CA2499208C

Controlling electromechanical behavior of structures within a microelectromechanical systems device

Abstract

In one embodiment, the invention provides a method for fabricating a microelectromechanical system device. The method comprises fabricating a first layer (14) comprising a film (14) having a characteristic electromechanical response, and a characteristic optical response, wherein the characteristic optical response is desirable and the characteristic electromechanical response is undesirable; and modifying the characteristic electromechanical response of the first layer (14) by at least reducing charge build up thereon during activation of the microelectromechanical systems device.

CA2499208C, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Expired 18 September 2023, 3 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

14 claims: 3 independent, 11 dependent

  1. 1
    CA 02499208 2012-09-12 72935-13 CLAIMS:1. An apparatus, comprising: a substrate;an electrode, wherein the electrode is located over the substrate;an additional layer, wherein the additional layer is located over the electrode, and wherein the additional layer comprises S1O2 an etch barrier layer, wherein the etch barrier layer is located over the additional layer;an air gap, wherein the air gap is located adjacent the etch barrier layer;and a displaceable layer located on the opposite side of the air gap as the electrode, wherein the displaceable layer is reflective to incident light.
  2. 6
    A method of making a MEMS device, comprising:forming an electrode layer over a substrate;forming an additional layer over the electrode layer, wherein the additional layer comprises SiCfr;forming an etch barrier layer over the additional layer;and CA 02499208 2012-09-12 72935-13 exposing the etch barrier layer to a chemical etchant, wherein the etch barrier layer is resistant to the chemical etchant.
  3. 12
    A microelectromechanical systems device comprising:a substrate;an electrode, wherein the electrode is located on the substrate;an air gap;a layer including SiO2, wherein the layer including SiO 2 is located between the 1.5 electrode and the air gap;and at least one layer comprising AI2O3 on or adjacent the layer comprising S1O2, wherein the layer comprising AI2O3 is located between the air gap and the layer comprising SiO 2 .