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Fundamentals of Electronics was created with the intention of being used in an upper division electronics course for electrical engineering students. The book also develops ideas necessary to the study of electronic circuits at a basic level, reducing the risk of misunderstandings at a higher level.The difference between linear and non-linear operation is investigated using a range of circuit examples, such as amplifiers built with operational amplifiers as the core component and basic digital logic gates built with various transistor types. The reader’s attention is focused on gaining a comprehensive comprehension of each of the gadgets when they are in balance.
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Operational amplifiers, semiconductor diodes, bipolar junction transistors, and field effect transistors are the four main building blocks of modern electronics, and each of their basic operations is described in four chapters. Integrated circuit: fabrication process: oxidation, diffusion, ion implantation, photolithography, etching, chemical vapor deposition, sputtering, twin-tub CMOS process.Įlectronic Devices and Circuit Application is the first of four volumes in the Fundamentals of Electronics series. Opto–Electronics: Optical absorption in semiconductors, photovoltaic effects, solar cells (p-n junction), Photoconductors, Photodiode, PIN photodiode, Avalanche photodiode, Phototransistor, LED, Semiconductor Laser (p-n junction) MOSFET: MOS capacitor, C-V characteristics, MOSFET, I-V characteristics, and small signal
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P-N junction: Physical Description of p-n junction, Basic device technologies for fabrication of a p-n junction, I-Vcharacteristics, and small signal switching models Avalanche breakdown, Zener diode, Schottky diode Bipolar Junction Transistor: Basic Construction, I-V characteristics, Ebers-Moll Model. Generation and recombination of carriers Poisson and continuity equation and Mobility, diffusion and drift of carriers, continuity equation, Injected minority carrier charge, Recombination and generation of charge carriers. Energy bands & Current Carriers in Semiconductors: Bonding Forces in Solids, Energy Bands theory in crystals (Qualitative Analysis), Metals, Semiconductors, & Insulators, Fermi-Level, Intrinsic and Extrinsic Semiconductors, Concept of Holes, Carrier Concentration.
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