CARBON COATED ELECTRODE FOR ELECTROSURGERY AND ITS METHOD OF MANUFACTURE
An electrode for use in electrosurgery. The active tip or edge of the electrode carries a non-stick (to tissue) coating of carbon or graphite and a protein material. The coating is at least 10 m thick and supports a high voltage discharge of at least 1000 volts. The coating is formed by dipping the electrode into a mixture of carbon or graphite powder and a liquid binder, then drying the coating.
1 . A method of coating an electrode adapted for electrosurgery, comprising the acts of:
providing a mixture of carbon powder or graphite powder and a binder of a protein material dissolved in a solvent;
applying the mixture to at least a portion of the electrode; and
drying the applied mixture to form a coating of carbon or graphite and the protein material on the electrode, wherein the dried coating is at least 10 μm thick and supports a high voltage discharge of at least 1000 volts.
2 . The method of claim 1 , wherein the mixture is at least 20% carbon or graphite by volume, the binder is at least 25% protein material by volume, and the solvent is saline solution.
3 . The method of claim 1 , wherein the protein material is selected from the group consisting of: albumin, gelatin and collagen.
4 . The method of claim 1 , wherein the drying includes baking at a temperature of at least 200° C.
5 . The method of claim 4 , wherein the drying includes:
drying at a temperature less than or equal to 200° C.; and
subsequently baking at a temperature greater than 200° C.
6 . The method of claim 1 , wherein the mixture is about 30% carbon powder or graphite powder by volume, the binder is about 35% protein material by volume, and the solvent is saline solution.
7 . An electrode made by the method of claim 1 .
8 . An electrode for electrosurgery, comprising:
an electrically conductive substrate adapted for use as an electrosurgery electrode;
an electrically insulative layer on a portion of a surface of the electrode, but not on a tip or edge portion thereof; and
a coating on the tip or edge portion thereof, the coating being at least 10 μm thick and including carbon or graphite and a protein or denatured protein material,
wherein the coating supports a high voltage discharge of at least 1000 volts.
9 . The electrode of claim 8 , wherein the protein material is selected from the group consisting of: albumin, gelatin and collagen.
10 . The electrode of claim 8 , wherein the electrode is one of a ball, tube, screen, suction coagulator or forceps type.