CA2716630C

Method of forming a magnetic tunnel junction structure

Abstract

In a particular illustrative embodiment, a method of forming a magnetic tunnel junction (MTJ) device is disclosed that includes forming a trench (1514) in a substrate (1400). The method further includes depositing a magnetic tunnel junction (MTJ) structure (1516) within the trench. The MTJ structure includes a bottom electrode (1518), a fixed layer, a tunnel barrier layer, a free layer, and a top electrode (1522). The method also includes planarizing the MTJ structure. In a particular example, the MTJ structure is planarized using a Chemical Mechanical Planarization (CMP) process.

CA2716630C, drawing sheet 1
Sheet 1 of 17

Term

Projected expiry 23 February 2029.

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

43 claims: 10 independent, 33 dependent

  1. 1
    CA 02716630 2015-06-15 74769-3059 -25ÇLAIMS;I - A method of forming a magnetic tunnel junction device, the method comprising;forming a trench in a substrate;depositing a magnetic tunnel junction (MTJ) structure within the trench, the MTJ structure including a bottom electrode, a fixed layer, a tunnel barrier layer, a free layer, and a top electrode;applying a reverse photo etching process to remove material that is not directly over the trench;and planarizing the MTJ structure without performing a photo-etch process on the MTJ structure.
  2. 7
    A method of forming a magnetic tunnel junction device, the method comprising;defining a trench in a substrate;depositing a magnetic tunnel junction (MTJ) structure within the trench;removing excess material that is not directly over the trench using a low resolution photo-etch process;planarizing the MTJ structure and the substrate;and forming at least two electrical connections to the MTJ structure.
  3. 8
    The method of claim Ί, wherein depositing the MTJ structure comprises:depositing a bottom electrode within the trench;depositing an anti-ferromagnetic layer on the bottom electrode within the trench;depositing a first magnetic layer on the anti-ferromagnetic layer;depositing an oxide metal material to form a tunnel barrier;depositing a second magnetic layer on the tunnel barrier;and CA 02716630 2015-06-15 74769-3059 -27depositing a top electrode on the second magnetic layer.
  4. 9
    The method of claim Ί, farther comprising performing a magnetic annealing process on a selected layer to fix an orientation of a magnetic field, the selected layer comprising a fixed layer.
  5. 13
    A method of forming a magnetic tunnel junction device, the method comprising:defining a trench in a substrate, the substrate comprising a semiconductor material having an inter-layer dielectric layer and a cap film layer, wherein the trench extends through the cap film layer and into the inter-layer dielectric layer;depositing a bottom electrode within the trench;depositing an MTJ structure on the bottom electrode, the MTJ structure including a first ferromagnetic layer, a tunnel barrier layer, and a second ferromagnetic layer;depositing a top electrode on the MTJ structure;and performing reverse trench photo-etching process and a planarization process on tiie MTJ structure and the substrate to produce a substantially planar surface. CA 02716630 2015-06-15 74769-3059
  6. 19
    A method of forming a magnetic tunnel junction device, the method comprising:forming a trench in a substrate;depositing a magnetic tunnel junction (MTJ) structure within the trench, the MTJ structure including a bottom electrode, a fixed layer, a tunnel barrier layer, a free layer, and a top electrode;planarizing the MTJ structure without performing a photo-etch process on the MTJ structure;and performing a magnetic annealing process to define an orientation of a magnetic field carried by the fixed layer.
  7. 20
    A method of forming a magnetic tunnel junction device, the method comprising:defining a trench in a substrate, wherein the substrate comprises an inter-layer dielectric layer and a cap film layer;CA 02716630 2015-06-15 74769-3059 -29depositing a magnetic tunnel junction (MTJ) structure within the trench;removing excess material that is not directly over the trench using a low resolution photo etch process;and planarizing the MTJ structure and the substrate.
  8. 21
    A method of forming a magnetic tunnel junction device, the method comprising:forming a trench in a substrate, that comprises an inter-metal dielectric layer and a cap film layer;depositing a magnetic tunnel junction (MTJ) structure within the trench;and planarizing the MTJ structure without performing a photo-etching process on the MTJ structure.
  9. 28
    A method of forming a magnetic tunnel junction device, the method comprising:defining a trench in a substrate that includes an inter-metal dielectric layer and a cap film layer;depositing a magnetic tunnel j unction (MTJ) structure within the trench: and planarizing the MTJ structure and the substrate.
  10. 36
    A method of forming a magnetic tunnel junction device, the method comprising:defining a trench in a substrate, the substrate comprising a semiconductor material having an inter-metal dielectric layer and a cap film layer, wherein the trench extends through the cap film layer and into the inter-metal dielectric layer;depositing a first electrode within the trench;depositing a magnetic tunnel junction (MTJ) structure on the first electrode, the MTJ structure including a first ferromagnetic layer, a tunnel barrier layer, and a second ferromagnetic layer;depositing a second electrode on the MTJ structure;and CA 02716630 2016-05-16 74769-3059 -32performing a planarization process on the MTJ structure.