Patents by Inventor Kenneth Diest

Kenneth Diest has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11867973
    Abstract: A varifocal lens includes a substrate having an inclined region, a primary electrode disposed over the inclined region of the substrate, a dielectric layer disposed over the primary electrode, a deformable membrane disposed over and at least partially spaced away from the dielectric layer, a secondary electrode disposed over a surface of the deformable membrane facing toward or away from the dielectric layer and overlying at least a portion of the primary electrode, and a fluid between the membrane and the substrate, wherein a surface of the dielectric layer facing the secondary electrode comprises a textured surface.
    Type: Grant
    Filed: September 8, 2020
    Date of Patent: January 9, 2024
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Renate Eva Klementine Landig, Christopher Stipe, Kenneth Diest, Andrew John Ouderkirk, Maik Andre Scheller, Sheng Ye, John Cooke, Yigit Menguc, Nagi Elabbasi, James Ransley
  • Patent number: 11856860
    Abstract: A liquid dispersion includes a matrix phase of polymerizable material and at least 10% by volume of solid conductive particles distributed throughout the matrix. The conductive particles may have an average particle size of less than approximately 100 nm, and the liquid dispersion may have a viscosity of less than approximately 100 Poise. Such a liquid dispersion may be printed or extruded and then cured to form a solid thin film. The content and distribution of conductive particles within the thin film may reach a percolation threshold such that the thin film may form a conductive layer. Polymer-based devices, such as nanovoided polymer (NVP)-based actuators may be formed by co-extrusion of a nanovoided polymer material between conductive polymer electrodes.
    Type: Grant
    Filed: January 29, 2020
    Date of Patent: December 26, 2023
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Spencer Allan Wells, Kenneth Diest, Wenhao Li, Sheng Ye, Renate Eva Klementine Landig, Andrew John Ouderkirk
  • Patent number: 11632063
    Abstract: An actuator assembly includes (i) a first actuator stack having a first primary electrode, a first secondary electrode overlapping at least a portion of the first primary electrode, and a first electroactive layer disposed between and abutting the first primary electrode and the first secondary electrode, (ii) a second actuator stack having a second primary electrode, a second secondary electrode overlapping at least a portion of the second primary electrode, and a second electroactive layer disposed between and abutting the second primary electrode and the second secondary electrode; and (iii) a bonding layer disposed between the first actuator stack and the second actuator stack.
    Type: Grant
    Filed: August 27, 2019
    Date of Patent: April 18, 2023
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Andrew John Ouderkirk, Renate Eva Klementine Landig, Kenneth Diest, Sheng Ye
  • Patent number: 11619280
    Abstract: A vibration control element includes a nanovoided polymer layer having a first damping coefficient and a first resonance frequency in a first state and a second damping coefficient and a second resonance frequency in a second state, where the first damping coefficient is different from the second damping coefficient and the first resonance frequency is different from the second resonance frequency.
    Type: Grant
    Filed: December 23, 2019
    Date of Patent: April 4, 2023
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Renate Eva Klementine Landig, Kenneth Diest, Andrew John Ouderkirk
  • Patent number: 11594672
    Abstract: Examples include a device including a nanovoided polymer element having a first surface and a second surface, a first plurality of electrodes disposed on the first surface, a second plurality of electrodes disposed on the second surface, and a control circuit configured to apply an electrical potential between one or more of the first plurality of electrodes and one or more of the second plurality of electrodes to induce a physical deformation of the nanovoided polymer element.
    Type: Grant
    Filed: May 21, 2019
    Date of Patent: February 28, 2023
    Assignee: META PLATFORMS TECHNOLOGIES, LLC
    Inventors: Tanya Malhotra, Kenneth Diest, Andrew John Ouderkirk, Robin Sharma, Barry Silverstein, Christopher Yuan Ting Liao, Erik Shipton, Greg Olegovic Andreev, Katherine Marie Smyth
  • Patent number: 11563137
    Abstract: An optical transformer includes a light source and an array of photovoltaic cells optically coupled to the light source, where at least a portion of the photovoltaic cells are connected in series. An optical connector such as a waveguide or an optical fiber may be disposed between an output of the light source and an input of the array of photovoltaic cells. Configured to generate a high voltage output, the optical transformer may be configured to power a device such as an actuator that provides a tunable displacement as a function of voltage.
    Type: Grant
    Filed: October 7, 2019
    Date of Patent: January 24, 2023
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Maik Andre Scheller, Andrew John Ouderkirk, Jonathan Robert Peterson, Daniele Piazza, Jeremy Thomas Braun, Kenneth Diest, Spencer Allan Wells, Renate Eva Klementine Landig, Liliana Ruiz Diaz, Tanya Malhotra
  • Patent number: 11513259
    Abstract: An actuator includes a primary electrode, a secondary electrode overlapping at least a portion of the primary electrode, a nanovoided polymer layer disposed between and abutting the primary electrode and the secondary electrode, the nanovoided polymer layer having a plurality of nanovoids dispersed throughout a polymer matrix, and a sealing layer at least partially encapsulating the nanovoided polymer layer, where the nanovoids include a fill gas.
    Type: Grant
    Filed: July 29, 2019
    Date of Patent: November 29, 2022
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Sheng Ye, Spencer Allan Wells, Andrew John Ouderkirk, Kenneth Diest, Renate Eva Klementine Landig
  • Patent number: 11502240
    Abstract: An actuator assembly includes a primary electrode, a secondary electrode overlapping at least a portion of the primary electrode, and an electroactive polymer layer disposed between the primary electrode and the secondary electrode, where the electroactive polymer layer includes a non-vertical (e.g., sloped) sidewall with respect to a major surface of at least one of the electrodes. The electroactive polymer layer may be characterized by a non-axisymmetric shape with respect to an axis that is oriented orthogonal to an electrode major surface.
    Type: Grant
    Filed: January 23, 2020
    Date of Patent: November 15, 2022
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Kenneth Diest, Andrew John Ouderkirk, Renate Eva Klementine Landig, Katherine Marie Smyth, Spencer Allan Wells, Tingling Rao, Sheng Ye, Eric Schmitt, Nagi Elabbasi, Bachir Ahmed Abeid
  • Patent number: 11448798
    Abstract: A graded-index optical element may include a nanovoided material including a first surface and a second surface opposite the first surface. The nanovoided material may be transparent between the first surface and the second surface. Additionally, the nanovoided material may have a predefined change in effective refractive index in at least one axis due to a change in at least one of nanovoid size or nanovoid distribution along the at least one axis. Various other elements, devices, systems, materials, and methods are also disclosed.
    Type: Grant
    Filed: May 30, 2019
    Date of Patent: September 20, 2022
    Assignee: Meta Platforms Technologies, LLC
    Inventors: Andrew John Ouderkirk, Kenneth Diest, Renate Eva Klementine Landig
  • Patent number: 11409143
    Abstract: In some examples, a device includes a multilayer structure, a first electrode, and a second electrode, where the multilayer structure is located at least in part between the first electrode and the second electrode, and the multilayer structure includes a nanovoided polymer layer, and a solid layer. The solid layer may include a non-nanovoided layer. The nanovoided polymer layer may be an electroactive layer. The device may further include a control circuit configured to apply an electrical potential between the first electrode and the second electrode, which may induce a mechanical deformation of the multilayer.
    Type: Grant
    Filed: April 16, 2019
    Date of Patent: August 9, 2022
    Assignee: Facebook Technologies, LLC
    Inventors: Renate Eva Klementine Landig, Kenneth Diest, Andrew John Ouderkirk
  • Patent number: 11407211
    Abstract: In some examples, a method includes forming a material layer on a substrate, partially polymerizing a component of the material layer, to form fluid-filled droplets within a partially polymerized matrix, deforming the material layer to form anisotropic fluid-filled droplets, and further polymerizing the partially polymerized matrix to form an anisotropic voided polymer, including anisotropic voids in a polymer matrix. The anisotropic voids may include anisotropic nanovoids. Example methods may further include depositing electrodes on the anisotropic voided polymer so that at least a portion of the anisotropic voided polymer is located between the electrodes. Examples may include forming electroactive elements including an anisotropic nanovoided polymer, and devices (such as sensors and/or actuators) including electroactive elements.
    Type: Grant
    Filed: October 31, 2019
    Date of Patent: August 9, 2022
    Assignee: Facebook Technologies, LLC
    Inventors: Renate Eva Klementine Landig, Kenneth Diest, Sheng Ye, Andrew John Ouderkirk
  • Patent number: 11396586
    Abstract: A nanovoided polymer-based material may include a bulk polymer material defining a plurality of nanovoids and an interfacial film disposed at an interface between each of the plurality of nanovoids and the bulk polymer material. The interfacial film may include one or more layers of material. A method of forming a nanovoided polymer-based material may include (1) forming a bulk polymer material defining a plurality of nanovoids and (2) forming an interfacial film at an interface between each of the plurality of nanovoids and the bulk polymer material. Various other methods, systems, and materials are also disclosed.
    Type: Grant
    Filed: July 15, 2019
    Date of Patent: July 26, 2022
    Assignee: Facebook Technologies, LLC
    Inventors: Kenneth Diest, Andrew John Ouderkirk, Renate Eva Klementine Landig, Spencer Allan Wells, Katherine Marie Smyth
  • Patent number: 11296274
    Abstract: An example device includes a nanovoided polymer element, a first electrode, and a second electrode. The nanovoided polymer element may be located at least in part between the first electrode and the second electrode. In some examples, the nanovoided polymer element may include anisotropic voids. In some examples, anisotropic voids may be elongated along one or more directions. In some examples, the anisotropic voids are configured so that a polymer wall thickness between neighboring voids is generally uniform. Example devices may include a spatially addressable electroactive device, such as an actuator or a sensor, and/or may include an optical element. A nanovoided polymer layer may include one or more polymer components, such as an electroactive polymer.
    Type: Grant
    Filed: December 4, 2019
    Date of Patent: April 5, 2022
    Assignee: Facebook Technologies, LLC
    Inventors: Andrew Spann, Eric Schmitt, Nagi Elabbasi, Kenneth Diest, Katherine Marie Smyth, Renate Eva Klementine Landig, Andrew John Ouderkirk
  • Patent number: 11256331
    Abstract: Embodiments of the present disclosure are generally directed to apparatuses, systems, and methods that utilize electroactive devices in connection with haptic devices (e.g., haptic touch sensors or haptic feedback elements). In some examples, a haptic feedback system may include an array of electroactive devices, each electroactive device including 1) a first electrode, 2) a second electrode, and 3) an electroactive polymer element disposed between the first electrode and the second electrode. The electroactive polymer element may include a nanovoided polymer material that is mechanically deformable in response to an electric field generated by a potential difference between the first electrode and the second electrode. The system may also include control circuitry electronically coupled to the array and configured to apply a voltage to at least one of the first electrode or the second electrode. Various other apparatuses, systems, and methods are also disclosed.
    Type: Grant
    Filed: June 4, 2019
    Date of Patent: February 22, 2022
    Assignee: Facebook Technologies, LLC
    Inventors: Kenneth Diest, Andrew John Ouderkirk, Renate Eva Klementine Landig, Katherine Marie Smyth, Christopher Yuan Ting Liao, Jack Lindsay
  • Patent number: 11233189
    Abstract: A form birefringent optical element includes a structured layer and a dielectric environment disposed over the structured layer. At least one of the structured layer and the dielectric environment includes a nanovoided polymer, the nanovoided polymer having a first refractive index in an unactuated state and a second refractive index different than the first refractive index in an actuated state. Actuation of the nanovoided polymer can be used to reversibly control the form birefringence of the optical element. Various other apparatuses, systems, materials, and methods are also disclosed.
    Type: Grant
    Filed: January 30, 2019
    Date of Patent: January 25, 2022
    Assignee: Facebook Technologies, LLC
    Inventors: Kenneth Diest, Andrew John Ouderkirk, Gregory Olegovic Andreev, Erik Shipton, Tanya Malhotra, Barry David Silverstein, Christopher Yuan Ting Liao
  • Patent number: 11189258
    Abstract: An acoustic element includes a nanovoided polymer layer having a first nanovoid topology in an unactuated state and a second nanovoid topology different than the first nanovoid topology in an actuated state. Capacitive actuation of the nanovoided polymer layer, for instance, can be used to reversibly control the size and shape of the nanovoids within the polymer layer and hence tune its sound damping characteristics or sound transduction behavior, e.g., during operation of the acoustic element. An acoustic element may be configured for passive or active sound attenuation. Various other apparatuses, systems, materials, and methods are also disclosed.
    Type: Grant
    Filed: January 6, 2020
    Date of Patent: November 30, 2021
    Assignee: Facebook Technologies, LLC
    Inventors: Renate Eva Klementine Landig, Kenneth Diest, Andrew John Ouderkirk
  • Patent number: 11139756
    Abstract: In some embodiments, a device, such as a transducer, includes a polymer element disposed between electrodes, and a control circuit configured to apply electrical potentials having the same polarity to the electrodes. A separation distance between the electrodes may be increased by an electrostatic repulsion between the electrodes. Various other devices, systems, methods, and computer-readable media are also disclosed.
    Type: Grant
    Filed: December 11, 2018
    Date of Patent: October 5, 2021
    Assignee: Facebook Technologies, LLC
    Inventors: Yigit Mengue, Andrew John Ouderkirk, Christopher Yuan Ting Liao, Katherine Marie Smyth, Thomas John Farrell Wallin, Jack Lindsay, Austin Lane, Tanya Malhotra, Kenneth Diest
  • Patent number: 11133455
    Abstract: An example device includes a nanovoided polymer element, which may be located at least in part between the electrodes. In some examples, the nanovoided polymer element may include anisotropic voids, including a gas, and separated from each other by polymer walls. The device may be an electroactive device, such as an actuator having a response time for a transition between actuation states. The gas may have a characteristic diffusion time (e.g., to diffuse half the mean wall thickness through the polymer walls) that is less than the response time. The nanovoids may be sufficiently small (e.g., below 1 micron in diameter or an analogous dimension), and/or the polymer walls may be sufficiently thin, such that the gas interchange between gas in the voids and gas absorbed by the polymer walls may occur faster than the response time, and in some examples, effectively instantaneously.
    Type: Grant
    Filed: December 4, 2019
    Date of Patent: September 28, 2021
    Assignee: Facebook Technologies, LLC
    Inventors: Andrew Spann, Eric Schmitt, Nagi Elabbasi, Kenneth Diest, Katherine Marie Smyth, Renate Eva Klementine Landig, Andrew John Ouderkirk
  • Patent number: 11107972
    Abstract: An optical element includes a nanovoided polymer layer having a first refractive index in an unactuated state and a second refractive index different than the first refractive index in an actuated state. Compression or expansion of the nanovoided polymer layer, for instance, can be used to reversibly control the size and shape of the nanovoids within the polymer layer and hence tune its refractive index over a range of values, e.g., during operation of the optical element. Various other apparatuses, systems, materials, and methods are also disclosed.
    Type: Grant
    Filed: January 30, 2019
    Date of Patent: August 31, 2021
    Assignee: Facebook Technologies, LLC
    Inventors: Kenneth Diest, Andrew John Ouderkirk, Robin Sharma, Tanya Malhotra, Barry David Silverstein, Christopher Yuan Ting Liao, Erik Shipton, Gregory Olegovic Andreev
  • Patent number: 11073697
    Abstract: Embodiments of the disclosure are generally directed to systems and methods for switchable electroactive devices for head-mounted displays (HMDs). In particular, a method may include (1) applying an electric field to an electroactive element of an electroactive device via electrodes of the electroactive device that are electrically coupled to the electroactive element to compress the electroactive element, which comprises a polymer material defining nanovoids, such that an average size of the nanovoids is decreased and a density of the nanovoids is increased in the electroactive element, wherein the electroactive device is positioned at a distance from a user's eye, and (2) emitting image light from an emissive device positioned such that at least a portion of the image light is incident on a surface of the electroactive device facing the user's eye.
    Type: Grant
    Filed: March 12, 2019
    Date of Patent: July 27, 2021
    Assignee: Facebook Technologies, LLC
    Inventors: Robin Sharma, Andrew John Ouderkirk, Tanya Malhotra, Kenneth Diest, Gregory Olegovic Andreev, Erik Shipton, Christopher Yuan Ting Liao, Barry David Silverstein