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Field-effect Transistors Comprised of three terminals, a field-effect transistor (FET) is a transistor type that controls current flow within a semiconductor via an electric field acting gate or a ...
MOSFETs operate based on the field-effect transistor principle, wherein the channel current is modulated by an electric field produced by the voltage applied to the gate terminal. The gate voltage ...
This course presents in-depth discussion and analysis of metal-oxide-semiconductor field-effect transistors (MOSFETs) and bipolar junction transistors (BJTs) including the equilibrium characteristics, ...
Shrinking chips are hitting a wall. Traditional transistors, the workhorses of modern electronics, are struggling to switch faster without guzzling power. A rival design, the tunnel field-effect ...
Beyond-silicon technology demands ultra-high-performance field-effect transistors (FETs). Transition metal dichalcogenides (TMDs) provide an ideal material platform, but the device performances ...
Researchers have reported a black phosphorus transistor that can be used as an alternative ultra-low power switch. A research team developed a thickness-controlled black phosphorous tunnel field ...
The fabrication of a Complementary-Field Effect Transistor (CFET) technology can be accomplished by directly fabricating n-MOS transistors on top of p-MOS transistors or vice-versa. This architecture ...
“Ferroelectric field-effect transistors employ a ferroelectric material as a gate insulator, the polarization state of which can be detected using the channel conductance of the device. As a result, ...
The gate-all-around (GAA) semiconductor manufacturing process, also known as gate-all-around field-effect transistor (GAA-FET) technology, defies the performance limitations of FinFET by reducing the ...