12 courses with the subject ETR, 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.
ETR 104Electronic Fundamentals with Computer Applications4
Provides an introduction to the fundamentals of D.C. and A.C. circuit analysis and computer applications. Includes the study of electrical units and components, series, parallels, series-parallel D.C. and A.C. circuits, inductive and capacitative reactance, impedance and use of circuit analysis software. Lecture 3 hours. Laboratory 3 hours.
Presents mathematical applications for ELE/ETR students. Includes mathematical concepts and problems in algebra and trigonometry, and direct application to electronic analysis. Includes a survey of advanced mathematics to develop and reinforce electronic concepts. Lecture 1 hour. Laboratory 2 hours.
Studies D.C. and A.C. circuits, basic electrical components, instruments, network theorems, and techniques used to predict, analyze and measure electrical quantities. Part I of II.
ETR 104 and MTH 161 or MTH 167 . Lecture 3 hours. Laboratory 3 hours.
ETR 114D.C. and A.C. Fundamentals II4
Studies D.C. and A.C. circuits, basic electrical components, instruments, network theorems, and techniques used to predict, analyze and measure electrical quantities. Part II of II.
Studies devices and amplifiers with emphasis on analysis and design. May include summing and integrating amplifiers, choppers, modulators and other circuits.
Examines every component of a commercial wind turbine using Nacelle Trainers. Explores, explains and demonstrates the operation, troubleshooting, and maintenance of a commercial wind turbine in an offshore environment.
Provides hands-on training on the operation, maintenance, and troubleshooting of a commercial wind turbine using a wind turbine trainer. Examines how to optimize turbine blade pitch angle and rotational speed to maximize energy generation.
Provides an introduction to virtual instrumentation, data acquisition, and instrument control using LabVIEW. Includes structures, arrays, clusters, charts, graphs, strings, file I/O, and data analysis. Lecture 3 hours. Laboratory 3 hours.
ETR 279Digital Principles, Terminology and Applications4
Studies digital principles, terminology and applications covering number systems, arithmetic, Boolean algebra, Karnaugh maps and advanced logic circuits. Includes the study of registers, encoding and decoding, and multiplexing; A/D, D/A, displays and others. Lecture 3 hours. Laboratory 3 hours.
Includes basic numbering systems, Boolean algebra, logic circuits and systems, pulse circuits and pulse logic systems as applied to computer and microprocessor technology. Lecture 2 hours. Laboratory 3 hours.