Patents by Inventor KIRAN N
KIRAN N 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).
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Patent number: 12255812Abstract: An example data center system includes server devices hosting data of a first tenant and a second tenant of the data center, network devices of an interconnected topology coupling the server devices including respective service virtual routing and forwarding (VRF) tables, and one or more service devices that communicatively couple the network devices, wherein the service devices include respective service VRF tables for the first set of server devices and the second set of server devices, and wherein the service devices apply services to network traffic flowing between the first set of server devices and the second set of server devices using the first service VRF table and the second service VRF table.Type: GrantFiled: June 22, 2023Date of Patent: March 18, 2025Assignee: Juniper Networks, Inc.Inventors: Jacopo Pianigiani, Vivekananda Shenoy, Ankur Tandon, Atul S Moghe, Suresh K Balineni, Tong Jiang, Kiran N. Kasim, Sridevi JeevaRaj
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Publication number: 20240283821Abstract: There is disclosed a computer-implemented system and method for protecting a user from phishing attacks, including detecting that the user has opened a website associated with a uniform resource locator (URL), and determining that the URL does not have a known good reputation; rendering a test version of the website in a headless web browser, including abstracting the website into at least one visual element of the test version; visually inspecting the test version of the website with a digital eye, and determining that the test version of the web looks like a known legitimate website not associated with the URL; and based on the visual inspection, warning the user that the website is or may be a phishing website.Type: ApplicationFiled: April 29, 2024Publication date: August 22, 2024Inventor: Shashi KIran N
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Patent number: 12069091Abstract: There is disclosed in one example a computing apparatus, including: a processor and a memory; a network interface; and instructions encoded within the memory to instruct the processor to: receive a uniform resource locator (URL) for analysis, the URL to access a web page via a remote server; via the network interface, retrieve from the remote server a copy of the web page; render the web page in a headless browser to provide a computer-accessible visual output; perform visual analysis of the visual output via a digital eye; compare the visual analysis to a plurality of known phishing target websites; and if the comparison identifies the web page as visually similar to a known phishing target website, detect the web page as a phishing web page.Type: GrantFiled: August 5, 2022Date of Patent: August 20, 2024Assignee: McAfee, LLCInventor: Shashi KIran N
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Patent number: 11722408Abstract: An example data center system includes server devices hosting data of a first tenant and a second tenant of the data center, network devices of an interconnected topology coupling the server devices including respective service virtual routing and forwarding (VRF) tables, and one or more service devices that communicatively couple the network devices, wherein the service devices include respective service VRF tables for the first set of server devices and the second set of server devices, and wherein the service devices apply services to network traffic flowing between the first set of server devices and the second set of server devices using the first service VRF table and the second service VRF table.Type: GrantFiled: January 15, 2021Date of Patent: August 8, 2023Assignee: Juniper Networks, Inc.Inventors: Jacopo Pianigiani, Vivekananda Shenoy, Ankur Tandon, Atul S Moghe, Suresh K Balineni, Tong Jiang, Kiran N. Kasim, Sridevi JeevaRaj
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Publication number: 20220377110Abstract: There is disclosed in one example a computing apparatus, including: a processor and a memory; a network interface; and instructions encoded within the memory to instruct the processor to: receive a uniform resource locator (URL) for analysis, the URL to access a web page via a remote server; via the network interface, retrieve from the remote server a copy of the web page; render the web page in a headless browser to provide a computer-accessible visual output; perform visual analysis of the visual output via a digital eye; compare the visual analysis to a plurality of known phishing target websites; and if the comparison identifies the web page as visually similar to a known phishing target website, detect the web page as a phishing web page.Type: ApplicationFiled: August 5, 2022Publication date: November 24, 2022Applicant: McAfee, LLCInventor: Shashi KIran N
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Publication number: 20220124077Abstract: In general, techniques are described for enhancing operations of virtual networks. In some examples, a network system includes a plurality of servers interconnected by a switch fabric comprising a plurality of switches interconnected to form a physical network. Each of the servers comprises an operating environment executing one or more virtual machines in communication via one or more virtual networks. The servers comprise a set of virtual routers configured to extend the virtual networks to the operating environments of the virtual machines. A virtual router of the set of virtual routers is configured to prepare tunnel packets by forwarding packets received from virtual machines to an IPSec kernel executing in a host operating network stack, receiving the ESP packets back from the IPSec kernel and forwarding the ESP packets across the virtual networks.Type: ApplicationFiled: December 30, 2021Publication date: April 21, 2022Inventors: Sanju C. Abraham, Kiran N. Kasim, Prasad Miriyala
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Patent number: 11233778Abstract: In general, techniques are described for enhancing operations of virtual networks. In some examples, a network system includes a plurality of servers interconnected by a switch fabric comprising a plurality of switches interconnected to form a physical network. Each of the servers comprises an operating environment executing one or more virtual machines in communication via one or more virtual networks. The servers comprise a set of virtual routers configured to extend the virtual networks to the operating environments of the virtual machines. A virtual router of the set of virtual routers is configured to prepare tunnel packets by forwarding packets received from virtual machines to an IPSec kernel executing in a host operating network stack, receiving the ESP packets back from the IPSec kernel and forwarding the ESP packets across the virtual networks.Type: GrantFiled: September 28, 2018Date of Patent: January 25, 2022Assignee: Juniper Networks, Inc.Inventors: Sanju C. Abraham, Kiran N. Kasim, Prasad Miriyala
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Publication number: 20210144174Abstract: There is disclosed in one example a computing apparatus, including: a processor and a memory; a network interface; and instructions encoded within the memory to instruct the processor to: receive a uniform resource locator (URL) for analysis, the URL to access a web page via a remote server; via the network interface, retrieve from the remote server a copy of the web page; render the web page in a headless browser to provide a computer-accessible visual output; perform visual analysis of the visual output via a digital eye; compare the visual analysis to a plurality of known phishing target websites; and if the comparison identifies the web page as visually similar to a known phishing target website, detect the web page as a phishing web page.Type: ApplicationFiled: November 7, 2019Publication date: May 13, 2021Applicant: McAfee, LLCInventor: Shashi KIran N
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Patent number: 10897420Abstract: An example data center system includes server devices hosting data of a first tenant and a second tenant of the data center, network devices of an interconnected topology coupling the server devices including respective service virtual routing and forwarding (VRF) tables, and one or more service devices that communicatively couple the network devices, wherein the service devices include respective service VRF tables for the first set of server devices and the second set of server devices, and wherein the service devices apply services to network traffic flowing between the first set of server devices and the second set of server devices using the first service VRF table and the second service VRF table.Type: GrantFiled: December 28, 2018Date of Patent: January 19, 2021Assignee: Juniper Networks, Inc.Inventors: Jacopo Pianigiani, Vivekananda Shenoy, Ankur Tandon, Atul S Moghe, Suresh K Balineni, Tong Jiang, Kiran N. Kasim, Sridevi JeevaRaj
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Patent number: 10851440Abstract: Novel metallic systems and methods for their fabrication provide high temperature machine parts formed of a consolidated nano-crystalline metallic material. The material comprises a matrix formed of a solvent metal having a melting point greater than 1,250° C. with crystalline grains having diameters of no more than about 500 nm, and a plurality of dispersed metallic particles formed on the basis of a solute metal in the solvent metal matrix and having diameters of no more than about 200 nm. The particle density along the grain boundary of the matrix is as high as about 2 nm2 of grain boundary area per particle so as to substantially block grain boundary motion and rotation and limit creep at temperatures above 35% of the melting point of the consolidated nano-crystalline metallic material. The machine parts formed may include turbine blades, gears, hypersonics, radiation shielding, and other high temperature parts.Type: GrantFiled: September 13, 2018Date of Patent: December 1, 2020Assignee: The United States of America as represented by the Secretary of the ArmyInventors: Kristopher Allen Darling, Scott Martin Grendahl, Laszlo John Kecskes, Kiran N. Solanki, Heather Ann Murdoch, Thomas Lee Luckenbaugh, Anthony James Roberts, Billy Chad Hornbuckle
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Patent number: 10766071Abstract: Novel metallic systems and methods for their fabrication provide an extreme creep-resistant nano-crystalline metallic material. The material comprises a matrix formed of a solvent metal with crystalline grains having diameters of no more than about 500 nm, and a plurality of dispersed metallic particles formed on the basis of a solute metal in the solvent metal matrix and having diameters of no more than about 200 nm. The particle density along the grain boundary of the matrix is as high as about 2 nm2 of grain boundary area per particle so as to substantially block grain boundary motion and rotation and limit creep at temperatures above 35% of the melting point of the material.Type: GrantFiled: February 14, 2018Date of Patent: September 8, 2020Assignee: The United States of America as represented by the Secretary of the ArmyInventors: Laszlo J. Kecskes, Kristopher A. Darling, Rajiv S. Mishra, Yuri Mishin, Kiran N. Solanki, Mansa Rajagopalan
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Publication number: 20200059459Abstract: In general, techniques are described for enhancing operations of virtual networks. In some examples, a network system includes a plurality of servers interconnected by a switch fabric comprising a plurality of switches interconnected to form a physical network. Each of the servers comprises an operating environment executing one or more virtual machines in communication via one or more virtual networks. The servers comprise a set of virtual routers configured to extend the virtual networks to the operating environments of the virtual machines. A virtual router of the set of virtual routers is configured to prepare tunnel packets by forwarding packets received from virtual machines to an IPSec kernel executing in a host operating network stack, receiving the ESP packets back from the IPSec kernel and forwarding the ESP packets across the virtual networks.Type: ApplicationFiled: September 28, 2018Publication date: February 20, 2020Inventors: Sanju C. Abraham, Kiran N. Kasim, Prasad Miriyala
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Patent number: 10336734Abstract: Described are cancer therapies and anti-cancer compounds. In particular, disclosed are inhibitors of ACK1 tyrosine kinase and their use in the treatment of cancer. Methods of screening for new ACK1 tyrosine kinase inhibitors are also disclosed. In specific example, compound having Formula I are disclosed.Type: GrantFiled: August 2, 2016Date of Patent: July 2, 2019Assignee: H. Lee Moffitt Cancer Center and Research Institute, Inc.Inventors: Nupam P. Mahajan, Kiran N. Mahajan, Nicholas J. Lawrence, Harshani R. Lawrence
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Patent number: 10296515Abstract: A system and method of engineering configuration data (ECD) collection for an industrial facility having a first control and instrumentation (C&I) system with first ECD using a first file format and a second C&I system with second ECD data using a second file format, and a data collection server. A first data agent has collection information regarding the first C&I system and a second data agent has collection information regarding the second C&I system. The first data agent collects the first ECD and the second data agent collects the second ECD. The first ECD and the second ECD are translated into one common generic data format. The first ECD and the second ECD are stored after being translated.Type: GrantFiled: June 9, 2016Date of Patent: May 21, 2019Assignee: Honeywell International Inc.Inventors: Abhishek Nikhra, Ramakrishnan Ganapathi, Manas Dutta, Kiran N, Ravi Kumar R, Avinash Rajan
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Patent number: 10295982Abstract: A method of detecting and tracking changes in engineering configuration data (ECD) for control and instrumentation (C&I) systems an industrial facility. First ECD in a first data format used in a first C&I system and second ECD in a second data format used in a second C&I system are converted into a common format. The first and second ECD are stored together as reference snapshot data with a timestamp in a single information source. At a second time, after the first time reflected in the timestamp, the first and second ECD are obtained. The first ECD and the second ECD obtained at the second time are converted into the common format that collectively provides updated snapshot data. Changes are detected between the first ECD and the second ECD by comparing the reference snapshot data to the updated snapshot data.Type: GrantFiled: June 9, 2016Date of Patent: May 21, 2019Assignee: Honeywell International Inc.Inventors: Abhishek Nikhra, Ramakrishnan Ganapathi, Manas Dutta, Kiran N, Ravi Kumar R
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Publication number: 20190119788Abstract: Novel metallic systems and methods for their fabrication provide high temperature machine parts formed of a consolidated nano-crystalline metallic material. The material comprises a matrix formed of a solvent metal having a melting point greater than 1,250° C. with crystalline grains having diameters of no more than about 500 nm, and a plurality of dispersed metallic particles formed on the basis of a solute metal in the solvent metal matrix and having diameters of no more than about 200 nm. The particle density along the grain boundary of the matrix is as high as about 2 nm2 of grain boundary area per particle so as to substantially block grain boundary motion and rotation and limit creep at temperatures above 35% of the melting point of the consolidated nano-crystalline metallic material. The machine parts formed may include turbine blades, gears, hypersonics, radiation shielding, and other high temperature parts.Type: ApplicationFiled: September 13, 2018Publication date: April 25, 2019Inventors: Kristopher Allen Darling, Scott Martin Grendahl, Laszlo John Kecskes, Kiran N. Solanki, Heather Ann Murdoch, Thomas Lee Luckenbaugh, Anthony James Roberts, Billy Chad Hornbuckle
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Publication number: 20180229308Abstract: Novel metallic systems and methods for their fabrication provide an extreme creep-resistant nano-crystalline metallic material. The material comprises a matrix formed of a solvent metal with crystalline grains having diameters of no more than about 500 nm, and a plurality of dispersed metallic particles formed on the basis of a solute metal in the solvent metal matrix and having diameters of no more than about 200 nm. The particle density along the grain boundary of the matrix is as high as about 2 nm2 of grain boundary area per particle so as to substantially block grain boundary motion and rotation and limit creep at temperatures above 35% of the melting point of the material.Type: ApplicationFiled: February 14, 2018Publication date: August 16, 2018Inventors: Laszlo J. Kecskes, Kristopher A. Darling, Rajiv S. Mishra, Yuri Mishin, Kiran N. Solanki, Mansa Rajagopalan
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Publication number: 20180215738Abstract: Described are cancer therapies and anti-cancer compounds. In particular, disclosed are inhibitors of ACK1 tyrosine kinase and their use in the treatment of cancer. Methods of screening for new ACK1 tyrosine kinase inhibitors are also disclosed. In specific example, compound having Formula I are disclosed.Type: ApplicationFiled: August 2, 2016Publication date: August 2, 2018Inventors: Nupam P. Mahajan, Kiran N. Mahajan, Nicholas J. Lawrence, Harshani R. Lawrence
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Patent number: 10017478Abstract: Described are cancer therapies and anti-cancer compounds. In particular, disclosed are inhibitors of Ack1 tyrosine kinase and their use in the treatment of cancer. Methods of screening for new Ack1 tyrosine kinase inhibitors are also disclosed. In specific example, compound having Formula I through IV are disclosed.Type: GrantFiled: November 9, 2017Date of Patent: July 10, 2018Assignee: H. Lee Moffitt Cancer Center and Research Institute, Inc.Inventors: Nupam P. Mahajan, Kiran N. Mahajan, Nicholas J. Lawrence, Harshani R. Lawrence
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Publication number: 20180155297Abstract: Described are cancer therapies and anti-cancer compounds. In particular, disclosed are inhibitors of Ack1 tyrosine kinase and their use in the treatment of cancer. Methods of screening for new Ack1 tyrosine kinase inhibitors are also disclosed. In specific example, compound having Formula I through IV are disclosed.Type: ApplicationFiled: November 9, 2017Publication date: June 7, 2018Inventors: Nupam P. Mahajan, Kiran N. Mahajan, Nicholas J. Lawrence, Harshani R. Lawrence