Patents Examined by Cindy H Khuu
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Patent number: 7930129Abstract: A computer implemented method, data processing system, and computer usable code are provided for burn-in testing of a multiprocessor. A process identifies a power management data set for a plurality of processor cores associated with the multiprocessor. The process selects one or more of the plurality of processor cores to form a selected set of processor cores based upon the power management data set. The process initiates a burn-in test across the selected set of processor cores. In response to a determination that all processor cores in the plurality of processor cores have not been selected, the process repeats the above selecting and initiating steps until all the processor cores have been selected.Type: GrantFiled: May 2, 2008Date of Patent: April 19, 2011Assignee: International Business Machines CorporationInventors: Louis Bennie Capps, Jr., Anand Haridass, Ronald Edward Newhart, Michael J. Shapiro
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Patent number: 7925466Abstract: A speed measuring system for measuring the speed of a wireless communication terminal communicating with a base station includes an angle measuring unit, a distance measuring unit, a time measuring unit, and a speed calculator. The base station includes a signal tower and an antenna on the signal tower. The signal tower defines a central longitudinal axis perpendicular to the antenna, and the axis intersects the antenna at a point. The angle measuring unit measures an included angle between signal from the wireless communication terminal at any location and the antenna. The distance measuring unit measures a distance between the wireless communication terminal at any location and the point. The time measuring unit measures the time the wireless communication terminal takes from a first location to a second location. The speed calculator calculates the speed of the wireless communication terminal.Type: GrantFiled: March 31, 2009Date of Patent: April 12, 2011Assignee: Hon Hai Precision Industry Co., Ltd.Inventors: Chi-Sheng Ge, Chen-Huang Fan, Min-Wei Tseng
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Patent number: 7920974Abstract: One embodiment of the present invention provides a system that generates a vibration profile for a rotational device in a computer system. During operation, the system sequentially sweeps a rotation speed of a rotational device over a range of rotation speeds. While driving the rotational device at each rotation speed, the system collects a time-domain vibration signal produced by the rotational device and subsequently computes a frequency spectrum of the time-domain vibration signal. In this way, the system generates a set of frequency spectra associated with the range of rotation speeds. Next, the system combines the set of frequency spectra to generate a composite vibration profile for the rotational device.Type: GrantFiled: February 23, 2009Date of Patent: April 5, 2011Assignee: Oracle America, Inc.Inventors: Anton A. Bougaev, Aleksey M. Urmanov, David K. McElfresh
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Patent number: 7904259Abstract: A waterproof testing device tests waterproof performance of a waterproof component. The testing device includes an input unit, a storing unit and a determining unit. The input unit inputs permeability of one or more test objects with waterproof components disposed thereon and an air flow rate that is a volume of gas passing through the test object per unit time for each test object. The storing unit stores, in a data pair, the permeability and the air flow rate of each test object input by the input unit. The determining unit determines a range of permeability in which no water leakage occurs in the waterproof component based on a range of air flow rate in which no water leakage occurs and the stored permeability and air flow rate.Type: GrantFiled: December 19, 2008Date of Patent: March 8, 2011Assignee: Fujitsu LimitedInventor: Takao Shinoda
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Patent number: 7895010Abstract: A resolver apparatus having a high detection precision detecting angle signals from signals detected at a resolver (7) and detecting a velocity signal from the detected angle signals. Utilizing the fact that an error waveform of a resolver is comprised of predetermined n-th order components inherent to the resolver and has reproducibility, an angle error estimator (13) applies a frequency transform, for example, a Fourier transform, to high frequency components of velocity signal including error generated from detected angle signals including error to calculate a magnitude of error for each of a plurality of divided components and combining the calculated errors to reproduce the detected error and generate an error waveform signal. An angle signal correction circuit (14) uses this error waveform signal to correct an angle signal including error detected at the resolver.Type: GrantFiled: December 22, 2008Date of Patent: February 22, 2011Assignee: Toshiba Kikai Kabushiki KaishaInventor: Narutoshi Yokokawa
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Patent number: 7890274Abstract: A method for measuring a flow rate through a cooling hole of a film cooled part includes the steps of 1) measuring a transient thermal response of an internal surface temperature corresponding solely to an inside portion of a cooling hole for a film cooled part resulting from a flow of fluid through the part, the fluid having an initial temperature that is different from an initial temperature of the film cooled part, 2) mathematically characterizing the transient thermal response, and 3) determining the cooling hole flow rate from the mathematical characterization.Type: GrantFiled: March 30, 2009Date of Patent: February 15, 2011Assignee: General Electric CompanyInventors: Ronald Scott Bunker, Jason Randolph Allen, Jared Michael Crosby
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Patent number: 7885783Abstract: A remaining gas amount calculating device includes a hydrogen tank, an opening/closing valve arranged to deliver hydrogen gas from inside the hydrogen tank, a decompression valve arranged to decompress hydrogen gas delivered from the hydrogen tank, a pressure sensor arranged to measure the pressure of hydrogen gas decompressed with the decompression valve, and a power source system controller arranged to determine the remaining gas amount in the hydrogen tank by calculating the gas pressure in the hydrogen tank based on the hydrogen gas pressure measured with the pressure sensor. The relationship between pressures in a primary chamber and a secondary chamber of the decompression valve is monotonical such that when the pressure in the primary chamber increases, the pressure in the secondary chamber also increases; and when the pressure in the primary chamber decreases, the pressure in the secondary chamber also decreases.Type: GrantFiled: June 20, 2008Date of Patent: February 8, 2011Assignee: Yamaha Hatsudoki Kabushiki KaishaInventor: Atsushi Kurosawa
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Patent number: 7881908Abstract: A method is disclosed for determining individual quantum absorption events in a radiation converter which counts quanta. In at least one embodiment of the method, temporally continuous analog-to-digital conversion of electrical signals generated by a quantum absorption event to a digital signal is carried out first of all by the radiation converter. The digital signal is then processed to determine the number of quanta of the underlying quantum absorption event absorbed in the radiation converter.Type: GrantFiled: May 13, 2008Date of Patent: February 1, 2011Assignee: Siemens AktiengesellschaftInventors: Björn-Oliver Eversmann, Björn Heismann
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Patent number: 7877230Abstract: A system and method for evaluating a portion of a response time of an application that is attributable to an element on a virtual IP network by emulating a condition on a network, running the application on the network under the emulated network conditions and measuring a portion of the response time of the application that is attributable to elements on the network under such emulated conditions. The application may be varied and response times of various network elements may be measured under one or more of the variations.Type: GrantFiled: March 15, 2007Date of Patent: January 25, 2011Assignee: Shunra Software Ltd.Inventors: Gal Ofel, Shlomo Jacobson, Yair Horovitz
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Patent number: 7877227Abstract: A surface measurement instrument (1) for obtaining surface characteristic data of a sample surface (13) is described. Relative movement between a reference surface (11) and a sample support (15) is caused to occur while a sensor (16) senses light intensity at intervals along a scan path (SP) to provide a series of intensity values representing interference fringes produced by a region of a sample surface (13) during said relative movement and from which series of intensity values surface characteristic data can be derived. The sample support (15) is both translatable and tiltable in at least one direction perpendicular to a scan direction so that the sample support (15) can be both tilted to cause the scan path (SP) to be normal to the sample surface region and translated to compensate for translation movement due to the tilting.Type: GrantFiled: February 9, 2007Date of Patent: January 25, 2011Assignee: Taylor Hobson LimitedInventors: Ivor McDonnell, Andrew Douglas Bankhead, Daniel Ian Mansfield
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Patent number: 7877220Abstract: An electromagnetic flowmeter assembly is described in which an excitation field is set up across a flow conduit and electrodes are used to sense the electromagnetic field generated across the flow conduit as a result of interaction between the excitation field and fluid flowing along the flow conduit. The signals obtained from the electrodes are processed, together with stored calibration data, by processing circuitry to determine flow measurements and means is provided for dynamically updating the calibration data.Type: GrantFiled: July 28, 2008Date of Patent: January 25, 2011Assignee: ABB LimitedInventor: Troy Wray
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Patent number: 7873492Abstract: In a method for determining a compaction degree of a surface segment, the following steps are provided: passing over the deposited layer of the surface segment to be compacted, determining positional data of a position of the compacting machine, defining a current partial surface of the surface segment of the deposited layer, the current partial surface possibly consisting of a plurality of subsegments which have already been passed over, measuring and/or picking up parameters at the position of the compacting machine, and storing the parameters together with the position data, assigning the parameters to the current partial surface or to all subsegments of the current partial surface, computing, from the parameters, a current compaction degree for the current partial surface or each subsegment of the current partial surface.Type: GrantFiled: April 22, 2008Date of Patent: January 18, 2011Assignee: Hamm AGInventor: Hans-Peter Ackermann
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Patent number: 7869964Abstract: A method for designing an absorbent article and evaluating its absorption behaviour is disclosed. A system using the method, is also disclosed. The method may be used for analyzing movement of a fluid in an absorbent article that comprises fluid-swellable composite material, to determine the performance of at least one feature of the absorbent article. The method includes inputting one or more properties for said fluid-swellable composite material into a virtual model of the absorbent article to produce a representation of at least one feature of the absorbent article and evaluating the virtual model of the absorbent article to determine the performance of the feature.Type: GrantFiled: October 9, 2008Date of Patent: January 11, 2011Assignee: The Procter & Gamble CompanyInventors: Rodrigo Rosati, Holger Beruda, Mattias Schmidt, Raffaele Virgilio, Bruno Johannes Ehrnsperger, Andrea Peri
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Patent number: 7865323Abstract: The object of the present invention is to provide a calibration program and an electronic compass that make it possible to calibrate the output of a magnetic sensor with a small amount of computation while a user does not notice the execution of calibration. A calibration program according to an aspect of the invention includes: a step of forming at least two triangles 21 and 22 with the use of at least four outputs of a magnetic sensor in a three-dimensional space; a step of finding circles 23 and 24 circumscribed about the triangle 21 and 22, respectively; and a step of finding the intersection of normal vectors 25 and 26 each of which passes through the center of the corresponding circumscribed circle so as to find a reference point.Type: GrantFiled: November 7, 2008Date of Patent: January 4, 2011Assignee: Alps Electric Co., Ltd.Inventors: Kisei Hirobe, Yukimitsu Yamada, Katsuyuki Kawarada
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Patent number: 7848895Abstract: Stress rotation due to depletion can be estimated in reservoirs having an impermeable reservoir boundary. More specifically, the isotropic change in stress due to depletion, and the uniaxial stress resulting from a change in pore pressure across an impermeable boundary are both modeled as perturbations to an initial stress state. These perturbations can result in a rotation of the principal stress directions. Estimates of the stress rotation are helpful for hydraulic fracturing operations, because fracture tends to occur in a plane perpendicular to the least principal stress.Type: GrantFiled: January 15, 2008Date of Patent: December 7, 2010Assignee: The Board of Trustees of the Leland Stanford Junior UniversityInventors: Mark D. Zoback, Amy D. F. Day-Lewis, Sangmin Kim
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Patent number: 7844404Abstract: A system and method of estimating the torque value of an engine are provided. The method includes generating corrected variable values from engine measured parameters and using a plurality of steady state tables that output corrected engine torque estimates based on various corrected variable values as inputs. In a preferred embodiment, the method also includes a phase compensation technique that converts each steady state table torque estimate into a dynamic torque estimate that closely matches the torque sensor measurements during both transient and steady state engine operations. In addition, also in a preferred embodiment, the method further includes a weighted averaging scheme that combines multiple torque estimates with weighting factors that are optimized based on the accuracy attributes of each torque estimate.Type: GrantFiled: December 17, 2008Date of Patent: November 30, 2010Assignee: Honeywell International Inc.Inventors: Richard Ling, Oswald George Harris, John Rushinsky
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Patent number: 7840375Abstract: A method of generating a library from a reference substrate for use in processing product wafers is described. The method includes measuring substrate characteristics at a plurality of well-defined points of a reference substrate, measuring spectra at plurality of measurement points of the reference substrate, there being more measurement points than well-defined points, and associating measured spectra with measured substrate characteristics.Type: GrantFiled: March 31, 2008Date of Patent: November 23, 2010Assignee: Applied Materials, Inc.Inventors: Abraham Ravid, Boguslaw A. Swedek, Dominic J. Benvegnu, Jeffrey Drue David, Jun Qian, Sidney P. Huey, Ingemar Carlsson, Lakshmanan Karuppiah, Harry Q. Lee
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Patent number: 7835883Abstract: A rotation speed measuring device includes a position sensor outputting position signals indicating M (M >2) rotation positions of equal phase difference per rotation of the rotating equipment, a clock signal generator generating a clock signal; a counter counting the pulses of the clock signal; a measuring interval setting unit setting a duration coefficient indicating the ratio of a measuring interval during which the number of pulses is to be counted within a time period between two successively occurring position signals, to the entire time period between the two position signals; and causing the counter to count the number of pulses during the measuring interval; and a calculating unit calculating the rotation speed of the rotating equipment as a function of the frequency of the basic clock signal, the integer M, the duration coefficient, and the count value obtained by the counter.Type: GrantFiled: February 1, 2008Date of Patent: November 16, 2010Assignee: Seiko Epson CorporationInventor: Kesatoshi Takeuchi
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Patent number: 7831409Abstract: Method and system for yield similarity of semiconductor devices. Embodiments of the present invention provides a method for yield similarity of semiconductor devices. The method includes providing a first plurality of semiconductor devices and a second plurality of semiconductor devices. The method also includes obtaining a first plurality of yields associated with a first yield related to the first plurality of semiconductor devices. The method further includes obtaining a second plurality of yields associated with a second yield related to the second plurality of semiconductor devices. The method also includes providing a processor and performing a first statistical analysis for the first plurality of yields using at least the processor. The method includes determining a first statistical distribution based on at least information associated with the first statistical analysis. The method includes performing a second statistical analysis for the second plurality of yields.Type: GrantFiled: September 11, 2007Date of Patent: November 9, 2010Assignee: Semiconductor Manufacturing International (Shanghai) CorporationInventor: Eugene Wang
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Patent number: 7831414Abstract: An apparatus, a cognitive radio, a processor, a method, and a machine-readable medium for detecting a presence of a signal in a communication channel are disclosed. An apparatus includes a processor configured to select one or more peak samples of two or more fields of a sampled signal and configured to determine one or more absolute values of the one or more peak samples of the two or more fields. In addition, the processor is configured to superimpose the one or more absolute values of the one or more peak samples of the two or more fields. The processor is further configured to combine the one or more absolute values that fall within a predetermined window to produce a peak value and configured to compare the peak value with a threshold to determine a presence of a signal in the communication channel.Type: GrantFiled: October 2, 2007Date of Patent: November 9, 2010Assignee: QUALCOMM IncorporatedInventor: Stephen J. Shellhammer