EP1995778A2

Method for stacking integrated circuits and resultant device

Abstract

A design for stacking integrated circuits is described. Some integrated circuits have multiple signal pads that are common between a top integrated circuit and a bottom integrated circuit in an integrated circuit pair. These common pads are placed symmetrically on the integrated circuit. Unique signal pads are provided independently to each integrated circuit in a stack. An optional array of solder bumps placed over a central area of the integrated circuit may be used, which provides for heat transfer through the stack. When stacking multiple pairs of integrated circuits, the top integrated circuit in the integrated circuit stack pair serves as a spacer between the first and second pair of integrated circuits.

EP1995778A2, drawing sheet 1
Sheet 1 of 8

Term

Projected expiry 22 May 2028.

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

10 claims: 3 independent, 7 dependent

  1. 1
    A method for stacking integrated circuits, comprising in combination:providing a first integrated circuit, a second integrated circuit, a third integrated circuit, and a fourth integrated circuit, wherein the integrated circuits have a substantially similar integrated circuit design, and signal pads in common to the integrated circuits are placed symmetrically about a line through a center of the integrated circuits;creating a first integrated circuit pair by flip chip bonding the first integrated circuit to the second integrated circuit, wherein the first integrated circuit is smaller than the second integrated circuit;creating a second integrated circuit pair by flip chip bonding the third integrated circuit to the fourth integrated circuit, wherein the third integrated circuit is smaller than the fourth integrated circuit;attaching the first integrated circuit pair to a substrate;stacking the second integrated circuit pair on the first integrated circuit pair;connecting the second integrated circuit to the substrate using wire bonding;and connecting the fourth integrated circuit to the substrate using wire bonding.
  2. 5
    A stacked integrated circuit, comprising in combination:a substrate;a first integrated circuit, a second integrated circuit, a third integrated circuit, and a fourth integrated circuit having a substantially similar integrated circuit design, and signal pads in common to the integrated circuits are placed symmetrically about a line through a center of the integrated circuits, wherein the first integrated circuit is smaller than the second integrated circuit, and the third integrated circuit is smaller than the fourth integrated circuit;a first integrated circuit pair including the first integrated circuit and the second integrated circuit, wherein an active surface of the first integrated circuit is attached to an active surface of the second integrated circuit using flip chip bonding, wherein the first integrated circuit pair is stacked on the substrate, and wherein the second integrated circuit is connected to the substrate using wire bonding;and a second integrated circuit pair including the third integrated circuit and the fourth integrated circuit, wherein an active surface of the third integrated circuit is attached to an active surface of the fourth integrated circuit using flip chip bonding, wherein the second integrated circuit pair is stacked on the first integrated circuit pair, and wherein the fourth integrated circuit is connected to the substrate using wire bonding.
  3. 9
    A stacked integrated circuit, comprising in combination:a substrate;a first integrated circuit, a second integrated circuit, a third integrated circuit, and a fourth integrated circuit having a substantially similar integrated circuit design, and wire bond pads in common to the integrated circuits are placed symmetrically about a line through a center of the integrated circuits;a first integrated circuit pair including the first integrated circuit and the second integrated circuit, wherein an active surface of the first integrated circuit is attached to an active surface of the second integrated circuit using flip chip bonding with solder bumps, wherein the first integrated circuit pair is stacked on the substrate, and wherein a wire bond pad on the second integrated circuit is connected to the substrate using wire bonding;a second integrated circuit pair including the third integrated circuit and the fourth integrated circuit, wherein an active surface of the third integrated circuit is attached to an active surface of the fourth integrated circuit using flip chip bonding with solder bumps, wherein the second integrated circuit pair is stacked on the first integrated circuit pair, and wherein a wire bond pad on the fourth integrated circuit is connected to the substrate using wire bonding;an adhesive layer located between an inactive surface of the second integrated circuit and the substrate;and an adhesive layer located between an inactive surface of the first integrated circuit and an inactive surface of the fourth integrated circuit.