Claims
- 1. A filling system for filling vias in an electronic substrate, said filling system comprising:
a source of pressurized fill material; and a pressure head coupled to the source of pressurized fill material by a fill material inlet, the pressure head further comprising an elongated fill material outlet which is substantially larger than the fill material inlet.
- 2. The system of claim 1 wherein:
the pressure head comprises a pressure chamber and a plurality of fill material inlets; fill material flows between the pressure chamber and the source of pressurized fill material, and between the pressure chamber and an electronic substrate; the fill material inlets are orifices through which fill material flows when flowing between the source of pressurized fill material and the pressure chamber; the fill material outlet is an orifice through which fill material flows when flowing between the pressure chamber and the electronic substrate to be filled, the fill material outlet being substantially larger than all of the fill material inlets of the plurality of fill material inlets combined.
- 3. The system of claim 2 further comprising a dispersing mechanism for dispersing fill material flowing into the pressure chamber from the plurality of inlets along the length of the fill material outlet.
- 4. The system of claim 3 wherein the pressure head comprises a plurality of elongated outlets and the dispersing mechanism disperses fill material along the length of each outlet of the plurality of outlets.
- 5. The system of claim 3 wherein the inlets of the plurality of fill material inlets are directed towards a wall of the pressure chamber.
- 6. The system of claim 5 wherein the plurality of fill material inlets is directed away from the fill material outlet.
- 7. The system of claim 3 wherein the fill material outlet is at least X times larger than all of the fill material inlets of the plurality of fill material inlets combined where X is one of 3, 5, 10, and 20.
- 8. The system of claim 3 wherein the pressure head comprises a main body and a wear element assembly detachably coupled to the main body wherein the wear element assembly comprises:
the fill material outlet; and a contacting surface at least a portion of which contacts the electronic substrate during filling, the contacting surface having an area less than or equal to Y square inches where Y is one of 6.1, 6.65, 8.1, and 9.25.
- 9. The system of claim 8 wherein the wear element assembly comprises a gasket and a gasket support member, the gasket support member coupling the wear element assembly to the main body and the gasket comprises the contacting surface of the wear element.
- 10. The filling system of claim 3 wherein the dispersing mechanism comprises a feed tube positioned within the main body, the feed tube comprising the plurality of fill material inlets.
- 11. The filling system of claim 10 wherein all of the inlets the plurality of fill material inlets share a common orientation and are directed away from the fill material outlet.
- 12. The filling system of claim 3 further comprising a flow equalization grid dividing the pressure chamber into at least two parts and positioned between the plurality of fill material inlets and the fill material outlet.
- 13. The filling system of claim 12 wherein the flow equalization grid is positioned near the fill material outlet.
- 14. The filling system of claim 13 wherein the flow equalization grid comprises a plurality of holes passing through the grid, the plurality of holes comprising less than 70% of the area of the fill material outlet.
- 15. The filling system of claim 3 wherein the pressure head further comprises an ultrasonic driver.
- 16. The filling system of claim 15 further comprising an output control mechanism for the ultrasonic driver.
- 17. The filling system of claim 3 wherein the pressure head is oriented such that fill material flowing through the fill material outlet from the pressure chamber is flowing at least partially upwards against the pull of gravity.
- 18. The filling system of claim 3 wherein the total time required to fill all of the vias of the electronic substrate to be filled is less than T seconds wherein T is one of 20, 30, 40, and 50.
- 19. The filling system of claim 3 wherein the source of pressurized fill material provides fill material at a pressure of less than L pounds per square inch where L is one of 80, 50, 25, 20, 15, and 10.
- 20. A filling system for filling vias of a substantially planar dielectric substrate, said filling system comprising:
a source of pressurized conductive fill material; and a pressure head comprising:
a main body comprising a pressure chamber and a fill material feed tube within the pressure chamber, the feed tube comprising a plurality of fill material inlets; a detachable wear element assembly comprising a plurality of elongated fill material outlets, a flow equalization grid, a gasket comprising a substrate contacting portion, and a gasket supporting member coupling the gasket to the main body; an ultrasonic driver; wherein:
fill material flows between the pressure chamber and the source of pressurized fill material, and between the pressure chamber and an electronic substrate to be filled; all of the fill material inlets of the plurality of fill material inlets are orifices through which fill material flows when flowing between the source of pressurized fill material and the pressure chamber, and the fill material inlets are directed towards a wall of the pressure chamber and away from the fill material outlet; all of the fill material outlets of the plurality of fill material outlets are orifices through which fill material flows when flowing between the pressure chamber and the substrate be filled; the combined area of all the fill material inlets of the plurality of fill material inlets is less than one half of the combined area of all the fill material outlets of the plurality of fill material outlets; the substrate contacting portion of the gasket contacts the electronic substrate during filling and the substrate contacting portion has an area less than or equal to 9 square inches; the flow equalization grid divides the pressure chamber into at least two parts and is positioned near the plurality of fill material outlets and between the plurality of fill material inlets and the plurality of fill material outlets, the flow equalization grid comprises a plurality of holes passing through the grid, and the plurality of holes comprising less than 75% of the area of the fill material outlet; the total time required to fill all of the vias of the electronic substrate to be filled is less than 30 seconds; and the source of pressurized fill material provides fill material at a pressure of between 8 and 16 pounds per square inch.
Parent Case Info
[0001] This application claims the benefit of U.S. provisional application No. 60/208454 and U.S. provisional application No. 60/208456, each of which is incorporated herein by reference in its entirety.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60208454 |
May 2000 |
US |
|
60208456 |
May 2000 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09752629 |
Dec 2000 |
US |
Child |
10180835 |
Jun 2002 |
US |