Compliant wrists for impact absorption during manipulation mistakes - underrated?

End effectors, dexterous hands, tendon drives, tactile fingertips, grasp planning, and teleoperation.
jwang
Posts: 189
Joined: Wed Jan 22, 2025 7:28 pm

Compliant wrists for impact absorption during manipulation mistakes - underrated?

Post by jwang »

Figured this was worth its own thread rather than burying it in another one. Imitation learning from human demonstration video (without robot teleoperation data) is an appealing way to scale up training data cheaply, but it runs into the embodiment gap - human hand kinematics and force profiles don't map directly onto a robot hand's very different mechanism. Palm sensing gets less attention than fingertip sensing, but a lot of power grasps (holding a box, a tool handle) rely more on palm and lateral finger contact than fingertip contact, so under-sensing the palm can leave a real blind spot in grasp confidence. Payload-to-hand-weight ratio varies a lot across current dexterous hands, and it's a meaningful tradeoff - more DoF and finer sensing generally means more actuators and mass in the hand itself, which eats into the arm's usable payload budget. Would appreciate any first-hand accounts.
carol.robinson
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Re: Compliant wrists for impact absorption during manipulation mistakes - underrated?

Post by carol.robinson »

@jwang Small correction on one detail: A lot of the manipulation shown in production demos still leans heavily on teleoperation, particularly for anything involving fine force control or novel objects - autonomous grasp success rates on genuinely unstructured, previously-unseen clutter are still well below what teleoperation can achieve.
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nancy_lewi
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Re: Compliant wrists for impact absorption during manipulation mistakes - underrated?

Post by nancy_lewi »

@carol.robinson I'd frame this differently. Compliant wrists that absorb impact during a bad approach or misjudged contact reduce mechanical stress on the whole arm, which matters a lot for long-term reliability even though it's a less visible feature than the hand itself. Grasp planning for deformable or non-rigid objects (bags, cables, cloth) remains one of the genuinely unsolved problems in manipulation - rigid-body grasp models simply don't capture how the object will behave once contact starts.
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mohammed.rossi
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Re: Compliant wrists for impact absorption during manipulation mistakes - underrated?

Post by mohammed.rossi »

Can I ask a dumb follow-up - Object occlusion by the robot's own hand during the final approach to a grasp is a common and annoying perception problem - the closer the hand gets to a good grasp position, the more it blocks the camera's view of exactly what it's about to grab. Figure's fourth-generation Dexterous Hand (on Figure 02/03) reportedly offers 16 degrees of freedom per hand with sensors integrated into each finger, aimed at fine force control tasks like handling small electronic components without crushing them.
emilyperez
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Re: Compliant wrists for impact absorption during manipulation mistakes - underrated?

Post by emilyperez »

This matches what I've seen too. Bimanual manipulation - two arms coordinating on one task - is harder than it looks mostly because of the added degrees of freedom and the timing/force coordination required; a lot of 'two-handed' demos are actually closer to two independent single-hand tasks done in sequence. Underactuated hands (fewer actuators than joints, using mechanical coupling to shape the grasp) are a reasonable engineering compromise for robust power grasps on a budget, but they generally can't do fine in-hand manipulation the way a fully actuated hand can.
charlesbianchi
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Re: Compliant wrists for impact absorption during manipulation mistakes - underrated?

Post by charlesbianchi »

Minor factual note: Tendon-driven fingers let you move the heavier actuators back into the palm or forearm, keeping the fingers themselves light and fast, but they introduce cable routing, tensioning, and long-term wear problems that direct-actuated fingers don't have.
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ssantos
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Re: Compliant wrists for impact absorption during manipulation mistakes - underrated?

Post by ssantos »

Pretty much this. One thing to add: Cable routing through a wrist joint with multiple degrees of freedom is a genuinely tricky mechanical design problem - tendons and wiring both need enough slack to avoid binding through the full range of motion without tangling or fraying over thousands of cycles. Vision-based grasp confidence estimation (predicting success before attempting a grasp) and tactile-based confirmation (confirming after contact) are complementary rather than competing - vision helps you choose a grasp, tactile tells you if it actually worked. Reminds me a bit of the early drone hobbyist scene, honestly.
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ivan22
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Re: Compliant wrists for impact absorption during manipulation mistakes - underrated?

Post by ivan22 »

@ssantos Just to be precise about one thing: In-hand reorientation (repositioning a grasped object without setting it down) is one of the more advanced manipulation skills, requiring either a highly dexterous hand with enough DoF or clever use of gravity and controlled slipping - it's an active research area rather than a solved problem.
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olga_lind
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Re: Compliant wrists for impact absorption during manipulation mistakes - underrated?

Post by olga_lind »

That's the official framing, at least - reality tends to lag a bit. Wet, oily, or otherwise low-friction objects are still a genuine edge case for most current hands, since tactile sensing and grasp-force controllers are typically tuned and validated on dry, higher-friction test objects. This whole thread is a good reminder how young this field still is.
karen_kim
Posts: 116
Joined: Wed Jun 25, 2025 11:18 pm

Re: Compliant wrists for impact absorption during manipulation mistakes - underrated?

Post by karen_kim »

This matches something I went through recently. A lot of the manipulation shown in production demos still leans heavily on teleoperation, particularly for anything involving fine force control or novel objects - autonomous grasp success rates on genuinely unstructured, previously-unseen clutter are still well below what teleoperation can achieve. Figure's fourth-generation Dexterous Hand (on Figure 02/03) reportedly offers 16 degrees of freedom per hand with sensors integrated into each finger, aimed at fine force control tasks like handling small electronic components without crushing them.
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