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US Patent 10080609 Electrosurgical apparatus

Patent 10080609 was granted and assigned to Creo Medical Limited on September, 2018 by the United States Patent and Trademark Office.

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Patent
Patent

Patent attributes

Patent Applicant
Creo Medical Limited
Creo Medical Limited
Current Assignee
Creo Medical Limited
Creo Medical Limited
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10080609
Date of Patent
September 25, 2018
Patent Application Number
14431684
Date Filed
September 16, 2013
Patent Citations Received
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US Patent 11768161 Analog signal isolator
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US Patent 11058448 Modular battery powered handheld surgical instrument with multistage generator circuits
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US Patent 11058475 Method and apparatus for selecting operations of a surgical instrument based on user intention
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US Patent 11266430 End effector control and calibration
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US Patent 11229450 Modular battery powered handheld surgical instrument with motor drive
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US Patent 11229471 Modular battery powered handheld surgical instrument with selective application of energy based on tissue characterization
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US Patent 11229472 Modular battery powered handheld surgical instrument with multiple magnetic position sensors
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US Patent 10349999 Controlling impedance rise in electrosurgical medical devices
...
Patent Primary Examiner
‌
Daniel Fowler
Patent abstract

An electrosurgical apparatus having a feed structure comprising a radiofrequency (RF) channel for conveying RF electromagnetic (EM) radiation from an RF signal generator to a probe and a microwave channel for conveying microwave EM radiation from a microwave signal generator to the probe, wherein the RF channel and microwave channel comprise physically separate signal pathways, wherein the feed structure includes a combining circuit having an input connected to the signal pathway on the RF channel, another input connected to the signal pathway on the microwave channel, and an output connected to a common signal pathway for conveying the RE EM radiation and EM radiation separately or simultaneously to the probe, and wherein the microwave channel includes a waveguide isolator connected to isolate the signal pathway on the microwave channel from the RF EM radiation.

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