Showing posts with label miniaturized robots. Show all posts
Showing posts with label miniaturized robots. Show all posts

Thursday, September 15, 2011

Tiny Robot To Attempt The Hawaii Ironman Triathlon

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Tiny Robot To Attempt Hawaii Ironman Triathlon -- MSNBC/Reuters

'Evolta', just 20 inches tall, is expected to complete course in about a week

TOKYO — After scaling the cliff walls of the Grand Canyon and driving the Le Mans racetrack for 24 hours, a tiny Japanese robot is set for a new challenge — Hawaii's grueling Ironman triathlon course.

Fitted with three different bodies, the hand-sized "Evolta" from electronics firm Panasonic will swim, bicycle and run its way through one of the world's toughest triathlon routes, the company said Thursday.

"This is very tough even for a sportsman, but I think it is worth a challenge," said Tomotaka Takahashi, who created the green-and-white toy-like robot.

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Wednesday, July 8, 2009

Robo-bats With Metal Muscles May Be Next Generation Of Remote Control Flyers

The skeleton of the robotic bat uses shape-memory metal alloy that is super-elastic for the joints, and smart materials that respond to electric current for the muscular system. (Credit: Gheorghe Bunget, North Carolina State University)

From Science Daily:

ScienceDaily (July 8, 2009) — Tiny flying machines can be used for everything from indoor surveillance to exploring collapsed buildings, but simply making smaller versions of planes and helicopters doesn't work very well. Instead, researchers at North Carolina State University are mimicking nature's small flyers – and developing robotic bats that offer increased maneuverability and performance.

Small flyers, or micro-aerial vehicles (MAVs), have garnered a great deal of interest due to their potential applications where maneuverability in tight spaces is necessary, says researcher Gheorghe Bunget. For example, Bunget says, "due to the availability of small sensors, MAVs can be used for detection missions of biological, chemical and nuclear agents." But, due to their size, devices using a traditional fixed-wing or rotary-wing design have low maneuverability and aerodynamic efficiency.

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