Electrical interconnect structure with radial spokes for improved solder void control
An electrical interconnect structure includes a bond pad having a substantially planar bonding surface, and a solder enhancing structure that is disposed on the bonding surface and includes a plurality of raised spokes that are each elevated from the bonding surface. Each of the raised spokes has a lower wettability relative to a liquefied solder material than the bonding surface. Each of the raised spokes extend radially outward from a center of the solder enhancing structure.
1. An electrical interconnect structure, comprising:
a bond pad comprising a substantially planar bonding surface; and
a solder enhancing structure that is disposed on the bonding surface and comprises a plurality of raised spokes that are each elevated from the bonding surface,
wherein each of the raised spokes has a lower wettability relative to a liquefied solder material than the bonding surface,
wherein each of the raised spokes extend radially outward from a center of the solder enhancing structure, and
wherein each of the raised spokes taper inward from the center of the solder enhancing structure to an outer end of the raised spoke.
2. An electrical interconnect structure, comprising:
a bond pad comprising a substantially planar bonding surface; and
a solder enhancing structure that is disposed on the bonding surface and comprises a plurality of raised spokes that are each elevated from the bonding surface,
wherein each of the spokes in the plurality comprises an upper surface and a side surface extending from the bonding surface to the upper surface,
wherein the plurality of raised spokes comprises a first one of the raised spokes that is configured to form a first gas channel along the side surface of the first spoke when the solder enhancing structure is covered by liquefied solder material,
wherein the plurality of raised spokes comprises a second one of the raised spokes that is configured to form a second gas channel along the side surface of the second spoke when the solder enhancing structure is covered by liquefied solder material, and
wherein the first and second gas channels at least 90 degrees apart from one another.
3. The electrical interconnect structure of claim 2 , wherein the plurality comprises a third one of the raised spokes that is configured to form a third gas channel along the side surface of the third spoke when the solder enhancing structure is covered by liquefied solder material and a fourth one of the raised spokes that is configured to form a fourth gas channel along the side surface of the fourth spoke when the solder enhancing structure is covered by liquefied solder material.
4. The electrical interconnect structure of claim 3 , wherein the center of the solder enhancing structure is an area that is elevated from the bonding surface and is continuously connected to each of the spokes.
5. The electrical interconnect structure of claim 3 , wherein each of the raised spokes has a substantially uniform width along a length of the raised spoke that extends from the center of the solder enhancing structure to an outer end of the raised spoke.
6. The electrical interconnect structure of claim 3 , wherein each of the raised spokes taper inward from the center of the solder enhancing structure to an outer end of the raised spoke.
7. The electrical interconnect structure of claim 3 , wherein the bonding surface is a copper surface, and wherein the outer surfaces of each of the raised spokes are silver surfaces.
8. The electrical interconnect structure of claim 3 , wherein the electrical interconnect structure is a lead frame, and wherein the bonding surface is a die attach surface of the lead frame.
9. The electrical interconnect structure of claim 3 , wherein the electrical interconnect structure is a metal interconnect clip, and wherein the bonding surface is a die attach surface or a lead attach surface of the metal interconnect clip.
10. The electrical interconnect structure of claim 2 , wherein the first and second spokes are configured to form the first and second gas channels, respectively, through a difference in wettability relative to the liquefied solder material between outer surfaces of each of the first and second spokes and the bonding surface.