Claims
- 1. An electronic package, comprising:
a circuitized substrate having an upper surface; a semiconductor chip mounted on said upper surface of said circuitized substrate and electrically and mechanically coupled to said substrate, said semiconductor chip having a substantially planar upper surface and at least one edge surface being substantially perpendicular to said substantially planar upper surface; a thermally conductive member constituted of a mesh-like material and having upper and lower surfaces at least, said lower surface of said thermally conductive member being thermally coupled to said substantially planar upper surface of said semiconductor chip, said thermally conductive member further having at least one edge surface extending around a defined perimeter of said thermally conductive member; and dielectric material being imparted to at least an areal portion of said circuitized substrate, against at least a portion of said at least one edge surface of said thermally conductive member, against a portion of said upper surface of said mesh-like thermally conductive members and against at least a portion of said at least one edge surface of said semiconductor chip.
- 2. An electronic package as claimed in claim 1, wherein said dielectric material comprises a paste-like structural composition.
- 3. An electronic package as claimed in claim 1, wherein said dielectric material comprises an essentially rigid material composition.
- 4. An electronic package as claimed in claim 1, wherein said thermally conductive member comprises a metallic woven mesh.
- 5. An electronic package as claimed in claim 4 wherein said metallic woven mesh consists of steel.
- 6. An electronic package as claimed in claim 1, wherein said dielectric material is at least partially filled into interstitial spaces present in said mesh-like material so as to form a rigid composite therewith and enhance the mechanical interlocking between said thermally conductive member and said semiconductor chip.
- 7. An electronic package as claimed in claim 6, wherein said dielectric material completely fills the interspaces of said mesh-like materials.
- 8. An electronic package as claimed in claim 6, wherein said mesh-like material is completely embedded within said dielectric material.
- 9. An electronic package as claimed in claim 6, wherein said dielectric material comprises a bonding adhesive.
- 10. An electronic package as claimed in claim 9, wherein said bonding adhesive comprises an epoxy adhesive.
- 11. An electronic package as claimed in claim 1, wherein said thermally conductive member extends beyond the peripheral confines of said semiconductor chip.
- 12. An electronic package as claimed in claim 6, wherein said thermally conductive member is a planar structure of substantially uniform thickness.
- 13. An electronic package as claimed in claim 1, wherein said thermally conductive member is a laminate of a plurality of woven mesh layers.
- 14. An electronic package as claimed in claim 13, wherein said laminate layers are of differing areal dimensions so as to form a thermally conductive member of nonuniform thickness which reduces towards the peripheral edges thereof.
- 15. An electronic package as claimed in claim 1, wherein said thermally conductive member is constituted of a non-metallic woven mesh material.
- 16. An electronic package as claimed in claim 15, wherein said non-metallic woven mesh material comprises high modulus fibrous constituents.
- 17. An electronic package as claimed in claim 16, wherein said fibrous constituents comprise carbon or boron fibers.
- 18. An electronic package as claimed in claim 15, wherein said non-metallic woven mesh material comprises a glass-cloth.
- 19. An electronic package as claimed in claim 18, wherein said glass-cloth is imparted a Leno or Satin weave.
- 20. An electronic package as claimed in claim 16, wherein said fibrous constituents comprise oriented fibers embedded in an epoxy matrix.
- 21. A method of producing an electronic package, comprising:
providing a circuitized substrate having an upper surface; mounting a semiconductor chip on said upper surface of said circuitized substrate so as to be electrically and mechanically coupled to said substrate, said semiconductor chip having a substantially planar upper surface and at least one edge surface being substantially perpendicular to said substantially planar upper surface; providing a thermally conductive member constituted of a mesh-like material and having upper and lower surfaces, said lower surface of said thermally conductive member being thermally coupled to said substantially planar upper surface of said semiconductor chip, said thermally conductive member further having at least one edge surface extending around a defined perimeter of said thermally conductive member; and imparting a dielectric material to at least an areal portion of said circuitized substrate, against at least a portion of said at least one edge surface of said thermally conductive member, against a portion of said upper surface of said mesh-like thermally conductive member and against at least a portion of said at least one edge surface of said semiconductor chip.
- 22. A method as claimed in claim 21, wherein said dielectric material comprises a paste-like structural composition.
- 23. A method as claimed in claim 21, wherein said dielectric material comprises an essentially rigid material composition.
- 24. A method as claimed in claim 21, wherein said thermally conductive member comprises a metallic woven mesh.
- 25. A method as claimed in claim 24, wherein said metallic woven mesh consists of steel.
- 26. A method as claimed in claim 21, wherein said dielectric material is at least partially filled into interstitial spaces present in said mesh-like material so as to form a rigid composite therewith and enhance the mechanical interlocking between said thermally conductive member and said semiconductor chip.
- 27. A method as claimed in claim 26, wherein said dielectric material completely fills the interspaces of said mesh-like material.
- 28. A method as claimed in claim 26, wherein said dielectric material is applied as a rigid composition.
- 29. A method as claimed in claim 26, wherein said dielectric material comprises a bonding adhesive.
- 30. A method as claimed in claim 29, wherein said bonding adhesive comprises an epoxy adhesive.
- 31. A method as claimed in claim 21, wherein said thermally conductive member extends beyond the peripheral configures of said semiconductor chip.
- 32. A method as claimed in claim 21, wherein said thermally conductive member is a plate structure of substantially uniform thickness.
- 33. A method as claimed in claim 21, wherein said thermally conductive member is a laminate of a plurality of woven mesh layers.
- 34. A method as claimed in claim 33, wherein said laminate layers are of differing areal dimensions so as to form a thermally conductive member of non-uniform thickness which reduces towards the peripheral edges thereof.
- 35. A methods as claimed in claim 21, wherein said thermally conductive member is constituted of a non-metallic woven mesh material.
- 36. A method as claimed in claim 35, wherein said non-metallic woven mesh material comprises high modulus fibrous constituents.
- 37. A method as claimed in claim 36, wherein said fibrous constituents comprise carbon or boron fibers.
- 38. A method as claimed in claim 35, wherein said non-metallic woven mesh material comprises a glass-cloth.
- 39. A method as claimed in claim 38, wherein said glass-cloth is imparted a Leno or Satin weave.
- 40. A method as claimed in claim 36, wherein said fibrous constituents comprise oriented fibers embedded in an epoxy matrix.
Parent Case Info
[0001] This is a divisional application of U.S. patent application Ser. No. 09/797,078; filed on Mar. 1, 2001.
Divisions (1)
|
Number |
Date |
Country |
| Parent |
09797078 |
Mar 2001 |
US |
| Child |
10285023 |
Oct 2002 |
US |