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Search Results - strength-thermal+stability
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HFSIO as Gate Insulator for N-Polar Gan HEMTs (Case No. 2024-268)
Summary: Researchers in the UCLA Department of Electrical and Computer Engineering have developed a new, high-performance transistor for high-frequency and high-power systems. Background: Gallium nitride (GaN) high electron mobility transistors (HEMTs) are critical for high-frequency and high-power electrical applications due to their superior material...
Published: 6/12/2025
|
Updated: 1/3/2025
|
Inventor(s):
Elaheh Ahmadi
,
Oguz Odabasi
,
Xin Zhai
Keywords(s):
atomic layer deposition
,
dielectric gates
,
field-effect transistors (FETs)
,
gallium nitride
,
GaN
,
G-polar GAN
,
hafnium silicon oxide
,
HfSiO
,
high dielectric constant materials
,
high electron mobility transistors
,
high electron mobility transistors (HEMTs)
,
high frequency electronics
,
high power electronics
,
N-polar GAN
,
organic field effect transistors
,
quality control manufacturing
,
scalable manufacturing
,
solid-state thermal transistor
,
strength-thermal stability
,
thermal stability
,
thermal transistor
,
Thin-Film Transistor
,
Transistor
,
transistors
Category(s):
Chemical
,
Chemical > Chemical Processing & Manufacturing
,
Electrical
,
Electrical > Electronics & Semiconductors
,
Materials
,
Materials > Semiconducting Materials
,
Materials > Metals
2023-056 A Method to Make High Strength, High Ductility, and High Electrical Conductivity Metals
Summary: UCLA researchers in the Department of Materials Science and Engineering have developed ultra-strong metal nanocomposites with high ductility, thermal stability, and electrical conductivity. Background: In many different applications, including those in the aerospace, defense, electronics, energy, and transportation sectors, nanocrystalline...
Published: 2/14/2025
|
Updated: 1/23/2023
|
Inventor(s):
Yinmin Wang
,
Zan Li
Keywords(s):
graphene
,
high-strength
,
metal nanocomposites
,
Metals
,
Nanocrystal
,
nanocrystalline metals
,
nanodispersion
,
nanograined metals
,
Nanomaterials
,
Nanoparticle
,
Nanoparticles
,
nanostructured materials
,
Nanotechnology
,
reduced graphene oxide
,
strength-ductility
,
strength-electrical conductivity
,
strength-thermal stability
Category(s):
Materials
,
Materials > Composite Materials
,
Materials > Functional Materials
,
Materials > Metals
,
Materials > Fabrication Technologies