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RUKA: Rethinking the Design of Humanoid Hands with Learning

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arxiv 2504.13165 v1 pith:6RT4ZPUD submitted 2025-04-17 cs.RO cs.AI

classification cs.ROcs.AI
keywords rukahandtendon-drivenactuationaddresschallengescompactcontrol
verification ladder T0 review T1 audit T2 compute T3 formal
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Dexterous manipulation is a fundamental capability for robotic systems, yet progress has been limited by hardware trade-offs between precision, compactness, strength, and affordability. Existing control methods impose compromises on hand designs and applications. However, learning-based approaches present opportunities to rethink these trade-offs, particularly to address challenges with tendon-driven actuation and low-cost materials. This work presents RUKA, a tendon-driven humanoid hand that is compact, affordable, and capable. Made from 3D-printed parts and off-the-shelf components, RUKA has 5 fingers with 15 underactuated degrees of freedom enabling diverse human-like grasps. Its tendon-driven actuation allows powerful grasping in a compact, human-sized form factor. To address control challenges, we learn joint-to-actuator and fingertip-to-actuator models from motion-capture data collected by the MANUS glove, leveraging the hand's morphological accuracy. Extensive evaluations demonstrate RUKA's superior reachability, durability, and strength compared to other robotic hands. Teleoperation tasks further showcase RUKA's dexterous movements. The open-source design and assembly instructions of RUKA, code, and data are available at https://ruka-hand.github.io/.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Human Universal Grasping

    cs.RO 2026-06 unverdicted novelty 7.0 of 10

    HUG trains a flow-matching model on a new 1M-frame egocentric human grasp dataset to generate retargetable grasps from single RGB-D images, beating baselines by 23-34% on a new 90-object benchmark.

  2. DexLink Hand: A Compact, Affordable, 16-DOF Linkage-Driven Hand with Human-Like Dexterity

    cs.RO 2026-06 unverdicted novelty 5.0 of 10

    DexLink Hand is a linkage-driven 16-DOF anthropomorphic robotic hand prototype with embedded actuation that achieves maximum Kapandji score and all 33 Feix grasp types in a human-scale, low-cost package.

  3. MM-Hand: A 21-DOF Multi-modal Modular Dexterous Robotic Hand with Remote Actuation

    cs.RO 2026-04 conditional novelty 5.0 of 10

    MM-Hand presents a modular 21-DOF dexterous hand with remote tendon actuation, integrated multimodal sensing, and open-source hardware that achieves 25 N fingertip force over 1 m transmission distance.

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