Patents by Inventor Deepesh K. Kholwadwala

Deepesh K. Kholwadwala 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: 10993665
    Abstract: Embodiments of neural interfaces according to the present invention comprise sensor modules for sensing environmental attributes beyond the natural sensory capability of a subject, and communicating the attributes wirelessly to an external (ex-vivo) portable module attached to the subject. The ex-vivo module encodes and communicates the attributes via a transcutaneous inductively coupled link to an internal (in-vivo) module implanted within the subject. The in-vivo module converts the attribute information into electrical neural stimuli that are delivered to a peripheral nerve bundle within the subject, via an implanted electrode. Methods and apparatus according to the invention incorporate implantable batteries to power the in-vivo module allowing for transcutaneous bidirectional communication of low voltage (e.g. on the order of 5 volts) encoded signals as stimuli commands and neural responses, in a robust, low-error rate, communication channel with minimal effects to the subjects' skin.
    Type: Grant
    Filed: January 20, 2017
    Date of Patent: May 4, 2021
    Assignee: National Technology & Engineering Solutions of Sandia, LLC
    Inventors: Stephen P. Buerger, Kenneth E. Wojciechowski, Roy H. Olsson, Deepesh K. Kholwadwala, David K. Novick
  • Patent number: 9549704
    Abstract: Embodiments of neural interfaces according to the present invention comprise sensor modules for sensing environmental attributes beyond the natural sensory capability of a subject, and communicating the attributes wirelessly to an external (ex-vivo) portable module attached to the subject. The ex-vivo module encodes and communicates the attributes via a transcutaneous inductively coupled link to an internal (in-vivo) module implanted within the subject. The in-vivo module converts the attribute information into electrical neural stimuli that are delivered to a peripheral nerve bundle within the subject, via an implanted electrode. Methods and apparatus according to the invention incorporate implantable batteries to power the in-vivo module allowing for transcutaneous bidirectional communication of low voltage (e.g. on the order of 5 volts) encoded signals as stimuli commands and neural responses, in a robust, low-error rate, communication channel with minimal effects to the subjects' skin.
    Type: Grant
    Filed: June 11, 2008
    Date of Patent: January 24, 2017
    Assignee: Sandia Corporation
    Inventors: Stephen P. Buerger, Roy H. Olsson, III, Kenneth E. Wojciechowski, David K. Novick, Deepesh K. Kholwadwala
  • Patent number: 7426873
    Abstract: Footwear comprises a sole and a plurality of sealed cavities contained within the sole. The sealed cavities can be incorporated as deformable containers within an elastic medium, comprising the sole. A plurality of micro electro-mechanical system (MEMS) pressure sensors are respectively contained within the sealed cavity plurality, and can be adapted to measure static and dynamic pressure within each of the sealed cavities. The pressure measurements can provide information relating to the contact pressure distribution between the sole of the footwear and the wearer's environment.
    Type: Grant
    Filed: May 4, 2006
    Date of Patent: September 23, 2008
    Assignee: Sandia Corporation
    Inventors: Deepesh K. Kholwadwala, Brandon R. Rohrer, Barry L. Spletzer, Paul C. Galambos, Jason W. Wheeler, Clinton G. Hobart, Richard C. Givler
  • Patent number: 7246524
    Abstract: The present invention comprises a novel, lightweight, massively parallel device comprising microelectromechanical (MEMS) fluidic actuators, to reconfigure the profile, of a surface. Each microfluidic actuator comprises an independent bladder that can act as both a sensor and an actuator. A MEMS sensor, and a MEMS valve within each microfluidic actuator, operate cooperatively to monitor the fluid within each bladder, and regulate the flow of the fluid entering and exiting each bladder. When adjacently spaced in a array, microfluidic actuators can create arbitrary surface profiles in response to a change in the operating environment of the surface. In an embodiment of the invention, the profile of an airfoil is controlled by independent extension and contraction of a plurality of actuators, that operate to displace a compliant cover.
    Type: Grant
    Filed: May 2, 2005
    Date of Patent: July 24, 2007
    Assignee: Sandia Corporation
    Inventors: Deepesh K. Kholwadwala, Gabriel A. Johnston, Brandon R. Rohrer, Paul C. Galambos, Murat Okandan