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Kafe 바로가기국가/구분 | United States(US) Patent 등록 |
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국제특허분류(IPC7판) |
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출원번호 | US-0048679 (2011-03-15) |
등록번호 | US-8197633 (2012-06-12) |
발명자 / 주소 |
|
출원인 / 주소 |
|
인용정보 | 피인용 횟수 : 14 인용 특허 : 908 |
A method of manufacturing a jaw member of an end effector assembly for use with an electrosurgical instrument is disclosed that includes the steps of providing an electrically conductive tissue engaging plate and a jaw support; covering one side of the electrically conductive tissue engaging plate w
A method of manufacturing a jaw member of an end effector assembly for use with an electrosurgical instrument is disclosed that includes the steps of providing an electrically conductive tissue engaging plate and a jaw support; covering one side of the electrically conductive tissue engaging plate with an electrically insulative, thermally non-degrading coating; placing and securing the electrically conductive tissue engaging plate and the jaw support into a jaw mold; and introducing a liquid substance into the jaw mold and allowing the liquid substance to cure around the electrically conductive tissue engaging plate and the jaw support. Alternatively, the method includes the steps of: providing an electrically conductive tissue engaging plate and a jaw support; covering one side of the electrically conductive tissue engaging plate with an electrically insulative, thermally non-degrading coating; and securing the side of the electrically conductive tissue engaging plate onto the jaw support with an adhesive.
1. A method for manufacturing a jaw member of an end effector assembly for use with an electrosurgical instrument, the method comprising the steps of: providing an electrically conductive tissue engaging plate, said electrically conductive tissue engaging plate having vertically-extending edges exte
1. A method for manufacturing a jaw member of an end effector assembly for use with an electrosurgical instrument, the method comprising the steps of: providing an electrically conductive tissue engaging plate, said electrically conductive tissue engaging plate having vertically-extending edges extending about a periphery and along a length thereof of said electrically conductive plate, and a jaw support;covering one side of the electrically conductive tissue engaging plate and said vertically-extending edges with an electrically insulative, thermally non-degrading coating; andsecuring the electrically insulative, thermally non-degrading coating covering the one side and said vertically-extending edges of the electrically conductive tissue engaging plate onto the jaw support with an adhesive. 2. A method according to claim 1 wherein the step of covering includes covering the one side of the electrically conductive tissue engaging plate and said vertically-extending edges with an electrically insulative, thermally non-degrading coating with one of flame sprayed ceramic, vapor deposition polymer, an oxide layer, and an anodized coating. 3. A method according to claim 1 wherein the step of securing includes securing the electrically insulative, thermally non-degrading coating covering the one side and said vertically-extending edges of the electrically conductive tissue engaging plate onto the jaw support with an adhesive that includes polyurethane. 4. A method according to claim 1 wherein the step of covering includes covering one side of the electrically conductive tissue engaging plate and said vertically-extending edges with an electrically insulative, thermally non-degrading coating of uniform thickness across the electrically conductive tissue engaging plate. 5. A method according to claim 1 wherein the step of covering includes covering one side of the electrically conductive tissue engaging plate and said vertically-extending edges with an electrically insulative, thermally non-degrading coating that includes a thickness that provides a gap-set between the electrically conductive tissue engaging plate and the jaw support during the securing step.
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