Patents by Inventor Jennifer Mann

Jennifer Mann 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: 9396829
    Abstract: A cable having a conducting member made from a nanostructure-based material, and a shielding layer made of nanostructure-based material. The shielding layer can be circumferentially situated about the conducting member so as to enhance conductivity along the conducting member. A coupling mechanism may be situated between the shielding layer and the conducting member so as to secure the shielding layer in its position on the conducting member. A method of making the cable is also disclosed.
    Type: Grant
    Filed: August 29, 2014
    Date of Patent: July 19, 2016
    Assignee: Nanocomp Technologies, Inc.
    Inventors: Jennifer Mann, David S. Lashmore, Brian White, Peter L. Antoinette
  • Publication number: 20160086695
    Abstract: A conductive adapter for carrying relatively high current from a source to an external circuit without degradation is provided. The adapter includes a conducting member made from a conductive nanostructure-based material and having opposing ends. The adapter can also include a connector portion positioned on one end of the conducting member for maximizing a number of conductive nanostructures within the conducting member in contact with connector portion, so as to enable efficient conduction between a nanoscale environment and a traditional electrical and/or thermal circuit system. The adapter can further include a coupling mechanism situated between the conducting member and the connector portion, to provide a substantially uniform contact between the conductive nanostructure-based material in the conducting member and the connector portion. A method for making such a conductive adapter is also provided.
    Type: Application
    Filed: December 1, 2015
    Publication date: March 24, 2016
    Inventors: Jennifer Mann, David S. Lashmore, Brian White, Peter L. Antoinette
  • Patent number: 9236669
    Abstract: A conductive adapter for carrying relatively high current from a source to an external circuit without degradation is provided. The adapter includes a conducting member made from a conductive nanostructure-based material and having opposing ends. The adapter can also include a connector portion positioned on one end of the conducting member for maximizing a number of conductive nanostructures within the conducting member in contact with connector portion, so as to enable efficient conduction between a nanoscale environment and a traditional electrical and/or thermal circuit system. The adapter can further include a coupling mechanism situated between the conducting member and the connector portion, to provide a substantially uniform contact between the conductive nanostructure-based material in the conducting member and the connector portion. A method for making such a conductive adapter is also provided.
    Type: Grant
    Filed: August 6, 2008
    Date of Patent: January 12, 2016
    Assignee: Nanocomp Technologies, Inc.
    Inventors: Jennifer Mann, David S. Lashmore, Brian White
  • Publication number: 20150107890
    Abstract: A cable having a conducting member made from a nanostructure-based material, and a shielding layer made of nanostructure-based material. The shielding layer can be circumferentially situated about the conducting member so as to enhance conductivity along the conducting member. A coupling mechanism may be situated between the shielding layer and the conducting member so as to secure the shielding layer in its position on the conducting member. A method of making the cable is also disclosed.
    Type: Application
    Filed: August 29, 2014
    Publication date: April 23, 2015
    Inventors: Jennifer Mann, David S. Lashmore, Brian White, Peter L. Antoinette
  • Patent number: 8847074
    Abstract: A cable having a conducting member made from a nanostructure-based material, and a shielding layer made of nanostructure-based material. The shielding layer can be circumferentially situated about the conducting member so as to enhance conductivity along the conducting member. A coupling mechanism may be situated between the shielding layer and the conducting member so as to secure the shielding layer in its position on the conducting member. A method of making the cable is also disclosed.
    Type: Grant
    Filed: May 7, 2009
    Date of Patent: September 30, 2014
    Assignee: Nanocomp Technologies
    Inventors: Jennifer Mann, David S. Lashmore, Brian White, Peter L. Antoinette
  • Publication number: 20120177926
    Abstract: A nanostructured sheet that can include a substantially planar body, a plurality of nanotubes defining a matrix within the body, and a protonation agent that can be dispersed throughout the matrix of nanotubes for enhancing proximity of adjacent nanotubes to one another. A method of making such a nanostructured sheet is also disclosed.
    Type: Application
    Filed: May 7, 2009
    Publication date: July 12, 2012
    Inventors: Jennifer Mann, David S. Lashmore, Brian White, Peter L. Antoinette
  • Publication number: 20100000754
    Abstract: A cable having a conducting member made from a nanostructure-based material, and a shielding layer made of nanostructure-based material. The shielding layer can be circumferentially situated about the conducting member so as to enhance conductivity along the conducting member. A coupling mechanism may be situated between the shielding layer and the conducting member so as to secure the shielding layer in its position on the conducting member. A method of making the cable is also disclosed.
    Type: Application
    Filed: May 7, 2009
    Publication date: January 7, 2010
    Inventors: Jennifer Mann, David S. Lashmore, Brian White, Peter L. Antoinette
  • Publication number: 20090044848
    Abstract: A thermoelectric device that can exhibit substantially high specific power density is provided. The device includes core having a p-type element made from carbon nanotube and an n-type element. The device also includes a heat plate in and a cool plate, between which the core can be positioned. The design of the thermoelectric device allows the device to operate at substantially high temperature and to generate substantially high power output, despite being light weight. A method for making the thermoelectric device is also provided.
    Type: Application
    Filed: August 14, 2008
    Publication date: February 19, 2009
    Inventors: David S. Lashmore, Meghann White, Brian White, David Degtiarov, Jennifer Mann
  • Publication number: 20090042455
    Abstract: A conductive adapter for carrying relatively high current from a source to an external circuit without degradation is provided. The adapter includes a conducting member made from a conductive nanostructure-based material and having opposing ends. The adapter can also include a connector portion positioned on one end of the conducting member for maximizing a number of conductive nanostructures within the conducting member in contact with connector portion, so as to enable efficient conduction between a nanoscale environment and a traditional electrical and/or thermal circuit system. The adapter can further include a coupling mechanism situated between the conducting member and the connector portion, to provide a substantially uniform contact between the conductive nanostructure-based material in the conducting member and the connector portion. A method for making such a conductive adapter is also provided.
    Type: Application
    Filed: August 6, 2008
    Publication date: February 12, 2009
    Inventors: Jennifer Mann, David S. Lashmore, Brian White