Patents by Inventor James Sturm

James Sturm 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: 12316435
    Abstract: Systems and methods disclosed herein provide for a passive backscattering beamformer based on large-area electronics (LAE). Low power is critical for distributed nodes in future IoT/5G networks. A key emerging solution is using ubiquitous 2.4 GHz Wi-Fi infrastructure with passive backscattering nodes, for low-power communication. LAE enables monolithic integration of devices over large and flexible substrates, with recent advances into the gigahertz regime opening new opportunities for wireless systems. An LAE passive backscattering beamformer is chosen that is capable of (1) enhancing the backscattered signal power in a scalable manner enabled by LAE's monolithic integrability over meter-scale area; (2) configuration between constructive/destructive beamforming; (3) frequency-shift keying for data modulation and SNR enhancement, by shifting the signal away from the incident interferer; and (4) frequency division multiplexing for increasing data bandwidth.
    Type: Grant
    Filed: November 23, 2022
    Date of Patent: May 27, 2025
    Assignee: The Trustees of Princeton University
    Inventors: Can Wu, Yue Ma, Naveen Verma, James Sturm, Sigurd Wagner
  • Publication number: 20240313857
    Abstract: Systems and methods disclosed herein provide for a passive backscattering beamformer based on large-area electronics (LAE). Low power is critical for distributed nodes in future IoT/5G networks. A key emerging solution is using ubiquitous 2.4 GHz Wi-Fi infrastructure with passive backscattering nodes, for low-power communication. LAE enables monolithic integration of devices over large and flexible substrates, with recent advances into the gigahertz regime opening new opportunities for wireless systems. An LAE passive backscattering beamformer is chosen that is capable of (1) enhancing the backscattered signal power in a scalable manner enabled by LAE's monolithic integrability over meter-scale area; (2) configuration between constructive/destructive beamforming; (3) frequency-shift keying for data modulation and SNR enhancement, by shifting the signal away from the incident interferer; and (4) frequency division multiplexing for increasing data bandwidth.
    Type: Application
    Filed: November 23, 2022
    Publication date: September 19, 2024
    Inventors: Can Wu, Yue Ma, Naveen Verma, James Sturm, Sigurd Wagner
  • Publication number: 20170239658
    Abstract: In some embodiments, a method for manipulating DNA molecules for use in a microfluidic device is provided, where the method may comprise providing a solution of a plurality of DNA molecules having a first radius of gyration under under a zero flow velocity, and maintaining the DNA molecules in a spherical shape under a flow velocity.
    Type: Application
    Filed: October 16, 2015
    Publication date: August 24, 2017
    Inventors: Ezra S. ABRAMS, T. Christian BOLES, Yu CHEN, James STURM, Robert AUSTIN
  • Patent number: 9391220
    Abstract: A system and method for interfacing large-area electronics with integrated circuit devices is provided. The system may be implemented in an electronic device including a large area electronic (LAE) device disposed on a substrate. An integrated circuit IC is disposed on the substrate. A non-contact interface is disposed on the substrate and coupled between the LAE device and the IC. The non-contact interface is configured to provide at least one of a data acquisition path or control path between the LAE device and the IC.
    Type: Grant
    Filed: February 7, 2012
    Date of Patent: July 12, 2016
    Assignee: The Trustees of Princeton University
    Inventors: Naveen Verma, Branko Glisic, James Sturm, Sigurd Wagner
  • Publication number: 20120200168
    Abstract: A system and method for interfacing large-area electronics with integrated circuit devices is provided. The system may be implemented in an electronic device including a large area electronic (LAE) device disposed on a substrate. An integrated circuit IC is disposed on the substrate. A non-contact interface is disposed on the substrate and coupled between the LAE device and the IC. The non-contact interface is configured to provide at least one of a data acquisition path or control path between the LAE device and the IC.
    Type: Application
    Filed: February 7, 2012
    Publication date: August 9, 2012
    Applicant: THE TRUSTEES OF PRINCETON UNIVERSITY
    Inventors: Naveen Verma, Branko Glisic, James Sturm, Sigurd Wagner
  • Patent number: 7735652
    Abstract: The invention is directed to an apparatus and a method of separating particles, such as cells, from a heterogeneous fluid, such as blood, where the particles have a large range of sizes.
    Type: Grant
    Filed: May 31, 2007
    Date of Patent: June 15, 2010
    Assignee: The Trustees of Princeton University
    Inventors: David William Inglis, John Davis, Robert Austin, James Sturm
  • Publication number: 20080023399
    Abstract: The invention is directed to an apparatus and a method of separating particles, such as cells, from a heterogeneous fluid, such as blood, where the particles have a large range of sizes.
    Type: Application
    Filed: May 31, 2007
    Publication date: January 31, 2008
    Inventors: David Inglis, John Davis, Robert Austin, James Sturm
  • Publication number: 20070187250
    Abstract: The present invention relates to methods and devices for separating particles according to size. More specifically, the present invention relates to a microfluidic method and device for the separation of particles according to size using an array comprising a network of gaps, wherein the field flux from each gap divides unequally into subsequent gaps. In one embodiment, the array comprises an ordered array of obstacles in a microfluidic channel, in which the obstacle array is asymmetric with respect to the direction of an applied field.
    Type: Application
    Filed: December 15, 2006
    Publication date: August 16, 2007
    Inventors: Lotien Huang, James Sturm
  • Publication number: 20070069243
    Abstract: The present invention provides an apparatus and a method of fabricating the apparatus. The apparatus comprises a substrate having a planar surface and first and second electrodes located on the planar surface. The first electrode has a top surface and a lateral surface, and the lateral surface has an edge near or in contact with the substrate. An electrode insulating layer is located on the top surface and a self-assembled layer located on the lateral surface. The second electrode is in contact with both the self-assembled layer and the electrode insulating layer.
    Type: Application
    Filed: June 16, 2006
    Publication date: March 29, 2007
    Applicants: Lucent Technologies Inc., Princeton University
    Inventors: Zhenan Bao, Jie Zheng, James Sturm, Troy Graves-Abe
  • Publication number: 20050161331
    Abstract: A method and apparatus for fractionation of charged macro-molecules such as DNA is provided. DNA solution is loaded into a matrix including an array of obstacles. An alternating electric field having two different fields at different orientations is applied. The alternating electric field is asymmetric in that one field is stronger in duration or intensity than the other field, or is otherwise asymmetric. The DNA molecules are thereby fractionated according to site and are driven to a far side of the matrix where the fractionated DNA is recovered. The fractionating electric field can be used to load and recover the DNA to operate the process continuously.
    Type: Application
    Filed: March 9, 2005
    Publication date: July 28, 2005
    Inventors: Lotien Huang, James Sturm, Robert Austin
  • Publication number: 20050014357
    Abstract: The present invention provides an apparatus and a method of fabricating the apparatus. The apparatus comprises a substrate having a planar surface and first and second electrodes located on the planar surface. The first electrode has a top surface and a lateral surface, and the lateral surface has an edge near or in contact with the substrate. An electrode insulating layer is located on the top surface and a self-assembled layer located on the lateral surface. The second electrode is in contact with both the self-assembled layer and the electrode insulating layer.
    Type: Application
    Filed: March 18, 2004
    Publication date: January 20, 2005
    Applicants: Lucent Technologies Inc., Princeton University
    Inventors: Zhenan Bao, Jie Zheng, James Sturm, Troy Graves-Abe