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Course Criteria
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3.00 Credits
Digital circuit analysis. Discrete and integrated circuit technology, logic families, A/D-D/A circuits, comparators, Schmitt triggers. Prerequisites: CpE 100 and EE 320. 3 credits.
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3.00 Credits
Laboratory-based analysis and design of digital and computer electronic systems. Corequisite: EE 421. Prerequisite EE 320L. 1 credit.
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3.00 Credits
Design of CMOS, BICMOS, and bipolar analog integrated circuits. Topics include device models, current mirror design, single stage amplifier design, differential amplifier design, frequency response analysis and noise analysis. Prerequisite: EE 320. 3 credits.
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3.00 Credits
Introduction to the theory, design and implementation of digital VLSI systems including MOS transistor theory and integrated circuit fabrication technology, digital system design, layout and design rules and use of CAD tools. Prerequisites: EE 320 and CpE 300. 3 credits.
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3.00 Credits
Telegraphist’s equations; transient response—steady stateresponse; reflection diagrams; Smith chart; matching techniques and designs; narrow and broadband impedance matching techniques; scattering matrix; introduction to stripline and microstrip devices. Prerequisite: EE 330. 3 credits
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3.00 Credits
Engineering applications of optics. Includes aperture and grating antennas, holography, optical image processing, optical waveguides, and tomography. Prerequisite: EE 330 and MATH 459. 3 credits.
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3.00 Credits
Fundamentals of antennas and antenna design; linear wire, loop, and antenna arrays; antenna measurements. Prerequisites: EE 330, MATH 459. 3 credits. College of Engineering 157
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3.00 Credits
Waveguides, dispersion diagrams, microwave network analysis, broadband impedance matching, open and closed resonators, power dividers, directional couplers, filters, circulators, phase shifters, solid state amplifier, and oscillator design. Prerequisite: ECG 330 and MATH 459. 3 credits.
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3.00 Credits
Topics include: diode circuits and rectifiers, power semiconductor diodes and transistors, thyristors and static switches, controlled rectifiers, AC voltage controllers, DC choppers, inverters, AC and DC drives, power supplies and protection of devices and circuits. Prerequisites: EE 320 and EE 340. 3 credits.
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3.00 Credits
Semiconductor physics, pn diode, bipolar junction transistor, metal semiconductor FET devices, metal oxide semiconductor FET devices. Prerequisites: EE 320, MATH 431. 3 credits.
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