EP0248566A2

Process for controlling solder joint geometry when surface mounting a leadless integrated circuit package on a substrate.

Abstract

A solder joint assembly technique applies controlled volumes of solder to pads of both package and substrate (31, 32). The two units are positioned adjacent each other with the pads and solder deposits mechanically maintained in registration with each other (34, 35). The assembly is reflowed and the final separation between package and substrate at which the resulting solder joint solidifies is mechanically controlled in order to control a geometry of the resultant solidified joint (36, 37). The solder volume deposits may assume various forms including spherical bumps and solder paste deposits.

EP0248566A2, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Projected expiry passed 21 May 2007, 19.3 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

10 claims: 1 independent, 9 dependent

  1. 1
    A method of forming solder joints for joining a package and a substrate, CHARACTERIZED BY depositing substantial, predetermined and controlled volumes of solder on individual pads of a package, each of these pads having a predetermined and controlled size and shape, depositing substantial, predetermined and controlled volumes of solder on individual pads of a substrate, each of these pads having a predetermined and controlled size and shape, laterally positioning the substrate and package adjacent to each other with individual pads of the package in registration with associated individual pads of the substrate, establishing an initial vertical separation between the package and the substrate which is small enough to allow the predetermined and controlled volumes of solder on each associated pair of pads to touch and coalesce when molten, applying sufficient heat to an assembly of the package and substrate to achieve a predetermined reflow temperature, such that the first and second volume of solder on each associated pair of pads become molten and coalesce to form a solder joint between a pad on the package and an associated pad on the substrate, and maintaining a predetermined and a controlled final separation between package and substrate after molten solder joints form in order to control a solidified shape of each of the solder joints.