Claims
- 1. An insulated electrical component comprising:
a. an electrical device having a portion having a relatively thin cross-section, said portion being susceptible to distortion or dislocation by a viscous flow of a liquid or semi-liquid polymeric composition during an encapsulation of said electrical device by said polymeric composition; b. a porous, fibrous support layer disposed with said electrical device; and c. a polymeric layer comprising said polymeric composition substantially encapsulating said fibrous support layer and said electrical device whereby said fibrous support layer provides structural support to said relatively thin cross-section of said electrical device when said polymeric composition is caused to flow through said porous, fibrous support layer and around said electrical device during said encapsulation.
- 2. The heating element of claim 1 wherein said portion of said electrical device comprises an electrical resistance heating wire disposed in a looped circuit path.
- 3. The electrical component of claim 2 wherein said fibrous support layer comprises an open pore glass mat joined to said electrical resistance heating wire.
- 4. The electrical component of claim 3 wherein said open pore glass mat comprises an air permeability rating of at least about 500 ft3/min.
- 5. The electrical component of claim 1 wherein said fibrous support layer is joined to said electrical device prior to encapsulation.
- 6. The electrical component of claim I wherein said electrical device comprises one or more of: an integrated circuit component, an electrical conductor path, a power source or resistance wire.
- 7. The electrical component of claim I wherein said polymeric layer is disposed through said fibrous support layer and in contact with said electrical device, without substantially displacing said electrical device relative to said fibrous support layer.
- 8. The electrical component of claim 6 wherein said electrical device and said polymeric layer are molded into a unified, hermetic structure.
- 9. The electrical component of claim 1 wherein said fibrous support layer comprises a glass mat having cut glass fibers joined together with a resinous adhesive, and having an air permeability rating of at least about 1000 ft3/min.
- 10. The electrical component of claim I wherein said electrical device comprises an electrical resistance heating wire, said electrical component further comprising a thermostat or thermistor adapted to regulate current through said electrical resistance heating wire upon reaching a preselected temperature limit.
- 11. A resistance heating element comprising:
a. an electrical resistance heating wire disposed in a circuit path, said wire being susceptible to distortion or dislocation by a viscous flow of a liquid or semi-liquid polymeric composition, said wire having a pair of terminal end portions; b. a pair of electrical conductors fixed to said terminal end portions of said wire; c. a fibrous layer disposed with said wire; and d. a high temperature polymeric layer substantially encapsulating said circuit path and said fibrous layer, whereby said fibrous layer assists in supporting said circuit path to minimize distortion of said wire during said encapsulation.
- 12. The resistance heating element of claim 11 having a power rating of about 5-10,000 W.
- 13. The heating element of claim 12 wherein said polymeric layer comprises a non-electrically conductive, thermally-conductive additive.
- 14. The heating element of claim 11 wherein said fibrous layer is joined to said electrical resistance heating wire before encapsulation.
- 15. The heating element of claim 14 wherein said electrical resistance heating member comprises a Ni—Cr wire having a thin cross-section which is capable of being dislocated by the encapsulation with said polymeric layer, when said fibrous layer is not used.
- 16. The heating element of claim 11 wherein said polymeric layer comprises an epoxy resin bonded to said fibrous layer and electrical resistance heating member.
- 17. The heating element of claim 16 wherein said fibrous layer comprises a chopped glass mat joined to said electrical resistance heating member.
- 18. A method of making an insulated, electrical component, comprising:
providing an electrical device having a relatively thin cross-section, which is susceptible to distortion during encapsulation by a liquid or semi-liquid polymeric composition; adhering said electrical device onto a fibrous support layer; and encapsulating said fibrous support layer and said electrical device within a polymer layer comprising said polymeric composition, whereby said fibrous support layer provides structural support to said relatively thin cross-section of said electrical device to minimize distortion or dislocation during said encapsulation.
- 19. The method of claim 18, wherein said encapsulation step comprises molding said polymeric composition over said fibrous support layer and said electrical device to form a hermetic coating.
- 20. The method of claim 18, wherein said fibrous support layer comprises a non-woven or woven glass mat, having an air permeability rating of at least about 1,000 cubic feet per minute.
- 21. The method of claim 19, wherein said electrical device comprises a Ni—Cr resistance heating wire, and said polymer layer comprises a thermosetting resin.
- 22. The method of claim 21, wherein said thermosetting resin comprises an non-electrical conducting, thermally conducting additive.
- 23. The method of claim 19, wherein said electrical device and said fibrous support layer are subject to heat or pressure or both during said encapsulation, whereby said polymeric composition wets the surfaces of said fibrous support layer and said electrical device.
- 24. The method of claim 18, in which said insulated electrical component has a flexural modulus at least 50% greater than the flexural modulus of said polymer layer, without said fibrous support layer.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application is a continuation of U.S. application Ser. No. 09/309,429, filed May 11, 1999.
Continuations (1)
|
Number |
Date |
Country |
| Parent |
09309429 |
May 1999 |
US |
| Child |
09840513 |
Apr 2001 |
US |