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Course Criteria
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4.00 Credits
(3-3-4) Introduction to combinational logic, Gates, Boolean Algebra, Karnaugh mapping, number systems/codes, arithmetic circuits, decoders/encoders, Mux/DeMux, comparators, parity, code conversion, introduction to HDL, PLD HW implementation. Prerequisite: Placement in MATH 111 or higher.
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4.00 Credits
(3-3-4) Introduction to sequential logic, latches, flip/ flops, timers, counters/registers, HDL implementation, PLD HW implementation, finite state machine design/analysis, logic testing, DC parameters and timing analysis. Student must register for laboratory section. Prerequisite: EE 131 with grade "C" or better,MATH 111.
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4.00 Credits
1st Order Transient Analysis (3-3-4) DC and 1st Order Transient Analysis. Ohm's law. Kirchhoff's laws (KCL and KVL). Nodal analysis. Branch analysis. Source transformations. Thevenin and Norton equivalent circuits. Maximum power transfer. Introducion to operational amplifiers. Inductance. Capacitance. Mutual Inductance. Transient response of RL and RC. Student must register for a laboratory section. Prerequisite: MATH 251. Corequisite: MATH 252.
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4.00 Credits
2nd Order Transient Analysis (3-3-4) AC and 2nd order transient analysis. Sinusoids and phasors. Sinusoidal steady-state analysis. Nodal analysis. Branch analysis. Source transformations. Thevenin's and Norton's equivalent circuits. Sinusoidalsteady-state power calculation. Balanced three-phase circuits. Transformers. Student must register for a laboratory section. Prerequisite: EE 221, with a grade "C" or better,MATH 252.
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4.00 Credits
(3-3-4) Introduction to the Laplace Transform. Circuit Analysis using the Laplace Transform. Passive Filters. Active Filters. Frequency Response and Bode Plots. Two-Port Circuits. Student must register for a laboratory section. Prerequisite: EE 223 with grade "C" or better,MATH 321.
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4.00 Credits
(3-3-4) Optoelectronic devices including polarizers, retarders, filters, modulators, monochromators, lock-in amplifiers. Propagation of radiation through optical systems. Optical detectors including photovoltaic and photoconductive devices, pyroelectric detectors, linear and area arrays. Photodetector noise, and post-detection electronic amplifiers and filters. Student must register for a laboratory section. Prerequisites: MATH 253N, PHY 223.
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4.00 Credits
(3-3-4) Laser radiation properties, laser cavities, coherence, atomic spectra, pumping rate, power gain, threshold conditions, resonator stability, beam shape, mode structure, beam modification with intracavity elements. Study of ion, molecular, solid-state, dye and semiconductor lasers. Student must register for a laboratory section. Prerequisite: EE 301 with grade "C" or better.
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4.00 Credits
(3-3-4) Light propagation in fibers, fiber types, fiber manufacture, light sources, optical detectors. Termination, coupling, and splicing of fibers. Introduction to fiber optic communication and sensors. Fiber devices, optical time domain reflectometry, fiber amplifiers, fiber lasers, and fiber sensors. Student must register for a laboratory section. Prerequisite: EE 341, EE 301 both with grade "C" or better.
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4.00 Credits
(3-3-4) Spectrum. Fourier Series. Time-Frequency Spectrum. Sampling and Aliasing. Reconstruction. Sampling Theorem. Discrete-Time Signals and Systems. Convolution Sum. Continuous-Time Signals and Systems. Frequency Response. Continuous- Time Fourier Transform. Relationship between CTFT, DTFT, DFT, and FFT. Spectrogram. Z-Transform. Student must register for a laboratory section. Prerequisite: EE 225 with grade "C" or better.
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5.00 Credits
(4-3-5) Top-down approach. Voltage, current, transresistance and transconductance amplifiers. Operational amplifiers. Two-port models. Transfer functions, frequency response, gainbandwidth- product. Nonlinear distortion, slewrate. Introduction to semiconductors, holes and electrons, p-n junctions, FETs, I vs V curves. FET amplifiers. Student must register for a laboratory section. Prerequisite: EE 223 with grade "C" or better.
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