CA2848890C

Non-rigid sensor for detecting deformation

Abstract

A non-rigid electrical component includes a first layer of a compressible material. The first layer has at least one aperture therethrough. A second layer of an electrically conductive material is positioned on one side of the first layer across the aperture and a third layer of an electrically conductive material is positioned on an opposite side of the first layer across the aperture. The first layer is compressible such that the second and third layers of material may be brought into contact with each other in the aperture of the first layer to complete an electrical connection between the second and third layers upon application of a compression force. The first layer is also made of a resilient material such that when the compression force is removed, the first material expands to separate the second and third layers, thereby breaking the electrical connection.

CA2848890C, drawing sheet 1
Sheet 1 of 11

Term

4.8 yearsleft in the term

Expires 25 July 2031.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

7 claims: 1 independent, 6 dependent

  1. 1
    CA 02848890 2016-09-12 61316-1130D1 CLAIMS:1. A plush toy having electronics therein for interacting with a user, the plush toy comprising: a body portion having a soft fabric exterior and plush stuffing therein;and electrical components positioned in the body portion, the electrical components including a battery, a microprocessor, a hug sensor, and a plurality of wires electrically coupling the battery, microprocessor and hug sensor together to form an electric circuit, wherein the hug sensor has first and second layers of an electrically conductive and compressible material spaced apart by an intermediate layer of a non-conductive and compressible material positioned between the first and second layers of material, wherein the intermediate layer includes one or more apertures there through, wherein the hug sensor is movable from a rest, non-compressed position where the first and second layers are spaced apart from on another on opposite sides of the one or more apertures towards a compressed position, via application of an external force, where at least a portion of the first layer abuts a portion of the second layer in the one or more apertures, wherein the hug sensor creates an open circuit when the hug sensor is in the rest position, wherein the hug sensor creates a closed circuit when the hug sensor is in a compressed position, wherein the hug sensor has a resistance there across, and wherein the resistance is variable based at least in part on an amount of contact between the first and second layers.