Patents by Inventor Suryaprakash Ganti

Suryaprakash Ganti 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: 11043444
    Abstract: A cooling system and method for using the cooling system are described. The cooling system includes a plurality of individual piezoelectric cooling elements spatially arranged in an array extending in at least two dimensions, a communications interface and driving circuitry. The communications interface is associated with the individual piezoelectric cooling elements such that selected individual piezoelectric cooling elements within the array can be activated based at least in part on heat energy generated in the vicinity of the selected individual piezoelectric cooling elements. The driving circuitry is associated with the individual piezoelectric cooling elements and is configured to drive the selected individual piezoelectric cooling elements.
    Type: Grant
    Filed: March 29, 2019
    Date of Patent: June 22, 2021
    Assignee: Frore Systems Inc.
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy
  • Publication number: 20210185853
    Abstract: A mobile device case is described. The mobile device case includes a housing configured to retain a mobile device and an active cooling system integrated into the housing. The active cooling system configured to use vibrational motion to cool a surface of the mobile device.
    Type: Application
    Filed: December 14, 2020
    Publication date: June 17, 2021
    Inventors: Suryaprakash Ganti, Brian James Gally, Prabhu Sathyamurthy, Seshagiri Rao Madhavapeddy
  • Publication number: 20210183739
    Abstract: A system including at least one heat-generating structure and a cooling system is described. The cooling system includes a cooling element and an exhaust system. The cooling element is in communication with a fluid and is configured to direct the fluid toward the heat-generating structure(s) using vibrational motion. The exhaust system is configured to direct fluid away from the heat-generating structure to extract the heat and/or to draw the fluid toward the cooling element.
    Type: Application
    Filed: December 14, 2020
    Publication date: June 17, 2021
    Inventors: Prabhu Sathyamurthy, Suryaprakash Ganti, Seshagiri Rao Madhavapeddy, Vikram Mukundan, Lumaya Ahmed
  • Publication number: 20210180723
    Abstract: An active cooling system is described. The active cooling system includes at least one cooling element that has a vent therein and is in communication with a fluid. The cooling element(s) are actuated to vibrate to drive the fluid toward a heat-generating structure and to alternately open and close at least one virtual valve corresponding to the vent. The virtual valve is open for a low flow resistance and closed for a high flow resistance. The vent remains physically open for the virtual valve being closed.
    Type: Application
    Filed: December 16, 2019
    Publication date: June 17, 2021
    Inventors: Vikram Mukundan, Ananth Saran Yalamarthy, Prabhu Sathyamurthy, Suryaprakash Ganti, Narayana Prasad Rayapati, Seshagiri Rao Madhavapeddy
  • Publication number: 20210183743
    Abstract: A cooling system and method for using the cooling system are described. The cooling system includes a plurality of individual piezoelectric cooling elements spatially arranged in an array extending in at least two dimensions, a communications interface and driving circuitry. The communications interface is associated with the individual piezoelectric cooling elements such that selected individual piezoelectric cooling elements within the array can be activated based at least in part on heat energy generated in the vicinity of the selected individual piezoelectric cooling elements. The driving circuitry is associated with the individual piezoelectric cooling elements and is configured to drive the selected individual piezoelectric cooling elements.
    Type: Application
    Filed: February 18, 2021
    Publication date: June 17, 2021
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy
  • Publication number: 20210185856
    Abstract: A system including an active cooling system is described. The active cooling system includes a cooling element in communication with a fluid and configured to use vibrational motion to direct a fluid toward a surface of heat-generating structure(s). Heat is transferred from the heat-generating structure to the fluid. The system is configured such that the fluid follows a path from the surface of the heat-generating structure(s) past a structure having a lower temperature than the surface of the heat-generating structure. The structure absorbs heat from the fluid. The structure is within the system and distal from the active cooling system.
    Type: Application
    Filed: December 14, 2020
    Publication date: June 17, 2021
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy, Prabhu Sathyamurthy, Vikram Mukundan, Lumaya Ahmed
  • Publication number: 20210176894
    Abstract: A cooling system is described. The cooling system includes a cooling element having a central region and a perimeter. The cooling element is anchored at the central region. At least a portion of the perimeter is unpinned. The cooling element is in communication with a fluid. The cooling element is actuated to induce vibrational motion to drive the fluid toward a heat-generating structure.
    Type: Application
    Filed: June 29, 2020
    Publication date: June 10, 2021
    Inventors: Ananth Saran Yalamarthy, Suryaprakash Ganti, Vikram Mukundan, Seshagiri Rao Madhavapeddy, Prabhu Sathyamurthy, Narayana Prasad Rayapati
  • Publication number: 20210176895
    Abstract: An actuator usable in a cooling system is described. The actuator includes an anchored region and a cantilevered arm. The cantilevered arm extends outward from the anchored region. The cantilevered arm includes a step region, an extension region and an outer region. The step region extends outward from the anchored region and has a step thickness. The extension region extends outward from the step region and has an extension thickness less than the step thickness. The outer region extends outward from the extension region and has an outer thickness greater than the extension thickness.
    Type: Application
    Filed: September 16, 2020
    Publication date: June 10, 2021
    Inventors: Vikram Mukundan, Suryaprakash Ganti, Ananth Saran Yalamarthy, Seshagiri Rao Madhavapeddy, Prabhu Sathyamurthy
  • Publication number: 20210143084
    Abstract: An active cooling system and method for using the active cooling system are described. The active cooling system includes a cooling element having a first side and a second side. The first side of the cooling element is distal to a heat-generating structure and in communication with a fluid. The second side of the cooling element is proximal to the heat-generating structure. The cooling element is configured to direct the fluid using a vibrational motion from the first side of the cooling element to the second side such that the fluid moves in a direction that is incident on a surface of the heat-generating structure at a substantially perpendicular angle and then is deflected to move along the surface of the heat-generating structure to extract heat from the heat-generating structure.
    Type: Application
    Filed: January 21, 2021
    Publication date: May 13, 2021
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy
  • Publication number: 20210131415
    Abstract: A system including an orifice plate, a fan element and at least one channel is disclosed. The orifice plate has at least one orifice therein. The fan element is configured to undergo vibrational motion to drive a fluid through the orifice(s). The fluid is drawn through the channel(s) in response to the fluid being driven through the at least one orifice.
    Type: Application
    Filed: October 27, 2020
    Publication date: May 6, 2021
    Inventors: Ananth Saran Yalamarthy, Vikram Mukundan, Suryaprakash Ganti, Narayana Prasad Rayapati, Prabhu Sathyamurthy, Seshagiri Rao Madhavapeddy, Marc Mignard, Brian James Gally
  • Patent number: 10998254
    Abstract: A cooling system and method for using the cooling system are described. The cooling system includes a plurality of individual piezoelectric cooling elements spatially arranged in an array extending in at least two dimensions, a communications interface and driving circuitry. The communications interface is associated with the individual piezoelectric cooling elements such that selected individual piezoelectric cooling elements within the array can be activated based at least in part on heat energy generated in the vicinity of the selected individual piezoelectric cooling elements. The driving circuitry is associated with the individual piezoelectric cooling elements and is configured to drive the selected individual piezoelectric cooling elements.
    Type: Grant
    Filed: March 29, 2019
    Date of Patent: May 4, 2021
    Assignee: Frore Systems Inc.
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy
  • Patent number: 10943850
    Abstract: An active cooling system and method for using the active cooling system are described. The active cooling system includes a cooling element having a first side and a second side. The first side of the cooling element is distal to a heat-generating structure and in communication with a fluid. The second side of the cooling element is proximal to the heat-generating structure. The cooling element is configured to direct the fluid using a vibrational motion from the first side of the cooling element to the second side such that the fluid moves in a direction that is incident on a surface of the heat-generating structure at a substantially perpendicular angle and then is deflected to move along the surface of the heat-generating structure to extract heat from the heat-generating structure.
    Type: Grant
    Filed: March 29, 2019
    Date of Patent: March 9, 2021
    Assignee: Frore Systems Inc.
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy
  • Publication number: 20200381339
    Abstract: A system for cooling a mobile phone and method for using the system are described. The system includes an active piezoelectric cooling system, a controller and an interface. The active piezoelectric cooling system is configured to be disposed in a rear portion of the mobile phone distal from a front screen of the mobile phone. The controller is configured to activate the active piezoelectric cooling system in response to heat generated by heat-generating structures of the mobile phone. The interface is configured to receive power from a mobile phone power source when the active piezoelectric cooling system is activated.
    Type: Application
    Filed: August 21, 2020
    Publication date: December 3, 2020
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy
  • Patent number: 10788034
    Abstract: A system for cooling a mobile phone and method for using the system are described. The system includes an active piezoelectric cooling system, a controller and an interface. The active piezoelectric cooling system is configured to be disposed in a rear portion of the mobile phone distal from a front screen of the mobile phone. The controller is configured to activate the active piezoelectric cooling system in response to heat generated by heat-generating structures of the mobile phone. The interface is configured to receive power from a mobile phone power source when the active piezoelectric cooling system is activated.
    Type: Grant
    Filed: March 29, 2019
    Date of Patent: September 29, 2020
    Assignee: Frore Systems Inc.
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy
  • Patent number: 10733409
    Abstract: Systems, methods and apparatus for configuring a fingerprint sensor to operate in a capacitive sensing mode and an ultrasonic sensing mode are disclosed. A fingerprint sensor may be configured to operate in a capacitive sensing mode by driving a sensing electrode using a controller. In some implementations, an object positioned on or near the sensing electrode may be detected using the fingerprint sensor in the capacitive sensing mode, and the controller can drive electrodes of the fingerprint sensor differently to configure the fingerprint sensor to operate in an ultrasonic sensing mode. In some implementations, an applications processor may be instructed to authenticate a fingerprint of the object from image data obtained when the fingerprint sensor is operating in the ultrasonic sensing mode. In some implementations, a display of a mobile device containing the fingerprint sensor may be unlocked, or the mobile device may be woken up when the fingerprint is authenticated.
    Type: Grant
    Filed: November 7, 2018
    Date of Patent: August 4, 2020
    Assignee: QUALCOMM Incorporated
    Inventors: Sandeep Louis D'Souza, Vadim Winebrand, Ashish Hinger, Paul Penchin Pan, Meir Agassy, Yizhaq Abudi, Micah Timothy Lawrence, Jong Soo Kim, Sherman Sebastian Antao, Bo-Ren Wang, Masoud Roham, Lennart Karl Mathe, Nathan Felix Altman, Suryaprakash Ganti, David William Burns
  • Publication number: 20200049387
    Abstract: A piezoelectric cooling system and method for driving the cooling system are described. The piezoelectric cooling system includes a first piezoelectric cooling element and a second piezoelectric cooling element. The first piezoelectric cooling element is configured to direct a fluid toward a surface of a heat-generating structure. The second piezoelectric cooling element is configured to direct the fluid to an outlet area after heat has been transferred to the fluid by the heat-generating structure.
    Type: Application
    Filed: March 29, 2019
    Publication date: February 13, 2020
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy, Leonard Eugene Fennell, Vikram Mukundan
  • Publication number: 20200049388
    Abstract: A cooling system and method for using the cooling system are described. The cooling system includes an array of cooling elements and a controller. The array of cooling elements corresponds to regions of the heat-generating structure where heat is generated in response to operation of the semiconductor. The controller is configured to activate portions of the array of cooling elements based on a determination that operation of the heat-generating structure is likely to generate heat in a given region of the heat-generating structure.
    Type: Application
    Filed: March 29, 2019
    Publication date: February 13, 2020
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy
  • Publication number: 20200049143
    Abstract: A piezoelectric cooling chamber and method for providing the cooling system are described. The cooling chamber includes a piezoelectric cooling element, an array of orifices and a valve. A vibrational motion of the piezoelectric cooling element causes an increase or decrease in a chamber volume as the piezoelectric cooling element is deformed. The array of orifices is distributed on at least one surface of the chamber. The orifices allow escape of fluid from within the chamber during the decrease in the chamber volume in response to the vibration of the piezoelectric element. The valve is configured to admit fluid into the chamber when the chamber volume increases and to substantially prevent fluid from exiting the chamber through the valve when the chamber volume decreases.
    Type: Application
    Filed: March 29, 2019
    Publication date: February 13, 2020
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy
  • Publication number: 20200049386
    Abstract: A cooling system and method for using the cooling system are described. The cooling system includes a plurality of individual piezoelectric cooling elements spatially arranged in an array extending in at least two dimensions, a communications interface and driving circuitry. The communications interface is associated with the individual piezoelectric cooling elements such that selected individual piezoelectric cooling elements within the array can be activated based at least in part on heat energy generated in the vicinity of the selected individual piezoelectric cooling elements. The driving circuitry is associated with the individual piezoelectric cooling elements and is configured to drive the selected individual piezoelectric cooling elements.
    Type: Application
    Filed: March 29, 2019
    Publication date: February 13, 2020
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy
  • Publication number: 20200051895
    Abstract: An active cooling system and method for using the active cooling system are described. The active cooling system includes a cooling element having a first side and a second side. The first side of the cooling element is distal to a heat-generating structure and in communication with a fluid. The second side of the cooling element is proximal to the heat-generating structure. The cooling element is configured to direct the fluid using a vibrational motion from the first side of the cooling element to the second side such that the fluid moves in a direction that is incident on a surface of the heat-generating structure at a substantially perpendicular angle and then is deflected to move along the surface of the heat-generating structure to extract heat from the heat-generating structure.
    Type: Application
    Filed: March 29, 2019
    Publication date: February 13, 2020
    Inventors: Suryaprakash Ganti, Seshagiri Rao Madhavapeddy