Scaling down an insect-size microrobot, HAMR-VI into HAMR-Jr
March 06, 2020 Β· Declared Dead Β· π IEEE International Conference on Robotics and Automation
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Authors
Kaushik Jayaram, Jennifer Shum, Samantha Castellanos, E. Farrell Helbling, Robert J. Wood
arXiv ID
2003.03337
Category
cs.RO: Robotics
Cross-listed
eess.SY
Citations
50
Venue
IEEE International Conference on Robotics and Automation
Last Checked
5 months ago
Abstract
Here we present HAMR-Jr, a \SI{22.5}{\milli\meter}, \SI{320}{\milli\gram} quadrupedal microrobot. With eight independently actuated degrees of freedom, HAMR-Jr is, to our knowledge, the most mechanically dexterous legged robot at its scale and is capable of high-speed locomotion (\SI{13.91}{bodylengths~\second^{-1}}) at a variety of stride frequencies (\SI{1}{}-\SI{200}{\hertz}) using multiple gaits. We achieved this using a design and fabrication process that is flexible, allowing scaling with minimum changes to our workflow. We further characterized HAMR-Jr's open-loop locomotion and compared it with the larger scale HAMR-VI microrobot to demonstrate the effectiveness of scaling laws in predicting running performance.
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