Method of constructing a jaw member for an end effector assembly
First Claim
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1. A method of constructing a jaw member for an end effector assembly, the method comprising:
- creating a sealing plate by forming a stainless steel layer into the sealing plate;
applying a first mask to the stainless steel layer, wherein the first mask exposes a portion of the stainless steel layer;
etching the exposed portion of stainless steel layer to create at least one hole in the stainless steel layer and removing the mask;
creating an insulative plate by;
providing a plastic substrate;
adhering a conductive layer to the plastic substrate;
applying a second mask to the conductive layer, wherein the second mask exposes a portion of the conductive layer to outline at least one circuit trace and at least one contact; and
etching the exposed portion of the conductive layer and removing the mask;
providing a support base;
attaching the insulative plate to the support base;
attaching the sealing plate on top of the insulative plate so that the at least one hole of the sealing plate overlaps the at least one contact of the insulative plate; and
coupling a piezoelectric sensor to the at least one contact of the insulative plate.
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Abstract
An end effector assembly for use with an electrosurgical instrument is provided. The end effector assembly has a pair of opposing jaw members. One or more of the jaw members includes a support base, an electrical jaw lead, and a sealing plate coupled to the electrical jaw lead. The sealing plate has a stainless steel layer and one or more piezoelectric sensors. The jaw member also includes an insulative plate disposed between the support base and the sealing plate.
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Citations
3 Claims
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1. A method of constructing a jaw member for an end effector assembly, the method comprising:
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creating a sealing plate by forming a stainless steel layer into the sealing plate; applying a first mask to the stainless steel layer, wherein the first mask exposes a portion of the stainless steel layer; etching the exposed portion of stainless steel layer to create at least one hole in the stainless steel layer and removing the mask; creating an insulative plate by; providing a plastic substrate; adhering a conductive layer to the plastic substrate; applying a second mask to the conductive layer, wherein the second mask exposes a portion of the conductive layer to outline at least one circuit trace and at least one contact; and etching the exposed portion of the conductive layer and removing the mask; providing a support base; attaching the insulative plate to the support base; attaching the sealing plate on top of the insulative plate so that the at least one hole of the sealing plate overlaps the at least one contact of the insulative plate; and coupling a piezoelectric sensor to the at least one contact of the insulative plate. - View Dependent Claims (2, 3)
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Specification