Patents by Inventor William Braun
William Braun 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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Publication number: 20250258098Abstract: Provided herein are systems and methods of hyperspectral imaging microfluidic flow filters comprising flowable, optically-active bodies. These systems and methods provide novel light filtering systems and methods that improve spatial, spectral, and temporal resolution of hyperspectral imaging systems. In various aspects, the embodiments include measuring signals from a sensor array based on light reflected or emitted by the target, where a microfluidic channel system is arranged to allow light to pass through optically-active bodies flowing through the microfluidic channel system before reaching the sensor array.Type: ApplicationFiled: February 14, 2025Publication date: August 14, 2025Applicant: Rochester Institute of TechnologyInventor: William Braun
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Patent number: 12117886Abstract: In one embodiment, a processor includes: at least one core; and a power controller coupled to the at least one core. The power controller may include: a workload monitor circuit to calculate a background task ratio based on a first amount of time that the at least one core executed background tasks during an active duration; and a control circuit to dynamically apply a power management policy for a background mode when the background task ratio exceeds a background mode threshold, the power management policy for the background mode to reduce power consumption of the processor. Other embodiments are described and claimed.Type: GrantFiled: August 15, 2023Date of Patent: October 15, 2024Assignee: Intel CorporationInventors: Jianfang Zhu, Deepak Samuel Kirubakaran, Raoul Rivas Toledano, Chee Lim Nge, Rajshree Chabukswar, James Hermerding, II, Sudheer Nair, William Braun, Zhongsheng Wang, Russell Fenger, Udayan Kapaley
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Publication number: 20240152373Abstract: In one embodiment, a method includes: receiving, in a first circuit of a processor, an indication of an entry of the processor into a first virtual machine, the processor to execute in a virtual machine environment having a root partition and at least one virtual partition comprising the first virtual machine; allocating a first hardware feedback structure for the root partition and allocating a second hardware feedback structure for the at least one virtual partition; populating the first hardware feedback structure with first performance and efficiency information regarding a plurality of cores of the processor; populating the second hardware feedback structure with the first performance and efficiency information regarding the plurality of cores of the processor; and providing the first performance and efficiency information from the second hardware feedback structure to a virtual machine scheduler of the at least one virtual partition. Other embodiments are described and claimed.Type: ApplicationFiled: November 9, 2022Publication date: May 9, 2024Inventors: Raoul Rivas Toledano, Brandon Luk, William Braun
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Publication number: 20240045490Abstract: In one embodiment, a processor includes: at least one core; and a power controller coupled to the at least one core. The power controller may include: a workload monitor circuit to calculate a background task ratio based on a first amount of time that the at least one core executed background tasks during an active duration; and a control circuit to dynamically apply a power management policy for a background mode when the background task ratio exceeds a background mode threshold, the power management policy for the background mode to reduce power consumption of the processor. Other embodiments are described and claimed.Type: ApplicationFiled: August 15, 2023Publication date: February 8, 2024Inventors: Jianfang Zhu, Deepak Samuel Kirubakaran, Raoul Rivas Toledano, Chee Lim Nge, Rajshree Chabukswar, James Hermerding, II, Sudheer Nair, William Braun, Zhongsheng Wang, Russell Fenger, Udayan Kapaley
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Patent number: 11775047Abstract: In one embodiment, a processor includes: at least one core; and a power controller coupled to the at least one core. The power controller may include: a workload monitor circuit to calculate a background task ratio based on a first amount of time that the at least one core executed background tasks during an active duration; and a control circuit to dynamically apply a power management policy for a background mode when the background task ratio exceeds a background mode threshold, the power management policy for the background mode to reduce power consumption of the processor. Other embodiments are described and claimed.Type: GrantFiled: August 2, 2022Date of Patent: October 3, 2023Assignee: Intel CorporationInventors: Jianfang Zhu, Deepak Samuel Kirubakaran, Raoul Rivas Toledano, Chee Lim Nge, Rajshree Chabukswar, James Hermerding, II, Sudheer Nair, William Braun, Zhongsheng Wang, Russell Fenger, Udayan Kapaley
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Patent number: 11733761Abstract: Methods and apparatus to manage power and performance of computing devices based on user presence are disclosed. An apparatus includes an engagement detector to determine an engagement of a user with a device based on at least one of image data generated by an image sensor or an application running on the device; and an operation mode selector to select one of a plurality of operation modes for the device based on a level of engagement of the user, the plurality of operation modes including (1) a first operation mode associated with the device operating at a first performance level and a first power level and (2) a second operation mode associated with the device operating at a second performance level and a second power level, the first performance level being higher than the second performance level, the first power level being higher than the second power level.Type: GrantFiled: December 27, 2019Date of Patent: August 22, 2023Assignee: INTEL CORPORATIONInventors: Vishal Sinha, Paul Diefenbaugh, Kristoffer Fleming, Raoul Rivas Toledano, Deepak Samuel Kirubakaran, William Braun
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Publication number: 20220374066Abstract: In one embodiment, a processor includes: at least one core; and a power controller coupled to the at least one core. The power controller may include: a workload monitor circuit to calculate a background task ratio based on a first amount of time that the at least one core executed background tasks during an active duration; and a control circuit to dynamically apply a power management policy for a background mode when the background task ratio exceeds a background mode threshold, the power management policy for the background mode to reduce power consumption of the processor. Other embodiments are described and claimed.Type: ApplicationFiled: August 2, 2022Publication date: November 24, 2022Inventors: JIANFANG ZHU, Deepak Samuel Kirubakaran, Raoul Rivas Toledano, Chee Lim Nge, Rajshree Chabukswar, James Hermerding, II, Sudheer Nair, William Braun, Zhongsheng Wang, Russell Fenger, Udayan Kapaley
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Patent number: 11422616Abstract: In one embodiment, a processor includes: at least one core; and a power controller coupled to the at least one core. The power controller may include: a workload monitor circuit to calculate a background task ratio based on a first amount of time that the at least one core executed background tasks during an active duration; and a control circuit to dynamically apply a power management policy for a background mode when the background task ratio exceeds a background mode threshold, the power management policy for the background mode to reduce power consumption of the processor. Other embodiments are described and claimed.Type: GrantFiled: March 26, 2020Date of Patent: August 23, 2022Assignee: Intel CorporationInventors: Jianfang Zhu, Deepak Samuel Kirubakaran, Raoul Rivas Toledano, Chee Lim Nge, Rajshree Chabukswar, James Hermerding, II, Sudheer Nair, William Braun, Zhongsheng Wang, Russell Fenger, Udayan Kapaley
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Publication number: 20210303054Abstract: In one embodiment, a processor includes: at least one core; and a power controller coupled to the at least one core. The power controller may include: a workload monitor circuit to calculate a background task ratio based on a first amount of time that the at least one core executed background tasks during an active duration; and a control circuit to dynamically apply a power management policy for a background mode when the background task ratio exceeds a background mode threshold, the power management policy for the background mode to reduce power consumption of the processor. Other embodiments are described and claimed.Type: ApplicationFiled: March 26, 2020Publication date: September 30, 2021Inventors: JIANFANG ZHU, DEEPAK SAMUEL KIRUBAKARAN, RAOUL RIVAS TOLEDANO, CHEE LIM NGE, RAJSHREE CHABUKSWAR, JAMES HERMERDING, II, SUDHEER NAIR, WILLIAM BRAUN, ZHONGSHENG WANG, RUSSELL FENGER, UDAYAN KAPALEY
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Publication number: 20210304096Abstract: Techniques and mechanisms to dynamically prioritize communication of a data flow based on an indication of a user's interest in a particular task. In an embodiment, data flows correspond to different respective tasks that are executed with a host operating system. An output of a human interface device indicates whether, at a particular time, a user of a computer device is interested in one particular task over another task. Where greater user interest in a first task is indicated, a first packet type corresponding to the first task is assigned a relatively high priority, as compared to a second packet type which corresponds to a second task. Based on the priority, a resource of the network interface is selectively made available (or prevented from being made available) for the communication of a given packet. In another embodiment, the resource includes a queue of the network interface.Type: ApplicationFiled: March 27, 2020Publication date: September 30, 2021Applicant: Intel CorporationInventors: Deepak Samuel Kirubakaran, Venkateshan Udhayan, Atsuo Kuwahara, Rajshree Chabukswar, Ramakrishnan Sivakumar, William Braun, Noam Ginsburg, Jianfeng Zhu, Paul Diefenbaugh, Kristoffer Fleming, Keerthanna Mohan
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Patent number: 10704643Abstract: A damped propshaft assembly with a hollow shaft and a tuned damper, which is received in the hollow shaft and includes a liner and a damping member. The liner's mass and stiffness are tuned to attenuate one or more of a bending mode vibration and a torsion mode vibration that occurs at a first predetermined frequency. The liner is not configured to substantially damp shell mode vibration that occurs at a frequency that is not equal to the first predetermined frequency. The damping member is coupled to the liner and is configured to primarily attenuate shell mode vibration in the hollow shaft at one or more desired frequencies. The tuned damper attenuates the at least one of the bending moment vibration and the torsion mode vibration at the first predetermined frequency and also attenuates shell mode vibration. A method for forming a damped propshaft assembly is also provided.Type: GrantFiled: July 6, 2018Date of Patent: July 7, 2020Assignee: American Axle & Manufacturing, Inc.Inventors: Jason Ley, Zhaohui Sun, William Braun, Jeffrey P. Nyquist, Michael A. Voight
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Publication number: 20200133374Abstract: Methods and apparatus to manage power and performance of computing devices based on user presence are disclosed. An apparatus includes an engagement detector to determine an engagement of a user with a device based on at least one of image data generated by an image sensor or an application running on the device; and an operation mode selector to select one of a plurality of operation modes for the device based on a level of engagement of the user, the plurality of operation modes including (1) a first operation mode associated with the device operating at a first performance level and a first power level and (2) a second operation mode associated with the device operating at a second performance level and a second power level, the first performance level being higher than the second performance level, the first power level being higher than the second power level.Type: ApplicationFiled: December 27, 2019Publication date: April 30, 2020Inventors: Vishal Sinha, Paul Diefenbaugh, Kristoffer Fleming, Raoul Rivas Toledano, Deepak Samuel Kirubakaran, William Braun
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Publication number: 20180313428Abstract: A damped propshaft assembly with a hollow shaft and a tuned damper, which is received in the hollow shaft and includes a liner and a damping member. The liner's mass and stiffness are tuned to attenuate one or more of a bending mode vibration and a torsion mode vibration that occurs at a first predetermined frequency. The liner is not configured to substantially damp shell mode vibration that occurs at a frequency that is not equal to the first predetermined frequency. The damping member is coupled to the liner and is configured to primarily attenuate shell mode vibration in the hollow shaft at one or more desired frequencies. The tuned damper attenuates the at least one of the bending moment vibration and the torsion mode vibration at the first predetermined frequency and also attenuates shell mode vibration. A method for forming a damped propshaft assembly is also provided.Type: ApplicationFiled: July 6, 2018Publication date: November 1, 2018Inventors: Jason LEY, Zhaohui SUN, William BRAUN, Jeffrey P. NYQUIST, Michael A. VOIGHT
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Patent number: 10018244Abstract: A damped propshaft assembly with a hollow shaft and a tuned damper, which is received in the hollow shaft and includes a liner and a damping member. The liner's mass and stiffness are tuned to attenuate one or more of a bending mode vibration and a torsion mode vibration that occurs at a first predetermined frequency. The liner is not configured to substantially damp shell mode vibration that occurs at a frequency that is not equal to the first predetermined frequency. The damping member is coupled to the liner and is configured to primarily attenuate shell mode vibration in the hollow shaft at one or more desired frequencies. The tuned damper attenuates the at least one of the bending moment vibration and the torsion mode vibration at the first predetermined frequency and also attenuates shell mode vibration. A method for forming a damped propshaft assembly is also provided.Type: GrantFiled: October 28, 2015Date of Patent: July 10, 2018Assignee: American Axle & Manufacturing, Inc.Inventors: Jason Ley, Zhaohui Sun, William Braun, Jeffrey P. Nyquist, Michael A. Voight
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Publication number: 20160047436Abstract: A damped propshaft assembly with a hollow shaft and a tuned damper, which is received in the hollow shaft and includes a liner and a damping member. The liner's mass and stiffness are tuned to attenuate one or more of a bending mode vibration and a torsion mode vibration that occurs at a first predetermined frequency. The liner is not configured to substantially damp shell mode vibration that occurs at a frequency that is not equal to the first predetermined frequency. The damping member is coupled to the liner and is configured to primarily attenuate shell mode vibration in the hollow shaft at one or more desired frequencies. The tuned damper attenuates the at least one of the bending moment vibration and the torsion mode vibration at the first predetermined frequency and also attenuates shell mode vibration. A method for forming a damped propshaft assembly is also provided.Type: ApplicationFiled: October 28, 2015Publication date: February 18, 2016Inventors: Jason Ley, Zhaohui Sun, William Braun, Jeffrey P. Nyquist, Michael A. Voight
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Patent number: 9175718Abstract: A damped propshaft assembly with a hollow shaft and a tuned damper, which is received in the hollow shaft and includes a liner and a damping member. The liner's mass and stiffness are tuned to attenuate one or more of a bending mode vibration and a torsion mode vibration that occurs at a first predetermined frequency. The liner is not configured to substantially damp shell mode vibration that occurs at a frequency that is not equal to the first predetermined frequency. The damping member is coupled to the liner and is configured to primarily attenuate shell mode vibration in the hollow shaft at one or more desired frequencies. The tuned damper attenuates the at least one of the bending moment vibration and the torsion mode vibration at the first predetermined frequency and also attenuates shell mode vibration. A method for forming a damped propshaft assembly is also provided.Type: GrantFiled: August 27, 2014Date of Patent: November 3, 2015Assignee: American Axle & Manufacturing, Inc.Inventors: Jason Ley, Zhaohui Sun, William Braun, Jeffrey P. Nyquist, Michael A. Voight
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Publication number: 20150300449Abstract: A damped propshaft assembly with a hollow shaft and a tuned damper, which is received in the hollow shaft and includes a liner and a damping member. The liner's mass and stiffness are tuned to attenuate one or more of a bending mode vibration and a torsion mode vibration that occurs at a first predetermined frequency. The liner is not configured to substantially damp shell mode vibration that occurs at a frequency that is not equal to the first predetermined frequency. The damping member is coupled to the liner and is configured to primarily attenuate shell mode vibration in the hollow shaft at one or more desired frequencies. The tuned damper attenuates the at least one of the bending moment vibration and the torsion mode vibration at the first predetermined frequency and also attenuates shell mode vibration. A method for forming a damped propshaft assembly is also provided.Type: ApplicationFiled: August 27, 2014Publication date: October 22, 2015Inventors: Jason Ley, Zhaohui Sun, William Braun, Jeffrey P. Nyquist, Michael A. Voight
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Patent number: 8863390Abstract: A method for forming a propshaft assembly. The method includes: providing a hollow shaft; tuning a mass and a stiffness of at least one liner to form an intermediate damper, the intermediate damper being configured to attenuate at least one of a bending moment vibration and a torsion mode vibration that occurs at a first predetermined frequency; tuning the intermediate damper to form a tuned damper, the tuned damper attenuating the at least one of the bending moment vibration and the torsion mode vibration at the first predetermined frequency and also attenuating shell mode vibration; and installing the tuned damper into the hollow shaft.Type: GrantFiled: April 16, 2014Date of Patent: October 21, 2014Assignee: American Axle & Manufacturing, Inc.Inventors: Jason Ley, Zhaohui Sun, William Braun, Jeffrey P. Nyquist, Michael A. Voight
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Publication number: 20070170709Abstract: An apparatus (10) for helping to protect an occupant of a vehicle includes a housing (20) including a vent opening (70). An air bag (14) is inflatable to deploy away from the housing (20). An inflation fluid source (26) provides inflation fluid for inflating the air bag (14). A vent member (80) has a closed condition blocking inflation fluid flow through the vent opening (70) and an open condition permitting inflation fluid flow through the vent opening. A first tether (114) is configured to release the vent member (80) for movement from the closed condition when the air bag (14) has deployed a first distance away from the housing (20). A second tether (140) is configured to place the vent member (80) in the closed condition when the air bag (14) has deployed a second distance away from the housing (20), the second distance being farther away from the housing than the first distance.Type: ApplicationFiled: January 20, 2006Publication date: July 26, 2007Inventors: William Braun, Ken Taggart, Douglas Gould, Kurt Fischer, Alex Meduvsky, Michael Loyd
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Publication number: 20060255579Abstract: A vehicle occupant protection apparatus (10) includes an occupant protection device (14) and an inflation fluid source (12) that is actuatable for providing inflation fluid for inflating the occupant protection device (14). The apparatus (10) also includes a conduit (34) for directing a flow of inflation fluid from the inflation fluid source (12) to the occupant protection device (14). The conduit (34) includes two rigid portions (40 and 42) and a flexible portion (70) that is interposed between the rigid portions (40 and 42). The flexible portion (70) of the conduit (34) directs the flow of inflation fluid from one rigid portion (40) to the other rigid portion (42) and permits the rigid portions (40 and 42) to be moved relative to one another while remaining connected through the flexible portion (70).Type: ApplicationFiled: May 13, 2005Publication date: November 16, 2006Inventors: John Wallner, William Braun, Neal Delventhal