IL157828A

Semiconductor structure implementing sacrificial material

Abstract

Methods of fabricating semiconductor structures on a substrate, where the substrate has transistors formed thereon, are provided. One method includes forming interconnect metallization structures in a plurality of levels. The forming of the interconnect metallization structures includes depositing a sacrificial layer and performing a process to etch trenches, vias, and stubs into the sacrificial layer. The method further includes filling and planarizing the trenches, vias, and stubs that were etched and then etching away the sacrificial layer throughout the plurality of levels of the interconnect metallization structures. The etching leaving a voided interconnect metallization structure that is structurally supported by stubs that are non-electrically functional.

IL157828A, drawing sheet 1
Sheet 1 of 9

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

8 claims: 3 independent, 5 dependent

  1. 1
    Claim 1:A semiconductor device, comprising: a substrate having transistor devices and a passivation layer disposed over a dielectric layer that is defined over the transistor devices;a plurality of copper interconnect metallization lines and conductive vias defined in each of a plurality of interconnect levels of the semiconductor device, the plurality of copper interconnect metallization lines and conductive vias being isolated from each other by a porous dielectric material;and a plurality of supporting stubs, each of the plurality of supporting stubs configured to form a supporting column that is disposed over a surface of the passivation layer and extends through the plurality of interconnect levels of the semiconductor device, the plurality of supporting stubs not being electrically interconnected to the plurality of copper interconnect metallization lines and conductive vias so that the supporting column maintains structural contact with the passivation layer to avoid electrical contact with the plurality of copper interconnect metallization lines and conductive vias, the plurality of supporting stubs further being configured so as to not provide electrical connection between the plurality of interconnect levels of the semiconductor device .
  2. 5
    Claim 5:A semiconductor device, comprising: a substrate having transistor devices;an intermetal dielectric layer (ILD) including conductive contacts defining a first interconnect level of a plurality of interconnect levels of the semiconductor device;a passivation layer defined over the ILD layer;a plurality of copper interconnect metallization lines and conductive vias defined in each remaining interconnect level of the plurality of interconnect levels of the semiconductor device defined over the passivation layer, the plurality of copper interconnect metallization lines and conductive vias being isolated from each other by only a porous dielectric material;and a plurality of supporting stubs, each of the plurality of supporting stubs configured to form a supporting column that extends through each remaining interconnect level of the plurality of interconnect levels of the semiconductor device.
  3. 8
    Claim 8:A semiconductor device comprising: a substrate having transistor devices;an intermetal dielectric layer (ILD) including conductive contacts defining a first interconnect level of a plurality of interconnect levels of the semiconductor device, the conductive contacts being isolated from each other by a non-porous dielectric;a passivation layer defined over the ILD layer;a plurality of copper interconnect metallization lines and conductive vias defined in each remaining interconnect level of the plurality of interconnect levels of the semiconductor device, the plurality of copper interconnect metallization lines and conductive vias being isolated from each other by one of only a porous dielectric material and a mixture of only a porous dielectric material and a gaseous dielectric;a passivation-capping layer defined over a topmost layer of the copper interconnect metallization lines and conductive vias;and a plurality of supporting stubs, each of the plurality of supporting stubs configured to form a supporting column that extends through each remaining interconnect level of the plurality of interconnect levels of the semiconductor device.