A five-year project led by the Georgia Institute of Technology has developed a novel approach to space electronics that could change how space vehicles and instruments are designed. The new ...
Hosted on MSN
Scientists unlock the hidden power within silicon making electronics smaller, faster, and more efficient
Researchers at the University of California, Riverside have unlocked a hidden power within silicon, the backbone of modern electronics. Their findings could transform how future devices are built, ...
Modern chips are manufactured on slabs of silicon less than a millimeter thick. But semiconductor companies try to slice these silicon wafers thinner and thinner to squeeze more performance out of ...
For everyday consumers, no products require reliability more than automobiles. While consumers may be willing accept their laptops and phones limiting performance or abruptly turning off when systems ...
High-speed electronic devices that do not use much power are useful for wireless communication. High-speed operation has ...
The global silicone potting compounds market size was US$ 987.2 million in 2021. The global silicone potting compounds market is forecast to grow to US$ 1366.1 million by 2030 by growing at a compound ...
An engineering team at Jiangxi Normal University, in collaboration with South China University of Technology, reports an entropy-driven strategy to ...
The term ‘bandgap’ refers to the energy difference between a material’s insulating and conducting states, a critical factor determining its electrical conductivity. As shown in figure 1, with its wide ...
How a single silicon chip was designed to be microwave and optical signal-processing engine. The various roles for which this engine can be reconfigured. The performance considerations that were ...
One such material that has attracted considerable interest is borophene - a single-atom-thick sheet of boron atoms. First theoretically predicted in the 1990s, borophene remained elusive ...
Researchers have developed advanced terahertz photodetectors containing 'living' microelectrodes. A vanadium dioxide (VO2) layer was precisely deposited on a silicon substrate. Temperature regulation ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results