BS Electrical Engineering - Cal Poly

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BS Electrical Engineering1BS ELECTRICAL ENGINEERINGEE 212& EE 2424Program Learning OutcomesElectric Circuit Analysis IIIand Electric Circuit AnalysisLaboratory IIIEE 228Continuous-Time Signals andSystems4EE 255& EE 295Energy Conversion Electromagneticsand Energy ConversionElectromagnetics Laboratory4EE 302& EE 342Classical Control Systemsand Classical Control SystemsLaboratory4EE 306& EE 346Semiconductor Device Electronicsand Semiconductor DeviceElectronics Laboratory44. An ability to recognize ethical and professional responsibilities inengineering situations and make informed judgments, which mustconsider the impact of engineering solutions in global, economic,environmental, and societal contextsEE 307& EE 347Digital Electronics and IntegratedCircuitsand Digital Electronics and IntegratedCircuits Laboratory45. An ability to function effectively on a team whose members togetherprovide leadership, create a collaborative and inclusive environment,establish goals, plan tasks, and meet objectivesEE 308& EE 34846. An ability to develop and conduct appropriate experimentation,analyze and interpret data, and use engineering judgment to drawconclusionsAnalog Electronics and IntegratedCircuitsand Analog Electronics andIntegrated Circuits LaboratoryEE 314Introduction to CommunicationSystems37. An ability to acquire and apply new knowledge as needed, usingappropriate learning strategiesEE 328& EE 368Discrete Time Signals and Systemsand Signals and Systems Laboratory4EE/CPE 329Microcontroller-Based SystemsDesign4or EE 336Microprocessor System DesignElectrical engineering students are expected to graduate with:1. An ability to identify, formulate, and solve complex engineeringproblems by applying principles of engineering, science, andmathematics2. An ability to apply engineering design to produce solutions thatmeet specified needs with consideration of public health, safety,and welfare, as well as global, cultural, social, environmental, andeconomic factors3. An ability to communicate effectively with a range of audiencesDegree Requirements and CurriculumIn addition to the program requirements listed on this page, studentsmust also satisfy requirements outlined in more detail in theMinimum Requirements for Graduation helorsdegree/#generaleducationtext) section ofthis catalog, including:EE 335Electromagnetic Fields andTransmission4EE 375Electromagnetic Fields andTransmission Laboratory1 60 units of upper-division coursesEE 402Electromagnetic Waves4 Graduation Writing Requirement (GWR)EE 409& EE 449Electronic Designand Electronic Design Laboratory4EE 460Senior Project Preparation2 2.0 GPA U.S. Cultural Pluralism (USCP)Select from the following:Note: No Major or Support courses may be selected as credit/no credit.EE 461& EE 462MAJOR COURSESCPE/EE 133Digital Design4CPE/EE 233Computer Design and AssemblyLanguage Programming4EE 111& EE 151Introduction to Electrical Engineeringand Introduction to ElectricalEngineering Laboratory2Electric Circuit Analysis Iand Electronics Manufacturing andCircuit Analysis LaboratoryorEE 112& IME 156EE 211& EE 241Electric Circuit Analysis Iand Basic Electronics ManufacturingElectric Circuit Analysis IIand Electric Circuit AnalysisLaboratory IIorEE 463& EE 464Senior Project Design Laboratory Iand Senior Project Design LaboratoryIITechnical Electives2,3,4EE Senior Design Lecture/Laboratory Electives44Senior Project Iand Senior Project IISelect from the following:Select from the following:EE 113& EE 14311EE 410Power Electronics IEE 411Power Electronics IIEE 413Advanced Electronic DesignEE/CPE 414Robotic Systems IntegrationEE 417Alternating Current MachinesEE 420Sustainable Electric EnergyConversionEE 424Introduction to Remote SensingEE/CPE 428Computer Vision411

2BS Electrical EngineeringEE 431/CPE 441Computer-Aided Design of VLSIDevicesEE 527Advanced Topics in PowerElectronicsEE 433Introduction to Magnetic DesignEE 528Digital Image ProcessingEE 434Automotive Engineering for aSustainable FutureEE 529Microwave Device ElectronicsEE 530Fourier OpticsEE/CPE 439Introduction to Real-Time OperatingSystemsEE 533AntennasEE/CPE 442Real Time Embedded SystemsEE 570Selected Advanced TopicsEE/CPE 446Design of Fault-Tolerant DigitalSystemsEE Senior Design Laboratory ElectivesEE/CPE 447Stringed Musical InstrumentAcoustics, Mechanics, andTransducer DesignEE 495Cooperative Education ExperienceEE 504Software Defined RadioEE 516Pattern RecognitionEE/CPE 521Computer SystemsEE/CPE 522Advanced Real-Time OperatingSystems DesignEE/CPE 523Digital Systems DesignEE 531/CPE 541Advanced VLSI DesignEE/CPE 542Advanced Real Time EmbeddedSystemsEE Senior Design Lecture Electives5Special ProblemsEE/PHYS 422Polymer Electronics LaboratoryEE 443Fiber Optics LaboratoryEE 444Power Systems LaboratoryEE 445High Frequency Amplifier DesignLaboratoryEE 452Advanced Analog Circuits LaboratoryEE 455Analog Filter Design LaboratoryEE 456Digital Communication SystemsLaboratoryEE 458Photonic Engineering LaboratoryEE 459Digital Signal Processing LaboratoryEE 471Selected Advanced LaboratoryEE/CPE 472Digital Control Systems LaboratoryEE 475Communication Networks andSystems LaboratoryEE 480Wireless Communications LaboratoryEE/CPE 532VLSI Circuit TestingEE 541Advanced Microwave LaboratoryEE 544Solid-state Electronics and VLSILaboratory6EE 400Special ProblemsEE 403Fiber Optic CommunicationEE 405High Frequency Amplifier DesignEE 406Power Systems Analysis IEE 407Power Systems Analysis IIEE 412Advanced Analog CircuitsEE 415Communication Systems DesignEE 416Digital Communication SystemsEE 418Photonic EngineeringEE 419Digital Signal ProcessingEE 423/BMED 434/MATE 430Micro/Nano FabricationEE 425Analog Filter DesignEE/CPE 432Digital Control SystemsEE 440Wireless CommunicationsEE 470Selected Advanced TopicsEE 502Microwave EngineeringEE 509Computational IntelligenceEE 511Electric Machines TheoryEE 513Control Systems TheoryEE 514Advanced Topics in AutomaticControlEE 515Discrete Time FiltersEE 518Power System ProtectionEE 519Advanced Analysis of Power SystemsEE 520Advanced Solar-PhotovoltaicSystems DesignEE 524Solid State ElectronicsEE 526Advanced Digital Communications6EE 400Non-EE ElectivesBMED 420Principles of Biomaterials DesignBMED 425Biomedical Engineering TransportBMED 430Biomedical Modeling and SimulationBMED/MATE 435 Microfabrication LaboratoryBMED 440Bioelectronics and InstrumentationBMED 445Biopotential InstrumentationBUS 311Managing Technology in theInternational Legal EnvironmentCHEM 313Survey of Biochemistry andBiotechnologyCPE 315Computer ArchitectureCPE 333Computer Hardware Architecture andDesignCPE 416Autonomous Mobile RoboticsCPE 464Introduction to Computer NetworksCSC/CPE 357Systems ProgrammingCSC/CPE 453Introduction to Operating SystemsCSC/CPE 458Current Topics in Computer SystemsCSC/CPE 471Introduction to Computer GraphicsECON 330International Trade TheoryECON 337Money, Banking and CreditENVE 331Fundamentals of EnvironmentalEngineeringIME 301Operations Research I

BS Electrical EngineeringIME 3033Project Organization andManagementMATH 241Calculus IV4MATH 244Linear Analysis I4IME 305Operations Research IIPHYS 141General Physics IA (Area B Electives)4IME 319Human Factors EngineeringIME/HNRS 322Leadership and Project ManagementPHYS 132General Physics II4IME 401Sales EngineeringPHYS 133General Physics III4IME 435Reliability for Design and TestingPHYS 211Modern Physics I4IME 457Advanced Electronic ManufacturingSTAT 3504IME/MATE 458/CPE 488Microelectronics and ElectronicsPackagingProbability and Random Processes7for Engineers (Upper-Division B)Approved Engineering Support ElectivesMATE 340Electronic Materials SystemsSelect from the following:MATH 304Vector AnalysisBIO 111General BiologyMATH 306Linear Algebra IIBMED 212MATH 406Linear Algebra IIIIntroduction to BiomedicalEngineering DesignMATH 408Complex Analysis IBMED 310MATH 409Complex Analysis IIBiomedical EngineeringMeasurement and AnalysisMATH 412Introduction to Analysis IBMED 450MATH 413Introduction to Analysis IIContemporary Issues in BiomedicalEngineeringMATH 451Numerical Analysis ICHEM 125MATH 452Numerical Analysis IIGeneral Chemistry for PhysicalScience and Engineering IIMATH 453Numerical OptimizationCHEM 212Introduction to Organic ChemistryME 302Thermodynamics ICHEM 313ME 405MechatronicsSurvey of Biochemistry andBiotechnologyME 415Energy ConversionCPE 290Selected Topics (Introduction to C Programming)MU 311Sound Design: TechnologiesCPE 315Computer ArchitectureMU 312Sound Design: RecordingCPE 333MU 411Sound Design: SynthesisComputer Hardware Architecture andDesignPHYS 302Classical Mechanics ICSC/CPE 202Data StructuresPHYS 303Classical Mechanics IICSC/CPE 203PHYS 310Physics of EnergyProject-Based Object-OrientedProgramming and DesignPHYS 313Introduction to Atmospheric PhysicsCSC 348Discrete StructuresPHYS 318Special Theory of RelativityCSC/CPE 357Systems ProgrammingPHYS 322Vibrations and WavesEE/PHYS 422Polymer Electronics LaboratoryPHYS 403Particle and Nuclear PhysicsIME 140PHYS 405Quantum Mechanics IGraphics Communication andModelingPHYS 406Quantum Mechanics IIIME 142PHYS 408Electromagnetic Fields and Waves IManufacturing Processes: MaterialsJoiningPHYS 409Electromagnetic Fields and Waves IIIME 143PHYS 412Solid State PhysicsManufacturing Processes: MaterialRemovalPHYS 417Nonlinear Dynamical SystemsIME 301Operations Research IPHYS 423Advanced OpticsIME 305Operations Research IIPHYS 452Solid State Physics LaboratoryIME 314Engineering EconomicsIME 315Financial Decision Making forEngineersMATE 210Materials EngineeringMATE 215Materials Laboratory IMATE 232Materials, Ethics, and SocietyMATE 340Electronic Materials SystemsMATE 430/BMED 434Micro/Nano FabricationSUPPORT COURSESBIO 213& BMED 213Life Science for Engineersand Bioengineering Fundamentals7(B2)4General Chemistry for Physical7Science and Engineering I (B1 & B3)4CSC/CPE 101Fundamentals of Computer Science4ENGL 149Technical Writing for Engineers (A3)MATH 141Calculus I (B4)MATH 142Calculus II (B4)MATH 143Calculus III (Area B Electives)CHEM 1247744774472,3,8MATE/BMED 435 Microfabrication LaboratoryMATH 206Linear Algebra IMATH 248Methods of Proof in Mathematics9

4BS Electrical Engineering6MATH 304Vector AnalysisMATH 306Linear Algebra IIMATH 406Linear Algebra IIIMATH 408Complex Analysis IMATH 409Complex Analysis IIMATH 412Introduction to Analysis IMATH 451Numerical Analysis IMATH 452Numerical Analysis IIMATH 453Numerical OptimizationME 211Engineering StaticsME 212Engineering DynamicsME 228Engineering Design Communication If any of the remaining 40 units is used to satisfy a Major or Supportrequirement, additional units of Free Electives may be needed tocomplete the total units required for the degree.ME 251Introduction to Detailed Design withSolid Modeling See the complete GE course listing helorsdegree/#generaleducationtext).ME 302Thermodynamics IME 341Fluid Mechanics IPHYS 212Modern Physics IIPHYS 310Physics of Energy A grade of C- or better is required in one course in each of thefollowing GE Areas: A1 (Oral Communication), A2 (WrittenCommunication), A3 (Critical Thinking), and B4 (Mathematics/Quantitative Reasoning).PHYS 313Introduction to Atmospheric PhysicsPHYS 315LasersPHYS 318PHYS 3227 72 units required, 32 of which are specified in Major and/or Support.Area AEnglish Language Communicationand Critical ThinkingSpecial Theory of RelativityA1Oral CommunicationVibrations and WavesA2Written CommunicationPHYS 323OpticsA3Critical Thinking (4 units in Support)PHYS 403Particle and Nuclear PhysicsArea BPHYS 405Quantum Mechanics IScientific Inquiry and QuantitativeReasoningPHYS 406Quantum Mechanics IIB1Physical Science (4 units in Support)PHYS 408Electromagnetic Fields and Waves IPHYS 409Electromagnetic Fields and Waves IIB2Life Science (4 units in Support)PHYS 412Solid State PhysicsB3PHYS 417Nonlinear Dynamical SystemsOne lab taken with either a B1 or B2coursePHYS 423Advanced OpticsB4PHYS 424Advanced Theoretical PhysicsMathematics/Quantitative Reasoning1(8 units in Support)PHYS 452Solid State Physics LaboratoryArea B Electives (8 units in Support)40Free ElectivesTotal units450Consultation with an advisor is recommended prior to selectingTechnical Electives or Approved Electives; bear in mind yourselections may impact pursuit of post-baccalaureate studies and/orgoals.A course cannot be double-counted as a Technical Elective and anApproved Engineering Support Elective.Four units maximum.11114000000Arts and HumanitiesLower-division courses in Area C must come from threedifferent subject prefixes.C1Arts: Arts, Cinema, Dance, Music,Theater4C2Humanities: Literature, Philosophy,Languages other than English4192Either the ENGR 459, ENGR 460 and ENGR 461 (6) series or theENGR 463, ENGR 464 and ENGR 465 (6) series may substitute forthe EE 460, EE 461 and EE 462 (6) series or the EE 460, EE 463 andEE 464 (6) series.A minimum of two EE Senior Design Lecture Electives and two EESenior Design Laboratory Electives.Area C41Upper-Division B (4 units in Support)FREE ELECTIVES3The number of units given for transfer credit will not exceed thenumber of units of the Cal Poly course.General Education (GE) Requirements(See GE program requirements below.)2Required in Major or Support; also satisfies General Education (GE)requirement.8GENERAL EDUCATION (GE)1Four units maximum may count toward Technical Electives; one unitmaximum, with approval of department chair, may count towardsSenior Design Laboratory Elective.Lower-Division C Elective - Select a course from either C1or C2.4Upper-Division C4Area DSocial SciencesD1American Institutions (Title 5, Section40404 Requirement)4D2Lower-Division D4Area D Elective - Select either a lower-division or upperdivision course.Area ELifelong Learning and SelfDevelopment4

BS Electrical EngineeringLower-Division ETotal units1Required in Major or Support; also satisfies General Education (GE)requirement.4405

BS Electrical Engineering 1 . ENVE 331 Fundamentals of Environmental Engineering IME 301 Operations Research I. BS Electrical Engineering 3 . Four units maximum may count toward Technical Electives; one unit maximum, with approval of department chair, may count towards

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