Patents by Inventor Moshe Laifenfeld

Moshe Laifenfeld 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: 20210286865
    Abstract: Techniques are disclosed relating to biometric authentication, e.g., facial recognition. In some embodiments, a device is configured to verify that image data from a camera unit exhibits a pseudo-random sequence of image capture modes and/or a probing pattern of illumination points (e.g., from lasers in a depth capture mode) before authenticating a user based on recognizing a face in the image data. In some embodiments, a secure circuit may control verification of the sequence and/or the probing pattern. In some embodiments, the secure circuit may verify frame numbers, signatures, and/or nonce values for captured image information. In some embodiments, a device may implement one or more lockout procedures in response to biometric authentication failures. The disclosed techniques may reduce or eliminate the effectiveness of spoofing and/or replay attacks, in some embodiments.
    Type: Application
    Filed: February 22, 2021
    Publication date: September 16, 2021
    Inventors: Deepti S. Prakash, Lucia E. Ballard, Jerrold V. Hauck, Feng Tang, Etai Littwin, Pavan Kumar Ansosalu Vasu, Gideon Littwin, Thorsten Gernoth, Lucie Kucerova, Petr Kostka, Steven P. Hotelling, Eitan Hirsh, Tal Kaitz, Jonathan Pokrass, Andrei Kolin, Moshe Laifenfeld, Matthew C. Waldon, Thomas P. Mensch, Lynn R. Youngs, Christopher G. Zeleznik, Michael R. Malone, Ziv Hendel, Ivan Krstic, Anup K. Sharma
  • Publication number: 20210270969
    Abstract: Imaging apparatus (22) includes a radiation source (40), which emits pulsed beams (42) of optical radiation toward a target scene (24). An array (52) of sensing elements outputs signals indicative of respective times of incidence of photons on the sensing elements. Objective optics (54) form a first image of the target scene on the array of sensing elements. An image sensor (64) captures e a second image of the target scene. Processing and control circuitry (56, 58) is configured to process the second image so as to detect a relative motion between at least one object in the target scene and the apparatus, and which is configured to construct, responsively to the signals from the array, histograms of the times of incidence of the photons on the sensing elements and to adjust the histograms responsively to the detected relative motion, and to generate a depth map of the target scene based on the adjusted histograms.
    Type: Application
    Filed: September 2, 2019
    Publication date: September 2, 2021
    Inventors: David Silver, Eitan Hirsh, Moshe Laifenfeld, Tal Kaitz
  • Publication number: 20210208262
    Abstract: Imaging apparatus (22) includes a radiation source (40), which emits pulsed beams (42) of optical radiation toward a target scene (24). An array (52) of sensing elements (78) output signals indicative of respective times of incidence of photons in a first image of the target scene that is formed on the array of sensing elements. An image sensor (64) captures a second image of the target scene in registration with the first image. Processing and control circuitry (56, 58) identifies, responsively to the signals, areas of the array on which the pulses of optical radiation reflected from corresponding regions of the target scene are incident, and processes the signals from the sensing elements in the identified areas in order measure depth coordinates of the corresponding regions of the target scene based on the times of incidence, while identifying, responsively to the second image, one or more of the regions of the target scene as no-depth regions.
    Type: Application
    Filed: September 2, 2019
    Publication date: July 8, 2021
    Inventors: David Silver, Moshe Laifenfeld, Tal Kaitz
  • Publication number: 20210164776
    Abstract: Depth sensing apparatus includes a radiation source, which is configured to emit a first plurality of beams of light pulses toward a target scene. An array of a second plurality of sensing elements is configured to output signals indicative of respective times of incidence of photons on the sensing element, wherein the second plurality exceeds the first plurality. Light collection optics are configured to image the target scene onto the array of sensing elements. Processing and control circuitry is coupled to receive the signals from the array and is configured to search over the sensing elements in order to identify, responsively to the signals, respective regions of the array on which the light pulses reflected from the target scene are incident, and to process the signals from the identified regions in order determine respective times of arrival of the light pulses.
    Type: Application
    Filed: February 15, 2021
    Publication date: June 3, 2021
    Inventors: Zeev Roth, Mendy Shoval, Moshe Laifenfeld, Sagy Zino, Thierry Oggier
  • Patent number: 10962628
    Abstract: Disclosed are devices and methods for scanning sensing systems having an array of light sensing pixels, such as pixels that use single-photon avalanche diodes. Light pulses are emitted into a field of view (FOV) at starts of a sequence of time intervals, and a weighted tabulation of the times-of-flight of the reflected light pulses within each time interval is used to detect an object in the FOV and determine its distance. Each weight is based on the time-of-flight between the emitted pulse and the received reflected light pulse and on the number of the emitted light pulse in the sequence of emitted light pulses. For near objects the weights emphasize times-of-flight from peripheral time intervals of the sequence; for far objects the weights emphasize central time intervals of the sequence.
    Type: Grant
    Filed: January 25, 2018
    Date of Patent: March 30, 2021
    Assignee: Apple Inc.
    Inventors: Moshe Laifenfeld, Tal Kaitz, Shingo Mandai, Cristiano L. Niclass
  • Patent number: 10955234
    Abstract: Depth sensing apparatus includes a radiation source, which is configured to emit a first plurality of beams of light pulses toward a target scene. An array of a second plurality of sensing elements is configured to output signals indicative of respective times of incidence of photons on the sensing element, wherein the second plurality exceeds the first plurality. Light collection optics are configured to image the target scene onto the array of sensing elements. Processing and control circuitry is coupled to receive the signals from the array and is configured to search over the sensing elements in order to identify, responsively to the signals, respective regions of the array on which the light pulses reflected from the target scene are incident, and to process the signals from the identified regions in order determine respective times of arrival of the light pulses.
    Type: Grant
    Filed: August 6, 2019
    Date of Patent: March 23, 2021
    Assignee: APPLE INC.
    Inventors: Zeev Roth, Mendy Shoval, Moshe Laifenfeld, Sagy Zino, Thierry Oggier
  • Patent number: 10929515
    Abstract: Techniques are disclosed relating to biometric authentication, e.g., facial recognition. In some embodiments, a device is configured to verify that image data from a camera unit exhibits a pseudo-random sequence of image capture modes and/or a probing pattern of illumination points (e.g., from lasers in a depth capture mode) before authenticating a user based on recognizing a face in the image data. In some embodiments, a secure circuit may control verification of the sequence and/or the probing pattern. In some embodiments, the secure circuit may verify frame numbers, signatures, and/or nonce values for captured image information. In some embodiments, a device may implement one or more lockout procedures in response to biometric authentication failures. The disclosed techniques may reduce or eliminate the effectiveness of spoofing and/or replay attacks, in some embodiments.
    Type: Grant
    Filed: July 31, 2018
    Date of Patent: February 23, 2021
    Assignee: Apple Inc.
    Inventors: Deepti S. Prakash, Lucia E. Ballard, Jerrold V. Hauck, Feng Tang, Etai Littwin, Pavan Kumar Ansosalu Vasu, Gideon Littwin, Thorsten Gernoth, Lucie Kucerova, Petr Kostka, Steven P. Hotelling, Eitan Hirsh, Tal Kaitz, Jonathan Pokrass, Andrei Kolin, Moshe Laifenfeld, Matthew C. Waldon, Thomas P. Mensch, Lynn R. Youngs, Christopher G. Zeleznik, Michael R. Malone, Ziv Hendel, Ivan Krstic, Anup K. Sharma
  • Publication number: 20200386890
    Abstract: Sensing apparatus includes a radiation source, which emits pulses of optical radiation toward multiple points in a target scene. A receiver receives the optical radiation that is reflected from the target scene and outputs signals that are indicative of respective times of flight of the pulses to and from the points in the target scene. Processing and control circuitry selects a first pulse repetition interval (PRI) and a second PRI, greater than the first PRI, from a permitted range of PRIs, drives the radiation source to emit a first sequence of the pulses at the first PRI and a second sequence of the pulses at a second PRI, and processes the signals output in response to both the first and second sequences of the pulses in order to compute respective depth coordinates of the points in the target scene.
    Type: Application
    Filed: May 28, 2020
    Publication date: December 10, 2020
    Inventors: Thierry Oggier, Bernhard Buettgen, Cristiano L. Niclass, Rahmi Hezar, Shingo Mandai, Darshan Shrestha, Gary Chung, Moshe Laifenfeld
  • Patent number: 10801886
    Abstract: The sensitivity of one or more single-photon avalanche diodes (SPAD) in a SPAD detector is modulated over time. The sensitivity of all of the SPADs may be modulated, or the sensitivity of one section of the SPADs can be modulated differently from another section of the SPADs. Various techniques for modulating the sensitivity are disclosed.
    Type: Grant
    Filed: January 24, 2018
    Date of Patent: October 13, 2020
    Assignee: Apple Inc.
    Inventors: Shingo Mandai, Andrew Kenneth John McMahon, Cristiano L. Niclass, Thierry Oggier, Tal Kaitz, Moshe Laifenfeld
  • Patent number: 10775507
    Abstract: An electro-optical device includes a laser, which is configured to emit toward a scene pulses of optical radiation. An array of detectors are configured to receive the optical radiation that is reflected from points in the scene and to output signals indicative of respective times of arrival of the received radiation. A controller is coupled to drive the laser to emit a sequence of pulses of the optical radiation toward each of a plurality of points in the scene and to find respective times of flight for the points responsively to the output signals, while controlling a power of the pulses emitted by the laser by counting a number of the detectors outputting the signals in response to each pulse, and reducing the power of a subsequent pulse in the sequence when the number is greater than a predefined threshold.
    Type: Grant
    Filed: August 10, 2017
    Date of Patent: September 15, 2020
    Assignee: APPLE INC.
    Inventors: Shingo Mandai, Cristiano L Niclass, Richard E Bills, Moshe Laifenfeld, Mina A. Rezk, Alexander Shpunt, Ron Sokolovsky, Tal Kaitz, Ronen Akerman, Jason D. Mudge, Andrew J Sutton
  • Publication number: 20200256669
    Abstract: Depth sensing apparatus includes a radiation source, which is configured to emit a first plurality of beams of light pulses toward a target scene. An array of a second plurality of sensing elements is configured to output signals indicative of respective times of incidence of photons on the sensing element, wherein the second plurality exceeds the first plurality. Light collection optics are configured to image the target scene onto the array of sensing elements. Processing and control circuitry is coupled to receive the signals from the array and is configured to search over the sensing elements in order to identify, responsively to the signals, respective regions of the array on which the light pulses reflected from the target scene are incident, and to process the signals from the identified regions in order determine respective times of arrival of the light pulses.
    Type: Application
    Filed: August 6, 2019
    Publication date: August 13, 2020
    Inventors: Zeev Roth, Mendy Shoval, Moshe Laifenfeld, Sagy Zino, Thierry Oggier
  • Patent number: 10677892
    Abstract: A radar system and method of extending a parameter of a location of a target obtained by radar is disclosed. The system receives an echo signal that is a reflection of a radar source signal from the target. The echo signal is sampled and a peak for the echo signal is objected in frequency space. For a peak that is located at a frequency greater than a Nyquist frequency of the echo signal, the peak is moved to a negative domain of the frequency space and the location of the target is determined using the peak in the negative domain.
    Type: Grant
    Filed: May 11, 2017
    Date of Patent: June 9, 2020
    Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Moshe Laifenfeld, Alexander Pokrass, Igal Bilik
  • Patent number: 10656248
    Abstract: A system, method and apparatus for detecting a plurality of targets in a radar device are disclosed. A transmitter transmits a source signal and a receiver receives echo signals from reflection of the source signal from the plurality of targets. A composite signal is generated that includes a plurality of target signals from the plurality of echo signals. A largest signal in the composite signal is identified and a value of a parameter of the largest signal is estimated. A representative signal is generated as a convolution of a point target having the estimated value of the parameter. The representative signal is subtracted from the composite signal to obtain a remaining signal. Another of the plurality of targets is determined using the remaining signal.
    Type: Grant
    Filed: May 11, 2017
    Date of Patent: May 19, 2020
    Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Igal Bilik, Alexander Pokrass, Moshe Laifenfeld
  • Patent number: 10591596
    Abstract: A system and method for obtaining a Doppler frequency of a target are disclosed. A receiver receives a first plurality of samples of a first echo signal from the target and a second plurality of samples of a second echo signal from the target. The second plurality of samples is separated from the first plurality of samples by a time period. A phase shift is determined for the duration of the time period and the phase shift is applied to the second plurality of samples. The first plurality of samples is combined with the second plurality of samples to obtain combined samples, and the Doppler frequency for the target is obtained from the combined samples.
    Type: Grant
    Filed: May 11, 2017
    Date of Patent: March 17, 2020
    Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Alexander Pokrass, Igal Bilik, Moshe Laifenfeld
  • Patent number: 10539672
    Abstract: A system and method of determining a relative velocity of an object at a radar system is disclosed. A transmitter transmits a source signal at the object and a receiver receives an echo signal that is a reflection of the source signal from the object. The echo signal is partitioned into a first portion and a second portion at a processor. A first Doppler frequency is estimated for the first portion and a second Doppler frequency is estimated for the portion. A difference is estimated between the first Doppler frequency and the second Doppler frequency. A presence of a Doppler ambiguity is determined from a comparison of the estimated difference to a selected Doppler frequency. A corrected Doppler frequency is obtained based on the Doppler ambiguity and the relative velocity of the object is determined from the corrected Doppler frequency.
    Type: Grant
    Filed: December 9, 2016
    Date of Patent: January 21, 2020
    Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Igal Bilik, Alexander Pokrass, Moshe Laifenfeld
  • Patent number: 10444325
    Abstract: A method and apparatus for determining a frequency of an echo signal obtained by a radar system is disclosed. The echo signal in response to a source signal of the radar system is received at a receiver. A harmonic oscillator generates a harmonic component signal, and a multiplier multiplies the echo signal with the harmonic component signal to obtain a combined signal. A Fast Fourier Transform (FFT) is performed on the combined signal to obtain a peak in a frequency space, wherein a central frequency of a frequency bin in the frequency space is shifted with respect to the frequency of the echo signal by the harmonic component signal. The frequency of the echo signal is determined from the shifted central frequency.
    Type: Grant
    Filed: December 9, 2016
    Date of Patent: October 15, 2019
    Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Alexander Pokrass, Moshe Laifenfeld, Igal Bilik
  • Patent number: 10393871
    Abstract: A radar system and method of determining a tracking parameter for a target in a radar system is disclosed. A transmitter transmits a source signal at a target and a receiver receives an echo signal from the target corresponding to the source signal. A processor provides a discrete frequency spectrum for the echo signal, shifts the discrete frequency spectrum in frequency space by a selected amount to obtain a shifted spectrum, filters the shifted spectrum using a filter that is shifted in frequency space a same amount as the shifted spectrum, and determines a tracking parameter of the target from a central frequency of the frequency space at which an intensity of the shifted and filtered spectrum is a peak intensity.
    Type: Grant
    Filed: December 9, 2016
    Date of Patent: August 27, 2019
    Assignee: GM GLOBAL TECHNOLOGIES OPERATIONS LLC
    Inventors: Igal Bilik, Moshe Laifenfeld, Alexander Pokrass
  • Patent number: 10389751
    Abstract: A mobile vehicle communications system and a method of determining the legitimacy of a wireless sensor signal received by an electronic control unit (ECU) in a vehicle. The method includes the steps of: receiving at the electronic control unit (ECU) a first wireless signal identified as being from a first vehicle sensor; performing a correlation procedure at the ECU using the first wireless signal; and based on the correlation procedure, determining whether the first wireless signal is a legitimate signal sent by the first vehicle sensor.
    Type: Grant
    Filed: May 9, 2015
    Date of Patent: August 20, 2019
    Assignee: GM Global Technology Operations LLC
    Inventors: Moshe Laifenfeld, Gill R. Tsouri
  • Patent number: 10310055
    Abstract: A control system and method dynamically adjust radar parameters of a radar system on a platform. The method includes obtaining inputs including platform parameters, wherein the platform parameters includes speed and braking duration, and obtaining a characterization of driving behavior based on the inputs. Modifying the radar parameters is based on the inputs and the characterization, wherein the modifying includes changing a maximum range, and providing alerts to a driver of the platform is based on the radar system.
    Type: Grant
    Filed: June 23, 2016
    Date of Patent: June 4, 2019
    Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Moshe Laifenfeld, Igal Bilik, Alexander Pokrass, Shahar Villeval, Eli Tzirkel-Hancock
  • Patent number: 10257304
    Abstract: A system and method that enables large content data transfers to mobile platforms is provided. The mobile platform cache system and method provided build a cache suitable for large content data transfers using the available storage capacity of one or more frequently used, existing mobile devices. The provided mobile cache system and method prioritize available free or low cost communication protocols for data transfer to one or more mobile devices, enabling the use of free Wi-Fi communications or low cost communications, and minimizing the use of cellular data transmissions for large content data transfers.
    Type: Grant
    Filed: June 1, 2016
    Date of Patent: April 9, 2019
    Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
    Inventors: Nadav Lavi, Moshe Laifenfeld, Tal Philosof