23 courses with the subject EENG, 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.
EENG 201Applied Electrical Theory I - An introduction to analog
circuits with an emphasis on power circuits, transformers, operations amplifiers, and interfacing with sensors and digital systems. Primary points- of-focus are Direct Current concepts, DC circuits, Alternating Current concepts, AC circuits, 3-phase power, basic motor arrangements, basic generator arrangements, power distribution, transformers, power measurements, battery basics, solar power system basics, and electrical safety. Prerequisite: FENG 102 (or PHYS 204) and MATH 212. Offered fall term each year. Three semester hours.
Basic concepts in the design and analysis of digital systems. Emphasis will be placed on number systems and codes, combinational circuit analysis and design, introduction to sequential digital logic analysis, as well as, design an applications. Concepts will be implemented with discrete logic components and Programmable Logic Controllers. Prerequisite: CS 221. Offered spring term each year. Three semester hours.
EENG 301Applied Electrical Theory II - A continuation of EENG
201. Topics include mesh analysis, amplifiers, second-order transient circuits, 3-phase systems, filters, and Fourier analysis. Construction, analysis and simulations of circuits will be performed. Prerequisite: EENG 201 and
EENG 321Computer Architecture and Organization (3 h
One 3-hour technical elective at the 300 level or ab from CS, EENG, FENG, IS, MATH or MENG Total number of required hours: 18 computer science | computing and business systems 80
EENG 322Computer Engineering - Exploration of the fundamentals
of embedded system hardware and firmware design. The overall course objective is to provide the student with in-depth knowledge of embedded systems including overall system design, interfacing, operating systems, data acquisition, communication protocols, and real-time performance with an emphasis on design considerations such as cost, reliability, compatibility, and safety. A very popular microcontroller will be studied (Arduino). Students will utilize Arduino platform to design systems that support specific applications, such as analog-to-digital converters, polling applications, interrupt-driven applications, and mechatronics concepts.
EENG 321. Offered occasionally. Three semester hours.
EENG 331Analog Devices - Exploration of the theory of operation of
discrete semiconductor devices and the design of circuits using these devices, including diodes, BJT and FET transistors, and integrated circuits. Laboratory sessions are held on alternate weeks. Prerequisite: EENG 301. Offered spring term each year. Three semester hours.
EENG 361Microcontroller Applications - Theory and application of
microprocessors in engineering design with emphasis on practical applications. Students will learn both software programming and hardware interfacing. Laboratories involve the design, construction, and programming of microcontroller-based projects. Prerequisites: EENG 201, EENG 202 and EENG 221. Offered fall term each year. Three semester hours.
EENG 371Power Systems - The main course goal is to provide students
with a complete overview of interconnected power system analysis and design. At the completion of the course students should be able to develop appropriate models for an interconnected power system, and know how to perform power flow, short circuit and transient stability analysis. Students should also be able to write a basic power flow, short circuit and transient stability computer program. Prerequisite: EENG 301. Offered spring term each year. Three semester hours.
EENG 400FE Exam Preparation – Review of engineering
fundamentals and electrical engineering discipline specific topics to prepare for the Fundamentals of Engineering Examination. Subject areas to be covered are as follows: mathematics and statistics, ethics and economics, properties of electrical materials, circuit analysis, linear systems, signal processing, electronics, power systems, electromagnetics, control systems, communications, computer networks, digital systems, computer systems, and software engineering. Prerequisite: co-requisite with EENG 481. Offered fall term each year. One semester hour. d EENG 411. Signals and Systems - Fundamental theory for discrete-time and continuous-time signals and systems with a focus on linear time- invariant systems. Topics include Fourier series representation of signals, Fourier transform for both discrete-time and continuous-time signals, and frequency characterization. The course will also focus on sampling, Z- transforms, and Laplace transforms. Prerequisite: EENG 301 and FENG 301. Offered spring term each year. Three semester hours.
EENG 412Communication Systems - Study of analog and digital
electronic communications systems and techniques. Topics include signals, noise, bandwidth, modulation, coding, transmitter versus receiver circuiting, wired versus wireless links, high-frequency devices, and specialized systems as student interest and time permits. Laboratory milligan university academic catalog | 2026-27 | www.milligan.edu
EENG 431Applied Electronics - Topics include transistor current
sources for integrated circuit biasing, power supplies and voltage regulation, feedback and stability, oscillators, high frequency electronics, and electromagnetic compatibility. Design, construction, analysis, and simulations of circuits will be performed. Prerequisites: EENG 331. Offered spring term each year. Four semester hours.
EENG 440Renewable Energy - An introduction to various renewable
energy technologies which provide a sustainable means to generate electrical power. Topics include but are not limited to solar photovoltaics, wind turbines, battery storage, charge controllers, and inverters. Other sustainable technologies such as biomass technologies, geothermal power, and hydro generation will be covered based on student interest and available time. Emphasis will be placed on the integration of various components to create a complete system for a given application. Economic and environmental comparisons to traditional, non-sustainable energy sources will also be considered. Offered spring term each year. Three semester hours.
EENG 451Electromagnetics - Exploration of electromagnetic
phenomena for contemporary engineering applications. Emphasis on Maxwell’s equations, transmission lines, and wireless technology. Selected topics such as electrodynamics, fiber optics, bioelectro magnetics and effects in high-speed digital systems addressed as student interest and time permits. Vector calculus and alternative coordinate systems. Effects of material properties. Prerequisites: EENG 301. Offered fall term each year. Three semester hours.
EENG 461Systems and Controls - Fundamental theory for feedback
control of physical processes. Study includes transient and steady state frequency response, stability analysis, control modes, and simulation of control systems. Prerequisites: FENG 301. Offered spring term each year. Three semester hours.
EENG 471Applied Power and Controls – Hands-on investigation and
design in the areas of electrical power generation, transmission, and distribution, three-phase power circuits, power system analysis, load flow, symmetrical components, fault currents, system protection, and stability. Power generation and distribution topics focus on modern issues concerning distributed generation, photo-voltaic installed in the low-voltage end-use systems and components of the typical distribution system. Large Wind Farms, Large Solar Farms and exporting the power. Architecture and programming of microcomputer systems and interfacing with peripherals. Modern and classical methods of control system analysis of continuous-time systems. Introduction to design tools. Power generation, transmission and end-use distribution; power management. Topics may include frequency control, distribution system voltage control, distributed power generation, power quality, and power system design & simulation. Prerequisites: EENG 371 and EENG 461. Offered fall term each year. Four semester hours.
EENG 481Electrical Design Project I - The first of two senior capstone
courses providing students with the opportunity to use, in an integrated manner, the knowledge and skills that have been acquired to this point in their education. This design course is devoted entirely to the research, planning, analysis and report writing required in the first phase of the senior design project. Teamwork is an integral part of the course. Prerequisite: Co- requisite with EENG 471, senior standing or permission of the instructor. Offered fall term each year. Three semester hours.
EENG 482Electrical Design Project II - The second course devoted to
senior design project activities. The lab course requires students to complete the design, experimentation, analysis, and communication components of their project. Teamwork is an integral part of the course. Prerequisite: EENG 481, co-requisite with EENG 431. Offered spring term each year. Three semester hours. undergraduate course descriptions 145
EENG 491Internship - A practicum experience in which students work
in a professional setting using engineering, math, and science skills from their major courses. Credit hours are based on internship work hours during the semester with one credit hour assigned for each 50 internship work hours. Prerequisite: consent of major professor. Offered every term. One to six semester hours.
EENG 495Seminar - A seminar designed to promote in-depth
discussion, independent research, and writing in areas not included in the regular course offerings. Topics considered vary from semester to semesters. Prerequisite: permission of the instructor or major professor. Offered occasionally. One to three semester hours.
EENG 499AMentored Research - A faculty-mentored research course
in which students craft a research proposal, prepare a literature review, and outline the methods by which they plan to conduct research. Prerequisite: consent of major professor. Offered every term as needed. One semester hour.
EENG 499BMentored Research - A faculty-mentored research course
in which students complete their research in a manner consistent with practices in their discipline and submit a written draft of their findings to their mentor. Prerequisite: consent of major professor. Offered every term as needed. One semester hour.