EGCP-4810 4 hours Computer Engineering Senior Design I–Fa Design and development of electronic products to meet specific requirements. Introduction to computer system design, power supply design, hardware-software co-design, software engineering, system performance trade-offs, electronic design tools, prototype methods, estimating and managing time and cost constraints, and project management. Student teams prepare a project proposal, design and prototype a microprocessor-based system or sub-system, use computerized design tools, submit weekly progress reports, and conduct design reviews. Three lecture hours and one two-hour laboratory per week. Prerequisites: EGEE-3210 Electronics I, CS-3410 Algorithms, CS-3310 Operating Systems, and Senior status in computer engineering. Corequisite: EGCP-4210 Advanced Computer Architecture. (Fee: $100) EGCP-4820 3 hours Computer Engineering Senior Design II–Sp Continuation of EGCP-4810 Computer Engineering Senior Design I. Student teams will complete their capstone project, submit weekly progress reports, prepare a formal final report, and make a formal design review presentation. Prerequisite: EGCP4810 Computer Engineering Senior Design I. (Fee: $100) EGCP-4950 1–3 hours Advanced Topics in Computer Engineering Selected topics in computer engineering at the 4000-level that expand the depth of existing 3000- and 4000-level courses or expose the students to advanced concepts not taught in other courses. Topics may be proposed by the engineering faculty or students. Prerequisite: Instructor’s permission. Electrical Engineering (EGEE) EGEE-1920 1 hour Introduction to Electrical and Computer Engineering–Sp This course provides an introduction to practical engineering and problem-solving skills essential for success in electrical and computer engineering. Students will learn to use electrical components such as resistors, capacitors, inductors, batteries, power supplies, diodes, LEDs, and integrated circuits. Hands-on projects will develop proficiency with diagnostic tools such as multimeters, oscilloscopes, and prototyping boards. Students will use computer-aided design (CAD) tools for circuit simulation, PCB design, and mechanical modeling and learn prototyping techniques such as soldering, 3D printing, and laser cutting. Multi-week projects centered on microcontrollers will provide opportunities to build interactive solutions while honing hardware and software debugging skills. One two-hour laboratory/ recitation period per week. Crosslisted with EGCP. Corequisites or Prerequisites: EGCP-1010 Digital Logic Design, CS-1210 Introduction to Programming Using C++, or permission of instructor. (Fee: $100) EGEE-2010 Circuits–Sp 4 hours Introduction to basic circuit analysis using Ohm’s law, Kirchoff’s laws, independent and dependent sources, Thévenin equivalency and source transformations, transient and forced responses in RC, RL, and RLC circuits, phasor analysis, AC circuits, introduction to 3-phase circuits, mutual inductance and frequency response. Computer simulations and bread-board circuits are constructed and evaluated in the laboratory. Three lecture hours and one twohour laboratory or recitation per week. Prerequisites: PHYS-2120 General Physics II; MATH-2740 Differential Equations. (Fee: $100) EGEE-2050 Circuits and Instrumentation–Sp 4 hours Introduction to basic circuit analysis using Ohm’s law, Kirchoff’s laws, independent and dependent sources, Thévenin and Norton equivalency and source transformations, transient responses in RC, RL, and RLC circuits, operational amplifiers, and introduction to polyphase AC circuits. Circuit applications for transducers such as resistance strain gages, piezoelectric load cells, piezoelectric accelerometers, and thermocouples are emphasized along with measurement uncertainty analysis and statistical methods. Circuits are designed, simulated, constructed, and tested in the laboratory. Three lecture hours and one two-hour laboratory per week. This course does not satisfy the EGEE-2010 Circuits requirement for the Electrical or Computer Engineering majors. Prerequisites: PHYS-2120 General Physics II; MATH-2740 Differential Equations. (Fee: $100) EGEE-2110 Engineering Analysis–Sp 3 hours This course introduces students to mathematical tools used by electrical engineers. Topics include theory and engineering applications of complex variables, linear algebra, and probability and statistics as well as the numerical solution of basic differential equations. Students are introduced to the Matlab computing environment. Prerequisites: CS-1210 Introduction to Programming Using C++; MATH-1715 Calculus II. Corequisites: MATH-2740 Differential Equations. EGEE-3110 Linear Systems–Fa 3 hours Introduction to linear time-invariant analysis of continuous and discrete-time systems, using both time and frequency domain methods that include convolution, Fourier Series, Fourier, Laplace, and Z transforms; classical and computer solution methods are utilized. Prerequisite: EGEE-2010 Circuits. EGEE-3150 Analog Filters–Sp 3 hours Introduction to theory, design, and implementing passive and active analog filters; basic filter structures, passive network synthesis, operational amplifier limitations, multiple-amplifier filters, and filter realization methods. Prerequisite: EGEE-3110 Linear Systems. (even years) EGEE-3210 Electronics I–Fa 3 hours Introduction to semiconductor electronic device theory and applications. Topics include ideal and nonideal operational amplifiers, diodes, field-effect transistors (FETs), and bipolarjunction transistors (BJTs). Two lecture hours and one two-hour laboratory or recitation per week. Prerequisite: EGEE-2010 Circuits. (Fee: $100) EGEE-3220 Electronics II–Sp 3 hours Continuation of EGEE-3210 Electronics I to include differential amplifiers, frequency response of amplifier circuits, multi-stage amplifiers, power amplifiers, feedback circuits, and filters. Two lecture hours and one two-hour lab or recitation per week. Prerequisite: EGEE-3210 Electronics I. (Fee: $100) EGEE-3310 Electromagnetics–Sp 3 hours Engineering applications of vector calculus, phasors, and Maxwell’s equations to electrostatic, magnetostatic and time varying fields, transmission lines, Smith Chart, propagation of uniform plane waves, and single-stub matching. Laboratory exercises introduce field-plotting, transmission line concepts using wave guides, single stub-tuning, introduction to the network analyzer, polarization, and radiation fields. Two lecture hours and one two-hour laboratory or recitation period per week. Prerequisites: MATH-2715 Calculus IIIB; EGEE-2010 Circuits. (Fee: $100) EGEE-3330 Communication Systems–Sp 3 hours Introduction to analog and digital communication systems. Topics include analog and digital modulations, spectral analysis, sampling, quantizing, and random processes. Two lecture hours and one two-hour laboratory or recitation period per week. Prerequisite: EGEE-3110 Linear Systems. (Fee: $100) Page 260 2026–27 Undergraduate Academic Catalog Course Descriptions EGCP-4810 – EGEE-3330
RkJQdWJsaXNoZXIy MTM4ODY=