Claims
- 1. A self regulating heating device for applied voltages in the range of 0.1 volt to 12 volts, comprising:
a first electrode; a second electrode; a first layer of PTC material having a minimum thickness of 0.001 inches interposed between said first electrode and said second electrode; and a second layer of material interposed between said first electrode and said second electrode.
- 2. A self-regulating heating device as in claim 1, wherein:
said second layer is also PTC material.
- 3. A self-regulating heating device as in claim 1, wherein:
said second layer is NTC material.
- 4. A self-regulating heating device as in claim 1, wherein:
said second layer is ZTC material.
- 5. A self-regulating heating device as in claim 4, wherein:
said second layer of material is low resistivity ZTC material having a resistivity lower than 0.05 ohm-cms.
- 6. A self-regulating heating device as in claim 1, wherein:
said first and second layers and said second electrode are concentric with said first electrode.
- 7. A self-regulating heating device as in claim 1, wherein:
said first electrode is a ground wire.
- 8. A self-regulating heating device as in claim 1, wherein:
said second electrode is a ground wire.
- 9. A self-regulating heating device as in claim 1, wherein:
said second electrode is a braided wire.
- 10. A self-regulating heating device as in claim 1, wherein:
said second electrode is a wrapped wire.
- 11. A self-regulating heating device as in claim 1, further comprising:
an insulation layer.
- 12. A self-regulating heating device as in claim 1, further comprising:
a third layer and a third electrode.
- 13. A self-regulating heating device as in claim 1, which is continuously variable in length.
- 14. A self-regulating heating device as in claim 1, which is configured into modules, which are attachable and detachable so that the overall length of the heating device may be varied thereby.
- 15. A self regulating heating device for applied voltages above 240 volts, comprising:
a first electrode; a second electrode; a first layer of PTC material having a minimum thickness of 0.025 inches interposed between said first electrode and said second electrode; and a second layer of material interposed between said first electrode and said second electrode.
- 16. A self-regulating heating device as in claim 15, wherein:
said second layer is also PTC material.
- 17. A self-regulating heating device as in claim 15, wherein:
said second layer is NTC material.
- 18. A self-regulating heating device as in claim 15, wherein:
said second layer is ZTC material.
- 19. A self-regulating heating device as in claim 18, wherein:
said second layer is low resistivity ZTC material having a resistivity lower than 1.5 ohm-cms.
- 20. A self-regulating heating device as in claim 15, wherein:
said first and second layers and said second electrode are concentric with said first electrode.
- 21. A self-regulating heating device as in claim 15, wherein:
said first electrode is a ground wire.
- 22. A self-regulating heating device as in claim 15, wherein:
said second electrode is a ground wire.
- 23. A self-regulating heating device as in claim 15, wherein:
said second electrode is a braided wire.
- 24. A self-regulating heating device as in claim 15, wherein:
said second electrode is a wrapped wire.
- 25. A self-regulating heating device as in claim 15, further comprising:
an insulation layer.
- 26. A self-regulating heating device as in claim 15, further comprising:
a third layer and a third electrode.
- 27. A self-regulating heating device as in claim 15, which is continuously variable in length.
- 28. A self-regulating heating device as in claim 15, which is configured into modules, which are attachable and detachable so that the overall length of the heating device may be varied thereby.
Parent Case Info
[0001] This application is a continuation-in-part of co-pending application Ser. No. 09/720,057, which has the same inventor as the present invention.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09720057 |
Dec 2000 |
US |
Child |
10241710 |
Sep 2002 |
US |