Patents by Inventor Nishit Murari

Nishit Murari 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: 11934081
    Abstract: An electro-optic device, and its method of manufacturing, is disclosed comprises a first substrate layer, a conductive film comprising a first adhesive layer and a first electrode layer, an electro-optic material layer, and a second electrode layer. The first electrode layer, which is on contact with the electro-optic material layer, comprises a conductive material, such as conductive particles, a metallic material or a conductive polymer. The first adhesive layer has high storage modulus and does not exhibit plastic flow under the conditions of manufacturing, storage, and operation of the electro-optic device. The conductive film does not conform to the surface roughness of the first surface of the electro-optic material layer. The conductive film may be designed to be thin, flexible and transparent. The resulting electro-optic device exhibit excellent electro-optic performance even where the electro-optic material layer has imperfections in the form of gaps.
    Type: Grant
    Filed: December 7, 2020
    Date of Patent: March 19, 2024
    Assignee: E Ink Corporation
    Inventors: Nishit Murari, Jay William Anseth
  • Patent number: 11892739
    Abstract: A method for making electrophoretic displays layers including various thin films that are deposited directly onto a layer of microcapsules of electrophoretic media. In an embodiment, a thin film of a light-transmissive conductive material is deposited to create a clear front electrode for an electrophoretic display. In some embodiments, both a dielectric layer and a thin film of a light-transmissive conductive material will be deposited onto the microcapsules.
    Type: Grant
    Filed: February 4, 2021
    Date of Patent: February 6, 2024
    Assignee: E Ink Corporation
    Inventors: Nishit Murari, Pavel Kamaev, David Darrell Miller, Richard J. Paolini, Jr., Jay William Anseth
  • Publication number: 20230197310
    Abstract: A multi-laver device and its method of manufacture are disclosed. The multi-layer device comprises a first electrode layer, a first repair layer, a functional layer, and a second electrode layer. The first repair layer comprises a conductive hydrogel film or conductive hydrogel beads, the conductive hydrogel film or the conductive hydrogel beads comprising conductive filler particles dispersed in a cross-linked polymer. The repair layer protects the multi-layer device from electrical short circuits. A multilayer device is also disclosed including a light-transmissive electrode layer comprising a porous mesh or porous spheres.
    Type: Application
    Filed: November 29, 2022
    Publication date: June 22, 2023
    Inventor: Nishit MURARI
  • Publication number: 20230194914
    Abstract: A multi-layer device and its method of manufacture are disclosed. The multi-layer device comprises a first electrode layer, a first repair layer, a functional layer, and a second electrode layer. The first repair layer comprises a conductive hydrogel film or conductive hydrogel beads, the conductive hydrogel film or the conductive hydrogel beads comprising conductive filler particles dispersed in a cross-linked polymer. The repair layer protects the multi-layer device from electrical short circuits. A multi-layer device is also disclosed including a light-transmissive electrode layer comprising a porous mesh or porous spheres.
    Type: Application
    Filed: November 29, 2022
    Publication date: June 22, 2023
    Inventor: Nishit MURARI
  • Patent number: 11422427
    Abstract: An image is formed on an architectural surface by applying to the surface, in order: a rear electrode layer; a light-transmissive front electrode layer; a photoconductive layer disposed between the front and rear electrode layers; and an electro-optic layer disposed between the front and rear electrode layers. A potential difference is applied between the front and rear electrode layers and the front electrode layer is imagewise exposed to radiation which causes a change in the conductivity of the photoconductive layer, thereby causing an imagewise change in the optical state of the electro-optic layer. Films for application to architectural surfaces are also provided.
    Type: Grant
    Filed: December 19, 2018
    Date of Patent: August 23, 2022
    Assignee: E Ink Corporation
    Inventors: Jay William Anseth, Richard J. Paolini, Jr., Stephen J. Telfer, Yelena Kann, Thomas S. Blaine, Nishit Murari
  • Publication number: 20220252954
    Abstract: An image is formed on an architectural surface by applying to the surface, in order: a rear electrode layer; a light-transmissive front electrode layer; a photoconductive layer disposed between the front and rear electrode layers; and an electro-optic layer disposed between the front and rear electrode layers. A potential difference is applied between the front and rear electrode layers and the front electrode layer is imagewise exposed to radiation which causes a change in the conductivity of the photoconductive layer, thereby causing an imagewise change in the optical state of the electro-optic layer. Films for application to architectural surfaces are also provided.
    Type: Application
    Filed: April 25, 2022
    Publication date: August 11, 2022
    Inventors: Jay William Anseth, Richard J. Paolini, JR., Stephen J. Telfer, Yelena Kann, Thomas S. Blaine, Nishit Murari
  • Publication number: 20210247656
    Abstract: A method for making electrophoretic displays layers including various thin films that are deposited directly onto a layer of microcapsules of electrophoretic media. In an embodiment, a thin film of a light-transmissive conductive material is deposited to create a clear front electrode for an electrophoretic display. In some embodiments, both a dielectric layer and a thin film of a light-transmissive conductive material will be deposited onto the microcapsules.
    Type: Application
    Filed: February 4, 2021
    Publication date: August 12, 2021
    Inventors: Nishit MURARI, Pavel KAMAEV, David Darrell MILLER, Richard J. PAOLINI, JR., Jay William ANSETH
  • Publication number: 20210191224
    Abstract: An electro-optic device, and its method of manufacturing, is disclosed comprises a first substrate layer, a conductive film comprising a first adhesive layer and a first electrode layer, an electro-optic material layer, and a second electrode layer. The first electrode layer, which is on contact with the electro-optic material layer, comprises a conductive material, such as conductive particles, a metallic material or a conductive polymer. The first adhesive layer has high storage modulus and does not exhibit plastic flow under the conditions of manufacturing, storage, and operation of the electro-optic device. The conductive film does not conform to the surface roughness of the first surface of the electro-optic material layer. The conductive film may be designed to be thin, flexible and transparent. The resulting electro-optic device exhibit excellent electro-optic performance even where the electro-optic material layer has imperfections in the form of gaps.
    Type: Application
    Filed: December 7, 2020
    Publication date: June 24, 2021
    Inventors: Nishit MURARI, Jay William ANSETH
  • Publication number: 20190187533
    Abstract: An image is formed on an architectural surface by applying to the surface, in order: a rear electrode layer; a light-transmissive front electrode layer; a photoconductive layer disposed between the front and rear electrode layers; and an electro-optic layer disposed between the front and rear electrode layers. A potential difference is applied between the front and rear electrode layers and the front electrode layer is imagewise exposed to radiation which causes a change in the conductivity of the photoconductive layer, thereby causing an imagewise change in the optical state of the electro-optic layer. Films for application to architectural surfaces are also provided.
    Type: Application
    Filed: December 19, 2018
    Publication date: June 20, 2019
    Inventors: Jay William Anseth, Richard J. Paolini, JR., Stephen J. Telfer, Yelena Kann, Thomas S. Blaine, Nishit Murari