Patents Assigned to Sense Photonics, Inc.
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Patent number: 12259498Abstract: A Light Detection and Ranging (LIDAR) detector circuit includes a memory device comprising a non-transitory storage medium that is configured to store data indicative of detection events in respective memory bins, and at least one control circuit. The at least one control circuit is configured to receive detection signals from one or more photodetector elements, identify a presence or an absence of detection events indicated by the detection signals during a portion of time between pulses of an emitter signal output from a LIDAR emitter element, and execute one of a first memory operation or a second memory operation to update the data in the respective memory bins responsive to identification of the presence or the absence of the detection events, respectively. Related circuits and methods of operation are also discussed.Type: GrantFiled: January 22, 2021Date of Patent: March 25, 2025Assignee: Sense Photonics, Inc.Inventors: Robert Henderson, Hod Finkelstein
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Methods and systems for increasing the range of time-of-flight systems by unambiguous range toggling
Patent number: 12248101Abstract: A method of operating a time of flight system includes detecting first optical signals comprising a first frequency having a first unambiguous range, the first optical signals reflected from a target, processing the first optical signals to determine a first estimated distance to the target, and generating an output frame comprising a true distance to the target based on the first estimated distance and a second estimated distance to the target, wherein the second estimated distance was used to generate a previous output frame.Type: GrantFiled: August 16, 2019Date of Patent: March 11, 2025Assignee: Sense Photonics, Inc.Inventor: Hod Finkelstein -
Patent number: 12222454Abstract: A Light Detection and Ranging (LIDAR) apparatus includes a detector having a first pixel and a second pixel configured to output respective detection signals responsive to light incident thereon, and receiver optics configured to collect the light over a field of view and direct first and second portions of the light to the first and second pixels, respectively. The first pixel includes one or more time of flight (ToF) sensors, and the second pixel includes one or more image sensors. At least one of the receiver optics or arrangement of the first and second pixels in the detector is configured to correlate the first and second pixels such that depth information indicated by the respective detection signals output from the first pixel is correlated with image information indicated by the respective detection signals output from the second pixel. Related devices and methods of operation are also discussed.Type: GrantFiled: February 16, 2023Date of Patent: February 11, 2025Assignee: Sense Photonics, Inc.Inventors: Hod Finkelstein, Dietrich Dehlinger, Scott Burroughs, Brent Fisher
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Patent number: 12204052Abstract: A LIDAR apparatus includes an emitter array having a plurality of emitter pixels configured to emit optical signals, a detector array having a plurality of detector pixels configured to output detection signals responsive to light incident thereon, and a circuit that is coupled to the detector array. The circuit is configured to perform operations including receiving the detection signals output from the detector array, where each of the detection signals includes component measurements defining a respective phase vector, generating a combined vector based on the component measurements of a plurality of the detection signals, and identifying a distance range of a target from which the optical signals were reflected based on an angle of the combined vector. Related devices and methods of operation are also discussed.Type: GrantFiled: July 23, 2019Date of Patent: January 21, 2025Assignee: Sense Photonics, Inc.Inventors: Dietrich Dehlinger, Hod Finkelstein, Neil Woodhouse, Brent Fisher
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Patent number: 12123769Abstract: A laser diode includes a semiconductor structure of a lower Bragg reflector layer, an active region, and an upper Bragg reflector layer. The upper Bragg reflector layer includes a lasing aperture having an optical axis oriented perpendicular to a surface of the active region. The active region includes a first material, and the lower Bragg reflector layer includes a second material, where respective lattice structures of the first and second materials are independent of one another. Related laser arrays and methods of fabrication are also discussed.Type: GrantFiled: August 26, 2021Date of Patent: October 22, 2024Assignee: Sense Photonics, Inc.Inventors: Scott Burroughs, Brent Fisher, James Carter
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Patent number: 12085675Abstract: A LIDAR system includes an emitter array configured to illuminate a field of view, a detector array configured to image the field of view, and a control circuit. The emitter array includes one or more emitter elements that are configured to emit respective optical signals responsive to respective emitter control signals. The detector array includes one or more detector elements configured to output respective detection signals responsive to light incident thereon. The control circuit is configured to generate the respective emitter control signals based on the respective detection signals and respective spatial correlations of the one or more emitter elements and the one or more detector elements with respect to the field of view. Related devices and methods of operation are also discussed.Type: GrantFiled: April 8, 2019Date of Patent: September 10, 2024Assignee: Sense Photonics, Inc.Inventors: Hod Finkelstein, Scott Burroughs, Russell Kanjorski, Brent Fisher
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Patent number: 12055637Abstract: A Light Detection and Ranging (lidar) system, includes an emitter configured to emit a plurality of optical signals, a detector configured to be activated to detect one of the optical signals in light that is incident on the detector and to provide count data corresponding to the one of the optical signals that were detected, a plurality of storage memory locations configured to store the count data therein, and a control circuit configured to change a location at which the count data is stored from a first storage memory location to a second storage memory location based on an elapsed time duration from an emission of the one of the optical signals.Type: GrantFiled: October 15, 2020Date of Patent: August 6, 2024Assignee: Sense Photonics, Inc.Inventors: Hod Finkelstein, Robert Henderson, Tarek Al Abbas, David Storrar
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Patent number: 12038510Abstract: A Light Detection And Ranging (LIDAR) system includes an emitter unit including one or more emitter elements configured to output an emitter signal, and a detector array including a plurality of detector elements. A respective detector element of the plurality of detector elements is configured to output detection signals in response to photons incident thereon. At least one control circuit is configured receive the detection signals output from the respective detector element over one or more cycles of the emitter signal, generate a flag signal responsive to detection events indicated by the detection signals exceeding a detection threshold, and output a readout signal for the respective detector element responsive to the flag signal. Related devices and methods of operation are also discussed.Type: GrantFiled: January 3, 2020Date of Patent: July 16, 2024Assignee: Sense Photonics, Inc.Inventors: Neil Calder, Tarek Al Abbas, Hod Finkelstein
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Patent number: 12032095Abstract: A LIDAR system includes a detector array comprising a first detector region and a second detector region, wherein the first detector region comprises a first detector and the second detector region comprises a second detector, at least one optical element configured to separate light received at the at least one optical element into a first portion and a second portion, incident on the first detector and the second detector, respectively, wherein the at least one optical element is configured to alter a characteristic of the light, and a circuit configured to receive a first detection signal from the first detector responsive to the first portion of the light that is incident thereon and a second detection signal from the second detector responsive to the second portion of the light that is incident thereon, and to generate an improved signal based on the first and second detection signals.Type: GrantFiled: March 17, 2020Date of Patent: July 9, 2024Assignee: Sense Photonics, Inc.Inventor: Kristopher McGuire
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Patent number: 11978754Abstract: A photodetector device includes a semiconductor material layer and at least one photodiode in the semiconductor material layer. The at least one photodiode is configured to be biased beyond a breakdown voltage thereof to generate respective electrical signals responsive to detection of incident photons. The respective electrical signals are independent of an optical power of the incident photons. A textured region is coupled to the semiconductor material layer and includes optical structures positioned to interact with the incident photons in the detection thereof by the at least one photodiode. Two or more photodiodes may define a pixel of the photodetector device, and the optical structures may be configured to direct the incident photons to any of the two or more photodiodes of the pixel.Type: GrantFiled: March 1, 2022Date of Patent: May 7, 2024Assignee: Sense Photonics, Inc.Inventor: Hod Finkelstein
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Patent number: 11187789Abstract: A semiconductor device includes a detector structure. The detector structure includes an integrated circuit on a substrate, and a photo detector on an upper surface of the integrated circuit that is opposite the substrate, where the substrate is non-native to the photo detector. A System-on-Chip apparatus includes at least one laser emitter on a non-native substrate, at least one photo detector on the non-native substrate, and an input/output circuit. The at least one photo detector of the second plurality of photo detectors is disposed on an integrated circuit between the at least one photo detector and the non-native substrate to form a detector structure.Type: GrantFiled: April 12, 2018Date of Patent: November 30, 2021Assignee: Sense Photonics, Inc.Inventors: Scott Burroughs, Brent Fisher, James Carter
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Patent number: 11125862Abstract: A laser diode includes a semiconductor structure of a lower Bragg reflector layer, an active region, and an upper Bragg reflector layer. The upper Bragg reflector layer includes a lasing aperture having an optical axis oriented perpendicular to a surface of the active region. The active region includes a first material, and the lower Bragg reflector layer includes a second material, where respective lattice structures of the first and second materials are independent of one another. Related laser arrays and methods of fabrication are also discussed.Type: GrantFiled: November 25, 2019Date of Patent: September 21, 2021Assignee: Sense Photonics, Inc.Inventors: Scott Burroughs, Brent Fisher, James Carter
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Patent number: 11105899Abstract: A laser array includes a plurality of laser diodes arranged and electrically connected to one another on a surface of a non-native substrate. Respective laser diodes of the plurality of laser diodes have different orientations relative to one another on the surface of the non-native substrate. The respective laser diodes are configured to provide coherent light emission in different directions, and the laser array is configured to emit an incoherent output beam comprising the coherent light emission from the respective laser diodes. The output beam may include incoherent light having a non-uniform intensity distribution over a field of view of the laser array. Related devices and fabrication methods are also discussed.Type: GrantFiled: November 22, 2019Date of Patent: August 31, 2021Assignee: Sense Photonics, Inc.Inventors: Scott Burroughs, Brent Fisher, James Carter, Russell Kanjorski
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Devices with ultra-small vertical cavity surface emitting laser emitters incorporating beam steering
Patent number: 11061117Abstract: A laser array includes a plurality of laser emitters arranged in a plurality of rows and a plurality of columns on a substrate that is non-native to the plurality of laser emitters, and a plurality of driver transistors on the substrate adjacent one or more of the laser diodes. A subset of the plurality of laser emitters includes a string of laser emitters that are connected such that an anode of at least one laser emitter of the subset is connected to a cathode of an adjacent laser emitter of the subset. A driver transistor of the plurality of driver transistors is configured to control a current flowing through the string.Type: GrantFiled: October 16, 2019Date of Patent: July 13, 2021Assignee: Sense Photonics, Inc.Inventors: Scott Burroughs, Brent Fisher, James Carter -
Patent number: 10962627Abstract: A laser diode includes a semiconductor structure having an n-type layer, an active region, and a p-type layer. One of the n-type and p-type layers includes a lasing aperture thereon having an optical axis oriented perpendicular to a surface of the active region between the n-type and p-type layers. First and second contacts are electrically connected to the n-type and p-type layers, respectively. The first and/or second contacts are smaller than the lasing aperture in at least one dimension. Related arrays and methods of fabrication are also discussed.Type: GrantFiled: April 12, 2018Date of Patent: March 30, 2021Assignee: Sense Photonics, Inc.Inventors: Scott Burroughs, Brent Fisher, James Carter
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Patent number: 10530130Abstract: A laser diode includes a semiconductor structure of a lower Bragg reflector layer, an active region, and an upper Bragg reflector layer. The upper Bragg reflector layer includes a lasing aperture having an optical axis oriented perpendicular to a surface of the active region. The active region includes a first material, and the lower Bragg reflector layer includes a second material, where respective lattice structures of the first and second materials are independent of one another. Related laser arrays and methods of fabrication are also discussed.Type: GrantFiled: April 12, 2018Date of Patent: January 7, 2020Assignee: Sense Photonics, Inc.Inventors: Scott Burroughs, Brent Fisher, James Carter
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Patent number: 10522973Abstract: A laser array includes a plurality of laser diodes arranged and electrically connected to one another on a surface of a non-native substrate. Respective laser diodes of the plurality of laser diodes have different orientations relative to one another on the surface of the non-native substrate. The respective laser diodes are configured to provide coherent light emission in different directions, and the laser array is configured to emit an incoherent output beam comprising the coherent light emission from the respective laser diodes. The output beam may include incoherent light having a non-uniform intensity distribution over a field of view of the laser array. Related devices and fabrication methods are also discussed.Type: GrantFiled: April 12, 2018Date of Patent: December 31, 2019Assignee: Sense Photonics, Inc.Inventors: Scott Burroughs, Brent Fisher, James Carter, Russell Kanjorski
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Devices with ultra-small vertical cavity surface emitting laser emitters incorporating beam steering
Patent number: 10483722Abstract: A laser array includes a plurality of laser emitters arranged in a plurality of rows and a plurality of columns on a substrate that is non-native to the plurality of laser emitters, and a plurality of driver transistors on the substrate adjacent one or more of the laser diodes. A subset of the plurality of laser emitters includes a string of laser emitters that are connected such that an anode of at least one laser emitter of the subset is connected to a cathode of an adjacent laser emitter of the subset. A driver transistor of the plurality of driver transistors is configured to control a current flowing through the string.Type: GrantFiled: April 12, 2018Date of Patent: November 19, 2019Assignee: Sense Photonics, Inc.Inventors: Scott Burroughs, Brent Fisher, James Carter