Patents by Inventor Ronen Eshel

Ronen Eshel 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: 20240045040
    Abstract: A LIDAR system for detecting an obstruction on a window that is associated with the LIDAR system, the LIDAR system includes at least one processor configured to detect, based on detection signals generated by an obstruction sensor of the LIDAR system, an obstruction that at least partially obstructs a passage of light through the window. The obstruction sensor differs from an object related sensor of the LIDAR system that is configured to detect of one or more objects within a field of view (FOV) of the LIDAR system.
    Type: Application
    Filed: August 2, 2023
    Publication date: February 8, 2024
    Applicant: Innoviz Technologies Ltd.
    Inventors: Omri Tennenhaus, Idan Bakish, Oren Navon, Ido Amrani, Ronen Eshel, Yuval Yifat, Natali Revivo
  • Publication number: 20230350026
    Abstract: A LIDAR system is disclosed. The system may include a laser light projection system that may simultaneously provide at least two laser light beams. The system may also include an optical system, including one or more deflectors to project the at least two laser light beams toward a field of view of the LIDAR system. Each of the laser light beams may have an energy density below an eye safe level. However, a total combined energy density of the laser light beams may exceed an eye safe level. The laser light beams may be projected from the deflector are spaced apart from one another by an angular spacing ranging from 2.5 mrad to 6 mrad.
    Type: Application
    Filed: June 23, 2023
    Publication date: November 2, 2023
    Applicant: INNOVIZ TECHNOLOGIES LTD.
    Inventors: Nir GOREN, Ronen ESHEL
  • Patent number: 11726181
    Abstract: A LIDAR system is disclosed. The system has a laser light projection system to simultaneously project at least two laser light beams. The system also has a deflector to project the at least two laser light beams toward a field of view of the LIDAR system. Each of the at least two laser light beams has an energy density below an eye safe level. A total combined energy density of the at least two laser light beams is above an eye safe level. Further, the at least two laser light beams projected from the deflector are separated from one another by an angular spacing ranging from 2.5 mrad to 6 mrad.
    Type: Grant
    Filed: February 9, 2022
    Date of Patent: August 15, 2023
    Assignee: INNOVIZ TECHNOLOGIES LTD.
    Inventors: Nir Goren, Ronen Eshel
  • Patent number: 11639982
    Abstract: A LIDAR system for use in a vehicle is provided. The LIDAR system may include at least one processor configured to control at least one light source for illuminating a field of view and scan a field of view by controlling movement of at least one deflector at which the at least one light source is directed. The at least one processor may also be configured to receive, from at least one sensor, reflections signals indicative of light reflected from an object in the field of view. The at least one processor may further be configured to detect at least one temporal distortion in the reflections signals, and determine from the at least one temporal distortion an angular orientation of at least a portion of the object.
    Type: Grant
    Filed: June 28, 2019
    Date of Patent: May 2, 2023
    Assignee: Innoviz Technologies Ltd.
    Inventors: Amir Day, Guy Zohar, Julian Vlaiko, Nir Osiroff, Ronen Eshel
  • Patent number: 11604263
    Abstract: A MEMS scanning device may include: a movable MEMS mirror configured to pivot about at least one axis; at least one actuator operable to rotate the MEMS mirror about the at least one axis, each actuator out of the at least one actuator operable to bend upon actuation to move the MEMS mirror; and at least one flexible interconnect element coupled between the at least one actuator and the MEMS mirror for transferring a pulling force of the bending of the at least one actuator to the MEMS mirror. Each flexible interconnect element out of the at least one interconnect element may be an elongated structure comprising at least two turns at opposing directions, each turn greater than 120°.
    Type: Grant
    Filed: March 25, 2020
    Date of Patent: March 14, 2023
    Assignee: INNOVIZ TECHNOLOGIES LTD
    Inventors: Ronen Eshel, Michael Girgel
  • Patent number: 11500076
    Abstract: The present disclosure provides systems and methods that use LIDAR technology. In one implementation, a LIDAR system includes at least one processor configured to: control activation of at least one light source for illuminating a field of view; receive from at least one sensor a reflection signal associated with an object in the field of view, a time lapse between light leaving the at least one light source and reflection impinging on the least one sensor constituting a time of flight; and alter an amplification parameter associated with the at least one sensor during the time of flight.
    Type: Grant
    Filed: May 14, 2019
    Date of Patent: November 15, 2022
    Assignee: Innoviz Technologies Ltd.
    Inventors: Omer David Keilaf, Oren Buskila, Ronen Eshel, Yair Antman, Amit Steinberg, David Elooz, Julian Vlaiko, Guy Zohar, Shahar Levy
  • Publication number: 20220276348
    Abstract: An electrooptical system may include a processor programmed to control a light source to enable light flux to vary over a scan of a field-of-view using light from the light source. The FOV may be divided into a plurality of segments, which may include a first set of non-contiguous segments, and each of the non-contiguous segments included in the first set may be separated from other non-contiguous segments in the first set by at least one segment. The scanning of the field-of-view may include sequentially illuminating the non-contiguous segments, which may proceed such that, during illumination of a particular non-contiguous segment in the first set of non-contiguous segments, other segments in the plurality of segments are not be illuminated, and such that other segments in the plurality of segments are not be illuminated between the illuminations of the non-contiguous segments in the first set of non-contiguous segments.
    Type: Application
    Filed: July 17, 2020
    Publication date: September 1, 2022
    Applicant: INNOVIZ TECHNOLOGIES LTD.
    Inventor: Ronen ESHEL
  • Publication number: 20220276345
    Abstract: A LIDAR system has a laser emission unit configured to generate a plurality of laser beams. The LIDAR system also has an optical system configured to transmit the plurality of laser beams from the laser emission unit to a common scanning unit. The common scanning unit is configured to project the plurality of laser beams toward a field of view of the LIDAR system to simultaneously scan the field of view along a plurality of scan lines traversing the field of view.
    Type: Application
    Filed: February 9, 2022
    Publication date: September 1, 2022
    Applicant: INNOVIZ TECHNOLOGIES LTD.
    Inventors: Ronen ESHEL, Omer KEILAF, David ELOOZ, Lior ATIAS, Harel Yosef SHFARAM, Nir GOREN, Idan BAKISH, Yuval YIFAT, Itay TEHORI, Roi MAUTNER, Yair ALPERN
  • Publication number: 20220229164
    Abstract: A time-of-flight (TOF) optical sensor may include a controller, a sensing array, and a readout unit. The sensing array may include a plurality of sensing cells. The readout unit may include a plurality of readout TOF modules. The number of the plurality of readout TOF modules may be less than the number of the plurality of sensing cells. The controller may be configured to trigger a connection of a first sensing cell of the plurality of sensing cells to a first readout TOF module of the plurality of readout TOF modules at a first time during a sampling period, thereby enabling the first readout TOF module to provide a first measurement of a change in output of the first sensing cell.
    Type: Application
    Filed: June 5, 2020
    Publication date: July 21, 2022
    Applicant: INNOVIZ TECHNOLOGIES LTD.
    Inventors: Amit STEINBERG, Ronen ESHEL, Yair ALPERN, Nir Avraham GOREN
  • Publication number: 20220187471
    Abstract: A LIDAR system has a laser emission unit configured to generate a plurality of laser beams. The system has a scanning unit configured to receive the plurality of laser beams. The common scanning unit projects the plurality of laser beams toward a field of view of the LIDAR system. The system has at least one processor. The processor is programmed to cause the scanning unit to scan the field of view of the LIDAR system by directing the plurality of beams along a first plurality of scan lines traversing the FOV. The processor is also programmed to displace the plurality of laser beams from a first set of locations associated with the first plurality of scan lines to a second set of locations associated with a second plurality of scan lines. Further, the processor is programmed to direct the plurality of laser beams along the second plurality of scan lines.
    Type: Application
    Filed: March 4, 2022
    Publication date: June 16, 2022
    Applicant: INNOVIZ TECHNOLOGIES LTD.
    Inventors: Ronen ESHEL, Nir GOREN
  • Publication number: 20220171031
    Abstract: A LIDAR system is disclosed. The system has a laser light projection system to simultaneously project at least two laser light beams. The system also has a deflector to project the at least two laser light beams toward a field of view of the LIDAR system. Each of the at least two laser light beams has an energy density below an eye safe level. A total combined energy density of the at least two laser light beams is above an eye safe level. Further, the at least two laser light beams projected from the deflector are separated from one another by an angular spacing ranging from 2.5 mrad to 6 mrad.
    Type: Application
    Filed: February 9, 2022
    Publication date: June 2, 2022
    Applicant: INNOVIZ TECHNOLOGIES LTD.
    Inventors: Nir GOREN, Ronen ESHEL
  • Publication number: 20220075027
    Abstract: A pulsed laser diode driver may include at least one low side switching circuit connected to at least one laser diode. The at least one laser diode may generate at least one light pulse. The low side switching circuit may include an input for receiving energy. The low side switching circuit may also include an inductor configured to store at least a portion of the received energy. Further, the low side switching circuit may include a trigger switch. The trigger switch may cause the inductor to store the portion of the received energy when the trigger switch is closed, and the trigger switch may cause the portion of the received energy stored in the inductor to be delivered to the at least one laser diode after the trigger switch is opened.
    Type: Application
    Filed: September 8, 2021
    Publication date: March 10, 2022
    Applicant: Innoviz Technologies Ltd.
    Inventors: Nir KAHANA, Ronen ESHEL
  • Publication number: 20220050203
    Abstract: A LIDAR system is provided. The LIDAR system may include at least one processor configured to: control at least one light deflector to deflect light from a plurality of light sources towards a region in a field of view while the at least one light deflector is in a particular instantaneous position; control the at least one light deflector such that while the at least one light deflector is at the particular instantaneous position, light reflections from the field of view are received on at least one common area along a plurality of return paths to at least one sensor; and receive from at least one of a plurality of light detectors included in the at least one sensor, signals associated with beam spots of the received light reflections, wherein each of the beam spots impinges on more than one of the plurality of light detectors.
    Type: Application
    Filed: November 1, 2021
    Publication date: February 17, 2022
    Inventors: OMER DAVID KEILAF, YAIR ANTMAN, AMIT STEINBERG, DAVID ELOOZ, JULIAN VLAIKO, OREN BUSKILA, OREN ROSENZWEIG, RONEN ESHEL, SMADAR DAVID RALY, GUY ZOHAR
  • Publication number: 20210389467
    Abstract: Systems and methods may detect an object within a minimum predetermined distance of a LIDAR system. The LIDAR system may comprise a processor configured to control a light source and a light deflector to illuminate objects located in a space illuminated by the light source; determine a distance to a first object based located within a field of view of a LIDAR sensor; receive, from a supplementary sensor, reflection signals indicative of light reflected from a second object outside the field of view; determine, based on the second reflection signals that the second object is located within a predetermined distance; and regulate, based on the determination, at least one of the light source and the light deflector to prevent an accumulated energy density of light emitted by the light source from exceeding a maximum permissible exposure level.
    Type: Application
    Filed: October 17, 2019
    Publication date: December 16, 2021
    Inventors: RONEN ESHEL, AMIT STEINBERG, IDAN BAKISH, SHAHAR LEVY, YUVAL YIFAT
  • Publication number: 20200386872
    Abstract: Systems and methods use LIDAR technology.
    Type: Application
    Filed: August 21, 2020
    Publication date: December 10, 2020
    Applicant: Innoviz Technologies Ltd.
    Inventors: Omer David Keilaf, Oren Buskila, Ronen Eshel, Yair Antman, Amit Steinberg, David Elooz, Julian Vlaiko
  • Publication number: 20200292709
    Abstract: In some embodiments, a LIDAR system may include at least one processor configured to control at least one light source for projecting light toward a field of view and receive from at least one first sensor first signals associated with light projected by the at least one light source and reflected from an object in the field of view, wherein the light impinging on the at least one first sensor is in a form of a light spot having an outer boundary. The processor may further be configured to receive from at least one second sensor second signals associated with light noise, wherein the at least one second sensor is located outside the outer boundary; determine, based on the second signals received from the at least one second sensor, an indicator of a magnitude of the light noise; and determine, based on the indicator the first signals received from the at least one first sensor and, a distance to the object.
    Type: Application
    Filed: March 25, 2020
    Publication date: September 17, 2020
    Applicant: INNOVIZ TECHNOLOGIES LTD
    Inventors: Ronen ESHEL, Michael GIRGEL
  • Publication number: 20200249354
    Abstract: A LIDAR system may include a processor configured to control a LIDAR light source for illuminating a field of view (FOV), receive, from a group of light detectors, input signals indicative of reflections of light from objects in the FOV, and process a first subset of the input signals associated with a first region of the FOV to detect a first object in the first region. The processor may also process a second subset of the input signals associated with a second region of the FOV to detect a second object in the second region. The second object may be located at a greater distance from the light source than the first object.
    Type: Application
    Filed: March 25, 2020
    Publication date: August 6, 2020
    Applicant: INNOVIZ TECHNOLOGIES LTD
    Inventors: Oded Yeruhami, Amit Steinberg, Nir Osiroff, Ronen Eshel
  • Patent number: 10698114
    Abstract: A LIDAR system is provided. The LIDAR system comprises at least one processor configured to: control light emission of a light source; scan a field of view by repeatedly moving at least one light deflector located in an outbound path of the light source; while the at least one deflector is in a particular instantaneous position, receive via the at least one deflector, reflections of a single light beam spot along a return path to a sensor; receive from the sensor on a beam-spot-by-beam-spot basis, signals associated with an image of each light beam-spot, wherein the sensor includes a plurality of detectors and wherein a size of each detector is smaller than the image of each light beam-spot; and determine, from signals resulting from the impingement on the plurality of detectors, at least two differing range measurements associated with the image of the single light beam-spot.
    Type: Grant
    Filed: January 3, 2018
    Date of Patent: June 30, 2020
    Assignee: Innoviz Technologies Ltd.
    Inventors: Omer David Keilaf, Yair Antman, Amit Steinberg, David Elooz, Julian Vlaiko, Oren Buskila, Oren Rosenzweig, Ronen Eshel, Smadar David Raly
  • Patent number: 10481268
    Abstract: A LIDAR system for use in a vehicle may include at least one light source configured to project light toward a field of view for illuminating a plurality of objects in an environment of a vehicle and at least one processor configured to control the at least one light source in a manner enabling light flux of light from the at least one light source to vary over scans of a plurality of portions of the field of view. The LIDAR system may receive information indicating that a temperature associated with at least one system component exceeds a threshold, and in response to the received information indicating the temperature exceeding the threshold, modify an illumination ratio between two portions of the field of view such that during at least one subsequent scanning cycle less light is delivered to the field of view than in a prior scanning cycle.
    Type: Grant
    Filed: January 3, 2018
    Date of Patent: November 19, 2019
    Assignee: Innoviz Technologies Ltd.
    Inventors: Julian Vlaiko, Amit Steinberg, Omer David Keilaf, Oren Buskila, Ronen Eshel
  • Publication number: 20190324147
    Abstract: A LIDAR system for use in a vehicle is provided. The LIDAR system may include at least one processor configured to control at least one light source for illuminating a field of view and scan a field of view by controlling movement of at least one deflector at which the at least one light source is directed. The at least one processor may also be configured to receive, from at least one sensor, reflections signals indicative of light reflected from an object in the field of view. The at least one processor may further be configured to detect at least one temporal distortion in the reflections signals, and determine from the at least one temporal distortion an angular orientation of at least a portion of the object.
    Type: Application
    Filed: June 28, 2019
    Publication date: October 24, 2019
    Applicant: Innoviz Technologies Ltd.
    Inventors: Amir DAY, Guy ZOHAR, Julian VLAIKO, Nir OSIROFF, Ronen ESHEL