Patents by Inventor Steven A. Johnson
Steven A. Johnson 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: 7641708Abstract: An air filter assembly for removing particulate matter from an incoming dirty air stream. The assembly includes a housing having an inlet, an outlet, a dirty air chamber and a clean air chamber and a non-cylindrical shaped elongated filter element arranged within the dirty air chamber constructed to remove particulate matter from an incoming air stream. A plurality of non-cylindrical filter elements are preferred. The non-cylindrical filter elements provide a decreased incoming air stream velocity when compared to conventional cylindrical filter elements having the same surface area. Alternately, the non-cylindrical filter elements allow an increase in the volume of incoming air when compared to conventional cylindrical filter elements having the same surface area.Type: GrantFiled: May 9, 2007Date of Patent: January 5, 2010Assignee: Donaldson Company, Inc.Inventors: Kristofer G. Kosmider, Steven A. Johnson, Thomas D. Raether
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Patent number: 7570742Abstract: This invention describes a method for increasing the speed of the parabolic marching method by about a factor of 256. This increase in speed can be used to accomplish a number of important objectives. Firstly, the speed can be used to collect data to form true 3-D images or 3-D assembled from 2-D slices. Speed allows larger images to be made. Secondly, the frequency of operation can be increased to 5 MHz to match the operating frequency of reflection tomography. This allow the improved imaging of speed of sound which in turn is used to correct errors in focusing delays in reflection tomography imaging. This allows reflection tomography to reach or closely approach its theoretical spatial resolution of ½ to ¾ wave lengths. A third benefit of increasing the operating frequency of inverse scattering to 5 MHz is the improved out of topographic plane spatial resolution. This improves the ability to detect small lesions.Type: GrantFiled: July 7, 2003Date of Patent: August 4, 2009Assignee: Techniscan, Inc.Inventors: Steven A. Johnson, David T. Borup, James Wiskin, Michael J. Berggren
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Publication number: 20090163137Abstract: Methods and systems for preparing data for broadcast via digital radio broadcast transmission is disclosed comprising the steps of receiving a plurality of content files corresponding to programming information for program content to be broadcast; receiving an index file having a pointer for each of the plurality of content files, wherein the index file is associated with a first logical address; storing the index file and the plurality of content files; scheduling a broadcast rotation of the index file and the plurality of content files (wherein the index file is scheduled for repeated transmission intermittently relative to selected ones of the content files); and transmitting the index file and the plurality of content files to an importer in accordance with the broadcast rotation.Type: ApplicationFiled: December 21, 2007Publication date: June 25, 2009Applicant: iBiquity Digital CorporationInventors: Armond R. Capparelli, Joseph F. D'Angelo, Joseph P. Haggerty, Steven A. Johnson, Bei Li, Lia Meller, Marek Milbar, Jordan Scott, Chinmay M. Shah, Kun Wang, Girish K. Warrier, Christopher R. Gould
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Publication number: 20080319318Abstract: A breast scanning system configured to scan a breast of a patient includes a table configured to receive the patient thereon. The table has an aperture formed therein configured to receive the breast of the patient pendant therethrough and positionable over and into a bath configured to contain a medium. An armature is movably disposable in the bath. The armature carries transducer arrays that are disposable in the bath, and configured to transmit and receive acoustic and/or ultrasound signals. A manual control is operatively coupled to the armature to manually move the armature and thus the transducer arrays within the bath.Type: ApplicationFiled: May 14, 2008Publication date: December 25, 2008Inventors: Steven A. Johnson, Michael J. Berggren, David T. Borup, Barry K. Hanover, James W. Wiskin, Jeff Pattee
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Publication number: 20080294043Abstract: Methods for imaging the internal structures of an object using an acoustic wave field are provided. In one aspect, for example, a method of imaging internals of a physical object using acoustic waves may include transmitting an acoustic wave field toward the object, receiving a resultant acoustic wave field with a receiver, where the resultant acoustic wave field is in response to the transmitted acoustic wave field reflected from or transmitted through the object, and determining a predicted resultant acoustic wave field derived from a model of the object. The method may also include determining a residual between the predicted resultant acoustic wave field and the resultant acoustic wave field, and back propagating the residual to determine corrections to the model of the object. In another aspect, the above recited steps may be further iterated to successively refine the model of the object over a number of iterations until a predefined condition is reached.Type: ApplicationFiled: May 14, 2008Publication date: November 27, 2008Inventors: Steven A. Johnson, David T. Borup, James W. Wiskin
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Patent number: 7264656Abstract: An air filter assembly for removing particulate matter from an incoming dirty air stream. The assembly includes a housing having an inlet, an outlet, a dirty air chamber and a clean air chamber and a non-cylindrical shaped elongated filter element arranged within the dirty air chamber constructed to remove particulate matter from an incoming air stream. A plurality of non-cylindrical filter elements are preferred. The non-cylindrical filter elements provide a decreased incoming air stream velocity when compared to conventional cylindrical filter elements having the same surface area. Alternately, the non-cylindrical filter elements allow an increase in the volume of incoming air when compared to conventional cylindrical filter elements having the same surface area.Type: GrantFiled: September 28, 2004Date of Patent: September 4, 2007Assignee: Donaldson Company, Inc.Inventors: Kristofer G. Kosmider, Steven A. Johnson, Thomas D. Raether
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Patent number: 7114013Abstract: The intelligent data storage manager functions to combine the non-homogeneous physical devices contained in a data storage subsystem to create a logical device with new and unique quality of service characteristics that satisfy the criteria for the policies appropriate for the present data object. In particular, if there is presently no logical device that is appropriate for use in storing the present data object, the intelligent data storage manager defines a new logical device using existing physical and/or logical device definitions as component building blocks to provide the appropriate characteristics to satisfy the policy requirements. The intelligent data storage manager uses weighted values that are assigned to each of the presently defined logical devices to produce a best fit solution to the requested policies in an n-dimensional best fit matching algorithm.Type: GrantFiled: September 28, 2001Date of Patent: September 26, 2006Assignee: Storage Technology CorporationInventors: Mark Alan Bakke, Stephen Henry Blendermann, Steven Halladay, Steven A. Johnson, Jeffrey Steven Laughlin, George Arthur Rudeseal, Charles Patrick Schafer, Thomas David West, Michael C. Wojnar
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Publication number: 20040034307Abstract: This invention describes a method for increasing the speed of the parabolic marching method by about a factor of 256. This increase in speed can be used to accomplish a number of important objectives. Firstly, the speed can be used to collect data to form true 3-D images or 3-D assembled from 2-D slices. Speed allows larger images to be made. Secondly, the frequency of operation can be increased to 5 MHz to match the operating frequency of reflection tomography. This allow the improved imaging of speed of sound which in turn is used to correct errors in focusing delays in reflection tomography imaging. This allows reflection tomography to reach or closely approach its theoretical spatial resolution of ½ to ¾ wave lengths. A third benefit of increasing the operating frequency of inverse scattering to 5 MHz is the improved out of topographic plane spatial resolution. This improves the ability to detect small lesions.Type: ApplicationFiled: July 7, 2003Publication date: February 19, 2004Inventors: Steven A. Johnson, David T. Borup, James Wiskin, Michael J. Berggren
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Patent number: 6636584Abstract: A method for increasing the speed of the parabolic marching method by about a factor of 256. This increase in speed can be used to accomplish a number of important objectives. Firstly, the speed can be used to collect data to form true 3-D images or 3-D assembled from 2-D slices. Speed allows larger images to be made. Secondly, the frequency of operation can be increased to 5 MHz to match the operating frequency of reflection tomography. This allow the improved imaging of speed of sound which in turn is used to correct errors in focusing delays in reflection tomography imaging. This allows reflection tomography to reach or closely approach its theoretical spatial resolution of ½ to ¾ wave lengths. A third benefit of increasing the operating frequency of inverse scattering to 5 MHz is the improved out of topographic plane spatial resolution. This improves the ability to detect small lesions.Type: GrantFiled: December 17, 2001Date of Patent: October 21, 2003Assignee: TechniScan, Inc.Inventors: Steven A. Johnson, David T. Borup, James Wiskin, Michael J. Berggren
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Patent number: 6587540Abstract: This invention describes a method for increasing the speed of the parabolic marching method by about a factor of 256. Firstly, to form true 3-D images or 3-D assembled from 2-D slices. Secondly, the frequency of operation can be increased to 5 MHz to match the operating frequency of reflection tomography. This allow the improved imaging of speed of sound which in turn is used to correct errors in focusing delays in reflection tomography imaging. This allows reflection tomography to reach or closely approach its theoretical spatial resolution of ½ to ¾ wave lengths. A third benefit of increasing the operating frequency of inverse scattering to 5 MHz is the improved out of topographic plane spatial resolution. This improves the ability to detect small lesions. It also allow the use of small transducers and narrower beams so that slices can be made closer to the chest wall.Type: GrantFiled: December 21, 1999Date of Patent: July 1, 2003Assignee: Techniscan, Inc.Inventors: Steven A. Johnson, David T. Borup, James Wiskin, Michael J. Berggren
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Patent number: 6534947Abstract: A method and apparatus for controlling an electric motor pump. The method includes the acts of providing an AC power signal having a positive half cycle and a negative half cycle, measuring the voltage of the AC power signal and generating a first two-state output signal that is in a logic high state when the measured voltage is on the positive half cycle and that is in a logic low state when the measured voltage is on the negative half cycle, and measuring the current of the AC power signal and generating a second two-state output signal that is in logic high state when the measured current is on the positive half cycle and that is in a logic low state when the measured current is on the negative half cycle.Type: GrantFiled: January 12, 2001Date of Patent: March 18, 2003Assignee: Sta-Rite Industries, Inc.Inventors: Steven A. Johnson, Kip M. Larson, Dee R. Walker
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Publication number: 20020179131Abstract: A tray apparatus that can be attached to a walker and methods of using the tray apparatus. The tray apparatus has multiple configurations such that various object receiving surfaces may be selected for use.Type: ApplicationFiled: May 31, 2002Publication date: December 5, 2002Applicant: The Regents of the University of MinnesotaInventors: Steven A. Johnson, Laura LaVoie Sims
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Publication number: 20020178921Abstract: An air filter assembly for removing particulate matter from an incoming dirty air stream. The assembly includes a housing having an inlet, an outlet, a dirty air chamber and a clean air chamber and a non-cylindrical shaped elongated filter element arranged within the dirty air chamber constructed to remove particulate matter from an incoming air stream. A plurality of non-cylindrical filter elements are preferred. The non-cylindrical filter elements provide a decreased incoming air stream velocity when compared to conventional cylindrical filter elements having the same surface area. Alternately, the non-cylindrical filter elements allow an increase in the volume of incoming air when compared to conventional cylindrical filter elements having the same surface area.Type: ApplicationFiled: May 13, 2002Publication date: December 5, 2002Applicant: Donaldson Company, Inc.Inventors: Kristofer G. Kosmider, Steven A. Johnson, Thomas D. Raether
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Patent number: 6488746Abstract: An air filter assembly for removing particulate matter from an incoming dirty air stream. The assembly includes a housing having an inlet, an outlet, a dirty air chamber and a clean air chamber and a non-cylindrical shaped elongated filter element arranged within the dirty air chamber constructed to remove particulate matter from an incoming air stream. A plurality of non-cylindrical filter elements are preferred. The non-cylindrical filter elements provide a decreased incoming air stream velocity when compared to conventional cylindrical filter elements having the same surface area. Alternately, the non-cylindrical filter elements allow an increase in the volume of incoming air when compared to conventional cylindrical filter elements having the same surface area.Type: GrantFiled: May 13, 2002Date of Patent: December 3, 2002Assignee: Merchant & GouldInventors: Kristofer G. Kosmider, Steven A. Johnson, Thomas D. Raether
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Publication number: 20020131551Abstract: This invention describes a method for increasing the speed of the parabolic marching method by about a factor of 256. This increase in speed can be used to accomplish a number of important objectives. Firstly, the speed can be used to collect data to form true 3-D images or 3-D assembled from 2-D slices. Speed allows larger images to be made. Secondly, the frequency of operation can be increased to 5 MHz to match the operating frequency of reflection tomography. This allow the improved imaging of speed of sound which in turn is used to correct errors in focusing delays in reflection tomography imaging. This allows reflection tomography to reach or closely approach its theoretical spatial resolution of ½ to ¾ wave lengths. A third benefit of increasing the operating frequency of inverse scattering to 5 MHz is the improved out of topographic plane spatial resolution. This improves the ability to detect small lesions.Type: ApplicationFiled: December 17, 2001Publication date: September 19, 2002Inventors: Steven A. Johnson, David T. Borup, James Wiskin, Michael J. Berggren
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Publication number: 20020093306Abstract: A method and apparatus for controlling an electric motor pump. The method includes the acts of providing an AC power signal having a positive half cycle and a negative half cycle, measuring the voltage of the AC power signal and generating a first two-state output signal that is in a logic high state when the measured voltage is on the positive half cycle and that is in a logic low state when the measured voltage is on the negative half cycle, and measuring the current of the AC power signal and generating a second two-state output signal that is in logic high state when the measured current is on the positive half cycle and that is in a logic low state when the measured current is on the negative half cycle.Type: ApplicationFiled: January 12, 2001Publication date: July 18, 2002Inventors: Steven A. Johnson, Kip M. Larson, Dee R. Walker
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Patent number: 6415253Abstract: A noise suppression device receives data representative of a noise-corrupted signal which contains a speech signal and a noise signal, divides the received data into data frames, and then passes the data frames through a pre-filter to remove a dc-component and the minimum phase aspect of the noise-corrupted signal. The noise suppression device appends adjacent data frames to eliminate boundary discontinuities, and applies fast Fourier transform to the appended data frames. A voice activity detector of the noise suppression device determines if the noise-corrupted signal contains the speech signal based on components in the time domain and the frequency domain. A smoothed Wiener filter of the noise suppression device filters the data frames in the frequency domain using different sizes of a window based on the existence of the speech signal. Filter coefficients used for Wiener filter are smoothed before filtering.Type: GrantFiled: February 19, 1999Date of Patent: July 2, 2002Assignee: Meta-C CorporationInventor: Steven A. Johnson
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Patent number: 6387162Abstract: An air filter assembly for removing particulate matter from an incoming dirty air stream. The assembly includes a housing having an inlet, an outlet, a dirty air chamber and a clean air chamber and a non-cylindrical shaped elongated filter element arranged within the dirty air chamber constructed to remove particulate matter from an incoming air stream. A plurality of non-cylindrical filter elements are preferred. The non-cylindrical filter elements provide a decreased incoming air stream velocity when compared to conventional cylindrical filter elements having the same surface area. Alternately, the non-cylindrical filter elements allow an increase in the volume of incoming air when compared to conventional cylindrical filter elements having the same surface area.Type: GrantFiled: June 30, 2000Date of Patent: May 14, 2002Assignee: Donaldson Company Inc.Inventors: Kristofer G. Kosmider, Steven A. Johnson, Thomas D. Raether
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Patent number: 6364921Abstract: An air filter assembly for removing particulate matter from an incoming dirty air stream. The assembly includes a housing having an inlet, an outlet, a dirty air chamber and a clean air chamber and an elongated filter element arranged within the dirty air chamber constructed to remove particulate matter from an incoming air stream. The dirty air chamber has side walls, at least one of which is non-planar and has a distended portion. The distended side wall increases the volume within the dirty air chamber, thus providing for increased dirty air processing and/or decreased dirty air velocities.Type: GrantFiled: June 30, 2000Date of Patent: April 2, 2002Assignee: Donaldson Company, Inc.Inventors: Thomas D. Raether, Steven A. Johnson, Kristofer G. Kosmider
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Patent number: D499177Type: GrantFiled: July 31, 2002Date of Patent: November 30, 2004Assignee: Donaldson Company, Inc.Inventors: Kristofer G. Kosmider, Steven A. Johnson, Thomas D. Raether