Patents by Inventor SURESHBABU SUNDARAM

SURESHBABU SUNDARAM 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: 10282571
    Abstract: Disclosed is a self-test device and method for assessing the functional performance of a reader device that is configured to interface with a wireless sensor. The self-test device may be configured to analyze the accuracy of a signal transmitted from the reader device or the accuracy of a signal received by the reader device. In one embodiment, the reader device may be configured to engage the self-test device to allow the reader to transmit a signal, such as a short pulse of energy or a short burst of radio frequency energy to cause the self-test device to output a resonant signal. The self-test device may receive the transmit signal from the reader and evaluate it against predetermined values. The evaluated signals may be used to assess the accuracy of the transmit signal of the reader device to identify potential calibration issues and initiate remedial action by an automated system or human intervention if needed.
    Type: Grant
    Filed: June 11, 2018
    Date of Patent: May 7, 2019
    Assignee: Endotronix, Inc.
    Inventors: Balamurugan Sundaram, Michael Nagy, Douglas Nielsen, Sureshbabu Sundaram
  • Publication number: 20180293409
    Abstract: Disclosed is a self-test device and method for assessing the functional performance of a reader device that is configured to interface with a wireless sensor. The self-test device may be configured to analyze the accuracy of a signal transmitted from the reader device or the accuracy of a signal received by the reader device. In one embodiment, the reader device may be configured to engage the self-test device to allow the reader to transmit a signal, such as a short pulse of energy or a short burst of radio frequency energy to cause the self-test device to output a resonant signal. The self-test device may receive the transmit signal from the reader and evaluate it against predetermined values. The evaluated signals may be used to assess the accuracy of the transmit signal of the reader device to identify potential calibration issues and initiate remedial action by an automated system or human intervention if needed.
    Type: Application
    Filed: June 11, 2018
    Publication date: October 11, 2018
    Inventors: Balamurugan Sundaram, Michael Nagy, Douglas Nielsen, Sureshbabu Sundaram
  • Patent number: 10076384
    Abstract: A microwave ablation system and method is disclosed comprising a balloon catheter apparatus and a control system. The balloon catheter apparatus comprises a catheter configured to house a coaxial cable and one or more coolant channels, an inflatable balloon located at the distal end of the catheter, and an antenna positioned in the inflatable balloon and in communication with the coaxial cable. The control system comprises a fluid pump configured to introduce fluid into a proximal end of the catheter, a power amplifier capable of generating microwave energy for delivery to the target tissue zone for at least one energy application cycle ranging from 60 seconds to 600 seconds at a frequency ranging from 2.4 GHz to 2.5 GHz, and a computer system configured to monitor and/or regulate the delivery of microwave energy to the target tissue, the fluid pump, at least one sensor, and antenna reflected power.
    Type: Grant
    Filed: September 10, 2014
    Date of Patent: September 18, 2018
    Assignee: Symple Surgical, Inc.
    Inventors: Daniel Kasprzyk, Justin Preston, Seth Crozier, Sohail Desai, Roger D Watkins, Balamurugan Sundaram, Sureshbabu Sundaram
  • Patent number: 9024704
    Abstract: This invention provides a novel electronically tunable active duplexer for wireless transceiver applications. It relates to an active duplexer with full-duplex operation, permitting simultaneous transmission and reception of signals at same or different frequencies. Instead of incorporating fixed or mechanically adjustable capacitors, and even instead of incorporating varactor diodes, it incorporates one or more capacitance tuning circuit in phase shifting networks enabling one to electronically tune, with ease and precision, the frequency at which isolation is desired, over a band in both transmit and receive modes of operations.
    Type: Grant
    Filed: October 26, 2012
    Date of Patent: May 5, 2015
    Assignee: Bradley University
    Inventors: Prasad Narasimha Shastry, Sureshbabu Sundaram, Balamurugan Sundaram
  • Publication number: 20150080875
    Abstract: A microwave ablation system and method is disclosed comprising a balloon catheter apparatus and a control system. The balloon catheter apparatus comprises a catheter configured to house a coaxial cable and one or more coolant channels, an inflatable balloon located at the distal end of the catheter, and an antenna positioned in the inflatable balloon and in communication with the coaxial cable. The control system comprises a fluid pump configured to introduce fluid into a proximal end of the catheter, a power amplifier capable of generating microwave energy for delivery to the target tissue zone for at least one energy application cycle ranging from 60 seconds to 600 seconds at a frequency ranging from 2.4 GHz to 2.5 GHz, and a computer system configured to monitor and/or regulate the delivery of microwave energy to the target tissue, the fluid pump, at least one sensor, and antenna reflected power.
    Type: Application
    Filed: September 10, 2014
    Publication date: March 19, 2015
    Inventors: Daniel Kasprzyk, Justin Preston, Seth Crozier, Sohail Desai, Roger D. Watkins, Balamurugan Sundaram, Sureshbabu Sundaram
  • Publication number: 20140257266
    Abstract: A method and balloon catheter apparatus for tissue ablation is disclosed. The apparatus comprises an elongated shaft having a proximal end, a distal end, one or more central lumens, adapted for positioning in an artery; an emitter capable of emitting microwave energy positioned at the distal end; an inflatable balloon associated with the emitter at the distal end configured to allow blood to pass through the artery while the balloon is inflated; and a control system at the proximal end. The method and balloon catheter apparatus is applicable at least to renal denervation procedures.
    Type: Application
    Filed: March 6, 2014
    Publication date: September 11, 2014
    Applicant: SYMPLE SURGICAL INC.
    Inventors: Daniel Kasprzyk, Justin Preston, Seth Crozier, Sohail Desai, Roger D. Watkins, Balamurugan Sundaram, Sureshbabu Sundaram
  • Publication number: 20140118083
    Abstract: This invention provides a novel electronically tunable active duplexer for wireless transceiver applications. It relates to an active duplexer with full-duplex operation, permitting simultaneous transmission and reception of signals at same or different frequencies. Instead of incorporating fixed or mechanically adjustable capacitors, and even instead of incorporating varactor diodes, it incorporates one or more capacitance tuning circuit in phase shifting networks enabling one to electronically tune, with ease and precision, the frequency at which isolation is desired, over a band in both transmit and receive modes of operations.
    Type: Application
    Filed: October 26, 2012
    Publication date: May 1, 2014
    Applicant: BRADLEY UNIVERSITY
    Inventors: PRASAD NARASIMHA SHASTRY, SURESHBABU SUNDARAM, BALAMURUGAN SUNDARAM