Electronics Courses
MIT OCW | Submitted on December 7th, 2008
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....
Colorado State University | Submitted on December 2nd, 2008
Colorado State University | Submitted on December 2nd, 2008
actuators, circuit examples, data acquistion, electrical components and measurements, mechatronic system examples, PIC microcontroller examples, PIC microcontroller student design projects, power transmission, sensors etc...
Nanohub.org | Submitted on December 2nd, 2008
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...
UC Berkeley | Submitted on December 2nd, 2008
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....
Hellenic Open University | Submitted on December 2nd, 2008
Virginia Tech | Submitted on December 2nd, 2008
MIT OCW | Submitted on December 2nd, 2008
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...
UC Berkeley | Submitted on December 2nd, 2008
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....
UC Berkeley | Submitted on December 2nd, 2008
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...