Patents by Inventor John Eley
John Eley 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: 11100032Abstract: An integrated circuit may include a printed circuit board and multiple processor sockets on the printed circuit board. Each of the multiple processor sockets is operable to receive a microprocessor and a programmable device. When a microprocessor is placed in a processor socket, that microprocessor may communicate with memory dual in-line memory modules (DIMMs). When a programmable device is placed in a processor socket, that programmable device may first be configured using a configuration DIMM and may then communicate with memory DIMMs during normal operation. The configuration DIMM may include multiple options for configuring the programmable device and may also provide additional management functions specifically tailored to the programmable device.Type: GrantFiled: February 3, 2020Date of Patent: August 24, 2021Assignee: Intel CorporationInventors: David Browning, Brandon Courtney, John Eley
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Publication number: 20200174959Abstract: An integrated circuit may include a printed circuit board and multiple processor sockets on the printed circuit board. Each of the multiple processor sockets is operable to receive a microprocessor and a programmable device. When a microprocessor is placed in a processor socket, that microprocessor may communicate with memory dual in-line memory modules (DIMMs). When a programmable device is placed in a processor socket, that programmable device may first be configured using a configuration DIMM and may then communicate with memory DIMMs during normal operation. The configuration DIMM may include multiple options for configuring the programmable device and may also provide additional management functions specifically tailored to the programmable device.Type: ApplicationFiled: February 3, 2020Publication date: June 4, 2020Applicant: Intel CorporationInventors: David Browning, Brandon Courtney, John Eley
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Patent number: 10583313Abstract: The present disclosure relates to a new scan technique for particle radiation therapy that may be used for cancer treatment. One embodiment relates to a method of mitigating interplay effect in particle radiation therapy in a moving target including a period of movement, where the particle radiation therapy defines a planned dose in each spot of each layer of the moving target. The method comprising dividing the planned dose in each spot into a number of spot repaintings; and generating a scan pattern for each layer by defining a beam-on time at each spot for each spot repainting, and calculating a wait time between consecutive beam-on times to distribute the spot repaintings for each spot of a respective layer are distributed over a duration of an integer number of periods of movement.Type: GrantFiled: February 28, 2018Date of Patent: March 10, 2020Assignees: Varian Medical Systems Particle Therapy GmbH, University of Maryland, BaltimoreInventors: Per Rugaard Poulsen, John Eley, Ulrich Langner, Katja Langen
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Patent number: 10572430Abstract: An integrated circuit may include a printed circuit board and multiple processor sockets on the printed circuit board. Each of the multiple processor sockets is operable to receive a microprocessor and a programmable device. When a microprocessor is placed in a processor socket, that microprocessor may communicate with memory dual in-line memory modules (DIMMs). When a programmable device is placed in a processor socket, that programmable device may first be configured using a configuration DIMM and may then communicate with memory DIMMs during normal operation. The configuration DIMM may include multiple options for configuring the programmable device and may also provide additional management functions specifically tailored to the programmable device.Type: GrantFiled: October 11, 2018Date of Patent: February 25, 2020Assignee: Intel CorporationInventors: David Browning, Brandon Courtney, John Eley
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Publication number: 20190157253Abstract: A circuit system includes an integrated circuit package, first and second memory modules, and a base circuit board. The integrated circuit package houses a main integrated circuit die. The first memory module has a first circuit board and first memory integrated circuit dies coupled to the first circuit board. The second memory module has a second circuit board and second memory integrated circuit dies coupled to the second circuit board. The base circuit board is coupled to the integrated circuit package and to the first and second memory modules. The base circuit board includes conductors that couple the integrated circuit package to the first and second memory modules. The second memory module has a reverse orientation on the base circuit board relative to the first memory module such that the second memory integrated circuit dies face away from the first memory integrated circuit dies.Type: ApplicationFiled: January 22, 2019Publication date: May 23, 2019Applicant: Intel CorporationInventors: David Browning, John Eley
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Publication number: 20190042516Abstract: An integrated circuit may include a printed circuit board and multiple processor sockets on the printed circuit board. Each of the multiple processor sockets is operable to receive a microprocessor and a programmable device. When a microprocessor is placed in a processor socket, that microprocessor may communicate with memory dual in-line memory modules (DIMMs). When a programmable device is placed in a processor socket, that programmable device may first be configured using a configuration DIMM and may then communicate with memory DIMMs during normal operation. The configuration DIMM may include multiple options for configuring the programmable device and may also provide additional management functions specifically tailored to the programmable device.Type: ApplicationFiled: October 11, 2018Publication date: February 7, 2019Applicant: Intel CorporationInventors: David Browning, Brandon Courtney, John Eley
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Publication number: 20180280729Abstract: The present disclosure relates to a new scan technique for particle radiation therapy that may be used for cancer treatment. One embodiment relates to a method of mitigating interplay effect in particle radiation therapy in a moving target including a period of movement, where the particle radiation therapy defines a planned dose in each spot of each layer of the moving target. The method comprising dividing the planned dose in each spot into a number of spot repaintings; and generating a scan pattern for each layer by defining a beam-on time at each spot for each spot repainting, and calculating a wait time between consecutive beam-on times to distribute the spot repaintings for each spot of a respective layer are distributed over a duration of an integer number of periods of movement.Type: ApplicationFiled: February 28, 2018Publication date: October 4, 2018Inventors: Per Rugaard POULSEN, John ELEY, Ulrich LANGNER, Katja LANGEN
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Patent number: 9962556Abstract: A method for delivering therapeutic light ion radiation to a target volume of a subject, wherein the target volume is located at a predetermined depth from the skin, includes irradiating a surface of the skin with an array of light ion minibeams comprising parallel, spatially distinct minibeams at the surface in an amount and spatially arranged and sized to maintain a tissue-sparing effect from the skin to a proximal side of the target volume, and to merge into a solid beam at a proximal side of the target volume. A gap between the parallel, spatially distinct minibeams at the surface and a species of light ions forming the minibeams are selected such that the array merges into a solid beam at a predetermined beam energy, and across all energies for Bragg-peak spreading, at a proximal side of the target volume.Type: GrantFiled: June 24, 2015Date of Patent: May 8, 2018Assignee: BOARD OF REGENTS, THE UNIVERSITY OF TEXAS SYSTEMInventors: F. Avraham Dilmanian, Sunil Krishnan, John Eley
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Publication number: 20170128739Abstract: A method for delivering therapeutic light ion radiation to a target volume of a subject, wherein the target volume is located at a predetermined depth from the skin, includes irradiating a surface of the skin with an array of light ion minibeams comprising parallel, spatially distinct minibeams at the surface in an amount and spatially arranged and sized to maintain a tissue-sparing effect from the skin to a proximal side of the target volume, and to merge into a solid beam at a proximal side of the target volume. A gap between the parallel, spatially distinct minibeams at the surface and a species of light ions forming the minibeams are selected such that the array merges into a solid beam at a predetermined beam energy, and across all energies for Bragg-peak spreading, at a proximal side of the target volume.Type: ApplicationFiled: June 24, 2015Publication date: May 11, 2017Inventors: F. Avraham DILMANIAN, Sunil KRISHNAN, John ELEY
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Publication number: 20080257840Abstract: A storage system is provided with a support panel, having a plurality of sockets, and one or more support members, having mounting posts for engagement within the sockets. Nodules extend from the sides of the mounting posts that are received within recesses formed in the inner walls of the sockets to secure the mounting posts within the sockets. A modular design permits a plurality of support panels to be joined at their edges, to form a larger support panel, or to engage the edge of one panel with the face of another panel to provide a storage shelf. In one embodiment, a horizontal platform and vertical handle both provide surfaces for receiving support members while permitting the device to be mobile.Type: ApplicationFiled: May 27, 2008Publication date: October 23, 2008Inventor: John Eley
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Publication number: 20070162632Abstract: In some embodiments, a system board may include embedded graphics capability on the system board. An expansion slot on the system board may be adapted to receive an add-in card. A first circuit on the system board may detect the presence of a graphics card in the expansion slot automatically after powering up the system board. A second circuit on the system board may determine information associated with the graphics card automatically after powering up the system board. A third circuit on the system board may be configured to utilize the information associated with the graphics card to enable or disable all or some of the embedded graphics capability automatically after powering up the system board. Other embodiments are disclosed and claimed.Type: ApplicationFiled: June 30, 2006Publication date: July 12, 2007Inventors: Kay Ng, John Eley