Patents Assigned to IRobot Corporation
  • Publication number: 20130253701
    Abstract: A power-saving robot system includes at least one peripheral device and a mobile robot. The peripheral device includes a controller having an active mode and a hibernation mode, and a wireless communication component capable of activation in the hibernation mode. A controller of the robot has an activating routine that communicates with and temporarily activates the peripheral device, via wireless communication, from the hibernation mode. In another aspect, a robot system includes a network data bridge and a mobile robot. The network data bridge includes a broadband network interface, a wireless command interface, and a data bridge component. The data bridge component extracts serial commands received via the broadband network interface from an internet protocol, applies a command protocol thereto, and broadcasts the serial commands via the wireless interface. The mobile robot includes a wireless command communication component that receives the serial commands transmitted from the network data bridge.
    Type: Application
    Filed: May 14, 2013
    Publication date: September 26, 2013
    Applicant: iRobot Corporation
    Inventors: Michael J. Halloran, Jeffrey W. Mammen, Tony L. Campbell, Jason S. Walker, Paul E. Sandin, John N. Billington, JR., Daniel N. Ozick
  • Publication number: 20130241217
    Abstract: A robot bumper assembly includes a bumper body, a first sensor array, and a second sensor array. The first sensor array is disposed along and contoured to the periphery of a forward facing portion of the bumper body and senses contact with an external environment at positions along the contour of the periphery forward facing portion of the bumper body. The second sensor array is disposed along and contoured to the periphery of a top portion of the forward facing portion of the robot body. The top portion is angled, ramping up. The second sensor array senses contact with an external environment at positions along the periphery of the angled top portion of the bumper body.
    Type: Application
    Filed: March 14, 2013
    Publication date: September 19, 2013
    Applicant: iRobot Corporation
    Inventors: Stephen A. Hickey, Andrew Pastore, Chikyung Won, Roger Dale Gamble
  • Publication number: 20130239870
    Abstract: A multiple stage buoyancy changing system, or variable buoyancy device, for an underwater vehicle. The multiple stage buoyancy changing system comprises: a pressure hull containing a flexibly-sized internal fluid reservoir; a flexibly-sized external fluid reservoir attached to the pressure hull and connected to the internal reservoir; a system of devices and channels configured to move fluid between the internal fluid reservoir and the external fluid reservoir to change a displaced volume of the vehicle. Each stage of the variable buoyancy device can be optimized for maximum energy efficiency while changing the vehicle's displaced volume within an ambient pressure range. A control system for the variable buoyancy device engages different stages depending on ambient external pressure such that maximum energy efficiency is achieved over a large range of pressures/depths.
    Type: Application
    Filed: May 9, 2013
    Publication date: September 19, 2013
    Applicant: iRobot Corporation
    Inventors: Edison Thurman Hudson, Robert Eugene Hughes, Frederick Roland Stahr, Jason Isaac Gobat, Timothy James Osse
  • Patent number: 8534983
    Abstract: A door breaching robotic manipulator comprises: two fingers, each finger comprising a gripper surface at a distal end thereof, the gripper surfaces being spaced from each other by a predetermined distance; a cable configured to be actuated to drive the gripper surfaces toward each other; and a selectively compliant wrist comprising a U-joint and a magnetic coupling having a predetermined magnetic force strength. The magnetic coupling comprises a metal member and a magnetic element attracted thereto. When a force overcomes the predetermined magnetic force strength of the selectively compliant wrist, the wrist becomes compliant.
    Type: Grant
    Filed: March 17, 2009
    Date of Patent: September 17, 2013
    Assignees: iRobot Corporation, Honeybee Robotics Ltd.
    Inventors: Erik Emerson Reid Schoenfeld, Lawrence Parrington, Stephan Von Muehlen, Seth Frader-Thompson
  • Patent number: 8528673
    Abstract: A retrofittable lifting apparatus for use on an articulated robotically controlled device is disclosed. The lifting apparatus includes a structure for mating the apparatus to the robotic device and a mechanism for the remotely controlled lifting of an ordnance or other object. Actuation of the lifting mechanism may be provided by existing sources of motion on the robotic device, or by additional sources of motion attached to the robotic device.
    Type: Grant
    Filed: August 15, 2011
    Date of Patent: September 10, 2013
    Assignee: iRobot Corporation
    Inventors: Grinnell More, Tyson Sawyer
  • Patent number: 8528157
    Abstract: An autonomous coverage robot includes a chassis, a drive system configured to maneuver the robot, and a cleaning assembly. The cleaning assembly includes a cleaning assembly housing and at least one driven sweeper brush. The robot includes a controller and a removable sweeper bin configured to receive debris agitated by the driven sweeper brush. The sweeper bin includes an emitter disposed on an interior surface of the bin and a receiver disposed remotely from the emitter on the interior surface of the bin and configured to receive an emitter signal. The emitter and the receiver are disposed such that a threshold level of accumulation of debris in the sweeper bin blocks the receiver from receiving emitter emissions. The robot includes a bin controller disposed in the sweeper bin and monitoring a detector signal and initiating a bin full routine upon determining a bin debris accumulation level requiring service.
    Type: Grant
    Filed: May 21, 2007
    Date of Patent: September 10, 2013
    Assignee: iRobot Corporation
    Inventors: Mark Schnittman, Daniel N. Ozick, Gregg W. Landry
  • Publication number: 20130231779
    Abstract: A mobile inspection robot that includes a robot body and a drive system supporting the robot body and configured to maneuver the robot over a work surface. A controller communicates with the drive system and a sensor system. The controller executes a control system that includes a control arbitration system and a behavior system in communication with each other. The behavior system executes an inspection behavior, the inspection behavior influencing execution of commands by the control arbitration system based on sensor signals received from the sensor system to identify and inspect electrical equipment.
    Type: Application
    Filed: February 13, 2013
    Publication date: September 5, 2013
    Applicant: iRobot Corporation
    Inventors: Indrajit Purkayastha, Michael John Tirozzi, Jason R. Smith, Kimberly Susanne Monti
  • Patent number: 8527113
    Abstract: A system for providing enhanced operator control of a remote vehicle driving at increased speeds comprises: a head-mounted display configured to be worn by the operator and track a position of the operator's head; a head-aimed camera mounted to the remote vehicle via a pan/tilt mechanism and configured to pan and tilt in accordance with the position of the operator's head, the head-aimed camera transmitting video to be displayed to the operator via the head-mounted display; and a computer running a behavior engine, the computer receiving input from the operator and one or more sensors, and being configured to utilize the behavior engine, operator input, sensor input, and one or more autonomous and/or semi-autonomous behaviors to assist the operator in driving the remote vehicle. The remote vehicle includes releasably mounted wheels and high-friction tracks.
    Type: Grant
    Filed: August 9, 2010
    Date of Patent: September 3, 2013
    Assignee: iRobot Corporation
    Inventors: Brian Masao Yamauchi, Kent Conway Massey, David Aaron Lafferty
  • Publication number: 20130226344
    Abstract: A mobile robot including a robot body, a drive system supporting the robot body, and a controller in communication with the drive system. The robot also includes an actuator moving a portion of the robot body through a volume of space adjacent the mobile robot and a sensor pod in communication with the controller. The sensor pod includes a collar rotatably supported and having a curved wall formed at least partially as a surface of revolution about a vertical axis. The sensor pod also includes a volumetric point cloud sensor housed by the collar and observing the volume of space adjacent the robot from within the collar along an observation axis extending through the curved wall. A collar actuator rotates the collar and the volumetric point cloud sensor together about the collar axis.
    Type: Application
    Filed: July 23, 2012
    Publication date: August 29, 2013
    Applicant: iRobot Corporation
    Inventors: Cheuk Wah Wong, Eben Rauhut, Brian C. Benson, Peter J. Lydon, Michael T. Rosenstein, Michael Halloran, Steven V. Shamlian, Chikyung Won, Mark Chiappetta, Justin H. Kearns, Orjeta Taka, Robert Todd Pack, Timothy S. Farlow, Jasper Fourways Vicenti
  • Patent number: 8516651
    Abstract: An autonomous floor-cleaning robot comprising a housing infrastructure including a chassis, a power subsystem; for providing the energy to power the autonomous floor-cleaning robot, a motive subsystem operative to propel the autonomous floor-cleaning robot for cleaning operations, a command and control subsystem operative to control the autonomous floor-cleaning robot to effect cleaning operations, and a self-adjusting cleaning head subsystem that includes a deck mounted in pivotal combination with the chassis, a brush assembly mounted in combination with the deck and powered by the motive subsystem to sweep up particulates during cleaning operations, a vacuum assembly disposed in combination with the deck and powered by the motive subsystem to ingest particulates during cleaning operations, and a deck adjusting subassembly mounted in combination with the motive subsystem for the brush assembly, the deck, and the chassis that is automatically operative in response to an increase in brush torque in said brush
    Type: Grant
    Filed: December 17, 2010
    Date of Patent: August 27, 2013
    Assignee: iRobot Corporation
    Inventors: Joseph L. Jones, Newton E. Mack, David M. Nugent, Paul E. Sandin
  • Publication number: 20130214498
    Abstract: A wheeled platform 100 is disclosed, which is characterized by high mobility and reliability, and which can be used in a wide range of applications including transport and robotic devices. The wheeled platform 100 has fore and aft body portions 130, 132, each body portion 130, 132 having first and second sides 106, 108. Overlapping wheels 112, 114, 116, 118 are rotatably attached to the first side 106 and overlapping wheels 120, 122, 124, 126 are rotatably attached to the second side 108. The fore body portion 130 can be connected to the aft body portion 132 via an articulation element 133.
    Type: Application
    Filed: October 22, 2012
    Publication date: August 22, 2013
    Applicant: IROBOT CORPORATION
    Inventor: IROBOT CORPORATION
  • Patent number: 8515578
    Abstract: A navigational control system for altering movement activity of a robotic device operating in a defined working area, comprising a transmitting subsystem integrated in combination with the robotic device, the transmitting subsystem comprising means for emitting a number of directed beams, each directed beam having a predetermined emission pattern, and a receiving subsystem functioning as a base station that includes a navigation control algorithm that defines a predetermined triggering event for the navigational control system and a set of detection units positioned within the defined working area in a known spaced-apart relationship, the set of detection units being configured and operative to detect one or more of the directed beams emitted by the transmitting system; and wherein the receiving subsystem is configured and operative to process the one or more detected directed beams under the control of the navigational control algorithm to determine whether the predetermined triggering event has occurred, an
    Type: Grant
    Filed: December 13, 2010
    Date of Patent: August 20, 2013
    Assignee: iRobot Corporation
    Inventors: Mark J. Chiappetta, Joseph L. Jones
  • Publication number: 20130205520
    Abstract: A coverage robot includes a chassis, a drive system, and a cleaning assembly. The cleaning assembly includes a housing and at least one driven cleaning roller including an elongated core with end mounting features defining a central longitudinal axis of rotation, multiple floor cleaning bristles extending radially outward from the core, and at least one compliant flap extending radially outward from the core to sweep a floor surface. The flap is configured to prevent errant filaments from spooling tightly about the core to aid subsequent removal of the filaments. In another aspect, a coverage robot includes a chassis, a drive system, a controller, and a cleaning assembly. The cleaning assembly includes a housing and at least one driven cleaning roller. The coverage robot includes a roller cleaning tool carried by the chassis and configured to longitudinally traverse the roller to remove accumulated debris from the cleaning roller.
    Type: Application
    Filed: March 1, 2013
    Publication date: August 15, 2013
    Applicant: IROBOT CORPORATION
    Inventor: iRobot Corporation
  • Publication number: 20130206170
    Abstract: An autonomous coverage robot includes a body having at least one outer wall, a drive system disposed on the body and configured to maneuver the robot over a work surface, and a cleaning assembly carried by the body. The cleaning assembly includes first and second cleaning rollers rotatably coupled to the body, a suction assembly having a channel disposed adjacent at least one of the cleaning rollers, and a container in fluid communication with the channel. The container is configured to collect debris drawn into the channel. The suction assembly is configured to draw debris removed from the work surface by at least one of the cleaning rollers into the channel, and the container has a wall common with the at least one outer wall of the body.
    Type: Application
    Filed: December 20, 2012
    Publication date: August 15, 2013
    Applicant: iRobot Corporation
    Inventor: iRobot Corporation
  • Patent number: 8508388
    Abstract: The invention is related to methods and apparatus that use a visual sensor and dead reckoning sensors to process Simultaneous Localization and Mapping (SLAM). These techniques can be used in robot navigation. Advantageously, such visual techniques can be used to autonomously generate and update a map. Unlike with laser rangefinders, the visual techniques are economically practical in a wide range of applications and can be used in relatively dynamic environments, such as environments in which people move. One embodiment further advantageously uses multiple particles to maintain multiple hypotheses with respect to localization and mapping. Further advantageously, one embodiment maintains the particles in a relatively computationally-efficient manner, thereby permitting the SLAM processes to be performed in software using relatively inexpensive microprocessor-based computer systems.
    Type: Grant
    Filed: September 13, 2012
    Date of Patent: August 13, 2013
    Assignee: Irobot Corporation
    Inventors: L. Niklas Karlsson, Paolo Pirjanian, Luis Filipe Domingues Goncalves, Enrico Di Bernardo
  • Publication number: 20130204465
    Abstract: A method of operating a remote vehicle configured to communicate with an operator control unit (OCU) includes executing a click-to-drive behavior, a cruise control behavior, and a retro-traverse behavior on a computing processor. The click-to-drive behavior includes receiving a picture or a video feed and determining a drive destination in the received picture or video feed. The cruise control behavior includes receiving an absolute heading and velocity commands from the OCU and computing a drive heading and a drive velocity. The a retro-traverse behavior includes generating a return path interconnecting at least two previously-traversed waypoints of a list of time-stamped waypoints, and executing a retro-traverse of the return path by navigating the remote vehicle successively to previous time-stamped waypoints in the waypoints list until a control signal is received from the operator control unit.
    Type: Application
    Filed: February 5, 2013
    Publication date: August 8, 2013
    Applicant: iRobot Corporation
    Inventor: iRobot Corporation
  • Publication number: 20130204463
    Abstract: A navigation control system for an autonomous vehicle comprises a transmitter and an autonomous vehicle. The transmitter comprises an emitter for emitting at least one signal, a power source for powering the emitter, a device for capturing wireless energy to charge the power source, and a printed circuit board for converting the captured wireless energy to a form for charging the power source. The autonomous vehicle operates within a working area and comprises a receiver for detecting the at least one signal emitted by the emitter, and a processor for determining a relative location of the autonomous vehicle within the working area based on the signal emitted by the emitter.
    Type: Application
    Filed: December 31, 2012
    Publication date: August 8, 2013
    Applicant: IROBOT CORPORATION
    Inventor: IROBOT CORPORATION
  • Patent number: 8485330
    Abstract: A cable handling system mounted to a mobile robot to dispense and retrieve cable at zero tension includes a cable reel drive and a downstream tension roller drive that includes an idler. As a cable passes through the tension roller drive, position along the length of the cable and/or the cable speed is monitored accurately by a sensor attached to the idler. A system controller in communication with the sensor controls the cable reel drive and the tension roller drive for dispensing and retrieving cable downstream of the tension roller drive.
    Type: Grant
    Filed: October 24, 2011
    Date of Patent: July 16, 2013
    Assignee: iRobot Corporation
    Inventors: Robert Todd Pack, Tyson Sawyer, Chikyung Won, Grinnell More
  • Publication number: 20130174371
    Abstract: A floor cleaning robot comprises a housing, wheels, and a motor driving the wheels to move the robot across a floor, a control module disposed within the housing and directing movement of the robot across the floor, a sensor for detecting and communicating obstacle information to the control module so that the control module can cause the robot to react to the obstacle, a removable bin disposed at least partially within the housing and receiving particulates, a first rotating member directing particulates toward the bin, and a second rotating member cooperating with the first rotating member to direct particulates toward the bin. The removable bin receives particulates directed thereto by the first and second rotating members and the particulates pass from the first rotating member to the removable bin without passing through a filter.
    Type: Application
    Filed: December 14, 2012
    Publication date: July 11, 2013
    Applicant: IRobot Corporation
    Inventors: Joseph L. Jones, Newton E. Mack, David M. Nugent, Paul E. Sandin
  • Patent number: 8478442
    Abstract: A robot obstacle detection system including a robot housing which navigates with respect to a surface and a sensor subsystem aimed at the surface for detecting the surface. The sensor subsystem includes an emitter which emits a signal having a field of emission and a photon detector having a field of view which intersects the field of emission at a region. The subsystem detects the presence of an object proximate the mobile robot and determines a value of a signal corresponding to the object. It compares the value to a predetermined value, moves the mobile robot in response to the comparison, and updates the predetermined value upon the occurrence of an event.
    Type: Grant
    Filed: May 23, 2008
    Date of Patent: July 2, 2013
    Assignee: iRobot Corporation
    Inventors: Christopher Casey, Matthew Cross, Daniel Ozick, Joseph L. Jones