Laser Proximity Sensors use laser beams to detect the presence or absence of objects within a certain range. They are used in security systems, robotics, automation, and industrial processes, where ...
(Nanowerk Spotlight) High-performance engineering thermoplastics are widely applied in aerospace, automotive, biomedical, and electronics fields. To enhance the safety and extend the service life of ...
With the development of the information era, sensors capable of transmitting and detecting information have become the leading way to obtain information. Therefore, building a sensor system with a ...
Researchers have developed a laser-aligned nanowires that could enable a new generation of transparent electronic materials, ...
The phrase ‘laser-induced damage’ encompasses a range of deleterious effects occurring in imaging sensors when they are exposed to high-intensity laser radiation. Advances in laser technology, ...
The new LD30 PBR IO photoelectric laser sensors with IO-Link were designed to operate in IO-Link environments and in traditional automation systems. They offer four predefined and selectable ...
Banner Engineering has expanded its L-Gage LE family of laser sensors with the new LE250. Optimized for measurements ranging from 100 mm to 400 mm, the LE250 features superior measurement precision ...
Lidar maker Luminar, founded and led by the youngest self-made billionaire tracked by Forbes, said its laser sensors will be standard equipment in Volvo Cars’ new line of electrified vehicles that ...
WASHINGTON – The U.S. Army’s latest solicitation for low-cost, short-wave infrared laser sensors seeks essential capabilities to effectively sense and accurately assess threats across combat ...
A new EU project plans to expand adventures in the cosmos with a suitably space-age technology: lasers. The INPHOMIR initiative is developing the lasers to enhance spacecraft sensors. By emitting tiny ...
LSG is produced by laser irradiation of carbon precursors like graphene oxide or polyimide films. This direct writing approach enables rapid, localized graphene patterning without masks or chemicals.
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