Abstract
Soft robotic manipulators are generally slow despite their great adaptability, resilience, and compliance. This limitation also extends to current soft robotic micromanipulators. Here, we introduce FilMBot, a 3-DOF film-based, electromagnetically actuated, soft kinematic robotic micromanipulator achieving speeds up to 2117 °/s and 2456 °/s in α and β angular motions, with corresponding linear velocities of 1.61 m/s and 1.92 m/s using a 4-cm needle end-effector, 0.54 m/s along the Z axis, and 1.57 m/s during Z-axis morph switching. The robot can reach ∼1.50 m/s in path-following tasks, with an operational bandwidth below ∼30 Hz, and remains responsive at 50 Hz. It demonstrates high precision (∼6.3 μm, or ∼0.05% of its workspace) in path-following tasks, with precision remaining largely stable across frequencies. The novel combination of the low-stiffness soft kinematic film structure and strong electromagnetic actuation in FilMBot opens new avenues for soft robotics. Furthermore, its simple construction and inexpensive, readily accessible components could broaden the application of micromanipulators beyond current academic and professional users.
| Original language | English |
|---|---|
| Pages (from-to) | 1145-1157 |
| Number of pages | 13 |
| Journal | IEEE Transactions on Robotics |
| Volume | 42 |
| DOIs | |
| Publication status | Published - 2026 |
| MoE publication type | A1 Journal article-refereed |
Funding
This work was supported by the Academy of Finland grant 355769 and Research Council of Finland grant 362715. (Corresponding author: Quan Zhou.) Jiangkun Yu, Houari Bettahar, and Quan Zhou are with the Department of Electrical Engineering and Automation, Aalto University, 02150 Espoo, Academy of Finland 355769, 331149, Research Council of Finland 362715
Keywords
- Micromanipulators
- parallel robots
- soft robotics
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