Patents by Inventor Bulent Arda Gozen

Bulent Arda Gozen 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: 11903139
    Abstract: The disclosure describes a soft-matter electronic device having micron-scale features, and methods to fabricate the electronic device. In some embodiments, the device comprises an elastomer mold having microchannels, which are filled with an eutectic alloy to create an electrically conductive element. The microchannels are sealed with a polymer to prevent the alloy from escaping the microchannels. In some embodiments, the alloy is drawn into the microchannels using a micro-transfer printing technique. Additionally, the molds can be created using soft-lithography or other fabrication techniques. The method described herein allows creation of micron-scale circuit features with a line width and spacing that is an order-of-magnitude smaller than those previously demonstrated.
    Type: Grant
    Filed: February 22, 2021
    Date of Patent: February 13, 2024
    Assignee: CARNEGIE MELLON UNIVERSITY
    Inventors: Carmel Majidi, Burak Ozdoganlar, Arya Tabatabai, Bulent Arda Gozen
  • Patent number: 11523769
    Abstract: Devices and methods for simultaneously measuring, in real time: 1) volumetric changes of a mammalian breast due to milk production and output, and 2) breast temperature, are provided. The devices are generally sensors which can be disposed within a wearable garment such as a bra.
    Type: Grant
    Filed: May 31, 2018
    Date of Patent: December 13, 2022
    Assignee: WASHINGTON STATE UNIVERSITY
    Inventors: Bulent Arda Gozen, Michelle Kay McGuire, Abhishek Gannarapu, Kimberly Ann Lackey, Tyler Nelson Meine, Dallas Daaren Chang
  • Publication number: 20210204410
    Abstract: The disclosure describes a soft-matter electronic device having micron-scale features, and methods to fabricate the electronic device. In some embodiments, the device comprises an elastomer mold having microchannels, which are filled with an eutectic alloy to create an electrically conductive element. The microchannels are sealed with a polymer to prevent the alloy from escaping the microchannels. In some embodiments, the alloy is drawn into the microchannels using a micro-transfer printing technique. Additionally, the molds can be created using soft-lithography or other fabrication techniques. The method described herein allows creation of micron-scale circuit features with a line width and spacing that is an order-of-magnitude smaller than those previously demonstrated.
    Type: Application
    Filed: February 22, 2021
    Publication date: July 1, 2021
    Applicant: CARNEGIE MELLON UNIVERSITY
    Inventors: Carmel Majidi, Burak Ozdoganlar, Arya Tabatabai, Bulent Arda Gozen
  • Patent number: 10945339
    Abstract: The disclosure describes a soft-matter electronic device having micron-scale features, and methods to fabricate the electronic device. In some embodiments, the device comprises an elastomer mold having microchannels, which are filled with an eutectic alloy to create an electrically conductive element. The microchannels are sealed with a polymer to prevent the alloy from escaping the microchannels. In some embodiments, the alloy is drawn into the microchannels using a micro-transfer printing technique. Additionally, the molds can be created using soft-lithography or other fabrication techniques. The method described herein allows creation of micron-scale circuit features with a line width and spacing that is an order-of-magnitude smaller than those previously demonstrated.
    Type: Grant
    Filed: February 9, 2016
    Date of Patent: March 9, 2021
    Assignee: CARNEGIE MELLON UNIVERSITY
    Inventors: Carmel Majidi, Burak Ozdoganlar, Arya Tabatabai, Bulent Arda Gozen
  • Publication number: 20200100721
    Abstract: Devices and methods for simultaneously measuring, in real time: 1) volumetric changes of a mammalian breast due to milk production and output, and 2) breast temperature, are provided. The devices are generally sensors which can be disposed within a wearable garment such as a bra.
    Type: Application
    Filed: May 31, 2018
    Publication date: April 2, 2020
    Inventors: Bulent Arda GOZEN, Michelle Kay MCGUIRE, Abhishek GANNARAPU, Kimberly Ann LACKEY, Tyler Nelson MEINE, Dallas Daaren CHANG
  • Publication number: 20160234931
    Abstract: The disclosure describes a soft-matter electronic device having micron-scale features, and methods to fabricate the electronic device. In some embodiments, the device comprises an elastomer mold having microchannels, which are filled with an eutectic alloy to create an electrically conductive element. The microchannels are sealed with a polymer to prevent the alloy from escaping the microchannels. In some embodiments, the alloy is drawn into the microchannels using a micro-transfer printing technique. Additionally, the molds can be created using soft-lithography or other fabrication techniques. The method described herein allows creation of micron-scale circuit features with a line width and spacing that is an order-of-magnitude smaller than those previously demonstrated.
    Type: Application
    Filed: February 9, 2016
    Publication date: August 11, 2016
    Applicant: CARNEGIE MELLON UNIVERSITY, a Pennsylvania Non-Pro fit Corporation
    Inventors: Carmel Majidi, Burak Ozdoganlar, Arya Tabatabai, Bulent Arda Gozen