English

Handroid: Bridging Dexterous Hand and Humanoid

Robotics 2026-07-17 v1

Abstract

Dexterous hands and humanoid robots are typically developed as distinct embodiments: the former enable contact-rich manipulation at the object scale, whereas the latter provide mobility and whole-body interaction in human-centered environments. We introduce \textbf{Handroid}, a desktop-scale dual-embodiment robot that integrates both capabilities within a single reconfigurable platform. Handroid reuses one 27-DoF electromechanical body as either a dexterous hand or a desktop humanoid, measuring 0.33 m in height and 2.05 kg in weight. In the dexterous hand embodiment, 20 DoFs form an anthropomorphic hand closely matching the kinematic structure of the human hand. In the humanoid embodiment, the same articulated modules are reconfigured into a humanoid with a head, arms, and legs, including a 12-DoF lower-limb structure for locomotion and whole-body motion. Handroid further provides a unified control and learning framework supporting hand teleoperation, dexterous grasping, in-hand manipulation, humanoid locomotion, gait generation, and interactive motion authoring. We validate the platform through real-world dexterous manipulation, reinforcement-learning-based locomotion, keyframe motion deployment, and a long-horizon task involving embodiment reconfiguration, locomotion, docking, and dexterous pick-and-place. These results position Handroid as a compact and reproducible platform for advancing morphology-reconfigurable robotics and cross-embodiment robot learning.

Cite

@article{arxiv.2607.16187,
  title  = {Handroid: Bridging Dexterous Hand and Humanoid},
  author = {Ruogu Li and Chenyang Ma and Sikai Li and Zhenyu Wei and Yunchao Yao and Haochen Shi and C. Karen Liu and Shuran Song and Mingyu Ding},
  journal= {arXiv preprint arXiv:2607.16187},
  year   = {2026}
}

Comments

Project website: https://handroid.org