Kyoto University and Phenitec Semiconductor Corp have transferred a 600°C-capable silicon carbide JFET process onto a 6-inch wafer using standard foundry equipment, achieving high device uniformity on the first production run.
A cross-stream analysis of 194 research and 209 corporate compute records finds that only 5 research records, 2.6 percent, carry a High commercial-readiness rating, while advanced packaging and chiplets, not new devices, are how the market is adding compute.
A cross-stream analysis of 505 research and 351 corporate energy records finds the laboratory and the market working at different levels of the system entirely, with durability named as the research barrier in 180 of 482 records against just 16 citing cost.
A cross-stream analysis of 1,565 research and 761 corporate healthcare r Decords finds research outnumbering commercial activity by 4.1 to 9.8 times across every major therapeutic area, while announcements requiring a regulator, trial or investor to act carry nearly three times the momentum of those that do not.
Yale School of Medicine's Cardiovascular Data Science Lab has developed an AI screening platform that detects transthyretin amyloid cardiomyopathy directly from a photo of a standard ECG, now deployed across 13 health centers and under active FDA review.
A single hybrid promoter developed at KAIST controls gene expression proportionally across both bacterial and yeast hosts, removing the need to redesign regulatory DNA each time a microbial chassis changes.
Researchers at the National University of Singapore have developed a reconfigurable dual-gate transistor that filters irrelevant image data before neural computation, cutting energy consumption by up to 77% with only a 0.3% accuracy loss.
NASA has advanced the PRIMA far-infrared observatory to Phase B development, with Germany's Max Planck Institute for Astronomy contributing optical hardware to close a spectral gap that neither JWST nor ground-based telescopes can observe.
Researchers at the University of Nebraska–Lincoln and Washington University in St. Louis have shown that hafnium oxide remains intrinsically antiferroelectric down to a single-atom monolayer, with the effect growing stronger rather than weaker as the material thins.
Engineers at UC San Diego's Jacobs School of Engineering developed an ultrafast laser beam-shaping technique that switches magnetic states in a 9-layer platinum-cobalt stack without relying on light polarization or an external magnetic field.