10 courses with the subject ETEE, 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.
ETEE 1110Electrical Circuits I w/Lab4
(s) An introductory course in DC and AC circuits. Topics include atomic structure, current and voltage, resistance and power. Ohm’s Law and series and parallel circuits are covered. Transient response for capacitors and inductors are also discussed. The course includes fundamental AC concepts and phasor calculations for impedance, voltage, and current in RLC circuits. There will also be discussion of ladder logic and introduction to motors and transformers. Pre/Corequisite(s): Completion of all Learning Support Math competencies or permission of instructor. As needed. (T) 3 hours lecture/2 hours laboratory
Completion of all Learning Support Math competencies or permission of instructor. As needed. (T) 3 hours lecture/2 hours laboratory
ETEE 1120Electrical Circuits II w/Lab4
(s) A continuation of ETEE 1110. This course extends DC topics to include Network Theorems such as Mesh and Nodal Analysis, Superposition, Thevenin and Norton equivalent circuits. AC topics are covered in more detail and include series and parallel resonance, filters, and three-phase power. Transformers and motors are also covered in more depth than in Circuits I.
Completion of all Learning Support competencies in Math; ETEE 1110 or permission of instructor As needed. (T) 3 hours lecture/2 hours laboratory
ETEE 1510Digital Electronics3
(s) An introduction to integrated circuit logic families. A study of number systems, logic gates, boolean algebra, Karnaugh maps, and the analysis of combinational logic circuits such as flip-flops and other multivibrators.
Completion of all Learning Support competencies in Math.
Corequisite
ETEE 1511. F. (T) 3 hours lecture
ETEE 1710Electronics3
(s) This course covers the theory of devices, rectification, filters, voltage regulation, characteristic curves, graphical analysis of amplification, amplifier configurations, amplifier equivalent circuits, gain equations, static and dynamic load lines, and biasing in the electronics field.
(s) This is a laboratory course to support the theory covered in ETEE 1710. The course content covers the application of devices, rectification, filters, voltage regulation, characteristic curves, graphical analysis of amplification, amplifier configurations, amplifier equivalent circuits, gain equations, static and dynamic load lines, and biasing in the electronics field.
(s) A study of the production and transmission of electrical power. Topics include transformer operation and types, load configurations, Power factor correction, and the study of the National Electrical Code (NEC).
(s) A study of the production and transmission of electrical power with laboratory experiments and exercises which correspond to lecture material in ETEE 2610.
(s) Topics include electrical print reading, basic motor control, various switches and sensors, and relays and solenoids. A study of electrical system control principles will begin with relay logic hardware and then proceed to applying Programmable Logic Controller (PLC) ladder logic software. The student will develop ladder logic diagrams from functional word descriptions and then program the controller. Process control design projects such as conveyor, machine, etc. will be stressed by creating the program from a functional word description of the process. Tours of local manufacturing plants will be included, if time permits.
(s) An extensive “hands-on” lab that allows the student to wire various industrial control circuits and program a Programmable Logic Controller (PLC) and robot. Laboratory experiments and exercises correspond to lecture material in ETEE 2730.
(s) This course is a continuation of ETEE 2730/2731. Topics include advanced PLC programming, servo motors and encoders, robotic material handling, networking of control systems and HMI (Human Machine Interface) design. Lab activities will include PLC programming, robotics setup and programming, and hands-on training with automated conveyor systems.