction to iterative methods. Same as MATH 587. Prerequisite: MATH 415 or MATH 482; MATH 447.
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ECE 580 - Optimiz by Vector Space Methds
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ECE 581: Advanced Analog IC Design
4.00 Credits
University of Illinois at Urbana-Champaign
Advanced topics in modern analog IC design. Emphasis on CMOS building blocks and circuit techniques as a result of fabrication technology advancement. Major topics include: noise in linear analog circuits; linear feedback theory and stability; harmonic distortion in weakly nonlinear circuits; switched-capacitor circuit technique and realization; Nyquist-rate and oversampled data converters. Extensive computer simulations required in both homework and final project. Prerequisite: ECE 410 and ECE 483.
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ECE 581 - Advanced Analog IC Design
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ECE 582: Physical VLSI Design
4.00 Credits
University of Illinois at Urbana-Champaign
Basic physical design requirements for VLSI; performance-oriented formulation and optimization of chip partitioning, module placement and interconnection; optimized design and layout of on-chip modules; circuit extraction; high-speed VLSI circuits; yield and reliability analysis; advanced VLSI packaging and parametric testing. Prerequisite: ECE 425 or ECE 482.
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ECE 582 - Physical VLSI Design
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ECE 583: Semiconductor Nanotech Lab
4.00 Credits
University of Illinois at Urbana-Champaign
Practical aspects of design and testing of nanometer-scale, MOS circuit technology. Emphasis on process integration and the interrelationship between the process flow and device/circuit performance. Experience with state-of-the-art, process and device simulation tools; nanostructure characterization using atomic force and transmission electron microscopies; capacitance, conductance and scattering parameter measurements used to extract parameters for circuit models. Prerequisite: ECE 444; PHYS 485 or PHYS 486.
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ECE 583 - Semiconductor Nanotech Lab
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ECE 585: MOS Device Modeling & Design
4.00 Credits
University of Illinois at Urbana-Champaign
Techniques for characterizing gate oxide and interface properties and reliability, I-V models for circuit simulation, design for control of short channel effects, silicon-on-insulator, and new device structures. Prerequisite: ECE 441.
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ECE 585 - MOS Device Modeling & Design
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ECE 586: Topics in Decision and Control
4.00 Credits
University of Illinois at Urbana-Champaign
Lectures and discussions related to advanced topics and new areas of interest in decision and control theory, including hybrid, sampled-data, and fault tolerant systems, control over networks, vision-based control, system estimation and identification, and dynamic games. May be repeated up to 12 hours within a term, and up to 20 hours total for the course. Credit towards a degree from multiple offerings of this course is not given if those offerings have significant overlap, as determined by the ECE department. Prerequisite: As specified each term. It is expected that each offering will have a 500-level course as prerequisite or co-requisite.
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ECE 586 - Topics in Decision and Control
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