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US Patent 10034717 System and method for breakaway clutching in an articulated arm

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Is a
Patent
Patent

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10034717
Patent Inventor Names
Daniel Miller0
Paul G. Griffiths0
Paul W. Mohr0
Arjang M. Hourtash0
Michael Turner0
Nitish Swarup0
Date of Patent
July 31, 2018
Patent Application Number
15126996
Date Filed
March 17, 2015
Patent Citations Received
‌
US Patent 12115028 Leveraging two-dimensional digital imaging and communication in medicine imagery in three-dimensional extended reality applications
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US Patent 11464581 Pose measurement chaining for extended reality surgical navigation in visible and near infrared spectrums
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US Patent 12064201 System and method for monitoring control points during reactive motion
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US Patent 12064189 Navigated instrument for use in robotic guided surgery
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US Patent 12070276 Surgical object tracking in visible light via fiducial seeding and synthetic image registration
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US Patent 12070286 System and method for ligament balancing with robotic assistance
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US Patent 12076095 Systems and methods for performing minimally invasive spinal surgery with a robotic surgical system using a percutaneous technique
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US Patent 12082886 Robotic surgical systems for preparing holes in bone tissue and methods of their use
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...
Patent Primary Examiner
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Jamie Figueroa
Patent abstract

A system and method of breakaway clutching in a computer-assisted medical device includes an articulated arm having one or more first joints and a control unit coupled to the articulated arm and having one or more processors. The control unit operates each of the first joints in multiple states. The multiple states include a locked state, wherein movement of respective first joints is restricted, and a float state, wherein movement of the respective first joints is permitted. The control unit further switches one or more second joints selected from the first joints from the locked state to the float state when a stimulus on the second joints exceeds one or more unlock thresholds and switches the second joints from the float state to the locked state when a velocity of each of the second joints is below one or more lock thresholds.

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