Backside power delivery and design technology co-optimization help enable the full potential of new transistor structures.
A silicon carbide transistor can now operate at up to 600°C, opening new possibilities for extreme-environment electronics.
Interesting Engineering on MSN
New biological transistors use living bacteria to compute logic inside live plants
MIT researchers have engineered bacteria that can perform the basic switching functions of transistors.
Atomically thin semiconductors could enable dramatically smaller and more efficient chips, but a stubborn problem at the boundary between materials has limited their performance. Researchers have now ...
Nanoscale 3D transistors made from ultrathin semiconductor materials can operate more efficiently than silicon-based devices, leveraging quantum mechanical properties to potentially enable ...
A transdisciplinary Northwestern University research team has developed a revolutionary transistor that is expected be ideal for lightweight, flexible, high-performance bioelectronics. The ...
Tech Xplore on MSN
Erasable semiconductor is programmed with light
Researchers at Princeton Engineering have created a semiconductor with unique properties: It is just a few molecules thick ...
AI coding tools have evolved from autocomplete into agents that take a natural-language request, inspect a codebase, make ...
Integrated circuits (ICs) serve as the basis of computers, tablets, smartphones, and other technology that enhances our daily life. For around 60 years, those circuits have been made from silicon with ...
India's semiconductor expansion is beginning to expose a shortage of engineers with experience in production testing, a ...
Metal halide perovskites have emerged as a versatile class of semiconductor materials for field-effect transistors (FETs), driven by their solution processability, tunable electronic properties and ...
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