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  • 3.00 Credits

    Fundamentals of electrical engineering topics for students who are not electrical engineering majors. Fundamentals of DC and AC theory, semiconductor devices, power, 3-phase, transformers, frequency selective circuits. Lab included. It is recommended students complete MATH 2250 prior to taking this course. Prerequisite(s): ENGR 1010 and PHYS 2220 Semester(s): All
  • 4.00 Credits

    This course covers basic concepts of the Natural and Step Response of RCL Circuits, State Space analysis, Laplace Transforms and circuit analysis techniques in the Laplace Domain, Fourier Series, Frequency Selective Circuits, Power, and Three Phase Circuits. Laboratory with design projects are included. It is recommended students complete ENGR 1010 prior to taking this course. Prerequisite(s): EE 1270, MATH 1220 and PHYS 2210; and MATH 2250, PHYS 2220 with concurrency Semester(s): Fall & Spring
  • 4.00 Credits

    This course covers the fundamental concepts of semiconductor devices, electronic circuits and components, network models of amplifiers, operational amplifiers, diodes, BJTs and MOSFETs, biasing, feedback, stability and frequency response are covered. Design projects and simulation are included. It is recommended students complete ENGR 1010 prior to taking this course. Prerequisite(s): EE 2260 and PHYS 2220 Semester(s): Spring & Summer
  • 4.00 Credits

    An introduction to digital systems, Boolean algebra and theory and design of Combinatorial and Sequential circuits and finite state machines. Use of computer based software (CAD) tools for design, schematic capture and simulation of circuits. Field programmable gate array implementations are used. Design projects are included. Prerequisite(s): CSIS 1400 or CSIS 1410; EE 1270 or PHYS 2220 Semester(s): Spring
  • 2.00 Credits

    Introduction to the concepts and fundamentals of electronic devices, circuits and systems. An electronics overview course for technology majors. Topics include direct current electricity, alternating current electricity, transistors and integrated circuits, amplifiers and oscillators, transmitters and receivers, digital logic circuits, electronic memory, and computers. It is recommended that students take STEM 1010 or appropriate placement in the same semester as this course. Semester: Fall
  • 4.00 Credits

    Introduction to digital electronics, integrated circuits, numbering systems, Boolean algebra, gates, flip-flops, multiplexers, sequential circuits, combinational circuits, programmable logic devices, and computer architecture. Lecture and lab combination. Laboratory activities to include the design, construction, analysis, and measurement of basic digital systems. It is recommended that students take STEM 1010 or appropriate placement in the same semester as this course. Semester: Fall
  • 4.00 Credits

    Introduction to AC and DC circuit fundamentals, analysis, theorems, laws, components, measuring devices, and equipment. The introduction and use of measuring instruments, power supplies, and signal generators. Lecture and lab combination with simulation emphasis. Laboratory activities to include circuit design, construction, and analysis of AC/DC circuits. Pre-Requisite: STEM 1010 or appropriate placement. Semester: Spring
  • 4.00 Credits

    Introduction to the design and analysis of semiconductor circuits using diodes, transistors, op-amps, field effect devices, thyristors, and regulators. Lecture and lab combination. Laboratory activities to include the design, construction, computer simulation, and analysis of semiconductor circuits, amplifiers and power supplies. Prereq: EET 1140 Semester: Fall
  • 4.00 Credits

    Introduction to AC and DC motors, relays, transformers, power measurements, National Electrical Code, ladder logic, wiring, and programmable logic controllers (PLCs). Lecture and lab combination. Laboratory activities to include the design, construction, and analysis of basic power circuits and machinery configurations. Prereq: EET 1140 Semester: Fall
  • 4.00 Credits

    Introduction to digital and wireless communication circuits. Topics to include radio frequency circuits, modulation, detection, transmitters, receivers, transmission lines, antennas, and measurement instruments. Digital communications topics to include parallel and serial data transmission. Lecture and lab combination. Laboratory activities to include the design and construction of RF devices. Prereq: EET 2110 Semester: Fall