Patents by Inventor Alan Michael

Alan Michael 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).

  • Patent number: 9946034
    Abstract: A plug may be coupled with a cable and include a fiber ferrule extending from the plug. A biasing mechanism may be arranged to bias a cover toward a covered configuration in which the fiber ferrule is situated within an internal volume defined by the cover and away from an uncovered configuration in which the fiber ferrule is situated at least partially outside of the internal volume defined by the cover. Bristles or other blockers may be positioned along or within a boundary of the internal volume of the cover, may be arranged to block particulate entry through the blockers into the internal volume of the cover in the covered configuration, and may be movable to permit passage of the fiber ferrule through the blockers in response to movement of the cover between the covered configuration and uncovered configuration.
    Type: Grant
    Filed: March 29, 2017
    Date of Patent: April 17, 2018
    Assignee: Amazon Technologies, Inc.
    Inventors: Jason Eslick, Alan Michael Judge, Alaa Adel Mahdi Hayder, Colin John Whittaker
  • Patent number: 9913608
    Abstract: A system for monitoring incontinence in one or more subjects comprises display means; input means operable by a user; one or more transmitters, each transmitter being associated with one or more subjects being monitored; the one or more transmitters being configured to transmit signals containing continence-related data for the one or more subjects, wherein the continence-related data has been obtained over time from a continence sensor associated with an absorbent article worn by each respective subject; a receiver unit configured to receive signals from the one or more transmitters; and processing means in communication with at least the receiver unit, the processing means including a display processor configured to process the received signals and communicate display information to the display means for display of a visual representation of continence-related information derived from continence sensors in the absorbent articles worn by the one or more subjects being monitored.
    Type: Grant
    Filed: February 2, 2016
    Date of Patent: March 13, 2018
    Assignee: Fred Bergman Healthcare Pty. Ltd.
    Inventors: Philippa Mary Lewis, Karen Maree Carey, Alan Michael Cottenden, David Albert Barda, Peter Curran, Don Black
  • Patent number: 9840061
    Abstract: Structural panels and methods of making composite material for such structural panels may include applying a resin to a nonwoven fibrous web, where the nonwoven fibrous web includes a combination of glass fibers and polymer fibers. The web may be dried at a first stage temperature at or below a curing temperature of the resin for a time sufficient to substantially dry but not substantially cure the resin. The web may be laminated at a second stage temperature sufficient to fully cure the resin to produce a composite material. The second stage temperature may be above the melting point of the polymer fibers, and the resin may cause the composite material to retain a substantially rigid shape upon completion of the laminating operation.
    Type: Grant
    Filed: August 19, 2015
    Date of Patent: December 12, 2017
    Assignee: Johns Manville
    Inventor: Alan Michael Jaffee
  • Patent number: 9820832
    Abstract: A vertically adjustable rotational stabilizer (10) for a disposable articulator is provided. The articulator comprises a hinged pair of support arms, each support arm having a proximal end and a distal end, with the proximal ends of the support arms being hingedly fitted together. Each arm defines an opening or cavity between its distal and proximal ends. The vertically adjustable rotational stabilizer (10), in broad terms, comprises at least one body (30, 66) secured or securable to the support arms (14, 16) and positioned substantially within the opening defined by the support arm, and an elongate member (56) being adjustable relative to the at least one body so as to adjust and fix the distance between the distal ends of the support arms (14, 16).
    Type: Grant
    Filed: February 18, 2013
    Date of Patent: November 21, 2017
    Assignee: Advanced Articulators (Pty) Ltd
    Inventor: Alan Michael Westdyk
  • Publication number: 20170331704
    Abstract: Generally described, systems and methods are provided for detecting the impact of network failures. The system collects performance information from a plurality of nodes and links in a network, aggregates the collected performance information across paths in the network, processes the aggregated performance information for detecting failures on the paths, adjusts the set of performance information by removing the performance information for any nodes considered to be associated with performance information that is statistically different from performance information from other nodes at a given location or extrapolates the collected information to other paths, and determines the impact to customers of the network failures detected using the adjusted set of performance information.
    Type: Application
    Filed: August 4, 2017
    Publication date: November 16, 2017
    Inventors: Karl Andre McCabe, Eoin Francis Cavanagh, Sonali Roy, Carlos Vara Callau, Tyson James Lamoreaux, Alan Michael Judge, Timothy Richard Kohn
  • Patent number: 9807645
    Abstract: A method for adjusting capacity in a multi-stage routing network includes monitoring a number of available connections between a router in a first stage of a multi-stage router network and one or more routers in a second stage of the multi-stage router network. Each of the stages of the multi-stage router network may include a plurality of routers. The method may also include detecting that the number of available connections falls below a threshold number. A notification can be sent to one or more routers in a third stage of the multi-stage router network that the router in the first stage is deprioritized. The one or more routers in the third stage can be operated so that communications to the first stage are routed to one or more other routers in the first stage.
    Type: Grant
    Filed: June 24, 2015
    Date of Patent: October 31, 2017
    Assignee: Amazon Technologies, Inc.
    Inventors: Stephen Callaghan, Leonard Thomas Tracy, Mark Noel Kelly, Alan Michael Judge, Justin Oliver Pietsch, Amit Sahoo
  • Publication number: 20170295468
    Abstract: Methods, computer readable storage medium, and systems for mobile devices to locate persons or places are described. In a feature, the invention is a method implemented in a server for providing beaconing sequences to the mobile devices for location sharing. In a feature, the invention is a server executing a method of locating a user using a beaconing mobile device. In a feature, the invention is a non-transitory computer readable medium on a server that encodes a program to execute a method on a first mobile device that determine directions and/or distance between the first mobile device and a second mobile device. In a feature, the invention is a server executing a method to remember a place on a mobile device.
    Type: Application
    Filed: April 11, 2016
    Publication date: October 12, 2017
    Inventor: Alan Michael Snyder
  • Patent number: 9742638
    Abstract: Generally described, systems and methods are provided for detecting the impact of network failures. The system collects performance information from a plurality of nodes and links in a network, aggregates the collected performance information across paths in the network, processes the aggregated performance information for detecting failures on the paths, adjusts the set of performance information by removing the performance information for any nodes considered to be associated with performance information that is statistically different from performance information from other nodes at a given location or extrapolates the collected information to other paths, and determines the impact to customers of the network failures detected using the adjusted set of performance information.
    Type: Grant
    Filed: August 5, 2013
    Date of Patent: August 22, 2017
    Assignee: Amazon Technologies, Inc.
    Inventors: Karl Andre McCabe, Eoin Francis Cavanagh, Sonali Roy, Carlos Vara Callau, Tyson James Lamoreaux, Alan Michael Judge, Timothy Richard Kohn
  • Patent number: 9699068
    Abstract: Techniques and solutions for distributing routing updates using timing information are described. For example, inter-device messaging protocols can support timing information (e.g., routing protocols be extended to support timing information). The timing information can indicate a time at which the routing update is to be put into effect where the time decreases the further away a given routing device is from the source of the routing update. For example, each routing device can determine a decayed update reference time when the given routing device will put the routing update into effect according to a decay mode. Routing updates can be managed between routing devices that support timing information and routing devices that do not support timing information.
    Type: Grant
    Filed: September 30, 2014
    Date of Patent: July 4, 2017
    Assignee: Amazon Technologies, Inc.
    Inventors: Spencer Giacalone, Alan Michael Judge, Stephen Callaghan, Mark Noel Kelly, Leonard Thomas Tracy, Justin Oliver Pietsch
  • Patent number: 9698647
    Abstract: According to an embodiment of the invention, an electric machine is provided. The machine includes a support structure and a stator secured to the support structure. The machine also includes a rotor rotatably scoured to the support structure. The rotor defines a wall of the rotor. The machine also includes a sensor secured to the support structure and adapted to cooperate with the wall of the rotor to sense the position of the rotor relative to that of the stator.
    Type: Grant
    Filed: September 25, 2014
    Date of Patent: July 4, 2017
    Assignee: Regal Beloit America, Inc.
    Inventors: Edward Lewis Drye, Harold Dean Willis, Stephen Thomas English, Justin Michael Magyar, Christopher Joseph Roth, Alan Michael Smith, Paul Steven Mullin
  • Patent number: 9652454
    Abstract: In one embodiment, a translator quality assurance system may rate a translation using a mapping chart. A data interface 150 may access a translation dictionary matching a source language to a target language. A processor 120 may map automatically a sentence pair having a source sentence 310 in a source language and a target sentence 320 in a target language at a linguistic level using the translation dictionary. A user output device 170 may display a translation quality report of the target sentence 320.
    Type: Grant
    Filed: June 29, 2015
    Date of Patent: May 16, 2017
    Assignee: Microsoft Technology Licensing, LLC
    Inventors: Enyuan Wu, Beom Seok Oh, Alan Michael, Kevin O'Donnell
  • Patent number: 9641363
    Abstract: A system and method effective to trigger precisely timed actions on computing devices. The system may include a transmitting device and a receiving device. The transmitter may modulate binary data into sound waves, and the receiver may demodulate the audio signal into binary data. Signal amplitude across a range of frequencies may be used to demodulate. The received data may be interpreted in order to trigger actions on the computing device. These actions may involve the device's screen, speaker, built-in lights, camera, or vibration function. The actions may change over time based on the time at which the signal was received. More actions may be loaded from the device's storage.
    Type: Grant
    Filed: August 15, 2014
    Date of Patent: May 2, 2017
    Inventors: Keith Michael Lea, Daniel Robert Deacon, Alan Michael Resnick
  • Publication number: 20170108094
    Abstract: A mounting alignment apparatus may include a rail assembly including a first pair of alignment surfaces. The mounting alignment apparatus may also include a slide assembly including a second pair of alignment surfaces. The first and second pairs of alignment surfaces may define an interacting capturing geometry therebetween, permitting sliding movement of the slide assembly relative to the rail assembly along a first axis, and restricting movement of the slide assembly relative to the rail assembly about an axis other than the first axis. The mounting alignment apparatus may also include a tension adjustment assembly coupled between the rail assembly and the slide assembly for positioning the slide assembly relative to the rail assembly along the first axis.
    Type: Application
    Filed: October 19, 2016
    Publication date: April 20, 2017
    Inventors: Alan Michael Greer, Bradley Kent Daniel, Gus Alexander
  • Publication number: 20170078204
    Abstract: Encapsulated packets may be generated for different packets transmitted between a source instance and destination instance in a computer system. The source instance and destination instance may be implemented by different physical hosts linked by multiple network paths. Congestion of the multiple network paths may be determined and path-balancing polices may be implemented in response to the determined congestion. Each encapsulation packet comprises contents of a corresponding packet, and one or more data values selected in accordance with a path-balancing policy. The data values added to one encapsulation packet may differ from those added to another. Different network paths to the destination may be selected for different encapsulation packets of a given transmission based at least in part on the added data values.
    Type: Application
    Filed: November 28, 2016
    Publication date: March 16, 2017
    Inventors: Alan Michael Judge, Matthew Shawn Wilson
  • Publication number: 20170078203
    Abstract: Encapsulated packets may be generated for different packets transmitted between a source instance and destination instance in a computer system. The source instance and destination instance may be implemented by different physical hosts linked by multiple network paths. Congestion of the multiple network paths may be determined and path-balancing polices may be implemented in response to the determined congestion. Each encapsulation packet comprises contents of a corresponding packet, and one or more data values selected in accordance with a path-balancing policy. The data values added to one encapsulation packet may differ from those added to another. Different network paths to the destination may be selected for different encapsulation packets of a given transmission based at least in part on the added data values.
    Type: Application
    Filed: November 28, 2016
    Publication date: March 16, 2017
    Inventors: Alan Michael Judge, Matthew Shawn Wilson
  • Publication number: 20170063677
    Abstract: Methods and apparatus for Internet-scale routing using small-scale border routers and IP tunneling are described. Each border router is directly connected to a transit provider. Routing protocol peerings may be passed via the border routers through tunnels to a routing service; the routing service and the transit provider router(s) appear to be directly adjacent routing peers. The routing service receives routing data from the transit provider(s), maintains the routing data in a routing table, and processes the routing data in the routing table to select best paths. A mapping service may be informed, by the routing service, of a best exit point (or points) for each Internet prefix of each packet to be routed on the Internet. Outbound packets from devices on the network to the Internet, and inbound packets from the Internet to the network devices, may be encapsulated and passed through tunnels as directed by the mapping service.
    Type: Application
    Filed: November 14, 2016
    Publication date: March 2, 2017
    Applicant: Amazon Technologies, Inc.
    Inventors: ALAN MICHAEL JUDGE, DAVID J. O'MEARA, DANIEL T. COHN
  • Patent number: 9556554
    Abstract: The disclosure relates to a superhydrophobic surface. Methods of fabrication are disclosed including laminating an optically transparent polymer sheet with hydrophobic nanoparticles such that the nanoparticles are partially embedded and partially exposed. The resulting assembly remains optically transparent. Additional methods include the lamination of nanoparticles to flexible fabrics and the production of molded articles using nanoparticle-treated molds.
    Type: Grant
    Filed: March 20, 2014
    Date of Patent: January 31, 2017
    Assignee: Research Foundation of the City University of New York
    Inventors: Alan Michael Lyons, QianFeng Xu
  • Publication number: 20160377147
    Abstract: A flywheel device includes structures allowing the flywheel system to be assembled offsite, transported safely, and installed with relatively few steps. The flywheel includes a rotor and a housing enclosing the rotor, where the housing includes a bottom plate, a top plate and side walls. The bottom plate and the top plate each includes a hole aligned with the center axis of the rotor. The flywheel also includes multiple bearing housings substantially covering the holes of the bottom plate and the top plate that are aligned to the center axis of the rotor. The flywheel also includes posts that physically contact the primary rotational mass of the rotor to prevent motion of the rotor during transport of the flywheel system. Some or all of these posts may be repositioned or removed during installation so that the rotor can spin freely.
    Type: Application
    Filed: June 23, 2016
    Publication date: December 29, 2016
    Inventors: Eric Sun, Daniel Bakholdin, Edward Young Chiao, Matthew Brandon Garten, Mike M. He, Mark J. Holloway, Seth R. Sanders, Matthew K. Senesky, Alan Michael Sledd, Peter Thomas Tennessen
  • Patent number: D781429
    Type: Grant
    Filed: August 13, 2015
    Date of Patent: March 14, 2017
    Inventor: Alan Michael Westdyk
  • Patent number: D782050
    Type: Grant
    Filed: August 13, 2015
    Date of Patent: March 21, 2017
    Inventor: Alan Michael Westdyk