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Test Number : 1Z0-900
Test Name : Java EE 7 Application Developer
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Java EE 7 Application Developer education

Electrical & computer Engineering path record | 1Z0-900 Dumps and Real test Questions with VCE Practice Test

Introduction to Electrical and desktop Engineering (formerly hundred) Description

This introductory route is designed to expose college students to most of the new traits in Electrical Engineering, particularly those on-moving into the branch. it is going to also deliver suggestions about co-op alternatives and career planning, whereas also permitting faculty in the branch to explain their ctheirses and reply questions

Introduction to Electrical and desktop Engineering (previously 25/16.107) Description

This path is divided into two constituents through which students focus on core potential to assist them thrive in electrical and computing device engineering. the first half of the path specializes in software programming in Matlab where students study basics of Programming, Digital sign Processing, and data analysis. in the 2d part of the ctheirse students program a micro-controller and study concerning the characteristic of fundamental digital components. college students study to use basic check gadget equivalent to an Oscilloscope, function Generator, Volt Meter. This route is task and lab based mostly.

Curricula practical educationDescription

Curricula functional working towards

Circuit idea I (formerly sixteen.201) Description

Terminal qualities of optimum elements, lively and passive. Ohm's legislations and Kirchoff's legal guidelines. Introduction to network topology, independent variable, loop and nodal analysis with matrix strategies. Definition and penalties of linearity. Superposition theorem. thought of excitation and response. Passive equal circuits. Thevenin's and Norton's theorems. optimum inductance and capacitance, volt-ampere characteristics, potheyr relations, graphical differentiation and integration. First order transients; initial circumstances, herbal response, and herbal frequencies. network response to unit step feature and unit impulse. second order transients: RLC circuits, natural frequencies and the complex-frequency s-plane. Pre-Requisite: ninety two.132 Calculus II with a grade of 'C' or better. Co-Requisite: 16.207 or 16.212 primary EE Lab


Pre-req: MATH 1320 Calculus ll, and ENGN/EECE 1070/1080 Introduction to Engineering l, and Co-req: EECE 2070 primary Electrical Engineering Lab l, Grade of C or more desirable in MATH 1320.

Circuit thought II (previously sixteen.202) Description

Discusses the sinusoidal forcing characteristic, advanced numbers, phasors, sinusoidal consistent-state circumstances, impedance, commonplace genuine potheyr, reactive potheyr and rms values, exponential forcing characteristic, poles and zeros in the s-aircraft, conception of the system feature and its use in identifying the compelled response and resonance, reactance cancellation and thought of s-airplane vectors. The route also covers Thevenin's and Norton's theorems, superposition, reciprocity, and highest potheyr within the frequency area, impedance and admittance. Introduction to matrices and their use in circuit analysis, magnetic coupling, mutual inductance, and top-rated transformer. Engineering Science (100%).


Pre-Req: C- or improved in EECE 2010 Circuit thought I; Co-Req: EECE 2080 simple EE Lab II.

fundamental Electrical Engineering Laboratory I (previously 16.207) Description

Experimental work designed to examine concept and to acquaint college students with electrical measurement options: experiments on meters, bridges, and oscilloscopes. Experiments are correlated with direction 16.201 and situation: resistive measurements, Kirchhoff's legal guidelines, network theorems, conservation of vigor and maximum vigtheir switch, inductance and capacitance, and first and 2nd-order transients, operational amplifiers.

must haves

Co-Req: EECE.2010 Circuit concept I.

fundamental Electrical Engineering Lab II (formerly 16.208) Description

items experimental work designed to emphasize electrical measurement strategies of linear systems with time-varying alerts. Waveform measurements with dc and ac meters in addition to advanced use of the oscilloscope are additionally mentioned. Experiments are integrated with path 16.202. Experiments cowl: Kirchhoff's legal guidelines for phasors, bode plots, magnitude and section measurements of impedance, network theorems, frequency response, resonance, inductance, maximum vigtheir transfer, and MATLAB ideas. Engineering Science (50%); Engineering Design (50%).


Pre-Req: EECE 2070 primary EE Lab I; Co-Req: EECE 2020 Circuit thought II.

Fundamentals of electrical energy I (formerly sixteen.211/213) Description

Serves as an introduction to direct current and alternating latest evaluation of electric potheyred circuits, with emphasis on potheyr and energy. Covers design and use of multi-range voltmeters, ammeters, and ohmmeters, the use of bridges and oscilloscopes, phasor analysis of AC circuits, Trigonometric Ftheirier sequence, BODE plots, transformers, relays, solenoids, mechanical analogs and magnetic analogs with the software of Ftheirier and BODE recommendations. students will even be brought to DC and AC motors and turbines, residential circuits, machine insurance plan, and introduction to digital common sense together with minimization ideas. Availability and price of gadgets and accessories is wired throughout this path. now not for EE majors. Engineering Science (one hundred%).


Pre-Req: MATH 1320 Calculus II with a grade of 'C' or more suitable.

Fundamentals of electrical energy Laboratory (previously sixteen.212) Description

Lab for 16.211 Fundamentals of electrical energy. See direction description for 16.211. no longer for EE majors.


Co-Req: EECE 2110 Fund of electrical energy; Pre-Req: PHYS 1410 Physics I.

Fundamentals of Sound Recording (formerly sixteen.214) Description

comparable to 16.211 but tailor-made for Sound Recording know-how students simplest


Sound Recording expertise majors; Pre-Req: MATH 1320 Calculus II.

ECE application Programming (previously 16.216) Description

Introduces C programming for engineers. Covers fundamentals of procedural programming with purposes in electrical and laptop engineering and embedded systems. issues include variables, expressions and statements, console input/output, modularization and features, arrays, pointers and strings algorithms, buildings, and file input/output. Introduces working with C on the bit manipulation level. Laboratories consist of designing and programming engineering functions.

background of Radio (previously sixteen.233) Description

meant primarily for college kids majoring within the liberal arts. The path develops the conception of electrical energy from an historic standpoint. adequate historical past in circuit theory, resonance, box concept and radio waves is given to deliver an knowing of the principles of radio from its antecedents in the nineteenth century through the invention of the transistor within the mid ttheyntieth century. The simple contributions of, for example Volta, Oersted, Morse, Maxtheyll, Faraday, Hertz, hotel, and Marconi are considered. in the existing century the technical advances of such figures as de woodland, Fleming, Fessenden, Armstrong and Shockley are studied. The increase, regulation and lifestyle of yank broadcasting are additionally principal to the route. Laboratory work is required and students might also use this ctheirse toward enjoyable the ordinary education (science/experimental element) requirement of the college. not open to students within the faculty of Engineering.

Introduction to information verbal exchange Networks Description

This direction is designed to deliver the essentials of data conversation and networking. This includes an understanding of the Open methods Interconnection (OSI), TCP/IP and internet models. It covers a number of protocols and architectures of interconnection applied sciences. a couple of ideas will be mentioned a good way to enable students to follow the basic ideas of records conversation and networking know-how in many practical instances.

must haves

Pre-req: EECE.1070 Introduction to Electrical and computing device Engineering, and MATH.1310 Calculus I, and PHYS.1410 Physics I.

logic Design (formerly 16.265) Description

quantity systems and binary codes. Boolean algebra. Canonical and fundamental sorts of Boolean services. function expansion and its applications to digital circuit design. Minimization of Boolean capabilities with the aid of Boolean algebra and Karnaugh maps. Two-level and multi-degree digital circuits. Decoder, encoders, multiplexers, and de-multiplexers. Latches and flip-flops. Registers and counters. analysis and synthesis of synchronous sequential circuits. Design of extra complex circuits: statistics-direction and handle circuits. This ctheirse includes a laboratory part wherein students practice the design concepts realized in lectures to the design of combinational circuits, synchronous sequential circuits, and a serial arithmetic processor.


Pre-req: MATH 1320 Calculus ll, with a grade of "C" or better, or COMP 1020 Computing ll.

Electronics I Lab (formerly sixteen.311) Description

Laboratory experiments coordinated with the discipline depend of sixteen.365. qualities and use of digital instrumentation for making measurements on electronic circuits. methods of designing and characterizing diode and transistor circuits. analysis of performance characteristics of digital and linear semiconductor circuits, together with common sense features and amplifiers. Design and construction of circuits the usage of monolithic op amps.


Co-Req: EECE.3650 Electronics I.

Electronics II Laboratory (previously sixteen.312) Description

Laboratory experiments coordinated with the discipline depend of 16.366. excessive-frequency traits of transistors and transistor amplifiers. feedback in digital circuits. electronic oscillators. Differential amplifiers. residences of linear IC operational amplifiers and their utility in amplifier circuits and waveform technology circuits. Linear circuit design and analysis.


Co-req: EECE.3660 Electronics ll.

Microprocessors programs Design I (formerly sixteen.317) Description

Introduction to microprocessors, uses meeting language to enhance a basis on the hardware which executes a program. memory and that i/O interface design and programming. Design and operation of desktop methods. examine of microprocessor and its primary guide components, together with certain schematics, timing and functional analysis of their interactions. Laboratories directly related to microprocessor capabilities and its interfaces (e.g. memory subsystem, I/O devices and coprocessors).


Pre-req: ECE application Programming, and EECE 2650 common sense Design.

facts buildings (formerly sixteen.322) Description

Covers algorithms and their efficiency analysis, facts buildings, abstraction, and encapsulation. Introduces buildings and their genuine storage illustration. reports stacks, queues, linked lists, timber, graphs, hundreds, priority queues, and hashing. Discusses effective sorting (quicksort and heapsort) and introduces experimental analysis of algorithms as applied to engineering functions. Examines a number of design considerations, including option of structures based on what operations need to be optimized (insertion, deletion, traversal, looking, sorting, contrast), encapsulation of algorithms using category and template ideas, and the way and when to use recursion (versus explicit stack-based mostly recommendations). Laboratories consist of programming of facts constructions in C++ and Java applied to Engineering.

must haves

Pre-Req: EECE.2160 ECE software Programming

Electromechanics (previously sixteen.355) Description

Alternating existing circuits, three section circuits, basics of electromagnetic container concept, magnetic circuits, inductance, electromechanical potheyr conversion. top of the line transformer, iron-core transformer, voltage law, effectivity equal circuits, and three section transformers. Induction desktop building, equivalent circuit, torque pace features, and single section motors. Synchronous computer construction, equivalent circuits, energy relationships phasor diagrams, and synchronous motors. Direct present machines construction, varieties, efficiency, vigtheir circulation diagram, and external qualities.


Pre-Req: EECE.2020 Circuit thought II.

Engineering Electromagnetics I (previously sixteen.360) Description

Waves and Phasors, Transmission strains as disbursed Circuits, Smith Chart Calculations, Impedance Matching, Transients on Transmission traces, Vector evaluation,Electrostatics and Capacitance, consistent current circulation in conductors and Resistance, Magnetostatics and Inductance.

must haves

Pre-Req: EECE 2020 Circuit thought II and PHYS 1440 Physics II.

alerts and techniques I (formerly 16.362) Description

A study of a considerable number of continual voltage/present time features and their applications to linear time-invariant electrical programs. evaluate of pertinent subject matters from 16.202, akin to system services, S-aircraft ideas and finished responses. Step, ramp and impulse responses of linear circuits. Sifting integrals. sorts of analog filter responses. Designs for Butterworth and Chebishev filters. Ftheirier analysis, Ftheirier Transforms, Convolution, Laplace Transforms, Parseval's Theorem. a large component (30-40%) is dedicated to instructing the college students conversation skills and the use of MATLAB for fixing homework complications. A MATLAB based text is assigned to the path.


Pre-Req: EECE 2020 Circuit thought II and MATH 2360 Eng Differential Equations.

Introduction to likelihood and Random processes (formerly 16.363) Description

This route employing probabilistic strategies of signal and system evaluation (an extension of sixteen.362) considers the random nature of the area faced by electrical engineers. The route addresses the considerations of the nature and characterization of random pursuits, in particular noise and its impact on programs. The ctheirse is divided into three constituents, 1) Introduction to discrete and continual likelihood 2) Introduction to statistical strategies and three) random indicators and noise and the response of linear techniques to random alerts. There can be established use of Monte-Carlo simulation strategies on the computer to permit students to examine theory and to be trained the vital approach of simulation. purposes of idea to manufacturing and reliability, noise evaluation, spectral evaluation, statistics verbal exchange, information assortment, and device design will be offered. Prerequisite: sixteen.362

must haves

Pre-Req: MATH 1320 Calculus II with 'C' or enhanced.

Engineering mathematics (formerly sixteen.364) Description

advanced quantity, Argand airplane, derivatives of advanced numbers, limits and continuity, derivative and Cauchy Riemann situations, analytic features, integration in the complex airplane, Cauchy's critical components, countless sequence for complicated variables. Taylor collection, Laurent series, residue theory, contrast of integrals round indented conttheirs. Linear vector spaces, matrices and determinants, eigenvalues and eigenvectors.

must haves

Pre-Req: MATH 2360 Eng Differential Equations.

Electronics I (previously sixteen.365) Description

a brief introduction to strong-state physics, resulting in dialogue of genuine traits of p-n junction diodes, bipolar junction transistors, and box-impact transistors: active, saturated, and cutoff fashions of bipolar transistors and triode, steady current, and cutoff models of MOSFETs. Circuit fashions for diodes, and diode purposes. Circuit models for transistors, and transistor functions in bipolar and MOS digital circuits and low-frequency amplifier circuits. analysis of digital circuits and linear circuits in line with software of circuit fashions of contraptions and circuit conception.


Pre-req: EECE 2020 Circuit thought ll, and PHYS 1440 Physics ll, and Co-req: EECE 3110 Electronics l Lab.

Electronics II (previously 16.366) Description

A continuation of sixteen.365 with discussion of differential amplifiers, operation amplifiers and op amp functions, transistor amplifiers at very excessive frequencies; direct-coupled and band move amplifiers; small and big sign amplifiers; feedback amplifiers and oscillators. active filters, wave form generation circuits including Schmitt trigger, multiplexers, and A/D and D/A converters. Circuit design employing built-in circuit operational amplifiers and discrete contraptions. Circuit analysis the use of SPICE. An digital design mission constitutes a big part of the path.


Pre-Req: C- or superior in EECE 3650 Electronics I; Co-Req: EECE 3120 Electronics Lab II.

Capstone idea (formerly sixteen.399) Description

This route discusses and gifts the non-technical equipment and strategies for bringing a possible product from the theory or simple theory stage via remaining design and to market. Fundamentals of market research, product defense and liability concerns, critical technical communique expertise. financial considerations, patent, software procedures, design procedures and americans knowledge integral to be a part of an engineering team.

must haves

Pre-req: EECE 3120 Electronics Lab II, EECE 3170 Microprocessors I,and EECE 3660 Electronics II and Senior level.

Engineering subjects (previously 16.400) Description

This ctheirse introduces to the seniors constructing the capstone inspiration vital concepts similar to economics, environmental, sustainability, manufacturability, moral, fitness, defense ,social and political constraints and the way these are regarding the typical engineering procedures. These will be used as an essential component of their capstone tasks.


Co-Req: sixteen.399 Capstone idea.

Microwave Engineering (formerly sixteen.403) Description

An introductory ctheirse in the analysis and design of passive microwave circuits starting with a overview of time-varying electromagnetic box ideas and transmission strains. Smith Chart issues; single and double stub matching; impedance transformer design; maximally flat and Chebyshev transformers; microstrip transmission strains, slot traces, coplanar strains; rectangular and round waveguides; waveguide home windows and their use in impedance matching; design of directional couplers; aspects of vulnerable and potheyrful couplings; microwave filter design; characteristics of low-move, high-pass, band-flow, band-cease filter designs; two-port community representation of junctions; Z and Y parameters, ABCD parameters, scattering matrix; microwave measurements; measurement of VSWR, advanced impedance, dielectric consistent, attenuation, and potheyr. A design task constitutes an important a part of the route.


Pre-Req: EECE.4610 Emag conception II.

Directed experiences (formerly sixteen.409) Description

gives a chance for qualified Electrical Engineering college students to investigate specific areas of pastime. The precise project undertaken may be application or hardware oriented. essentially the most critical features of the tasks are that the end outcomes characterize impartial study, that they are research and development oriented, and that they are achieved in an engineering ambiance. Design studies and progress reports are expected for each task. A ultimate formal file to be completely filed in the EE department is required for each and every mission. Engineering Design (one hundred%).


Pre-Reqs: EECE 3550 Electromechanics,EECE 3600 Emag theory I, EECE 3620 signals & systems I, EECE 3650 Electronics I,and EECE 3660 Electronics II.

Directed stories (formerly 16.410) Description

The goal of this ctheirse is to deliver a chance for certified Electrical Engineering college students to examine selected areas of interest. The specific venture undertaken may be software or hardware oriented. essentially the most essential traits of the projects are that the conclusion results signify impartial examine and that they are research and construction oriented, and that they are completed in an engineering ambiance. Design experiences and growth reports are expected for each project. A remaining formal report to be permanently filed in the EE branch is required for each and every assignment.


Pre-Reqs: EECE 3550 Electromechanics,EECE 3600 Emag concept I,EECE 3620 alerts & techniques I,EECE 3650 Electronics I, and EECE 3660 Electronics II.

Directed reviews (previously 16.412) Description

The purpose of this path is to provide an opportunity for certified Electrical Engineering college students to examine certain areas of activity. The genuine venture undertaken can be application or hardware oriented. the most vital qualities of the projects are that the end effects signify impartial examine and that they're research and construction oriented, and that they are accomplished in an engineering atmosphere. Design reports and progress reports are anticipated for every assignment. A ultimate formal document to be completely filed within the EE department is required for each and every venture.

must haves

Pre-Reqs: EECE 3550 Electromechanics,EECE 3600 Emag idea I, EECE 3620 indicators & programs I, EECE 3650 Electronics I,and EECE 3660 Electronics II.

Linear feedback equipment (formerly 16.413) Description

ideas of feedback; open loop and closed loop methods. feedback in electrical and mechanical methods. Mathematical fashions of programs and linear approximations. switch features of linear methods, block diagrams and sign circulation graphs. Sensitivity, handle of transient response, disturbance alerts. Time domain performance: constant state blunders, performance indices. balance involving s-airplane vicinity of the roots of the characteristic equation. Routh-Hurwitz criterion. Graphical analysis concepts: root locus, frequency response as polar plot and Bode diagrams. Closed loop frequency response. A manage equipment design challenge is covered within the path.


Pre-Req: EECE 3620 signals & systems I and EECE 3640 Engineering Math.

integrated vigtheir methods (previously 16.414/514) Description

vigor gadget Operations and electricity Markets provide a finished overview to take into account and meet the challenges of the brand new aggressive extremely deregulated vigor industry. The route items new strategies for energy methods operations in a unified integrated framework combining the company and technical elements of the restructured vigor trade. An outlook on vigor coverage fashions, rules, reliability, and economics is attentively revietheyd. The route lay the groundwork for the coming period of unbundling, open access,, energy marketing, self-technology, and regional transmission operations.


Pre-Req: EECE.2020 Circuit theory II.

wireless conversation (formerly sixteen.418) Description

mobile techniques and design concepts, co-channel and adjacent channel interference, cell radio propagation and resolution of gigantic scale ctheirse loss, propagation mechanisms like reflection, diffraction and scattering, out of doors propagation fashions, Okumura and Hata models, small scale fading and multipath, Doppler shift and consequences, statistical models for multipath, digital modulation suggestions QPSK, DPSK, GMSK, numerous entry suggestions, TDMA, FDMA, CDMA, spread spectrum concepts, frequency hopped systems, instant systems and international necessities.


Pre-req: EECE 3600 Engineering Electromagnetics I, and EECE 3620 indicators and systems l.

true Time Digital sign Processing (previously 16.421) Description

This path gives an introduction to precise-time digital signal processing concepts the use of the TMS320C3x floating factor and TMS320C5x fixed aspect processors. The architecture, instruction set and utility building tools for these processors might be studied by means of a sequence of C and meeting language desktop projects the place actual-time adaptive filters, modems, digital control techniques and speech focus systems are carried out.


Pre-Req: sixteen.362 signals & programs I.

Introduction to strong State Electronics (previously sixteen.423) Description

A design of semiconductor device and manufacturing expertise is linked to the solid state physics ideas during this direction. themes lined: The electronic constitution of the atom, wave-particle duality of moving electrons. Schrodinger equation for periodic crystalline constitution. Band theory of semiconductors. Brillouin zones. statistics of electrons and holes. Kinetic effects: electrical conductivity, hall effect, magnetoresistance. Optical residences: photoconductivity, easy absorption and emission. Thermal houses together with thermal conductivity, thermo EMF, recombination tactics and position of defects.


Pre-Req: 16.365 Electronics I or teacher permission.

Computational methods for vigtheir gadget evaluation (previously 16.424/524) Description

The direction explores one of the vital mathematical and simulation equipment used for the design, analysis and operation of electric potheyred energy programs. Computational methods based on linear and nonlinear optimization algorithms are used to solve load movement complications, to investigate and symbolize system faults and contingencies, and to comprehensive financial dispatch of electric potheyred energy methods. real case experiences and theoretical projects are assigned to enforce the suggestions realized and to propose concepts. diverse software purposes could be used similtaneously together with ATP, PotheyrWorld Simulator, Aspen, MatLab with Simulink and energy equipment Toolbox, PSCAD, and so forth.


Pre-Req: EECE.2020 Circuit thought II.

vigor methods balance and control (formerly sixteen.426/526) Description

steadiness definition and circumstances in vigtheir programs. equipment model for laptop attitude stability. Small sign and transient steadiness. Voltage stability phenomenon, its characterization. Small and large signal fashions for voltage steadiness evaluation. Frequency balance and control. Compensation methods for device voltage rules including classical and modem strategies. balance of multi-desktop system.


Pre-Req: EECE.2020 Circuit theory II.

superior VLSI Design concepts (previously sixteen.427/527) Description

This path builds on the old jtheirney with Cadence design equipment and covers superior VLSI design thoughts for low vigor circuits. issues coated consist of features of the design of low voltage and low energy circuits together with system expertise, machine modeling, CMOS circuit design, memory circuits and subsystem design. This could be a research-oriented direction in line with team initiatives.

must haves

Pre-Req: EECE 4690/502 VLSI Design, or instructor permission.

option potheyr Stheirces (previously sixteen.428) Description

PV conversion, telephone efficiency, mobile response, systems and functions. Wind energy conversion systems: Wind and its characteristics; aerodynamic idea of windmills; wind mills and generators; wind farms; siting of windmills. other alternative potheyr stheirces: Tidal potheyr, wave energy, ocean thermal energy conversion, geothermal potheyr, solar thermal energy, satellite tv for pc energy, biofuels. energy storage: Batteries, gasoline cells, hydro pump storage, flywheels, compressed air.

electric vehicle expertise (previously 16.429) Description

electric potheyred car VS interior combustion engine automobile. electric car (EV) saves the atmosphere. EV design, EV motors, EV batteries, EV battery chargers and charging algorithms, EV instrumentation and EV wiring diagram. Hybrid electric automobiles. fuel cells. gas telephone electric potheyred motors. The path contains impartial work.

R F Design (previously 16.431) Description

Two-port network parameters, Smith chart purposes for impedance matching, transmission line constructions like stripline, microstrip line and coaxial line, filter designs for low-circulate, excessive-move and band-flow characteristics, amplifier design based on s-parameters, bias network designs, one port and two port oscillator circuits, noise in RF systems.

must haves

Pre-Req: EECE.3600 Emag idea I.

electronic materials (formerly 16.333/EECE.3330) Description

The creation and processing of materials into comprehensive products constitute a big part of the present economic climate. To put together college students for using a lot of normal and new materials, this route will cover: atomic constitution and chemical bonding, crystal geometry and defects, mechanical houses and phase diagrams of metals and alloys, electrrical and optical properties of semiconductors, ceramics, and polymers; brief description of digital, quantum electronic and photonic devices; merits and difficulties of substances design with decreasing dimensions from millimeters to micrometers and to nanometers.


Pre-req: MATH.1320 Calculus II and PHYS.1440 Physics II.

Introduction to Biosensors (formerly sixteen.441/541) Description

This ctheirse introduces the concept and design of biosensors and their applications for pathology, pharmacogenetics, public fitness, food security civil protection, and environmental monitoring. Optical, electrochemical and mechanical sensing recommendations will be discussed.

vigtheir Distribution device (previously 16.444) Description

An intermediate route in evaluation and operation of electrical energy distribution systems the use of applied calculus and matrix algebra. issues consist of electrical hundreds qualities, modeling , metering, client billing, voltage law, voltage ranges, and vigor component correction. The design and operation of the potheyr distribution system components should be delivered: distribution transformers, distribution substation, distribution networks, and distribution gadget. Prerequisite: sixteen.355


Pre-Req: 16.355 Electromechanics.

Analog gadgets and concepts (formerly sixteen.445/565) Description

A survey of analog instruments and ideas, targeting operational amplifier design and functions. Operational amplifier design is studied to demonstrate the obstacles of genuine opamps, and to increase a foundation for deciphering their requisites. representative functions are lined, including: basic amplifiers, differential and instrumentation amplifiers, summers, integrators, active filters, nonlinear circuits, and waveform generation circuits. A design project is required.


Pre-Req: sixteen.366 Electronics II.

superior Digital device Design (previously sixteen.450) Description

Design of common sense machines. Finite state machines, gate array designs, ALU and ftheir bit CPU unit designs, micro-programmed methods. Hardware design of advanced digital circuits the usage of XILINX. software of chance and information for hardware performance, and upgrading hardware techniques. Laboratories comprise specification, precise-down design, modeling, implementation and testing of exact advanced digital design programs hardware. Laboratories additionally include simulation of circuits the use of VHDL before genuine hardware implementation and PLDs programming.


Pre-req: EECE 2650 logic Design, EECE 3660 Electronics II, EECE 3120 Electronics II Lab, and EECE 3170 Microprocessor programs Design I, or permission of instructor.

application Engineering (previously 16.453) Description

Introduces application life cycle models, and engineering strategies for utility design and construction. Design and implementation, testing, and renovation of enormous software packages in a dynamic environment, and systematic strategy to software design with emphasis on portability and ease of change. Laboratories include a task where one of the most application engineering strategies (from modeling to testing) are utilized in an engineering instance.


Pre-Req: EECE 2160 ECE application Programming and EECE 3220 information constructions. or Permission of instructor.

Introduction to Nanoelectronics (previously 16.459/559) Description

This direction introduces the use of nanomaterials for digital gadgets akin to sensors and transistors. Synthesis methods for nanoparticles, nanotubes, nanowires, and a pair of-D substances equivalent to graphene might be lined. The challenges in incorporating nanomaterials into gadgets will even be mentioned. These strategies will be in comparison to concepts used within the semiconductor industry and what challenges, technically and financially, exist for his or her widespread adoption should be addressed. ultimately, examples of contraptions that use nanomaterials could be revietheyd. The direction may have some arms on demonstrations.

Biomedical Instrumentation (previously sixteen.460/560) Description

A survey of biomedical instrumentation that leads to the analysis of various scientific device designs and the linked factors involved in scientific device innovation. in addition to the technical points of system integration of biosensors and physiological transducers there will be coverage of a biodesign innovation method that can translate clinical wants into designs. a major path part can be challenge-based prototyping of mobile heath functions. The normal desires of the ctheirse are to deliver the theoretical historical past as theyll as selected requirements for clinical gadget construction together with some useful venture experience that could thereby enable college students to design electrical and computing device based mostly clinical systems.


Pre-req: ECE senior/grad or BMEBT student

Engineering Electromagnetics II (formerly 16.461) Description

Continuation of Magnetostatics, Maxtheyll's Equations for Time-varying Fields, plane waves: time-harmonic fields, polarization, latest flow in decent conductors and epidermis effect, vigor density and Poynting vector, wave reflection and transmission; Snell's legislations, fiber optics, Brewster angle, radiation and straightforward antennas, electromagnetic ideas panic in a topical technology in building.

must haves

Pre-Req: EECE.3600 Emag conception I.

Antenna theory and Design (formerly 16.462) Description

An introduction to properties of individual antennas and arrays of antennas. Retarded potentials, dipoles of arbitrary size, radiation sample, gain, directivity, radiation resistance. The loop antenna. consequences of the earth. Reciprocity, receiving antennas, useful length and area. second methods. Arrays: collinear, broadside, endfire. Array synthesis. Mutual coupling. Log-periodic and Yagi arrays. Radiation from apertures: the waveguide horn antenna, parabolic dish. Antenna noise temperature. Numerical application applications. A design undertaking is required in the direction.


Pre-Req: EECE.4610 Emag concept II.

special issues (formerly sixteen.467) Description

there's presently no description accessible for this ctheirse.

Electro-optics & integrated Optics (previously sixteen.468) Description

An introduction to genuine optics, electro-optics and built-in optics. subject matters consist of: Waves and polarization, optical resonators, optical waveguides, coupling bettheyen waveguides, electro-optical properties of crystals, electro-optic modulators, Micro-Optical-Electro-Mechanical (MEMS) contraptions and photonic and microwave instant systems.

must haves

Pre-Req: EECE.3600 Emag concept I.

VLSI Design (formerly 16.469/502) Description

Introduction to CMOS circuits together with transmission gate, inverter, NAND, NOR gates, MUXEs, latches and registers. MOS transistor concept together with threshold voltage and design equations. CMOS inverter's DC and AC qualities along with noise margins. Circuit characterization and performance estimation together with resistance, capacitance, routing capacitance, numerous conductor capacitance, disbursed RC capacitance, diverse conductor capacitance, distributed RC capacitance, switching features incorporating analytic extend models, transistor sizing and potheyr dissipation. CMOS circuit and common sense design together with fan-in, fan-out, gate delays, common sense gate layout incorporating ordinary telephone design, gate array layout, and single in addition to two-part clocking. CMOS examine methodologies including caught-at-0, stuck-at-1, fault models, fault insurance, ATPG, fault grading and simulation including scan-primarily based and self examine options with signature analysis. A task of modest complexity can be designed to be fabricated at MOSIS.

VLSI Fabrication (formerly 16.470) Description

Fabrication of resistors, capacitors, p-n junction and Schottky barrier diodes, BJT's and MOS gadgets and built-in circuits. subject matters include: silicon constitution, wafer preparation, sequential thoughts in microelectronic processing, testing and packaging, yield and clean room environments. MOS structures, crystal defects, Fick's laws of diffusion; oxidation of silicon, photolithography including photoresist, construction and stripping. Metallization for conductors, Ion implantation for depletion mode and CMOS transistors for more advantageous yield pace, low vigtheir dissipation and reliability. college students will fabricate circuits using the DSIPL Laboratory.


Pre-Req: 16.365 Electronics I.

Embedded genuine Time systems (previously 16.472) Description

Designing embedded precise-time computer methods. styles of actual-time systems, together with foreground/heritage, non-preemptive multitasking, and priority-based mostly pre-emptive multitasking programs. soft vs. tough genuine time methods. project scheduling algorithms and deterministic conduct. Ask synchronization: semaphores, mailboxes and message queues. robust reminiscence administration schemes. software and design of a true-time kernel. A challenge is required.


Pre-Reqs: EECE.2160 ECE application Programming,EECE.3170 Microprocessor Sys Desgn I, EECE.3220 statistics structures.

vigor Electronics (formerly 16.473/515) Description

A one-semester direction with emphasis on the engineering design and performance analysis of vigor electronics converters. issues include: vigor electronics contraptions (vigtheir MOSFETs, energy transistors, diodes, silicon managed rectifiers SCRs, TRIACs, DIACs and energy Darlington Transistors), rectifiers, inverters, ac voltage controllers, dc choppers, cycloconverters, and potheyr components. The direction contains a mission, which requires that the pupil design and construct one of the vital vigtheir electronics converters. A demonstrative laboratory to expose the college students to every kind of projects is part of the direction.


Pre-Reqs: EECE 3550 Electromechanics and EECE 3660 Electronics II.

concepts Of solid State devices (formerly sixteen.474) Description

concepts of strong State gadgets: Crystal properties and growth of semi-conductors, atoms and electrons, Bohr's model, quantum mechanics, bonding forces and potheyr bands in solids, cost carriers in semiconductors, float of carriers in electric potheyred and magnetic fields, carrier lifetime and photoconductivity, junctions, ahead and reverse bias, reverse bias breakdown (Zener impact), tunnel diodes, photodiodes, LED, bipolar junction transistors, container impact transistors. A design venture is protected within the route.


Pre-Req: 16.365 Electronics I.

Microprocessor systems II & Embedded techniques (previously 16.480) Description

Continuation of 16.317. CPU structure, memory interfaces and management, coprocessor interfaces, bus concepts, bus arbitration suggestions, serial I/O contraptions, DMA, interrupt control gadgets. together with Design, development, and testing of dedicated microprocessor techniques (static and precise-time). Hardware boundaries of the one-chip system. contains micro-controllers, programming for small techniques, interfacing, communications, validating hardware and software, microprogramming of controller chips, design methods and checking out of embedded systems.


Pre-Reqs: EECE 3110 Electronics I Lab, EECE 3170 Microprocessor Sys Desgn I, and EECE 3650 Electronics I.

operating programs (formerly sixteen.481) Description

Covers the components, design, implementation, and internal operations of desktop operating methods. themes encompass fundamental constitution of operating techniques, Kernel, consumer interface, I/O equipment management, gadget drivers, process ambiance, concurrent approaches and synchronization, inter-procedure communication, manner scheduling, memory administration, impasse management and determination, and file equipment structures. laboratories consist of examples of add-ons design of a real working methods.

must haves

Pre-Reqs: EECE.2160 ECE software Programming,EECE.3170 Microprocessor Sys Desgn I, EECE.3220 statistics structures.

laptop architecture and Design (previously sixteen.482) Description

structure of computer systems, past and present: first, 2d, third and ftheirth generation. Combinatorial and sequential circuits. Programmable common sense arrays. Processor design: information codecs, instruction codecs, arithmetic operations and parallel processing. Hardwired and microprogrammed handle gadgets. virtual, sequential and cache recollections. enter-output methods, conversation and bus manage. assorted CPU programs.


Pre-Reqs: EECE 3170 Microprocessor Sys Desgn I,EECE 2650 Intro common sense Design.

community Design: principles, Protocols & functions (formerly 16.483) Description

Covers design and implementation of network software that transforms uncooked hardware into a richly purposeful verbal exchange system. precise networks (such because the theyb, ATM, Ethernet, Token Ring) can be used as examples. items the different harmonizing services obligatory for the interconnection of many heterogeneous laptop networks. information superhighway protocols, comparable to UDP, TCP, IP, ARP, BGP and IGMP, are used as examples to show how internetworking is realized. purposes comparable to email correspondence and the WWW are studied.

must haves

Pre-req: EECE.3220 records buildings.

computing device vision and Digital photo Processing (formerly sixteen.484) Description

Introduces the concepts and the simple ideas for picture Processing and desktop vision. subject matters encompass programming aspects of imaginative and prescient, picture formation and illustration, multi-scale analysis, boundary detection, texture analysis, shape from shading, object modeling, stereo-imaginative and prescient, action and optical movement, shape description and objects cognizance (classification), and hardware design of video playing cards. AI recommendations for laptop imaginative and prescient are also coated. Laboratories encompass genuine purposes from business and the latest research areas.

must haves

Pre-req; EECE 2160 ECE software Programming, and EECE 3620 alerts and systems or Permission of teacher.

Fiber Optic communication (previously 16.490) Description

Optical fiber; waveguide modes, multimode vs single mode; bandwidth and facts charges; fiber losses; splices, couplers, connectors, taps and gratings; optical transmitters; optical receivers; high velocity optoelectronic instruments; optical hyperlink design; broadband switching; single wavelength techniques (FDDI, SONET, ATM); coherent transmission; wavelength division multiplexing and CDMA; fiber amplifiers.


Pre-Reqs: EECE 3600 Emag concept I, EECE 3620 alerts & methods I or instructor permission.

Industrial jtheirney (previously 16.491) Description

This three credit direction is for co-op or industrial adventure. It can be taken 3 times and the co-op internship may still be for as a minimum 500 htheirs with a purpose to be eligible for credit. most effective three credit may be used toward the BSEng in CpE or EE diploma. Registration for this path is conditional on the approval of the department Co-op coordinator. A grade of adequate or Unsatisfactory is given.

Industrial adventure II (previously 16.492) Description

Industrial work event through permission of coordinator best.

Industrial experience III (formerly sixteen.493) Description

This three credit ctheirse is for co-op or industrial jtheirney. It may theyll be taken thrice and the co-op internship should still be for at the least 500 htheirs in an effort to be eligible for credit. simplest 3 credits may be used toward the BSEng in CpE or EE degree. Registration for this ctheirse is conditional on the approval of the branch Co-op coordinator. A grade of sufficient or Unsatisfactory is given. Prerequisite: Permission of instructor

Capstone undertaking (previously 16.499) Description

The aim of the Capstone undertaking is to provide the student with a design experience which resembles entry level engineering assignments. it's anticipated that the project embody a minimum of three technical areas within the CpE or EE discipline, and encompass some points of each and every step in the building of a marketable product i.e. research, Design & building, Manufacture, advertising & carrier. a formal technical document have to be submitted just before the submission of a path grade. Prerequisite sixteen.399 and sixteen.ftheir hundred


Pre-Req: EECE.3990Capstone suggestion.

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