Ceramic heating elements
In one aspect, ceramic resistive heating elements are provided that comprise three or more electrically segregated conductive zones. In another aspect, ceramic heating elements are provided that comprise a plurality of conductive zones, wherein only a portion of the conductive zones pass current during use of the heating element. In a further aspect, heating elements of the invention can be readily modified to operate at a variety of voltages. The multiple conductive zones can provide extended heating element operating lifetimes.
1 . A resistive ceramic heating element comprising at least three electrically segregated conductive zones.
2 . A resistive ceramic heating element comprising a plurality of conductive zones, wherein only a portion of the conductive zones pass current during use of the heating element.
3 . A resistive ceramic heating element comprising a plurality of conductive zones, wherein two or more of the conductive pathways have differing temperature coefficients of resistance.
4 . A heating element of claim 3 wherein one or more of the conductive zones has a PTCR and one or more of the conductive zones has a NTCR.
5 . A heating element of claim 1 , wherein the heating element comprises at least ten electrically segregated conductive zones.
6 . A heating element of claim 1 , wherein the heating element comprises at least one hundred electrically segregated conductive zones.
7 . A heating element of claim 1 , wherein the heating element comprises at least one thousand electrically segregated conductive zones.
8 . A heating element of claim 1 , wherein the heating element comprises one or more conductive zones having a cross-section dimension of about 500 microns or less.
9 . A heating element of claim 1 , wherein up to about 70 percent of the total number pass current during use of the heating element
10 . A heating element of claim 1 , wherein one or more insulator zones are interposed between the conductive zones.
11 . A heating element of claim 1 , wherein the heating element comprises a conductive cap element.
12 . A heating element of claim 1 , wherein the heating element has a substantially circular cross-sectional shape.
13 . A heating element of claim 1 , wherein the heating element has a co-axial design.
14 . A method of igniting fuel, comprising applying an electric current across a heating element of claim 1 .
15 . A method of claim 14 wherein the current has a nominal voltage of 6, 8, 10, 12, 24, 120, 220, 230 or 240 volts.
16 . A glow plug comprising a heating element of claim 1 .
17 . A heating apparatus comprising a heating element of claim 1 .
18 . A method for providing power to a heating element, comprising:
providing a resistive ceramic heating element comprising at least three electrically segregated conductive zones; and
engaging one or more electrical connections with respect to the heating element to provide power to one or more selected conductive zones.
19 . The method of claim 18 wherein the one or more electrical connections are engaged to a selected number of conductive zones whereby the igniter operates at a targeted voltage.
20 . The method of claim 18 wherein the one or more electrical connections are shifted during operational lifetime of the heating element to provide power to one or more alternate conductive zones.