Method for manufacturing substrate
In a method for manufacturing a substrate, connections are provided through metal columns of bumps press-fitted into an insulating resin layer between metal foils contact-bonded to a thermosetting insulating resin layer. Bumps of a conductive paste containing metal fillers are formed on a metal foil which is to be contact-bonded to an insulating resin layer, the bumps are heated to bound the metal fillers to each other, and form a metallic bond between the bumps and the metal foil, the metal columns are press-fitted into the insulating resin layer to contact-bond the metal foil to the insulating resin layer, and join the tips of the metal columns to a metal foil, the metal columns are then reheated to form a metallic bond between the metal columns and the metal foil.
1. A method for manufacturing a substrate, comprising the steps of:
forming a bump of a conductive paste containing metal fillers on a metal foil which is to be contact-bonded to a thermosetting insulating resin layer, the metal fillers having a melting temperature lower than a reflow temperature of the conductive paste and lower than a curing temperature of the insulating resin layer;
heating the bump to a temperature lower than the curing temperature, at which the metal fillers are melted, to form the metal fillers bound to each other by melting, and to form a metallic bond between the bump and the metal foil, thereby integrally connecting a metal column of the bump to the metal foil;
press-fitting the metal column into the insulating resin layer before being completely cured, thereby contact-bonding the metal foil to the insulating resin layer, and joining a tip of the metal column to an opposed metallic member; and
subjecting the insulating resin layer to a heat treatment after the joining to reheat the metal column, thereby re-melting the metal fillers, and forming a metallic bond between the metal column and the metallic member to integrally connect the metal column to the metallic member; wherein
in the step of subjecting the insulating resin layer to a heat treatment, the metallic bond between the metal column and the metallic member is formed by alloying through diffusion in a solid layer between the metal column and the metallic member.
2. The method for manufacturing a substrate according to claim 1 , wherein the metal foil is a metal foil contact-bonded to one principal surface of the insulating resin layer, and the metallic member is a metal foil contact-bonded to the other principal surface of the insulating resin layer.
3. The method for manufacturing a substrate according to claim 1 , wherein the insulating resin layer includes a built-in electronic component, and the metallic member is an electrode of the electronic component.
4. The method for manufacturing a substrate according to claim 1 , wherein the conductive paste includes a Bi—Sn alloy.
5. The method for manufacturing a substrate according to claim 1 , wherein the melting temperature of the metal fillers is between about 140° C. and about 180° C.
6. The method for manufacturing a substrate according to claim 1 , wherein the reflow temperature of the conductive paste is a solder reflow temperature.