- Subject
- EE
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
EE
72 courses with the subject EE, each shown exactly as we captured it from the college's catalog, with every element we hold. Where the wording looks broken, that is our reading of the catalog, not the college's text.
Credit: 3 USP 2003-2014 Code: U5FY
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
Introduces students to the organization and architecture of computer systems, beginning with the standard von Neumann model and then moving forward to more recent architectural concepts. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- COSC 1030 Cross Listed: COSC 2150
Review of sinusoidal steady state analysis and ac power. Mutual inductance and linear transformers. Laplace transform. Laplace transform in circuit analysis. Frequency dependent circuits, including RLC circuit resonance. Magnitude and phase response, complex poles and zeros. Bode plots. Filter circuit fundamentals. Fourier series. Laboratory. Max Credit: 4
- Subject
- EE
- Credits (min)
- 4
- Credits (max)
- 4
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- ES 2210 , or ES 2215 and ES 2216 . Former Course Number: [3320]
Binary logic, digital logic gates, reduction of Boolean expressions, combinational logic design. MSI and LSI combinational logic ICs, flip-flops, synchronous and asynchronous sequential systems design, MSI and LSI sequential system ICs, and algorithmic state machines. Max Credit: 4
- Subject
- EE
- Credits (min)
- 4
- Credits (max)
- 4
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- COSC 1010 or COSC 1015 [Inactive] or COSC 1030 or ES 1060 , and MATH 2205 .
A thorough study of static electric and magnetic fields using vector methods with an introduction to dynamic fields. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- ES 2210 , or ES 2215 and ES 2216 , MATH 2210 , and PHYS 1220 or concurrent enrollment.
Discrete and continuous-time signals and systems. Topics include linear time-invariant systems; convolution; difference equations; FIR and IIR systems; sampling, aliasing, reconstruction, and quantization. Frequency domain concepts include discrete and continuous Fourier transforms, Z- transforms, system frequency response, Laplace transform properties, and applications of digital filters and DFT analysis Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 2220 .
Physical characteristics and models of semiconductor devices with application to electronic circuit design. Diode circuits, single transistor amplifiers, biasing, and load lines.(Offered fall semester only) Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- PHYS 1220 or PHYS 1320 or EE 3150, and EE 2220 or concurrent enrollment
Hands on interactive laboratory investigation of the physical characteristics of semiconductor devices and applications in electronic circuit design. Study of diode and transistor characteristics as well as diode circuits and single transistor amplifier circuit design, construction and testing.
- Subject
- EE
- Credits (min)
- 1
- Credits (max)
- 1
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE3311 must be taken either concurrently or as a prerequisite. (Offered fall semester only) Max Credit: 1 Prerequisite: EE 3311 must be taken either concurrently or as a prerequisite.
Current sources, differential and multistage amplifiers; circuits with ideal and non-ideal operational amplifiers; low and high band frequency response, feedback, stability, gain and phase margin of amplifiers; output stages, class A and push-pull; monolithic operational amplifier; oscillators; transistors as switches and introduction to digital electronic circuits. Laboratory. Offered spring semester only) Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- (EE 3310 or EE 3311 ) and EE 2220
Hands on interactive laboratory investigation of transistor switching circuits, differential amplifiers, current sources, amplifier frequency response, feedback, output stages, and oscillators.
- Subject
- EE
- Credits (min)
- 1
- Credits (max)
- 1
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3312 and EE 3331 concurrently (offered spring semester only). Max Credit: 1 Prerequisite: EE 3312 and EE 3331 concurrently
- Subject
- EE
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
. Research Methods A general approach to scientific research and graduate school preparation. Topics will include: finding a research mentor, 1038
- Subject
- EE
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Subject
- EE
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
Fundamentals of probability and statistics for engineers; reliability in engineering systems; random processes, statistical estimation, auto/ cross correlation and power spectral density functions and linear filtering of random signals. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- MATH 2210 and EE 3220 . EE 3220 may be taken concurrently.
Sampling and oversampling A/D's; FIR and IIR digital filter design, effects of quantization, practical realizations; applications of the discrete and fast Fourier Transform (DFT and FFT); correlation, periodograms, window effects, multi-rate techniques, multi-dimensional signal processing, and other topics in digital signal processing. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3220 .
Characterization and design specification of analog filters. Firs and second order passive and active filters. Butterworth and Chebyshev filter responses. Audio frequency active filter synthesis using operational amplifiers. Introduction to frequency transformations and sensitivity. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 2220 and EE 3331 or concurrent enrollment.
Analysis and design of microwave and RF circuits with applications to communication and radar systems. Review of transmission line concepts and the Smith Chart, scattering parameters, microstrip lines, and matching networks. Analysis and design of microwave and RF amplifiers, oscillators, and mixers. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3150 or PHYS 1220 , EE 3331 or concurrent enrollment, or consent of instructor. Dual Listed: EE 5300 .
Analog integrated circuits such as amplifiers (operational, instrumentation, isolation, video, transconductance, comparator, logarithmic and exponential); voltage regulators; analog multipliers and dividers; AC to DC converters; sample and hold circuits; digital to analog converters; analog to digital converters; function generators; phase locked loops. Includes design procedures for electronic systems implementing analog integrated circuits. Laboratory. Max Credit: 4
- Subject
- EE
- Credits (min)
- 4
- Credits (max)
- 4
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 2390 and EE 3331 . Former Course Number: [4370]
- Subject
- EE
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
Hands-on introduction to real-time digital signal processing. Programming DSP algorithms using C on modern DSP hardware. Students gain deep understanding of fundamental DSP concepts by implementing selected applications including sampling, reconstruction, FIR and IIR filters, signal generation, t and FFT. Hardware concepts include EDMA, memory maps, interrupts, buffered serial ports. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3220 .
Introduction to CMOS processing, MOS fundamentals including devices models; switching and timing; analog subcircuits and amplifiers; inverters and CMOS gates; concept of standard cells and fully custom design; use of SPICE, digital simulation, and chip layout and verification software. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- 1039
Design of microcomputers, controllers and instruments which use microprocessors. Semiconductor memory design, CPU architecture, bus structure and timing, input-output interfaces and devices, assembly language programming, assemblers, compilers, editors and simulators. Emphasizes design techniques. Laboratory. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 2390 .
Amplitude and angle modulation and demodulation; digital baseband and carrier communication systems; performance of communication systems; and current topics in communication systems. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3220 and EE 4220 .
(HDL) Digital Design Hardware Description Language design of digital systems. Industrial CAD tools are used to produce a functional description of hardware that is both simulated and then synthesized into hardware. Methods to describe both combinational logic and synchronous devices are given. Devices such as CPLDs and FPGAs are targeted in this design process. Emphasizes design techniques. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 2390 .
Electric power distribution and transmission. Distribution systems, transmission line calculations, installation and protection; substations, corona, protective relaying and carrier current communication and telemetering. Introduction to system stability studies. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- ES 2210 and EE 3510 .
Emphasizes a systems approach to real time embedded systems. Students are expected to apply methodical system design practices to designing and implementing a microprocessor-based real time embedded system. Students employ a robot-based educational platform to learn the intricacies of real time embedded systems, distributed processing, and fuzzy logic. Students learn processor input/output interfacing techniques. Students use state-of-the-a design and troubleshooting tools. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4390 . Dual Listed: EE 5590 .
of EE or BE Electives (4000-level or above) 3 credits Approved Technical Electives.4 2 credits of general electives (1000 level or higher; any Math 393
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
Control theory and design methods focused on application. Feedback. Performance limits. Routh-Hurwitz, root locus, Nyquist. Nonminimum-phase systems. State feedback. Proportional-Integral-Derivative control. Lead/lag. High-order compensation. Discrete controllers. Honors students will at the end of the semester design a high-performance control system for a sophisticated plant with realistic feedback limitations. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 2220 or ME 3020 .
Section 1 is individual study. Other sections are group study by seminar or class format. Features topics not included in regularly offered courses. Max Credit: (Max. 6)
- Subject
- EE
- Credits (min)
- 1
- Credits (max)
- 6
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- consent of instructor.
Students choose a senior design project and complete the preliminary design. This stage of senior design includes investigation of alternative solutions that meet the project's requirements, cost analysis, and building the prototype circuit. Periodic oral and written project progress reports are required. Max Credit: 2
- Subject
- EE
- Credits (min)
- 2
- Credits (max)
- 2
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 2220 , EE 2390 , and EE 3312 or concurrent enrollment, plus 6 hours of 4000 level EE/BE classes, or concurrent enrollment. COM2 must be passed with a C or better grade.
392
- Subject
- EE
- Credits (min)
- 4
- Credits (max)
- 4
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
rt Basic LANs, Ethernet LAN architecture, and classical Ethernet CSMA/CD MAC protocol. 10Mbps, 100 Mbps, and gigabit Ethernet architecture. Introduction to switching, queuing theory, architecture, design and performance analysis of switch fabrics. Architecture, design, algorithms and performance analysis of Routing. Cellular Networks. TCP/IP Protocol. Max Credit: 4
- Subject
- EE
- Credits (min)
- 4
- Credits (max)
- 4
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 2390 . 1040
Architecture and instruction set of Intel family of microprocessors; Intel System Development Kit and its monitor program; Microsoft Macro Assembler (MASM) and Visual C/C++ Express; modular programming; High level language compilers of object code; Interface design issues of peripheral devices to Personal Computer. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4390 .
Review of linear time-invariant systems theory. Laplace, Fourier, and Z-transforms. Introduction to complex variable theory and its application to integral transform inversion. State variable formulation of physical systems. Application of linear algebra and matrices to the analysis of finite-state constant differentia systems. Controllability and observability. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4620 .
Analysis and design of microwave and RF circuits with applications to communication and radar systems. Review of transmission line concepts and the Smith Chart, scattering parameters, microstrip lines, and matching networks. Analysis and design of microwave and RF amplifiers, oscillators, and mixers. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3150 or PHYS 1220 , EE 3331 or concurrent enrollment, or consent of instructor. Dual Listed: EE 4300 .
- Subject
- EE
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
and Devices Advanced semiconductor materials and device concepts including noise in semiconductors, heterostructure and quantum fundamentals, high power materials and devices, high performance transistors including the MESFET, HEMT, and HBT. Also discusses GUNN and IMPATT diodes, Resonant Tunneling devices, and future computing devices based on the quantum properties of semiconductors. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4340 .
- Subject
- EE
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Subject
- EE
- Type
- course
- Edition
- 2025-2026
- Source
- www.uwyo.edu
Examines the various methodologies used in the design of high- performance computer systems. Topics include CISC and RISC architecture and instruction sets, pipelining, instruction-level parallelism, memory hierarchy (including cache) design and computer networks. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4390 .
Representation of pose using Euler angles, quaternions and homogeneous coordinate transformations. Forward and inverse kinematics of rigid body manipulators. Velocity and force transformation in a rigid robot using Jacobians. Trajectory generation using splines. Robotic vision for depth measurement. Analysis of actual robotic systems. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- MATH 2250 .
Theory of feed forward and recurrent neural networks. Supervised and unsupervised learning theories. Fuzzy logic and systems. Associative memories. Matching and self-organizing networks. Application of neural and fuzzy systems. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3220 .
This course is intended to provide a mathematical framework for describing three dimensional imaging and computer vision. Topics include 3-D coordinate transforms, image formation, camera calibration, reconstruction from two views, SIFT detection, hidden Markov models, Markov random fields, and "bag-of-words" visual description. 1041
- Subject
- EE
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
Geometrick methods including exponential corrdinates for describing rigid motion, quaternions, pinhole models of cameras, and models of stereo cameras. Reconstruction of a 3D scene. Deep learning methods using convolutional and other neural networks wil lbe used for computer vision. CNN architectures, classification, optimization, detection, identification, segmentation, GANs, and transformers are covered. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- MATH 2250
Topics vary between offerings, but include exponential coordinates for describing rigid motion, parallel machines, robotic vision, actuators and sensors, calibration, quaternions, motion planning, multifinger grasp dynamics, singularities, and singularity-free design, and limited-DOF machines. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- MATH 2250 senior or higher level standing and permission of the instructor.
Fundamental theory underlying the robust sensing and planning used in self-driving machines is developed. Topics covered are: Bayesian, Kalman, and Particle Filters; simple ground robot motion models; mobile robot localization; simultaneous localization and mapping; partially observable Markov decision processes. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4220 .
Covers fundamentals of numerical convex optimization. These methods have potential applications in many fields, so the goal of the course is to develop the skills and background needed to recognize, formulate, and solve convex optimization problems. Covers convex sets, convex functions, convex optimization problems and applications. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- MATH 2250 and senior or higher level standing.
Emphasizes a systems approach to real time embedded systems. Students are expected to apply methodical system design practices to designing and implementing a microprocessor-based real time embedded system. Students employ a robot-based educational platform to learn the intracacies of real time embedded systems, distributed processing, and fuzzy logic. Students learn processor input/output interfacing techniques. Students use state-of-the-art design and troubleshooting tools. Max Credit: 3 Dual Listed: EE 4590 . Corequisite: EE 4390 .
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
Topics vary between offerings but include signal detection, feature extraction and pattern recognition, information theory and coding, spectral analysis, identification, speech processing, image processing, and seismic processing. Max Credit: (Max. 9)
- Subject
- EE
- Credits (min)
- 2
- Credits (max)
- 4
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4220 .
Introduction to statistical models. Applications of sampling theorems. Correlation functions and spectra. Shot noise and thermal noise. Introduction to measurements and computational techniques. Nonlinear random processes. Term papers on special problems. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4220 .
Methodologies and algorithms for processing digital images by computer. Includes gray level transformations, histogram analysis, spatial domain filtering, 2D Fourier transforms, frequency domain filtering, image restoration, and reconstruction of computer tomography (CT) medical images. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3220 or equivalent background. Former Course Number: [4530]
Spectral estimation including nonparametric methods such as Welch and Blackman-Tukey; modern parametric methods for AR, MA and ARMA spectra including Yule-Walker and Levinson-Durbin. Parametric line spectral subspace methods including MUSIC and ESPRIT. Filterbank and spatial methods such as beamforming. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3220 , EE 4220 or equivalent.
Introduces students to advanced aspects of image processing (IP), using specific applications to demonstrate these principles. Concepts such as medical imaging; color IP; wavelets and multiresolution IP; image compression; morphological IP; image segmentation, representation, description and understanding are covered. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 5620 .
- Subject
- EE
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
Introduces students to both fundamental and advanced aspects of object and pattern recognition, using specific applications to demonstrate these principles. Concepts such as Bayesian, maximum-likelihood, principal components, nonparametric, linear discriminant, multi-layer neural networks, etc., and the trade-offs and appropriateness of classification techniques are covered. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4220 .
Fundamental and advanced topics in identification of system models from measured data. A variety of model structures are studied such as ARX, ARMAX, and State Space. Both non- parametric and parametric identification techniques are investigated with applications to real world systems and data. Experiment design and model validation are also examined. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4220 .
This course introduces fundamental aspects of practical digital image formation, using specific applications to demonstrate these principles. Standard CCD and CMOS cameras (both still and video) and standard camera lens systems are assumed. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3220 or equivalent background.
Design of transmission lines and distribution systems. Coordination studies. System stability studies, load distribution and dispatching. System interconnections. Correlation of machines and transmission systems. Max Credit: (Max. 6)
- Subject
- EE
- Credits (min)
- 2
- Credits (max)
- 6
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3510 .
Power quality is gaining increasing interests among both electric utilities and end users of electric power. In this course, a comprehensive introduction to the electric power quality engineering will be given to prepare you for the incoming power quality challenges of the modern power systems. Topics include power quality disturbances and causes, voltage sag and interruptions, electric transient, and harmonics. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 3510 or graduate standing.
Mathematical models of digital control system components; Sample-and-Hold Device, A/D and D/A conversion, Pulse transfer function, Modified Z-transform; Jury's and Routh- Hurwitz test, Bilinear Transformations, Nyquist Criterion, Root Locus; Frequency Domain Techniques (Bode Diagrams, Nichols Charts); Digital Control Design, Observers; DT state space representation; Sampling and Quanitization, Aliasing. Design Project. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4620 .
Time variable parameter systems, approximation methods for small nonlinearites. Phase-plane methods. The second method of Liapunov. Describing function. Optimum switched systems. Adaptive control systems. Max Credit: 3
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- EE 4620 .
A graduate special topics course in which advanced developments are studied. Section 1 is individual study. Other sections are primarily seminar format in which participants present reports on the subject under study. Max Credit: (Max. 9)
- Subject
- EE
- Credits (min)
- 1
- Credits (max)
- 6
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- Prior approval of the instructor is required.
3.0 Engineering edits: Special Topics options include:
- Subject
- EE
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
This course will cover general reliability modeling and evaluation; probability and stochastic processes; system modeling; methods of reliability assessment (state space, frequency balancing, cut-set and tie-set analysis, decomposition, Monte Carlo simulation); and reliability modeling and analysis of electric power systems: bulk power systems, distribution systems, and industrial systems.
- Subject
- EE
- Credits (min)
- 3
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- MATH 2310 with a grade of C or better.
Work in classroom with a major professor. Expected to give some lectures and gain classroom experience. Max Credit: (Max. 3)
- Subject
- EE
- Credits (min)
- 1
- Credits (max)
- 3
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- graduate status.
Max Credit: (Max. 16)
- Subject
- EE
- Credits (min)
- 1
- Credits (max)
- 2
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- advanced degree candidacy.
Max Credit: (Max. 16)
- Subject
- EE
- Credits (min)
- 1
- Credits (max)
- 2
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- advanced degree candidacy.
Designed to provide an enrichment experience in a variety of topics. 1043
- Subject
- EE
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
Designed for students who are involved in research for their thesis project. Also used for students whose coursework is complete and are writing their thesis. Max Credit: (Max. 12)
- Subject
- EE
- Credits (min)
- 1
- Credits (max)
- 12
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- enrolled in a graduate degree program.
Designed for students who are involved in research for their dissertation project. Also used for students whose coursework is complete and are writing their dissertation. Max Credit: (Max. 48)
- Subject
- EE
- Credits (min)
- 1
- Credits (max)
- 12
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
- Prerequisite
- enrolled in a graduate level degree program.
(Max. 24) Prerequisite: graduate standing. Elementary Education EDEL 1200 - Introduction to Elementary Education This course is designed to introduce first-year elementary education majors to educational issues relevant to teaching, learning, curriculum, assessment, school politics, and special needs of students in elementary settings. Credits: 3 Max Credit: 3
- Subject
- EE
- Credits (min)
- 1
- Credits (max)
- 12
- Credit unit
- Credits
- Type
- course
- Edition
- 2026-2027
- Source
- www.uwyo.edu
Source: University of Wyoming's catalog, linked per course · table learning_unit · CourseShelf publish 59