Device packaging with substrates having embedded lines and metal defined pads
Package substrates enabling reduced bump pitches and package assemblies thereof. Surface-level metal features are embedded in a surface-level dielectric layer with surface finish protruding from a top surface of the surface-level dielectric for assembly, without solder resist, to an IC chip having soldered connection points. Package substrates are fabricated to enable multiple levels of trace routing with each trace routing level capable of reduced minimum trace width and spacing.
1. A method for assembly of an IC chip to a package substrate, the method comprising:
providing an IC chip having an plurality of IC chip connection points each of said IC chip connection points having solder disposed thereon;
providing a package substrate having a plurality of package substrate connection points, each of said package connection points having a surface-level metal feature comprising a fill metal embedded in a surface level dielectric, said surface-level dielectric disposed between adjacent package substrate connection points, each of said package substrate connection points having a surface finish metal formed on said fill metal and protruding beyond the top surface of said surface-level dielectric, said package substrate further comprising a metal trace embedded within said surface-level dielectric between two of said package substrate connection points;
aligning the IC chip connection points with the package substrate connection points; and
alloying the solder on the IC chip connection points with the surface finish metal on the package substrate connection points to affix the IC chip connection points to the package substrate connection points.
2. The method of claim 1 , further comprising: underfilling a gap between the IC chip and package substrate to contact the top surface of the surface-level dielectric layer with the underfill.
3. The method of claim 1 , wherein the fill metal has a different composition than the surface finish metal and the surface finish metal has a thickness that is equal to at least half a smallest lateral space between adjacent metal features embedded in the surface-level dielectric.
4. The method of claim 1 wherein said embedded metal trace has an exposed top surface substantially coplanar with the top surface of said surface-level dielectric.
5. The method of claim 1 further comprising a surface metal finish formed on said metal trace and protruding beyond the top surface of said surface-level dielectric.