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Course Criteria
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1.00 Credits
Observation of transient and steady-state phenomena, phase-shift circuits, resonance. Use of phasor diagrams. 1 laboratory. Prerequisite: MATH 244, EE 241 with a C- grade or better or consent of department chair. Concurrent: EE 212.
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1.00 Credits
Techniques of measurement of DC and steady-state AC circuit parameters. Equivalent circuits, nonlinear elements, resonance. 1 laboratory. Concurrent: EE 201.
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3.00 Credits
Fundamentals of electro-mechanical energy conversion. Magnetic circuits and electromagnetic devices. Theory of operation and operating characteristics of transformers, DC machines, and AC induction and synchronous machines. 3 lectures. Prerequisite: EE 212&242 with a C- grade or better, or EE 201&251. Concurrent: EE 295.
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1.00 Credits
Experiments to design and test digital computer circuits and systems with programmable logic devices (PLDs). Design projects to implement a basic computer with data path components and control. Assembly language programming projects for an off-the-shelf RISC-based microcontroller. 1 laboratory. Prerequisite: EE 129&169 with a C- grade or better. Concurrent: EE 229.
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1.00 Credits
Single-phase and three-phase transformers. Starting of rotating machines, evaluation of characteristics of rotating machines. 1 laboratory. Prerequisite: EE 212&242 with a C- grade or better or EE 201&251. Concurrent: EE 255.
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3.00 Credits
Introduction to feedback control systems. System modeling. Transfer functions. Graphical system representation. System time response, stability. Root Locus. Frequency response. Compensation. 3 lectures. Prerequisite: EE 228, EE 255&295. Concurrent: EE 342. Suggested: EE 368.
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3.00 Credits
Internal operation, semiconductor physics, terminal characteristics, models and application of diodes (LEDs, solar cells, and photo-diodes) and transistors (field-effect and bipolar). 3 lectures. Prerequisite: CHEM 124, EE 212&242 with a C- grade or better, IME 156 or IME 157 or IME 458, PHYS 211. Concurrent: EE 346.
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3.00 Credits
Analysis, design, application and interfacing of integrated logic circuits, including NMOS, CMOS, TTL, ECL, and other logic families. 3 lectures. Prerequisite: EE 129&169 with a C- grade or better, EE 306&346 with a C- grade or better. Concurrent: EE 347, EE 229 (may be taken previously).
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3.00 Credits
Analysis and design of integrated circuits for use in analog applications. Gain, frequency response, and feedback of linear small-signal amplifiers. 3 lectures. Prerequisite: EE 302&342 with a C- grade or better, EE 307&347 with a C- grade or better. Concurrent: EE 348.
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3.00 Credits
Analog modulation, including: double-sideband modulation, amplitude modulation, single-sideband modulation, frequency modulation, phase modulation. Performances of such systems in the presence of white Gaussian noise. Implementations of transmitters and receivers. 3 lectures. Prerequisite: STAT 350, with a C- grade or better.
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