Onboard
power, sensing, and computation make the commercial hand self-contained. On the
right is the corresponding NVIDIA Isaac Sim model, showing the
stance-calibrated control frame V (colored axes) and the support polygon formed
by the five fingertip contacts. Credit: arXiv (2026). DOI: 10.48550/arxiv.2609.17172
For many of us, the last—and
only—time we've seen a walking hand was Thing in "The Addams Family"
movies or TV series. Now there's another. Engineers from the Soft Robotics Lab
at ETH Zurich have adapted an off-the-shelf detached robotic hand so it can
crawl across different surfaces, balance and interact with its environment.
But this is no sci-fi gimmick.
Fully mobile robotic hands could be useful in hard-to-reach spaces. "A
robotic hand with its own mobility could operate in confined workspaces without
requiring the arm that normally carries it to follow," says the research
team.
Less than handy robotic hands
Until now, robotic hands trying to
walk on their own ran into a major design catch. Previous projects made hands
walk by giving them symmetrical fingers. That made crawling easier, but it
meant moving away from the unequal fingers and opposed thumb of a conventional
human-like robotic hand.
Those differences in finger shape and size help standard robotic hands handle everyday objects. But their uneven lengths make walking without tipping over more difficult because each fingertip has a different reach.
A team led by Amir Kazemi overcame
these limitations by teaching an off-the-shelf, human-like hand with unequal
fingers to balance, crawl and work independently. The team describes how it did
so in a paper posted to the arXiv preprint server.
The team mounted a battery, motion
sensors and a miniature computer on the back of the robotic hand and taught it
to move and balance using reinforcement learning in a computer simulator. Then
they put it to the test.
The hand crawled across 14
different indoor and outdoor surfaces, including carpet, gravel, grass and
metal grating. In 25 tests that started with it lying on either side, it pushed
itself back upright and recovered its stance 21 times.
Putting its fingers to work
The robot performed other tasks,
too. While balancing its weight on four fingers, the hand lifted its remaining
finger to press four different arrow keys. It hit the correct key 29 out of 32
times.
In another test, the hand walked up
to a small block and pushed it across a table, placing it within two
centimeters (0.8 inches) of the target spot during 15 tests.
Looking ahead, the team believes its approach could change how mobile robots work in human environments. "Giving robotic hands their own mobility could make future robots more versatile in the spaces and interfaces built for people."
Source: New robotic hand can walk, press keys and move objects on its own

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