Claims
- 1. A low resistance fuse comprising:
a fuse element layer; and first and second intermediate insulation layers extending on opposite sides of said fuse element layer and coupled thereto, said fuse element layer formed on said first intermediate insulation layer and said second insulation layer laminated to said fuse element layer.
- 2. A low resistance fuse in accordance with claim 1 wherein said fuse element layer comprises a fusible link, at least one of said first and second intermediate layers comprises an opening overlying said fusible link.
- 3. A low resistance fuse in accordance with claim 2 wherein both of said first and second intermediate insulation layers comprise an opening in the vicinity of said fusible link.
- 4. A low resistance fuse in accordance with claim 1 wherein said fuse element layer comprises a thin film foil.
- 5. A low resistance fuse in accordance with claim 4 wherein said fuse element layer has a thickness between about 1 to about 20 microns.
- 6. A low resistance fuse in accordance with claim 5 wherein said fuse element layer has a thickness between about 3 to about 9 microns.
- 7. A low resistance fuse in accordance with claim 1 wherein said fuse element layer comprises first and second contact pads and at least one fusible link extending therebetween.
- 8. A low resistance fuse in accordance with claim 1 wherein said first intermediate insulating layer comprises first and second termination windows therein.
- 9. A low resistance fuse in accordance with claim 8 further comprising solder bump terminations located within said termination windows.
- 10. A low resistance fuse in accordance with claim 1 further comprising termination slots or holes formed into lateral ends of said fuse element layer, said first intermediate insulating layer, and said second intermediate insulating material.
- 11. A low resistance fuse in accordance with claim 1 further comprising first and second outer insulation layers laminated to respective said first and second intermediate insulating layers.
- 12. A low resistance fuse in accordance with claim 11 wherein at least one of said first and second outer insulating layers and at least one of said first and second intermediate insulating layers comprise a liquid crystal polymer.
- 13. A low resistance fuse in accordance with claim 11 wherein at least one of said first and second outer insulating lowers and at least one of said first and second intermediate insulating layers comprise a polyimide material.
- 14. A low resistance fuse in accordance with claim 11 wherein at least one of said first and second outer insulating layers is translucent.
- 15. A method of fabricating a low resistance fuse, said method comprising:
providing a first intermediate insulating layer; metallizing the first intermediate insulating layer with a fuse element layer; forming a fusible link extending between first and second contact pads from the fuse element layer; and coupling a second intermediate insulation layer to the first intermediate insulating layer over the fuse element layer.
- 16. A method in accordance with claim 15 further comprising forming an opening in at least one of the first intermediate insulating layer and the second intermediate insulating layer.
- 17. A method in accordance with claim 16 wherein said forming an opening comprises punching, drilling or etching an opening.
- 18. A method in accordance with claim 15 wherein said coupling a second intermediate insulating layer comprises adhesivelessly laminating said second insulating layer to the first intermediate insulating layer.
- 19. A method in accordance with claim 15 wherein said forming a fusible link extending between contact pads comprises etching the fuse element layer to form the fusible link and the contact pads.
- 20. A method in accordance with claim 15 further comprising forming solder termination windows in one of the first and second intermediate insulating layer.
- 21. A method in accordance with claim 15 further comprising forming elongated termination slots in said fuse element layer, said first intermediate insulating layer and said second intermediate insulating layer.
- 22. A method in accordance with claim 15 further comprising laminating first and second outer insulating layers to respective first and second outer intermediate insulating layers, at least one of the first and second outer insulating layers comprising a polyimide material.
- 23. A method in accordance with claim 15 further comprising laminating first and second outer insulating layers to respective first and second outer intermediate insulating layers, at least one of the first and second outer insulating layers comprising a liquid crystal polymer.
- 24. A method in accordance with claim 15 wherein metallizing the first intermediate layer comprises electrodepositing a copper foil to form said fuse element layer.
- 25. A method in accordance with claim 15 wherein metallizing the first intermediate layer comprises sputtering a metal foil to form said fuse element layer.
- 26. A method in accordance with claim 15 wherein metallizing the first intermediate layer comprises plating the first intermediate layer.
- 27. A method in accordance with claim 15 wherein metallizing the first intermediate layer comprises screen printing the first intermediate layer.
- 28. A method in accordance with claim 15 wherein metallizing the first intermediate layer comprises electrodepositing a tin/copper foil to form said fuse element layer.
- 29. A method in accordance with claim 15 wherein said laminating a fuse element layer to a first intermediate insulating layer comprises laminating a 1 micron to 20 micron thin foil fuse element layer to the first intermediate insulating layer.
- 30. A method in accordance with claim 15 wherein said laminating a fuse element layer to a first intermediate insulating layer comprises laminating a 3 micron to 12 micron thin foil fuse element layer to the first intermediate insulating layer.
- 31. A low resistance fuse comprising:
a thin foil fuse element layer; first and second intermediate insulation layers extending on opposite sides of said fuse element layer and coupled thereto, said fuse element layer formed on said first intermediate insulation layer and said second insulation layer laminated to said fuse element layer; a first outer insulating layer laminated to said first intermediate insulating layer; and a second outer insulating layer laminated to said second intermediate insulating layer.
- 32. A low resistance fuse in accordance with claim 31 wherein said fuse element layer comprises a fusible link, at least one of said first and second intermediate layers comprises an opening overlying said fusible link.
- 33. A low resistance fuse in accordance with claim 32 wherein said opening is substantially circular.
- 34. A low resistance fuse in accordance with claim 33 wherein said fuse element layer comprises first and second contact pads on opposite ends of said fusible link, said first intermediate insulating layer and said first outer insulating layer each comprising solder termination windows therein, said solder termination window exposing said first and second contact pads.
- 35. A low resistance fuse in accordance with claim 31 further comprising elongated slots formed into lateral ends of said fuse and in electrical connection with said fuse element layer.
- 36. A low resistance fuse in accordance with claim 31 wherein at least one of said first and second outer insulating layers is translucent.
- 37. A low resistance fuse in accordance with claim 31 wherein at least one of said first and second intermediate insulation layers comprises a polyimide material.
- 38. A low resistance fuse in accordance with claim 31 wherein at least one of said first and second intermediate insulation layers comprises a liquid crystal polymer.
- 39. A low resistance fuse in accordance with claim 38 wherein at least one of said first and said second outer insulating layer comprises a polyimide material.
- 40. A low resistance fuse in accordance with claim 38 wherein at least one of said first and said second outer insulating layer comprises a liquid crystal polymer.
- 41. A low resistance fuse in accordance with claim 31 wherein said fuse element layer comprises a first contact pad, a second contact pad substantially coplanar with said first contact pad, and a fusible link extending therebetween.
- 42. A low resistance fuse comprising:
a thin foil fuse element layer comprising first and second contact pads and a fusible link extending between said first and second contact pads; first and second intermediate insulation layers extending on opposite sides of said fuse element layer, at least one of said first and second intermediate insulation layers comprising an opening therethrough in the vicinity of said fusible link; a first outer insulating layer extending over said first intermediate insulating layer; a second outer insulating layer extending over said second intermediate insulating layer, at least one of said first and second outer insulating layer enclosing said opening of at least one of said first and second intermediate insulation layers.
- 43. A low resistance fuse in accordance with claim 42 wherein at least one of said first and second intermediate insulation layers comprises a polyimide material having an opening therethrough in the vicinity of said fusible link.
- 44. A low resistance fuse in accordance with claim 42 wherein at least one of said first and second intermediate insulation layers comprises a liquid crystal polymer having an opening therethrough in the vicinity of said fusible link.
- 45. A low resistance fuse in accordance with claim 43 wherein said opening in the vicinity of said fusible link comprises a substantially cylindrical opening.
- 46. A low resistance fuse in accordance with claim 43 wherein at least one of said first outer insulating layer and said second outer insulating layer comprises a polyimide material.
- 47. A low resistance fuse in accordance with claim 43 wherein at least one of said first outer insulating layer and said second outer insulating layer comprises a liquid crystal polymer.
- 48. A low resistance fuse in accordance with claim 42 further comprising solder bump terminations extending through said first outer insulating layer and said first intermediate insulating layer in electrical connection with said contact pads of said fuse element layer.
- 49. A low resistance fuse in accordance with claim 42 further comprising elongated slot terminations formed into lateral ends of each of said fuse element layer, said first and second intermediate insulating layer, and said first and second outer insulating layer, said elongated slot terminations metallized to form fuse terminations in electrical connection with said contact pads of said fuse element layer.
- 50. A low resistance fuse in accordance with claim 49 wherein said terminations are metallized with at least one of Nickel/Gold, Nickel/Tin/Lead, Nickel/Tin, and Tin.
- 51. A low resistance fuse in accordance with claim 49 wherein said metallized terminations extend upon outer surfaces of each of said first and second outer insulating layer, thereby configuring said fuse for surface mounting.
- 52. A low resistance fuse in accordance with claim 42 wherein said thin foil fuse element layer comprises a 1 micron to 20 micron metal foil.
- 53. A low resistance fuse in accordance with claim 52 wherein said thin foil fuse element layer comprises an electrodeposited 1 micron to 20 micron metal foil.
- 54. A low resistance fuse in accordance with claim 53 wherein said thin foil fuse element layer comprises an electrodeposited 3 micron to 12 micron metal foil.
- 55. A low resistance fuse in accordance with claim 42 wherein said thin foil fuse element layer comprises an electrodeposited copper foil.
- 56. A low resistance fuse comprising:
a thin foil fuse element layer comprising a 1 micron to 20 micron electro deposited metal foil formed into first and second contact pads and a fusible link extending between said first and second contact pads; first and second intermediate insulation layers extending on opposite sides of said fuse element layer, each of said first and second intermediate insulation layers comprising an opening therethrough in the vicinity of said fusible link, at least one of said first and second intermediate insulation layers comprising a polyimide material; a first outer insulating layer extending over said first intermediate insulating layer; a second outer insulating layer extending over said second intermediate insulating layer, each of said first and second outer insulating layer enclosing said opening of at least one of said first and second intermediate insulation layers, at least one of said first and second outer insulating layer comprising a polyimide material.
- 57. A low resistance fuse in accordance with claim 56 wherein said opening in each of said first and second intermediate insulation layers comprises a substantially circular opening.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application Serial No. 60/348,098 filed Jan. 10, 2002.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60348098 |
Jan 2002 |
US |