Patents by Inventor Akash S.
Akash S. 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: 12101546Abstract: A Hot-Pluggable GMSL Camera System wherein a MIPI camera sensor is connected to a corresponding serializer block with an I2C interface, the corresponding serializer is connected to a corresponding deserializer block by a GMSL cable of up to at least 15-30 meters through an electrical connector, the deserializer block is connected to the Host Processor. A signal of the status of electrical connection of the GMSL cable is generated and communicated to the Host Processor, wherein an unplugging of the activated GMSL cable would produce a signal communicated to the Host Processor, and a plugging-in, or connecting of the same cable or a replacement cable or more than one GMSL cable communicated to the Host Processor. The GMSL camera system detects intermittent connections that are regarded as a micro-unplugging and a micro-hot-plugging, and displaying a proprietary video frame in response to hot-unplugging.Type: GrantFiled: February 13, 2023Date of Patent: September 24, 2024Assignee: e-con Systems India Private LimitedInventors: Akash S., Rohith R. Yadav
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Publication number: 20240276091Abstract: A Hot-Pluggable GMSL Camera System wherein a MIPI camera sensor is connected to a corresponding serializer block with an I2C interface, the corresponding serializer is connected to a corresponding deserializer block by a GMSL cable of up to at least 15-30 meters through an electrical connector, the deserializer block is connected to the Host Processor. A signal of the status of electrical connection of the GMSL cable is generated and communicated to the Host Processor, wherein an unplugging of the activated GMSL cable would produce a signal communicated to the Host Processor, and a plugging-in, or connecting of the same cable or a replacement cable or more than one GMSL cable communicated to the Host Processor. The GMSL camera system detects intermittent connections that are regarded as a micro-unplugging and a micro-hot-plugging, and displaying a proprietary video frame in response to hot-unplugging.Type: ApplicationFiled: February 13, 2023Publication date: August 15, 2024Inventors: Akash S., Rohith R. Yadav
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Patent number: 11635357Abstract: Provided are methods, devices, and kits for the isolation of extracellular vesicles using silicon nanomembranes. A method for EV isolation includes the steps of collecting a biofluid sample, contacting the biofluid sample with a pre-filtration membrane, thereby forming a first filtrate and a first retentate, optionally, washing the first retentate of the pre-filtration membrane, contacting the first filtrate from the pre-filtration membrane with a capture membrane, thereby forming a second filtrate and a second retentate, optionally, washing the second retentate, and eluting the second retentate from the capture membrane or lysing the second retentate to recover the contents.Type: GrantFiled: July 22, 2021Date of Patent: April 25, 2023Assignee: Simpore Inc.Inventors: Jared A. Carter, Akash S. Patel, Cassandra R. Walinski, James A. Roussie
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Publication number: 20210372893Abstract: Provided are methods, devices, and kits for the isolation of extracellular vesicles using silicon nanomembranes. A method for EV isolation includes the steps of collecting a biofluid sample, contacting the biofluid sample with a pre-filtration membrane, thereby forming a first filtrate and a first retentate, optionally, washing the first retentate of the pre-filtration membrane, contacting the first filtrate from the pre-filtration membrane with a capture membrane, thereby forming a second filtrate and a second retentate, optionally, washing the second retentate, and eluting the second retentate from the capture membrane or lysing the second retentate to recover the contents.Type: ApplicationFiled: July 22, 2021Publication date: December 2, 2021Inventors: Jared A. Carter, Akash S. Patel, Cassandra R. Walinski, James A. Roussie
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Patent number: 11119013Abstract: Provided are methods, devices, and kits for the isolation of extracellular vesicles using silicon nanomembranes. A method for EV isolation includes the steps of collecting a biofluid sample, contacting the biofluid sample with a pre-filtration membrane, thereby forming a first filtrate and a first retentate, optionally, washing the first retentate of the pre-filtration membrane, contacting the first filtrate from the pre-filtration membrane with a capture membrane, thereb forming a second filtrate and a second retentate, optionally, washing the second retentate, and eluting the second retentate from the capture membrane or lysing the second retentate to recover the contents.Type: GrantFiled: October 11, 2019Date of Patent: September 14, 2021Assignee: Simpore Inc.Inventors: Jared A. Carter, Akash S. Patel, Cassandra R. Walinski, James A. Roussie
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Patent number: 11008953Abstract: Systems, apparatus, and methods are disclosed that include a divided exhaust engine with at least one primary exhaust gas recirculation (EGR) cylinder and a plurality of non-primary EGR cylinders. The systems, apparatus and methods control the EGR fraction by deactivation of one or more of the cylinders.Type: GrantFiled: December 10, 2019Date of Patent: May 18, 2021Assignee: Cummins Inc.Inventors: Akash S. Desai, David J. Langenderfer
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Publication number: 20200256261Abstract: Systems, apparatus, and methods are disclosed that include a divided exhaust engine with at least one primary exhaust gas recirculation (EGR) cylinder and a plurality of non-primary EGR cylinders. The systems, apparatus and methods control the EGR fraction by deactivation of one or more of the cylinders.Type: ApplicationFiled: December 10, 2019Publication date: August 13, 2020Inventors: Akash S. Desai, David J. Langenderfer
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Publication number: 20200116603Abstract: Provided are methods, devices, and kits for the isolation of extracellular vesicles using silicon nanomembranes. A method for EV isolation includes the steps of collecting a biofluid sample, contacting the biofluid sample with a pre-filtration membrane, thereby forming a first filtrate and a first retentate, optionally, washing the first retentate of the pre-filtration membrane, contacting the first filtrate from the pre-filtration membrane with a capture membrane, thereby forming a second filtrate and a second retentate, optionally, washing the second retentate, and eluting the second retentate from the capture membrane or lysing the second retentate to recover the contents.Type: ApplicationFiled: October 11, 2019Publication date: April 16, 2020Inventors: Jared A. Carter, Akash S. Patel, Cassandra R. Walinski, James A. Roussie
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Patent number: 10576978Abstract: Systems and apparatuses include a controller structured to: receive information indicative of an operating condition of a vehicle subsystem, receive information indicative of an external static condition, and receive information indicative of an external dynamic condition. The system is further configured to predict a fuel cut event based on at least one of the operating condition of the vehicle subsystem, the external static condition, and the external dynamic condition. Responsive to predicting a fuel cut event, the controller is structured to modulate at least one of a torque or a speed of the engine based on the operating condition of the vehicle subsystem and at least one of the information indicative of the external static condition and the external dynamic condition.Type: GrantFiled: December 6, 2017Date of Patent: March 3, 2020Assignee: Cummins, Inc.Inventors: Hoseinali Borhan, Akash S. Desai, Edmund P. Hodzen, Pinak Jayant Tulpule, Bibin N. Pattel
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Publication number: 20190168753Abstract: Systems and apparatuses include a controller structured to: receive information indicative of an operating condition of a vehicle subsystem, receive information indicative of an external static condition, and receive information indicative of an external dynamic condition. The system is further configured to predict a fuel cut event based on at least one of the operating condition of the vehicle subsystem, the external static condition, and the external dynamic condition. Responsive to predicting a fuel cut event, the controller is structured to modulate at least one of a torque or a speed of the engine based on the operating condition of the vehicle subsystem and at least one of the information indicative of the external static condition and the external dynamic condition.Type: ApplicationFiled: December 6, 2017Publication date: June 6, 2019Inventors: Hoseinali Borhan, Akash S. Desai, Edmund P. Hodzen, Pinak Jayant Tulpule, Bibin N. Pattel
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Patent number: 10006432Abstract: A method of responding to a detected blowout in a coil ignition system is provided in this disclosure. The method includes receiving a characteristic regarding operation of a coil ignition system; determining a blowout condition exists for the coil ignition system based on the characteristic; and providing a command to the coil ignition system based on the determination that the blowout condition exists, wherein the command is structured to reduce a residual charge amount in the coil ignition system.Type: GrantFiled: August 15, 2016Date of Patent: June 26, 2018Assignee: Cummins, Inc.Inventors: Akash S. Desai, Karthik Kappaganthu, Benjamin L. Olivas, Douglas L. Sprunger, David Stroh
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Publication number: 20160348634Abstract: A method of responding to a detected blowout in a coil ignition system is provided in this disclosure. The method includes receiving a characteristic regarding operation of a coil ignition system; determining a blowout condition exists for the coil ignition system based on the characteristic; and providing a command to the coil ignition system based on the determination that the blowout condition exists, wherein the command is structured to reduce a residual charge amount in the coil ignition system.Type: ApplicationFiled: August 15, 2016Publication date: December 1, 2016Applicant: Cummins, Inc.Inventors: Akash S. Desai, Karthik Kappaganthu, Benjamin L. Olivas, Douglas L. Sprunger, David Stroh
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Patent number: 9429134Abstract: A method of responding to a detected blowout in a coil ignition system is provided in this disclosure. The method includes receiving a characteristic regarding operation of a coil ignition system; determining a blowout condition exists for the coil ignition system based on the characteristic; and providing a command to the coil ignition system based on the determination that the blowout condition exists, wherein the command is structured to reduce a residual charge amount in the coil ignition system.Type: GrantFiled: December 2, 2014Date of Patent: August 30, 2016Assignee: Cummins, Inc.Inventors: Akash S. Desai, Karthik Kappaganthu, Benjamin L. Olivas, Douglas L. Sprunger, David Stroh
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Publication number: 20150152832Abstract: A method of responding to a detected blowout in a coil ignition system is provided in this disclosure. The method includes receiving a characteristic regarding operation of a coil ignition system; determining a blowout condition exists for the coil ignition system based on the characteristic; and providing a command to the coil ignition system based on the determination that the blowout condition exists, wherein the command is structured to reduce a residual charge amount in the coil ignition system.Type: ApplicationFiled: December 2, 2014Publication date: June 4, 2015Applicant: CUMMINS, INC.Inventors: Akash S. Desai, Karthik Kappaganthu, Benjamin L. Olivas, Douglas L. Sprunger, David Stroh