Field-effect transistors (FETs) are the cornerstone of modern electronic devices, providing the essential functionality for digital logic, analog processing and power management. The fundamental ...
Diamond field-effect transistors (FETs) represent a cutting-edge development in semiconductor technology, leveraging the exceptional thermal conductivity, high breakdown voltage, and chemical ...
Beyond-silicon technology demands ultra-high-performance field-effect transistors (FETs). Transition metal dichalcogenides (TMDs) provide an ideal material platform, but the device performances such ...
A new technical paper titled “Ultranarrow Semiconductor WS 2 Nanoribbon Field-Effect Transistors” was published by researchers at Chalmers University of Technology. “Semiconducting transition metal ...
Technology is about to undergo a revolution that will alter how devices are utilized. A group of brilliant scientists from the Institute for Basic Science (IBS) in South Korea, led by the esteemed ...
A graphene layer consists of carbon atoms linked by covalent bonds, forming a honeycomb structure. Its excellent electron mobility, chemical and physical stability, electrical and thermal conductivity ...
A new technical paper titled “Enabling static random-access memory cell scaling with monolithic 3D integration of 2D field-effect transistors” was published by researchers at The Pennsylvania State ...
The 800 V automotive systems enable higher performance electric vehicles capable of driving ranges longer than 400 miles on a single charge and charging times as fast as 20 minutes. 800 V batteries ...
The U.S. power transistor market was valued at USD 3.10 billion in 2025 and is projected to reach USD 6.43 billion by 2035, expanding at a CAGR of 9.55%. Growth is fueled by rising EV adoption driving ...
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A revolution in technology is on the horizon, and it’s poised to change the devices that we use. Under the distinguished leadership of Professor LEE Young Hee, a team of visionary researchers from the ...