Patents by Inventor Prasad Raghavendra

Prasad Raghavendra 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: 11943885
    Abstract: A computing device includes a first portion and a second portion rotatable relative to each other about a hinge. A bumper is located between the hinge and the first portion. The bumper includes an impact resistant material. The impact resistant material absorbs some or all of the force from an impact between a hinge body and the first portion.
    Type: Grant
    Filed: January 3, 2022
    Date of Patent: March 26, 2024
    Assignee: Microsoft Technology Licensing, LLC
    Inventors: Kent Allen Campbell, Prasad Raghavendra
  • Patent number: 11641379
    Abstract: A cloud security method implement web security at the application level by monitoring network traffic and detecting cloud activities related to web applications, and then classifying the detected cloud activities to map certain security-related cloud activities into activity categories to enable security policy to be applied. The application-level cloud security method enables policy enforcement rules to be established for cloud activity categories. The security policies are then applied based on activity categories.
    Type: Grant
    Filed: August 9, 2021
    Date of Patent: May 2, 2023
    Assignee: Skyhigh Security LLC
    Inventors: Sekhar Sarukkai, Prasad Raghavendra Somasamudram, Rama Taraniganty, Vikram Jaiswal, Chapman Seto, Ravi Hingarajiya, Surendrakumar Viswanathan, Kaushik Narayan, Pradeep Kumar Reddy Mangalapuri, Guruprasad Shenoy
  • Publication number: 20230100714
    Abstract: A method of assessing a risk level of an enterprise using cloud-based services from one or more cloud service providers includes assessing provider risk scores associated with the one or more cloud service providers; assessing cloud service usage behavior and pattern of the enterprise; and generating a risk score for the enterprise based on the provider risk scores and on the cloud service usage behavior and pattern of the enterprise. The risk score is indicative of the risk of the enterprise relating to the use of the cloud-based services from the one or more cloud service providers.
    Type: Application
    Filed: December 5, 2022
    Publication date: March 30, 2023
    Inventors: Dejan Curcic, Rajiv Gupta, Kaushik Narayan, Prasad Raghavendra Somasamudram, Sekhar Sarukkai
  • Patent number: 11550362
    Abstract: Examples are disclosed relating to computing devices and methods for determining angular orientations of a first planar substrate rotatably coupled to a second planar substrate. In one example, a method comprises: receiving at a three-axis magnetic sensor in the second substrate a magnetic field emanating from a magnet array in the first substrate; determining magnetic flux densities at first and second sensing axes of the sensor throughout a range of degrees; and using the magnetic flux densities to determine multiple angular orientations of the first substrate relative to the second planar substrate.
    Type: Grant
    Filed: March 31, 2021
    Date of Patent: January 10, 2023
    Assignee: Microsoft Technology Licensing, LLC
    Inventors: Devin Samuel Jacob Caplow-Munro, Mika Martti Ylitalo, Rajesh Surapureddy, Prasad Raghavendra
  • Patent number: 11521147
    Abstract: A method of assessing a risk level of an enterprise using cloud-based services from one or more cloud service providers includes assessing provider risk scores associated with the one or more cloud service providers; assessing cloud service usage behavior and pattern of the enterprise; and generating a risk score for the enterprise based on the provider risk scores and on the cloud service usage behavior and pattern of the enterprise. The risk score is indicative of the risk of the enterprise relating to the use of the cloud-based services from the one or more cloud service providers.
    Type: Grant
    Filed: July 24, 2020
    Date of Patent: December 6, 2022
    Assignee: Skyhigh Security LLC
    Inventors: Dejan Curcic, Rajiv Gupta, Kaushik Narayan, Prasad Raghavendra Somasamudram, Sekhar Sarukkai
  • Publication number: 20220317729
    Abstract: Examples are disclosed relating to computing devices and methods for determining angular orientations of a first planar substrate rotatably coupled to a second planar substrate. In one example, a method comprises: receiving at a three-axis magnetic sensor in the second substrate a magnetic field emanating from a magnet array in the first substrate; determining magnetic flux densities at first and second sensing axes of the sensor throughout a range of degrees; and using the magnetic flux densities to determine multiple angular orientations of the first substrate relative to the second planar substrate.
    Type: Application
    Filed: March 31, 2021
    Publication date: October 6, 2022
    Applicant: Microsoft Technology Licensing, LLC
    Inventors: Devin Samuel Jacob CAPLOW-MUNRO, Mika Martti YLITALO, Rajesh SURAPUREDDY, Prasad RAGHAVENDRA
  • Publication number: 20220183170
    Abstract: A computing device includes a first portion and a second portion rotatable relative to each other about a hinge. A bumper is located between the hinge and the first portion. The bumper includes an impact resistant material. The impact resistant material absorbs some or all of the force from an impact between a hinge body and the first portion.
    Type: Application
    Filed: January 3, 2022
    Publication date: June 9, 2022
    Inventors: Kent Allen CAMPBELL, Prasad RAGHAVENDRA
  • Publication number: 20220029882
    Abstract: Receiving configuration settings (CSs) from a resource using an API; determining a resource risk score (RERS), a first tactic risk score (TARS), a first plurality of technique risk scores (TERSs), a second TARS, and a second TERSs, wherein the RERS is based on the first TARS and the second TARS, wherein the first TARS is based on the first TERSs, wherein the second TARS is based on the second TERSs, wherein each of the first TERSs is based on a subset of a set of policy scores (SPS), wherein each of the second TERSs is based on a subset of the SPS, and wherein each of the SPS is based on compliance of the CSs with a setting; and selecting a most-important technique (MIT) based on the first TARS, the second TARS, and one of the first TERSs and the second TERSs, and remediating a CS corresponding to the MIT.
    Type: Application
    Filed: March 1, 2021
    Publication date: January 27, 2022
    Inventors: Sekhar Sarukkai, Prasad Raghavendra Somasamudram, Syed Ummar Farooqh
  • Patent number: 11219135
    Abstract: A computing device includes a first portion and a second portion rotatable relative to each other about a hinge. A bumper is located between the hinge and the first portion. The bumper includes an impact resistant material. The impact resistant material absorbs some or all of the force from an impact between a hinge body and the first portion.
    Type: Grant
    Filed: April 22, 2020
    Date of Patent: January 4, 2022
    Assignee: Microsoft Technology Licensing, LLC
    Inventors: Kent Allen Campbell, Prasad Raghavendra
  • Patent number: 11201387
    Abstract: Mobile computing devices often incorporate a window along a discrete portion of a perimeter of a metallic device case adjacent the antennae and a plastic cover that covers the window and seals antennae within the mobile computing device. As mobile computing devices shrink in physical size and weight and become more portable, available space within the mobile computing devices for the antennae shrinks. Merely increasing the size of the connectivity window to occupy up to a full width or length of the perimeter of the metallic device case may negatively impact overall device stiffness requirements. The electrically isolated corner stiffeners described herein may permit larger antennae windows for wireless connectivity, while meeting applicable stiffness requirements for an associated mobile computing device.
    Type: Grant
    Filed: October 13, 2017
    Date of Patent: December 14, 2021
    Assignee: Microsoft Technology Licensing, LLC
    Inventors: Chandrashekar Gernipalli Subba, Prasad Raghavendra
  • Patent number: 11089064
    Abstract: A cloud security method implement web security at the application level by monitoring network traffic and detecting cloud activities related to web applications, and then classifying the detected cloud activities to map certain security-related cloud activities into activity categories to enable security policy to be applied. The application-level cloud security method enables policy enforcement rules to be established for cloud activity categories. The security policies are then applied based on activity categories.
    Type: Grant
    Filed: November 2, 2016
    Date of Patent: August 10, 2021
    Assignee: Skyhigh Networks, LLC
    Inventors: Sekhar Sarukkai, Prasad Raghavendra Somasamudram, Rama Taraniganty, Vikram Jaiswal, Chapman Seto, Ravi Hingarajiya, Surendrakumar Viswanathan, Kaushik Narayan, Pradeep Kumar Reddy Mangalapuri, Guruprasad Shenoy
  • Publication number: 20210100118
    Abstract: A computing device includes a first portion and a second portion rotatable relative to each other about a hinge. A bumper is located between the hinge and the first portion. The bumper includes an impact resistant material. The impact resistant material absorbs some or all of the force from an impact between a hinge body and the first portion.
    Type: Application
    Filed: April 22, 2020
    Publication date: April 1, 2021
    Inventors: Kent Allen CAMPBELL, Prasad RAGHAVENDRA
  • Publication number: 20200356921
    Abstract: A method of assessing a risk level of an enterprise using cloud-based services from one or more cloud service providers includes assessing provider risk scores associated with the one or more cloud service providers; assessing cloud service usage behavior and pattern of the enterprise; and generating a risk score for the enterprise based on the provider risk scores and on the cloud service usage behavior and pattern of the enterprise. The risk score is indicative of the risk of the enterprise relating to the use of the cloud-based services from the one or more cloud service providers.
    Type: Application
    Filed: July 24, 2020
    Publication date: November 12, 2020
    Inventors: Dejan Curcic, Rajiv Gupta, Kaushik Narayan, Prasad Raghavendra Somasamudram, Sekhar Sarukkai
  • Patent number: 10755219
    Abstract: A method of assessing a risk level of an enterprise using cloud-based services from one or more cloud service providers includes assessing provider risk scores associated with the one or more cloud service providers; assessing cloud service usage behavior and pattern of the enterprise; and generating a risk score for the enterprise based on the provider risk scores and on the cloud service usage behavior and pattern of the enterprise. The risk score is indicative of the risk of the enterprise relating to the use of the cloud-based services from the one or more cloud service providers.
    Type: Grant
    Filed: March 18, 2019
    Date of Patent: August 25, 2020
    Assignee: Skyhigh Networks, LLC
    Inventors: Dejan Curcic, Rajiv Gupta, Kaushik Narayan, Prasad Raghavendra Somasamudram, Sekhar Sarukkai
  • Publication number: 20190213512
    Abstract: A method of assessing a risk level of an enterprise using cloud-based services from one or more cloud service providers includes assessing provider risk scores associated with the one or more cloud service providers; assessing cloud service usage behavior and pattern of the enterprise; and generating a risk score for the enterprise based on the provider risk scores and on the cloud service usage behavior and pattern of the enterprise. The risk score is indicative of the risk of the enterprise relating to the use of the cloud-based services from the one or more cloud service providers.
    Type: Application
    Filed: March 18, 2019
    Publication date: July 11, 2019
    Inventors: Dejan Curcic, Rajiv Gupta, Kaushik Narayan, Prasad Raghavendra Somasamudram, Sekhar Sarukkai
  • Patent number: 10324500
    Abstract: A high strength hinge mechanism is described herein. In one or more implementations, a computing device includes a display portion which includes a display device, and a base portion which includes a keyboard. A hinge mechanism is attached to the display portion and the base portion to enable rotation of the display portion relative to the base portion. The hinge mechanism includes a friction element and a cylindrical shaft secured to the friction element and to a chassis of the display portion. The friction element is configured to apply friction to the shaft in a radial direction as the shaft is rotated. The rotation of the shaft enables the display portion to be rotated from a closed position to a fully-open position. The hinge mechanism also includes a frame structure to support the friction element and the shaft.
    Type: Grant
    Filed: January 6, 2017
    Date of Patent: June 18, 2019
    Assignee: Microsoft Technology Licensing, LLC
    Inventors: Christopher Alan Schafer, Prasad Raghavendra
  • Publication number: 20190115648
    Abstract: Mobile computing devices often incorporate a window along a discrete portion of a perimeter of a metallic device case adjacent the antennae and a plastic cover that covers the window and seals antennae within the mobile computing device. As mobile computing devices shrink in physical size and weight and become more portable, available space within the mobile computing devices for the antennae shrinks. Merely increasing the size of the connectivity window to occupy up to a full width or length of the perimeter of the metallic device case may negatively impact overall device stiffness requirements. The electrically isolated corner stiffeners described herein may permit larger antennae windows for wireless connectivity, while meeting applicable stiffness requirements for an associated mobile computing device.
    Type: Application
    Filed: October 13, 2017
    Publication date: April 18, 2019
    Inventors: Chandrashekar Gernipalli SUBBA, Prasad RAGHAVENDRA
  • Patent number: 10235648
    Abstract: A method of assessing a risk level of an enterprise using cloud-based services from one or more cloud service providers includes assessing provider risk scores associated with the one or more cloud service providers; assessing cloud service usage behavior and pattern of the enterprise; and generating a risk score for the enterprise based on the provider risk scores and on the cloud service usage behavior and pattern of the enterprise. The risk score is indicative of the risk of the enterprise relating to the use of the cloud-based services from the one or more cloud service providers.
    Type: Grant
    Filed: January 31, 2018
    Date of Patent: March 19, 2019
    Assignee: Skyhigh Networks, LLC
    Inventors: Dejan Curcic, Rajiv Gupta, Kaushik Narayan, Prasad Raghavendra Somasamudram, Sekhar Sarukkai
  • Publication number: 20180225606
    Abstract: A method of assessing a risk level of an enterprise using cloud-based services from one or more cloud service providers includes assessing provider risk scores associated with the one or more cloud service providers; assessing cloud service usage behavior and pattern of the enterprise; and generating a risk score for the enterprise based on the provider risk scores and on the cloud service usage behavior and pattern of the enterprise. The risk score is indicative of the risk of the enterprise relating to the use of the cloud-based services from the one or more cloud service providers.
    Type: Application
    Filed: January 31, 2018
    Publication date: August 9, 2018
    Inventors: Dejan Curcic, Rajiv Gupta, Kaushik Narayan, Prasad Raghavendra Somasamudram, Sekhar Sarukkai
  • Publication number: 20180196478
    Abstract: A high strength hinge mechanism is described herein. In one or more implementations, a computing device includes a display portion which includes a display device, and a base portion which includes a keyboard. A hinge mechanism is attached to the display portion and the base portion to enable rotation of the display portion relative to the base portion. The hinge mechanism includes a friction element and a cylindrical shaft secured to the friction element and to a chassis of the display portion. The friction element is configured to apply friction to the shaft in a radial direction as the shaft is rotated. The rotation of the shaft enables the display portion to be rotated from a closed position to a fully-open position. The hinge mechanism also includes a frame structure to support the friction element and the shaft.
    Type: Application
    Filed: January 6, 2017
    Publication date: July 12, 2018
    Applicant: Microsoft Technology Licensing, LLC
    Inventors: Christopher Alan Schafer, Prasad Raghavendra