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US Patent 10993763 Lockout mechanism for use with robotic electrosurgical device

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Is a
Patent
Patent
0

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
0
Patent Number
109937630
Patent Inventor Names
Randolph C. Stewart0
Foster B. Stulen0
Gregory A. Trees0
Jonathan T. Batross0
Chad P. Boudreaux0
Date of Patent
May 4, 2021
0
Patent Application Number
165062460
Date Filed
July 9, 2019
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Patent Citations
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US Patent 10617420 Surgical system comprising drive systems
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US Patent 10820938 Tissue fusion instrument, in particular a tissue fusion forceps
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US Patent 10828058 Modular battery powered handheld surgical instrument with motor control limits based on tissue characterization
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US Patent 10835307 Modular battery powered handheld surgical instrument containing elongated multi-layered shaft
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US Patent 10842523 Modular battery powered handheld surgical instrument and methods therefor
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US Patent 10842563 System and method for power control of electrosurgical resonant inverters
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US Patent 10856896 Ultrasonic device for cutting and coagulating
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US Patent 10856929 Harvesting energy from a surgical generator
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...
Patent Primary Examiner
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Joseph M Dietrich
0
Patent abstract

A surgical tool and control system therefor is provided. The surgical tool can include an instrument mount configured to engage with a robotic manipulator assembly, which can include a gear assembly configured to be actuated by the robotic manipulator assembly. The surgical tool can include an end effector coupled to the gear assembly, which is configured to be actuated by the gear assembly. The surgical tool can include a lockout configured to transition between a first state in which the lockout is physically engaged with the gear assembly to prevent a movement thereof and a second state in which the lockout is disengaged from the gear assembly. The surgical tool can include a control circuit configured to determine whether the end effector is in an energized state or a de-energized state and in the energized state, cause the lockout to transition between the first state and the second state.

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