This lecture note explains the following topics: Sets, probability,
Bayes theorem,Set operations, logic operations, Bernoulli Trials, Cumulative
Distribution Function, Thermal distributions, Coupled Systems , Boltzmann Law ,
random variables and Expectations, random processes, Shot Noise , DC current and
Noise Current, Diffusion Noise , Bipolar Transistor Noise, noise of other
devices, FETnoise, circuit noise analysis, 2-port noise, mixers and frequency
conversion, baseband, AM, FM receivers, Phase noise in oscillators, sensitive
measurements, digital communications, Optical receiver sensistivity and sketch
of information theory.
This lecture note explains the following topics: Sets, probability,
Bayes theorem,Set operations, logic operations, Bernoulli Trials, Cumulative
Distribution Function, Thermal distributions, Coupled Systems , Boltzmann Law ,
random variables and Expectations, random processes, Shot Noise , DC current and
Noise Current, Diffusion Noise , Bipolar Transistor Noise, noise of other
devices, FETnoise, circuit noise analysis, 2-port noise, mixers and frequency
conversion, baseband, AM, FM receivers, Phase noise in oscillators, sensitive
measurements, digital communications, Optical receiver sensistivity and sketch
of information theory.
This note teaches the
fundamentals of basic semiconductor devices: the pn-junction diode, the bipolar
junction transistor, the metal-oxide-semiconductor capacitor, and the
field-effect transistor. Topics covered includes: Semiconductor Fundamentals,
Metal-Semiconductor Contacts and Schottky Diodes, pn Junction Diode, Bipolar
Junction Transistor, Metal-Oxide-Semiconductor Capacitor , MOS Field-Effect
Transistor.
This note covers the following topics: physical structure of devices,
device structure through fabrication sequence, basic processing steps used
in fabricating integrated devices, then the use of these process steps in
fabricating a diode, bipolar junction transistor or FET.