CMOS Process Flow; Crystal Growth, Wafer Fabrication, Cleaning and Gettering; Oxidation; Dopant Diffusion; Ion Implantation and Annealing; Transient Enhanced Diffusion (TED); Thin Film Deposition; Etching etc....
Video Demonstrations of Mechatronics Principles Colorado State University\
actuators, circuit examples, data acquistion, electrical components and measurements, mechatronic system examples, PIC microcontroller examples, PIC microcontroller student design projects, power transmission, sensors etc...
Introduction, Light Interaction with matter-review of Maxwell’s Equations. Dispersion in materials. Optical Properties of Insulators, Semiconductors and Metals. Electromagnetic properties of molecules in Nano- and Microscopic Particles. Photonic Crystals, waveguides and fibers. Metal Optics, Surface Plasmon Excitation etc...
Introduction, Synchrotron radiation, Probing Matter: Diffraction, Spectroscopy and Photoemission; wave equations; Radiation by an accelerated charge; Scatter by free and bound electrons; Multi-electron atom, atomic scattering factors etc....
Systolic Computation; Fast addition, Multiplication,Division; Matrix Computations; Finite State Machines; Clock period; Bender; Interconnection Networking; Routing; VLSI; VLSI lower Bounds; VLSI Layout. Area-Universal Networks etc...
Intro to Communication Circuits; High-Speed Amplifiers and tuned Amplifiers; Two-Port Power Gain and Stability; Matching Networks; Distortion; Noise in Communication Systems; LNA Design; Mixers: BJT/MOS Mixers, Noise and Passive Mixers; LC oscillators, Steady State Analysis, Oscillator Phase Noise; Power Amplifiers; Frequency Synthesizers etc....
MOS models for Analog Design; Electrical, Thermal Noise and their equivalent Noise Generators; Current Sources; OTAs, Folded cascade OTA and OTA design; Feedback; Settling Time; Comparator Design; Coupling: E/M and Substrate coupling; Offset Cancellation etc...
IC fabrication; PN diode, BJT, FET, MOSFET small signal analysis; MOS capacitors; MOSFET amplifiers; Two port models; Frequency response, MOSFET.
74.Memory Circuit Design Boise State University Digital Design; on and off Currents; Diff Capacitances; EQ circuits; Dealy; RAS/CAS and addressing; SRAM; Floating Gate Memory (Flash); Clock doubler; Resistive memories; CMOS imagers and Sensing; PLL, VCO etc...
75.CMOS Analog IC Design Boise State University MOSFET operation; Small Signal Models; Biasing and Current Mirror Circuits; BMR; MIllers Theorem; Amplifiers Frequency Response, Push-Pull Amplifiers, Differential Amplifiers, CMMR etc....
80.Power Electronic System Integration Virginia Tech Overview; Integratable Materials; Advanced Power Semiconductors; Thermal-Mechanical Integration; Control and Sensor, Electro-Magneto-Thermo-mechanical Integration; High Density integration; Integrated Power Supplies; Integrated Modular Motor Drives; IPEM-Based Power Conversion System etc....
Scaling, Modeling, Static and Pass Transistor Logic, Logic Families for Performance; Dynamic Logic, Low Power Design, Supply Voltage Selection, Active Power-Reducing Switching Capacitance; Managing Leakage, Ultra-Low Voltage Design, Process Variations; Power Distribution, Timing Asynchronous &Synchronization, Clock Distribution, Embedded Memory etc...
MOSFET transistors; MOS capacitances; Advanced MOSFET issues; On and Off state effects; Hot carrier effects; Physics of basic oxide reliability; Gate Electrode Materials; Multiple Gate MOSFET ; Memory and Displays etc....
Topics: KCL, KVL ; Dependent and independent sources; Theorems; MOSFET; Amplifiers; First and second order systems; Steady state analysis and those required for Basic Electronic course.
85.Electricity and Magnetism MIT OCW Electric field; RL , RC and RLC circuits; Superconductivity; Magnetic Field; Electric and Magnetic Flux; Gauss?s law; Magnetic materials; Dia-,Para-, and Ferromagnetism; Electric Energy; Hysteresis; Maxwell's Equations; Polarization; Waves; EMF; Amperes law; Biot-Savart Law; Electromagnetic Induction etc...
Topics: Coulomb?s Force Law; Magnetic Field; Inducing magnetization, thermodynamics; equations of motion, Energy conversion; Applications to motion, induction and commutator machines; sensors and transducers; Skin effect; Standing waves;
Introduction, Basic IC/MEMS Fabrication, Deposition, Etching, Surface & Bulk Micromachining, Beams, Gaps, Resonators; better approximations: Parallel Plates, Couette Damping, Squeeze Film Damping, Effective Mass, Electrostatic, Electrostatic Pull-in, Thermal Conductivity , Thermal Capacity, Thermal Time Constant; Foundry Process;
Filters: Active, Higher Order and high Q Filters, Continuous-Time Filters, Switched-Capacitor Filters, Network Noise; Data Converters : DAC and ADC etc..
Design Metrics; IC Manufacturing and Design Rules; MOS transistor mode, Capacitance, Propagation Delays; CMOS Inverter, Scaling, Logic, Logical Effort; Pass Transistor Logic; dynamic Logic; Adders, Multipliers, Shifters; Sequential circuits, Timing, Clock Distribution, Power Distribution and Memory etc....
MOS Device Models; Current Sources, Active Loads; Output Stages; Op-Amps Low freq Analysis; Telescopic and Folded cascade Op Amps; Frequency response; Stability; Compensation; Filters, A/D and D/A�s; Wireless Circuits and RF Front-end etc...
Texas Instruments
It presents a great deal of information right from the basics of Electromagnetics such as Maxwells equations to its applications in new generation technologies such as wireless communications, computer peripherals to microwave communications, radar, and antennas.
This course discuses about sampling theorem, AWGN channels, and focuses mainly on the coding techniques linear block codes, Reed-Muller codes, finite fields, Reed-Solomon and BCH codes, binary linear convolutional codes, and the Viterbi algorithm. The advanced coding techniques also included which are trellis codes; codes on graphs; the sum-product and min-sum algorithms; the BCJR algorithm; turbo codes, LDPC codes and RA codes and many more.
This course explores all about digital signals. Foussed mainly on Transforms such as DFS, DFT, FFT, Z-transform, various convolution techniques, realization and implementation of FIR and IIR filters and many more.
Topics Covered: Signals and Systems, Determinism, Composition, Linearity, Responses and Hybrid Systems. Frequency Domain, Response and Filtering etc....
This course is all about images. Image compression, coding and restoration is the main area focused. The transforms DCT, DFT, Filter design and compression techniques JPEG also discussed in detail.
Fundamentals of Signal Processing: Sampling and Frequency analysis, Digital Filtering, Statistical and Adaptive Signal Processing; Comprehensive Sensing; Wavelets and Filter Banks: Sampling rate Change Operations, Modulation and Polyphase Representations/ Orthogonal Wavelets Bases and Maxflat Filters, Multi-resolution Analysis (MRA)/Refinement Equation; Multimedia: Image Coding and JPEG, Video coding and Networking issues.
Overview, Open-loop and Closed-loop Controls, Matlab Basics, Computer architecture, Input/Output, Discrete Process & Controller Modeling, Sequential Logic Control, Data Sampling, State Transition Diagrams, Laplace & Z-transforms, Discrete & steady state response, Final vale theorem, Stability, Root locus, Aliasing, System Design Example etc...