Organic light-emitting diodes (OLEDs) power the high-end screens of our digital world, from TVs and phones to laptops and ...
As more devices get piled onto computer chips to increase processing power capacity, heat generation becomes increasingly ...
Ubicept, the computer vision startup operating at the limits of physics, today announced the release of the Ubicept Toolkit, which will bring its physics-based imaging to any modern vision system.
A new one-step process miniaturises OLEDs to smaller than their emitted wavelength, enabling precise control of light ...
Miniaturization ranks as the driving force behind the semiconductor industry. The tremendous gains in computer performance since the 1950s are largely due to the fact that ever smaller structures can ...
Interesting Engineering on MSN
World’s tiniest light diodes shrink 100 times smaller than a human cell width
To demonstrate the potential of their nano-organic light-emitting diodes (OLEDs), the team formed the university’s logo from 2,800 individual diodes. The structure was only 20 micrometers tall, which ...
Researchers from ETH Zurich have manufactured organic light-emitting diodes (OLEDs) on a nanoscale - that's around a hundred ...
Engineeringness on MSN
The Hidden Material Inside Every Chip
Every smartphone, computer, and modern electronic device depends on a material you rarely hear about—but it’s everywhere: the semiconductor. In this video, you’ll discover what semiconductors are, how ...
PLANO, Texas (AP) — PLANO, Texas (AP) — Diodes Inc. (DIOD) on Thursday reported profit of $14.3 million in its third quarter. On a per-share basis, the Plano, Texas-based company said it had profit of ...
We might tend to take the word “diode” for granted if we’re thinking of a “diode” as just a two-lead or two-terminal device that gets used in this or that place for this or that purpose. It can become ...
The superconducting diode effect allows for nonreciprocal, dissipationless transport. It has the potential to enhance transfer current efficiency compared to the traditional semiconducting equivalent ...
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