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Plastic Additive Enhances Stretchable OLEDs

A common plastic additive can simultaneously improve the brightness and stretchability of OLED materials, offering a simple route to durable wearable displays and soft...

Thin-Film Modules Dock Without Connectors

What if flexible electronics could assemble themselves? A thin-film design demonstrates modules that can connect, disconnect and work together autonomously. Kyushu University researchers have developed...

Self-Healing Electronic Skin Repairs Itself Underwater

Researchers made an electronic skin that feels touch, detects damage, repairs itself underwater, and works without batteries for robots, diving gear and wearable devices. Researchers...

Physical AI Gains Unified Intelligence 

Can robots learn to reason, recover and act more naturally? An embodied AI platform aims to bridge that gap with unified intelligence.  ACE ROBOTICS has...

Can Brain Signals Drive Robotic Actions

Could brain waves replace joysticks and controllers? A platform demonstrates how thoughts alone may soon direct intelligent robotic systems. BrainCo has unveiled what it claims...

Your Next Health Tracker Could Be a Piece of String

Electronic threads can be sewn into clothes or stitches to track breathing, blinking, movement, and wound healing without using a smartwatch or fitness band. Researchers...

Radar Module for Camera-Free Monitoring

A radar module detects people and pets without cameras. It helps build home and IoT monitoring devices without antenna design expertise. Asahi Kasei Microdevices (AKM)...

A Chip That Learns on Its Own at the Edge

An edge AI chip supports different systems and is designed for industrial, automotive, aerospace, defense, and wearable applications. BrainChip has announced the commercial availability and...

Edge AI sensor reference design

An edge AI sensor platform combines motion, sound, light, and environmental sensors with on-device AI to process data without cloud connectivity. The TIDA-010997 Edge AI...

Brain-Inspired Chip Enables Faster Low-Power Anomaly Detection For Artificial Intelligence

Researchers developed a brain-inspired memtransistor that detects unusual events faster while consuming far less energy, paving the way for efficient always-on artificial intelligence systems. Northwestern...