Patents by Inventor Robert Anderson

Robert Anderson 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).

  • Publication number: 20220014256
    Abstract: Technology for a repeater is disclosed. The repeater can include a first antenna port and a second antenna port. The repeater can include a first uplink analog signal amplification and filtering path and a second uplink analog signal amplification and filtering path. The repeater can include a first downlink analog signal amplification and filtering path and a second downlink analog signal amplification and filtering path. The repeater can include an uplink software-defined filtering (SDF) module and a downlink SDF module.
    Type: Application
    Filed: July 9, 2021
    Publication date: January 13, 2022
    Inventors: Dale Robert Anderson, Casey James Nordgran, Christopher Ken Ashworth, Ilesh V. Patel
  • Patent number: 11223415
    Abstract: Technology for a mobile repeater operable to operate in a low power mode is disclosed. The repeater can comprise of detecting an uplink signal from one or more mobile devices for a selected period of time. The repeater can comprise of setting the mobile repeater to the low power mode when the uplink signal is not detected within the selected period of time to reduce a power draw. Wherein setting the mobile repeater to the low power mode comprises turning off one or more signal chain components in one or more signal chains including at least one power amplifier (PA) to reduce a power draw of the mobile repeater. Wherein the one or more signal chain components further comprises a low noise amplifier (LNA); a gain block; or a variable attenuator.
    Type: Grant
    Filed: May 22, 2020
    Date of Patent: January 11, 2022
    Assignee: Wilson Electronics, LLC
    Inventors: Christopher Ken Ashworth, Nolan J. Bradshaw, Dale Robert Anderson
  • Patent number: 11223596
    Abstract: Technologies are provided for generation of composite messages using qualifying events corresponding to respective ticketed performances and qualifying actions of a subscriber of a service platform. By analyzing qualifying events and qualifying actions jointly, the disclosed technologies supply a number of contextually-relevant individual messages collected in a composite message that is delivered to the subscriber periodically. The individual messages describe ticketed performances that are relevant to the subscriber. The composite message also provides reasons for the inclusion of the individual messages in the composite message. The individual messages can be arranged within the composite message according to a layout based on a ranking of priority scores. Each priority score conveys a level of relevancy of a ticketed performance with respect to a subscriber.
    Type: Grant
    Filed: May 10, 2019
    Date of Patent: January 11, 2022
    Assignee: StubHub, Inc.
    Inventors: Torey Glenn Klucznik, Eric Robert Anderson, Christopher Camillo Lanzafame
  • Patent number: 11218237
    Abstract: Technology for a repeater is disclosed. The repeater can include a signal path configured to carry a signal having a selected radio frequency (RF) bandwidth on an RF carrier at a selected frequency. The signal path can include an intermediate frequency (IF) filter block operable for down-conversion of the RF carrier to an IF carrier to enable the selected RF bandwidth of the signal to be bandpass filtered at an IF filter bandwidth having an IF passband frequency range and the IF passband frequency range of the IF filter bandwidth is greater than the selected RF bandwidth. The down-conversion to the IF carrier can provide increased crossover attenuation or midband isolation of the RF carrier for the repeater.
    Type: Grant
    Filed: September 26, 2019
    Date of Patent: January 4, 2022
    Assignee: Wilson Electronics, LLC
    Inventors: Christopher Ken Ashworth, Dale Robert Anderson
  • Publication number: 20210409105
    Abstract: A technology is described for a time division duplex (TDD) repeater with network protection. The TDD repeater can comprise a first port, a second port, and one or more amplification paths coupled between the first port and the second port. The TDD repeater can comprise a signal detector configured to measure a received signal power for a downlink (DL) signal in a first set of one or more TDD DL subframes. The TDD repeater can be further configured to adjust an uplink (UL) noise power or gain of the one or more amplification paths based on the received signal power for the DL signal in the first set of the one or more TDD DL subframes.
    Type: Application
    Filed: June 28, 2021
    Publication date: December 30, 2021
    Inventors: Christopher Ken Ashworth, Dale Robert Anderson, Ilesh V. Patel
  • Publication number: 20210409106
    Abstract: A technology is described for a time division duplex (TDD) repeater with network protection. The TDD repeater can comprise a first port, a second port, and one or more amplification paths coupled between the first port and the second port. The TDD repeater can comprise a signal detector configured to measure a received signal power for a downlink (DL) signal in a first set of one or more TDD DL subframes. The TDD repeater can be further configured to adjust an uplink (UL) noise power or gain of the one or more amplification paths based on the received signal power for the DL signal in the first set of the one or more TDD DL subframes.
    Type: Application
    Filed: June 28, 2021
    Publication date: December 30, 2021
    Inventors: Christopher Ken Ashworth, Dale Robert Anderson, Ilesh V. Patel
  • Publication number: 20210409104
    Abstract: A technology is described for a time division duplex (TDD) repeater with network protection. The TDD repeater can comprise a first port, a second port, and one or more amplification paths coupled between the first port and the second port. The TDD repeater can comprise a signal detector configured to measure a received signal power for a downlink (DL) signal in a first set of one or more TDD DL subframes. The TDD repeater can be further configured to adjust an uplink (UL) noise power or gain of the one or more amplification paths based on the received signal power for the DL signal in the first set of the one or more TDD DL subframes.
    Type: Application
    Filed: June 28, 2021
    Publication date: December 30, 2021
    Inventors: Christopher Ken Ashworth, Dale Robert Anderson, Ilesh V. Patel, Rick Angelo Giovanini
  • Patent number: 11201664
    Abstract: Technology for a repeater is disclosed. The repeater can include a first port and a second port. The repeater can include a transmitter communicatively coupled to the first port and a receiver communicatively coupled to the second port. The transmitter can transmit a path loss signal. The receiver can receive the path loss signal transmitted by the transmitter. The repeater can include a controller. The controller can identify a first power level of the signal transmitted from the transmitter. The controller can identify a second power level of the signal received at the receiver. The controller can determine an antenna feedback path loss of the repeater based on the first power level and the second power level. The controller can set a maximum gain level for the repeater based on the antenna feedback path loss to avoid an oscillation in the repeater.
    Type: Grant
    Filed: April 27, 2020
    Date of Patent: December 14, 2021
    Assignee: Wilson Electronics, LLC
    Inventors: Christopher Ken Ashworth, Patrick Lee Cook, Dale Robert Anderson
  • Patent number: 11192258
    Abstract: A robotic kitchen assistant for frying includes a robotic arm, a fryer basket, and a robotic arm adapter assembly allowing the robotic arm to pick up and manipulate the fryer basket. The robotic arm adapter includes opposing gripping members to engage the fryer basket. A utensil adapter assembly is mounted to the handle of the fryer basket, and the opposing gripper members are actuated to capture a three-dimensional (3D) feature of the utensil adapter assembly. The robotic arm adapter assembly can include an agitator mechanism to shake the fryer basket or another utensil as desired. Related methods are also described.
    Type: Grant
    Filed: August 7, 2019
    Date of Patent: December 7, 2021
    Assignee: Miso Robotics, Inc.
    Inventors: Ryan Sinnet, Robert Anderson, William Werst
  • Patent number: 11173673
    Abstract: Systems and methods for drape forming a charge of composite material are disclosed herein. The systems include a forming mandrel, a charge support structure, a flexible and resilient forming membrane, a base, and a vacuum source. The charge support structure includes a flexible and resilient charge support membrane, a membrane suspension device, and a release structure. The release structure operatively couples the charge support membrane to the membrane suspension device when a tension on a peripheral region of the charge support membrane is less than a threshold tension and releases the charge support membrane from the membrane suspension device when the tension is greater than the threshold tension. Alternatively, and in place of the charge support structure, the systems include a means for supporting the charge of composite material. The methods include methods of drape forming a charge of composite material.
    Type: Grant
    Filed: January 15, 2019
    Date of Patent: November 16, 2021
    Assignee: The Boeing Company
    Inventors: Michael Robert Anderson, John Michael Ligas
  • Publication number: 20210346379
    Abstract: Provided are novel pyrimidine dione compounds and pharmaceutically acceptable salts thereof, that are useful for the treatment of hypertrophic cardiomyopathy (HCM) and conditions associated with left ventricular hypertrophy or diastolic dysfunction. The synthesis and characterization of the compounds and pharmaceutically acceptable salts thereof, are described, as well as methods for treating HCM and other forms of heart disease.
    Type: Application
    Filed: January 13, 2021
    Publication date: November 11, 2021
    Inventors: Johan Oslob, Robert Anderson, Danielle Aubele, Marc Evanchik, Jonathan Charles Fox, Brian Kane, Puping Lu, Robert McDowell, Hector Rodriguez, Yonghong Song, Arvinder Sran
  • Patent number: 11167421
    Abstract: A robotic kitchen assistant for frying includes a robotic arm, a fryer basket, and a robotic arm adapter assembly allowing the robotic arm to pick up and manipulate the fryer basket. The robotic arm adapter includes opposing gripping members to engage the fryer basket. A utensil adapter assembly is mounted to the handle of the fryer basket, and the opposing gripper members are actuated to capture a three-dimensional (3D) feature of the utensil adapter assembly. The robotic arm adapter assembly can include an agitator mechanism to shake the fryer basket or another utensil as desired. Related methods are also described.
    Type: Grant
    Filed: August 7, 2019
    Date of Patent: November 9, 2021
    Assignee: Miso Robotics, Inc.
    Inventors: Ryan Sinnet, Robert Anderson, William Werst
  • Publication number: 20210299288
    Abstract: A virus attenuator includes: a housing defining an interior and having at least one intake port fluidly coupled to the interior and a gas ejection nozzle fluidly coupled to the interior, the gas ejection nozzle being configured to couple to a mask; and at least one heater disposed in the interior between the at least one intake port and the gas ejection nozzle such that at least some gas brought into the interior through the at least one gas intake port contacts the at least one heater. The at least one heater is configured to heat contacting gas to a virus attenuating temperature before the contacting gas exits the interior through the gas ejection nozzle.
    Type: Application
    Filed: March 25, 2021
    Publication date: September 30, 2021
    Inventors: Jackson Alexander Townsend, Matthew Raymond Zielinski, Reuben Quincey Zielinski, Robert Anderson Till
  • Publication number: 20210291356
    Abstract: An automated kitchen assistant system inspects a food preparation area in the kitchen environment using a novel sensor combination. The combination of sensors includes an Infrared (IR) camera that generates IR image data and at least one secondary sensor that generates secondary image data. The IR image data and secondary image data are processed to obtain combined image data. A trained convolutional neural network is employed to automatically compute an output based on the combined image data. The output includes information about the identity and the location of the food item. The output may further be utilized to command a robotic arm, kitchen worker, or otherwise assist in food preparation. Related methods are also described.
    Type: Application
    Filed: February 10, 2021
    Publication date: September 23, 2021
    Inventors: Ryan W. Sinnet, Robert Anderson, Zachary Zweig Vinegar, William Werst, David Zito, Sean Olson
  • Publication number: 20210275047
    Abstract: Systems and methods are provided for enhanced heart medical imaging operations, particularly as by incorporating use of artificial intelligence (AI) based fetal heart functional analysis and/or real-time and automatic ejection fraction (EF) measurement and analysis.
    Type: Application
    Filed: March 6, 2020
    Publication date: September 9, 2021
    Inventors: Dani Pinkovich, Sarit Shwartz, Noa Alkobi, Robert Anderson, Antonio Fabian Fermoso, Walter Duda, Jr., Christian Fritz Perrey
  • Patent number: 11065841
    Abstract: A method for producing an asphaltic sheet, the method comprising of providing an asphaltic sheet; and applying expandable graphite particles to the asphaltic sheet.
    Type: Grant
    Filed: April 27, 2017
    Date of Patent: July 20, 2021
    Assignee: Firestone Building Products Company, LLC
    Inventors: Wensheng Zhou, Donald Kirk, James Young, Robert Anderson, Joseph Standeford, Lance Black
  • Patent number: 11055576
    Abstract: System, methods, and other embodiments described herein relate to improving querying of a visual dataset of images through implementing system-aware cascades. In one embodiment, a method includes enumerating a set of cascade classifiers that are each separately comprised of transformation modules and machine learning modules arranged in multiple pairs. Classifiers of the set of cascade classifiers are configured to extract content from an image according to a query. The method includes selecting a query classifier from the set of cascade classifiers based, at least in part, on system costs that characterize computational resources consumed by the classifiers of the set of cascade classifiers. The computational resources include at least data handling costs. The method includes identifying content within the image using the query classifier.
    Type: Grant
    Filed: April 20, 2018
    Date of Patent: July 6, 2021
    Assignees: Toyota Research Institute, Inc., The Regents of The University of Michigan
    Inventors: Michael Robert Anderson, Thomas Friedrich Wenisch, German Ros Sanchez
  • Publication number: 20210203404
    Abstract: A technology is described for a repeater system configured to provide services via a cloud-computing environment. The repeater system can comprise an n-band repeater, wherein n is a positive integer greater than 0; a server port; a donor port; one or more processors and memory in communication with the n-band repeater; and a scanning receiver coupled to the one or more processors and memory, wherein the scanning receiver is configured to scan one or more of the n bands of the n-band repeater and communicate carrier-specific information for the one or more of the n bands to a computer server located in the cloud-computing environment to enable access to the carrier-specific information from the cloud-computing environment.
    Type: Application
    Filed: December 28, 2020
    Publication date: July 1, 2021
    Inventors: Michael James Mouser, Stephen Todd Fariss, Stephen McBride, Philip Anthony Weaver, Douglas Edward Bohls, Christopher Ken Ashworth, Dale Robert Anderson, William Gerald Sarver, JR., Ilesh V. Patel
  • Publication number: 20210203405
    Abstract: A technology is described for a repeater system comprising a repeater and a scanning receiver. The repeater can comprise a first port, a second port, one or more amplification and filtering paths coupled between the first port and the second port and one or more processors and memory. The scanning receiver can be configured to: identify one or more frequency ranges associated with a plurality of cellular carriers; scan the one or more frequency ranges; identify cellular carrier specific information for the one or more frequency ranges associated with the plurality of cellular carriers; and provide the cellular carrier specific information to the repeater.
    Type: Application
    Filed: December 28, 2020
    Publication date: July 1, 2021
    Inventors: Michael James Mouser, Stephen Todd Fariss, Dale Robert Anderson, William Gerald Sarver, Ilesh V. Patel, Christopher Ken Ashworth, Philip Anthony Weaver, Douglas Edward Bohls
  • Patent number: 11038542
    Abstract: A technology is described for a bi-directional repeater having a switchable antenna port. The repeater can comprise a switchable common port, a switchable second-band port, and a switchable third-band port. The repeater can have a first-band amplification and filtering path coupled to the switchable common port via a first path of a first multiplexer. The repeater can have a second-band amplification and filtering path coupled to one of the switchable common port via a second path of the first multiplexer, a first path of a first radio frequency (RF) switch, and a first path of a second multiplexer. The repeater can have a third band amplification and filtering path coupled to the switchable common port via a first path of a second RF switch, the second path of the second multiplexer, the first path of the first RF switch, and the second path of the first diplexer.
    Type: Grant
    Filed: December 27, 2019
    Date of Patent: June 15, 2021
    Assignee: Wilson Electronics, LLC
    Inventors: Dale Robert Anderson, Christopher Ken Ashworth, Michael James Mouser