Patents Assigned to FLIR System, Inc.
  • Patent number: 10962420
    Abstract: Techniques are disclosed for facilitating pulse detection and imaging. In one example, a device includes a detector configured to detect electromagnetic radiation and generate a detection signal based on the detected electromagnetic radiation. The device further includes an input circuit configured to provide, based on the detection signal, a first signal and a second signal. The device further includes an imaging integration circuit configured to generate an image of at least a portion of a scene based at least in part on the first signal. The device further includes a pulse detection circuit configured to perform pulse detection to generate an indication of whether a pulse is detected in the portion of the scene based at least in part on the second signal. Related methods and systems are also provided.
    Type: Grant
    Filed: December 7, 2018
    Date of Patent: March 30, 2021
    Assignee: FLIR Systems, Inc.
    Inventor: Brian B. Simolon
  • Patent number: 10928512
    Abstract: Various embodiments of the present disclosure may include one or more object detection devices. The object detection devices may include at least one distance sensor such as a radar, lidar, or other distance sensor and at least one thermal sensor such as a thermal imaging device. One or more object detection devices may be mounted to vehicles to provide enhanced representations of an area around the vehicles.
    Type: Grant
    Filed: June 13, 2018
    Date of Patent: February 23, 2021
    Assignee: FLIR Systems, Inc.
    Inventor: Nicholas Högasten
  • Patent number: 10927001
    Abstract: Techniques are disclosed for systems and methods using microelectromechanical systems MEMS techniques to provide cryogenic and/or general cooling of a device or sensor system. In one embodiment, a system includes a compressor assembly and MEMS expander assembly in fluid communication with the compressor assembly via a gas transfer line configured to physically separate and thermally decouple the MEMS expander assembly from the compressor assembly. The MEMS expander assembly includes a plurality of expander cells each including a MEMS displacer, a cell regenerator, and an expansion volume disposed between the MEMS displacer and the cell regenerator, and the plurality of cell regenerators are configured to combine to form a contiguous shared regenerator for the MEMS expander assembly.
    Type: Grant
    Filed: November 21, 2019
    Date of Patent: February 23, 2021
    Assignee: FLIR Systems, Inc.
    Inventor: Andreas Fiedler
  • Patent number: 10909660
    Abstract: Various techniques are disclosed for reducing noise and enhancing sharpness of an input image. For example, a method includes performing an initial collaborative filtering and sharpening on the input image to generate a pilot image, using the pilot image to derive coefficients that are used to perform a second collaborative filtering on the input image to generate a filtered image. In some embodiments, the collaborative filtering and sharpening is performed using parameters that boost or enhance the differences in pixel values for the same spatial locations of the matched image blocks extracted during the collaborative filtering and sharpening process. Accordingly, the method according to various embodiments performs especially well for images that have weak spatial correlations among mutually similar blocks.
    Type: Grant
    Filed: August 8, 2019
    Date of Patent: February 2, 2021
    Assignee: FLIR Systems, Inc.
    Inventors: Karen Egiazarian, Lucio Azzari, Vladimir Katkovnik, Alessandro Foi
  • Patent number: 10840595
    Abstract: Techniques are disclosed for conjoint beam shaping for optimizing radar and sonar performance. A method may include determining a system pattern of an antenna system based at least on a first antenna pattern and a second antenna pattern. The first antenna pattern may be based on first antenna parameters. The second antenna pattern may be based on second antenna parameters. The method may further include determining a score based at least on the determined system pattern and reference information. The method may further include adjusting the first antenna parameters and second antenna parameters based at least on the score. Related systems and devices are also disclosed.
    Type: Grant
    Filed: March 2, 2018
    Date of Patent: November 17, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: Patrick Lamontagne, Alexandre Marsolais
  • Patent number: 10747226
    Abstract: Autopilot systems and related techniques are provided to improve the ability of mobile structures to maintain a desired reference path (e.g., to keep a desired track and/or to follow a desired contour). In various embodiments, a high quality turn rate signal and GPS based signals are used to generate high bandwidth cross track/contour errors and other associated signals. An adaptive controller uses the generated cross track/contour signals to provide robust track keeping and/or contour following in the directional control of a mobile structure. Techniques are also provided for systems and methods to provide directional control for mobile structures.
    Type: Grant
    Filed: June 12, 2017
    Date of Patent: August 18, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: Mark Johnson, Ian Matt, Christopher Yeomans, Gytis Sabaliauskas, Gordon Pope
  • Patent number: 10732378
    Abstract: Techniques are disclosed for mounting optical elements in optical systems. A system may include a mirror assembly. The mirror assembly may include a mounting stem and a mirror. The system may further include a mounting ring. The system may further include a metering structure. The metering structure may include a receiving interface having an inner surface defining an aperture. The metering structure may be configured to receive the mounting stem within the aperture and receive the mounting ring within a gap between the mounting stem and the inner surface. The system may further include a bonding layer disposed between the mounting stem and the mounting ring. Additional apparatus and related methods are provided.
    Type: Grant
    Filed: January 9, 2018
    Date of Patent: August 4, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: Bruce Cannon, Bruce A. Dickerson
  • Patent number: 10735659
    Abstract: Various embodiments of the methods and systems disclosed herein may be used to provide a surveillance camera that generates native video image frames in the appropriate FOV (orientation) that corresponds to the orientation in which the surveillance camera is installed when the video image frames are captured. The surveillance cameras implemented in accordance with embodiments of the disclosure may facilitate installation that provides a desired FOV in a particular orientation, generate video image frames that natively correspond to the desired FOV, and allow user interaction and video analytics to be performed on the FOV-matched video image frames.
    Type: Grant
    Filed: August 28, 2018
    Date of Patent: August 4, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: Pieter Messely, Dwight T. Dumpert
  • Patent number: 10717503
    Abstract: Provided is a system for protecting submerged components of a watercraft from collision with a submerged object or a floor of a body of water. The system includes a depth sensor configured to measure a water depth beneath the watercraft, an actuated mechanism configured to adjust a depth of at least one of the submerged components, and a controller in communication with the depth sensor and the actuated mechanism. The controller is operable to receive the measured water depth and control the actuated mechanism to adjust the depth of the at least one submerged component as a function of the measured water depth to prevent the at least one submerged component from colliding with the submerged object or floor of the body of water.
    Type: Grant
    Filed: February 21, 2017
    Date of Patent: July 21, 2020
    Assignee: FLIR Systems, Inc.
    Inventor: Mark Sampson
  • Patent number: 10706516
    Abstract: A system and method for comparing and searching for digital data, such as images, using histograms includes receiving a source image, receiving a comparison image, generating a first histogram for the source image and generating a second histogram for the comparison image. The source image may be received from a network device, such as a computer or camera, and the comparison image may one of a plurality of stored images in a database. The histograms may correspond to an image characteristic, including a color histogram corresponding to the distribution of the intensity of a corresponding color among image pixels in the source image. Each of first and second histograms is normalized and a similarity score is calculated between the two histograms. The similarity score represents a similarity measure between the two histograms, calculated from a subset of bins, which are independently selected for each image.
    Type: Grant
    Filed: September 15, 2017
    Date of Patent: July 7, 2020
    Assignee: FLIR Systems, Inc.
    Inventor: Stefan Schulte
  • Patent number: 10677656
    Abstract: A device is disclosed including a substrate and a floating blinded infrared detector and/or a shunted blinded infrared detector. The floating blinded infrared detector may include an infrared detector coupled to and thermally isolated from the substrate; and a blocking structure disposed above the infrared detector to block external thermal radiation from being received by the infrared detector; and wherein the blocking structure comprises a plurality of openings. The shunted blinded infrared detector may include an additional infrared detector coupled to the substrate; an additional blocking structure disposed above the infrared detector to block external thermal radiation from being received by the additional infrared detector; and a material that thermally couples the additional infrared detector to the substrate and the additional blocking structure. Methods for using and forming the device are also disclosed.
    Type: Grant
    Filed: March 21, 2017
    Date of Patent: June 9, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: Eric A. Kurth, Chris Chan, Kevin Peters, Patrick Franklin, Robert F. Cannata, James L. Dale, Tommy Marx, David Howard, Jefferson Rose, Michael DeBar
  • Patent number: 10623679
    Abstract: Techniques are disclosed for systems and methods to provide setup, network connection, and/or other operations for network cameras. The operations may be initiated in response to placing a user device having proximity-based communications circuitry in proximity of a camera having proximity-based communications circuitry. The user device and the camera may exchange information responsive to placing the user device in the proximity of the camera. The information may include network information sent from the user device to the camera and/or camera information sent from the camera to the user device. The network information may include information associated with a network. The camera may be connected to the network using the network information. The camera may be added to list of accessible cameras on the user device when the camera is connected to the network. The proximity-based communications circuitry may be Near Field Communications circuitry.
    Type: Grant
    Filed: November 10, 2016
    Date of Patent: April 14, 2020
    Assignee: FLIR Systems, Inc.
    Inventor: Vlad Kardashov
  • Patent number: 10612664
    Abstract: System including a rotary seal created by a dual-wiper gasket. In exemplary embodiments, the system may comprise a mounting portion and a gimbal assembly. The gimbal assembly may include a first gimbal pivotably connected to and supported by the mounting portion for rotation of the first gimbal about a first axis, and a second gimbal pivotably connected to and supported by the first gimbal for rotation of the second gimbal about a second axis transverse to the first axis. The system also may comprise a gasket encircling the first axis and creating a rotary seal between the mounting portion and the first gimbal. The gasket may have an inner wiper encircled by an outer wiper, with both wipers disposed in circumferentially sealed engagement with the mounting portion or the first gimbal.
    Type: Grant
    Filed: September 29, 2017
    Date of Patent: April 7, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: James H. Weaver, Bruce Ellison, Chris L. Watkins
  • Patent number: 10598550
    Abstract: Various techniques are provided for calibrating a thermal imaging device using a non-contact temperature sensor. In one example, a method includes capturing a thermal image of a scene. The thermal image comprises a plurality of pixel values. The method also includes detecting, by a non-contact temperature sensor, a temperature value associated with a portion of the scene corresponding to a subset of the pixel values. The method also includes comparing the subset of pixel values with the detected temperature value. The method also includes generating a correction term based on the comparing. The method also includes applying the correction term to at least the subset of pixel values to radiometrically calibrate the subset of pixel values. Related systems and alignment processes are also provided.
    Type: Grant
    Filed: February 15, 2018
    Date of Patent: March 24, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: Roderick C. Christel, Theodore R. Hoelter, Per Elmfors
  • Patent number: 10571338
    Abstract: Imaging systems and methods are disclosed for generating enhanced visual representations of captured data such as infrared image data. For example, the perceived color distance or contrast between colors representing adjacent output levels (e.g., temperature or infrared intensity levels) are enhanced in visual representations of infrared images. According to embodiments, infrared image data values representing a scene may be mapped according to a color palette implemented using complementary colors as adjacent (e.g., successive) base colors or a sequence of colors, that repeats a predetermine set of hues with varying saturation and/or intensity, thereby increasing the color contrast between pixels representing subtle temperature differences in the scene. The color palette can be enlarged by mapping a larger number of distinct output levels to a larger sequence of colors, for example by increasing the bit-depth of the color palette, such that color transitions look smoother and more natural.
    Type: Grant
    Filed: October 31, 2017
    Date of Patent: February 25, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: Austin A. Richards, Charles W. Handley
  • Patent number: 10553454
    Abstract: An apparatus for the wafer level packaging (WLP) of micro-bolometer vacuum package assemblies (VPAs), in one embodiment, includes a wafer alignment and bonding chamber, a bolometer wafer chuck and a lid wafer chuck disposed within the chamber in vertically facing opposition to each other, means for creating a first ultra-high vacuum (UHV) environment within the chamber, means for heating and cooling the bolometer wafer chuck and the lid wafer chuck independently of each other, means for moving the lid wafer chuck in the vertical direction and relative to the bolometer wafer chuck, means for moving the bolometer wafer chuck translationally in two orthogonal directions in a horizontal plane and rotationally about a vertical axis normal to the horizontal plane, and means for aligning a fiducial on a bolometer wafer held by the bolometer wafer chuck with a fiducial on a lid wafer held by the lid wafer chuck.
    Type: Grant
    Filed: August 21, 2017
    Date of Patent: February 4, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: Paul Schweikert, Andrew Sharpe, Gregory A. Carlson, Alex Matson, Scott Vilander, Bob Zahuta, Richard M. Goeden
  • Patent number: 10527429
    Abstract: Techniques are disclosed for systems and methods to provide sailing information to users of a mobile structure. A sailing user interface system includes a logic device in communication with a compass or orientation sensor, a wind sensor, and/or a speed sensor. Sensor signals provided by the various sensors are used to determine a heading and a wind direction for the mobile structure, which can be referenced to Magnet North. The wind direction and heading may be used to orient a sail chart rendered by the logic device. The sail chart graphically indicates the heading of the mobile structure relative to the wind direction and a performance contour for the mobile structure. The sail chart may be displayed to a user to refine manual operation of the mobile structure, and the information rendered in the sail chart may be used to autopilot the mobile structure.
    Type: Grant
    Filed: September 2, 2016
    Date of Patent: January 7, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: Christopher Daniel Gatland, Gregory W. Wells, Mark Johnson, Marcel Tremblay
  • Patent number: D868873
    Type: Grant
    Filed: April 3, 2018
    Date of Patent: December 3, 2019
    Assignee: FLIR Systems, Inc.
    Inventor: Chaim Shain
  • Patent number: D875153
    Type: Grant
    Filed: October 17, 2016
    Date of Patent: February 11, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: Joseph Kostrzewa, Jared A. Faraudo, Dan S. Walker, Alan D. Kathman, Marcel Tremblay, Thad Lieb, Bruce A. Covington
  • Patent number: D878753
    Type: Grant
    Filed: February 5, 2016
    Date of Patent: March 24, 2020
    Assignee: FLIR Systems, Inc.
    Inventors: John Nolan, Chester Clark, Walter Gauthier