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 Active metal metallization of mini-igniters by silk screening

Details
Inventors: Axelson, Scott R.;
Assignee: Saint-Gobain/Norton Industrial Ceramics Corporation (Worcester, MA)
Primary Examiner: Ramsey; Kenneth J.
Assistant Examiner:
Attorney, Agent or Firm: DiMauro; Thomas M.

A ceramic igniter comprising: a) a lead wire, b) a ceramic substrate, and c) a braze pad having a thickness of less than about 150 microns, wherein the lead wire and ceramic substrate are placed in electrical connection by the braze pad.

DETAILED DESCRIPTION What is claimed is: 1.
A method of making an improved ceramic igniter comprising an electrically conductive ceramic substrate, comprising the steps of: a) silk screening a braze material onto the electrically conductive ceramic substrate to produce a braze pad having an exposed surface area of less than about 3.
6 square millimeters, and b) soldering an electrical lead to said braze pad by means of a solder which melts at a temperature of at least about 500.
degree.
C.
2.
The method of claim 1 wherein the braze material comprises an active metal selected from the group consisting of titanium, zirconium, niobium, nickel, palladium, and gold.
3.
The method of claim 2 wherein the braze material further comprises at least one filler metal selected from the group consisting of silver, copper, indium, tin, zinc, lead, cadmium, and phosphorous.
4.
The method of claim 1 wherein the braze material comprises titanium, copper, and silver.
5.
The method of claim 1 wherein the silk screening produces a braze pad having a thickness of less than about 150 microns.
6.
The method of claim 5 wherein the silk screening produces a braze pad having an exposed surface area of less than about 2.
2 square millimeters.
7.
The method of claim 5 wherein the ceramic substrate comprises first and second conductive ends and a highly resistive middle portion, the conductive ends comprising between 30 volume percent and 55 volume percent nitride ceramic, and the braze material is silk screened onto on each conductive end of the ceramic substrate to produce two braze pads, each braze pad comprising between about 95 weight percent and about 99.
5 weight percent of at least one filler metal selected from the group consisting of silver, copper, indium, tin, zinc, lead, cadmium and phosphorous.
8.
The igniter of claim 7 wherein the conductive ends further comprise between about 45 volume percent and 70 volume percent molybdenum disilicide and silicon carbide.
9.
The igniter of claim 8 wherein each braze pad further comprises between about 0



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