14 courses with the subject ELET, 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.
ELET 103DC Electronics
Semester Credit Hour(s) 3 This course features an introduction to the principles of DC electronics and magnetism. Students develop competencies through practical application of the principles and theories of circuitry.
Semester Credit Hour(s) 3 In this course, students are introduced to the principles of AC electronics, reactive circuits, and filters. Students also utilize semiconductor devices in the lab setting while developing competencies through practical applications of the principles and theories of circuitry.
Semester Credit Hour(s) 4 The fundamentals of digital logic are presented in this course. Students study the following topics: numbering systems; logic gates and families; Boolean expressions; flip-flops; registers and counters;adders and subtractors; encoders and decoders; multiplexers and demultiplexers; tristate; logic symbols and microprocessor architecture. Students conduct experiments featuring digital gates, combinational logic, flip-flops, mathematical logic devices, shift registers, decoders, encoders, multiplexing and tri-state logic.
Semester Credit Hour(s) 4 Circuit elements used in the conversion of signals are covered in this course. Students study operation and application of transistors, multi-layer devices and small-scale integrated circuits. Students develop competencies through practical application of the principles and theories of analog electronics.
Semester Credit Hour(s) 4 Students study devices unique to the field of industrial electronics. Topics will include AC/DC machines, artificial intelligence industrial Internet of Things (IIOT) and robotics.
Semester Credit Hour(s) 3 This course introduces microprocessors. Areas of memory and I/O interface design and programming will be studied. The course will focus on microprocessors and the basic support components, including CPU architecture, memory interfaces and management, co-processor interfaces, bus concepts, serial I/O devices, and interrupt control devices. Laboratories will be directly related to microprocessor functions and its interfaces.
Semester Credit Hour(s) 3 The principles and applications of programmable logic controllers are explored at the hardware and software level. The concepts of ladder logic are introduced.
Semester Credit Hour(s) 3 The internship provides students with valuable field experience under the supervision and evaluation of a cooperating facility and the College. Students apply knowledge and skills gained in the career program for 90 hours at the host site. Students also dedicate 30 total hours for program coordination purposes, evaluation of the experience and refinement of their portfolio. Final Semester AAS Program
Semester Credit Hour(s) 3 A review of Boolean Algebra and functional blocks in digital electronics including common combinational and sequential logic circuits. Explore the use of PLDs and multi-sim software for building various digital architectures are introduced. Students engage in numerous exercises in understanding the characteristics and applications of PLDs and various digital circuits through both graphical and text methods available in PLD software.
Semester Credit Hour(s) 3 Emphasis is placed on real life applications of electronic technology in the measurement and instrumentation industries. An introduction to common sensing and measurement devices and analog signal conditioning circuits that amplify or filter the signals, A-D and D-A conversion circuitry, as well as common issues and practices related to these tasks through class exercises, software tools, or lab experiments.
Semester Credit Hour(s) 4 Emphasis on the concepts of stability in feedback control systems utilizing case studies and MATLAB® tools. MATLAB® tools are used to study time-domain characteristics of first and second order feedback control systems. Stability phenomenon, Bode plots and the Nyquist method are related to modern industrial applications.
Semester Credit Hour(s) 3 A concentrated study of a typical microcontroller architecture, addressing modes, programming code, and the concepts of interrupts, Timer and I/O interface. Demonstrate programming with PBasic language through a BS2 Module.
Semester Credit Hour(s) 4 An introduction to DC and AC energy concepts, single phase and three phase AC power transfer, power switching device technologies, common topologies in single and three phase rectification and associated waveforms.
Semester Credit Hour(s) 3 In this course, students will design, execute and present the outcomes of a capstone project conducted during a practicum field experience. Students will be challenged to use their knowledge, skills and behaviors developed over the course of their program studies to solve real-world problems in their career discipline. Students will be evaluated from both academic and professional standards. Final Semester BS Program