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公开(公告)号:US10942562B2
公开(公告)日:2021-03-09
申请号:US16146454
申请日:2018-09-28
Applicant: Intel Corporation
Inventor: Shekoufeh Qawami , Nageen Himayat , Chaitanya Sreerama , Hassnaa Moustafa , Rita Wouhaybi , Linda Hurd , Nadine L Dabby , Van Le , Gayathri Jeganmohan , Ankitha Chandran
IPC: G06F1/00 , G06F1/3296 , G06F1/3212 , G06F1/324 , G06T15/00 , G06K9/00 , G06N5/04 , G06N20/00 , G06F1/3234 , G06F1/3206
Abstract: Methods and apparatus to manage operation of variable-state computing devices using artificial intelligence are disclosed. An example computing device includes a hardware platform. The example computing device also includes an artificial intelligence (AI) engine to: determine a context of the device; and adjust an operation of the hardware platform based on an expected change in the context of the device. The adjustment modifies at least one of a computational efficiency of the device, a power efficiency of the device, or a memory response time of the device.
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公开(公告)号:US10886209B2
公开(公告)日:2021-01-05
申请号:US16326544
申请日:2016-09-30
Applicant: Intel Corporation
Inventor: Stephen Harvey Hall , Bok Eng Cheah , Chaitanya Sreerama , Jackson Chung Peng Kong
IPC: H01L23/498 , H01L23/66 , H01L21/48
Abstract: A self-equalizing interconnect in a connector is installed in a microelectronic device. The self-equalizing interconnect is formed of a plurality of electrically conductive layers under conditions to offset skin-effect losses with respect to frequency change during operation. Each successive layer is configured to with the next highest electrical conductivity and subsequent electrically conductive films gradually decrease in electrical conductivity. In an embodiment, thickness of the conductive film adjacent the reference plain is configured thinnest and subsequent films are added and are seriatim gradually thicker. The highest electrically conductive film is configured closest to a reference plane in the connector, and the lowest electrically conductive film is farthest from the reference plane.
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3.
公开(公告)号:US20190050049A1
公开(公告)日:2019-02-14
申请号:US16146454
申请日:2018-09-28
Applicant: Intel Corporation
Inventor: Shekoufeh Qawami , Nageen Himayat , Chaitanya Sreerama , Hassnaa Moustafa , Rita Wouhaybi , Linda Hurd , Nadine L Dabby , Van Le , Gayathri Jeganmohan , Ankitha Chandran
Abstract: Methods and apparatus to manage operation of variable-state computing devices using artificial intelligence are disclosed. An example computing device includes a hardware platform. The example computing device also includes an artificial intelligence (AI) engine to: determine a context of the device; and adjust an operation of the hardware platform based on an expected change in the context of the device. The adjustment modifies at least one of a computational efficiency of the device, a power efficiency of the device, or a memory response time of the device.
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公开(公告)号:US09330039B2
公开(公告)日:2016-05-03
申请号:US13726748
申请日:2012-12-26
Applicant: INTEL CORPORATION
Inventor: Stephen H. Hall , Chaitanya Sreerama , Jason A. Mix , Michael W. Leddige , Jose A. Sanchez Sanchez , Olufemi B. Oluwafemi , Paul G. Huray , Maynard C. Falconer
IPC: G06F13/40
CPC classification number: G06F13/4022
Abstract: Techniques for encoding data are described herein. An example of a device in accordance with the present techniques includes a signaling module coupled to a plurality of digital inputs. The signaling module is to encode data received at the plurality of digital inputs to generate encoded data. Based on the encoded data, the signaling module can drive line voltages on a plurality of signal lines of a bus. Each one of the plurality of line voltages corresponds to a weighted sum of the data received at the plurality of digital inputs.
Abstract translation: 本文描述了用于编码数据的技术。 根据本技术的设备的示例包括耦合到多个数字输入的信令模块。 信令模块是对在多个数字输入端接收的数据进行编码,以生成编码数据。 基于编码数据,信令模块可以驱动总线的多个信号线上的线路电压。 多个线路电压中的每一个对应于在多个数字输入端接收的数据的加权和。
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5.
公开(公告)号:US20190049933A1
公开(公告)日:2019-02-14
申请号:US16144840
申请日:2018-09-27
Applicant: Intel Corporation
Inventor: Shekoufeh Qawami , Chaitanya Sreerama , Hassnaa Moustafa , Rita Wouhaybi , Nadine L. Dabby
IPC: G05B19/418 , G05B13/04
Abstract: Methods, apparatus, systems and articles of manufacture are disclosed to improve boundary excursion detection. An example apparatus to improve boundary excursion detection includes a metadata extractor to parse a first control stream to extract embedded metadata, a metadata label resolver to classify a boundary term of the extracted embedded metadata, a candidate stream selector to identify candidate second control streams that include a boundary term that matches the classified boundary term of the first control stream, and a boundary vector calculator to improve boundary excursion detection by calculating a boundary vector factor based on respective ones of the candidate second control streams that include the classified boundary term.
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公开(公告)号:US20190214336A1
公开(公告)日:2019-07-11
申请号:US16326544
申请日:2016-09-30
Applicant: Intel Corporation
Inventor: Stephen Harvey Hall , Bok Eng Cheah , Chaitanya Sreerama , Jackson Chung Peng Kong
IPC: H01L23/498 , H01L23/66 , H01L21/48
CPC classification number: H01L23/49822 , H01L21/4857 , H01L23/498 , H01L23/49811 , H01L23/49866 , H01L23/66
Abstract: A self-equalizing interconnect in a connector is installed in a microelectronic device. The self-equalizing interconnect is formed of a plurality of electrically conductive layers under conditions to offset skin-effect losses with respect to frequency change during operation. Each successive layer is configured to with the next highest electrical conductivity and subsequent electrically conductive films gradually decrease in electrical conductivity. In an embodiment, thickness of the conductive film adjacent the reference plain is configured thinnest and subsequent films are added and are seriatim gradually thicker. The highest electrically conductive film is configured closest to a reference plane in the connector, and the lowest electrically conductive film is farthest from the reference plane.
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公开(公告)号:US09632961B2
公开(公告)日:2017-04-25
申请号:US13844671
申请日:2013-03-15
Applicant: Intel Corporation
Inventor: Olufemi B. Oluwafemi , Stephen H. Hall , Jason A. Mix , Earl J. Wight , Chaitanya Sreerama , Michael W. Leddige , Paul G. Huray
IPC: G06F13/40
CPC classification number: G06F13/4004 , G06F13/4022
Abstract: Techniques for decoding encoded data are described herein. An example of a device in accordance with the present techniques includes a receiving signaling module coupled to a plurality of signal lines. The signaling module includes a receiver to receive a plurality of encoded line voltages or currents on the plurality of signal lines of a bus, wherein each one of the plurality of encoded line voltages corresponds to a weighted sum of data. The signaling module includes a comparator to determine the voltage level of each line at a unit interval and convert the voltage level to a digital value. The signaling module includes a lookup table correlating the digital value with a digital bit stream.
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公开(公告)号:US11292133B2
公开(公告)日:2022-04-05
申请号:US16145796
申请日:2018-09-28
Applicant: Intel Corporation
Inventor: Rita H. Wouhaybi , Shekoufeh Qawami , Hassnaa Moustafa , Chaitanya Sreerama , Nadine L. Dabby
Abstract: Methods and apparatus to train interdependent autonomous machines are disclosed. An example method includes performing an action of a first sub-task of a collaborative task with a first collaborative robot in a robotic cell while a second collaborative robot operates in the robotic cell according to a first recorded action of the second collaborative robot, the first recorded action of the second collaborative robot recorded while a second robot controller associated with the second collaborative robot is trained to control the second collaborative robot to perform a second sub-task of the collaborative task, and training a first robot controller associated with the first collaborative robot based at least on a sensing of an interaction of the first collaborative robot with the second collaborative robot while the action of the first sub-task is performed by the first collaborative robot and the second collaborative robot operates according to the first recorded action.
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9.
公开(公告)号:US20190050686A1
公开(公告)日:2019-02-14
申请号:US16147663
申请日:2018-09-29
Applicant: Intel Corporation
Inventor: Hassnaa Moustafa , Rita H. Wouhaybi , Nadine L. Dabby , Chaitanya Sreerama , Shekoufeh Qawami
Abstract: Methods, apparatus, systems and articles of manufacture are disclosed to add common sense to a human machine interface. Disclosed examples include a human machine interface system that having an actuator to cause artificial intelligence to execute in a virtual execution environment to generate a virtual response to a user input. The system also includes a virtual consequence evaluator to evaluate a virtual consequence that follows from the virtual response, the virtual consequence generated by executing a model of human interactions, and an output device controller to cause an output device to perform a non-virtual response to the user input when the virtual consequence evaluator evaluates the virtual consequence as positive.
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公开(公告)号:US20190047149A1
公开(公告)日:2019-02-14
申请号:US16145796
申请日:2018-09-28
Applicant: Intel Corporation
Inventor: Rita H. Wouhaybi , Shekoufeh Qawami , Hassnaa Moustafa , Chaitanya Sreerama , Nadine L. Dabby
Abstract: Methods and apparatus to train interdependent autonomous machines are disclosed. An example method includes performing an action of a first sub-task of a collaborative task with a first collaborative robot in a robotic cell while a second collaborative robot operates in the robotic cell according to a first recorded action of the second collaborative robot, the first recorded action of the second collaborative robot recorded while a second robot controller associated with the second collaborative robot is trained to control the second collaborative robot to perform a second sub-task of the collaborative task, and training a first robot controller associated with the first collaborative robot based at least on a sensing of an interaction of the first collaborative robot with the second collaborative robot while the action of the first sub-task is performed by the first collaborative robot and the second collaborative robot operates according to the first recorded action.
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