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Show 54 Math QL1080 Computer Literacy CEET 1010 CEET 1030 Total Hours EnglENlOlO Phsx PS/SI2210/L CS 2410 CEET 2031 Total Hours 5 4-5 4 4 17-18 Math SI1210 Comm HU1050 Social Science Elective CSSI1130 CEET 1041 Total Hours Engl EN2010 CS 2420 CS 2430 CEET 2040 Total Hours Electronics Engineering Technology ■;■ ■■■■: ■ ■ ' ' /■:■. ;,■ ;':';;■;■..'.^v?-:V; ■'■.'■"/ '.■ .■■-.■■■ v, '\^-;v-;;; '■■:■:■■.■, '■■■<■■- ■■ : v.■"■■/;■.; :•■.■;■ ■.■ ■,/■ ^.:■-■;- ' ■■■'■■:.■■ .;.".' :■;■ ■ : ' ■ :'■;. .......... ; .•-.,■■_.•■.. ... '...:.■.■■.■ . ■.,...-.... ■ ,: . ... . .. : . » Grade Requirements: A grade of "C" or better in all CEET and support courses (a grade of "C-" is not acceptable). Students must maintain an overall GPA of 2.0 or higher. Refer to page 35 for general grade requirements for graduation. » Credit Hour Requirements: A minimum of 66 credit hours is required with a minimum of 40 credit hours in the major. Transfer students are required to take a minimum of 30 credit hours at Weber State University. » Assessment Requirements: Students will be required to complete certain assessment instruments as part of the overall requirements for receiving their associate degree. Please see your advisor or your department for specific information regarding assessment. Advisement All Electronics Engineering Technology students are required to meet with their faculty advisor at least annually for course and program advisement. Please call the department secretary at 801- 626-6898 for the name of your advisor and to schedule an appointment. Individual student records are accessible through the WSU Home Page (http://weber.edu). Admission Requirements See the department secretary to declare your program of study (major). There are no special admission or application requirements for this program. General Education Refer to pages 36-40 for Associate of Applied Science degree requirements. Computer Literacy as defined in this catalog is also required for the AAS degree. Consult with your advisor for specific general education guidelines. Course Requirements for A.A.S. Degree Required CEET Courses (36 credit hours) CEET 1010 DC & AC Circuits (4) CEET 1020 Power Circuits (4) CEET 1030 Digital Circuits (4) CEET 1041 Computer Architecture & Networking (4) CEET 2010 Semiconductor Devices & Circuit Design (4) CEET 2020 PCB Design & Packaging (4) CEET 2031 Microprocessor Systems & Embedded Controllers (4) CEET 2040 Communications Circuits (4) CEET 2050 Programmable Logic Controllers (4) Required Support Courses (24 credit hours) Math QL1080 Pre-Calculus (5) Math SI1210 Calculus I (4) Engl EN1010 Intro to Writing (3) Engl EN2010 Intermediate Writing (3) CS SI1130 Intro to UNIX & C (4) Phsx PS/SI2210/L Physics for Scientists & Engineers I (5) Other Courses Required (6 credit hours) Gen Ed Social Science Elective (3) Comm HU1050 Intro to Interpersonal Communications (3) Suggested Course Sequence The following suggested course sequence is provided to assist students in planning their schedules. Use this only as a guideline and be sure to consult with your advisor. Freshman Fall Fres EnglENlOlO Math QL1080 CEET 1010 CEET 1030 Total Hours Sophomore Fall 3 Engl EN2010 5 Comm HU1050 4 Math SI1210 4 CEET 1020 CEET 1041 16 Total Hours Sophomore JSBfflfi. 3 3 4 4 4 18 PhsxPS/SI2210/L CEET 2010 CEET 2031 CEET 2050 Total Hours 5 4 4 4 17 Social Science Elective CSSI1130 CEET 2020 CEET 2040 Total Hours Electronics Engineering Technology » Grade Requirements: A grade of "C" or better in courses used toward the minor (a grade of "C-" is not acceptable). » Credit Hour Requirements: A minimum of 20 credit hours of CEET courses. This program offers students who major in another discipline the option to obtain a minor in Electionics Engineering Technology. Course Requirements for Minor CEET Courses Required (20 credit hours) CEET 1010 DC & AC Circuits I (4) CEET 1020 Power Circuits II (4) CEET 1030 Digital Circuits (4) CEET 1041 Computer Architecture & Networking (4) CEET 2031 Microprocessor Systems & Embedded Controllers (4) COMPUTER AND ELECTRONICS ENGINEERING TECHNOLOGY COURSES CEET 1010. DC and AC Circuits (4) F, S Introduction to DC and AC circuit fundamentals, analysis, theorems, laws, components, measuring devices, and equipment. Lecture and lab combination. Laboratory activities to include circuit design, construction, and analysis of DC/AC circuits. The introduction and use of measuring instruments, power supplies, and signal generators. Prerequisite: MathlOlO. CEET 1020. Power Circuits (4) S Continuation of DC and AC Circuits, CEET 1010. AC circuits, DC and AC machines, transformers, power measurements, National Electrical Code fundamentals and applications. Lecture and lab combination. Laboratory activities to include the design, construction, and analysis of basic power circuits and machinery configurations. Prerequisite: CEET 1010. CEET 1030. Digital Circuits (4) F, S Introduction to digital electronics, integrated circuits, numbering systems, Boolean algebra, gates, flip-flops, multiplexers, sequential circuits, combinational circuits, and programmable logic devices. Lecture and lab combination. Laboratory activities to include the design, construction, analysis, and measurement of basic digital circuits. CEET 1041. Computer Architecture & Networking (4) F, S Introduction to computer architecture and networking principles. Computer fundamentals to include microprocessors, buses, registers, data flow, addressing, instruction sets, and networking principles. Lecture and lab combination. Laboratory activities to include the design, operation, configuration, and analysis of PC computer systems and networks. CEET 1850. Industrial Electronics (4) F Industrial electronics course for Mechanical and Manufacturing Engineering Technology majors. Introduction to DC and AC circuits, machines, and power systems. Lecture and lab combination. Laboratory activities to include the design, construction, and analysis of DC/AC circuits and machinery. Prerequisite: Math 1010. CEET 2010. Semiconductor Devices and Circuit Design (4) F 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. Prerequisite: CEET 1020 CEET 2020. PCB Design & Packaging (4) 5 Continuation of Semiconductor Devices and Circuit Design, CEET 2010, with emphasis on the design, simulation, analysis and packaging of circuits. Lecture and lab combination. Laboratory activities include the design, construction, and testing of prototype circuit boards. CAD programs will be used for the design and milling of circuit boards. Prerequisite: CEET 2010 CEET 2031. Microprocessor Systems and Embedded Controllers (4) F Introduction to microprocessors, embedded controllers, operational characteristics, computer architecture, machine code programming, memory devices, and interfacing. Lecture and lab combination. Laboratory activities to include the design, construction, and analysis of microprocessor based systems. Analysis techniques to include the use of assemblers, cross-assemblers, and emulators. Prerequisite: CEET 1041. CEET 2040. Communications Circuits (4) 5 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, construction, computer simulation, and analysis of communication circuits. Prerequisites: CEET 2020 and 2031. CEET 2050. Programmable Logic Controllers (4) F Introduction to programmable logic controllers to include the fundamentals of ladder logic, sensors, actuators, and programmable logic controllers (PLCs). Lecture and lab combination. Laboratory activities to include the design, programming, simulation, operation, and analysis of PLCs. Prerequisites: CEET 1020. 55 CEET 2850. Telecommunications Circuits (2) S Telecommunications technology course for Telecommunications majors. Introduction to telecommunications technology. The course introduces the fundamentals of DC theory, AC theory, power, electronic components, semiconductor devices, digital fundamentals, integrated circuits, computer circuits, frequency, fiber optics, and wireless communications. Two one-hour lectures per week. CEET SI3010. Advanced Circuit Analysis I (4) F, S Advanced topics related to electronic circuit analysis, Laplace transforms, differential equations, Fourier series, Fourier transforms, and applications. Lecture and lab combination. Laboratory activities to include circuit design, construction, computer simulation, and analysis. Prerequisites: CEET 2010 and Math SI1210. CEET 3020. Advanced Circuit Analysis II (4) F, S Continuation of Advanced Circuit Analysis I, CEET SI3010. Active and passive filters, Z-transforms, Pole-zero analysis, stability, Bode diagrams, frequency response, and applications. Lecture and lab combination. Laboratory activities to include circuit design, construction, computer simulation, and analysis. Prerequisite: CEET SI3010. CEET 3030. FPGA and ASIC Design (4) F Introduction to field programmable gate arrays (FPGA) and application specific integrated circuit (ASIC) design. Lecture and lab combination. Laboratory activities to include the use of computer design tools to design, model, simulate, and program gate arrays and application specific integrated circuits. CEET 3040. Instrumentation and Measurements (4) S Introduction to electronic data acquisition, data analysis, error analysis, signal measurement, and automatic testing techniques. Lecture and lab combination. Laboratory activities to include the design, construction, and analysis of measurement circuits, data acquisition circuits, instrumentation devices, and automatic testing. Prerequisite: CEET 2010. CEET 3050. Assembly Language & Device Drivers (4) S Small computer architecture, computer I/O, graphics, assembly language fundamentals, BIOS, device drivers, advanced assembly language techniques. Lecture and lab combination. Laboratory activities to include design, simulation, computer programming, analysis, and troubleshooting. Prerequisite: CEET 2031. CEET 3060. Power Systems (4) S Advanced power system analysis and design using computer software. Advanced programmable logic controller programming. Power electronics circuits and applications. Lecture and lab combination. Laboratory activities to include design, construction, simulation, and analysis of power systems. Programming of PLCs using subroutines and advanced arithmetic. Prerequisite: CEET 1020 and 3020. CEET 3070. Engineering Technology Research (4) F Introduction to engineering technology research principles. Engineering problem solving using the internet, human networking, and professional publications. Lecture and lab combination. Laboratory activities to include research, analysis, presentation, and documentation for specific engineering problems. CEET 4010. Project Management (3) F, S Introduction to project management. Selection of a team and a senior project. Project management and problem solving techniques to include the design, construction, test, analysis, and documentation of the senior project. Lecture and lab combination. General PROFILE ENROLLMENT STUDENT AFFAIRS ACADEMIC INFO DEGREE REQ GEN ED Interdisciplinary FYE HNRS BIS LIBSCI INTRD MINORS Applied Science & logy CEET- CS MFET/MET CMT DG PRENGR AUTOSV/AUTOTC IDT SST TBE Arts & Humanities COMM ENGL FORLNG DANCE MUSIC THEATR ART ss & Econ MBA MPACC/ACCTNG BUSADM FIN LOM MGMT MKTG ECON/QUANT IS&T Education MEDUC CHFAM ATHL/AT HEALTH/NUTRI PE/REC EDUC Health Professions CLS DENSCI PARAMD HTHSCI HAS/HIM NURSNG RADTEC DMS NUCMED RADTHR RESTHY BOTANY CHEM GEOSCI MATH/MATHED MICRO PHSX ZOOL Sociaf & Behavioral Q ECON GEOGR HIST POLSC PHILO PSYCH SOCLWK GERONT SOCLGY ANTHRO AEROSP MILSCI NAVSCI Sing Ed Davis Campus Weber State University Weber State University |