In an age of increasingly advanced robotics, one team has well and truly bucked the trend, instead finding inspiration within the pinhead-sized brain of a tiny flying insect in order to build a robot ...
Grasshopper’s gangly, awkward flight could solve the biggest power problems in robotics. Standard micro-bots are modeled ...
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China’s robotic insect army is coming for the moon

China has successfully developed a moon robot with both limbs and wheels—presumably to be used to extract resources from the ...
One of the most commonly suggested uses for tiny robots is the search for trapped survivors in disaster site rubble. The insect-inspired CLARI robot could be particularly good at doing so, as it can ...
A tiny micro-robotic insect wing hangs off the front of a circuit board. The idea of being a “fly on the wall” in an enemy headquarters has been a goal of intelligence agencies for as long as there ...
Inspired by nature's adaptability, researchers at CU Boulder have developed CLARI, short for Compliant Legged Articulated Robotic Insect, a versatile robot capable of altering its shape to navigate ...
While much insight has been gleaned from how grasshoppers hop, their gliding prowess has mostly been overlooked. Now ...
A little bug-inspired robot created by a team of engineers at the University of Colorado Boulder has the potential to someday aid first responders during disasters. The robot’s name is CLARI, which ...
Different insects flap their wings in different manners. Understanding the variations between these modes of flight may help scientists design better and more efficient flying robots in the future.
Two insect-like robots, a mini-bug and a water strider may be the smallest, lightest and fastest fully functional micro-robots ever known to be created. Such miniature robots could someday be used for ...
A 301 mg soft robot jumps continuously under constant light without batteries or electronics, using snap-through buckling and self-shadowing to create an autonomous feedback loop. (Nanowerk Spotlight) ...
CAMBRIDGE, MA — With a more efficient method for artificial pollination, farmers in the future could grow fruits and vegetables inside multilevel warehouses, boosting yields while mitigating some of ...