Huawei's new semiconductor architecture could raise transistor density while reducing power and heat, potentially improving ...
Researchers from the National University of Singapore developed an atom-thin film of amorphous carbon designed to insulate ...
Volatile and non-volatile memory are both vital parts of modern computers and devices, but how do they work together?
Arm and Samsung launch joint AI chip development on 2nm GAA process, targeting on-device AI for smartphones. Arm stock rises ...
Physicist Han Jung-hoon's new book traces how civilization's engine moved from steam to electricity to quantum, and why ...
Navigate the current AI chip market by discovering how different processors can increase the performance and ...
The hedonic treadmill explains why rapid technological breakthroughs feel ordinary, as AI accelerates innovation faster than ...
Imagine your world without portable computers, GPS, or the internet. Does it make your palms a little sweaty? Would you be ...
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.
Electronic devices usually don’t cope well with extreme heat. But researchers in Japan have developed a new type of transistor that can operate at temperatures as high as 600°C, or 1,112°F, ...
Inside there's a coil of wire wrapped around an iron core. When a current flows through this control wire, it creates a magnetic field. This pulls down the metal switch on top, which contacts the ...