The patent badge is an abbreviated version of the USPTO patent document. The patent badge does contain a link to the full patent document.

The patent badge is an abbreviated version of the USPTO patent document. The patent badge covers the following: Patent number, Date patent was issued, Date patent was filed, Title of the patent, Applicant, Inventor, Assignee, Attorney firm, Primary examiner, Assistant examiner, CPCs, and Abstract. The patent badge does contain a link to the full patent document (in Adobe Acrobat format, aka pdf). To download or print any patent click here.

Date of Patent:
Jul. 23, 2024

Filed:

Sep. 05, 2019
Applicant:

Cilag Gmbh International, Zug, CH;

Inventors:

Joshua Henderson, Montgomery, OH (US);

Joshua P. Morgan, Loveland, OH (US);

Andrew W. Carroll, Cincinnati, OH (US);

Jeffrey L. Aldridge, Lebanon, OH (US);

Eitan T. Wiener, Loveland, OH (US);

James M. Vachon, West Chester, OH (US);

Assignee:
Attorney:
Primary Examiner:
Assistant Examiner:
Int. Cl.
CPC ...
A61B 17/32 (2006.01); A61B 17/072 (2006.01); A61B 18/00 (2006.01); A61B 18/12 (2006.01); A61B 18/14 (2006.01); A61B 18/16 (2006.01); A61B 34/00 (2016.01); A61B 34/20 (2016.01); A61B 34/35 (2016.01); A61B 90/00 (2016.01); A61B 90/90 (2016.01); G06F 8/65 (2018.01); G16H 20/40 (2018.01); H01R 43/26 (2006.01); H04B 5/72 (2024.01); H04L 9/40 (2022.01); H04L 49/25 (2022.01); H04L 67/10 (2022.01); H04L 67/12 (2022.01); H04M 1/72406 (2021.01); H05K 5/00 (2006.01); A61B 17/00 (2006.01); A61B 34/30 (2016.01); A61B 34/37 (2016.01); A61B 90/30 (2016.01); H04L 27/04 (2006.01); H05K 7/02 (2006.01);
U.S. Cl.
CPC ...
A61B 18/00 (2013.01); A61B 17/072 (2013.01); A61B 17/320068 (2013.01); A61B 17/320092 (2013.01); A61B 18/1206 (2013.01); A61B 18/1233 (2013.01); A61B 18/1445 (2013.01); A61B 18/16 (2013.01); A61B 34/20 (2016.02); A61B 34/25 (2016.02); A61B 34/35 (2016.02); A61B 34/74 (2016.02); A61B 90/361 (2016.02); A61B 90/90 (2016.02); G06F 8/65 (2013.01); G16H 20/40 (2018.01); H01R 43/26 (2013.01); H04B 5/72 (2024.01); H04L 49/25 (2013.01); H04L 63/0245 (2013.01); H04L 67/10 (2013.01); H04L 67/12 (2013.01); H04M 1/72406 (2021.01); H05K 5/0021 (2013.01); A61B 2017/00026 (2013.01); A61B 2017/00199 (2013.01); A61B 2017/00221 (2013.01); A61B 2017/00225 (2013.01); A61B 2017/00398 (2013.01); A61B 2017/00477 (2013.01); A61B 2017/00526 (2013.01); A61B 2017/00973 (2013.01); A61B 2017/07257 (2013.01); A61B 2017/07271 (2013.01); A61B 2017/07285 (2013.01); A61B 2017/320074 (2017.08); A61B 2018/00178 (2013.01); A61B 2018/00208 (2013.01); A61B 2018/00601 (2013.01); A61B 2018/0063 (2013.01); A61B 2018/00642 (2013.01); A61B 2018/00702 (2013.01); A61B 2018/00708 (2013.01); A61B 2018/0072 (2013.01); A61B 2018/00732 (2013.01); A61B 2018/00767 (2013.01); A61B 2018/00845 (2013.01); A61B 2018/00875 (2013.01); A61B 2018/00916 (2013.01); A61B 2018/0094 (2013.01); A61B 2018/00958 (2013.01); A61B 2018/00994 (2013.01); A61B 2018/1253 (2013.01); A61B 2018/126 (2013.01); A61B 2018/1273 (2013.01); A61B 2018/128 (2013.01); A61B 2018/1286 (2013.01); A61B 2018/165 (2013.01); A61B 2034/2048 (2016.02); A61B 2034/2055 (2016.02); A61B 2034/305 (2016.02); A61B 34/37 (2016.02); A61B 90/30 (2016.02); A61B 90/37 (2016.02); A61B 2090/371 (2016.02); A61B 2090/378 (2016.02); A61B 2218/002 (2013.01); A61B 2218/007 (2013.01); A61B 2218/008 (2013.01); A61B 2560/0443 (2013.01); A61B 2560/0456 (2013.01); H01R 2201/12 (2013.01); H04L 27/04 (2013.01); H05K 5/0026 (2013.01); H05K 5/0065 (2013.01); H05K 7/023 (2013.01);
Abstract

A method for controlling an output of an energy module of a modular energy system is disclosed. The modular energy system includes a header module, the energy module, and a secondary module communicably coupled together. The energy module configured to provide an output driving an energy modality deliverable by a surgical instrument connected thereto. The method includes causing the energy module to provide the output driving the energy modality delivered by the surgical instrument; sensing a parameter associated with the secondary module; receiving the parameter as sensed by the secondary module at the energy module; and adjusting the output of the energy module from a first state to a second state according to the received parameter.


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